tg3: Fix jumbo loopback test on 5719
[deliverable/linux.git] / drivers / net / ethernet / broadcom / tg3.c
CommitLineData
1da177e4
LT
1/*
2 * tg3.c: Broadcom Tigon3 ethernet driver.
3 *
4 * Copyright (C) 2001, 2002, 2003, 2004 David S. Miller (davem@redhat.com)
5 * Copyright (C) 2001, 2002, 2003 Jeff Garzik (jgarzik@pobox.com)
6 * Copyright (C) 2004 Sun Microsystems Inc.
9e056c03 7 * Copyright (C) 2005-2012 Broadcom Corporation.
1da177e4
LT
8 *
9 * Firmware is:
49cabf49
MC
10 * Derived from proprietary unpublished source code,
11 * Copyright (C) 2000-2003 Broadcom Corporation.
12 *
13 * Permission is hereby granted for the distribution of this firmware
14 * data in hexadecimal or equivalent format, provided this copyright
15 * notice is accompanying it.
1da177e4
LT
16 */
17
1da177e4
LT
18
19#include <linux/module.h>
20#include <linux/moduleparam.h>
6867c843 21#include <linux/stringify.h>
1da177e4
LT
22#include <linux/kernel.h>
23#include <linux/types.h>
24#include <linux/compiler.h>
25#include <linux/slab.h>
26#include <linux/delay.h>
14c85021 27#include <linux/in.h>
1da177e4 28#include <linux/init.h>
a6b7a407 29#include <linux/interrupt.h>
1da177e4
LT
30#include <linux/ioport.h>
31#include <linux/pci.h>
32#include <linux/netdevice.h>
33#include <linux/etherdevice.h>
34#include <linux/skbuff.h>
35#include <linux/ethtool.h>
3110f5f5 36#include <linux/mdio.h>
1da177e4 37#include <linux/mii.h>
158d7abd 38#include <linux/phy.h>
a9daf367 39#include <linux/brcmphy.h>
1da177e4
LT
40#include <linux/if_vlan.h>
41#include <linux/ip.h>
42#include <linux/tcp.h>
43#include <linux/workqueue.h>
61487480 44#include <linux/prefetch.h>
f9a5f7d3 45#include <linux/dma-mapping.h>
077f849d 46#include <linux/firmware.h>
1da177e4
LT
47
48#include <net/checksum.h>
c9bdd4b5 49#include <net/ip.h>
1da177e4
LT
50
51#include <asm/system.h>
27fd9de8 52#include <linux/io.h>
1da177e4 53#include <asm/byteorder.h>
27fd9de8 54#include <linux/uaccess.h>
1da177e4 55
49b6e95f 56#ifdef CONFIG_SPARC
1da177e4 57#include <asm/idprom.h>
49b6e95f 58#include <asm/prom.h>
1da177e4
LT
59#endif
60
63532394
MC
61#define BAR_0 0
62#define BAR_2 2
63
1da177e4
LT
64#include "tg3.h"
65
63c3a66f
JP
66/* Functions & macros to verify TG3_FLAGS types */
67
68static inline int _tg3_flag(enum TG3_FLAGS flag, unsigned long *bits)
69{
70 return test_bit(flag, bits);
71}
72
73static inline void _tg3_flag_set(enum TG3_FLAGS flag, unsigned long *bits)
74{
75 set_bit(flag, bits);
76}
77
78static inline void _tg3_flag_clear(enum TG3_FLAGS flag, unsigned long *bits)
79{
80 clear_bit(flag, bits);
81}
82
83#define tg3_flag(tp, flag) \
84 _tg3_flag(TG3_FLAG_##flag, (tp)->tg3_flags)
85#define tg3_flag_set(tp, flag) \
86 _tg3_flag_set(TG3_FLAG_##flag, (tp)->tg3_flags)
87#define tg3_flag_clear(tp, flag) \
88 _tg3_flag_clear(TG3_FLAG_##flag, (tp)->tg3_flags)
89
1da177e4 90#define DRV_MODULE_NAME "tg3"
6867c843 91#define TG3_MAJ_NUM 3
efab79c5 92#define TG3_MIN_NUM 122
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MC
93#define DRV_MODULE_VERSION \
94 __stringify(TG3_MAJ_NUM) "." __stringify(TG3_MIN_NUM)
efab79c5 95#define DRV_MODULE_RELDATE "December 7, 2011"
1da177e4 96
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MC
97#define RESET_KIND_SHUTDOWN 0
98#define RESET_KIND_INIT 1
99#define RESET_KIND_SUSPEND 2
100
1da177e4
LT
101#define TG3_DEF_RX_MODE 0
102#define TG3_DEF_TX_MODE 0
103#define TG3_DEF_MSG_ENABLE \
104 (NETIF_MSG_DRV | \
105 NETIF_MSG_PROBE | \
106 NETIF_MSG_LINK | \
107 NETIF_MSG_TIMER | \
108 NETIF_MSG_IFDOWN | \
109 NETIF_MSG_IFUP | \
110 NETIF_MSG_RX_ERR | \
111 NETIF_MSG_TX_ERR)
112
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MC
113#define TG3_GRC_LCLCTL_PWRSW_DELAY 100
114
1da177e4
LT
115/* length of time before we decide the hardware is borked,
116 * and dev->tx_timeout() should be called to fix the problem
117 */
63c3a66f 118
1da177e4
LT
119#define TG3_TX_TIMEOUT (5 * HZ)
120
121/* hardware minimum and maximum for a single frame's data payload */
122#define TG3_MIN_MTU 60
123#define TG3_MAX_MTU(tp) \
63c3a66f 124 (tg3_flag(tp, JUMBO_CAPABLE) ? 9000 : 1500)
1da177e4
LT
125
126/* These numbers seem to be hard coded in the NIC firmware somehow.
127 * You can't change the ring sizes, but you can change where you place
128 * them in the NIC onboard memory.
129 */
7cb32cf2 130#define TG3_RX_STD_RING_SIZE(tp) \
63c3a66f 131 (tg3_flag(tp, LRG_PROD_RING_CAP) ? \
de9f5230 132 TG3_RX_STD_MAX_SIZE_5717 : TG3_RX_STD_MAX_SIZE_5700)
1da177e4 133#define TG3_DEF_RX_RING_PENDING 200
7cb32cf2 134#define TG3_RX_JMB_RING_SIZE(tp) \
63c3a66f 135 (tg3_flag(tp, LRG_PROD_RING_CAP) ? \
de9f5230 136 TG3_RX_JMB_MAX_SIZE_5717 : TG3_RX_JMB_MAX_SIZE_5700)
1da177e4
LT
137#define TG3_DEF_RX_JUMBO_RING_PENDING 100
138
139/* Do not place this n-ring entries value into the tp struct itself,
140 * we really want to expose these constants to GCC so that modulo et
141 * al. operations are done with shifts and masks instead of with
142 * hw multiply/modulo instructions. Another solution would be to
143 * replace things like '% foo' with '& (foo - 1)'.
144 */
1da177e4
LT
145
146#define TG3_TX_RING_SIZE 512
147#define TG3_DEF_TX_RING_PENDING (TG3_TX_RING_SIZE - 1)
148
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MC
149#define TG3_RX_STD_RING_BYTES(tp) \
150 (sizeof(struct tg3_rx_buffer_desc) * TG3_RX_STD_RING_SIZE(tp))
151#define TG3_RX_JMB_RING_BYTES(tp) \
152 (sizeof(struct tg3_ext_rx_buffer_desc) * TG3_RX_JMB_RING_SIZE(tp))
153#define TG3_RX_RCB_RING_BYTES(tp) \
7cb32cf2 154 (sizeof(struct tg3_rx_buffer_desc) * (tp->rx_ret_ring_mask + 1))
1da177e4
LT
155#define TG3_TX_RING_BYTES (sizeof(struct tg3_tx_buffer_desc) * \
156 TG3_TX_RING_SIZE)
1da177e4
LT
157#define NEXT_TX(N) (((N) + 1) & (TG3_TX_RING_SIZE - 1))
158
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MC
159#define TG3_DMA_BYTE_ENAB 64
160
161#define TG3_RX_STD_DMA_SZ 1536
162#define TG3_RX_JMB_DMA_SZ 9046
163
164#define TG3_RX_DMA_TO_MAP_SZ(x) ((x) + TG3_DMA_BYTE_ENAB)
165
166#define TG3_RX_STD_MAP_SZ TG3_RX_DMA_TO_MAP_SZ(TG3_RX_STD_DMA_SZ)
167#define TG3_RX_JMB_MAP_SZ TG3_RX_DMA_TO_MAP_SZ(TG3_RX_JMB_DMA_SZ)
1da177e4 168
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MC
169#define TG3_RX_STD_BUFF_RING_SIZE(tp) \
170 (sizeof(struct ring_info) * TG3_RX_STD_RING_SIZE(tp))
2b2cdb65 171
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MC
172#define TG3_RX_JMB_BUFF_RING_SIZE(tp) \
173 (sizeof(struct ring_info) * TG3_RX_JMB_RING_SIZE(tp))
2b2cdb65 174
d2757fc4
MC
175/* Due to a hardware bug, the 5701 can only DMA to memory addresses
176 * that are at least dword aligned when used in PCIX mode. The driver
177 * works around this bug by double copying the packet. This workaround
178 * is built into the normal double copy length check for efficiency.
179 *
180 * However, the double copy is only necessary on those architectures
181 * where unaligned memory accesses are inefficient. For those architectures
182 * where unaligned memory accesses incur little penalty, we can reintegrate
183 * the 5701 in the normal rx path. Doing so saves a device structure
184 * dereference by hardcoding the double copy threshold in place.
185 */
186#define TG3_RX_COPY_THRESHOLD 256
187#if NET_IP_ALIGN == 0 || defined(CONFIG_HAVE_EFFICIENT_UNALIGNED_ACCESS)
188 #define TG3_RX_COPY_THRESH(tp) TG3_RX_COPY_THRESHOLD
189#else
190 #define TG3_RX_COPY_THRESH(tp) ((tp)->rx_copy_thresh)
191#endif
192
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MC
193#if (NET_IP_ALIGN != 0)
194#define TG3_RX_OFFSET(tp) ((tp)->rx_offset)
195#else
9205fd9c 196#define TG3_RX_OFFSET(tp) (NET_SKB_PAD)
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MC
197#endif
198
1da177e4 199/* minimum number of free TX descriptors required to wake up TX process */
f3f3f27e 200#define TG3_TX_WAKEUP_THRESH(tnapi) ((tnapi)->tx_pending / 4)
55086ad9 201#define TG3_TX_BD_DMA_MAX_2K 2048
a4cb428d 202#define TG3_TX_BD_DMA_MAX_4K 4096
1da177e4 203
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MC
204#define TG3_RAW_IP_ALIGN 2
205
c6cdf436 206#define TG3_FW_UPDATE_TIMEOUT_SEC 5
21f7638e 207#define TG3_FW_UPDATE_FREQ_SEC (TG3_FW_UPDATE_TIMEOUT_SEC / 2)
c6cdf436 208
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JSR
209#define FIRMWARE_TG3 "tigon/tg3.bin"
210#define FIRMWARE_TG3TSO "tigon/tg3_tso.bin"
211#define FIRMWARE_TG3TSO5 "tigon/tg3_tso5.bin"
212
1da177e4 213static char version[] __devinitdata =
05dbe005 214 DRV_MODULE_NAME ".c:v" DRV_MODULE_VERSION " (" DRV_MODULE_RELDATE ")";
1da177e4
LT
215
216MODULE_AUTHOR("David S. Miller (davem@redhat.com) and Jeff Garzik (jgarzik@pobox.com)");
217MODULE_DESCRIPTION("Broadcom Tigon3 ethernet driver");
218MODULE_LICENSE("GPL");
219MODULE_VERSION(DRV_MODULE_VERSION);
077f849d
JSR
220MODULE_FIRMWARE(FIRMWARE_TG3);
221MODULE_FIRMWARE(FIRMWARE_TG3TSO);
222MODULE_FIRMWARE(FIRMWARE_TG3TSO5);
223
1da177e4
LT
224static int tg3_debug = -1; /* -1 == use TG3_DEF_MSG_ENABLE as value */
225module_param(tg3_debug, int, 0);
226MODULE_PARM_DESC(tg3_debug, "Tigon3 bitmapped debugging message enable value");
227
a3aa1884 228static DEFINE_PCI_DEVICE_TABLE(tg3_pci_tbl) = {
13185217
HK
229 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5700)},
230 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5701)},
231 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5702)},
232 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5703)},
233 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5704)},
234 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5702FE)},
235 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5705)},
236 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5705_2)},
237 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5705M)},
238 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5705M_2)},
239 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5702X)},
240 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5703X)},
241 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5704S)},
242 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5702A3)},
243 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5703A3)},
244 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5782)},
245 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5788)},
246 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5789)},
247 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5901)},
248 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5901_2)},
249 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5704S_2)},
250 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5705F)},
13185217 251 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5721)},
126a3368 252 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5722)},
13185217 253 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5751)},
13185217
HK
254 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5751M)},
255 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5751F)},
256 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5752)},
257 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5752M)},
258 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5753)},
259 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5753M)},
260 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5753F)},
261 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5754)},
262 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5754M)},
263 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5755)},
264 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5755M)},
126a3368 265 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5756)},
13185217
HK
266 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5786)},
267 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5787)},
268 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5787M)},
676917d4 269 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5787F)},
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HK
270 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5714)},
271 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5714S)},
272 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5715)},
273 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5715S)},
274 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5780)},
275 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5780S)},
276 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5781)},
b5d3772c
MC
277 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5906)},
278 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5906M)},
d30cdd28
MC
279 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5784)},
280 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5764)},
6c7af27c 281 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5723)},
9936bcf6
MC
282 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5761)},
283 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_TIGON3_5761E)},
c88e668b
MC
284 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, TG3PCI_DEVICE_TIGON3_5761S)},
285 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, TG3PCI_DEVICE_TIGON3_5761SE)},
2befdcea
MC
286 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, TG3PCI_DEVICE_TIGON3_5785_G)},
287 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, TG3PCI_DEVICE_TIGON3_5785_F)},
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MC
288 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, TG3PCI_DEVICE_TIGON3_57780)},
289 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, TG3PCI_DEVICE_TIGON3_57760)},
290 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, TG3PCI_DEVICE_TIGON3_57790)},
5e7ccf20 291 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, TG3PCI_DEVICE_TIGON3_57788)},
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MC
292 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, TG3PCI_DEVICE_TIGON3_5717)},
293 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, TG3PCI_DEVICE_TIGON3_5718)},
b0f75221
MC
294 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, TG3PCI_DEVICE_TIGON3_57781)},
295 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, TG3PCI_DEVICE_TIGON3_57785)},
296 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, TG3PCI_DEVICE_TIGON3_57761)},
297 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, TG3PCI_DEVICE_TIGON3_57765)},
298 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, TG3PCI_DEVICE_TIGON3_57791)},
299 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, TG3PCI_DEVICE_TIGON3_57795)},
302b500b 300 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, TG3PCI_DEVICE_TIGON3_5719)},
ba1f3c76 301 {PCI_DEVICE(PCI_VENDOR_ID_BROADCOM, TG3PCI_DEVICE_TIGON3_5720)},
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HK
302 {PCI_DEVICE(PCI_VENDOR_ID_SYSKONNECT, PCI_DEVICE_ID_SYSKONNECT_9DXX)},
303 {PCI_DEVICE(PCI_VENDOR_ID_SYSKONNECT, PCI_DEVICE_ID_SYSKONNECT_9MXX)},
304 {PCI_DEVICE(PCI_VENDOR_ID_ALTIMA, PCI_DEVICE_ID_ALTIMA_AC1000)},
305 {PCI_DEVICE(PCI_VENDOR_ID_ALTIMA, PCI_DEVICE_ID_ALTIMA_AC1001)},
306 {PCI_DEVICE(PCI_VENDOR_ID_ALTIMA, PCI_DEVICE_ID_ALTIMA_AC1003)},
307 {PCI_DEVICE(PCI_VENDOR_ID_ALTIMA, PCI_DEVICE_ID_ALTIMA_AC9100)},
308 {PCI_DEVICE(PCI_VENDOR_ID_APPLE, PCI_DEVICE_ID_APPLE_TIGON3)},
1dcb14d9 309 {PCI_DEVICE(0x10cf, 0x11a2)}, /* Fujitsu 1000base-SX with BCM5703SKHB */
13185217 310 {}
1da177e4
LT
311};
312
313MODULE_DEVICE_TABLE(pci, tg3_pci_tbl);
314
50da859d 315static const struct {
1da177e4 316 const char string[ETH_GSTRING_LEN];
48fa55a0 317} ethtool_stats_keys[] = {
1da177e4
LT
318 { "rx_octets" },
319 { "rx_fragments" },
320 { "rx_ucast_packets" },
321 { "rx_mcast_packets" },
322 { "rx_bcast_packets" },
323 { "rx_fcs_errors" },
324 { "rx_align_errors" },
325 { "rx_xon_pause_rcvd" },
326 { "rx_xoff_pause_rcvd" },
327 { "rx_mac_ctrl_rcvd" },
328 { "rx_xoff_entered" },
329 { "rx_frame_too_long_errors" },
330 { "rx_jabbers" },
331 { "rx_undersize_packets" },
332 { "rx_in_length_errors" },
333 { "rx_out_length_errors" },
334 { "rx_64_or_less_octet_packets" },
335 { "rx_65_to_127_octet_packets" },
336 { "rx_128_to_255_octet_packets" },
337 { "rx_256_to_511_octet_packets" },
338 { "rx_512_to_1023_octet_packets" },
339 { "rx_1024_to_1522_octet_packets" },
340 { "rx_1523_to_2047_octet_packets" },
341 { "rx_2048_to_4095_octet_packets" },
342 { "rx_4096_to_8191_octet_packets" },
343 { "rx_8192_to_9022_octet_packets" },
344
345 { "tx_octets" },
346 { "tx_collisions" },
347
348 { "tx_xon_sent" },
349 { "tx_xoff_sent" },
350 { "tx_flow_control" },
351 { "tx_mac_errors" },
352 { "tx_single_collisions" },
353 { "tx_mult_collisions" },
354 { "tx_deferred" },
355 { "tx_excessive_collisions" },
356 { "tx_late_collisions" },
357 { "tx_collide_2times" },
358 { "tx_collide_3times" },
359 { "tx_collide_4times" },
360 { "tx_collide_5times" },
361 { "tx_collide_6times" },
362 { "tx_collide_7times" },
363 { "tx_collide_8times" },
364 { "tx_collide_9times" },
365 { "tx_collide_10times" },
366 { "tx_collide_11times" },
367 { "tx_collide_12times" },
368 { "tx_collide_13times" },
369 { "tx_collide_14times" },
370 { "tx_collide_15times" },
371 { "tx_ucast_packets" },
372 { "tx_mcast_packets" },
373 { "tx_bcast_packets" },
374 { "tx_carrier_sense_errors" },
375 { "tx_discards" },
376 { "tx_errors" },
377
378 { "dma_writeq_full" },
379 { "dma_write_prioq_full" },
380 { "rxbds_empty" },
381 { "rx_discards" },
382 { "rx_errors" },
383 { "rx_threshold_hit" },
384
385 { "dma_readq_full" },
386 { "dma_read_prioq_full" },
387 { "tx_comp_queue_full" },
388
389 { "ring_set_send_prod_index" },
390 { "ring_status_update" },
391 { "nic_irqs" },
392 { "nic_avoided_irqs" },
4452d099
MC
393 { "nic_tx_threshold_hit" },
394
395 { "mbuf_lwm_thresh_hit" },
1da177e4
LT
396};
397
48fa55a0
MC
398#define TG3_NUM_STATS ARRAY_SIZE(ethtool_stats_keys)
399
400
50da859d 401static const struct {
4cafd3f5 402 const char string[ETH_GSTRING_LEN];
48fa55a0 403} ethtool_test_keys[] = {
28a45957
MC
404 { "nvram test (online) " },
405 { "link test (online) " },
406 { "register test (offline)" },
407 { "memory test (offline)" },
408 { "mac loopback test (offline)" },
409 { "phy loopback test (offline)" },
941ec90f 410 { "ext loopback test (offline)" },
28a45957 411 { "interrupt test (offline)" },
4cafd3f5
MC
412};
413
48fa55a0
MC
414#define TG3_NUM_TEST ARRAY_SIZE(ethtool_test_keys)
415
416
b401e9e2
MC
417static void tg3_write32(struct tg3 *tp, u32 off, u32 val)
418{
419 writel(val, tp->regs + off);
420}
421
422static u32 tg3_read32(struct tg3 *tp, u32 off)
423{
de6f31eb 424 return readl(tp->regs + off);
b401e9e2
MC
425}
426
0d3031d9
MC
427static void tg3_ape_write32(struct tg3 *tp, u32 off, u32 val)
428{
429 writel(val, tp->aperegs + off);
430}
431
432static u32 tg3_ape_read32(struct tg3 *tp, u32 off)
433{
de6f31eb 434 return readl(tp->aperegs + off);
0d3031d9
MC
435}
436
1da177e4
LT
437static void tg3_write_indirect_reg32(struct tg3 *tp, u32 off, u32 val)
438{
6892914f
MC
439 unsigned long flags;
440
441 spin_lock_irqsave(&tp->indirect_lock, flags);
1ee582d8
MC
442 pci_write_config_dword(tp->pdev, TG3PCI_REG_BASE_ADDR, off);
443 pci_write_config_dword(tp->pdev, TG3PCI_REG_DATA, val);
6892914f 444 spin_unlock_irqrestore(&tp->indirect_lock, flags);
1ee582d8
MC
445}
446
447static void tg3_write_flush_reg32(struct tg3 *tp, u32 off, u32 val)
448{
449 writel(val, tp->regs + off);
450 readl(tp->regs + off);
1da177e4
LT
451}
452
6892914f 453static u32 tg3_read_indirect_reg32(struct tg3 *tp, u32 off)
1da177e4 454{
6892914f
MC
455 unsigned long flags;
456 u32 val;
457
458 spin_lock_irqsave(&tp->indirect_lock, flags);
459 pci_write_config_dword(tp->pdev, TG3PCI_REG_BASE_ADDR, off);
460 pci_read_config_dword(tp->pdev, TG3PCI_REG_DATA, &val);
461 spin_unlock_irqrestore(&tp->indirect_lock, flags);
462 return val;
463}
464
465static void tg3_write_indirect_mbox(struct tg3 *tp, u32 off, u32 val)
466{
467 unsigned long flags;
468
469 if (off == (MAILBOX_RCVRET_CON_IDX_0 + TG3_64BIT_REG_LOW)) {
470 pci_write_config_dword(tp->pdev, TG3PCI_RCV_RET_RING_CON_IDX +
471 TG3_64BIT_REG_LOW, val);
472 return;
473 }
66711e66 474 if (off == TG3_RX_STD_PROD_IDX_REG) {
6892914f
MC
475 pci_write_config_dword(tp->pdev, TG3PCI_STD_RING_PROD_IDX +
476 TG3_64BIT_REG_LOW, val);
477 return;
1da177e4 478 }
6892914f
MC
479
480 spin_lock_irqsave(&tp->indirect_lock, flags);
481 pci_write_config_dword(tp->pdev, TG3PCI_REG_BASE_ADDR, off + 0x5600);
482 pci_write_config_dword(tp->pdev, TG3PCI_REG_DATA, val);
483 spin_unlock_irqrestore(&tp->indirect_lock, flags);
484
485 /* In indirect mode when disabling interrupts, we also need
486 * to clear the interrupt bit in the GRC local ctrl register.
487 */
488 if ((off == (MAILBOX_INTERRUPT_0 + TG3_64BIT_REG_LOW)) &&
489 (val == 0x1)) {
490 pci_write_config_dword(tp->pdev, TG3PCI_MISC_LOCAL_CTRL,
491 tp->grc_local_ctrl|GRC_LCLCTRL_CLEARINT);
492 }
493}
494
495static u32 tg3_read_indirect_mbox(struct tg3 *tp, u32 off)
496{
497 unsigned long flags;
498 u32 val;
499
500 spin_lock_irqsave(&tp->indirect_lock, flags);
501 pci_write_config_dword(tp->pdev, TG3PCI_REG_BASE_ADDR, off + 0x5600);
502 pci_read_config_dword(tp->pdev, TG3PCI_REG_DATA, &val);
503 spin_unlock_irqrestore(&tp->indirect_lock, flags);
504 return val;
505}
506
b401e9e2
MC
507/* usec_wait specifies the wait time in usec when writing to certain registers
508 * where it is unsafe to read back the register without some delay.
509 * GRC_LOCAL_CTRL is one example if the GPIOs are toggled to switch power.
510 * TG3PCI_CLOCK_CTRL is another example if the clock frequencies are changed.
511 */
512static void _tw32_flush(struct tg3 *tp, u32 off, u32 val, u32 usec_wait)
6892914f 513{
63c3a66f 514 if (tg3_flag(tp, PCIX_TARGET_HWBUG) || tg3_flag(tp, ICH_WORKAROUND))
b401e9e2
MC
515 /* Non-posted methods */
516 tp->write32(tp, off, val);
517 else {
518 /* Posted method */
519 tg3_write32(tp, off, val);
520 if (usec_wait)
521 udelay(usec_wait);
522 tp->read32(tp, off);
523 }
524 /* Wait again after the read for the posted method to guarantee that
525 * the wait time is met.
526 */
527 if (usec_wait)
528 udelay(usec_wait);
1da177e4
LT
529}
530
09ee929c
MC
531static inline void tw32_mailbox_flush(struct tg3 *tp, u32 off, u32 val)
532{
533 tp->write32_mbox(tp, off, val);
63c3a66f 534 if (!tg3_flag(tp, MBOX_WRITE_REORDER) && !tg3_flag(tp, ICH_WORKAROUND))
6892914f 535 tp->read32_mbox(tp, off);
09ee929c
MC
536}
537
20094930 538static void tg3_write32_tx_mbox(struct tg3 *tp, u32 off, u32 val)
1da177e4
LT
539{
540 void __iomem *mbox = tp->regs + off;
541 writel(val, mbox);
63c3a66f 542 if (tg3_flag(tp, TXD_MBOX_HWBUG))
1da177e4 543 writel(val, mbox);
63c3a66f 544 if (tg3_flag(tp, MBOX_WRITE_REORDER))
1da177e4
LT
545 readl(mbox);
546}
547
b5d3772c
MC
548static u32 tg3_read32_mbox_5906(struct tg3 *tp, u32 off)
549{
de6f31eb 550 return readl(tp->regs + off + GRCMBOX_BASE);
b5d3772c
MC
551}
552
553static void tg3_write32_mbox_5906(struct tg3 *tp, u32 off, u32 val)
554{
555 writel(val, tp->regs + off + GRCMBOX_BASE);
556}
557
c6cdf436 558#define tw32_mailbox(reg, val) tp->write32_mbox(tp, reg, val)
09ee929c 559#define tw32_mailbox_f(reg, val) tw32_mailbox_flush(tp, (reg), (val))
c6cdf436
MC
560#define tw32_rx_mbox(reg, val) tp->write32_rx_mbox(tp, reg, val)
561#define tw32_tx_mbox(reg, val) tp->write32_tx_mbox(tp, reg, val)
562#define tr32_mailbox(reg) tp->read32_mbox(tp, reg)
20094930 563
c6cdf436
MC
564#define tw32(reg, val) tp->write32(tp, reg, val)
565#define tw32_f(reg, val) _tw32_flush(tp, (reg), (val), 0)
566#define tw32_wait_f(reg, val, us) _tw32_flush(tp, (reg), (val), (us))
567#define tr32(reg) tp->read32(tp, reg)
1da177e4
LT
568
569static void tg3_write_mem(struct tg3 *tp, u32 off, u32 val)
570{
6892914f
MC
571 unsigned long flags;
572
6ff6f81d 573 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5906 &&
b5d3772c
MC
574 (off >= NIC_SRAM_STATS_BLK) && (off < NIC_SRAM_TX_BUFFER_DESC))
575 return;
576
6892914f 577 spin_lock_irqsave(&tp->indirect_lock, flags);
63c3a66f 578 if (tg3_flag(tp, SRAM_USE_CONFIG)) {
bbadf503
MC
579 pci_write_config_dword(tp->pdev, TG3PCI_MEM_WIN_BASE_ADDR, off);
580 pci_write_config_dword(tp->pdev, TG3PCI_MEM_WIN_DATA, val);
1da177e4 581
bbadf503
MC
582 /* Always leave this as zero. */
583 pci_write_config_dword(tp->pdev, TG3PCI_MEM_WIN_BASE_ADDR, 0);
584 } else {
585 tw32_f(TG3PCI_MEM_WIN_BASE_ADDR, off);
586 tw32_f(TG3PCI_MEM_WIN_DATA, val);
28fbef78 587
bbadf503
MC
588 /* Always leave this as zero. */
589 tw32_f(TG3PCI_MEM_WIN_BASE_ADDR, 0);
590 }
591 spin_unlock_irqrestore(&tp->indirect_lock, flags);
758a6139
DM
592}
593
1da177e4
LT
594static void tg3_read_mem(struct tg3 *tp, u32 off, u32 *val)
595{
6892914f
MC
596 unsigned long flags;
597
6ff6f81d 598 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5906 &&
b5d3772c
MC
599 (off >= NIC_SRAM_STATS_BLK) && (off < NIC_SRAM_TX_BUFFER_DESC)) {
600 *val = 0;
601 return;
602 }
603
6892914f 604 spin_lock_irqsave(&tp->indirect_lock, flags);
63c3a66f 605 if (tg3_flag(tp, SRAM_USE_CONFIG)) {
bbadf503
MC
606 pci_write_config_dword(tp->pdev, TG3PCI_MEM_WIN_BASE_ADDR, off);
607 pci_read_config_dword(tp->pdev, TG3PCI_MEM_WIN_DATA, val);
1da177e4 608
bbadf503
MC
609 /* Always leave this as zero. */
610 pci_write_config_dword(tp->pdev, TG3PCI_MEM_WIN_BASE_ADDR, 0);
611 } else {
612 tw32_f(TG3PCI_MEM_WIN_BASE_ADDR, off);
613 *val = tr32(TG3PCI_MEM_WIN_DATA);
614
615 /* Always leave this as zero. */
616 tw32_f(TG3PCI_MEM_WIN_BASE_ADDR, 0);
617 }
6892914f 618 spin_unlock_irqrestore(&tp->indirect_lock, flags);
1da177e4
LT
619}
620
0d3031d9
MC
621static void tg3_ape_lock_init(struct tg3 *tp)
622{
623 int i;
6f5c8f83 624 u32 regbase, bit;
f92d9dc1
MC
625
626 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5761)
627 regbase = TG3_APE_LOCK_GRANT;
628 else
629 regbase = TG3_APE_PER_LOCK_GRANT;
0d3031d9
MC
630
631 /* Make sure the driver hasn't any stale locks. */
78f94dc7
MC
632 for (i = TG3_APE_LOCK_PHY0; i <= TG3_APE_LOCK_GPIO; i++) {
633 switch (i) {
634 case TG3_APE_LOCK_PHY0:
635 case TG3_APE_LOCK_PHY1:
636 case TG3_APE_LOCK_PHY2:
637 case TG3_APE_LOCK_PHY3:
638 bit = APE_LOCK_GRANT_DRIVER;
639 break;
640 default:
641 if (!tp->pci_fn)
642 bit = APE_LOCK_GRANT_DRIVER;
643 else
644 bit = 1 << tp->pci_fn;
645 }
646 tg3_ape_write32(tp, regbase + 4 * i, bit);
6f5c8f83
MC
647 }
648
0d3031d9
MC
649}
650
651static int tg3_ape_lock(struct tg3 *tp, int locknum)
652{
653 int i, off;
654 int ret = 0;
6f5c8f83 655 u32 status, req, gnt, bit;
0d3031d9 656
63c3a66f 657 if (!tg3_flag(tp, ENABLE_APE))
0d3031d9
MC
658 return 0;
659
660 switch (locknum) {
6f5c8f83
MC
661 case TG3_APE_LOCK_GPIO:
662 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5761)
663 return 0;
33f401ae
MC
664 case TG3_APE_LOCK_GRC:
665 case TG3_APE_LOCK_MEM:
78f94dc7
MC
666 if (!tp->pci_fn)
667 bit = APE_LOCK_REQ_DRIVER;
668 else
669 bit = 1 << tp->pci_fn;
33f401ae
MC
670 break;
671 default:
672 return -EINVAL;
0d3031d9
MC
673 }
674
f92d9dc1
MC
675 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5761) {
676 req = TG3_APE_LOCK_REQ;
677 gnt = TG3_APE_LOCK_GRANT;
678 } else {
679 req = TG3_APE_PER_LOCK_REQ;
680 gnt = TG3_APE_PER_LOCK_GRANT;
681 }
682
0d3031d9
MC
683 off = 4 * locknum;
684
6f5c8f83 685 tg3_ape_write32(tp, req + off, bit);
0d3031d9
MC
686
687 /* Wait for up to 1 millisecond to acquire lock. */
688 for (i = 0; i < 100; i++) {
f92d9dc1 689 status = tg3_ape_read32(tp, gnt + off);
6f5c8f83 690 if (status == bit)
0d3031d9
MC
691 break;
692 udelay(10);
693 }
694
6f5c8f83 695 if (status != bit) {
0d3031d9 696 /* Revoke the lock request. */
6f5c8f83 697 tg3_ape_write32(tp, gnt + off, bit);
0d3031d9
MC
698 ret = -EBUSY;
699 }
700
701 return ret;
702}
703
704static void tg3_ape_unlock(struct tg3 *tp, int locknum)
705{
6f5c8f83 706 u32 gnt, bit;
0d3031d9 707
63c3a66f 708 if (!tg3_flag(tp, ENABLE_APE))
0d3031d9
MC
709 return;
710
711 switch (locknum) {
6f5c8f83
MC
712 case TG3_APE_LOCK_GPIO:
713 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5761)
714 return;
33f401ae
MC
715 case TG3_APE_LOCK_GRC:
716 case TG3_APE_LOCK_MEM:
78f94dc7
MC
717 if (!tp->pci_fn)
718 bit = APE_LOCK_GRANT_DRIVER;
719 else
720 bit = 1 << tp->pci_fn;
33f401ae
MC
721 break;
722 default:
723 return;
0d3031d9
MC
724 }
725
f92d9dc1
MC
726 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5761)
727 gnt = TG3_APE_LOCK_GRANT;
728 else
729 gnt = TG3_APE_PER_LOCK_GRANT;
730
6f5c8f83 731 tg3_ape_write32(tp, gnt + 4 * locknum, bit);
0d3031d9
MC
732}
733
fd6d3f0e
MC
734static void tg3_ape_send_event(struct tg3 *tp, u32 event)
735{
736 int i;
737 u32 apedata;
738
739 /* NCSI does not support APE events */
740 if (tg3_flag(tp, APE_HAS_NCSI))
741 return;
742
743 apedata = tg3_ape_read32(tp, TG3_APE_SEG_SIG);
744 if (apedata != APE_SEG_SIG_MAGIC)
745 return;
746
747 apedata = tg3_ape_read32(tp, TG3_APE_FW_STATUS);
748 if (!(apedata & APE_FW_STATUS_READY))
749 return;
750
751 /* Wait for up to 1 millisecond for APE to service previous event. */
752 for (i = 0; i < 10; i++) {
753 if (tg3_ape_lock(tp, TG3_APE_LOCK_MEM))
754 return;
755
756 apedata = tg3_ape_read32(tp, TG3_APE_EVENT_STATUS);
757
758 if (!(apedata & APE_EVENT_STATUS_EVENT_PENDING))
759 tg3_ape_write32(tp, TG3_APE_EVENT_STATUS,
760 event | APE_EVENT_STATUS_EVENT_PENDING);
761
762 tg3_ape_unlock(tp, TG3_APE_LOCK_MEM);
763
764 if (!(apedata & APE_EVENT_STATUS_EVENT_PENDING))
765 break;
766
767 udelay(100);
768 }
769
770 if (!(apedata & APE_EVENT_STATUS_EVENT_PENDING))
771 tg3_ape_write32(tp, TG3_APE_EVENT, APE_EVENT_1);
772}
773
774static void tg3_ape_driver_state_change(struct tg3 *tp, int kind)
775{
776 u32 event;
777 u32 apedata;
778
779 if (!tg3_flag(tp, ENABLE_APE))
780 return;
781
782 switch (kind) {
783 case RESET_KIND_INIT:
784 tg3_ape_write32(tp, TG3_APE_HOST_SEG_SIG,
785 APE_HOST_SEG_SIG_MAGIC);
786 tg3_ape_write32(tp, TG3_APE_HOST_SEG_LEN,
787 APE_HOST_SEG_LEN_MAGIC);
788 apedata = tg3_ape_read32(tp, TG3_APE_HOST_INIT_COUNT);
789 tg3_ape_write32(tp, TG3_APE_HOST_INIT_COUNT, ++apedata);
790 tg3_ape_write32(tp, TG3_APE_HOST_DRIVER_ID,
791 APE_HOST_DRIVER_ID_MAGIC(TG3_MAJ_NUM, TG3_MIN_NUM));
792 tg3_ape_write32(tp, TG3_APE_HOST_BEHAVIOR,
793 APE_HOST_BEHAV_NO_PHYLOCK);
794 tg3_ape_write32(tp, TG3_APE_HOST_DRVR_STATE,
795 TG3_APE_HOST_DRVR_STATE_START);
796
797 event = APE_EVENT_STATUS_STATE_START;
798 break;
799 case RESET_KIND_SHUTDOWN:
800 /* With the interface we are currently using,
801 * APE does not track driver state. Wiping
802 * out the HOST SEGMENT SIGNATURE forces
803 * the APE to assume OS absent status.
804 */
805 tg3_ape_write32(tp, TG3_APE_HOST_SEG_SIG, 0x0);
806
807 if (device_may_wakeup(&tp->pdev->dev) &&
808 tg3_flag(tp, WOL_ENABLE)) {
809 tg3_ape_write32(tp, TG3_APE_HOST_WOL_SPEED,
810 TG3_APE_HOST_WOL_SPEED_AUTO);
811 apedata = TG3_APE_HOST_DRVR_STATE_WOL;
812 } else
813 apedata = TG3_APE_HOST_DRVR_STATE_UNLOAD;
814
815 tg3_ape_write32(tp, TG3_APE_HOST_DRVR_STATE, apedata);
816
817 event = APE_EVENT_STATUS_STATE_UNLOAD;
818 break;
819 case RESET_KIND_SUSPEND:
820 event = APE_EVENT_STATUS_STATE_SUSPEND;
821 break;
822 default:
823 return;
824 }
825
826 event |= APE_EVENT_STATUS_DRIVER_EVNT | APE_EVENT_STATUS_STATE_CHNGE;
827
828 tg3_ape_send_event(tp, event);
829}
830
1da177e4
LT
831static void tg3_disable_ints(struct tg3 *tp)
832{
89aeb3bc
MC
833 int i;
834
1da177e4
LT
835 tw32(TG3PCI_MISC_HOST_CTRL,
836 (tp->misc_host_ctrl | MISC_HOST_CTRL_MASK_PCI_INT));
89aeb3bc
MC
837 for (i = 0; i < tp->irq_max; i++)
838 tw32_mailbox_f(tp->napi[i].int_mbox, 0x00000001);
1da177e4
LT
839}
840
1da177e4
LT
841static void tg3_enable_ints(struct tg3 *tp)
842{
89aeb3bc 843 int i;
89aeb3bc 844
bbe832c0
MC
845 tp->irq_sync = 0;
846 wmb();
847
1da177e4
LT
848 tw32(TG3PCI_MISC_HOST_CTRL,
849 (tp->misc_host_ctrl & ~MISC_HOST_CTRL_MASK_PCI_INT));
89aeb3bc 850
f89f38b8 851 tp->coal_now = tp->coalesce_mode | HOSTCC_MODE_ENABLE;
89aeb3bc
MC
852 for (i = 0; i < tp->irq_cnt; i++) {
853 struct tg3_napi *tnapi = &tp->napi[i];
c6cdf436 854
898a56f8 855 tw32_mailbox_f(tnapi->int_mbox, tnapi->last_tag << 24);
63c3a66f 856 if (tg3_flag(tp, 1SHOT_MSI))
89aeb3bc 857 tw32_mailbox_f(tnapi->int_mbox, tnapi->last_tag << 24);
f19af9c2 858
f89f38b8 859 tp->coal_now |= tnapi->coal_now;
89aeb3bc 860 }
f19af9c2
MC
861
862 /* Force an initial interrupt */
63c3a66f 863 if (!tg3_flag(tp, TAGGED_STATUS) &&
f19af9c2
MC
864 (tp->napi[0].hw_status->status & SD_STATUS_UPDATED))
865 tw32(GRC_LOCAL_CTRL, tp->grc_local_ctrl | GRC_LCLCTRL_SETINT);
866 else
f89f38b8
MC
867 tw32(HOSTCC_MODE, tp->coal_now);
868
869 tp->coal_now &= ~(tp->napi[0].coal_now | tp->napi[1].coal_now);
1da177e4
LT
870}
871
17375d25 872static inline unsigned int tg3_has_work(struct tg3_napi *tnapi)
04237ddd 873{
17375d25 874 struct tg3 *tp = tnapi->tp;
898a56f8 875 struct tg3_hw_status *sblk = tnapi->hw_status;
04237ddd
MC
876 unsigned int work_exists = 0;
877
878 /* check for phy events */
63c3a66f 879 if (!(tg3_flag(tp, USE_LINKCHG_REG) || tg3_flag(tp, POLL_SERDES))) {
04237ddd
MC
880 if (sblk->status & SD_STATUS_LINK_CHG)
881 work_exists = 1;
882 }
883 /* check for RX/TX work to do */
f3f3f27e 884 if (sblk->idx[0].tx_consumer != tnapi->tx_cons ||
8d9d7cfc 885 *(tnapi->rx_rcb_prod_idx) != tnapi->rx_rcb_ptr)
04237ddd
MC
886 work_exists = 1;
887
888 return work_exists;
889}
890
17375d25 891/* tg3_int_reenable
04237ddd
MC
892 * similar to tg3_enable_ints, but it accurately determines whether there
893 * is new work pending and can return without flushing the PIO write
6aa20a22 894 * which reenables interrupts
1da177e4 895 */
17375d25 896static void tg3_int_reenable(struct tg3_napi *tnapi)
1da177e4 897{
17375d25
MC
898 struct tg3 *tp = tnapi->tp;
899
898a56f8 900 tw32_mailbox(tnapi->int_mbox, tnapi->last_tag << 24);
1da177e4
LT
901 mmiowb();
902
fac9b83e
DM
903 /* When doing tagged status, this work check is unnecessary.
904 * The last_tag we write above tells the chip which piece of
905 * work we've completed.
906 */
63c3a66f 907 if (!tg3_flag(tp, TAGGED_STATUS) && tg3_has_work(tnapi))
04237ddd 908 tw32(HOSTCC_MODE, tp->coalesce_mode |
fd2ce37f 909 HOSTCC_MODE_ENABLE | tnapi->coal_now);
1da177e4
LT
910}
911
1da177e4
LT
912static void tg3_switch_clocks(struct tg3 *tp)
913{
f6eb9b1f 914 u32 clock_ctrl;
1da177e4
LT
915 u32 orig_clock_ctrl;
916
63c3a66f 917 if (tg3_flag(tp, CPMU_PRESENT) || tg3_flag(tp, 5780_CLASS))
4cf78e4f
MC
918 return;
919
f6eb9b1f
MC
920 clock_ctrl = tr32(TG3PCI_CLOCK_CTRL);
921
1da177e4
LT
922 orig_clock_ctrl = clock_ctrl;
923 clock_ctrl &= (CLOCK_CTRL_FORCE_CLKRUN |
924 CLOCK_CTRL_CLKRUN_OENABLE |
925 0x1f);
926 tp->pci_clock_ctrl = clock_ctrl;
927
63c3a66f 928 if (tg3_flag(tp, 5705_PLUS)) {
1da177e4 929 if (orig_clock_ctrl & CLOCK_CTRL_625_CORE) {
b401e9e2
MC
930 tw32_wait_f(TG3PCI_CLOCK_CTRL,
931 clock_ctrl | CLOCK_CTRL_625_CORE, 40);
1da177e4
LT
932 }
933 } else if ((orig_clock_ctrl & CLOCK_CTRL_44MHZ_CORE) != 0) {
b401e9e2
MC
934 tw32_wait_f(TG3PCI_CLOCK_CTRL,
935 clock_ctrl |
936 (CLOCK_CTRL_44MHZ_CORE | CLOCK_CTRL_ALTCLK),
937 40);
938 tw32_wait_f(TG3PCI_CLOCK_CTRL,
939 clock_ctrl | (CLOCK_CTRL_ALTCLK),
940 40);
1da177e4 941 }
b401e9e2 942 tw32_wait_f(TG3PCI_CLOCK_CTRL, clock_ctrl, 40);
1da177e4
LT
943}
944
945#define PHY_BUSY_LOOPS 5000
946
947static int tg3_readphy(struct tg3 *tp, int reg, u32 *val)
948{
949 u32 frame_val;
950 unsigned int loops;
951 int ret;
952
953 if ((tp->mi_mode & MAC_MI_MODE_AUTO_POLL) != 0) {
954 tw32_f(MAC_MI_MODE,
955 (tp->mi_mode & ~MAC_MI_MODE_AUTO_POLL));
956 udelay(80);
957 }
958
959 *val = 0x0;
960
882e9793 961 frame_val = ((tp->phy_addr << MI_COM_PHY_ADDR_SHIFT) &
1da177e4
LT
962 MI_COM_PHY_ADDR_MASK);
963 frame_val |= ((reg << MI_COM_REG_ADDR_SHIFT) &
964 MI_COM_REG_ADDR_MASK);
965 frame_val |= (MI_COM_CMD_READ | MI_COM_START);
6aa20a22 966
1da177e4
LT
967 tw32_f(MAC_MI_COM, frame_val);
968
969 loops = PHY_BUSY_LOOPS;
970 while (loops != 0) {
971 udelay(10);
972 frame_val = tr32(MAC_MI_COM);
973
974 if ((frame_val & MI_COM_BUSY) == 0) {
975 udelay(5);
976 frame_val = tr32(MAC_MI_COM);
977 break;
978 }
979 loops -= 1;
980 }
981
982 ret = -EBUSY;
983 if (loops != 0) {
984 *val = frame_val & MI_COM_DATA_MASK;
985 ret = 0;
986 }
987
988 if ((tp->mi_mode & MAC_MI_MODE_AUTO_POLL) != 0) {
989 tw32_f(MAC_MI_MODE, tp->mi_mode);
990 udelay(80);
991 }
992
993 return ret;
994}
995
996static int tg3_writephy(struct tg3 *tp, int reg, u32 val)
997{
998 u32 frame_val;
999 unsigned int loops;
1000 int ret;
1001
f07e9af3 1002 if ((tp->phy_flags & TG3_PHYFLG_IS_FET) &&
221c5637 1003 (reg == MII_CTRL1000 || reg == MII_TG3_AUX_CTRL))
b5d3772c
MC
1004 return 0;
1005
1da177e4
LT
1006 if ((tp->mi_mode & MAC_MI_MODE_AUTO_POLL) != 0) {
1007 tw32_f(MAC_MI_MODE,
1008 (tp->mi_mode & ~MAC_MI_MODE_AUTO_POLL));
1009 udelay(80);
1010 }
1011
882e9793 1012 frame_val = ((tp->phy_addr << MI_COM_PHY_ADDR_SHIFT) &
1da177e4
LT
1013 MI_COM_PHY_ADDR_MASK);
1014 frame_val |= ((reg << MI_COM_REG_ADDR_SHIFT) &
1015 MI_COM_REG_ADDR_MASK);
1016 frame_val |= (val & MI_COM_DATA_MASK);
1017 frame_val |= (MI_COM_CMD_WRITE | MI_COM_START);
6aa20a22 1018
1da177e4
LT
1019 tw32_f(MAC_MI_COM, frame_val);
1020
1021 loops = PHY_BUSY_LOOPS;
1022 while (loops != 0) {
1023 udelay(10);
1024 frame_val = tr32(MAC_MI_COM);
1025 if ((frame_val & MI_COM_BUSY) == 0) {
1026 udelay(5);
1027 frame_val = tr32(MAC_MI_COM);
1028 break;
1029 }
1030 loops -= 1;
1031 }
1032
1033 ret = -EBUSY;
1034 if (loops != 0)
1035 ret = 0;
1036
1037 if ((tp->mi_mode & MAC_MI_MODE_AUTO_POLL) != 0) {
1038 tw32_f(MAC_MI_MODE, tp->mi_mode);
1039 udelay(80);
1040 }
1041
1042 return ret;
1043}
1044
b0988c15
MC
1045static int tg3_phy_cl45_write(struct tg3 *tp, u32 devad, u32 addr, u32 val)
1046{
1047 int err;
1048
1049 err = tg3_writephy(tp, MII_TG3_MMD_CTRL, devad);
1050 if (err)
1051 goto done;
1052
1053 err = tg3_writephy(tp, MII_TG3_MMD_ADDRESS, addr);
1054 if (err)
1055 goto done;
1056
1057 err = tg3_writephy(tp, MII_TG3_MMD_CTRL,
1058 MII_TG3_MMD_CTRL_DATA_NOINC | devad);
1059 if (err)
1060 goto done;
1061
1062 err = tg3_writephy(tp, MII_TG3_MMD_ADDRESS, val);
1063
1064done:
1065 return err;
1066}
1067
1068static int tg3_phy_cl45_read(struct tg3 *tp, u32 devad, u32 addr, u32 *val)
1069{
1070 int err;
1071
1072 err = tg3_writephy(tp, MII_TG3_MMD_CTRL, devad);
1073 if (err)
1074 goto done;
1075
1076 err = tg3_writephy(tp, MII_TG3_MMD_ADDRESS, addr);
1077 if (err)
1078 goto done;
1079
1080 err = tg3_writephy(tp, MII_TG3_MMD_CTRL,
1081 MII_TG3_MMD_CTRL_DATA_NOINC | devad);
1082 if (err)
1083 goto done;
1084
1085 err = tg3_readphy(tp, MII_TG3_MMD_ADDRESS, val);
1086
1087done:
1088 return err;
1089}
1090
1091static int tg3_phydsp_read(struct tg3 *tp, u32 reg, u32 *val)
1092{
1093 int err;
1094
1095 err = tg3_writephy(tp, MII_TG3_DSP_ADDRESS, reg);
1096 if (!err)
1097 err = tg3_readphy(tp, MII_TG3_DSP_RW_PORT, val);
1098
1099 return err;
1100}
1101
1102static int tg3_phydsp_write(struct tg3 *tp, u32 reg, u32 val)
1103{
1104 int err;
1105
1106 err = tg3_writephy(tp, MII_TG3_DSP_ADDRESS, reg);
1107 if (!err)
1108 err = tg3_writephy(tp, MII_TG3_DSP_RW_PORT, val);
1109
1110 return err;
1111}
1112
15ee95c3
MC
1113static int tg3_phy_auxctl_read(struct tg3 *tp, int reg, u32 *val)
1114{
1115 int err;
1116
1117 err = tg3_writephy(tp, MII_TG3_AUX_CTRL,
1118 (reg << MII_TG3_AUXCTL_MISC_RDSEL_SHIFT) |
1119 MII_TG3_AUXCTL_SHDWSEL_MISC);
1120 if (!err)
1121 err = tg3_readphy(tp, MII_TG3_AUX_CTRL, val);
1122
1123 return err;
1124}
1125
b4bd2929
MC
1126static int tg3_phy_auxctl_write(struct tg3 *tp, int reg, u32 set)
1127{
1128 if (reg == MII_TG3_AUXCTL_SHDWSEL_MISC)
1129 set |= MII_TG3_AUXCTL_MISC_WREN;
1130
1131 return tg3_writephy(tp, MII_TG3_AUX_CTRL, set | reg);
1132}
1133
1d36ba45
MC
1134#define TG3_PHY_AUXCTL_SMDSP_ENABLE(tp) \
1135 tg3_phy_auxctl_write((tp), MII_TG3_AUXCTL_SHDWSEL_AUXCTL, \
1136 MII_TG3_AUXCTL_ACTL_SMDSP_ENA | \
1137 MII_TG3_AUXCTL_ACTL_TX_6DB)
1138
1139#define TG3_PHY_AUXCTL_SMDSP_DISABLE(tp) \
1140 tg3_phy_auxctl_write((tp), MII_TG3_AUXCTL_SHDWSEL_AUXCTL, \
1141 MII_TG3_AUXCTL_ACTL_TX_6DB);
1142
95e2869a
MC
1143static int tg3_bmcr_reset(struct tg3 *tp)
1144{
1145 u32 phy_control;
1146 int limit, err;
1147
1148 /* OK, reset it, and poll the BMCR_RESET bit until it
1149 * clears or we time out.
1150 */
1151 phy_control = BMCR_RESET;
1152 err = tg3_writephy(tp, MII_BMCR, phy_control);
1153 if (err != 0)
1154 return -EBUSY;
1155
1156 limit = 5000;
1157 while (limit--) {
1158 err = tg3_readphy(tp, MII_BMCR, &phy_control);
1159 if (err != 0)
1160 return -EBUSY;
1161
1162 if ((phy_control & BMCR_RESET) == 0) {
1163 udelay(40);
1164 break;
1165 }
1166 udelay(10);
1167 }
d4675b52 1168 if (limit < 0)
95e2869a
MC
1169 return -EBUSY;
1170
1171 return 0;
1172}
1173
158d7abd
MC
1174static int tg3_mdio_read(struct mii_bus *bp, int mii_id, int reg)
1175{
3d16543d 1176 struct tg3 *tp = bp->priv;
158d7abd
MC
1177 u32 val;
1178
24bb4fb6 1179 spin_lock_bh(&tp->lock);
158d7abd
MC
1180
1181 if (tg3_readphy(tp, reg, &val))
24bb4fb6
MC
1182 val = -EIO;
1183
1184 spin_unlock_bh(&tp->lock);
158d7abd
MC
1185
1186 return val;
1187}
1188
1189static int tg3_mdio_write(struct mii_bus *bp, int mii_id, int reg, u16 val)
1190{
3d16543d 1191 struct tg3 *tp = bp->priv;
24bb4fb6 1192 u32 ret = 0;
158d7abd 1193
24bb4fb6 1194 spin_lock_bh(&tp->lock);
158d7abd
MC
1195
1196 if (tg3_writephy(tp, reg, val))
24bb4fb6 1197 ret = -EIO;
158d7abd 1198
24bb4fb6
MC
1199 spin_unlock_bh(&tp->lock);
1200
1201 return ret;
158d7abd
MC
1202}
1203
1204static int tg3_mdio_reset(struct mii_bus *bp)
1205{
1206 return 0;
1207}
1208
9c61d6bc 1209static void tg3_mdio_config_5785(struct tg3 *tp)
a9daf367
MC
1210{
1211 u32 val;
fcb389df 1212 struct phy_device *phydev;
a9daf367 1213
3f0e3ad7 1214 phydev = tp->mdio_bus->phy_map[TG3_PHY_MII_ADDR];
fcb389df 1215 switch (phydev->drv->phy_id & phydev->drv->phy_id_mask) {
6a443a0f
MC
1216 case PHY_ID_BCM50610:
1217 case PHY_ID_BCM50610M:
fcb389df
MC
1218 val = MAC_PHYCFG2_50610_LED_MODES;
1219 break;
6a443a0f 1220 case PHY_ID_BCMAC131:
fcb389df
MC
1221 val = MAC_PHYCFG2_AC131_LED_MODES;
1222 break;
6a443a0f 1223 case PHY_ID_RTL8211C:
fcb389df
MC
1224 val = MAC_PHYCFG2_RTL8211C_LED_MODES;
1225 break;
6a443a0f 1226 case PHY_ID_RTL8201E:
fcb389df
MC
1227 val = MAC_PHYCFG2_RTL8201E_LED_MODES;
1228 break;
1229 default:
a9daf367 1230 return;
fcb389df
MC
1231 }
1232
1233 if (phydev->interface != PHY_INTERFACE_MODE_RGMII) {
1234 tw32(MAC_PHYCFG2, val);
1235
1236 val = tr32(MAC_PHYCFG1);
bb85fbb6
MC
1237 val &= ~(MAC_PHYCFG1_RGMII_INT |
1238 MAC_PHYCFG1_RXCLK_TO_MASK | MAC_PHYCFG1_TXCLK_TO_MASK);
1239 val |= MAC_PHYCFG1_RXCLK_TIMEOUT | MAC_PHYCFG1_TXCLK_TIMEOUT;
fcb389df
MC
1240 tw32(MAC_PHYCFG1, val);
1241
1242 return;
1243 }
1244
63c3a66f 1245 if (!tg3_flag(tp, RGMII_INBAND_DISABLE))
fcb389df
MC
1246 val |= MAC_PHYCFG2_EMODE_MASK_MASK |
1247 MAC_PHYCFG2_FMODE_MASK_MASK |
1248 MAC_PHYCFG2_GMODE_MASK_MASK |
1249 MAC_PHYCFG2_ACT_MASK_MASK |
1250 MAC_PHYCFG2_QUAL_MASK_MASK |
1251 MAC_PHYCFG2_INBAND_ENABLE;
1252
1253 tw32(MAC_PHYCFG2, val);
a9daf367 1254
bb85fbb6
MC
1255 val = tr32(MAC_PHYCFG1);
1256 val &= ~(MAC_PHYCFG1_RXCLK_TO_MASK | MAC_PHYCFG1_TXCLK_TO_MASK |
1257 MAC_PHYCFG1_RGMII_EXT_RX_DEC | MAC_PHYCFG1_RGMII_SND_STAT_EN);
63c3a66f
JP
1258 if (!tg3_flag(tp, RGMII_INBAND_DISABLE)) {
1259 if (tg3_flag(tp, RGMII_EXT_IBND_RX_EN))
a9daf367 1260 val |= MAC_PHYCFG1_RGMII_EXT_RX_DEC;
63c3a66f 1261 if (tg3_flag(tp, RGMII_EXT_IBND_TX_EN))
a9daf367
MC
1262 val |= MAC_PHYCFG1_RGMII_SND_STAT_EN;
1263 }
bb85fbb6
MC
1264 val |= MAC_PHYCFG1_RXCLK_TIMEOUT | MAC_PHYCFG1_TXCLK_TIMEOUT |
1265 MAC_PHYCFG1_RGMII_INT | MAC_PHYCFG1_TXC_DRV;
1266 tw32(MAC_PHYCFG1, val);
a9daf367 1267
a9daf367
MC
1268 val = tr32(MAC_EXT_RGMII_MODE);
1269 val &= ~(MAC_RGMII_MODE_RX_INT_B |
1270 MAC_RGMII_MODE_RX_QUALITY |
1271 MAC_RGMII_MODE_RX_ACTIVITY |
1272 MAC_RGMII_MODE_RX_ENG_DET |
1273 MAC_RGMII_MODE_TX_ENABLE |
1274 MAC_RGMII_MODE_TX_LOWPWR |
1275 MAC_RGMII_MODE_TX_RESET);
63c3a66f
JP
1276 if (!tg3_flag(tp, RGMII_INBAND_DISABLE)) {
1277 if (tg3_flag(tp, RGMII_EXT_IBND_RX_EN))
a9daf367
MC
1278 val |= MAC_RGMII_MODE_RX_INT_B |
1279 MAC_RGMII_MODE_RX_QUALITY |
1280 MAC_RGMII_MODE_RX_ACTIVITY |
1281 MAC_RGMII_MODE_RX_ENG_DET;
63c3a66f 1282 if (tg3_flag(tp, RGMII_EXT_IBND_TX_EN))
a9daf367
MC
1283 val |= MAC_RGMII_MODE_TX_ENABLE |
1284 MAC_RGMII_MODE_TX_LOWPWR |
1285 MAC_RGMII_MODE_TX_RESET;
1286 }
1287 tw32(MAC_EXT_RGMII_MODE, val);
1288}
1289
158d7abd
MC
1290static void tg3_mdio_start(struct tg3 *tp)
1291{
158d7abd
MC
1292 tp->mi_mode &= ~MAC_MI_MODE_AUTO_POLL;
1293 tw32_f(MAC_MI_MODE, tp->mi_mode);
1294 udelay(80);
a9daf367 1295
63c3a66f 1296 if (tg3_flag(tp, MDIOBUS_INITED) &&
9ea4818d
MC
1297 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5785)
1298 tg3_mdio_config_5785(tp);
1299}
1300
1301static int tg3_mdio_init(struct tg3 *tp)
1302{
1303 int i;
1304 u32 reg;
1305 struct phy_device *phydev;
1306
63c3a66f 1307 if (tg3_flag(tp, 5717_PLUS)) {
9c7df915 1308 u32 is_serdes;
882e9793 1309
69f11c99 1310 tp->phy_addr = tp->pci_fn + 1;
882e9793 1311
d1ec96af
MC
1312 if (tp->pci_chip_rev_id != CHIPREV_ID_5717_A0)
1313 is_serdes = tr32(SG_DIG_STATUS) & SG_DIG_IS_SERDES;
1314 else
1315 is_serdes = tr32(TG3_CPMU_PHY_STRAP) &
1316 TG3_CPMU_PHY_STRAP_IS_SERDES;
882e9793
MC
1317 if (is_serdes)
1318 tp->phy_addr += 7;
1319 } else
3f0e3ad7 1320 tp->phy_addr = TG3_PHY_MII_ADDR;
882e9793 1321
158d7abd
MC
1322 tg3_mdio_start(tp);
1323
63c3a66f 1324 if (!tg3_flag(tp, USE_PHYLIB) || tg3_flag(tp, MDIOBUS_INITED))
158d7abd
MC
1325 return 0;
1326
298cf9be
LB
1327 tp->mdio_bus = mdiobus_alloc();
1328 if (tp->mdio_bus == NULL)
1329 return -ENOMEM;
158d7abd 1330
298cf9be
LB
1331 tp->mdio_bus->name = "tg3 mdio bus";
1332 snprintf(tp->mdio_bus->id, MII_BUS_ID_SIZE, "%x",
158d7abd 1333 (tp->pdev->bus->number << 8) | tp->pdev->devfn);
298cf9be
LB
1334 tp->mdio_bus->priv = tp;
1335 tp->mdio_bus->parent = &tp->pdev->dev;
1336 tp->mdio_bus->read = &tg3_mdio_read;
1337 tp->mdio_bus->write = &tg3_mdio_write;
1338 tp->mdio_bus->reset = &tg3_mdio_reset;
3f0e3ad7 1339 tp->mdio_bus->phy_mask = ~(1 << TG3_PHY_MII_ADDR);
298cf9be 1340 tp->mdio_bus->irq = &tp->mdio_irq[0];
158d7abd
MC
1341
1342 for (i = 0; i < PHY_MAX_ADDR; i++)
298cf9be 1343 tp->mdio_bus->irq[i] = PHY_POLL;
158d7abd
MC
1344
1345 /* The bus registration will look for all the PHYs on the mdio bus.
1346 * Unfortunately, it does not ensure the PHY is powered up before
1347 * accessing the PHY ID registers. A chip reset is the
1348 * quickest way to bring the device back to an operational state..
1349 */
1350 if (tg3_readphy(tp, MII_BMCR, &reg) || (reg & BMCR_PDOWN))
1351 tg3_bmcr_reset(tp);
1352
298cf9be 1353 i = mdiobus_register(tp->mdio_bus);
a9daf367 1354 if (i) {
ab96b241 1355 dev_warn(&tp->pdev->dev, "mdiobus_reg failed (0x%x)\n", i);
9c61d6bc 1356 mdiobus_free(tp->mdio_bus);
a9daf367
MC
1357 return i;
1358 }
158d7abd 1359
3f0e3ad7 1360 phydev = tp->mdio_bus->phy_map[TG3_PHY_MII_ADDR];
a9daf367 1361
9c61d6bc 1362 if (!phydev || !phydev->drv) {
ab96b241 1363 dev_warn(&tp->pdev->dev, "No PHY devices\n");
9c61d6bc
MC
1364 mdiobus_unregister(tp->mdio_bus);
1365 mdiobus_free(tp->mdio_bus);
1366 return -ENODEV;
1367 }
1368
1369 switch (phydev->drv->phy_id & phydev->drv->phy_id_mask) {
6a443a0f 1370 case PHY_ID_BCM57780:
321d32a0 1371 phydev->interface = PHY_INTERFACE_MODE_GMII;
c704dc23 1372 phydev->dev_flags |= PHY_BRCM_AUTO_PWRDWN_ENABLE;
321d32a0 1373 break;
6a443a0f
MC
1374 case PHY_ID_BCM50610:
1375 case PHY_ID_BCM50610M:
32e5a8d6 1376 phydev->dev_flags |= PHY_BRCM_CLEAR_RGMII_MODE |
c704dc23 1377 PHY_BRCM_RX_REFCLK_UNUSED |
52fae083 1378 PHY_BRCM_DIS_TXCRXC_NOENRGY |
c704dc23 1379 PHY_BRCM_AUTO_PWRDWN_ENABLE;
63c3a66f 1380 if (tg3_flag(tp, RGMII_INBAND_DISABLE))
a9daf367 1381 phydev->dev_flags |= PHY_BRCM_STD_IBND_DISABLE;
63c3a66f 1382 if (tg3_flag(tp, RGMII_EXT_IBND_RX_EN))
a9daf367 1383 phydev->dev_flags |= PHY_BRCM_EXT_IBND_RX_ENABLE;
63c3a66f 1384 if (tg3_flag(tp, RGMII_EXT_IBND_TX_EN))
a9daf367 1385 phydev->dev_flags |= PHY_BRCM_EXT_IBND_TX_ENABLE;
fcb389df 1386 /* fallthru */
6a443a0f 1387 case PHY_ID_RTL8211C:
fcb389df 1388 phydev->interface = PHY_INTERFACE_MODE_RGMII;
a9daf367 1389 break;
6a443a0f
MC
1390 case PHY_ID_RTL8201E:
1391 case PHY_ID_BCMAC131:
a9daf367 1392 phydev->interface = PHY_INTERFACE_MODE_MII;
cdd4e09d 1393 phydev->dev_flags |= PHY_BRCM_AUTO_PWRDWN_ENABLE;
f07e9af3 1394 tp->phy_flags |= TG3_PHYFLG_IS_FET;
a9daf367
MC
1395 break;
1396 }
1397
63c3a66f 1398 tg3_flag_set(tp, MDIOBUS_INITED);
9c61d6bc
MC
1399
1400 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5785)
1401 tg3_mdio_config_5785(tp);
a9daf367
MC
1402
1403 return 0;
158d7abd
MC
1404}
1405
1406static void tg3_mdio_fini(struct tg3 *tp)
1407{
63c3a66f
JP
1408 if (tg3_flag(tp, MDIOBUS_INITED)) {
1409 tg3_flag_clear(tp, MDIOBUS_INITED);
298cf9be
LB
1410 mdiobus_unregister(tp->mdio_bus);
1411 mdiobus_free(tp->mdio_bus);
158d7abd
MC
1412 }
1413}
1414
4ba526ce
MC
1415/* tp->lock is held. */
1416static inline void tg3_generate_fw_event(struct tg3 *tp)
1417{
1418 u32 val;
1419
1420 val = tr32(GRC_RX_CPU_EVENT);
1421 val |= GRC_RX_CPU_DRIVER_EVENT;
1422 tw32_f(GRC_RX_CPU_EVENT, val);
1423
1424 tp->last_event_jiffies = jiffies;
1425}
1426
1427#define TG3_FW_EVENT_TIMEOUT_USEC 2500
1428
95e2869a
MC
1429/* tp->lock is held. */
1430static void tg3_wait_for_event_ack(struct tg3 *tp)
1431{
1432 int i;
4ba526ce
MC
1433 unsigned int delay_cnt;
1434 long time_remain;
1435
1436 /* If enough time has passed, no wait is necessary. */
1437 time_remain = (long)(tp->last_event_jiffies + 1 +
1438 usecs_to_jiffies(TG3_FW_EVENT_TIMEOUT_USEC)) -
1439 (long)jiffies;
1440 if (time_remain < 0)
1441 return;
1442
1443 /* Check if we can shorten the wait time. */
1444 delay_cnt = jiffies_to_usecs(time_remain);
1445 if (delay_cnt > TG3_FW_EVENT_TIMEOUT_USEC)
1446 delay_cnt = TG3_FW_EVENT_TIMEOUT_USEC;
1447 delay_cnt = (delay_cnt >> 3) + 1;
95e2869a 1448
4ba526ce 1449 for (i = 0; i < delay_cnt; i++) {
95e2869a
MC
1450 if (!(tr32(GRC_RX_CPU_EVENT) & GRC_RX_CPU_DRIVER_EVENT))
1451 break;
4ba526ce 1452 udelay(8);
95e2869a
MC
1453 }
1454}
1455
1456/* tp->lock is held. */
b28f389d 1457static void tg3_phy_gather_ump_data(struct tg3 *tp, u32 *data)
95e2869a 1458{
b28f389d 1459 u32 reg, val;
95e2869a
MC
1460
1461 val = 0;
1462 if (!tg3_readphy(tp, MII_BMCR, &reg))
1463 val = reg << 16;
1464 if (!tg3_readphy(tp, MII_BMSR, &reg))
1465 val |= (reg & 0xffff);
b28f389d 1466 *data++ = val;
95e2869a
MC
1467
1468 val = 0;
1469 if (!tg3_readphy(tp, MII_ADVERTISE, &reg))
1470 val = reg << 16;
1471 if (!tg3_readphy(tp, MII_LPA, &reg))
1472 val |= (reg & 0xffff);
b28f389d 1473 *data++ = val;
95e2869a
MC
1474
1475 val = 0;
f07e9af3 1476 if (!(tp->phy_flags & TG3_PHYFLG_MII_SERDES)) {
95e2869a
MC
1477 if (!tg3_readphy(tp, MII_CTRL1000, &reg))
1478 val = reg << 16;
1479 if (!tg3_readphy(tp, MII_STAT1000, &reg))
1480 val |= (reg & 0xffff);
1481 }
b28f389d 1482 *data++ = val;
95e2869a
MC
1483
1484 if (!tg3_readphy(tp, MII_PHYADDR, &reg))
1485 val = reg << 16;
1486 else
1487 val = 0;
b28f389d
MC
1488 *data++ = val;
1489}
1490
1491/* tp->lock is held. */
1492static void tg3_ump_link_report(struct tg3 *tp)
1493{
1494 u32 data[4];
1495
1496 if (!tg3_flag(tp, 5780_CLASS) || !tg3_flag(tp, ENABLE_ASF))
1497 return;
1498
1499 tg3_phy_gather_ump_data(tp, data);
1500
1501 tg3_wait_for_event_ack(tp);
1502
1503 tg3_write_mem(tp, NIC_SRAM_FW_CMD_MBOX, FWCMD_NICDRV_LINK_UPDATE);
1504 tg3_write_mem(tp, NIC_SRAM_FW_CMD_LEN_MBOX, 14);
1505 tg3_write_mem(tp, NIC_SRAM_FW_CMD_DATA_MBOX + 0x0, data[0]);
1506 tg3_write_mem(tp, NIC_SRAM_FW_CMD_DATA_MBOX + 0x4, data[1]);
1507 tg3_write_mem(tp, NIC_SRAM_FW_CMD_DATA_MBOX + 0x8, data[2]);
1508 tg3_write_mem(tp, NIC_SRAM_FW_CMD_DATA_MBOX + 0xc, data[3]);
95e2869a 1509
4ba526ce 1510 tg3_generate_fw_event(tp);
95e2869a
MC
1511}
1512
8d5a89b3
MC
1513/* tp->lock is held. */
1514static void tg3_stop_fw(struct tg3 *tp)
1515{
1516 if (tg3_flag(tp, ENABLE_ASF) && !tg3_flag(tp, ENABLE_APE)) {
1517 /* Wait for RX cpu to ACK the previous event. */
1518 tg3_wait_for_event_ack(tp);
1519
1520 tg3_write_mem(tp, NIC_SRAM_FW_CMD_MBOX, FWCMD_NICDRV_PAUSE_FW);
1521
1522 tg3_generate_fw_event(tp);
1523
1524 /* Wait for RX cpu to ACK this event. */
1525 tg3_wait_for_event_ack(tp);
1526 }
1527}
1528
fd6d3f0e
MC
1529/* tp->lock is held. */
1530static void tg3_write_sig_pre_reset(struct tg3 *tp, int kind)
1531{
1532 tg3_write_mem(tp, NIC_SRAM_FIRMWARE_MBOX,
1533 NIC_SRAM_FIRMWARE_MBOX_MAGIC1);
1534
1535 if (tg3_flag(tp, ASF_NEW_HANDSHAKE)) {
1536 switch (kind) {
1537 case RESET_KIND_INIT:
1538 tg3_write_mem(tp, NIC_SRAM_FW_DRV_STATE_MBOX,
1539 DRV_STATE_START);
1540 break;
1541
1542 case RESET_KIND_SHUTDOWN:
1543 tg3_write_mem(tp, NIC_SRAM_FW_DRV_STATE_MBOX,
1544 DRV_STATE_UNLOAD);
1545 break;
1546
1547 case RESET_KIND_SUSPEND:
1548 tg3_write_mem(tp, NIC_SRAM_FW_DRV_STATE_MBOX,
1549 DRV_STATE_SUSPEND);
1550 break;
1551
1552 default:
1553 break;
1554 }
1555 }
1556
1557 if (kind == RESET_KIND_INIT ||
1558 kind == RESET_KIND_SUSPEND)
1559 tg3_ape_driver_state_change(tp, kind);
1560}
1561
1562/* tp->lock is held. */
1563static void tg3_write_sig_post_reset(struct tg3 *tp, int kind)
1564{
1565 if (tg3_flag(tp, ASF_NEW_HANDSHAKE)) {
1566 switch (kind) {
1567 case RESET_KIND_INIT:
1568 tg3_write_mem(tp, NIC_SRAM_FW_DRV_STATE_MBOX,
1569 DRV_STATE_START_DONE);
1570 break;
1571
1572 case RESET_KIND_SHUTDOWN:
1573 tg3_write_mem(tp, NIC_SRAM_FW_DRV_STATE_MBOX,
1574 DRV_STATE_UNLOAD_DONE);
1575 break;
1576
1577 default:
1578 break;
1579 }
1580 }
1581
1582 if (kind == RESET_KIND_SHUTDOWN)
1583 tg3_ape_driver_state_change(tp, kind);
1584}
1585
1586/* tp->lock is held. */
1587static void tg3_write_sig_legacy(struct tg3 *tp, int kind)
1588{
1589 if (tg3_flag(tp, ENABLE_ASF)) {
1590 switch (kind) {
1591 case RESET_KIND_INIT:
1592 tg3_write_mem(tp, NIC_SRAM_FW_DRV_STATE_MBOX,
1593 DRV_STATE_START);
1594 break;
1595
1596 case RESET_KIND_SHUTDOWN:
1597 tg3_write_mem(tp, NIC_SRAM_FW_DRV_STATE_MBOX,
1598 DRV_STATE_UNLOAD);
1599 break;
1600
1601 case RESET_KIND_SUSPEND:
1602 tg3_write_mem(tp, NIC_SRAM_FW_DRV_STATE_MBOX,
1603 DRV_STATE_SUSPEND);
1604 break;
1605
1606 default:
1607 break;
1608 }
1609 }
1610}
1611
1612static int tg3_poll_fw(struct tg3 *tp)
1613{
1614 int i;
1615 u32 val;
1616
1617 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5906) {
1618 /* Wait up to 20ms for init done. */
1619 for (i = 0; i < 200; i++) {
1620 if (tr32(VCPU_STATUS) & VCPU_STATUS_INIT_DONE)
1621 return 0;
1622 udelay(100);
1623 }
1624 return -ENODEV;
1625 }
1626
1627 /* Wait for firmware initialization to complete. */
1628 for (i = 0; i < 100000; i++) {
1629 tg3_read_mem(tp, NIC_SRAM_FIRMWARE_MBOX, &val);
1630 if (val == ~NIC_SRAM_FIRMWARE_MBOX_MAGIC1)
1631 break;
1632 udelay(10);
1633 }
1634
1635 /* Chip might not be fitted with firmware. Some Sun onboard
1636 * parts are configured like that. So don't signal the timeout
1637 * of the above loop as an error, but do report the lack of
1638 * running firmware once.
1639 */
1640 if (i >= 100000 && !tg3_flag(tp, NO_FWARE_REPORTED)) {
1641 tg3_flag_set(tp, NO_FWARE_REPORTED);
1642
1643 netdev_info(tp->dev, "No firmware running\n");
1644 }
1645
1646 if (tp->pci_chip_rev_id == CHIPREV_ID_57765_A0) {
1647 /* The 57765 A0 needs a little more
1648 * time to do some important work.
1649 */
1650 mdelay(10);
1651 }
1652
1653 return 0;
1654}
1655
95e2869a
MC
1656static void tg3_link_report(struct tg3 *tp)
1657{
1658 if (!netif_carrier_ok(tp->dev)) {
05dbe005 1659 netif_info(tp, link, tp->dev, "Link is down\n");
95e2869a
MC
1660 tg3_ump_link_report(tp);
1661 } else if (netif_msg_link(tp)) {
05dbe005
JP
1662 netdev_info(tp->dev, "Link is up at %d Mbps, %s duplex\n",
1663 (tp->link_config.active_speed == SPEED_1000 ?
1664 1000 :
1665 (tp->link_config.active_speed == SPEED_100 ?
1666 100 : 10)),
1667 (tp->link_config.active_duplex == DUPLEX_FULL ?
1668 "full" : "half"));
1669
1670 netdev_info(tp->dev, "Flow control is %s for TX and %s for RX\n",
1671 (tp->link_config.active_flowctrl & FLOW_CTRL_TX) ?
1672 "on" : "off",
1673 (tp->link_config.active_flowctrl & FLOW_CTRL_RX) ?
1674 "on" : "off");
47007831
MC
1675
1676 if (tp->phy_flags & TG3_PHYFLG_EEE_CAP)
1677 netdev_info(tp->dev, "EEE is %s\n",
1678 tp->setlpicnt ? "enabled" : "disabled");
1679
95e2869a
MC
1680 tg3_ump_link_report(tp);
1681 }
1682}
1683
95e2869a
MC
1684static u16 tg3_advert_flowctrl_1000X(u8 flow_ctrl)
1685{
1686 u16 miireg;
1687
e18ce346 1688 if ((flow_ctrl & FLOW_CTRL_TX) && (flow_ctrl & FLOW_CTRL_RX))
95e2869a 1689 miireg = ADVERTISE_1000XPAUSE;
e18ce346 1690 else if (flow_ctrl & FLOW_CTRL_TX)
95e2869a 1691 miireg = ADVERTISE_1000XPSE_ASYM;
e18ce346 1692 else if (flow_ctrl & FLOW_CTRL_RX)
95e2869a
MC
1693 miireg = ADVERTISE_1000XPAUSE | ADVERTISE_1000XPSE_ASYM;
1694 else
1695 miireg = 0;
1696
1697 return miireg;
1698}
1699
95e2869a
MC
1700static u8 tg3_resolve_flowctrl_1000X(u16 lcladv, u16 rmtadv)
1701{
1702 u8 cap = 0;
1703
f3791cdf
MC
1704 if (lcladv & rmtadv & ADVERTISE_1000XPAUSE) {
1705 cap = FLOW_CTRL_TX | FLOW_CTRL_RX;
1706 } else if (lcladv & rmtadv & ADVERTISE_1000XPSE_ASYM) {
1707 if (lcladv & ADVERTISE_1000XPAUSE)
1708 cap = FLOW_CTRL_RX;
1709 if (rmtadv & ADVERTISE_1000XPAUSE)
e18ce346 1710 cap = FLOW_CTRL_TX;
95e2869a
MC
1711 }
1712
1713 return cap;
1714}
1715
f51f3562 1716static void tg3_setup_flow_control(struct tg3 *tp, u32 lcladv, u32 rmtadv)
95e2869a 1717{
b02fd9e3 1718 u8 autoneg;
f51f3562 1719 u8 flowctrl = 0;
95e2869a
MC
1720 u32 old_rx_mode = tp->rx_mode;
1721 u32 old_tx_mode = tp->tx_mode;
1722
63c3a66f 1723 if (tg3_flag(tp, USE_PHYLIB))
3f0e3ad7 1724 autoneg = tp->mdio_bus->phy_map[TG3_PHY_MII_ADDR]->autoneg;
b02fd9e3
MC
1725 else
1726 autoneg = tp->link_config.autoneg;
1727
63c3a66f 1728 if (autoneg == AUTONEG_ENABLE && tg3_flag(tp, PAUSE_AUTONEG)) {
f07e9af3 1729 if (tp->phy_flags & TG3_PHYFLG_ANY_SERDES)
f51f3562 1730 flowctrl = tg3_resolve_flowctrl_1000X(lcladv, rmtadv);
95e2869a 1731 else
bc02ff95 1732 flowctrl = mii_resolve_flowctrl_fdx(lcladv, rmtadv);
f51f3562
MC
1733 } else
1734 flowctrl = tp->link_config.flowctrl;
95e2869a 1735
f51f3562 1736 tp->link_config.active_flowctrl = flowctrl;
95e2869a 1737
e18ce346 1738 if (flowctrl & FLOW_CTRL_RX)
95e2869a
MC
1739 tp->rx_mode |= RX_MODE_FLOW_CTRL_ENABLE;
1740 else
1741 tp->rx_mode &= ~RX_MODE_FLOW_CTRL_ENABLE;
1742
f51f3562 1743 if (old_rx_mode != tp->rx_mode)
95e2869a 1744 tw32_f(MAC_RX_MODE, tp->rx_mode);
95e2869a 1745
e18ce346 1746 if (flowctrl & FLOW_CTRL_TX)
95e2869a
MC
1747 tp->tx_mode |= TX_MODE_FLOW_CTRL_ENABLE;
1748 else
1749 tp->tx_mode &= ~TX_MODE_FLOW_CTRL_ENABLE;
1750
f51f3562 1751 if (old_tx_mode != tp->tx_mode)
95e2869a 1752 tw32_f(MAC_TX_MODE, tp->tx_mode);
95e2869a
MC
1753}
1754
b02fd9e3
MC
1755static void tg3_adjust_link(struct net_device *dev)
1756{
1757 u8 oldflowctrl, linkmesg = 0;
1758 u32 mac_mode, lcl_adv, rmt_adv;
1759 struct tg3 *tp = netdev_priv(dev);
3f0e3ad7 1760 struct phy_device *phydev = tp->mdio_bus->phy_map[TG3_PHY_MII_ADDR];
b02fd9e3 1761
24bb4fb6 1762 spin_lock_bh(&tp->lock);
b02fd9e3
MC
1763
1764 mac_mode = tp->mac_mode & ~(MAC_MODE_PORT_MODE_MASK |
1765 MAC_MODE_HALF_DUPLEX);
1766
1767 oldflowctrl = tp->link_config.active_flowctrl;
1768
1769 if (phydev->link) {
1770 lcl_adv = 0;
1771 rmt_adv = 0;
1772
1773 if (phydev->speed == SPEED_100 || phydev->speed == SPEED_10)
1774 mac_mode |= MAC_MODE_PORT_MODE_MII;
c3df0748
MC
1775 else if (phydev->speed == SPEED_1000 ||
1776 GET_ASIC_REV(tp->pci_chip_rev_id) != ASIC_REV_5785)
b02fd9e3 1777 mac_mode |= MAC_MODE_PORT_MODE_GMII;
c3df0748
MC
1778 else
1779 mac_mode |= MAC_MODE_PORT_MODE_MII;
b02fd9e3
MC
1780
1781 if (phydev->duplex == DUPLEX_HALF)
1782 mac_mode |= MAC_MODE_HALF_DUPLEX;
1783 else {
f88788f0 1784 lcl_adv = mii_advertise_flowctrl(
b02fd9e3
MC
1785 tp->link_config.flowctrl);
1786
1787 if (phydev->pause)
1788 rmt_adv = LPA_PAUSE_CAP;
1789 if (phydev->asym_pause)
1790 rmt_adv |= LPA_PAUSE_ASYM;
1791 }
1792
1793 tg3_setup_flow_control(tp, lcl_adv, rmt_adv);
1794 } else
1795 mac_mode |= MAC_MODE_PORT_MODE_GMII;
1796
1797 if (mac_mode != tp->mac_mode) {
1798 tp->mac_mode = mac_mode;
1799 tw32_f(MAC_MODE, tp->mac_mode);
1800 udelay(40);
1801 }
1802
fcb389df
MC
1803 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5785) {
1804 if (phydev->speed == SPEED_10)
1805 tw32(MAC_MI_STAT,
1806 MAC_MI_STAT_10MBPS_MODE |
1807 MAC_MI_STAT_LNKSTAT_ATTN_ENAB);
1808 else
1809 tw32(MAC_MI_STAT, MAC_MI_STAT_LNKSTAT_ATTN_ENAB);
1810 }
1811
b02fd9e3
MC
1812 if (phydev->speed == SPEED_1000 && phydev->duplex == DUPLEX_HALF)
1813 tw32(MAC_TX_LENGTHS,
1814 ((2 << TX_LENGTHS_IPG_CRS_SHIFT) |
1815 (6 << TX_LENGTHS_IPG_SHIFT) |
1816 (0xff << TX_LENGTHS_SLOT_TIME_SHIFT)));
1817 else
1818 tw32(MAC_TX_LENGTHS,
1819 ((2 << TX_LENGTHS_IPG_CRS_SHIFT) |
1820 (6 << TX_LENGTHS_IPG_SHIFT) |
1821 (32 << TX_LENGTHS_SLOT_TIME_SHIFT)));
1822
34655ad6 1823 if (phydev->link != tp->old_link ||
b02fd9e3
MC
1824 phydev->speed != tp->link_config.active_speed ||
1825 phydev->duplex != tp->link_config.active_duplex ||
1826 oldflowctrl != tp->link_config.active_flowctrl)
c6cdf436 1827 linkmesg = 1;
b02fd9e3 1828
34655ad6 1829 tp->old_link = phydev->link;
b02fd9e3
MC
1830 tp->link_config.active_speed = phydev->speed;
1831 tp->link_config.active_duplex = phydev->duplex;
1832
24bb4fb6 1833 spin_unlock_bh(&tp->lock);
b02fd9e3
MC
1834
1835 if (linkmesg)
1836 tg3_link_report(tp);
1837}
1838
1839static int tg3_phy_init(struct tg3 *tp)
1840{
1841 struct phy_device *phydev;
1842
f07e9af3 1843 if (tp->phy_flags & TG3_PHYFLG_IS_CONNECTED)
b02fd9e3
MC
1844 return 0;
1845
1846 /* Bring the PHY back to a known state. */
1847 tg3_bmcr_reset(tp);
1848
3f0e3ad7 1849 phydev = tp->mdio_bus->phy_map[TG3_PHY_MII_ADDR];
b02fd9e3
MC
1850
1851 /* Attach the MAC to the PHY. */
fb28ad35 1852 phydev = phy_connect(tp->dev, dev_name(&phydev->dev), tg3_adjust_link,
a9daf367 1853 phydev->dev_flags, phydev->interface);
b02fd9e3 1854 if (IS_ERR(phydev)) {
ab96b241 1855 dev_err(&tp->pdev->dev, "Could not attach to PHY\n");
b02fd9e3
MC
1856 return PTR_ERR(phydev);
1857 }
1858
b02fd9e3 1859 /* Mask with MAC supported features. */
9c61d6bc
MC
1860 switch (phydev->interface) {
1861 case PHY_INTERFACE_MODE_GMII:
1862 case PHY_INTERFACE_MODE_RGMII:
f07e9af3 1863 if (!(tp->phy_flags & TG3_PHYFLG_10_100_ONLY)) {
321d32a0
MC
1864 phydev->supported &= (PHY_GBIT_FEATURES |
1865 SUPPORTED_Pause |
1866 SUPPORTED_Asym_Pause);
1867 break;
1868 }
1869 /* fallthru */
9c61d6bc
MC
1870 case PHY_INTERFACE_MODE_MII:
1871 phydev->supported &= (PHY_BASIC_FEATURES |
1872 SUPPORTED_Pause |
1873 SUPPORTED_Asym_Pause);
1874 break;
1875 default:
3f0e3ad7 1876 phy_disconnect(tp->mdio_bus->phy_map[TG3_PHY_MII_ADDR]);
9c61d6bc
MC
1877 return -EINVAL;
1878 }
1879
f07e9af3 1880 tp->phy_flags |= TG3_PHYFLG_IS_CONNECTED;
b02fd9e3
MC
1881
1882 phydev->advertising = phydev->supported;
1883
b02fd9e3
MC
1884 return 0;
1885}
1886
1887static void tg3_phy_start(struct tg3 *tp)
1888{
1889 struct phy_device *phydev;
1890
f07e9af3 1891 if (!(tp->phy_flags & TG3_PHYFLG_IS_CONNECTED))
b02fd9e3
MC
1892 return;
1893
3f0e3ad7 1894 phydev = tp->mdio_bus->phy_map[TG3_PHY_MII_ADDR];
b02fd9e3 1895
80096068
MC
1896 if (tp->phy_flags & TG3_PHYFLG_IS_LOW_POWER) {
1897 tp->phy_flags &= ~TG3_PHYFLG_IS_LOW_POWER;
c6700ce2
MC
1898 phydev->speed = tp->link_config.speed;
1899 phydev->duplex = tp->link_config.duplex;
1900 phydev->autoneg = tp->link_config.autoneg;
1901 phydev->advertising = tp->link_config.advertising;
b02fd9e3
MC
1902 }
1903
1904 phy_start(phydev);
1905
1906 phy_start_aneg(phydev);
1907}
1908
1909static void tg3_phy_stop(struct tg3 *tp)
1910{
f07e9af3 1911 if (!(tp->phy_flags & TG3_PHYFLG_IS_CONNECTED))
b02fd9e3
MC
1912 return;
1913
3f0e3ad7 1914 phy_stop(tp->mdio_bus->phy_map[TG3_PHY_MII_ADDR]);
b02fd9e3
MC
1915}
1916
1917static void tg3_phy_fini(struct tg3 *tp)
1918{
f07e9af3 1919 if (tp->phy_flags & TG3_PHYFLG_IS_CONNECTED) {
3f0e3ad7 1920 phy_disconnect(tp->mdio_bus->phy_map[TG3_PHY_MII_ADDR]);
f07e9af3 1921 tp->phy_flags &= ~TG3_PHYFLG_IS_CONNECTED;
b02fd9e3
MC
1922 }
1923}
1924
941ec90f
MC
1925static int tg3_phy_set_extloopbk(struct tg3 *tp)
1926{
1927 int err;
1928 u32 val;
1929
1930 if (tp->phy_flags & TG3_PHYFLG_IS_FET)
1931 return 0;
1932
1933 if ((tp->phy_id & TG3_PHY_ID_MASK) == TG3_PHY_ID_BCM5401) {
1934 /* Cannot do read-modify-write on 5401 */
1935 err = tg3_phy_auxctl_write(tp,
1936 MII_TG3_AUXCTL_SHDWSEL_AUXCTL,
1937 MII_TG3_AUXCTL_ACTL_EXTLOOPBK |
1938 0x4c20);
1939 goto done;
1940 }
1941
1942 err = tg3_phy_auxctl_read(tp,
1943 MII_TG3_AUXCTL_SHDWSEL_AUXCTL, &val);
1944 if (err)
1945 return err;
1946
1947 val |= MII_TG3_AUXCTL_ACTL_EXTLOOPBK;
1948 err = tg3_phy_auxctl_write(tp,
1949 MII_TG3_AUXCTL_SHDWSEL_AUXCTL, val);
1950
1951done:
1952 return err;
1953}
1954
7f97a4bd
MC
1955static void tg3_phy_fet_toggle_apd(struct tg3 *tp, bool enable)
1956{
1957 u32 phytest;
1958
1959 if (!tg3_readphy(tp, MII_TG3_FET_TEST, &phytest)) {
1960 u32 phy;
1961
1962 tg3_writephy(tp, MII_TG3_FET_TEST,
1963 phytest | MII_TG3_FET_SHADOW_EN);
1964 if (!tg3_readphy(tp, MII_TG3_FET_SHDW_AUXSTAT2, &phy)) {
1965 if (enable)
1966 phy |= MII_TG3_FET_SHDW_AUXSTAT2_APD;
1967 else
1968 phy &= ~MII_TG3_FET_SHDW_AUXSTAT2_APD;
1969 tg3_writephy(tp, MII_TG3_FET_SHDW_AUXSTAT2, phy);
1970 }
1971 tg3_writephy(tp, MII_TG3_FET_TEST, phytest);
1972 }
1973}
1974
6833c043
MC
1975static void tg3_phy_toggle_apd(struct tg3 *tp, bool enable)
1976{
1977 u32 reg;
1978
63c3a66f
JP
1979 if (!tg3_flag(tp, 5705_PLUS) ||
1980 (tg3_flag(tp, 5717_PLUS) &&
f07e9af3 1981 (tp->phy_flags & TG3_PHYFLG_MII_SERDES)))
6833c043
MC
1982 return;
1983
f07e9af3 1984 if (tp->phy_flags & TG3_PHYFLG_IS_FET) {
7f97a4bd
MC
1985 tg3_phy_fet_toggle_apd(tp, enable);
1986 return;
1987 }
1988
6833c043
MC
1989 reg = MII_TG3_MISC_SHDW_WREN |
1990 MII_TG3_MISC_SHDW_SCR5_SEL |
1991 MII_TG3_MISC_SHDW_SCR5_LPED |
1992 MII_TG3_MISC_SHDW_SCR5_DLPTLM |
1993 MII_TG3_MISC_SHDW_SCR5_SDTL |
1994 MII_TG3_MISC_SHDW_SCR5_C125OE;
1995 if (GET_ASIC_REV(tp->pci_chip_rev_id) != ASIC_REV_5784 || !enable)
1996 reg |= MII_TG3_MISC_SHDW_SCR5_DLLAPD;
1997
1998 tg3_writephy(tp, MII_TG3_MISC_SHDW, reg);
1999
2000
2001 reg = MII_TG3_MISC_SHDW_WREN |
2002 MII_TG3_MISC_SHDW_APD_SEL |
2003 MII_TG3_MISC_SHDW_APD_WKTM_84MS;
2004 if (enable)
2005 reg |= MII_TG3_MISC_SHDW_APD_ENABLE;
2006
2007 tg3_writephy(tp, MII_TG3_MISC_SHDW, reg);
2008}
2009
9ef8ca99
MC
2010static void tg3_phy_toggle_automdix(struct tg3 *tp, int enable)
2011{
2012 u32 phy;
2013
63c3a66f 2014 if (!tg3_flag(tp, 5705_PLUS) ||
f07e9af3 2015 (tp->phy_flags & TG3_PHYFLG_ANY_SERDES))
9ef8ca99
MC
2016 return;
2017
f07e9af3 2018 if (tp->phy_flags & TG3_PHYFLG_IS_FET) {
9ef8ca99
MC
2019 u32 ephy;
2020
535ef6e1
MC
2021 if (!tg3_readphy(tp, MII_TG3_FET_TEST, &ephy)) {
2022 u32 reg = MII_TG3_FET_SHDW_MISCCTRL;
2023
2024 tg3_writephy(tp, MII_TG3_FET_TEST,
2025 ephy | MII_TG3_FET_SHADOW_EN);
2026 if (!tg3_readphy(tp, reg, &phy)) {
9ef8ca99 2027 if (enable)
535ef6e1 2028 phy |= MII_TG3_FET_SHDW_MISCCTRL_MDIX;
9ef8ca99 2029 else
535ef6e1
MC
2030 phy &= ~MII_TG3_FET_SHDW_MISCCTRL_MDIX;
2031 tg3_writephy(tp, reg, phy);
9ef8ca99 2032 }
535ef6e1 2033 tg3_writephy(tp, MII_TG3_FET_TEST, ephy);
9ef8ca99
MC
2034 }
2035 } else {
15ee95c3
MC
2036 int ret;
2037
2038 ret = tg3_phy_auxctl_read(tp,
2039 MII_TG3_AUXCTL_SHDWSEL_MISC, &phy);
2040 if (!ret) {
9ef8ca99
MC
2041 if (enable)
2042 phy |= MII_TG3_AUXCTL_MISC_FORCE_AMDIX;
2043 else
2044 phy &= ~MII_TG3_AUXCTL_MISC_FORCE_AMDIX;
b4bd2929
MC
2045 tg3_phy_auxctl_write(tp,
2046 MII_TG3_AUXCTL_SHDWSEL_MISC, phy);
9ef8ca99
MC
2047 }
2048 }
2049}
2050
1da177e4
LT
2051static void tg3_phy_set_wirespeed(struct tg3 *tp)
2052{
15ee95c3 2053 int ret;
1da177e4
LT
2054 u32 val;
2055
f07e9af3 2056 if (tp->phy_flags & TG3_PHYFLG_NO_ETH_WIRE_SPEED)
1da177e4
LT
2057 return;
2058
15ee95c3
MC
2059 ret = tg3_phy_auxctl_read(tp, MII_TG3_AUXCTL_SHDWSEL_MISC, &val);
2060 if (!ret)
b4bd2929
MC
2061 tg3_phy_auxctl_write(tp, MII_TG3_AUXCTL_SHDWSEL_MISC,
2062 val | MII_TG3_AUXCTL_MISC_WIRESPD_EN);
1da177e4
LT
2063}
2064
b2a5c19c
MC
2065static void tg3_phy_apply_otp(struct tg3 *tp)
2066{
2067 u32 otp, phy;
2068
2069 if (!tp->phy_otp)
2070 return;
2071
2072 otp = tp->phy_otp;
2073
1d36ba45
MC
2074 if (TG3_PHY_AUXCTL_SMDSP_ENABLE(tp))
2075 return;
b2a5c19c
MC
2076
2077 phy = ((otp & TG3_OTP_AGCTGT_MASK) >> TG3_OTP_AGCTGT_SHIFT);
2078 phy |= MII_TG3_DSP_TAP1_AGCTGT_DFLT;
2079 tg3_phydsp_write(tp, MII_TG3_DSP_TAP1, phy);
2080
2081 phy = ((otp & TG3_OTP_HPFFLTR_MASK) >> TG3_OTP_HPFFLTR_SHIFT) |
2082 ((otp & TG3_OTP_HPFOVER_MASK) >> TG3_OTP_HPFOVER_SHIFT);
2083 tg3_phydsp_write(tp, MII_TG3_DSP_AADJ1CH0, phy);
2084
2085 phy = ((otp & TG3_OTP_LPFDIS_MASK) >> TG3_OTP_LPFDIS_SHIFT);
2086 phy |= MII_TG3_DSP_AADJ1CH3_ADCCKADJ;
2087 tg3_phydsp_write(tp, MII_TG3_DSP_AADJ1CH3, phy);
2088
2089 phy = ((otp & TG3_OTP_VDAC_MASK) >> TG3_OTP_VDAC_SHIFT);
2090 tg3_phydsp_write(tp, MII_TG3_DSP_EXP75, phy);
2091
2092 phy = ((otp & TG3_OTP_10BTAMP_MASK) >> TG3_OTP_10BTAMP_SHIFT);
2093 tg3_phydsp_write(tp, MII_TG3_DSP_EXP96, phy);
2094
2095 phy = ((otp & TG3_OTP_ROFF_MASK) >> TG3_OTP_ROFF_SHIFT) |
2096 ((otp & TG3_OTP_RCOFF_MASK) >> TG3_OTP_RCOFF_SHIFT);
2097 tg3_phydsp_write(tp, MII_TG3_DSP_EXP97, phy);
2098
1d36ba45 2099 TG3_PHY_AUXCTL_SMDSP_DISABLE(tp);
b2a5c19c
MC
2100}
2101
52b02d04
MC
2102static void tg3_phy_eee_adjust(struct tg3 *tp, u32 current_link_up)
2103{
2104 u32 val;
2105
2106 if (!(tp->phy_flags & TG3_PHYFLG_EEE_CAP))
2107 return;
2108
2109 tp->setlpicnt = 0;
2110
2111 if (tp->link_config.autoneg == AUTONEG_ENABLE &&
2112 current_link_up == 1 &&
a6b68dab
MC
2113 tp->link_config.active_duplex == DUPLEX_FULL &&
2114 (tp->link_config.active_speed == SPEED_100 ||
2115 tp->link_config.active_speed == SPEED_1000)) {
52b02d04
MC
2116 u32 eeectl;
2117
2118 if (tp->link_config.active_speed == SPEED_1000)
2119 eeectl = TG3_CPMU_EEE_CTRL_EXIT_16_5_US;
2120 else
2121 eeectl = TG3_CPMU_EEE_CTRL_EXIT_36_US;
2122
2123 tw32(TG3_CPMU_EEE_CTRL, eeectl);
2124
3110f5f5
MC
2125 tg3_phy_cl45_read(tp, MDIO_MMD_AN,
2126 TG3_CL45_D7_EEERES_STAT, &val);
52b02d04 2127
b0c5943f
MC
2128 if (val == TG3_CL45_D7_EEERES_STAT_LP_1000T ||
2129 val == TG3_CL45_D7_EEERES_STAT_LP_100TX)
52b02d04
MC
2130 tp->setlpicnt = 2;
2131 }
2132
2133 if (!tp->setlpicnt) {
b715ce94
MC
2134 if (current_link_up == 1 &&
2135 !TG3_PHY_AUXCTL_SMDSP_ENABLE(tp)) {
2136 tg3_phydsp_write(tp, MII_TG3_DSP_TAP26, 0x0000);
2137 TG3_PHY_AUXCTL_SMDSP_DISABLE(tp);
2138 }
2139
52b02d04
MC
2140 val = tr32(TG3_CPMU_EEE_MODE);
2141 tw32(TG3_CPMU_EEE_MODE, val & ~TG3_CPMU_EEEMD_LPI_ENABLE);
2142 }
2143}
2144
b0c5943f
MC
2145static void tg3_phy_eee_enable(struct tg3 *tp)
2146{
2147 u32 val;
2148
2149 if (tp->link_config.active_speed == SPEED_1000 &&
2150 (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5717 ||
2151 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5719 ||
55086ad9 2152 tg3_flag(tp, 57765_CLASS)) &&
b0c5943f 2153 !TG3_PHY_AUXCTL_SMDSP_ENABLE(tp)) {
b715ce94
MC
2154 val = MII_TG3_DSP_TAP26_ALNOKO |
2155 MII_TG3_DSP_TAP26_RMRXSTO;
2156 tg3_phydsp_write(tp, MII_TG3_DSP_TAP26, val);
b0c5943f
MC
2157 TG3_PHY_AUXCTL_SMDSP_DISABLE(tp);
2158 }
2159
2160 val = tr32(TG3_CPMU_EEE_MODE);
2161 tw32(TG3_CPMU_EEE_MODE, val | TG3_CPMU_EEEMD_LPI_ENABLE);
2162}
2163
1da177e4
LT
2164static int tg3_wait_macro_done(struct tg3 *tp)
2165{
2166 int limit = 100;
2167
2168 while (limit--) {
2169 u32 tmp32;
2170
f08aa1a8 2171 if (!tg3_readphy(tp, MII_TG3_DSP_CONTROL, &tmp32)) {
1da177e4
LT
2172 if ((tmp32 & 0x1000) == 0)
2173 break;
2174 }
2175 }
d4675b52 2176 if (limit < 0)
1da177e4
LT
2177 return -EBUSY;
2178
2179 return 0;
2180}
2181
2182static int tg3_phy_write_and_check_testpat(struct tg3 *tp, int *resetp)
2183{
2184 static const u32 test_pat[4][6] = {
2185 { 0x00005555, 0x00000005, 0x00002aaa, 0x0000000a, 0x00003456, 0x00000003 },
2186 { 0x00002aaa, 0x0000000a, 0x00003333, 0x00000003, 0x0000789a, 0x00000005 },
2187 { 0x00005a5a, 0x00000005, 0x00002a6a, 0x0000000a, 0x00001bcd, 0x00000003 },
2188 { 0x00002a5a, 0x0000000a, 0x000033c3, 0x00000003, 0x00002ef1, 0x00000005 }
2189 };
2190 int chan;
2191
2192 for (chan = 0; chan < 4; chan++) {
2193 int i;
2194
2195 tg3_writephy(tp, MII_TG3_DSP_ADDRESS,
2196 (chan * 0x2000) | 0x0200);
f08aa1a8 2197 tg3_writephy(tp, MII_TG3_DSP_CONTROL, 0x0002);
1da177e4
LT
2198
2199 for (i = 0; i < 6; i++)
2200 tg3_writephy(tp, MII_TG3_DSP_RW_PORT,
2201 test_pat[chan][i]);
2202
f08aa1a8 2203 tg3_writephy(tp, MII_TG3_DSP_CONTROL, 0x0202);
1da177e4
LT
2204 if (tg3_wait_macro_done(tp)) {
2205 *resetp = 1;
2206 return -EBUSY;
2207 }
2208
2209 tg3_writephy(tp, MII_TG3_DSP_ADDRESS,
2210 (chan * 0x2000) | 0x0200);
f08aa1a8 2211 tg3_writephy(tp, MII_TG3_DSP_CONTROL, 0x0082);
1da177e4
LT
2212 if (tg3_wait_macro_done(tp)) {
2213 *resetp = 1;
2214 return -EBUSY;
2215 }
2216
f08aa1a8 2217 tg3_writephy(tp, MII_TG3_DSP_CONTROL, 0x0802);
1da177e4
LT
2218 if (tg3_wait_macro_done(tp)) {
2219 *resetp = 1;
2220 return -EBUSY;
2221 }
2222
2223 for (i = 0; i < 6; i += 2) {
2224 u32 low, high;
2225
2226 if (tg3_readphy(tp, MII_TG3_DSP_RW_PORT, &low) ||
2227 tg3_readphy(tp, MII_TG3_DSP_RW_PORT, &high) ||
2228 tg3_wait_macro_done(tp)) {
2229 *resetp = 1;
2230 return -EBUSY;
2231 }
2232 low &= 0x7fff;
2233 high &= 0x000f;
2234 if (low != test_pat[chan][i] ||
2235 high != test_pat[chan][i+1]) {
2236 tg3_writephy(tp, MII_TG3_DSP_ADDRESS, 0x000b);
2237 tg3_writephy(tp, MII_TG3_DSP_RW_PORT, 0x4001);
2238 tg3_writephy(tp, MII_TG3_DSP_RW_PORT, 0x4005);
2239
2240 return -EBUSY;
2241 }
2242 }
2243 }
2244
2245 return 0;
2246}
2247
2248static int tg3_phy_reset_chanpat(struct tg3 *tp)
2249{
2250 int chan;
2251
2252 for (chan = 0; chan < 4; chan++) {
2253 int i;
2254
2255 tg3_writephy(tp, MII_TG3_DSP_ADDRESS,
2256 (chan * 0x2000) | 0x0200);
f08aa1a8 2257 tg3_writephy(tp, MII_TG3_DSP_CONTROL, 0x0002);
1da177e4
LT
2258 for (i = 0; i < 6; i++)
2259 tg3_writephy(tp, MII_TG3_DSP_RW_PORT, 0x000);
f08aa1a8 2260 tg3_writephy(tp, MII_TG3_DSP_CONTROL, 0x0202);
1da177e4
LT
2261 if (tg3_wait_macro_done(tp))
2262 return -EBUSY;
2263 }
2264
2265 return 0;
2266}
2267
2268static int tg3_phy_reset_5703_4_5(struct tg3 *tp)
2269{
2270 u32 reg32, phy9_orig;
2271 int retries, do_phy_reset, err;
2272
2273 retries = 10;
2274 do_phy_reset = 1;
2275 do {
2276 if (do_phy_reset) {
2277 err = tg3_bmcr_reset(tp);
2278 if (err)
2279 return err;
2280 do_phy_reset = 0;
2281 }
2282
2283 /* Disable transmitter and interrupt. */
2284 if (tg3_readphy(tp, MII_TG3_EXT_CTRL, &reg32))
2285 continue;
2286
2287 reg32 |= 0x3000;
2288 tg3_writephy(tp, MII_TG3_EXT_CTRL, reg32);
2289
2290 /* Set full-duplex, 1000 mbps. */
2291 tg3_writephy(tp, MII_BMCR,
221c5637 2292 BMCR_FULLDPLX | BMCR_SPEED1000);
1da177e4
LT
2293
2294 /* Set to master mode. */
221c5637 2295 if (tg3_readphy(tp, MII_CTRL1000, &phy9_orig))
1da177e4
LT
2296 continue;
2297
221c5637
MC
2298 tg3_writephy(tp, MII_CTRL1000,
2299 CTL1000_AS_MASTER | CTL1000_ENABLE_MASTER);
1da177e4 2300
1d36ba45
MC
2301 err = TG3_PHY_AUXCTL_SMDSP_ENABLE(tp);
2302 if (err)
2303 return err;
1da177e4
LT
2304
2305 /* Block the PHY control access. */
6ee7c0a0 2306 tg3_phydsp_write(tp, 0x8005, 0x0800);
1da177e4
LT
2307
2308 err = tg3_phy_write_and_check_testpat(tp, &do_phy_reset);
2309 if (!err)
2310 break;
2311 } while (--retries);
2312
2313 err = tg3_phy_reset_chanpat(tp);
2314 if (err)
2315 return err;
2316
6ee7c0a0 2317 tg3_phydsp_write(tp, 0x8005, 0x0000);
1da177e4
LT
2318
2319 tg3_writephy(tp, MII_TG3_DSP_ADDRESS, 0x8200);
f08aa1a8 2320 tg3_writephy(tp, MII_TG3_DSP_CONTROL, 0x0000);
1da177e4 2321
1d36ba45 2322 TG3_PHY_AUXCTL_SMDSP_DISABLE(tp);
1da177e4 2323
221c5637 2324 tg3_writephy(tp, MII_CTRL1000, phy9_orig);
1da177e4
LT
2325
2326 if (!tg3_readphy(tp, MII_TG3_EXT_CTRL, &reg32)) {
2327 reg32 &= ~0x3000;
2328 tg3_writephy(tp, MII_TG3_EXT_CTRL, reg32);
2329 } else if (!err)
2330 err = -EBUSY;
2331
2332 return err;
2333}
2334
2335/* This will reset the tigon3 PHY if there is no valid
2336 * link unless the FORCE argument is non-zero.
2337 */
2338static int tg3_phy_reset(struct tg3 *tp)
2339{
f833c4c1 2340 u32 val, cpmuctrl;
1da177e4
LT
2341 int err;
2342
60189ddf 2343 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5906) {
60189ddf
MC
2344 val = tr32(GRC_MISC_CFG);
2345 tw32_f(GRC_MISC_CFG, val & ~GRC_MISC_CFG_EPHY_IDDQ);
2346 udelay(40);
2347 }
f833c4c1
MC
2348 err = tg3_readphy(tp, MII_BMSR, &val);
2349 err |= tg3_readphy(tp, MII_BMSR, &val);
1da177e4
LT
2350 if (err != 0)
2351 return -EBUSY;
2352
c8e1e82b
MC
2353 if (netif_running(tp->dev) && netif_carrier_ok(tp->dev)) {
2354 netif_carrier_off(tp->dev);
2355 tg3_link_report(tp);
2356 }
2357
1da177e4
LT
2358 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5703 ||
2359 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5704 ||
2360 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5705) {
2361 err = tg3_phy_reset_5703_4_5(tp);
2362 if (err)
2363 return err;
2364 goto out;
2365 }
2366
b2a5c19c
MC
2367 cpmuctrl = 0;
2368 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5784 &&
2369 GET_CHIP_REV(tp->pci_chip_rev_id) != CHIPREV_5784_AX) {
2370 cpmuctrl = tr32(TG3_CPMU_CTRL);
2371 if (cpmuctrl & CPMU_CTRL_GPHY_10MB_RXONLY)
2372 tw32(TG3_CPMU_CTRL,
2373 cpmuctrl & ~CPMU_CTRL_GPHY_10MB_RXONLY);
2374 }
2375
1da177e4
LT
2376 err = tg3_bmcr_reset(tp);
2377 if (err)
2378 return err;
2379
b2a5c19c 2380 if (cpmuctrl & CPMU_CTRL_GPHY_10MB_RXONLY) {
f833c4c1
MC
2381 val = MII_TG3_DSP_EXP8_AEDW | MII_TG3_DSP_EXP8_REJ2MHz;
2382 tg3_phydsp_write(tp, MII_TG3_DSP_EXP8, val);
b2a5c19c
MC
2383
2384 tw32(TG3_CPMU_CTRL, cpmuctrl);
2385 }
2386
bcb37f6c
MC
2387 if (GET_CHIP_REV(tp->pci_chip_rev_id) == CHIPREV_5784_AX ||
2388 GET_CHIP_REV(tp->pci_chip_rev_id) == CHIPREV_5761_AX) {
ce057f01
MC
2389 val = tr32(TG3_CPMU_LSPD_1000MB_CLK);
2390 if ((val & CPMU_LSPD_1000MB_MACCLK_MASK) ==
2391 CPMU_LSPD_1000MB_MACCLK_12_5) {
2392 val &= ~CPMU_LSPD_1000MB_MACCLK_MASK;
2393 udelay(40);
2394 tw32_f(TG3_CPMU_LSPD_1000MB_CLK, val);
2395 }
2396 }
2397
63c3a66f 2398 if (tg3_flag(tp, 5717_PLUS) &&
f07e9af3 2399 (tp->phy_flags & TG3_PHYFLG_MII_SERDES))
ecf1410b
MC
2400 return 0;
2401
b2a5c19c
MC
2402 tg3_phy_apply_otp(tp);
2403
f07e9af3 2404 if (tp->phy_flags & TG3_PHYFLG_ENABLE_APD)
6833c043
MC
2405 tg3_phy_toggle_apd(tp, true);
2406 else
2407 tg3_phy_toggle_apd(tp, false);
2408
1da177e4 2409out:
1d36ba45
MC
2410 if ((tp->phy_flags & TG3_PHYFLG_ADC_BUG) &&
2411 !TG3_PHY_AUXCTL_SMDSP_ENABLE(tp)) {
6ee7c0a0
MC
2412 tg3_phydsp_write(tp, 0x201f, 0x2aaa);
2413 tg3_phydsp_write(tp, 0x000a, 0x0323);
1d36ba45 2414 TG3_PHY_AUXCTL_SMDSP_DISABLE(tp);
1da177e4 2415 }
1d36ba45 2416
f07e9af3 2417 if (tp->phy_flags & TG3_PHYFLG_5704_A0_BUG) {
f08aa1a8
MC
2418 tg3_writephy(tp, MII_TG3_MISC_SHDW, 0x8d68);
2419 tg3_writephy(tp, MII_TG3_MISC_SHDW, 0x8d68);
1da177e4 2420 }
1d36ba45 2421
f07e9af3 2422 if (tp->phy_flags & TG3_PHYFLG_BER_BUG) {
1d36ba45
MC
2423 if (!TG3_PHY_AUXCTL_SMDSP_ENABLE(tp)) {
2424 tg3_phydsp_write(tp, 0x000a, 0x310b);
2425 tg3_phydsp_write(tp, 0x201f, 0x9506);
2426 tg3_phydsp_write(tp, 0x401f, 0x14e2);
2427 TG3_PHY_AUXCTL_SMDSP_DISABLE(tp);
2428 }
f07e9af3 2429 } else if (tp->phy_flags & TG3_PHYFLG_JITTER_BUG) {
1d36ba45
MC
2430 if (!TG3_PHY_AUXCTL_SMDSP_ENABLE(tp)) {
2431 tg3_writephy(tp, MII_TG3_DSP_ADDRESS, 0x000a);
2432 if (tp->phy_flags & TG3_PHYFLG_ADJUST_TRIM) {
2433 tg3_writephy(tp, MII_TG3_DSP_RW_PORT, 0x110b);
2434 tg3_writephy(tp, MII_TG3_TEST1,
2435 MII_TG3_TEST1_TRIM_EN | 0x4);
2436 } else
2437 tg3_writephy(tp, MII_TG3_DSP_RW_PORT, 0x010b);
2438
2439 TG3_PHY_AUXCTL_SMDSP_DISABLE(tp);
2440 }
c424cb24 2441 }
1d36ba45 2442
1da177e4
LT
2443 /* Set Extended packet length bit (bit 14) on all chips that */
2444 /* support jumbo frames */
79eb6904 2445 if ((tp->phy_id & TG3_PHY_ID_MASK) == TG3_PHY_ID_BCM5401) {
1da177e4 2446 /* Cannot do read-modify-write on 5401 */
b4bd2929 2447 tg3_phy_auxctl_write(tp, MII_TG3_AUXCTL_SHDWSEL_AUXCTL, 0x4c20);
63c3a66f 2448 } else if (tg3_flag(tp, JUMBO_CAPABLE)) {
1da177e4 2449 /* Set bit 14 with read-modify-write to preserve other bits */
15ee95c3
MC
2450 err = tg3_phy_auxctl_read(tp,
2451 MII_TG3_AUXCTL_SHDWSEL_AUXCTL, &val);
2452 if (!err)
b4bd2929
MC
2453 tg3_phy_auxctl_write(tp, MII_TG3_AUXCTL_SHDWSEL_AUXCTL,
2454 val | MII_TG3_AUXCTL_ACTL_EXTPKTLEN);
1da177e4
LT
2455 }
2456
2457 /* Set phy register 0x10 bit 0 to high fifo elasticity to support
2458 * jumbo frames transmission.
2459 */
63c3a66f 2460 if (tg3_flag(tp, JUMBO_CAPABLE)) {
f833c4c1 2461 if (!tg3_readphy(tp, MII_TG3_EXT_CTRL, &val))
c6cdf436 2462 tg3_writephy(tp, MII_TG3_EXT_CTRL,
f833c4c1 2463 val | MII_TG3_EXT_CTRL_FIFO_ELASTIC);
1da177e4
LT
2464 }
2465
715116a1 2466 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5906) {
715116a1 2467 /* adjust output voltage */
535ef6e1 2468 tg3_writephy(tp, MII_TG3_FET_PTEST, 0x12);
715116a1
MC
2469 }
2470
9ef8ca99 2471 tg3_phy_toggle_automdix(tp, 1);
1da177e4
LT
2472 tg3_phy_set_wirespeed(tp);
2473 return 0;
2474}
2475
3a1e19d3
MC
2476#define TG3_GPIO_MSG_DRVR_PRES 0x00000001
2477#define TG3_GPIO_MSG_NEED_VAUX 0x00000002
2478#define TG3_GPIO_MSG_MASK (TG3_GPIO_MSG_DRVR_PRES | \
2479 TG3_GPIO_MSG_NEED_VAUX)
2480#define TG3_GPIO_MSG_ALL_DRVR_PRES_MASK \
2481 ((TG3_GPIO_MSG_DRVR_PRES << 0) | \
2482 (TG3_GPIO_MSG_DRVR_PRES << 4) | \
2483 (TG3_GPIO_MSG_DRVR_PRES << 8) | \
2484 (TG3_GPIO_MSG_DRVR_PRES << 12))
2485
2486#define TG3_GPIO_MSG_ALL_NEED_VAUX_MASK \
2487 ((TG3_GPIO_MSG_NEED_VAUX << 0) | \
2488 (TG3_GPIO_MSG_NEED_VAUX << 4) | \
2489 (TG3_GPIO_MSG_NEED_VAUX << 8) | \
2490 (TG3_GPIO_MSG_NEED_VAUX << 12))
2491
2492static inline u32 tg3_set_function_status(struct tg3 *tp, u32 newstat)
2493{
2494 u32 status, shift;
2495
2496 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5717 ||
2497 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5719)
2498 status = tg3_ape_read32(tp, TG3_APE_GPIO_MSG);
2499 else
2500 status = tr32(TG3_CPMU_DRV_STATUS);
2501
2502 shift = TG3_APE_GPIO_MSG_SHIFT + 4 * tp->pci_fn;
2503 status &= ~(TG3_GPIO_MSG_MASK << shift);
2504 status |= (newstat << shift);
2505
2506 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5717 ||
2507 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5719)
2508 tg3_ape_write32(tp, TG3_APE_GPIO_MSG, status);
2509 else
2510 tw32(TG3_CPMU_DRV_STATUS, status);
2511
2512 return status >> TG3_APE_GPIO_MSG_SHIFT;
2513}
2514
520b2756
MC
2515static inline int tg3_pwrsrc_switch_to_vmain(struct tg3 *tp)
2516{
2517 if (!tg3_flag(tp, IS_NIC))
2518 return 0;
2519
3a1e19d3
MC
2520 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5717 ||
2521 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5719 ||
2522 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5720) {
2523 if (tg3_ape_lock(tp, TG3_APE_LOCK_GPIO))
2524 return -EIO;
520b2756 2525
3a1e19d3
MC
2526 tg3_set_function_status(tp, TG3_GPIO_MSG_DRVR_PRES);
2527
2528 tw32_wait_f(GRC_LOCAL_CTRL, tp->grc_local_ctrl,
2529 TG3_GRC_LCLCTL_PWRSW_DELAY);
2530
2531 tg3_ape_unlock(tp, TG3_APE_LOCK_GPIO);
2532 } else {
2533 tw32_wait_f(GRC_LOCAL_CTRL, tp->grc_local_ctrl,
2534 TG3_GRC_LCLCTL_PWRSW_DELAY);
2535 }
6f5c8f83 2536
520b2756
MC
2537 return 0;
2538}
2539
2540static void tg3_pwrsrc_die_with_vmain(struct tg3 *tp)
2541{
2542 u32 grc_local_ctrl;
2543
2544 if (!tg3_flag(tp, IS_NIC) ||
2545 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5700 ||
2546 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5701)
2547 return;
2548
2549 grc_local_ctrl = tp->grc_local_ctrl | GRC_LCLCTRL_GPIO_OE1;
2550
2551 tw32_wait_f(GRC_LOCAL_CTRL,
2552 grc_local_ctrl | GRC_LCLCTRL_GPIO_OUTPUT1,
2553 TG3_GRC_LCLCTL_PWRSW_DELAY);
2554
2555 tw32_wait_f(GRC_LOCAL_CTRL,
2556 grc_local_ctrl,
2557 TG3_GRC_LCLCTL_PWRSW_DELAY);
2558
2559 tw32_wait_f(GRC_LOCAL_CTRL,
2560 grc_local_ctrl | GRC_LCLCTRL_GPIO_OUTPUT1,
2561 TG3_GRC_LCLCTL_PWRSW_DELAY);
2562}
2563
2564static void tg3_pwrsrc_switch_to_vaux(struct tg3 *tp)
2565{
2566 if (!tg3_flag(tp, IS_NIC))
2567 return;
2568
2569 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5700 ||
2570 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5701) {
2571 tw32_wait_f(GRC_LOCAL_CTRL, tp->grc_local_ctrl |
2572 (GRC_LCLCTRL_GPIO_OE0 |
2573 GRC_LCLCTRL_GPIO_OE1 |
2574 GRC_LCLCTRL_GPIO_OE2 |
2575 GRC_LCLCTRL_GPIO_OUTPUT0 |
2576 GRC_LCLCTRL_GPIO_OUTPUT1),
2577 TG3_GRC_LCLCTL_PWRSW_DELAY);
2578 } else if (tp->pdev->device == PCI_DEVICE_ID_TIGON3_5761 ||
2579 tp->pdev->device == TG3PCI_DEVICE_TIGON3_5761S) {
2580 /* The 5761 non-e device swaps GPIO 0 and GPIO 2. */
2581 u32 grc_local_ctrl = GRC_LCLCTRL_GPIO_OE0 |
2582 GRC_LCLCTRL_GPIO_OE1 |
2583 GRC_LCLCTRL_GPIO_OE2 |
2584 GRC_LCLCTRL_GPIO_OUTPUT0 |
2585 GRC_LCLCTRL_GPIO_OUTPUT1 |
2586 tp->grc_local_ctrl;
2587 tw32_wait_f(GRC_LOCAL_CTRL, grc_local_ctrl,
2588 TG3_GRC_LCLCTL_PWRSW_DELAY);
2589
2590 grc_local_ctrl |= GRC_LCLCTRL_GPIO_OUTPUT2;
2591 tw32_wait_f(GRC_LOCAL_CTRL, grc_local_ctrl,
2592 TG3_GRC_LCLCTL_PWRSW_DELAY);
2593
2594 grc_local_ctrl &= ~GRC_LCLCTRL_GPIO_OUTPUT0;
2595 tw32_wait_f(GRC_LOCAL_CTRL, grc_local_ctrl,
2596 TG3_GRC_LCLCTL_PWRSW_DELAY);
2597 } else {
2598 u32 no_gpio2;
2599 u32 grc_local_ctrl = 0;
2600
2601 /* Workaround to prevent overdrawing Amps. */
2602 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5714) {
2603 grc_local_ctrl |= GRC_LCLCTRL_GPIO_OE3;
2604 tw32_wait_f(GRC_LOCAL_CTRL, tp->grc_local_ctrl |
2605 grc_local_ctrl,
2606 TG3_GRC_LCLCTL_PWRSW_DELAY);
2607 }
2608
2609 /* On 5753 and variants, GPIO2 cannot be used. */
2610 no_gpio2 = tp->nic_sram_data_cfg &
2611 NIC_SRAM_DATA_CFG_NO_GPIO2;
2612
2613 grc_local_ctrl |= GRC_LCLCTRL_GPIO_OE0 |
2614 GRC_LCLCTRL_GPIO_OE1 |
2615 GRC_LCLCTRL_GPIO_OE2 |
2616 GRC_LCLCTRL_GPIO_OUTPUT1 |
2617 GRC_LCLCTRL_GPIO_OUTPUT2;
2618 if (no_gpio2) {
2619 grc_local_ctrl &= ~(GRC_LCLCTRL_GPIO_OE2 |
2620 GRC_LCLCTRL_GPIO_OUTPUT2);
2621 }
2622 tw32_wait_f(GRC_LOCAL_CTRL,
2623 tp->grc_local_ctrl | grc_local_ctrl,
2624 TG3_GRC_LCLCTL_PWRSW_DELAY);
2625
2626 grc_local_ctrl |= GRC_LCLCTRL_GPIO_OUTPUT0;
2627
2628 tw32_wait_f(GRC_LOCAL_CTRL,
2629 tp->grc_local_ctrl | grc_local_ctrl,
2630 TG3_GRC_LCLCTL_PWRSW_DELAY);
2631
2632 if (!no_gpio2) {
2633 grc_local_ctrl &= ~GRC_LCLCTRL_GPIO_OUTPUT2;
2634 tw32_wait_f(GRC_LOCAL_CTRL,
2635 tp->grc_local_ctrl | grc_local_ctrl,
2636 TG3_GRC_LCLCTL_PWRSW_DELAY);
2637 }
2638 }
3a1e19d3
MC
2639}
2640
cd0d7228 2641static void tg3_frob_aux_power_5717(struct tg3 *tp, bool wol_enable)
3a1e19d3
MC
2642{
2643 u32 msg = 0;
2644
2645 /* Serialize power state transitions */
2646 if (tg3_ape_lock(tp, TG3_APE_LOCK_GPIO))
2647 return;
2648
cd0d7228 2649 if (tg3_flag(tp, ENABLE_ASF) || tg3_flag(tp, ENABLE_APE) || wol_enable)
3a1e19d3
MC
2650 msg = TG3_GPIO_MSG_NEED_VAUX;
2651
2652 msg = tg3_set_function_status(tp, msg);
2653
2654 if (msg & TG3_GPIO_MSG_ALL_DRVR_PRES_MASK)
2655 goto done;
6f5c8f83 2656
3a1e19d3
MC
2657 if (msg & TG3_GPIO_MSG_ALL_NEED_VAUX_MASK)
2658 tg3_pwrsrc_switch_to_vaux(tp);
2659 else
2660 tg3_pwrsrc_die_with_vmain(tp);
2661
2662done:
6f5c8f83 2663 tg3_ape_unlock(tp, TG3_APE_LOCK_GPIO);
520b2756
MC
2664}
2665
cd0d7228 2666static void tg3_frob_aux_power(struct tg3 *tp, bool include_wol)
1da177e4 2667{
683644b7 2668 bool need_vaux = false;
1da177e4 2669
334355aa 2670 /* The GPIOs do something completely different on 57765. */
55086ad9 2671 if (!tg3_flag(tp, IS_NIC) || tg3_flag(tp, 57765_CLASS))
1da177e4
LT
2672 return;
2673
3a1e19d3
MC
2674 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5717 ||
2675 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5719 ||
2676 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5720) {
cd0d7228
MC
2677 tg3_frob_aux_power_5717(tp, include_wol ?
2678 tg3_flag(tp, WOL_ENABLE) != 0 : 0);
3a1e19d3
MC
2679 return;
2680 }
2681
2682 if (tp->pdev_peer && tp->pdev_peer != tp->pdev) {
8c2dc7e1
MC
2683 struct net_device *dev_peer;
2684
2685 dev_peer = pci_get_drvdata(tp->pdev_peer);
683644b7 2686
bc1c7567 2687 /* remove_one() may have been run on the peer. */
683644b7
MC
2688 if (dev_peer) {
2689 struct tg3 *tp_peer = netdev_priv(dev_peer);
2690
63c3a66f 2691 if (tg3_flag(tp_peer, INIT_COMPLETE))
683644b7
MC
2692 return;
2693
cd0d7228 2694 if ((include_wol && tg3_flag(tp_peer, WOL_ENABLE)) ||
63c3a66f 2695 tg3_flag(tp_peer, ENABLE_ASF))
683644b7
MC
2696 need_vaux = true;
2697 }
1da177e4
LT
2698 }
2699
cd0d7228
MC
2700 if ((include_wol && tg3_flag(tp, WOL_ENABLE)) ||
2701 tg3_flag(tp, ENABLE_ASF))
683644b7
MC
2702 need_vaux = true;
2703
520b2756
MC
2704 if (need_vaux)
2705 tg3_pwrsrc_switch_to_vaux(tp);
2706 else
2707 tg3_pwrsrc_die_with_vmain(tp);
1da177e4
LT
2708}
2709
e8f3f6ca
MC
2710static int tg3_5700_link_polarity(struct tg3 *tp, u32 speed)
2711{
2712 if (tp->led_ctrl == LED_CTRL_MODE_PHY_2)
2713 return 1;
79eb6904 2714 else if ((tp->phy_id & TG3_PHY_ID_MASK) == TG3_PHY_ID_BCM5411) {
e8f3f6ca
MC
2715 if (speed != SPEED_10)
2716 return 1;
2717 } else if (speed == SPEED_10)
2718 return 1;
2719
2720 return 0;
2721}
2722
0a459aac 2723static void tg3_power_down_phy(struct tg3 *tp, bool do_low_power)
15c3b696 2724{
ce057f01
MC
2725 u32 val;
2726
f07e9af3 2727 if (tp->phy_flags & TG3_PHYFLG_PHY_SERDES) {
5129724a
MC
2728 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5704) {
2729 u32 sg_dig_ctrl = tr32(SG_DIG_CTRL);
2730 u32 serdes_cfg = tr32(MAC_SERDES_CFG);
2731
2732 sg_dig_ctrl |=
2733 SG_DIG_USING_HW_AUTONEG | SG_DIG_SOFT_RESET;
2734 tw32(SG_DIG_CTRL, sg_dig_ctrl);
2735 tw32(MAC_SERDES_CFG, serdes_cfg | (1 << 15));
2736 }
3f7045c1 2737 return;
5129724a 2738 }
3f7045c1 2739
60189ddf 2740 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5906) {
60189ddf
MC
2741 tg3_bmcr_reset(tp);
2742 val = tr32(GRC_MISC_CFG);
2743 tw32_f(GRC_MISC_CFG, val | GRC_MISC_CFG_EPHY_IDDQ);
2744 udelay(40);
2745 return;
f07e9af3 2746 } else if (tp->phy_flags & TG3_PHYFLG_IS_FET) {
0e5f784c
MC
2747 u32 phytest;
2748 if (!tg3_readphy(tp, MII_TG3_FET_TEST, &phytest)) {
2749 u32 phy;
2750
2751 tg3_writephy(tp, MII_ADVERTISE, 0);
2752 tg3_writephy(tp, MII_BMCR,
2753 BMCR_ANENABLE | BMCR_ANRESTART);
2754
2755 tg3_writephy(tp, MII_TG3_FET_TEST,
2756 phytest | MII_TG3_FET_SHADOW_EN);
2757 if (!tg3_readphy(tp, MII_TG3_FET_SHDW_AUXMODE4, &phy)) {
2758 phy |= MII_TG3_FET_SHDW_AUXMODE4_SBPD;
2759 tg3_writephy(tp,
2760 MII_TG3_FET_SHDW_AUXMODE4,
2761 phy);
2762 }
2763 tg3_writephy(tp, MII_TG3_FET_TEST, phytest);
2764 }
2765 return;
0a459aac 2766 } else if (do_low_power) {
715116a1
MC
2767 tg3_writephy(tp, MII_TG3_EXT_CTRL,
2768 MII_TG3_EXT_CTRL_FORCE_LED_OFF);
0a459aac 2769
b4bd2929
MC
2770 val = MII_TG3_AUXCTL_PCTL_100TX_LPWR |
2771 MII_TG3_AUXCTL_PCTL_SPR_ISOLATE |
2772 MII_TG3_AUXCTL_PCTL_VREG_11V;
2773 tg3_phy_auxctl_write(tp, MII_TG3_AUXCTL_SHDWSEL_PWRCTL, val);
715116a1 2774 }
3f7045c1 2775
15c3b696
MC
2776 /* The PHY should not be powered down on some chips because
2777 * of bugs.
2778 */
2779 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5700 ||
2780 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5704 ||
2781 (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5780 &&
f07e9af3 2782 (tp->phy_flags & TG3_PHYFLG_MII_SERDES)))
15c3b696 2783 return;
ce057f01 2784
bcb37f6c
MC
2785 if (GET_CHIP_REV(tp->pci_chip_rev_id) == CHIPREV_5784_AX ||
2786 GET_CHIP_REV(tp->pci_chip_rev_id) == CHIPREV_5761_AX) {
ce057f01
MC
2787 val = tr32(TG3_CPMU_LSPD_1000MB_CLK);
2788 val &= ~CPMU_LSPD_1000MB_MACCLK_MASK;
2789 val |= CPMU_LSPD_1000MB_MACCLK_12_5;
2790 tw32_f(TG3_CPMU_LSPD_1000MB_CLK, val);
2791 }
2792
15c3b696
MC
2793 tg3_writephy(tp, MII_BMCR, BMCR_PDOWN);
2794}
2795
ffbcfed4
MC
2796/* tp->lock is held. */
2797static int tg3_nvram_lock(struct tg3 *tp)
2798{
63c3a66f 2799 if (tg3_flag(tp, NVRAM)) {
ffbcfed4
MC
2800 int i;
2801
2802 if (tp->nvram_lock_cnt == 0) {
2803 tw32(NVRAM_SWARB, SWARB_REQ_SET1);
2804 for (i = 0; i < 8000; i++) {
2805 if (tr32(NVRAM_SWARB) & SWARB_GNT1)
2806 break;
2807 udelay(20);
2808 }
2809 if (i == 8000) {
2810 tw32(NVRAM_SWARB, SWARB_REQ_CLR1);
2811 return -ENODEV;
2812 }
2813 }
2814 tp->nvram_lock_cnt++;
2815 }
2816 return 0;
2817}
2818
2819/* tp->lock is held. */
2820static void tg3_nvram_unlock(struct tg3 *tp)
2821{
63c3a66f 2822 if (tg3_flag(tp, NVRAM)) {
ffbcfed4
MC
2823 if (tp->nvram_lock_cnt > 0)
2824 tp->nvram_lock_cnt--;
2825 if (tp->nvram_lock_cnt == 0)
2826 tw32_f(NVRAM_SWARB, SWARB_REQ_CLR1);
2827 }
2828}
2829
2830/* tp->lock is held. */
2831static void tg3_enable_nvram_access(struct tg3 *tp)
2832{
63c3a66f 2833 if (tg3_flag(tp, 5750_PLUS) && !tg3_flag(tp, PROTECTED_NVRAM)) {
ffbcfed4
MC
2834 u32 nvaccess = tr32(NVRAM_ACCESS);
2835
2836 tw32(NVRAM_ACCESS, nvaccess | ACCESS_ENABLE);
2837 }
2838}
2839
2840/* tp->lock is held. */
2841static void tg3_disable_nvram_access(struct tg3 *tp)
2842{
63c3a66f 2843 if (tg3_flag(tp, 5750_PLUS) && !tg3_flag(tp, PROTECTED_NVRAM)) {
ffbcfed4
MC
2844 u32 nvaccess = tr32(NVRAM_ACCESS);
2845
2846 tw32(NVRAM_ACCESS, nvaccess & ~ACCESS_ENABLE);
2847 }
2848}
2849
2850static int tg3_nvram_read_using_eeprom(struct tg3 *tp,
2851 u32 offset, u32 *val)
2852{
2853 u32 tmp;
2854 int i;
2855
2856 if (offset > EEPROM_ADDR_ADDR_MASK || (offset % 4) != 0)
2857 return -EINVAL;
2858
2859 tmp = tr32(GRC_EEPROM_ADDR) & ~(EEPROM_ADDR_ADDR_MASK |
2860 EEPROM_ADDR_DEVID_MASK |
2861 EEPROM_ADDR_READ);
2862 tw32(GRC_EEPROM_ADDR,
2863 tmp |
2864 (0 << EEPROM_ADDR_DEVID_SHIFT) |
2865 ((offset << EEPROM_ADDR_ADDR_SHIFT) &
2866 EEPROM_ADDR_ADDR_MASK) |
2867 EEPROM_ADDR_READ | EEPROM_ADDR_START);
2868
2869 for (i = 0; i < 1000; i++) {
2870 tmp = tr32(GRC_EEPROM_ADDR);
2871
2872 if (tmp & EEPROM_ADDR_COMPLETE)
2873 break;
2874 msleep(1);
2875 }
2876 if (!(tmp & EEPROM_ADDR_COMPLETE))
2877 return -EBUSY;
2878
62cedd11
MC
2879 tmp = tr32(GRC_EEPROM_DATA);
2880
2881 /*
2882 * The data will always be opposite the native endian
2883 * format. Perform a blind byteswap to compensate.
2884 */
2885 *val = swab32(tmp);
2886
ffbcfed4
MC
2887 return 0;
2888}
2889
2890#define NVRAM_CMD_TIMEOUT 10000
2891
2892static int tg3_nvram_exec_cmd(struct tg3 *tp, u32 nvram_cmd)
2893{
2894 int i;
2895
2896 tw32(NVRAM_CMD, nvram_cmd);
2897 for (i = 0; i < NVRAM_CMD_TIMEOUT; i++) {
2898 udelay(10);
2899 if (tr32(NVRAM_CMD) & NVRAM_CMD_DONE) {
2900 udelay(10);
2901 break;
2902 }
2903 }
2904
2905 if (i == NVRAM_CMD_TIMEOUT)
2906 return -EBUSY;
2907
2908 return 0;
2909}
2910
2911static u32 tg3_nvram_phys_addr(struct tg3 *tp, u32 addr)
2912{
63c3a66f
JP
2913 if (tg3_flag(tp, NVRAM) &&
2914 tg3_flag(tp, NVRAM_BUFFERED) &&
2915 tg3_flag(tp, FLASH) &&
2916 !tg3_flag(tp, NO_NVRAM_ADDR_TRANS) &&
ffbcfed4
MC
2917 (tp->nvram_jedecnum == JEDEC_ATMEL))
2918
2919 addr = ((addr / tp->nvram_pagesize) <<
2920 ATMEL_AT45DB0X1B_PAGE_POS) +
2921 (addr % tp->nvram_pagesize);
2922
2923 return addr;
2924}
2925
2926static u32 tg3_nvram_logical_addr(struct tg3 *tp, u32 addr)
2927{
63c3a66f
JP
2928 if (tg3_flag(tp, NVRAM) &&
2929 tg3_flag(tp, NVRAM_BUFFERED) &&
2930 tg3_flag(tp, FLASH) &&
2931 !tg3_flag(tp, NO_NVRAM_ADDR_TRANS) &&
ffbcfed4
MC
2932 (tp->nvram_jedecnum == JEDEC_ATMEL))
2933
2934 addr = ((addr >> ATMEL_AT45DB0X1B_PAGE_POS) *
2935 tp->nvram_pagesize) +
2936 (addr & ((1 << ATMEL_AT45DB0X1B_PAGE_POS) - 1));
2937
2938 return addr;
2939}
2940
e4f34110
MC
2941/* NOTE: Data read in from NVRAM is byteswapped according to
2942 * the byteswapping settings for all other register accesses.
2943 * tg3 devices are BE devices, so on a BE machine, the data
2944 * returned will be exactly as it is seen in NVRAM. On a LE
2945 * machine, the 32-bit value will be byteswapped.
2946 */
ffbcfed4
MC
2947static int tg3_nvram_read(struct tg3 *tp, u32 offset, u32 *val)
2948{
2949 int ret;
2950
63c3a66f 2951 if (!tg3_flag(tp, NVRAM))
ffbcfed4
MC
2952 return tg3_nvram_read_using_eeprom(tp, offset, val);
2953
2954 offset = tg3_nvram_phys_addr(tp, offset);
2955
2956 if (offset > NVRAM_ADDR_MSK)
2957 return -EINVAL;
2958
2959 ret = tg3_nvram_lock(tp);
2960 if (ret)
2961 return ret;
2962
2963 tg3_enable_nvram_access(tp);
2964
2965 tw32(NVRAM_ADDR, offset);
2966 ret = tg3_nvram_exec_cmd(tp, NVRAM_CMD_RD | NVRAM_CMD_GO |
2967 NVRAM_CMD_FIRST | NVRAM_CMD_LAST | NVRAM_CMD_DONE);
2968
2969 if (ret == 0)
e4f34110 2970 *val = tr32(NVRAM_RDDATA);
ffbcfed4
MC
2971
2972 tg3_disable_nvram_access(tp);
2973
2974 tg3_nvram_unlock(tp);
2975
2976 return ret;
2977}
2978
a9dc529d
MC
2979/* Ensures NVRAM data is in bytestream format. */
2980static int tg3_nvram_read_be32(struct tg3 *tp, u32 offset, __be32 *val)
ffbcfed4
MC
2981{
2982 u32 v;
a9dc529d 2983 int res = tg3_nvram_read(tp, offset, &v);
ffbcfed4 2984 if (!res)
a9dc529d 2985 *val = cpu_to_be32(v);
ffbcfed4
MC
2986 return res;
2987}
2988
dbe9b92a
MC
2989static int tg3_nvram_write_block_using_eeprom(struct tg3 *tp,
2990 u32 offset, u32 len, u8 *buf)
2991{
2992 int i, j, rc = 0;
2993 u32 val;
2994
2995 for (i = 0; i < len; i += 4) {
2996 u32 addr;
2997 __be32 data;
2998
2999 addr = offset + i;
3000
3001 memcpy(&data, buf + i, 4);
3002
3003 /*
3004 * The SEEPROM interface expects the data to always be opposite
3005 * the native endian format. We accomplish this by reversing
3006 * all the operations that would have been performed on the
3007 * data from a call to tg3_nvram_read_be32().
3008 */
3009 tw32(GRC_EEPROM_DATA, swab32(be32_to_cpu(data)));
3010
3011 val = tr32(GRC_EEPROM_ADDR);
3012 tw32(GRC_EEPROM_ADDR, val | EEPROM_ADDR_COMPLETE);
3013
3014 val &= ~(EEPROM_ADDR_ADDR_MASK | EEPROM_ADDR_DEVID_MASK |
3015 EEPROM_ADDR_READ);
3016 tw32(GRC_EEPROM_ADDR, val |
3017 (0 << EEPROM_ADDR_DEVID_SHIFT) |
3018 (addr & EEPROM_ADDR_ADDR_MASK) |
3019 EEPROM_ADDR_START |
3020 EEPROM_ADDR_WRITE);
3021
3022 for (j = 0; j < 1000; j++) {
3023 val = tr32(GRC_EEPROM_ADDR);
3024
3025 if (val & EEPROM_ADDR_COMPLETE)
3026 break;
3027 msleep(1);
3028 }
3029 if (!(val & EEPROM_ADDR_COMPLETE)) {
3030 rc = -EBUSY;
3031 break;
3032 }
3033 }
3034
3035 return rc;
3036}
3037
3038/* offset and length are dword aligned */
3039static int tg3_nvram_write_block_unbuffered(struct tg3 *tp, u32 offset, u32 len,
3040 u8 *buf)
3041{
3042 int ret = 0;
3043 u32 pagesize = tp->nvram_pagesize;
3044 u32 pagemask = pagesize - 1;
3045 u32 nvram_cmd;
3046 u8 *tmp;
3047
3048 tmp = kmalloc(pagesize, GFP_KERNEL);
3049 if (tmp == NULL)
3050 return -ENOMEM;
3051
3052 while (len) {
3053 int j;
3054 u32 phy_addr, page_off, size;
3055
3056 phy_addr = offset & ~pagemask;
3057
3058 for (j = 0; j < pagesize; j += 4) {
3059 ret = tg3_nvram_read_be32(tp, phy_addr + j,
3060 (__be32 *) (tmp + j));
3061 if (ret)
3062 break;
3063 }
3064 if (ret)
3065 break;
3066
3067 page_off = offset & pagemask;
3068 size = pagesize;
3069 if (len < size)
3070 size = len;
3071
3072 len -= size;
3073
3074 memcpy(tmp + page_off, buf, size);
3075
3076 offset = offset + (pagesize - page_off);
3077
3078 tg3_enable_nvram_access(tp);
3079
3080 /*
3081 * Before we can erase the flash page, we need
3082 * to issue a special "write enable" command.
3083 */
3084 nvram_cmd = NVRAM_CMD_WREN | NVRAM_CMD_GO | NVRAM_CMD_DONE;
3085
3086 if (tg3_nvram_exec_cmd(tp, nvram_cmd))
3087 break;
3088
3089 /* Erase the target page */
3090 tw32(NVRAM_ADDR, phy_addr);
3091
3092 nvram_cmd = NVRAM_CMD_GO | NVRAM_CMD_DONE | NVRAM_CMD_WR |
3093 NVRAM_CMD_FIRST | NVRAM_CMD_LAST | NVRAM_CMD_ERASE;
3094
3095 if (tg3_nvram_exec_cmd(tp, nvram_cmd))
3096 break;
3097
3098 /* Issue another write enable to start the write. */
3099 nvram_cmd = NVRAM_CMD_WREN | NVRAM_CMD_GO | NVRAM_CMD_DONE;
3100
3101 if (tg3_nvram_exec_cmd(tp, nvram_cmd))
3102 break;
3103
3104 for (j = 0; j < pagesize; j += 4) {
3105 __be32 data;
3106
3107 data = *((__be32 *) (tmp + j));
3108
3109 tw32(NVRAM_WRDATA, be32_to_cpu(data));
3110
3111 tw32(NVRAM_ADDR, phy_addr + j);
3112
3113 nvram_cmd = NVRAM_CMD_GO | NVRAM_CMD_DONE |
3114 NVRAM_CMD_WR;
3115
3116 if (j == 0)
3117 nvram_cmd |= NVRAM_CMD_FIRST;
3118 else if (j == (pagesize - 4))
3119 nvram_cmd |= NVRAM_CMD_LAST;
3120
3121 ret = tg3_nvram_exec_cmd(tp, nvram_cmd);
3122 if (ret)
3123 break;
3124 }
3125 if (ret)
3126 break;
3127 }
3128
3129 nvram_cmd = NVRAM_CMD_WRDI | NVRAM_CMD_GO | NVRAM_CMD_DONE;
3130 tg3_nvram_exec_cmd(tp, nvram_cmd);
3131
3132 kfree(tmp);
3133
3134 return ret;
3135}
3136
3137/* offset and length are dword aligned */
3138static int tg3_nvram_write_block_buffered(struct tg3 *tp, u32 offset, u32 len,
3139 u8 *buf)
3140{
3141 int i, ret = 0;
3142
3143 for (i = 0; i < len; i += 4, offset += 4) {
3144 u32 page_off, phy_addr, nvram_cmd;
3145 __be32 data;
3146
3147 memcpy(&data, buf + i, 4);
3148 tw32(NVRAM_WRDATA, be32_to_cpu(data));
3149
3150 page_off = offset % tp->nvram_pagesize;
3151
3152 phy_addr = tg3_nvram_phys_addr(tp, offset);
3153
dbe9b92a
MC
3154 nvram_cmd = NVRAM_CMD_GO | NVRAM_CMD_DONE | NVRAM_CMD_WR;
3155
3156 if (page_off == 0 || i == 0)
3157 nvram_cmd |= NVRAM_CMD_FIRST;
3158 if (page_off == (tp->nvram_pagesize - 4))
3159 nvram_cmd |= NVRAM_CMD_LAST;
3160
3161 if (i == (len - 4))
3162 nvram_cmd |= NVRAM_CMD_LAST;
3163
42278224
MC
3164 if ((nvram_cmd & NVRAM_CMD_FIRST) ||
3165 !tg3_flag(tp, FLASH) ||
3166 !tg3_flag(tp, 57765_PLUS))
3167 tw32(NVRAM_ADDR, phy_addr);
3168
dbe9b92a
MC
3169 if (GET_ASIC_REV(tp->pci_chip_rev_id) != ASIC_REV_5752 &&
3170 !tg3_flag(tp, 5755_PLUS) &&
3171 (tp->nvram_jedecnum == JEDEC_ST) &&
3172 (nvram_cmd & NVRAM_CMD_FIRST)) {
3173 u32 cmd;
3174
3175 cmd = NVRAM_CMD_WREN | NVRAM_CMD_GO | NVRAM_CMD_DONE;
3176 ret = tg3_nvram_exec_cmd(tp, cmd);
3177 if (ret)
3178 break;
3179 }
3180 if (!tg3_flag(tp, FLASH)) {
3181 /* We always do complete word writes to eeprom. */
3182 nvram_cmd |= (NVRAM_CMD_FIRST | NVRAM_CMD_LAST);
3183 }
3184
3185 ret = tg3_nvram_exec_cmd(tp, nvram_cmd);
3186 if (ret)
3187 break;
3188 }
3189 return ret;
3190}
3191
3192/* offset and length are dword aligned */
3193static int tg3_nvram_write_block(struct tg3 *tp, u32 offset, u32 len, u8 *buf)
3194{
3195 int ret;
3196
3197 if (tg3_flag(tp, EEPROM_WRITE_PROT)) {
3198 tw32_f(GRC_LOCAL_CTRL, tp->grc_local_ctrl &
3199 ~GRC_LCLCTRL_GPIO_OUTPUT1);
3200 udelay(40);
3201 }
3202
3203 if (!tg3_flag(tp, NVRAM)) {
3204 ret = tg3_nvram_write_block_using_eeprom(tp, offset, len, buf);
3205 } else {
3206 u32 grc_mode;
3207
3208 ret = tg3_nvram_lock(tp);
3209 if (ret)
3210 return ret;
3211
3212 tg3_enable_nvram_access(tp);
3213 if (tg3_flag(tp, 5750_PLUS) && !tg3_flag(tp, PROTECTED_NVRAM))
3214 tw32(NVRAM_WRITE1, 0x406);
3215
3216 grc_mode = tr32(GRC_MODE);
3217 tw32(GRC_MODE, grc_mode | GRC_MODE_NVRAM_WR_ENABLE);
3218
3219 if (tg3_flag(tp, NVRAM_BUFFERED) || !tg3_flag(tp, FLASH)) {
3220 ret = tg3_nvram_write_block_buffered(tp, offset, len,
3221 buf);
3222 } else {
3223 ret = tg3_nvram_write_block_unbuffered(tp, offset, len,
3224 buf);
3225 }
3226
3227 grc_mode = tr32(GRC_MODE);
3228 tw32(GRC_MODE, grc_mode & ~GRC_MODE_NVRAM_WR_ENABLE);
3229
3230 tg3_disable_nvram_access(tp);
3231 tg3_nvram_unlock(tp);
3232 }
3233
3234 if (tg3_flag(tp, EEPROM_WRITE_PROT)) {
3235 tw32_f(GRC_LOCAL_CTRL, tp->grc_local_ctrl);
3236 udelay(40);
3237 }
3238
3239 return ret;
3240}
3241
997b4f13
MC
3242#define RX_CPU_SCRATCH_BASE 0x30000
3243#define RX_CPU_SCRATCH_SIZE 0x04000
3244#define TX_CPU_SCRATCH_BASE 0x34000
3245#define TX_CPU_SCRATCH_SIZE 0x04000
3246
3247/* tp->lock is held. */
3248static int tg3_halt_cpu(struct tg3 *tp, u32 offset)
3249{
3250 int i;
3251
3252 BUG_ON(offset == TX_CPU_BASE && tg3_flag(tp, 5705_PLUS));
3253
3254 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5906) {
3255 u32 val = tr32(GRC_VCPU_EXT_CTRL);
3256
3257 tw32(GRC_VCPU_EXT_CTRL, val | GRC_VCPU_EXT_CTRL_HALT_CPU);
3258 return 0;
3259 }
3260 if (offset == RX_CPU_BASE) {
3261 for (i = 0; i < 10000; i++) {
3262 tw32(offset + CPU_STATE, 0xffffffff);
3263 tw32(offset + CPU_MODE, CPU_MODE_HALT);
3264 if (tr32(offset + CPU_MODE) & CPU_MODE_HALT)
3265 break;
3266 }
3267
3268 tw32(offset + CPU_STATE, 0xffffffff);
3269 tw32_f(offset + CPU_MODE, CPU_MODE_HALT);
3270 udelay(10);
3271 } else {
3272 for (i = 0; i < 10000; i++) {
3273 tw32(offset + CPU_STATE, 0xffffffff);
3274 tw32(offset + CPU_MODE, CPU_MODE_HALT);
3275 if (tr32(offset + CPU_MODE) & CPU_MODE_HALT)
3276 break;
3277 }
3278 }
3279
3280 if (i >= 10000) {
3281 netdev_err(tp->dev, "%s timed out, %s CPU\n",
3282 __func__, offset == RX_CPU_BASE ? "RX" : "TX");
3283 return -ENODEV;
3284 }
3285
3286 /* Clear firmware's nvram arbitration. */
3287 if (tg3_flag(tp, NVRAM))
3288 tw32(NVRAM_SWARB, SWARB_REQ_CLR0);
3289 return 0;
3290}
3291
3292struct fw_info {
3293 unsigned int fw_base;
3294 unsigned int fw_len;
3295 const __be32 *fw_data;
3296};
3297
3298/* tp->lock is held. */
3299static int tg3_load_firmware_cpu(struct tg3 *tp, u32 cpu_base,
3300 u32 cpu_scratch_base, int cpu_scratch_size,
3301 struct fw_info *info)
3302{
3303 int err, lock_err, i;
3304 void (*write_op)(struct tg3 *, u32, u32);
3305
3306 if (cpu_base == TX_CPU_BASE && tg3_flag(tp, 5705_PLUS)) {
3307 netdev_err(tp->dev,
3308 "%s: Trying to load TX cpu firmware which is 5705\n",
3309 __func__);
3310 return -EINVAL;
3311 }
3312
3313 if (tg3_flag(tp, 5705_PLUS))
3314 write_op = tg3_write_mem;
3315 else
3316 write_op = tg3_write_indirect_reg32;
3317
3318 /* It is possible that bootcode is still loading at this point.
3319 * Get the nvram lock first before halting the cpu.
3320 */
3321 lock_err = tg3_nvram_lock(tp);
3322 err = tg3_halt_cpu(tp, cpu_base);
3323 if (!lock_err)
3324 tg3_nvram_unlock(tp);
3325 if (err)
3326 goto out;
3327
3328 for (i = 0; i < cpu_scratch_size; i += sizeof(u32))
3329 write_op(tp, cpu_scratch_base + i, 0);
3330 tw32(cpu_base + CPU_STATE, 0xffffffff);
3331 tw32(cpu_base + CPU_MODE, tr32(cpu_base+CPU_MODE)|CPU_MODE_HALT);
3332 for (i = 0; i < (info->fw_len / sizeof(u32)); i++)
3333 write_op(tp, (cpu_scratch_base +
3334 (info->fw_base & 0xffff) +
3335 (i * sizeof(u32))),
3336 be32_to_cpu(info->fw_data[i]));
3337
3338 err = 0;
3339
3340out:
3341 return err;
3342}
3343
3344/* tp->lock is held. */
3345static int tg3_load_5701_a0_firmware_fix(struct tg3 *tp)
3346{
3347 struct fw_info info;
3348 const __be32 *fw_data;
3349 int err, i;
3350
3351 fw_data = (void *)tp->fw->data;
3352
3353 /* Firmware blob starts with version numbers, followed by
3354 start address and length. We are setting complete length.
3355 length = end_address_of_bss - start_address_of_text.
3356 Remainder is the blob to be loaded contiguously
3357 from start address. */
3358
3359 info.fw_base = be32_to_cpu(fw_data[1]);
3360 info.fw_len = tp->fw->size - 12;
3361 info.fw_data = &fw_data[3];
3362
3363 err = tg3_load_firmware_cpu(tp, RX_CPU_BASE,
3364 RX_CPU_SCRATCH_BASE, RX_CPU_SCRATCH_SIZE,
3365 &info);
3366 if (err)
3367 return err;
3368
3369 err = tg3_load_firmware_cpu(tp, TX_CPU_BASE,
3370 TX_CPU_SCRATCH_BASE, TX_CPU_SCRATCH_SIZE,
3371 &info);
3372 if (err)
3373 return err;
3374
3375 /* Now startup only the RX cpu. */
3376 tw32(RX_CPU_BASE + CPU_STATE, 0xffffffff);
3377 tw32_f(RX_CPU_BASE + CPU_PC, info.fw_base);
3378
3379 for (i = 0; i < 5; i++) {
3380 if (tr32(RX_CPU_BASE + CPU_PC) == info.fw_base)
3381 break;
3382 tw32(RX_CPU_BASE + CPU_STATE, 0xffffffff);
3383 tw32(RX_CPU_BASE + CPU_MODE, CPU_MODE_HALT);
3384 tw32_f(RX_CPU_BASE + CPU_PC, info.fw_base);
3385 udelay(1000);
3386 }
3387 if (i >= 5) {
3388 netdev_err(tp->dev, "%s fails to set RX CPU PC, is %08x "
3389 "should be %08x\n", __func__,
3390 tr32(RX_CPU_BASE + CPU_PC), info.fw_base);
3391 return -ENODEV;
3392 }
3393 tw32(RX_CPU_BASE + CPU_STATE, 0xffffffff);
3394 tw32_f(RX_CPU_BASE + CPU_MODE, 0x00000000);
3395
3396 return 0;
3397}
3398
3399/* tp->lock is held. */
3400static int tg3_load_tso_firmware(struct tg3 *tp)
3401{
3402 struct fw_info info;
3403 const __be32 *fw_data;
3404 unsigned long cpu_base, cpu_scratch_base, cpu_scratch_size;
3405 int err, i;
3406
3407 if (tg3_flag(tp, HW_TSO_1) ||
3408 tg3_flag(tp, HW_TSO_2) ||
3409 tg3_flag(tp, HW_TSO_3))
3410 return 0;
3411
3412 fw_data = (void *)tp->fw->data;
3413
3414 /* Firmware blob starts with version numbers, followed by
3415 start address and length. We are setting complete length.
3416 length = end_address_of_bss - start_address_of_text.
3417 Remainder is the blob to be loaded contiguously
3418 from start address. */
3419
3420 info.fw_base = be32_to_cpu(fw_data[1]);
3421 cpu_scratch_size = tp->fw_len;
3422 info.fw_len = tp->fw->size - 12;
3423 info.fw_data = &fw_data[3];
3424
3425 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5705) {
3426 cpu_base = RX_CPU_BASE;
3427 cpu_scratch_base = NIC_SRAM_MBUF_POOL_BASE5705;
3428 } else {
3429 cpu_base = TX_CPU_BASE;
3430 cpu_scratch_base = TX_CPU_SCRATCH_BASE;
3431 cpu_scratch_size = TX_CPU_SCRATCH_SIZE;
3432 }
3433
3434 err = tg3_load_firmware_cpu(tp, cpu_base,
3435 cpu_scratch_base, cpu_scratch_size,
3436 &info);
3437 if (err)
3438 return err;
3439
3440 /* Now startup the cpu. */
3441 tw32(cpu_base + CPU_STATE, 0xffffffff);
3442 tw32_f(cpu_base + CPU_PC, info.fw_base);
3443
3444 for (i = 0; i < 5; i++) {
3445 if (tr32(cpu_base + CPU_PC) == info.fw_base)
3446 break;
3447 tw32(cpu_base + CPU_STATE, 0xffffffff);
3448 tw32(cpu_base + CPU_MODE, CPU_MODE_HALT);
3449 tw32_f(cpu_base + CPU_PC, info.fw_base);
3450 udelay(1000);
3451 }
3452 if (i >= 5) {
3453 netdev_err(tp->dev,
3454 "%s fails to set CPU PC, is %08x should be %08x\n",
3455 __func__, tr32(cpu_base + CPU_PC), info.fw_base);
3456 return -ENODEV;
3457 }
3458 tw32(cpu_base + CPU_STATE, 0xffffffff);
3459 tw32_f(cpu_base + CPU_MODE, 0x00000000);
3460 return 0;
3461}
3462
3463
3f007891
MC
3464/* tp->lock is held. */
3465static void __tg3_set_mac_addr(struct tg3 *tp, int skip_mac_1)
3466{
3467 u32 addr_high, addr_low;
3468 int i;
3469
3470 addr_high = ((tp->dev->dev_addr[0] << 8) |
3471 tp->dev->dev_addr[1]);
3472 addr_low = ((tp->dev->dev_addr[2] << 24) |
3473 (tp->dev->dev_addr[3] << 16) |
3474 (tp->dev->dev_addr[4] << 8) |
3475 (tp->dev->dev_addr[5] << 0));
3476 for (i = 0; i < 4; i++) {
3477 if (i == 1 && skip_mac_1)
3478 continue;
3479 tw32(MAC_ADDR_0_HIGH + (i * 8), addr_high);
3480 tw32(MAC_ADDR_0_LOW + (i * 8), addr_low);
3481 }
3482
3483 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5703 ||
3484 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5704) {
3485 for (i = 0; i < 12; i++) {
3486 tw32(MAC_EXTADDR_0_HIGH + (i * 8), addr_high);
3487 tw32(MAC_EXTADDR_0_LOW + (i * 8), addr_low);
3488 }
3489 }
3490
3491 addr_high = (tp->dev->dev_addr[0] +
3492 tp->dev->dev_addr[1] +
3493 tp->dev->dev_addr[2] +
3494 tp->dev->dev_addr[3] +
3495 tp->dev->dev_addr[4] +
3496 tp->dev->dev_addr[5]) &
3497 TX_BACKOFF_SEED_MASK;
3498 tw32(MAC_TX_BACKOFF_SEED, addr_high);
3499}
3500
c866b7ea 3501static void tg3_enable_register_access(struct tg3 *tp)
1da177e4 3502{
c866b7ea
RW
3503 /*
3504 * Make sure register accesses (indirect or otherwise) will function
3505 * correctly.
1da177e4
LT
3506 */
3507 pci_write_config_dword(tp->pdev,
c866b7ea
RW
3508 TG3PCI_MISC_HOST_CTRL, tp->misc_host_ctrl);
3509}
1da177e4 3510
c866b7ea
RW
3511static int tg3_power_up(struct tg3 *tp)
3512{
bed9829f 3513 int err;
8c6bda1a 3514
bed9829f 3515 tg3_enable_register_access(tp);
1da177e4 3516
bed9829f
MC
3517 err = pci_set_power_state(tp->pdev, PCI_D0);
3518 if (!err) {
3519 /* Switch out of Vaux if it is a NIC */
3520 tg3_pwrsrc_switch_to_vmain(tp);
3521 } else {
3522 netdev_err(tp->dev, "Transition to D0 failed\n");
3523 }
1da177e4 3524
bed9829f 3525 return err;
c866b7ea 3526}
1da177e4 3527
4b409522
MC
3528static int tg3_setup_phy(struct tg3 *, int);
3529
c866b7ea
RW
3530static int tg3_power_down_prepare(struct tg3 *tp)
3531{
3532 u32 misc_host_ctrl;
3533 bool device_should_wake, do_low_power;
3534
3535 tg3_enable_register_access(tp);
5e7dfd0f
MC
3536
3537 /* Restore the CLKREQ setting. */
63c3a66f 3538 if (tg3_flag(tp, CLKREQ_BUG)) {
5e7dfd0f
MC
3539 u16 lnkctl;
3540
3541 pci_read_config_word(tp->pdev,
708ebb3a 3542 pci_pcie_cap(tp->pdev) + PCI_EXP_LNKCTL,
5e7dfd0f
MC
3543 &lnkctl);
3544 lnkctl |= PCI_EXP_LNKCTL_CLKREQ_EN;
3545 pci_write_config_word(tp->pdev,
708ebb3a 3546 pci_pcie_cap(tp->pdev) + PCI_EXP_LNKCTL,
5e7dfd0f
MC
3547 lnkctl);
3548 }
3549
1da177e4
LT
3550 misc_host_ctrl = tr32(TG3PCI_MISC_HOST_CTRL);
3551 tw32(TG3PCI_MISC_HOST_CTRL,
3552 misc_host_ctrl | MISC_HOST_CTRL_MASK_PCI_INT);
3553
c866b7ea 3554 device_should_wake = device_may_wakeup(&tp->pdev->dev) &&
63c3a66f 3555 tg3_flag(tp, WOL_ENABLE);
05ac4cb7 3556
63c3a66f 3557 if (tg3_flag(tp, USE_PHYLIB)) {
0a459aac 3558 do_low_power = false;
f07e9af3 3559 if ((tp->phy_flags & TG3_PHYFLG_IS_CONNECTED) &&
80096068 3560 !(tp->phy_flags & TG3_PHYFLG_IS_LOW_POWER)) {
b02fd9e3 3561 struct phy_device *phydev;
0a459aac 3562 u32 phyid, advertising;
b02fd9e3 3563
3f0e3ad7 3564 phydev = tp->mdio_bus->phy_map[TG3_PHY_MII_ADDR];
b02fd9e3 3565
80096068 3566 tp->phy_flags |= TG3_PHYFLG_IS_LOW_POWER;
b02fd9e3 3567
c6700ce2
MC
3568 tp->link_config.speed = phydev->speed;
3569 tp->link_config.duplex = phydev->duplex;
3570 tp->link_config.autoneg = phydev->autoneg;
3571 tp->link_config.advertising = phydev->advertising;
b02fd9e3
MC
3572
3573 advertising = ADVERTISED_TP |
3574 ADVERTISED_Pause |
3575 ADVERTISED_Autoneg |
3576 ADVERTISED_10baseT_Half;
3577
63c3a66f
JP
3578 if (tg3_flag(tp, ENABLE_ASF) || device_should_wake) {
3579 if (tg3_flag(tp, WOL_SPEED_100MB))
b02fd9e3
MC
3580 advertising |=
3581 ADVERTISED_100baseT_Half |
3582 ADVERTISED_100baseT_Full |
3583 ADVERTISED_10baseT_Full;
3584 else
3585 advertising |= ADVERTISED_10baseT_Full;
3586 }
3587
3588 phydev->advertising = advertising;
3589
3590 phy_start_aneg(phydev);
0a459aac
MC
3591
3592 phyid = phydev->drv->phy_id & phydev->drv->phy_id_mask;
6a443a0f
MC
3593 if (phyid != PHY_ID_BCMAC131) {
3594 phyid &= PHY_BCM_OUI_MASK;
3595 if (phyid == PHY_BCM_OUI_1 ||
3596 phyid == PHY_BCM_OUI_2 ||
3597 phyid == PHY_BCM_OUI_3)
0a459aac
MC
3598 do_low_power = true;
3599 }
b02fd9e3 3600 }
dd477003 3601 } else {
2023276e 3602 do_low_power = true;
0a459aac 3603
c6700ce2 3604 if (!(tp->phy_flags & TG3_PHYFLG_IS_LOW_POWER))
80096068 3605 tp->phy_flags |= TG3_PHYFLG_IS_LOW_POWER;
1da177e4 3606
2855b9fe 3607 if (!(tp->phy_flags & TG3_PHYFLG_ANY_SERDES))
dd477003 3608 tg3_setup_phy(tp, 0);
1da177e4
LT
3609 }
3610
b5d3772c
MC
3611 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5906) {
3612 u32 val;
3613
3614 val = tr32(GRC_VCPU_EXT_CTRL);
3615 tw32(GRC_VCPU_EXT_CTRL, val | GRC_VCPU_EXT_CTRL_DISABLE_WOL);
63c3a66f 3616 } else if (!tg3_flag(tp, ENABLE_ASF)) {
6921d201
MC
3617 int i;
3618 u32 val;
3619
3620 for (i = 0; i < 200; i++) {
3621 tg3_read_mem(tp, NIC_SRAM_FW_ASF_STATUS_MBOX, &val);
3622 if (val == ~NIC_SRAM_FIRMWARE_MBOX_MAGIC1)
3623 break;
3624 msleep(1);
3625 }
3626 }
63c3a66f 3627 if (tg3_flag(tp, WOL_CAP))
a85feb8c
GZ
3628 tg3_write_mem(tp, NIC_SRAM_WOL_MBOX, WOL_SIGNATURE |
3629 WOL_DRV_STATE_SHUTDOWN |
3630 WOL_DRV_WOL |
3631 WOL_SET_MAGIC_PKT);
6921d201 3632
05ac4cb7 3633 if (device_should_wake) {
1da177e4
LT
3634 u32 mac_mode;
3635
f07e9af3 3636 if (!(tp->phy_flags & TG3_PHYFLG_PHY_SERDES)) {
b4bd2929
MC
3637 if (do_low_power &&
3638 !(tp->phy_flags & TG3_PHYFLG_IS_FET)) {
3639 tg3_phy_auxctl_write(tp,
3640 MII_TG3_AUXCTL_SHDWSEL_PWRCTL,
3641 MII_TG3_AUXCTL_PCTL_WOL_EN |
3642 MII_TG3_AUXCTL_PCTL_100TX_LPWR |
3643 MII_TG3_AUXCTL_PCTL_CL_AB_TXDAC);
dd477003
MC
3644 udelay(40);
3645 }
1da177e4 3646
f07e9af3 3647 if (tp->phy_flags & TG3_PHYFLG_MII_SERDES)
3f7045c1
MC
3648 mac_mode = MAC_MODE_PORT_MODE_GMII;
3649 else
3650 mac_mode = MAC_MODE_PORT_MODE_MII;
1da177e4 3651
e8f3f6ca
MC
3652 mac_mode |= tp->mac_mode & MAC_MODE_LINK_POLARITY;
3653 if (GET_ASIC_REV(tp->pci_chip_rev_id) ==
3654 ASIC_REV_5700) {
63c3a66f 3655 u32 speed = tg3_flag(tp, WOL_SPEED_100MB) ?
e8f3f6ca
MC
3656 SPEED_100 : SPEED_10;
3657 if (tg3_5700_link_polarity(tp, speed))
3658 mac_mode |= MAC_MODE_LINK_POLARITY;
3659 else
3660 mac_mode &= ~MAC_MODE_LINK_POLARITY;
3661 }
1da177e4
LT
3662 } else {
3663 mac_mode = MAC_MODE_PORT_MODE_TBI;
3664 }
3665
63c3a66f 3666 if (!tg3_flag(tp, 5750_PLUS))
1da177e4
LT
3667 tw32(MAC_LED_CTRL, tp->led_ctrl);
3668
05ac4cb7 3669 mac_mode |= MAC_MODE_MAGIC_PKT_ENABLE;
63c3a66f
JP
3670 if ((tg3_flag(tp, 5705_PLUS) && !tg3_flag(tp, 5780_CLASS)) &&
3671 (tg3_flag(tp, ENABLE_ASF) || tg3_flag(tp, ENABLE_APE)))
05ac4cb7 3672 mac_mode |= MAC_MODE_KEEP_FRAME_IN_WOL;
1da177e4 3673
63c3a66f 3674 if (tg3_flag(tp, ENABLE_APE))
d2394e6b
MC
3675 mac_mode |= MAC_MODE_APE_TX_EN |
3676 MAC_MODE_APE_RX_EN |
3677 MAC_MODE_TDE_ENABLE;
3bda1258 3678
1da177e4
LT
3679 tw32_f(MAC_MODE, mac_mode);
3680 udelay(100);
3681
3682 tw32_f(MAC_RX_MODE, RX_MODE_ENABLE);
3683 udelay(10);
3684 }
3685
63c3a66f 3686 if (!tg3_flag(tp, WOL_SPEED_100MB) &&
1da177e4
LT
3687 (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5700 ||
3688 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5701)) {
3689 u32 base_val;
3690
3691 base_val = tp->pci_clock_ctrl;
3692 base_val |= (CLOCK_CTRL_RXCLK_DISABLE |
3693 CLOCK_CTRL_TXCLK_DISABLE);
3694
b401e9e2
MC
3695 tw32_wait_f(TG3PCI_CLOCK_CTRL, base_val | CLOCK_CTRL_ALTCLK |
3696 CLOCK_CTRL_PWRDOWN_PLL133, 40);
63c3a66f
JP
3697 } else if (tg3_flag(tp, 5780_CLASS) ||
3698 tg3_flag(tp, CPMU_PRESENT) ||
6ff6f81d 3699 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5906) {
4cf78e4f 3700 /* do nothing */
63c3a66f 3701 } else if (!(tg3_flag(tp, 5750_PLUS) && tg3_flag(tp, ENABLE_ASF))) {
1da177e4
LT
3702 u32 newbits1, newbits2;
3703
3704 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5700 ||
3705 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5701) {
3706 newbits1 = (CLOCK_CTRL_RXCLK_DISABLE |
3707 CLOCK_CTRL_TXCLK_DISABLE |
3708 CLOCK_CTRL_ALTCLK);
3709 newbits2 = newbits1 | CLOCK_CTRL_44MHZ_CORE;
63c3a66f 3710 } else if (tg3_flag(tp, 5705_PLUS)) {
1da177e4
LT
3711 newbits1 = CLOCK_CTRL_625_CORE;
3712 newbits2 = newbits1 | CLOCK_CTRL_ALTCLK;
3713 } else {
3714 newbits1 = CLOCK_CTRL_ALTCLK;
3715 newbits2 = newbits1 | CLOCK_CTRL_44MHZ_CORE;
3716 }
3717
b401e9e2
MC
3718 tw32_wait_f(TG3PCI_CLOCK_CTRL, tp->pci_clock_ctrl | newbits1,
3719 40);
1da177e4 3720
b401e9e2
MC
3721 tw32_wait_f(TG3PCI_CLOCK_CTRL, tp->pci_clock_ctrl | newbits2,
3722 40);
1da177e4 3723
63c3a66f 3724 if (!tg3_flag(tp, 5705_PLUS)) {
1da177e4
LT
3725 u32 newbits3;
3726
3727 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5700 ||
3728 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5701) {
3729 newbits3 = (CLOCK_CTRL_RXCLK_DISABLE |
3730 CLOCK_CTRL_TXCLK_DISABLE |
3731 CLOCK_CTRL_44MHZ_CORE);
3732 } else {
3733 newbits3 = CLOCK_CTRL_44MHZ_CORE;
3734 }
3735
b401e9e2
MC
3736 tw32_wait_f(TG3PCI_CLOCK_CTRL,
3737 tp->pci_clock_ctrl | newbits3, 40);
1da177e4
LT
3738 }
3739 }
3740
63c3a66f 3741 if (!(device_should_wake) && !tg3_flag(tp, ENABLE_ASF))
0a459aac 3742 tg3_power_down_phy(tp, do_low_power);
6921d201 3743
cd0d7228 3744 tg3_frob_aux_power(tp, true);
1da177e4
LT
3745
3746 /* Workaround for unstable PLL clock */
3747 if ((GET_CHIP_REV(tp->pci_chip_rev_id) == CHIPREV_5750_AX) ||
3748 (GET_CHIP_REV(tp->pci_chip_rev_id) == CHIPREV_5750_BX)) {
3749 u32 val = tr32(0x7d00);
3750
3751 val &= ~((1 << 16) | (1 << 4) | (1 << 2) | (1 << 1) | 1);
3752 tw32(0x7d00, val);
63c3a66f 3753 if (!tg3_flag(tp, ENABLE_ASF)) {
ec41c7df
MC
3754 int err;
3755
3756 err = tg3_nvram_lock(tp);
1da177e4 3757 tg3_halt_cpu(tp, RX_CPU_BASE);
ec41c7df
MC
3758 if (!err)
3759 tg3_nvram_unlock(tp);
6921d201 3760 }
1da177e4
LT
3761 }
3762
bbadf503
MC
3763 tg3_write_sig_post_reset(tp, RESET_KIND_SHUTDOWN);
3764
c866b7ea
RW
3765 return 0;
3766}
12dac075 3767
c866b7ea
RW
3768static void tg3_power_down(struct tg3 *tp)
3769{
3770 tg3_power_down_prepare(tp);
1da177e4 3771
63c3a66f 3772 pci_wake_from_d3(tp->pdev, tg3_flag(tp, WOL_ENABLE));
c866b7ea 3773 pci_set_power_state(tp->pdev, PCI_D3hot);
1da177e4
LT
3774}
3775
1da177e4
LT
3776static void tg3_aux_stat_to_speed_duplex(struct tg3 *tp, u32 val, u16 *speed, u8 *duplex)
3777{
3778 switch (val & MII_TG3_AUX_STAT_SPDMASK) {
3779 case MII_TG3_AUX_STAT_10HALF:
3780 *speed = SPEED_10;
3781 *duplex = DUPLEX_HALF;
3782 break;
3783
3784 case MII_TG3_AUX_STAT_10FULL:
3785 *speed = SPEED_10;
3786 *duplex = DUPLEX_FULL;
3787 break;
3788
3789 case MII_TG3_AUX_STAT_100HALF:
3790 *speed = SPEED_100;
3791 *duplex = DUPLEX_HALF;
3792 break;
3793
3794 case MII_TG3_AUX_STAT_100FULL:
3795 *speed = SPEED_100;
3796 *duplex = DUPLEX_FULL;
3797 break;
3798
3799 case MII_TG3_AUX_STAT_1000HALF:
3800 *speed = SPEED_1000;
3801 *duplex = DUPLEX_HALF;
3802 break;
3803
3804 case MII_TG3_AUX_STAT_1000FULL:
3805 *speed = SPEED_1000;
3806 *duplex = DUPLEX_FULL;
3807 break;
3808
3809 default:
f07e9af3 3810 if (tp->phy_flags & TG3_PHYFLG_IS_FET) {
715116a1
MC
3811 *speed = (val & MII_TG3_AUX_STAT_100) ? SPEED_100 :
3812 SPEED_10;
3813 *duplex = (val & MII_TG3_AUX_STAT_FULL) ? DUPLEX_FULL :
3814 DUPLEX_HALF;
3815 break;
3816 }
e740522e
MC
3817 *speed = SPEED_UNKNOWN;
3818 *duplex = DUPLEX_UNKNOWN;
1da177e4 3819 break;
855e1111 3820 }
1da177e4
LT
3821}
3822
42b64a45 3823static int tg3_phy_autoneg_cfg(struct tg3 *tp, u32 advertise, u32 flowctrl)
1da177e4 3824{
42b64a45
MC
3825 int err = 0;
3826 u32 val, new_adv;
1da177e4 3827
42b64a45 3828 new_adv = ADVERTISE_CSMA;
202ff1c2 3829 new_adv |= ethtool_adv_to_mii_adv_t(advertise) & ADVERTISE_ALL;
f88788f0 3830 new_adv |= mii_advertise_flowctrl(flowctrl);
1da177e4 3831
42b64a45
MC
3832 err = tg3_writephy(tp, MII_ADVERTISE, new_adv);
3833 if (err)
3834 goto done;
ba4d07a8 3835
4f272096
MC
3836 if (!(tp->phy_flags & TG3_PHYFLG_10_100_ONLY)) {
3837 new_adv = ethtool_adv_to_mii_ctrl1000_t(advertise);
ba4d07a8 3838
4f272096
MC
3839 if (tp->pci_chip_rev_id == CHIPREV_ID_5701_A0 ||
3840 tp->pci_chip_rev_id == CHIPREV_ID_5701_B0)
3841 new_adv |= CTL1000_AS_MASTER | CTL1000_ENABLE_MASTER;
ba4d07a8 3842
4f272096
MC
3843 err = tg3_writephy(tp, MII_CTRL1000, new_adv);
3844 if (err)
3845 goto done;
3846 }
1da177e4 3847
42b64a45
MC
3848 if (!(tp->phy_flags & TG3_PHYFLG_EEE_CAP))
3849 goto done;
52b02d04 3850
42b64a45
MC
3851 tw32(TG3_CPMU_EEE_MODE,
3852 tr32(TG3_CPMU_EEE_MODE) & ~TG3_CPMU_EEEMD_LPI_ENABLE);
52b02d04 3853
42b64a45
MC
3854 err = TG3_PHY_AUXCTL_SMDSP_ENABLE(tp);
3855 if (!err) {
3856 u32 err2;
52b02d04 3857
b715ce94
MC
3858 val = 0;
3859 /* Advertise 100-BaseTX EEE ability */
3860 if (advertise & ADVERTISED_100baseT_Full)
3861 val |= MDIO_AN_EEE_ADV_100TX;
3862 /* Advertise 1000-BaseT EEE ability */
3863 if (advertise & ADVERTISED_1000baseT_Full)
3864 val |= MDIO_AN_EEE_ADV_1000T;
3865 err = tg3_phy_cl45_write(tp, MDIO_MMD_AN, MDIO_AN_EEE_ADV, val);
3866 if (err)
3867 val = 0;
3868
21a00ab2
MC
3869 switch (GET_ASIC_REV(tp->pci_chip_rev_id)) {
3870 case ASIC_REV_5717:
3871 case ASIC_REV_57765:
55086ad9 3872 case ASIC_REV_57766:
21a00ab2 3873 case ASIC_REV_5719:
b715ce94
MC
3874 /* If we advertised any eee advertisements above... */
3875 if (val)
3876 val = MII_TG3_DSP_TAP26_ALNOKO |
3877 MII_TG3_DSP_TAP26_RMRXSTO |
3878 MII_TG3_DSP_TAP26_OPCSINPT;
21a00ab2 3879 tg3_phydsp_write(tp, MII_TG3_DSP_TAP26, val);
be671947
MC
3880 /* Fall through */
3881 case ASIC_REV_5720:
3882 if (!tg3_phydsp_read(tp, MII_TG3_DSP_CH34TP2, &val))
3883 tg3_phydsp_write(tp, MII_TG3_DSP_CH34TP2, val |
3884 MII_TG3_DSP_CH34TP2_HIBW01);
21a00ab2 3885 }
52b02d04 3886
42b64a45
MC
3887 err2 = TG3_PHY_AUXCTL_SMDSP_DISABLE(tp);
3888 if (!err)
3889 err = err2;
3890 }
3891
3892done:
3893 return err;
3894}
3895
3896static void tg3_phy_copper_begin(struct tg3 *tp)
3897{
d13ba512
MC
3898 if (tp->link_config.autoneg == AUTONEG_ENABLE ||
3899 (tp->phy_flags & TG3_PHYFLG_IS_LOW_POWER)) {
3900 u32 adv, fc;
3901
3902 if (tp->phy_flags & TG3_PHYFLG_IS_LOW_POWER) {
3903 adv = ADVERTISED_10baseT_Half |
3904 ADVERTISED_10baseT_Full;
3905 if (tg3_flag(tp, WOL_SPEED_100MB))
3906 adv |= ADVERTISED_100baseT_Half |
3907 ADVERTISED_100baseT_Full;
3908
3909 fc = FLOW_CTRL_TX | FLOW_CTRL_RX;
42b64a45 3910 } else {
d13ba512
MC
3911 adv = tp->link_config.advertising;
3912 if (tp->phy_flags & TG3_PHYFLG_10_100_ONLY)
3913 adv &= ~(ADVERTISED_1000baseT_Half |
3914 ADVERTISED_1000baseT_Full);
3915
3916 fc = tp->link_config.flowctrl;
52b02d04 3917 }
52b02d04 3918
d13ba512 3919 tg3_phy_autoneg_cfg(tp, adv, fc);
52b02d04 3920
d13ba512
MC
3921 tg3_writephy(tp, MII_BMCR,
3922 BMCR_ANENABLE | BMCR_ANRESTART);
3923 } else {
3924 int i;
1da177e4
LT
3925 u32 bmcr, orig_bmcr;
3926
3927 tp->link_config.active_speed = tp->link_config.speed;
3928 tp->link_config.active_duplex = tp->link_config.duplex;
3929
3930 bmcr = 0;
3931 switch (tp->link_config.speed) {
3932 default:
3933 case SPEED_10:
3934 break;
3935
3936 case SPEED_100:
3937 bmcr |= BMCR_SPEED100;
3938 break;
3939
3940 case SPEED_1000:
221c5637 3941 bmcr |= BMCR_SPEED1000;
1da177e4 3942 break;
855e1111 3943 }
1da177e4
LT
3944
3945 if (tp->link_config.duplex == DUPLEX_FULL)
3946 bmcr |= BMCR_FULLDPLX;
3947
3948 if (!tg3_readphy(tp, MII_BMCR, &orig_bmcr) &&
3949 (bmcr != orig_bmcr)) {
3950 tg3_writephy(tp, MII_BMCR, BMCR_LOOPBACK);
3951 for (i = 0; i < 1500; i++) {
3952 u32 tmp;
3953
3954 udelay(10);
3955 if (tg3_readphy(tp, MII_BMSR, &tmp) ||
3956 tg3_readphy(tp, MII_BMSR, &tmp))
3957 continue;
3958 if (!(tmp & BMSR_LSTATUS)) {
3959 udelay(40);
3960 break;
3961 }
3962 }
3963 tg3_writephy(tp, MII_BMCR, bmcr);
3964 udelay(40);
3965 }
1da177e4
LT
3966 }
3967}
3968
3969static int tg3_init_5401phy_dsp(struct tg3 *tp)
3970{
3971 int err;
3972
3973 /* Turn off tap power management. */
3974 /* Set Extended packet length bit */
b4bd2929 3975 err = tg3_phy_auxctl_write(tp, MII_TG3_AUXCTL_SHDWSEL_AUXCTL, 0x4c20);
1da177e4 3976
6ee7c0a0
MC
3977 err |= tg3_phydsp_write(tp, 0x0012, 0x1804);
3978 err |= tg3_phydsp_write(tp, 0x0013, 0x1204);
3979 err |= tg3_phydsp_write(tp, 0x8006, 0x0132);
3980 err |= tg3_phydsp_write(tp, 0x8006, 0x0232);
3981 err |= tg3_phydsp_write(tp, 0x201f, 0x0a20);
1da177e4
LT
3982
3983 udelay(40);
3984
3985 return err;
3986}
3987
e2bf73e7 3988static bool tg3_phy_copper_an_config_ok(struct tg3 *tp, u32 *lcladv)
1da177e4 3989{
e2bf73e7 3990 u32 advmsk, tgtadv, advertising;
3600d918 3991
e2bf73e7
MC
3992 advertising = tp->link_config.advertising;
3993 tgtadv = ethtool_adv_to_mii_adv_t(advertising) & ADVERTISE_ALL;
1da177e4 3994
e2bf73e7
MC
3995 advmsk = ADVERTISE_ALL;
3996 if (tp->link_config.active_duplex == DUPLEX_FULL) {
f88788f0 3997 tgtadv |= mii_advertise_flowctrl(tp->link_config.flowctrl);
e2bf73e7
MC
3998 advmsk |= ADVERTISE_PAUSE_CAP | ADVERTISE_PAUSE_ASYM;
3999 }
1da177e4 4000
e2bf73e7
MC
4001 if (tg3_readphy(tp, MII_ADVERTISE, lcladv))
4002 return false;
4003
4004 if ((*lcladv & advmsk) != tgtadv)
4005 return false;
b99d2a57 4006
f07e9af3 4007 if (!(tp->phy_flags & TG3_PHYFLG_10_100_ONLY)) {
1da177e4
LT
4008 u32 tg3_ctrl;
4009
e2bf73e7 4010 tgtadv = ethtool_adv_to_mii_ctrl1000_t(advertising);
3600d918 4011
221c5637 4012 if (tg3_readphy(tp, MII_CTRL1000, &tg3_ctrl))
e2bf73e7 4013 return false;
1da177e4 4014
3198e07f
MC
4015 if (tgtadv &&
4016 (tp->pci_chip_rev_id == CHIPREV_ID_5701_A0 ||
4017 tp->pci_chip_rev_id == CHIPREV_ID_5701_B0)) {
4018 tgtadv |= CTL1000_AS_MASTER | CTL1000_ENABLE_MASTER;
4019 tg3_ctrl &= (ADVERTISE_1000HALF | ADVERTISE_1000FULL |
4020 CTL1000_AS_MASTER | CTL1000_ENABLE_MASTER);
4021 } else {
4022 tg3_ctrl &= (ADVERTISE_1000HALF | ADVERTISE_1000FULL);
4023 }
4024
e2bf73e7
MC
4025 if (tg3_ctrl != tgtadv)
4026 return false;
ef167e27
MC
4027 }
4028
e2bf73e7 4029 return true;
ef167e27
MC
4030}
4031
859edb26
MC
4032static bool tg3_phy_copper_fetch_rmtadv(struct tg3 *tp, u32 *rmtadv)
4033{
4034 u32 lpeth = 0;
4035
4036 if (!(tp->phy_flags & TG3_PHYFLG_10_100_ONLY)) {
4037 u32 val;
4038
4039 if (tg3_readphy(tp, MII_STAT1000, &val))
4040 return false;
4041
4042 lpeth = mii_stat1000_to_ethtool_lpa_t(val);
4043 }
4044
4045 if (tg3_readphy(tp, MII_LPA, rmtadv))
4046 return false;
4047
4048 lpeth |= mii_lpa_to_ethtool_lpa_t(*rmtadv);
4049 tp->link_config.rmt_adv = lpeth;
4050
4051 return true;
4052}
4053
1da177e4
LT
4054static int tg3_setup_copper_phy(struct tg3 *tp, int force_reset)
4055{
4056 int current_link_up;
f833c4c1 4057 u32 bmsr, val;
ef167e27 4058 u32 lcl_adv, rmt_adv;
1da177e4
LT
4059 u16 current_speed;
4060 u8 current_duplex;
4061 int i, err;
4062
4063 tw32(MAC_EVENT, 0);
4064
4065 tw32_f(MAC_STATUS,
4066 (MAC_STATUS_SYNC_CHANGED |
4067 MAC_STATUS_CFG_CHANGED |
4068 MAC_STATUS_MI_COMPLETION |
4069 MAC_STATUS_LNKSTATE_CHANGED));
4070 udelay(40);
4071
8ef21428
MC
4072 if ((tp->mi_mode & MAC_MI_MODE_AUTO_POLL) != 0) {
4073 tw32_f(MAC_MI_MODE,
4074 (tp->mi_mode & ~MAC_MI_MODE_AUTO_POLL));
4075 udelay(80);
4076 }
1da177e4 4077
b4bd2929 4078 tg3_phy_auxctl_write(tp, MII_TG3_AUXCTL_SHDWSEL_PWRCTL, 0);
1da177e4
LT
4079
4080 /* Some third-party PHYs need to be reset on link going
4081 * down.
4082 */
4083 if ((GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5703 ||
4084 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5704 ||
4085 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5705) &&
4086 netif_carrier_ok(tp->dev)) {
4087 tg3_readphy(tp, MII_BMSR, &bmsr);
4088 if (!tg3_readphy(tp, MII_BMSR, &bmsr) &&
4089 !(bmsr & BMSR_LSTATUS))
4090 force_reset = 1;
4091 }
4092 if (force_reset)
4093 tg3_phy_reset(tp);
4094
79eb6904 4095 if ((tp->phy_id & TG3_PHY_ID_MASK) == TG3_PHY_ID_BCM5401) {
1da177e4
LT
4096 tg3_readphy(tp, MII_BMSR, &bmsr);
4097 if (tg3_readphy(tp, MII_BMSR, &bmsr) ||
63c3a66f 4098 !tg3_flag(tp, INIT_COMPLETE))
1da177e4
LT
4099 bmsr = 0;
4100
4101 if (!(bmsr & BMSR_LSTATUS)) {
4102 err = tg3_init_5401phy_dsp(tp);
4103 if (err)
4104 return err;
4105
4106 tg3_readphy(tp, MII_BMSR, &bmsr);
4107 for (i = 0; i < 1000; i++) {
4108 udelay(10);
4109 if (!tg3_readphy(tp, MII_BMSR, &bmsr) &&
4110 (bmsr & BMSR_LSTATUS)) {
4111 udelay(40);
4112 break;
4113 }
4114 }
4115
79eb6904
MC
4116 if ((tp->phy_id & TG3_PHY_ID_REV_MASK) ==
4117 TG3_PHY_REV_BCM5401_B0 &&
1da177e4
LT
4118 !(bmsr & BMSR_LSTATUS) &&
4119 tp->link_config.active_speed == SPEED_1000) {
4120 err = tg3_phy_reset(tp);
4121 if (!err)
4122 err = tg3_init_5401phy_dsp(tp);
4123 if (err)
4124 return err;
4125 }
4126 }
4127 } else if (tp->pci_chip_rev_id == CHIPREV_ID_5701_A0 ||
4128 tp->pci_chip_rev_id == CHIPREV_ID_5701_B0) {
4129 /* 5701 {A0,B0} CRC bug workaround */
4130 tg3_writephy(tp, 0x15, 0x0a75);
f08aa1a8
MC
4131 tg3_writephy(tp, MII_TG3_MISC_SHDW, 0x8c68);
4132 tg3_writephy(tp, MII_TG3_MISC_SHDW, 0x8d68);
4133 tg3_writephy(tp, MII_TG3_MISC_SHDW, 0x8c68);
1da177e4
LT
4134 }
4135
4136 /* Clear pending interrupts... */
f833c4c1
MC
4137 tg3_readphy(tp, MII_TG3_ISTAT, &val);
4138 tg3_readphy(tp, MII_TG3_ISTAT, &val);
1da177e4 4139
f07e9af3 4140 if (tp->phy_flags & TG3_PHYFLG_USE_MI_INTERRUPT)
1da177e4 4141 tg3_writephy(tp, MII_TG3_IMASK, ~MII_TG3_INT_LINKCHG);
f07e9af3 4142 else if (!(tp->phy_flags & TG3_PHYFLG_IS_FET))
1da177e4
LT
4143 tg3_writephy(tp, MII_TG3_IMASK, ~0);
4144
4145 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5700 ||
4146 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5701) {
4147 if (tp->led_ctrl == LED_CTRL_MODE_PHY_1)
4148 tg3_writephy(tp, MII_TG3_EXT_CTRL,
4149 MII_TG3_EXT_CTRL_LNK3_LED_MODE);
4150 else
4151 tg3_writephy(tp, MII_TG3_EXT_CTRL, 0);
4152 }
4153
4154 current_link_up = 0;
e740522e
MC
4155 current_speed = SPEED_UNKNOWN;
4156 current_duplex = DUPLEX_UNKNOWN;
e348c5e7 4157 tp->phy_flags &= ~TG3_PHYFLG_MDIX_STATE;
859edb26 4158 tp->link_config.rmt_adv = 0;
1da177e4 4159
f07e9af3 4160 if (tp->phy_flags & TG3_PHYFLG_CAPACITIVE_COUPLING) {
15ee95c3
MC
4161 err = tg3_phy_auxctl_read(tp,
4162 MII_TG3_AUXCTL_SHDWSEL_MISCTEST,
4163 &val);
4164 if (!err && !(val & (1 << 10))) {
b4bd2929
MC
4165 tg3_phy_auxctl_write(tp,
4166 MII_TG3_AUXCTL_SHDWSEL_MISCTEST,
4167 val | (1 << 10));
1da177e4
LT
4168 goto relink;
4169 }
4170 }
4171
4172 bmsr = 0;
4173 for (i = 0; i < 100; i++) {
4174 tg3_readphy(tp, MII_BMSR, &bmsr);
4175 if (!tg3_readphy(tp, MII_BMSR, &bmsr) &&
4176 (bmsr & BMSR_LSTATUS))
4177 break;
4178 udelay(40);
4179 }
4180
4181 if (bmsr & BMSR_LSTATUS) {
4182 u32 aux_stat, bmcr;
4183
4184 tg3_readphy(tp, MII_TG3_AUX_STAT, &aux_stat);
4185 for (i = 0; i < 2000; i++) {
4186 udelay(10);
4187 if (!tg3_readphy(tp, MII_TG3_AUX_STAT, &aux_stat) &&
4188 aux_stat)
4189 break;
4190 }
4191
4192 tg3_aux_stat_to_speed_duplex(tp, aux_stat,
4193 &current_speed,
4194 &current_duplex);
4195
4196 bmcr = 0;
4197 for (i = 0; i < 200; i++) {
4198 tg3_readphy(tp, MII_BMCR, &bmcr);
4199 if (tg3_readphy(tp, MII_BMCR, &bmcr))
4200 continue;
4201 if (bmcr && bmcr != 0x7fff)
4202 break;
4203 udelay(10);
4204 }
4205
ef167e27
MC
4206 lcl_adv = 0;
4207 rmt_adv = 0;
1da177e4 4208
ef167e27
MC
4209 tp->link_config.active_speed = current_speed;
4210 tp->link_config.active_duplex = current_duplex;
4211
4212 if (tp->link_config.autoneg == AUTONEG_ENABLE) {
4213 if ((bmcr & BMCR_ANENABLE) &&
e2bf73e7 4214 tg3_phy_copper_an_config_ok(tp, &lcl_adv) &&
859edb26 4215 tg3_phy_copper_fetch_rmtadv(tp, &rmt_adv))
e2bf73e7 4216 current_link_up = 1;
1da177e4
LT
4217 } else {
4218 if (!(bmcr & BMCR_ANENABLE) &&
4219 tp->link_config.speed == current_speed &&
ef167e27
MC
4220 tp->link_config.duplex == current_duplex &&
4221 tp->link_config.flowctrl ==
4222 tp->link_config.active_flowctrl) {
1da177e4 4223 current_link_up = 1;
1da177e4
LT
4224 }
4225 }
4226
ef167e27 4227 if (current_link_up == 1 &&
e348c5e7
MC
4228 tp->link_config.active_duplex == DUPLEX_FULL) {
4229 u32 reg, bit;
4230
4231 if (tp->phy_flags & TG3_PHYFLG_IS_FET) {
4232 reg = MII_TG3_FET_GEN_STAT;
4233 bit = MII_TG3_FET_GEN_STAT_MDIXSTAT;
4234 } else {
4235 reg = MII_TG3_EXT_STAT;
4236 bit = MII_TG3_EXT_STAT_MDIX;
4237 }
4238
4239 if (!tg3_readphy(tp, reg, &val) && (val & bit))
4240 tp->phy_flags |= TG3_PHYFLG_MDIX_STATE;
4241
ef167e27 4242 tg3_setup_flow_control(tp, lcl_adv, rmt_adv);
e348c5e7 4243 }
1da177e4
LT
4244 }
4245
1da177e4 4246relink:
80096068 4247 if (current_link_up == 0 || (tp->phy_flags & TG3_PHYFLG_IS_LOW_POWER)) {
1da177e4
LT
4248 tg3_phy_copper_begin(tp);
4249
f833c4c1 4250 tg3_readphy(tp, MII_BMSR, &bmsr);
06c03c02
MB
4251 if ((!tg3_readphy(tp, MII_BMSR, &bmsr) && (bmsr & BMSR_LSTATUS)) ||
4252 (tp->mac_mode & MAC_MODE_PORT_INT_LPBACK))
1da177e4
LT
4253 current_link_up = 1;
4254 }
4255
4256 tp->mac_mode &= ~MAC_MODE_PORT_MODE_MASK;
4257 if (current_link_up == 1) {
4258 if (tp->link_config.active_speed == SPEED_100 ||
4259 tp->link_config.active_speed == SPEED_10)
4260 tp->mac_mode |= MAC_MODE_PORT_MODE_MII;
4261 else
4262 tp->mac_mode |= MAC_MODE_PORT_MODE_GMII;
f07e9af3 4263 } else if (tp->phy_flags & TG3_PHYFLG_IS_FET)
7f97a4bd
MC
4264 tp->mac_mode |= MAC_MODE_PORT_MODE_MII;
4265 else
1da177e4
LT
4266 tp->mac_mode |= MAC_MODE_PORT_MODE_GMII;
4267
4268 tp->mac_mode &= ~MAC_MODE_HALF_DUPLEX;
4269 if (tp->link_config.active_duplex == DUPLEX_HALF)
4270 tp->mac_mode |= MAC_MODE_HALF_DUPLEX;
4271
1da177e4 4272 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5700) {
e8f3f6ca
MC
4273 if (current_link_up == 1 &&
4274 tg3_5700_link_polarity(tp, tp->link_config.active_speed))
1da177e4 4275 tp->mac_mode |= MAC_MODE_LINK_POLARITY;
e8f3f6ca
MC
4276 else
4277 tp->mac_mode &= ~MAC_MODE_LINK_POLARITY;
1da177e4
LT
4278 }
4279
4280 /* ??? Without this setting Netgear GA302T PHY does not
4281 * ??? send/receive packets...
4282 */
79eb6904 4283 if ((tp->phy_id & TG3_PHY_ID_MASK) == TG3_PHY_ID_BCM5411 &&
1da177e4
LT
4284 tp->pci_chip_rev_id == CHIPREV_ID_5700_ALTIMA) {
4285 tp->mi_mode |= MAC_MI_MODE_AUTO_POLL;
4286 tw32_f(MAC_MI_MODE, tp->mi_mode);
4287 udelay(80);
4288 }
4289
4290 tw32_f(MAC_MODE, tp->mac_mode);
4291 udelay(40);
4292
52b02d04
MC
4293 tg3_phy_eee_adjust(tp, current_link_up);
4294
63c3a66f 4295 if (tg3_flag(tp, USE_LINKCHG_REG)) {
1da177e4
LT
4296 /* Polled via timer. */
4297 tw32_f(MAC_EVENT, 0);
4298 } else {
4299 tw32_f(MAC_EVENT, MAC_EVENT_LNKSTATE_CHANGED);
4300 }
4301 udelay(40);
4302
4303 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5700 &&
4304 current_link_up == 1 &&
4305 tp->link_config.active_speed == SPEED_1000 &&
63c3a66f 4306 (tg3_flag(tp, PCIX_MODE) || tg3_flag(tp, PCI_HIGH_SPEED))) {
1da177e4
LT
4307 udelay(120);
4308 tw32_f(MAC_STATUS,
4309 (MAC_STATUS_SYNC_CHANGED |
4310 MAC_STATUS_CFG_CHANGED));
4311 udelay(40);
4312 tg3_write_mem(tp,
4313 NIC_SRAM_FIRMWARE_MBOX,
4314 NIC_SRAM_FIRMWARE_MBOX_MAGIC2);
4315 }
4316
5e7dfd0f 4317 /* Prevent send BD corruption. */
63c3a66f 4318 if (tg3_flag(tp, CLKREQ_BUG)) {
5e7dfd0f
MC
4319 u16 oldlnkctl, newlnkctl;
4320
4321 pci_read_config_word(tp->pdev,
708ebb3a 4322 pci_pcie_cap(tp->pdev) + PCI_EXP_LNKCTL,
5e7dfd0f
MC
4323 &oldlnkctl);
4324 if (tp->link_config.active_speed == SPEED_100 ||
4325 tp->link_config.active_speed == SPEED_10)
4326 newlnkctl = oldlnkctl & ~PCI_EXP_LNKCTL_CLKREQ_EN;
4327 else
4328 newlnkctl = oldlnkctl | PCI_EXP_LNKCTL_CLKREQ_EN;
4329 if (newlnkctl != oldlnkctl)
4330 pci_write_config_word(tp->pdev,
93a700a9
MC
4331 pci_pcie_cap(tp->pdev) +
4332 PCI_EXP_LNKCTL, newlnkctl);
5e7dfd0f
MC
4333 }
4334
1da177e4
LT
4335 if (current_link_up != netif_carrier_ok(tp->dev)) {
4336 if (current_link_up)
4337 netif_carrier_on(tp->dev);
4338 else
4339 netif_carrier_off(tp->dev);
4340 tg3_link_report(tp);
4341 }
4342
4343 return 0;
4344}
4345
4346struct tg3_fiber_aneginfo {
4347 int state;
4348#define ANEG_STATE_UNKNOWN 0
4349#define ANEG_STATE_AN_ENABLE 1
4350#define ANEG_STATE_RESTART_INIT 2
4351#define ANEG_STATE_RESTART 3
4352#define ANEG_STATE_DISABLE_LINK_OK 4
4353#define ANEG_STATE_ABILITY_DETECT_INIT 5
4354#define ANEG_STATE_ABILITY_DETECT 6
4355#define ANEG_STATE_ACK_DETECT_INIT 7
4356#define ANEG_STATE_ACK_DETECT 8
4357#define ANEG_STATE_COMPLETE_ACK_INIT 9
4358#define ANEG_STATE_COMPLETE_ACK 10
4359#define ANEG_STATE_IDLE_DETECT_INIT 11
4360#define ANEG_STATE_IDLE_DETECT 12
4361#define ANEG_STATE_LINK_OK 13
4362#define ANEG_STATE_NEXT_PAGE_WAIT_INIT 14
4363#define ANEG_STATE_NEXT_PAGE_WAIT 15
4364
4365 u32 flags;
4366#define MR_AN_ENABLE 0x00000001
4367#define MR_RESTART_AN 0x00000002
4368#define MR_AN_COMPLETE 0x00000004
4369#define MR_PAGE_RX 0x00000008
4370#define MR_NP_LOADED 0x00000010
4371#define MR_TOGGLE_TX 0x00000020
4372#define MR_LP_ADV_FULL_DUPLEX 0x00000040
4373#define MR_LP_ADV_HALF_DUPLEX 0x00000080
4374#define MR_LP_ADV_SYM_PAUSE 0x00000100
4375#define MR_LP_ADV_ASYM_PAUSE 0x00000200
4376#define MR_LP_ADV_REMOTE_FAULT1 0x00000400
4377#define MR_LP_ADV_REMOTE_FAULT2 0x00000800
4378#define MR_LP_ADV_NEXT_PAGE 0x00001000
4379#define MR_TOGGLE_RX 0x00002000
4380#define MR_NP_RX 0x00004000
4381
4382#define MR_LINK_OK 0x80000000
4383
4384 unsigned long link_time, cur_time;
4385
4386 u32 ability_match_cfg;
4387 int ability_match_count;
4388
4389 char ability_match, idle_match, ack_match;
4390
4391 u32 txconfig, rxconfig;
4392#define ANEG_CFG_NP 0x00000080
4393#define ANEG_CFG_ACK 0x00000040
4394#define ANEG_CFG_RF2 0x00000020
4395#define ANEG_CFG_RF1 0x00000010
4396#define ANEG_CFG_PS2 0x00000001
4397#define ANEG_CFG_PS1 0x00008000
4398#define ANEG_CFG_HD 0x00004000
4399#define ANEG_CFG_FD 0x00002000
4400#define ANEG_CFG_INVAL 0x00001f06
4401
4402};
4403#define ANEG_OK 0
4404#define ANEG_DONE 1
4405#define ANEG_TIMER_ENAB 2
4406#define ANEG_FAILED -1
4407
4408#define ANEG_STATE_SETTLE_TIME 10000
4409
4410static int tg3_fiber_aneg_smachine(struct tg3 *tp,
4411 struct tg3_fiber_aneginfo *ap)
4412{
5be73b47 4413 u16 flowctrl;
1da177e4
LT
4414 unsigned long delta;
4415 u32 rx_cfg_reg;
4416 int ret;
4417
4418 if (ap->state == ANEG_STATE_UNKNOWN) {
4419 ap->rxconfig = 0;
4420 ap->link_time = 0;
4421 ap->cur_time = 0;
4422 ap->ability_match_cfg = 0;
4423 ap->ability_match_count = 0;
4424 ap->ability_match = 0;
4425 ap->idle_match = 0;
4426 ap->ack_match = 0;
4427 }
4428 ap->cur_time++;
4429
4430 if (tr32(MAC_STATUS) & MAC_STATUS_RCVD_CFG) {
4431 rx_cfg_reg = tr32(MAC_RX_AUTO_NEG);
4432
4433 if (rx_cfg_reg != ap->ability_match_cfg) {
4434 ap->ability_match_cfg = rx_cfg_reg;
4435 ap->ability_match = 0;
4436 ap->ability_match_count = 0;
4437 } else {
4438 if (++ap->ability_match_count > 1) {
4439 ap->ability_match = 1;
4440 ap->ability_match_cfg = rx_cfg_reg;
4441 }
4442 }
4443 if (rx_cfg_reg & ANEG_CFG_ACK)
4444 ap->ack_match = 1;
4445 else
4446 ap->ack_match = 0;
4447
4448 ap->idle_match = 0;
4449 } else {
4450 ap->idle_match = 1;
4451 ap->ability_match_cfg = 0;
4452 ap->ability_match_count = 0;
4453 ap->ability_match = 0;
4454 ap->ack_match = 0;
4455
4456 rx_cfg_reg = 0;
4457 }
4458
4459 ap->rxconfig = rx_cfg_reg;
4460 ret = ANEG_OK;
4461
33f401ae 4462 switch (ap->state) {
1da177e4
LT
4463 case ANEG_STATE_UNKNOWN:
4464 if (ap->flags & (MR_AN_ENABLE | MR_RESTART_AN))
4465 ap->state = ANEG_STATE_AN_ENABLE;
4466
4467 /* fallthru */
4468 case ANEG_STATE_AN_ENABLE:
4469 ap->flags &= ~(MR_AN_COMPLETE | MR_PAGE_RX);
4470 if (ap->flags & MR_AN_ENABLE) {
4471 ap->link_time = 0;
4472 ap->cur_time = 0;
4473 ap->ability_match_cfg = 0;
4474 ap->ability_match_count = 0;
4475 ap->ability_match = 0;
4476 ap->idle_match = 0;
4477 ap->ack_match = 0;
4478
4479 ap->state = ANEG_STATE_RESTART_INIT;
4480 } else {
4481 ap->state = ANEG_STATE_DISABLE_LINK_OK;
4482 }
4483 break;
4484
4485 case ANEG_STATE_RESTART_INIT:
4486 ap->link_time = ap->cur_time;
4487 ap->flags &= ~(MR_NP_LOADED);
4488 ap->txconfig = 0;
4489 tw32(MAC_TX_AUTO_NEG, 0);
4490 tp->mac_mode |= MAC_MODE_SEND_CONFIGS;
4491 tw32_f(MAC_MODE, tp->mac_mode);
4492 udelay(40);
4493
4494 ret = ANEG_TIMER_ENAB;
4495 ap->state = ANEG_STATE_RESTART;
4496
4497 /* fallthru */
4498 case ANEG_STATE_RESTART:
4499 delta = ap->cur_time - ap->link_time;
859a5887 4500 if (delta > ANEG_STATE_SETTLE_TIME)
1da177e4 4501 ap->state = ANEG_STATE_ABILITY_DETECT_INIT;
859a5887 4502 else
1da177e4 4503 ret = ANEG_TIMER_ENAB;
1da177e4
LT
4504 break;
4505
4506 case ANEG_STATE_DISABLE_LINK_OK:
4507 ret = ANEG_DONE;
4508 break;
4509
4510 case ANEG_STATE_ABILITY_DETECT_INIT:
4511 ap->flags &= ~(MR_TOGGLE_TX);
5be73b47
MC
4512 ap->txconfig = ANEG_CFG_FD;
4513 flowctrl = tg3_advert_flowctrl_1000X(tp->link_config.flowctrl);
4514 if (flowctrl & ADVERTISE_1000XPAUSE)
4515 ap->txconfig |= ANEG_CFG_PS1;
4516 if (flowctrl & ADVERTISE_1000XPSE_ASYM)
4517 ap->txconfig |= ANEG_CFG_PS2;
1da177e4
LT
4518 tw32(MAC_TX_AUTO_NEG, ap->txconfig);
4519 tp->mac_mode |= MAC_MODE_SEND_CONFIGS;
4520 tw32_f(MAC_MODE, tp->mac_mode);
4521 udelay(40);
4522
4523 ap->state = ANEG_STATE_ABILITY_DETECT;
4524 break;
4525
4526 case ANEG_STATE_ABILITY_DETECT:
859a5887 4527 if (ap->ability_match != 0 && ap->rxconfig != 0)
1da177e4 4528 ap->state = ANEG_STATE_ACK_DETECT_INIT;
1da177e4
LT
4529 break;
4530
4531 case ANEG_STATE_ACK_DETECT_INIT:
4532 ap->txconfig |= ANEG_CFG_ACK;
4533 tw32(MAC_TX_AUTO_NEG, ap->txconfig);
4534 tp->mac_mode |= MAC_MODE_SEND_CONFIGS;
4535 tw32_f(MAC_MODE, tp->mac_mode);
4536 udelay(40);
4537
4538 ap->state = ANEG_STATE_ACK_DETECT;
4539
4540 /* fallthru */
4541 case ANEG_STATE_ACK_DETECT:
4542 if (ap->ack_match != 0) {
4543 if ((ap->rxconfig & ~ANEG_CFG_ACK) ==
4544 (ap->ability_match_cfg & ~ANEG_CFG_ACK)) {
4545 ap->state = ANEG_STATE_COMPLETE_ACK_INIT;
4546 } else {
4547 ap->state = ANEG_STATE_AN_ENABLE;
4548 }
4549 } else if (ap->ability_match != 0 &&
4550 ap->rxconfig == 0) {
4551 ap->state = ANEG_STATE_AN_ENABLE;
4552 }
4553 break;
4554
4555 case ANEG_STATE_COMPLETE_ACK_INIT:
4556 if (ap->rxconfig & ANEG_CFG_INVAL) {
4557 ret = ANEG_FAILED;
4558 break;
4559 }
4560 ap->flags &= ~(MR_LP_ADV_FULL_DUPLEX |
4561 MR_LP_ADV_HALF_DUPLEX |
4562 MR_LP_ADV_SYM_PAUSE |
4563 MR_LP_ADV_ASYM_PAUSE |
4564 MR_LP_ADV_REMOTE_FAULT1 |
4565 MR_LP_ADV_REMOTE_FAULT2 |
4566 MR_LP_ADV_NEXT_PAGE |
4567 MR_TOGGLE_RX |
4568 MR_NP_RX);
4569 if (ap->rxconfig & ANEG_CFG_FD)
4570 ap->flags |= MR_LP_ADV_FULL_DUPLEX;
4571 if (ap->rxconfig & ANEG_CFG_HD)
4572 ap->flags |= MR_LP_ADV_HALF_DUPLEX;
4573 if (ap->rxconfig & ANEG_CFG_PS1)
4574 ap->flags |= MR_LP_ADV_SYM_PAUSE;
4575 if (ap->rxconfig & ANEG_CFG_PS2)
4576 ap->flags |= MR_LP_ADV_ASYM_PAUSE;
4577 if (ap->rxconfig & ANEG_CFG_RF1)
4578 ap->flags |= MR_LP_ADV_REMOTE_FAULT1;
4579 if (ap->rxconfig & ANEG_CFG_RF2)
4580 ap->flags |= MR_LP_ADV_REMOTE_FAULT2;
4581 if (ap->rxconfig & ANEG_CFG_NP)
4582 ap->flags |= MR_LP_ADV_NEXT_PAGE;
4583
4584 ap->link_time = ap->cur_time;
4585
4586 ap->flags ^= (MR_TOGGLE_TX);
4587 if (ap->rxconfig & 0x0008)
4588 ap->flags |= MR_TOGGLE_RX;
4589 if (ap->rxconfig & ANEG_CFG_NP)
4590 ap->flags |= MR_NP_RX;
4591 ap->flags |= MR_PAGE_RX;
4592
4593 ap->state = ANEG_STATE_COMPLETE_ACK;
4594 ret = ANEG_TIMER_ENAB;
4595 break;
4596
4597 case ANEG_STATE_COMPLETE_ACK:
4598 if (ap->ability_match != 0 &&
4599 ap->rxconfig == 0) {
4600 ap->state = ANEG_STATE_AN_ENABLE;
4601 break;
4602 }
4603 delta = ap->cur_time - ap->link_time;
4604 if (delta > ANEG_STATE_SETTLE_TIME) {
4605 if (!(ap->flags & (MR_LP_ADV_NEXT_PAGE))) {
4606 ap->state = ANEG_STATE_IDLE_DETECT_INIT;
4607 } else {
4608 if ((ap->txconfig & ANEG_CFG_NP) == 0 &&
4609 !(ap->flags & MR_NP_RX)) {
4610 ap->state = ANEG_STATE_IDLE_DETECT_INIT;
4611 } else {
4612 ret = ANEG_FAILED;
4613 }
4614 }
4615 }
4616 break;
4617
4618 case ANEG_STATE_IDLE_DETECT_INIT:
4619 ap->link_time = ap->cur_time;
4620 tp->mac_mode &= ~MAC_MODE_SEND_CONFIGS;
4621 tw32_f(MAC_MODE, tp->mac_mode);
4622 udelay(40);
4623
4624 ap->state = ANEG_STATE_IDLE_DETECT;
4625 ret = ANEG_TIMER_ENAB;
4626 break;
4627
4628 case ANEG_STATE_IDLE_DETECT:
4629 if (ap->ability_match != 0 &&
4630 ap->rxconfig == 0) {
4631 ap->state = ANEG_STATE_AN_ENABLE;
4632 break;
4633 }
4634 delta = ap->cur_time - ap->link_time;
4635 if (delta > ANEG_STATE_SETTLE_TIME) {
4636 /* XXX another gem from the Broadcom driver :( */
4637 ap->state = ANEG_STATE_LINK_OK;
4638 }
4639 break;
4640
4641 case ANEG_STATE_LINK_OK:
4642 ap->flags |= (MR_AN_COMPLETE | MR_LINK_OK);
4643 ret = ANEG_DONE;
4644 break;
4645
4646 case ANEG_STATE_NEXT_PAGE_WAIT_INIT:
4647 /* ??? unimplemented */
4648 break;
4649
4650 case ANEG_STATE_NEXT_PAGE_WAIT:
4651 /* ??? unimplemented */
4652 break;
4653
4654 default:
4655 ret = ANEG_FAILED;
4656 break;
855e1111 4657 }
1da177e4
LT
4658
4659 return ret;
4660}
4661
5be73b47 4662static int fiber_autoneg(struct tg3 *tp, u32 *txflags, u32 *rxflags)
1da177e4
LT
4663{
4664 int res = 0;
4665 struct tg3_fiber_aneginfo aninfo;
4666 int status = ANEG_FAILED;
4667 unsigned int tick;
4668 u32 tmp;
4669
4670 tw32_f(MAC_TX_AUTO_NEG, 0);
4671
4672 tmp = tp->mac_mode & ~MAC_MODE_PORT_MODE_MASK;
4673 tw32_f(MAC_MODE, tmp | MAC_MODE_PORT_MODE_GMII);
4674 udelay(40);
4675
4676 tw32_f(MAC_MODE, tp->mac_mode | MAC_MODE_SEND_CONFIGS);
4677 udelay(40);
4678
4679 memset(&aninfo, 0, sizeof(aninfo));
4680 aninfo.flags |= MR_AN_ENABLE;
4681 aninfo.state = ANEG_STATE_UNKNOWN;
4682 aninfo.cur_time = 0;
4683 tick = 0;
4684 while (++tick < 195000) {
4685 status = tg3_fiber_aneg_smachine(tp, &aninfo);
4686 if (status == ANEG_DONE || status == ANEG_FAILED)
4687 break;
4688
4689 udelay(1);
4690 }
4691
4692 tp->mac_mode &= ~MAC_MODE_SEND_CONFIGS;
4693 tw32_f(MAC_MODE, tp->mac_mode);
4694 udelay(40);
4695
5be73b47
MC
4696 *txflags = aninfo.txconfig;
4697 *rxflags = aninfo.flags;
1da177e4
LT
4698
4699 if (status == ANEG_DONE &&
4700 (aninfo.flags & (MR_AN_COMPLETE | MR_LINK_OK |
4701 MR_LP_ADV_FULL_DUPLEX)))
4702 res = 1;
4703
4704 return res;
4705}
4706
4707static void tg3_init_bcm8002(struct tg3 *tp)
4708{
4709 u32 mac_status = tr32(MAC_STATUS);
4710 int i;
4711
4712 /* Reset when initting first time or we have a link. */
63c3a66f 4713 if (tg3_flag(tp, INIT_COMPLETE) &&
1da177e4
LT
4714 !(mac_status & MAC_STATUS_PCS_SYNCED))
4715 return;
4716
4717 /* Set PLL lock range. */
4718 tg3_writephy(tp, 0x16, 0x8007);
4719
4720 /* SW reset */
4721 tg3_writephy(tp, MII_BMCR, BMCR_RESET);
4722
4723 /* Wait for reset to complete. */
4724 /* XXX schedule_timeout() ... */
4725 for (i = 0; i < 500; i++)
4726 udelay(10);
4727
4728 /* Config mode; select PMA/Ch 1 regs. */
4729 tg3_writephy(tp, 0x10, 0x8411);
4730
4731 /* Enable auto-lock and comdet, select txclk for tx. */
4732 tg3_writephy(tp, 0x11, 0x0a10);
4733
4734 tg3_writephy(tp, 0x18, 0x00a0);
4735 tg3_writephy(tp, 0x16, 0x41ff);
4736
4737 /* Assert and deassert POR. */
4738 tg3_writephy(tp, 0x13, 0x0400);
4739 udelay(40);
4740 tg3_writephy(tp, 0x13, 0x0000);
4741
4742 tg3_writephy(tp, 0x11, 0x0a50);
4743 udelay(40);
4744 tg3_writephy(tp, 0x11, 0x0a10);
4745
4746 /* Wait for signal to stabilize */
4747 /* XXX schedule_timeout() ... */
4748 for (i = 0; i < 15000; i++)
4749 udelay(10);
4750
4751 /* Deselect the channel register so we can read the PHYID
4752 * later.
4753 */
4754 tg3_writephy(tp, 0x10, 0x8011);
4755}
4756
4757static int tg3_setup_fiber_hw_autoneg(struct tg3 *tp, u32 mac_status)
4758{
82cd3d11 4759 u16 flowctrl;
1da177e4
LT
4760 u32 sg_dig_ctrl, sg_dig_status;
4761 u32 serdes_cfg, expected_sg_dig_ctrl;
4762 int workaround, port_a;
4763 int current_link_up;
4764
4765 serdes_cfg = 0;
4766 expected_sg_dig_ctrl = 0;
4767 workaround = 0;
4768 port_a = 1;
4769 current_link_up = 0;
4770
4771 if (tp->pci_chip_rev_id != CHIPREV_ID_5704_A0 &&
4772 tp->pci_chip_rev_id != CHIPREV_ID_5704_A1) {
4773 workaround = 1;
4774 if (tr32(TG3PCI_DUAL_MAC_CTRL) & DUAL_MAC_CTRL_ID)
4775 port_a = 0;
4776
4777 /* preserve bits 0-11,13,14 for signal pre-emphasis */
4778 /* preserve bits 20-23 for voltage regulator */
4779 serdes_cfg = tr32(MAC_SERDES_CFG) & 0x00f06fff;
4780 }
4781
4782 sg_dig_ctrl = tr32(SG_DIG_CTRL);
4783
4784 if (tp->link_config.autoneg != AUTONEG_ENABLE) {
c98f6e3b 4785 if (sg_dig_ctrl & SG_DIG_USING_HW_AUTONEG) {
1da177e4
LT
4786 if (workaround) {
4787 u32 val = serdes_cfg;
4788
4789 if (port_a)
4790 val |= 0xc010000;
4791 else
4792 val |= 0x4010000;
4793 tw32_f(MAC_SERDES_CFG, val);
4794 }
c98f6e3b
MC
4795
4796 tw32_f(SG_DIG_CTRL, SG_DIG_COMMON_SETUP);
1da177e4
LT
4797 }
4798 if (mac_status & MAC_STATUS_PCS_SYNCED) {
4799 tg3_setup_flow_control(tp, 0, 0);
4800 current_link_up = 1;
4801 }
4802 goto out;
4803 }
4804
4805 /* Want auto-negotiation. */
c98f6e3b 4806 expected_sg_dig_ctrl = SG_DIG_USING_HW_AUTONEG | SG_DIG_COMMON_SETUP;
1da177e4 4807
82cd3d11
MC
4808 flowctrl = tg3_advert_flowctrl_1000X(tp->link_config.flowctrl);
4809 if (flowctrl & ADVERTISE_1000XPAUSE)
4810 expected_sg_dig_ctrl |= SG_DIG_PAUSE_CAP;
4811 if (flowctrl & ADVERTISE_1000XPSE_ASYM)
4812 expected_sg_dig_ctrl |= SG_DIG_ASYM_PAUSE;
1da177e4
LT
4813
4814 if (sg_dig_ctrl != expected_sg_dig_ctrl) {
f07e9af3 4815 if ((tp->phy_flags & TG3_PHYFLG_PARALLEL_DETECT) &&
3d3ebe74
MC
4816 tp->serdes_counter &&
4817 ((mac_status & (MAC_STATUS_PCS_SYNCED |
4818 MAC_STATUS_RCVD_CFG)) ==
4819 MAC_STATUS_PCS_SYNCED)) {
4820 tp->serdes_counter--;
4821 current_link_up = 1;
4822 goto out;
4823 }
4824restart_autoneg:
1da177e4
LT
4825 if (workaround)
4826 tw32_f(MAC_SERDES_CFG, serdes_cfg | 0xc011000);
c98f6e3b 4827 tw32_f(SG_DIG_CTRL, expected_sg_dig_ctrl | SG_DIG_SOFT_RESET);
1da177e4
LT
4828 udelay(5);
4829 tw32_f(SG_DIG_CTRL, expected_sg_dig_ctrl);
4830
3d3ebe74 4831 tp->serdes_counter = SERDES_AN_TIMEOUT_5704S;
f07e9af3 4832 tp->phy_flags &= ~TG3_PHYFLG_PARALLEL_DETECT;
1da177e4
LT
4833 } else if (mac_status & (MAC_STATUS_PCS_SYNCED |
4834 MAC_STATUS_SIGNAL_DET)) {
3d3ebe74 4835 sg_dig_status = tr32(SG_DIG_STATUS);
1da177e4
LT
4836 mac_status = tr32(MAC_STATUS);
4837
c98f6e3b 4838 if ((sg_dig_status & SG_DIG_AUTONEG_COMPLETE) &&
1da177e4 4839 (mac_status & MAC_STATUS_PCS_SYNCED)) {
82cd3d11
MC
4840 u32 local_adv = 0, remote_adv = 0;
4841
4842 if (sg_dig_ctrl & SG_DIG_PAUSE_CAP)
4843 local_adv |= ADVERTISE_1000XPAUSE;
4844 if (sg_dig_ctrl & SG_DIG_ASYM_PAUSE)
4845 local_adv |= ADVERTISE_1000XPSE_ASYM;
1da177e4 4846
c98f6e3b 4847 if (sg_dig_status & SG_DIG_PARTNER_PAUSE_CAPABLE)
82cd3d11 4848 remote_adv |= LPA_1000XPAUSE;
c98f6e3b 4849 if (sg_dig_status & SG_DIG_PARTNER_ASYM_PAUSE)
82cd3d11 4850 remote_adv |= LPA_1000XPAUSE_ASYM;
1da177e4 4851
859edb26
MC
4852 tp->link_config.rmt_adv =
4853 mii_adv_to_ethtool_adv_x(remote_adv);
4854
1da177e4
LT
4855 tg3_setup_flow_control(tp, local_adv, remote_adv);
4856 current_link_up = 1;
3d3ebe74 4857 tp->serdes_counter = 0;
f07e9af3 4858 tp->phy_flags &= ~TG3_PHYFLG_PARALLEL_DETECT;
c98f6e3b 4859 } else if (!(sg_dig_status & SG_DIG_AUTONEG_COMPLETE)) {
3d3ebe74
MC
4860 if (tp->serdes_counter)
4861 tp->serdes_counter--;
1da177e4
LT
4862 else {
4863 if (workaround) {
4864 u32 val = serdes_cfg;
4865
4866 if (port_a)
4867 val |= 0xc010000;
4868 else
4869 val |= 0x4010000;
4870
4871 tw32_f(MAC_SERDES_CFG, val);
4872 }
4873
c98f6e3b 4874 tw32_f(SG_DIG_CTRL, SG_DIG_COMMON_SETUP);
1da177e4
LT
4875 udelay(40);
4876
4877 /* Link parallel detection - link is up */
4878 /* only if we have PCS_SYNC and not */
4879 /* receiving config code words */
4880 mac_status = tr32(MAC_STATUS);
4881 if ((mac_status & MAC_STATUS_PCS_SYNCED) &&
4882 !(mac_status & MAC_STATUS_RCVD_CFG)) {
4883 tg3_setup_flow_control(tp, 0, 0);
4884 current_link_up = 1;
f07e9af3
MC
4885 tp->phy_flags |=
4886 TG3_PHYFLG_PARALLEL_DETECT;
3d3ebe74
MC
4887 tp->serdes_counter =
4888 SERDES_PARALLEL_DET_TIMEOUT;
4889 } else
4890 goto restart_autoneg;
1da177e4
LT
4891 }
4892 }
3d3ebe74
MC
4893 } else {
4894 tp->serdes_counter = SERDES_AN_TIMEOUT_5704S;
f07e9af3 4895 tp->phy_flags &= ~TG3_PHYFLG_PARALLEL_DETECT;
1da177e4
LT
4896 }
4897
4898out:
4899 return current_link_up;
4900}
4901
4902static int tg3_setup_fiber_by_hand(struct tg3 *tp, u32 mac_status)
4903{
4904 int current_link_up = 0;
4905
5cf64b8a 4906 if (!(mac_status & MAC_STATUS_PCS_SYNCED))
1da177e4 4907 goto out;
1da177e4
LT
4908
4909 if (tp->link_config.autoneg == AUTONEG_ENABLE) {
5be73b47 4910 u32 txflags, rxflags;
1da177e4 4911 int i;
6aa20a22 4912
5be73b47
MC
4913 if (fiber_autoneg(tp, &txflags, &rxflags)) {
4914 u32 local_adv = 0, remote_adv = 0;
1da177e4 4915
5be73b47
MC
4916 if (txflags & ANEG_CFG_PS1)
4917 local_adv |= ADVERTISE_1000XPAUSE;
4918 if (txflags & ANEG_CFG_PS2)
4919 local_adv |= ADVERTISE_1000XPSE_ASYM;
4920
4921 if (rxflags & MR_LP_ADV_SYM_PAUSE)
4922 remote_adv |= LPA_1000XPAUSE;
4923 if (rxflags & MR_LP_ADV_ASYM_PAUSE)
4924 remote_adv |= LPA_1000XPAUSE_ASYM;
1da177e4 4925
859edb26
MC
4926 tp->link_config.rmt_adv =
4927 mii_adv_to_ethtool_adv_x(remote_adv);
4928
1da177e4
LT
4929 tg3_setup_flow_control(tp, local_adv, remote_adv);
4930
1da177e4
LT
4931 current_link_up = 1;
4932 }
4933 for (i = 0; i < 30; i++) {
4934 udelay(20);
4935 tw32_f(MAC_STATUS,
4936 (MAC_STATUS_SYNC_CHANGED |
4937 MAC_STATUS_CFG_CHANGED));
4938 udelay(40);
4939 if ((tr32(MAC_STATUS) &
4940 (MAC_STATUS_SYNC_CHANGED |
4941 MAC_STATUS_CFG_CHANGED)) == 0)
4942 break;
4943 }
4944
4945 mac_status = tr32(MAC_STATUS);
4946 if (current_link_up == 0 &&
4947 (mac_status & MAC_STATUS_PCS_SYNCED) &&
4948 !(mac_status & MAC_STATUS_RCVD_CFG))
4949 current_link_up = 1;
4950 } else {
5be73b47
MC
4951 tg3_setup_flow_control(tp, 0, 0);
4952
1da177e4
LT
4953 /* Forcing 1000FD link up. */
4954 current_link_up = 1;
1da177e4
LT
4955
4956 tw32_f(MAC_MODE, (tp->mac_mode | MAC_MODE_SEND_CONFIGS));
4957 udelay(40);
e8f3f6ca
MC
4958
4959 tw32_f(MAC_MODE, tp->mac_mode);
4960 udelay(40);
1da177e4
LT
4961 }
4962
4963out:
4964 return current_link_up;
4965}
4966
4967static int tg3_setup_fiber_phy(struct tg3 *tp, int force_reset)
4968{
4969 u32 orig_pause_cfg;
4970 u16 orig_active_speed;
4971 u8 orig_active_duplex;
4972 u32 mac_status;
4973 int current_link_up;
4974 int i;
4975
8d018621 4976 orig_pause_cfg = tp->link_config.active_flowctrl;
1da177e4
LT
4977 orig_active_speed = tp->link_config.active_speed;
4978 orig_active_duplex = tp->link_config.active_duplex;
4979
63c3a66f 4980 if (!tg3_flag(tp, HW_AUTONEG) &&
1da177e4 4981 netif_carrier_ok(tp->dev) &&
63c3a66f 4982 tg3_flag(tp, INIT_COMPLETE)) {
1da177e4
LT
4983 mac_status = tr32(MAC_STATUS);
4984 mac_status &= (MAC_STATUS_PCS_SYNCED |
4985 MAC_STATUS_SIGNAL_DET |
4986 MAC_STATUS_CFG_CHANGED |
4987 MAC_STATUS_RCVD_CFG);
4988 if (mac_status == (MAC_STATUS_PCS_SYNCED |
4989 MAC_STATUS_SIGNAL_DET)) {
4990 tw32_f(MAC_STATUS, (MAC_STATUS_SYNC_CHANGED |
4991 MAC_STATUS_CFG_CHANGED));
4992 return 0;
4993 }
4994 }
4995
4996 tw32_f(MAC_TX_AUTO_NEG, 0);
4997
4998 tp->mac_mode &= ~(MAC_MODE_PORT_MODE_MASK | MAC_MODE_HALF_DUPLEX);
4999 tp->mac_mode |= MAC_MODE_PORT_MODE_TBI;
5000 tw32_f(MAC_MODE, tp->mac_mode);
5001 udelay(40);
5002
79eb6904 5003 if (tp->phy_id == TG3_PHY_ID_BCM8002)
1da177e4
LT
5004 tg3_init_bcm8002(tp);
5005
5006 /* Enable link change event even when serdes polling. */
5007 tw32_f(MAC_EVENT, MAC_EVENT_LNKSTATE_CHANGED);
5008 udelay(40);
5009
5010 current_link_up = 0;
859edb26 5011 tp->link_config.rmt_adv = 0;
1da177e4
LT
5012 mac_status = tr32(MAC_STATUS);
5013
63c3a66f 5014 if (tg3_flag(tp, HW_AUTONEG))
1da177e4
LT
5015 current_link_up = tg3_setup_fiber_hw_autoneg(tp, mac_status);
5016 else
5017 current_link_up = tg3_setup_fiber_by_hand(tp, mac_status);
5018
898a56f8 5019 tp->napi[0].hw_status->status =
1da177e4 5020 (SD_STATUS_UPDATED |
898a56f8 5021 (tp->napi[0].hw_status->status & ~SD_STATUS_LINK_CHG));
1da177e4
LT
5022
5023 for (i = 0; i < 100; i++) {
5024 tw32_f(MAC_STATUS, (MAC_STATUS_SYNC_CHANGED |
5025 MAC_STATUS_CFG_CHANGED));
5026 udelay(5);
5027 if ((tr32(MAC_STATUS) & (MAC_STATUS_SYNC_CHANGED |
3d3ebe74
MC
5028 MAC_STATUS_CFG_CHANGED |
5029 MAC_STATUS_LNKSTATE_CHANGED)) == 0)
1da177e4
LT
5030 break;
5031 }
5032
5033 mac_status = tr32(MAC_STATUS);
5034 if ((mac_status & MAC_STATUS_PCS_SYNCED) == 0) {
5035 current_link_up = 0;
3d3ebe74
MC
5036 if (tp->link_config.autoneg == AUTONEG_ENABLE &&
5037 tp->serdes_counter == 0) {
1da177e4
LT
5038 tw32_f(MAC_MODE, (tp->mac_mode |
5039 MAC_MODE_SEND_CONFIGS));
5040 udelay(1);
5041 tw32_f(MAC_MODE, tp->mac_mode);
5042 }
5043 }
5044
5045 if (current_link_up == 1) {
5046 tp->link_config.active_speed = SPEED_1000;
5047 tp->link_config.active_duplex = DUPLEX_FULL;
5048 tw32(MAC_LED_CTRL, (tp->led_ctrl |
5049 LED_CTRL_LNKLED_OVERRIDE |
5050 LED_CTRL_1000MBPS_ON));
5051 } else {
e740522e
MC
5052 tp->link_config.active_speed = SPEED_UNKNOWN;
5053 tp->link_config.active_duplex = DUPLEX_UNKNOWN;
1da177e4
LT
5054 tw32(MAC_LED_CTRL, (tp->led_ctrl |
5055 LED_CTRL_LNKLED_OVERRIDE |
5056 LED_CTRL_TRAFFIC_OVERRIDE));
5057 }
5058
5059 if (current_link_up != netif_carrier_ok(tp->dev)) {
5060 if (current_link_up)
5061 netif_carrier_on(tp->dev);
5062 else
5063 netif_carrier_off(tp->dev);
5064 tg3_link_report(tp);
5065 } else {
8d018621 5066 u32 now_pause_cfg = tp->link_config.active_flowctrl;
1da177e4
LT
5067 if (orig_pause_cfg != now_pause_cfg ||
5068 orig_active_speed != tp->link_config.active_speed ||
5069 orig_active_duplex != tp->link_config.active_duplex)
5070 tg3_link_report(tp);
5071 }
5072
5073 return 0;
5074}
5075
747e8f8b
MC
5076static int tg3_setup_fiber_mii_phy(struct tg3 *tp, int force_reset)
5077{
5078 int current_link_up, err = 0;
5079 u32 bmsr, bmcr;
5080 u16 current_speed;
5081 u8 current_duplex;
ef167e27 5082 u32 local_adv, remote_adv;
747e8f8b
MC
5083
5084 tp->mac_mode |= MAC_MODE_PORT_MODE_GMII;
5085 tw32_f(MAC_MODE, tp->mac_mode);
5086 udelay(40);
5087
5088 tw32(MAC_EVENT, 0);
5089
5090 tw32_f(MAC_STATUS,
5091 (MAC_STATUS_SYNC_CHANGED |
5092 MAC_STATUS_CFG_CHANGED |
5093 MAC_STATUS_MI_COMPLETION |
5094 MAC_STATUS_LNKSTATE_CHANGED));
5095 udelay(40);
5096
5097 if (force_reset)
5098 tg3_phy_reset(tp);
5099
5100 current_link_up = 0;
e740522e
MC
5101 current_speed = SPEED_UNKNOWN;
5102 current_duplex = DUPLEX_UNKNOWN;
859edb26 5103 tp->link_config.rmt_adv = 0;
747e8f8b
MC
5104
5105 err |= tg3_readphy(tp, MII_BMSR, &bmsr);
5106 err |= tg3_readphy(tp, MII_BMSR, &bmsr);
d4d2c558
MC
5107 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5714) {
5108 if (tr32(MAC_TX_STATUS) & TX_STATUS_LINK_UP)
5109 bmsr |= BMSR_LSTATUS;
5110 else
5111 bmsr &= ~BMSR_LSTATUS;
5112 }
747e8f8b
MC
5113
5114 err |= tg3_readphy(tp, MII_BMCR, &bmcr);
5115
5116 if ((tp->link_config.autoneg == AUTONEG_ENABLE) && !force_reset &&
f07e9af3 5117 (tp->phy_flags & TG3_PHYFLG_PARALLEL_DETECT)) {
747e8f8b
MC
5118 /* do nothing, just check for link up at the end */
5119 } else if (tp->link_config.autoneg == AUTONEG_ENABLE) {
28011cf1 5120 u32 adv, newadv;
747e8f8b
MC
5121
5122 err |= tg3_readphy(tp, MII_ADVERTISE, &adv);
28011cf1
MC
5123 newadv = adv & ~(ADVERTISE_1000XFULL | ADVERTISE_1000XHALF |
5124 ADVERTISE_1000XPAUSE |
5125 ADVERTISE_1000XPSE_ASYM |
5126 ADVERTISE_SLCT);
747e8f8b 5127
28011cf1 5128 newadv |= tg3_advert_flowctrl_1000X(tp->link_config.flowctrl);
37f07023 5129 newadv |= ethtool_adv_to_mii_adv_x(tp->link_config.advertising);
747e8f8b 5130
28011cf1
MC
5131 if ((newadv != adv) || !(bmcr & BMCR_ANENABLE)) {
5132 tg3_writephy(tp, MII_ADVERTISE, newadv);
747e8f8b
MC
5133 bmcr |= BMCR_ANENABLE | BMCR_ANRESTART;
5134 tg3_writephy(tp, MII_BMCR, bmcr);
5135
5136 tw32_f(MAC_EVENT, MAC_EVENT_LNKSTATE_CHANGED);
3d3ebe74 5137 tp->serdes_counter = SERDES_AN_TIMEOUT_5714S;
f07e9af3 5138 tp->phy_flags &= ~TG3_PHYFLG_PARALLEL_DETECT;
747e8f8b
MC
5139
5140 return err;
5141 }
5142 } else {
5143 u32 new_bmcr;
5144
5145 bmcr &= ~BMCR_SPEED1000;
5146 new_bmcr = bmcr & ~(BMCR_ANENABLE | BMCR_FULLDPLX);
5147
5148 if (tp->link_config.duplex == DUPLEX_FULL)
5149 new_bmcr |= BMCR_FULLDPLX;
5150
5151 if (new_bmcr != bmcr) {
5152 /* BMCR_SPEED1000 is a reserved bit that needs
5153 * to be set on write.
5154 */
5155 new_bmcr |= BMCR_SPEED1000;
5156
5157 /* Force a linkdown */
5158 if (netif_carrier_ok(tp->dev)) {
5159 u32 adv;
5160
5161 err |= tg3_readphy(tp, MII_ADVERTISE, &adv);
5162 adv &= ~(ADVERTISE_1000XFULL |
5163 ADVERTISE_1000XHALF |
5164 ADVERTISE_SLCT);
5165 tg3_writephy(tp, MII_ADVERTISE, adv);
5166 tg3_writephy(tp, MII_BMCR, bmcr |
5167 BMCR_ANRESTART |
5168 BMCR_ANENABLE);
5169 udelay(10);
5170 netif_carrier_off(tp->dev);
5171 }
5172 tg3_writephy(tp, MII_BMCR, new_bmcr);
5173 bmcr = new_bmcr;
5174 err |= tg3_readphy(tp, MII_BMSR, &bmsr);
5175 err |= tg3_readphy(tp, MII_BMSR, &bmsr);
d4d2c558
MC
5176 if (GET_ASIC_REV(tp->pci_chip_rev_id) ==
5177 ASIC_REV_5714) {
5178 if (tr32(MAC_TX_STATUS) & TX_STATUS_LINK_UP)
5179 bmsr |= BMSR_LSTATUS;
5180 else
5181 bmsr &= ~BMSR_LSTATUS;
5182 }
f07e9af3 5183 tp->phy_flags &= ~TG3_PHYFLG_PARALLEL_DETECT;
747e8f8b
MC
5184 }
5185 }
5186
5187 if (bmsr & BMSR_LSTATUS) {
5188 current_speed = SPEED_1000;
5189 current_link_up = 1;
5190 if (bmcr & BMCR_FULLDPLX)
5191 current_duplex = DUPLEX_FULL;
5192 else
5193 current_duplex = DUPLEX_HALF;
5194
ef167e27
MC
5195 local_adv = 0;
5196 remote_adv = 0;
5197
747e8f8b 5198 if (bmcr & BMCR_ANENABLE) {
ef167e27 5199 u32 common;
747e8f8b
MC
5200
5201 err |= tg3_readphy(tp, MII_ADVERTISE, &local_adv);
5202 err |= tg3_readphy(tp, MII_LPA, &remote_adv);
5203 common = local_adv & remote_adv;
5204 if (common & (ADVERTISE_1000XHALF |
5205 ADVERTISE_1000XFULL)) {
5206 if (common & ADVERTISE_1000XFULL)
5207 current_duplex = DUPLEX_FULL;
5208 else
5209 current_duplex = DUPLEX_HALF;
859edb26
MC
5210
5211 tp->link_config.rmt_adv =
5212 mii_adv_to_ethtool_adv_x(remote_adv);
63c3a66f 5213 } else if (!tg3_flag(tp, 5780_CLASS)) {
57d8b880 5214 /* Link is up via parallel detect */
859a5887 5215 } else {
747e8f8b 5216 current_link_up = 0;
859a5887 5217 }
747e8f8b
MC
5218 }
5219 }
5220
ef167e27
MC
5221 if (current_link_up == 1 && current_duplex == DUPLEX_FULL)
5222 tg3_setup_flow_control(tp, local_adv, remote_adv);
5223
747e8f8b
MC
5224 tp->mac_mode &= ~MAC_MODE_HALF_DUPLEX;
5225 if (tp->link_config.active_duplex == DUPLEX_HALF)
5226 tp->mac_mode |= MAC_MODE_HALF_DUPLEX;
5227
5228 tw32_f(MAC_MODE, tp->mac_mode);
5229 udelay(40);
5230
5231 tw32_f(MAC_EVENT, MAC_EVENT_LNKSTATE_CHANGED);
5232
5233 tp->link_config.active_speed = current_speed;
5234 tp->link_config.active_duplex = current_duplex;
5235
5236 if (current_link_up != netif_carrier_ok(tp->dev)) {
5237 if (current_link_up)
5238 netif_carrier_on(tp->dev);
5239 else {
5240 netif_carrier_off(tp->dev);
f07e9af3 5241 tp->phy_flags &= ~TG3_PHYFLG_PARALLEL_DETECT;
747e8f8b
MC
5242 }
5243 tg3_link_report(tp);
5244 }
5245 return err;
5246}
5247
5248static void tg3_serdes_parallel_detect(struct tg3 *tp)
5249{
3d3ebe74 5250 if (tp->serdes_counter) {
747e8f8b 5251 /* Give autoneg time to complete. */
3d3ebe74 5252 tp->serdes_counter--;
747e8f8b
MC
5253 return;
5254 }
c6cdf436 5255
747e8f8b
MC
5256 if (!netif_carrier_ok(tp->dev) &&
5257 (tp->link_config.autoneg == AUTONEG_ENABLE)) {
5258 u32 bmcr;
5259
5260 tg3_readphy(tp, MII_BMCR, &bmcr);
5261 if (bmcr & BMCR_ANENABLE) {
5262 u32 phy1, phy2;
5263
5264 /* Select shadow register 0x1f */
f08aa1a8
MC
5265 tg3_writephy(tp, MII_TG3_MISC_SHDW, 0x7c00);
5266 tg3_readphy(tp, MII_TG3_MISC_SHDW, &phy1);
747e8f8b
MC
5267
5268 /* Select expansion interrupt status register */
f08aa1a8
MC
5269 tg3_writephy(tp, MII_TG3_DSP_ADDRESS,
5270 MII_TG3_DSP_EXP1_INT_STAT);
5271 tg3_readphy(tp, MII_TG3_DSP_RW_PORT, &phy2);
5272 tg3_readphy(tp, MII_TG3_DSP_RW_PORT, &phy2);
747e8f8b
MC
5273
5274 if ((phy1 & 0x10) && !(phy2 & 0x20)) {
5275 /* We have signal detect and not receiving
5276 * config code words, link is up by parallel
5277 * detection.
5278 */
5279
5280 bmcr &= ~BMCR_ANENABLE;
5281 bmcr |= BMCR_SPEED1000 | BMCR_FULLDPLX;
5282 tg3_writephy(tp, MII_BMCR, bmcr);
f07e9af3 5283 tp->phy_flags |= TG3_PHYFLG_PARALLEL_DETECT;
747e8f8b
MC
5284 }
5285 }
859a5887
MC
5286 } else if (netif_carrier_ok(tp->dev) &&
5287 (tp->link_config.autoneg == AUTONEG_ENABLE) &&
f07e9af3 5288 (tp->phy_flags & TG3_PHYFLG_PARALLEL_DETECT)) {
747e8f8b
MC
5289 u32 phy2;
5290
5291 /* Select expansion interrupt status register */
f08aa1a8
MC
5292 tg3_writephy(tp, MII_TG3_DSP_ADDRESS,
5293 MII_TG3_DSP_EXP1_INT_STAT);
5294 tg3_readphy(tp, MII_TG3_DSP_RW_PORT, &phy2);
747e8f8b
MC
5295 if (phy2 & 0x20) {
5296 u32 bmcr;
5297
5298 /* Config code words received, turn on autoneg. */
5299 tg3_readphy(tp, MII_BMCR, &bmcr);
5300 tg3_writephy(tp, MII_BMCR, bmcr | BMCR_ANENABLE);
5301
f07e9af3 5302 tp->phy_flags &= ~TG3_PHYFLG_PARALLEL_DETECT;
747e8f8b
MC
5303
5304 }
5305 }
5306}
5307
1da177e4
LT
5308static int tg3_setup_phy(struct tg3 *tp, int force_reset)
5309{
f2096f94 5310 u32 val;
1da177e4
LT
5311 int err;
5312
f07e9af3 5313 if (tp->phy_flags & TG3_PHYFLG_PHY_SERDES)
1da177e4 5314 err = tg3_setup_fiber_phy(tp, force_reset);
f07e9af3 5315 else if (tp->phy_flags & TG3_PHYFLG_MII_SERDES)
747e8f8b 5316 err = tg3_setup_fiber_mii_phy(tp, force_reset);
859a5887 5317 else
1da177e4 5318 err = tg3_setup_copper_phy(tp, force_reset);
1da177e4 5319
bcb37f6c 5320 if (GET_CHIP_REV(tp->pci_chip_rev_id) == CHIPREV_5784_AX) {
f2096f94 5321 u32 scale;
aa6c91fe
MC
5322
5323 val = tr32(TG3_CPMU_CLCK_STAT) & CPMU_CLCK_STAT_MAC_CLCK_MASK;
5324 if (val == CPMU_CLCK_STAT_MAC_CLCK_62_5)
5325 scale = 65;
5326 else if (val == CPMU_CLCK_STAT_MAC_CLCK_6_25)
5327 scale = 6;
5328 else
5329 scale = 12;
5330
5331 val = tr32(GRC_MISC_CFG) & ~GRC_MISC_CFG_PRESCALAR_MASK;
5332 val |= (scale << GRC_MISC_CFG_PRESCALAR_SHIFT);
5333 tw32(GRC_MISC_CFG, val);
5334 }
5335
f2096f94
MC
5336 val = (2 << TX_LENGTHS_IPG_CRS_SHIFT) |
5337 (6 << TX_LENGTHS_IPG_SHIFT);
5338 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5720)
5339 val |= tr32(MAC_TX_LENGTHS) &
5340 (TX_LENGTHS_JMB_FRM_LEN_MSK |
5341 TX_LENGTHS_CNT_DWN_VAL_MSK);
5342
1da177e4
LT
5343 if (tp->link_config.active_speed == SPEED_1000 &&
5344 tp->link_config.active_duplex == DUPLEX_HALF)
f2096f94
MC
5345 tw32(MAC_TX_LENGTHS, val |
5346 (0xff << TX_LENGTHS_SLOT_TIME_SHIFT));
1da177e4 5347 else
f2096f94
MC
5348 tw32(MAC_TX_LENGTHS, val |
5349 (32 << TX_LENGTHS_SLOT_TIME_SHIFT));
1da177e4 5350
63c3a66f 5351 if (!tg3_flag(tp, 5705_PLUS)) {
1da177e4
LT
5352 if (netif_carrier_ok(tp->dev)) {
5353 tw32(HOSTCC_STAT_COAL_TICKS,
15f9850d 5354 tp->coal.stats_block_coalesce_usecs);
1da177e4
LT
5355 } else {
5356 tw32(HOSTCC_STAT_COAL_TICKS, 0);
5357 }
5358 }
5359
63c3a66f 5360 if (tg3_flag(tp, ASPM_WORKAROUND)) {
f2096f94 5361 val = tr32(PCIE_PWR_MGMT_THRESH);
8ed5d97e
MC
5362 if (!netif_carrier_ok(tp->dev))
5363 val = (val & ~PCIE_PWR_MGMT_L1_THRESH_MSK) |
5364 tp->pwrmgmt_thresh;
5365 else
5366 val |= PCIE_PWR_MGMT_L1_THRESH_MSK;
5367 tw32(PCIE_PWR_MGMT_THRESH, val);
5368 }
5369
1da177e4
LT
5370 return err;
5371}
5372
66cfd1bd
MC
5373static inline int tg3_irq_sync(struct tg3 *tp)
5374{
5375 return tp->irq_sync;
5376}
5377
97bd8e49
MC
5378static inline void tg3_rd32_loop(struct tg3 *tp, u32 *dst, u32 off, u32 len)
5379{
5380 int i;
5381
5382 dst = (u32 *)((u8 *)dst + off);
5383 for (i = 0; i < len; i += sizeof(u32))
5384 *dst++ = tr32(off + i);
5385}
5386
5387static void tg3_dump_legacy_regs(struct tg3 *tp, u32 *regs)
5388{
5389 tg3_rd32_loop(tp, regs, TG3PCI_VENDOR, 0xb0);
5390 tg3_rd32_loop(tp, regs, MAILBOX_INTERRUPT_0, 0x200);
5391 tg3_rd32_loop(tp, regs, MAC_MODE, 0x4f0);
5392 tg3_rd32_loop(tp, regs, SNDDATAI_MODE, 0xe0);
5393 tg3_rd32_loop(tp, regs, SNDDATAC_MODE, 0x04);
5394 tg3_rd32_loop(tp, regs, SNDBDS_MODE, 0x80);
5395 tg3_rd32_loop(tp, regs, SNDBDI_MODE, 0x48);
5396 tg3_rd32_loop(tp, regs, SNDBDC_MODE, 0x04);
5397 tg3_rd32_loop(tp, regs, RCVLPC_MODE, 0x20);
5398 tg3_rd32_loop(tp, regs, RCVLPC_SELLST_BASE, 0x15c);
5399 tg3_rd32_loop(tp, regs, RCVDBDI_MODE, 0x0c);
5400 tg3_rd32_loop(tp, regs, RCVDBDI_JUMBO_BD, 0x3c);
5401 tg3_rd32_loop(tp, regs, RCVDBDI_BD_PROD_IDX_0, 0x44);
5402 tg3_rd32_loop(tp, regs, RCVDCC_MODE, 0x04);
5403 tg3_rd32_loop(tp, regs, RCVBDI_MODE, 0x20);
5404 tg3_rd32_loop(tp, regs, RCVCC_MODE, 0x14);
5405 tg3_rd32_loop(tp, regs, RCVLSC_MODE, 0x08);
5406 tg3_rd32_loop(tp, regs, MBFREE_MODE, 0x08);
5407 tg3_rd32_loop(tp, regs, HOSTCC_MODE, 0x100);
5408
63c3a66f 5409 if (tg3_flag(tp, SUPPORT_MSIX))
97bd8e49
MC
5410 tg3_rd32_loop(tp, regs, HOSTCC_RXCOL_TICKS_VEC1, 0x180);
5411
5412 tg3_rd32_loop(tp, regs, MEMARB_MODE, 0x10);
5413 tg3_rd32_loop(tp, regs, BUFMGR_MODE, 0x58);
5414 tg3_rd32_loop(tp, regs, RDMAC_MODE, 0x08);
5415 tg3_rd32_loop(tp, regs, WDMAC_MODE, 0x08);
5416 tg3_rd32_loop(tp, regs, RX_CPU_MODE, 0x04);
5417 tg3_rd32_loop(tp, regs, RX_CPU_STATE, 0x04);
5418 tg3_rd32_loop(tp, regs, RX_CPU_PGMCTR, 0x04);
5419 tg3_rd32_loop(tp, regs, RX_CPU_HWBKPT, 0x04);
5420
63c3a66f 5421 if (!tg3_flag(tp, 5705_PLUS)) {
97bd8e49
MC
5422 tg3_rd32_loop(tp, regs, TX_CPU_MODE, 0x04);
5423 tg3_rd32_loop(tp, regs, TX_CPU_STATE, 0x04);
5424 tg3_rd32_loop(tp, regs, TX_CPU_PGMCTR, 0x04);
5425 }
5426
5427 tg3_rd32_loop(tp, regs, GRCMBOX_INTERRUPT_0, 0x110);
5428 tg3_rd32_loop(tp, regs, FTQ_RESET, 0x120);
5429 tg3_rd32_loop(tp, regs, MSGINT_MODE, 0x0c);
5430 tg3_rd32_loop(tp, regs, DMAC_MODE, 0x04);
5431 tg3_rd32_loop(tp, regs, GRC_MODE, 0x4c);
5432
63c3a66f 5433 if (tg3_flag(tp, NVRAM))
97bd8e49
MC
5434 tg3_rd32_loop(tp, regs, NVRAM_CMD, 0x24);
5435}
5436
5437static void tg3_dump_state(struct tg3 *tp)
5438{
5439 int i;
5440 u32 *regs;
5441
5442 regs = kzalloc(TG3_REG_BLK_SIZE, GFP_ATOMIC);
5443 if (!regs) {
5444 netdev_err(tp->dev, "Failed allocating register dump buffer\n");
5445 return;
5446 }
5447
63c3a66f 5448 if (tg3_flag(tp, PCI_EXPRESS)) {
97bd8e49
MC
5449 /* Read up to but not including private PCI registers */
5450 for (i = 0; i < TG3_PCIE_TLDLPL_PORT; i += sizeof(u32))
5451 regs[i / sizeof(u32)] = tr32(i);
5452 } else
5453 tg3_dump_legacy_regs(tp, regs);
5454
5455 for (i = 0; i < TG3_REG_BLK_SIZE / sizeof(u32); i += 4) {
5456 if (!regs[i + 0] && !regs[i + 1] &&
5457 !regs[i + 2] && !regs[i + 3])
5458 continue;
5459
5460 netdev_err(tp->dev, "0x%08x: 0x%08x, 0x%08x, 0x%08x, 0x%08x\n",
5461 i * 4,
5462 regs[i + 0], regs[i + 1], regs[i + 2], regs[i + 3]);
5463 }
5464
5465 kfree(regs);
5466
5467 for (i = 0; i < tp->irq_cnt; i++) {
5468 struct tg3_napi *tnapi = &tp->napi[i];
5469
5470 /* SW status block */
5471 netdev_err(tp->dev,
5472 "%d: Host status block [%08x:%08x:(%04x:%04x:%04x):(%04x:%04x)]\n",
5473 i,
5474 tnapi->hw_status->status,
5475 tnapi->hw_status->status_tag,
5476 tnapi->hw_status->rx_jumbo_consumer,
5477 tnapi->hw_status->rx_consumer,
5478 tnapi->hw_status->rx_mini_consumer,
5479 tnapi->hw_status->idx[0].rx_producer,
5480 tnapi->hw_status->idx[0].tx_consumer);
5481
5482 netdev_err(tp->dev,
5483 "%d: NAPI info [%08x:%08x:(%04x:%04x:%04x):%04x:(%04x:%04x:%04x:%04x)]\n",
5484 i,
5485 tnapi->last_tag, tnapi->last_irq_tag,
5486 tnapi->tx_prod, tnapi->tx_cons, tnapi->tx_pending,
5487 tnapi->rx_rcb_ptr,
5488 tnapi->prodring.rx_std_prod_idx,
5489 tnapi->prodring.rx_std_cons_idx,
5490 tnapi->prodring.rx_jmb_prod_idx,
5491 tnapi->prodring.rx_jmb_cons_idx);
5492 }
5493}
5494
df3e6548
MC
5495/* This is called whenever we suspect that the system chipset is re-
5496 * ordering the sequence of MMIO to the tx send mailbox. The symptom
5497 * is bogus tx completions. We try to recover by setting the
5498 * TG3_FLAG_MBOX_WRITE_REORDER flag and resetting the chip later
5499 * in the workqueue.
5500 */
5501static void tg3_tx_recover(struct tg3 *tp)
5502{
63c3a66f 5503 BUG_ON(tg3_flag(tp, MBOX_WRITE_REORDER) ||
df3e6548
MC
5504 tp->write32_tx_mbox == tg3_write_indirect_mbox);
5505
5129c3a3
MC
5506 netdev_warn(tp->dev,
5507 "The system may be re-ordering memory-mapped I/O "
5508 "cycles to the network device, attempting to recover. "
5509 "Please report the problem to the driver maintainer "
5510 "and include system chipset information.\n");
df3e6548
MC
5511
5512 spin_lock(&tp->lock);
63c3a66f 5513 tg3_flag_set(tp, TX_RECOVERY_PENDING);
df3e6548
MC
5514 spin_unlock(&tp->lock);
5515}
5516
f3f3f27e 5517static inline u32 tg3_tx_avail(struct tg3_napi *tnapi)
1b2a7205 5518{
f65aac16
MC
5519 /* Tell compiler to fetch tx indices from memory. */
5520 barrier();
f3f3f27e
MC
5521 return tnapi->tx_pending -
5522 ((tnapi->tx_prod - tnapi->tx_cons) & (TG3_TX_RING_SIZE - 1));
1b2a7205
MC
5523}
5524
1da177e4
LT
5525/* Tigon3 never reports partial packet sends. So we do not
5526 * need special logic to handle SKBs that have not had all
5527 * of their frags sent yet, like SunGEM does.
5528 */
17375d25 5529static void tg3_tx(struct tg3_napi *tnapi)
1da177e4 5530{
17375d25 5531 struct tg3 *tp = tnapi->tp;
898a56f8 5532 u32 hw_idx = tnapi->hw_status->idx[0].tx_consumer;
f3f3f27e 5533 u32 sw_idx = tnapi->tx_cons;
fe5f5787
MC
5534 struct netdev_queue *txq;
5535 int index = tnapi - tp->napi;
298376d3 5536 unsigned int pkts_compl = 0, bytes_compl = 0;
fe5f5787 5537
63c3a66f 5538 if (tg3_flag(tp, ENABLE_TSS))
fe5f5787
MC
5539 index--;
5540
5541 txq = netdev_get_tx_queue(tp->dev, index);
1da177e4
LT
5542
5543 while (sw_idx != hw_idx) {
df8944cf 5544 struct tg3_tx_ring_info *ri = &tnapi->tx_buffers[sw_idx];
1da177e4 5545 struct sk_buff *skb = ri->skb;
df3e6548
MC
5546 int i, tx_bug = 0;
5547
5548 if (unlikely(skb == NULL)) {
5549 tg3_tx_recover(tp);
5550 return;
5551 }
1da177e4 5552
f4188d8a 5553 pci_unmap_single(tp->pdev,
4e5e4f0d 5554 dma_unmap_addr(ri, mapping),
f4188d8a
AD
5555 skb_headlen(skb),
5556 PCI_DMA_TODEVICE);
1da177e4
LT
5557
5558 ri->skb = NULL;
5559
e01ee14d
MC
5560 while (ri->fragmented) {
5561 ri->fragmented = false;
5562 sw_idx = NEXT_TX(sw_idx);
5563 ri = &tnapi->tx_buffers[sw_idx];
5564 }
5565
1da177e4
LT
5566 sw_idx = NEXT_TX(sw_idx);
5567
5568 for (i = 0; i < skb_shinfo(skb)->nr_frags; i++) {
f3f3f27e 5569 ri = &tnapi->tx_buffers[sw_idx];
df3e6548
MC
5570 if (unlikely(ri->skb != NULL || sw_idx == hw_idx))
5571 tx_bug = 1;
f4188d8a
AD
5572
5573 pci_unmap_page(tp->pdev,
4e5e4f0d 5574 dma_unmap_addr(ri, mapping),
9e903e08 5575 skb_frag_size(&skb_shinfo(skb)->frags[i]),
f4188d8a 5576 PCI_DMA_TODEVICE);
e01ee14d
MC
5577
5578 while (ri->fragmented) {
5579 ri->fragmented = false;
5580 sw_idx = NEXT_TX(sw_idx);
5581 ri = &tnapi->tx_buffers[sw_idx];
5582 }
5583
1da177e4
LT
5584 sw_idx = NEXT_TX(sw_idx);
5585 }
5586
298376d3
TH
5587 pkts_compl++;
5588 bytes_compl += skb->len;
5589
f47c11ee 5590 dev_kfree_skb(skb);
df3e6548
MC
5591
5592 if (unlikely(tx_bug)) {
5593 tg3_tx_recover(tp);
5594 return;
5595 }
1da177e4
LT
5596 }
5597
298376d3
TH
5598 netdev_completed_queue(tp->dev, pkts_compl, bytes_compl);
5599
f3f3f27e 5600 tnapi->tx_cons = sw_idx;
1da177e4 5601
1b2a7205
MC
5602 /* Need to make the tx_cons update visible to tg3_start_xmit()
5603 * before checking for netif_queue_stopped(). Without the
5604 * memory barrier, there is a small possibility that tg3_start_xmit()
5605 * will miss it and cause the queue to be stopped forever.
5606 */
5607 smp_mb();
5608
fe5f5787 5609 if (unlikely(netif_tx_queue_stopped(txq) &&
f3f3f27e 5610 (tg3_tx_avail(tnapi) > TG3_TX_WAKEUP_THRESH(tnapi)))) {
fe5f5787
MC
5611 __netif_tx_lock(txq, smp_processor_id());
5612 if (netif_tx_queue_stopped(txq) &&
f3f3f27e 5613 (tg3_tx_avail(tnapi) > TG3_TX_WAKEUP_THRESH(tnapi)))
fe5f5787
MC
5614 netif_tx_wake_queue(txq);
5615 __netif_tx_unlock(txq);
51b91468 5616 }
1da177e4
LT
5617}
5618
9205fd9c 5619static void tg3_rx_data_free(struct tg3 *tp, struct ring_info *ri, u32 map_sz)
2b2cdb65 5620{
9205fd9c 5621 if (!ri->data)
2b2cdb65
MC
5622 return;
5623
4e5e4f0d 5624 pci_unmap_single(tp->pdev, dma_unmap_addr(ri, mapping),
2b2cdb65 5625 map_sz, PCI_DMA_FROMDEVICE);
9205fd9c
ED
5626 kfree(ri->data);
5627 ri->data = NULL;
2b2cdb65
MC
5628}
5629
1da177e4
LT
5630/* Returns size of skb allocated or < 0 on error.
5631 *
5632 * We only need to fill in the address because the other members
5633 * of the RX descriptor are invariant, see tg3_init_rings.
5634 *
5635 * Note the purposeful assymetry of cpu vs. chip accesses. For
5636 * posting buffers we only dirty the first cache line of the RX
5637 * descriptor (containing the address). Whereas for the RX status
5638 * buffers the cpu only reads the last cacheline of the RX descriptor
5639 * (to fetch the error flags, vlan tag, checksum, and opaque cookie).
5640 */
9205fd9c 5641static int tg3_alloc_rx_data(struct tg3 *tp, struct tg3_rx_prodring_set *tpr,
a3896167 5642 u32 opaque_key, u32 dest_idx_unmasked)
1da177e4
LT
5643{
5644 struct tg3_rx_buffer_desc *desc;
f94e290e 5645 struct ring_info *map;
9205fd9c 5646 u8 *data;
1da177e4 5647 dma_addr_t mapping;
9205fd9c 5648 int skb_size, data_size, dest_idx;
1da177e4 5649
1da177e4
LT
5650 switch (opaque_key) {
5651 case RXD_OPAQUE_RING_STD:
2c49a44d 5652 dest_idx = dest_idx_unmasked & tp->rx_std_ring_mask;
21f581a5
MC
5653 desc = &tpr->rx_std[dest_idx];
5654 map = &tpr->rx_std_buffers[dest_idx];
9205fd9c 5655 data_size = tp->rx_pkt_map_sz;
1da177e4
LT
5656 break;
5657
5658 case RXD_OPAQUE_RING_JUMBO:
2c49a44d 5659 dest_idx = dest_idx_unmasked & tp->rx_jmb_ring_mask;
79ed5ac7 5660 desc = &tpr->rx_jmb[dest_idx].std;
21f581a5 5661 map = &tpr->rx_jmb_buffers[dest_idx];
9205fd9c 5662 data_size = TG3_RX_JMB_MAP_SZ;
1da177e4
LT
5663 break;
5664
5665 default:
5666 return -EINVAL;
855e1111 5667 }
1da177e4
LT
5668
5669 /* Do not overwrite any of the map or rp information
5670 * until we are sure we can commit to a new buffer.
5671 *
5672 * Callers depend upon this behavior and assume that
5673 * we leave everything unchanged if we fail.
5674 */
9205fd9c
ED
5675 skb_size = SKB_DATA_ALIGN(data_size + TG3_RX_OFFSET(tp)) +
5676 SKB_DATA_ALIGN(sizeof(struct skb_shared_info));
5677 data = kmalloc(skb_size, GFP_ATOMIC);
5678 if (!data)
1da177e4
LT
5679 return -ENOMEM;
5680
9205fd9c
ED
5681 mapping = pci_map_single(tp->pdev,
5682 data + TG3_RX_OFFSET(tp),
5683 data_size,
1da177e4 5684 PCI_DMA_FROMDEVICE);
a21771dd 5685 if (pci_dma_mapping_error(tp->pdev, mapping)) {
9205fd9c 5686 kfree(data);
a21771dd
MC
5687 return -EIO;
5688 }
1da177e4 5689
9205fd9c 5690 map->data = data;
4e5e4f0d 5691 dma_unmap_addr_set(map, mapping, mapping);
1da177e4 5692
1da177e4
LT
5693 desc->addr_hi = ((u64)mapping >> 32);
5694 desc->addr_lo = ((u64)mapping & 0xffffffff);
5695
9205fd9c 5696 return data_size;
1da177e4
LT
5697}
5698
5699/* We only need to move over in the address because the other
5700 * members of the RX descriptor are invariant. See notes above
9205fd9c 5701 * tg3_alloc_rx_data for full details.
1da177e4 5702 */
a3896167
MC
5703static void tg3_recycle_rx(struct tg3_napi *tnapi,
5704 struct tg3_rx_prodring_set *dpr,
5705 u32 opaque_key, int src_idx,
5706 u32 dest_idx_unmasked)
1da177e4 5707{
17375d25 5708 struct tg3 *tp = tnapi->tp;
1da177e4
LT
5709 struct tg3_rx_buffer_desc *src_desc, *dest_desc;
5710 struct ring_info *src_map, *dest_map;
8fea32b9 5711 struct tg3_rx_prodring_set *spr = &tp->napi[0].prodring;
c6cdf436 5712 int dest_idx;
1da177e4
LT
5713
5714 switch (opaque_key) {
5715 case RXD_OPAQUE_RING_STD:
2c49a44d 5716 dest_idx = dest_idx_unmasked & tp->rx_std_ring_mask;
a3896167
MC
5717 dest_desc = &dpr->rx_std[dest_idx];
5718 dest_map = &dpr->rx_std_buffers[dest_idx];
5719 src_desc = &spr->rx_std[src_idx];
5720 src_map = &spr->rx_std_buffers[src_idx];
1da177e4
LT
5721 break;
5722
5723 case RXD_OPAQUE_RING_JUMBO:
2c49a44d 5724 dest_idx = dest_idx_unmasked & tp->rx_jmb_ring_mask;
a3896167
MC
5725 dest_desc = &dpr->rx_jmb[dest_idx].std;
5726 dest_map = &dpr->rx_jmb_buffers[dest_idx];
5727 src_desc = &spr->rx_jmb[src_idx].std;
5728 src_map = &spr->rx_jmb_buffers[src_idx];
1da177e4
LT
5729 break;
5730
5731 default:
5732 return;
855e1111 5733 }
1da177e4 5734
9205fd9c 5735 dest_map->data = src_map->data;
4e5e4f0d
FT
5736 dma_unmap_addr_set(dest_map, mapping,
5737 dma_unmap_addr(src_map, mapping));
1da177e4
LT
5738 dest_desc->addr_hi = src_desc->addr_hi;
5739 dest_desc->addr_lo = src_desc->addr_lo;
e92967bf
MC
5740
5741 /* Ensure that the update to the skb happens after the physical
5742 * addresses have been transferred to the new BD location.
5743 */
5744 smp_wmb();
5745
9205fd9c 5746 src_map->data = NULL;
1da177e4
LT
5747}
5748
1da177e4
LT
5749/* The RX ring scheme is composed of multiple rings which post fresh
5750 * buffers to the chip, and one special ring the chip uses to report
5751 * status back to the host.
5752 *
5753 * The special ring reports the status of received packets to the
5754 * host. The chip does not write into the original descriptor the
5755 * RX buffer was obtained from. The chip simply takes the original
5756 * descriptor as provided by the host, updates the status and length
5757 * field, then writes this into the next status ring entry.
5758 *
5759 * Each ring the host uses to post buffers to the chip is described
5760 * by a TG3_BDINFO entry in the chips SRAM area. When a packet arrives,
5761 * it is first placed into the on-chip ram. When the packet's length
5762 * is known, it walks down the TG3_BDINFO entries to select the ring.
5763 * Each TG3_BDINFO specifies a MAXLEN field and the first TG3_BDINFO
5764 * which is within the range of the new packet's length is chosen.
5765 *
5766 * The "separate ring for rx status" scheme may sound queer, but it makes
5767 * sense from a cache coherency perspective. If only the host writes
5768 * to the buffer post rings, and only the chip writes to the rx status
5769 * rings, then cache lines never move beyond shared-modified state.
5770 * If both the host and chip were to write into the same ring, cache line
5771 * eviction could occur since both entities want it in an exclusive state.
5772 */
17375d25 5773static int tg3_rx(struct tg3_napi *tnapi, int budget)
1da177e4 5774{
17375d25 5775 struct tg3 *tp = tnapi->tp;
f92905de 5776 u32 work_mask, rx_std_posted = 0;
4361935a 5777 u32 std_prod_idx, jmb_prod_idx;
72334482 5778 u32 sw_idx = tnapi->rx_rcb_ptr;
483ba50b 5779 u16 hw_idx;
1da177e4 5780 int received;
8fea32b9 5781 struct tg3_rx_prodring_set *tpr = &tnapi->prodring;
1da177e4 5782
8d9d7cfc 5783 hw_idx = *(tnapi->rx_rcb_prod_idx);
1da177e4
LT
5784 /*
5785 * We need to order the read of hw_idx and the read of
5786 * the opaque cookie.
5787 */
5788 rmb();
1da177e4
LT
5789 work_mask = 0;
5790 received = 0;
4361935a
MC
5791 std_prod_idx = tpr->rx_std_prod_idx;
5792 jmb_prod_idx = tpr->rx_jmb_prod_idx;
1da177e4 5793 while (sw_idx != hw_idx && budget > 0) {
afc081f8 5794 struct ring_info *ri;
72334482 5795 struct tg3_rx_buffer_desc *desc = &tnapi->rx_rcb[sw_idx];
1da177e4
LT
5796 unsigned int len;
5797 struct sk_buff *skb;
5798 dma_addr_t dma_addr;
5799 u32 opaque_key, desc_idx, *post_ptr;
9205fd9c 5800 u8 *data;
1da177e4
LT
5801
5802 desc_idx = desc->opaque & RXD_OPAQUE_INDEX_MASK;
5803 opaque_key = desc->opaque & RXD_OPAQUE_RING_MASK;
5804 if (opaque_key == RXD_OPAQUE_RING_STD) {
8fea32b9 5805 ri = &tp->napi[0].prodring.rx_std_buffers[desc_idx];
4e5e4f0d 5806 dma_addr = dma_unmap_addr(ri, mapping);
9205fd9c 5807 data = ri->data;
4361935a 5808 post_ptr = &std_prod_idx;
f92905de 5809 rx_std_posted++;
1da177e4 5810 } else if (opaque_key == RXD_OPAQUE_RING_JUMBO) {
8fea32b9 5811 ri = &tp->napi[0].prodring.rx_jmb_buffers[desc_idx];
4e5e4f0d 5812 dma_addr = dma_unmap_addr(ri, mapping);
9205fd9c 5813 data = ri->data;
4361935a 5814 post_ptr = &jmb_prod_idx;
21f581a5 5815 } else
1da177e4 5816 goto next_pkt_nopost;
1da177e4
LT
5817
5818 work_mask |= opaque_key;
5819
5820 if ((desc->err_vlan & RXD_ERR_MASK) != 0 &&
5821 (desc->err_vlan != RXD_ERR_ODD_NIBBLE_RCVD_MII)) {
5822 drop_it:
a3896167 5823 tg3_recycle_rx(tnapi, tpr, opaque_key,
1da177e4
LT
5824 desc_idx, *post_ptr);
5825 drop_it_no_recycle:
5826 /* Other statistics kept track of by card. */
b0057c51 5827 tp->rx_dropped++;
1da177e4
LT
5828 goto next_pkt;
5829 }
5830
9205fd9c 5831 prefetch(data + TG3_RX_OFFSET(tp));
ad829268
MC
5832 len = ((desc->idx_len & RXD_LEN_MASK) >> RXD_LEN_SHIFT) -
5833 ETH_FCS_LEN;
1da177e4 5834
d2757fc4 5835 if (len > TG3_RX_COPY_THRESH(tp)) {
1da177e4
LT
5836 int skb_size;
5837
9205fd9c 5838 skb_size = tg3_alloc_rx_data(tp, tpr, opaque_key,
afc081f8 5839 *post_ptr);
1da177e4
LT
5840 if (skb_size < 0)
5841 goto drop_it;
5842
287be12e 5843 pci_unmap_single(tp->pdev, dma_addr, skb_size,
1da177e4
LT
5844 PCI_DMA_FROMDEVICE);
5845
9205fd9c
ED
5846 skb = build_skb(data);
5847 if (!skb) {
5848 kfree(data);
5849 goto drop_it_no_recycle;
5850 }
5851 skb_reserve(skb, TG3_RX_OFFSET(tp));
5852 /* Ensure that the update to the data happens
61e800cf
MC
5853 * after the usage of the old DMA mapping.
5854 */
5855 smp_wmb();
5856
9205fd9c 5857 ri->data = NULL;
61e800cf 5858
1da177e4 5859 } else {
a3896167 5860 tg3_recycle_rx(tnapi, tpr, opaque_key,
1da177e4
LT
5861 desc_idx, *post_ptr);
5862
9205fd9c
ED
5863 skb = netdev_alloc_skb(tp->dev,
5864 len + TG3_RAW_IP_ALIGN);
5865 if (skb == NULL)
1da177e4
LT
5866 goto drop_it_no_recycle;
5867
9205fd9c 5868 skb_reserve(skb, TG3_RAW_IP_ALIGN);
1da177e4 5869 pci_dma_sync_single_for_cpu(tp->pdev, dma_addr, len, PCI_DMA_FROMDEVICE);
9205fd9c
ED
5870 memcpy(skb->data,
5871 data + TG3_RX_OFFSET(tp),
5872 len);
1da177e4 5873 pci_dma_sync_single_for_device(tp->pdev, dma_addr, len, PCI_DMA_FROMDEVICE);
1da177e4
LT
5874 }
5875
9205fd9c 5876 skb_put(skb, len);
dc668910 5877 if ((tp->dev->features & NETIF_F_RXCSUM) &&
1da177e4
LT
5878 (desc->type_flags & RXD_FLAG_TCPUDP_CSUM) &&
5879 (((desc->ip_tcp_csum & RXD_TCPCSUM_MASK)
5880 >> RXD_TCPCSUM_SHIFT) == 0xffff))
5881 skb->ip_summed = CHECKSUM_UNNECESSARY;
5882 else
bc8acf2c 5883 skb_checksum_none_assert(skb);
1da177e4
LT
5884
5885 skb->protocol = eth_type_trans(skb, tp->dev);
f7b493e0
MC
5886
5887 if (len > (tp->dev->mtu + ETH_HLEN) &&
5888 skb->protocol != htons(ETH_P_8021Q)) {
5889 dev_kfree_skb(skb);
b0057c51 5890 goto drop_it_no_recycle;
f7b493e0
MC
5891 }
5892
9dc7a113 5893 if (desc->type_flags & RXD_FLAG_VLAN &&
bf933c80
MC
5894 !(tp->rx_mode & RX_MODE_KEEP_VLAN_TAG))
5895 __vlan_hwaccel_put_tag(skb,
5896 desc->err_vlan & RXD_VLAN_MASK);
9dc7a113 5897
bf933c80 5898 napi_gro_receive(&tnapi->napi, skb);
1da177e4 5899
1da177e4
LT
5900 received++;
5901 budget--;
5902
5903next_pkt:
5904 (*post_ptr)++;
f92905de
MC
5905
5906 if (unlikely(rx_std_posted >= tp->rx_std_max_post)) {
2c49a44d
MC
5907 tpr->rx_std_prod_idx = std_prod_idx &
5908 tp->rx_std_ring_mask;
86cfe4ff
MC
5909 tw32_rx_mbox(TG3_RX_STD_PROD_IDX_REG,
5910 tpr->rx_std_prod_idx);
f92905de
MC
5911 work_mask &= ~RXD_OPAQUE_RING_STD;
5912 rx_std_posted = 0;
5913 }
1da177e4 5914next_pkt_nopost:
483ba50b 5915 sw_idx++;
7cb32cf2 5916 sw_idx &= tp->rx_ret_ring_mask;
52f6d697
MC
5917
5918 /* Refresh hw_idx to see if there is new work */
5919 if (sw_idx == hw_idx) {
8d9d7cfc 5920 hw_idx = *(tnapi->rx_rcb_prod_idx);
52f6d697
MC
5921 rmb();
5922 }
1da177e4
LT
5923 }
5924
5925 /* ACK the status ring. */
72334482
MC
5926 tnapi->rx_rcb_ptr = sw_idx;
5927 tw32_rx_mbox(tnapi->consmbox, sw_idx);
1da177e4
LT
5928
5929 /* Refill RX ring(s). */
63c3a66f 5930 if (!tg3_flag(tp, ENABLE_RSS)) {
b196c7e4 5931 if (work_mask & RXD_OPAQUE_RING_STD) {
2c49a44d
MC
5932 tpr->rx_std_prod_idx = std_prod_idx &
5933 tp->rx_std_ring_mask;
b196c7e4
MC
5934 tw32_rx_mbox(TG3_RX_STD_PROD_IDX_REG,
5935 tpr->rx_std_prod_idx);
5936 }
5937 if (work_mask & RXD_OPAQUE_RING_JUMBO) {
2c49a44d
MC
5938 tpr->rx_jmb_prod_idx = jmb_prod_idx &
5939 tp->rx_jmb_ring_mask;
b196c7e4
MC
5940 tw32_rx_mbox(TG3_RX_JMB_PROD_IDX_REG,
5941 tpr->rx_jmb_prod_idx);
5942 }
5943 mmiowb();
5944 } else if (work_mask) {
5945 /* rx_std_buffers[] and rx_jmb_buffers[] entries must be
5946 * updated before the producer indices can be updated.
5947 */
5948 smp_wmb();
5949
2c49a44d
MC
5950 tpr->rx_std_prod_idx = std_prod_idx & tp->rx_std_ring_mask;
5951 tpr->rx_jmb_prod_idx = jmb_prod_idx & tp->rx_jmb_ring_mask;
b196c7e4 5952
e4af1af9
MC
5953 if (tnapi != &tp->napi[1])
5954 napi_schedule(&tp->napi[1].napi);
1da177e4 5955 }
1da177e4
LT
5956
5957 return received;
5958}
5959
35f2d7d0 5960static void tg3_poll_link(struct tg3 *tp)
1da177e4 5961{
1da177e4 5962 /* handle link change and other phy events */
63c3a66f 5963 if (!(tg3_flag(tp, USE_LINKCHG_REG) || tg3_flag(tp, POLL_SERDES))) {
35f2d7d0
MC
5964 struct tg3_hw_status *sblk = tp->napi[0].hw_status;
5965
1da177e4
LT
5966 if (sblk->status & SD_STATUS_LINK_CHG) {
5967 sblk->status = SD_STATUS_UPDATED |
35f2d7d0 5968 (sblk->status & ~SD_STATUS_LINK_CHG);
f47c11ee 5969 spin_lock(&tp->lock);
63c3a66f 5970 if (tg3_flag(tp, USE_PHYLIB)) {
dd477003
MC
5971 tw32_f(MAC_STATUS,
5972 (MAC_STATUS_SYNC_CHANGED |
5973 MAC_STATUS_CFG_CHANGED |
5974 MAC_STATUS_MI_COMPLETION |
5975 MAC_STATUS_LNKSTATE_CHANGED));
5976 udelay(40);
5977 } else
5978 tg3_setup_phy(tp, 0);
f47c11ee 5979 spin_unlock(&tp->lock);
1da177e4
LT
5980 }
5981 }
35f2d7d0
MC
5982}
5983
f89f38b8
MC
5984static int tg3_rx_prodring_xfer(struct tg3 *tp,
5985 struct tg3_rx_prodring_set *dpr,
5986 struct tg3_rx_prodring_set *spr)
b196c7e4
MC
5987{
5988 u32 si, di, cpycnt, src_prod_idx;
f89f38b8 5989 int i, err = 0;
b196c7e4
MC
5990
5991 while (1) {
5992 src_prod_idx = spr->rx_std_prod_idx;
5993
5994 /* Make sure updates to the rx_std_buffers[] entries and the
5995 * standard producer index are seen in the correct order.
5996 */
5997 smp_rmb();
5998
5999 if (spr->rx_std_cons_idx == src_prod_idx)
6000 break;
6001
6002 if (spr->rx_std_cons_idx < src_prod_idx)
6003 cpycnt = src_prod_idx - spr->rx_std_cons_idx;
6004 else
2c49a44d
MC
6005 cpycnt = tp->rx_std_ring_mask + 1 -
6006 spr->rx_std_cons_idx;
b196c7e4 6007
2c49a44d
MC
6008 cpycnt = min(cpycnt,
6009 tp->rx_std_ring_mask + 1 - dpr->rx_std_prod_idx);
b196c7e4
MC
6010
6011 si = spr->rx_std_cons_idx;
6012 di = dpr->rx_std_prod_idx;
6013
e92967bf 6014 for (i = di; i < di + cpycnt; i++) {
9205fd9c 6015 if (dpr->rx_std_buffers[i].data) {
e92967bf 6016 cpycnt = i - di;
f89f38b8 6017 err = -ENOSPC;
e92967bf
MC
6018 break;
6019 }
6020 }
6021
6022 if (!cpycnt)
6023 break;
6024
6025 /* Ensure that updates to the rx_std_buffers ring and the
6026 * shadowed hardware producer ring from tg3_recycle_skb() are
6027 * ordered correctly WRT the skb check above.
6028 */
6029 smp_rmb();
6030
b196c7e4
MC
6031 memcpy(&dpr->rx_std_buffers[di],
6032 &spr->rx_std_buffers[si],
6033 cpycnt * sizeof(struct ring_info));
6034
6035 for (i = 0; i < cpycnt; i++, di++, si++) {
6036 struct tg3_rx_buffer_desc *sbd, *dbd;
6037 sbd = &spr->rx_std[si];
6038 dbd = &dpr->rx_std[di];
6039 dbd->addr_hi = sbd->addr_hi;
6040 dbd->addr_lo = sbd->addr_lo;
6041 }
6042
2c49a44d
MC
6043 spr->rx_std_cons_idx = (spr->rx_std_cons_idx + cpycnt) &
6044 tp->rx_std_ring_mask;
6045 dpr->rx_std_prod_idx = (dpr->rx_std_prod_idx + cpycnt) &
6046 tp->rx_std_ring_mask;
b196c7e4
MC
6047 }
6048
6049 while (1) {
6050 src_prod_idx = spr->rx_jmb_prod_idx;
6051
6052 /* Make sure updates to the rx_jmb_buffers[] entries and
6053 * the jumbo producer index are seen in the correct order.
6054 */
6055 smp_rmb();
6056
6057 if (spr->rx_jmb_cons_idx == src_prod_idx)
6058 break;
6059
6060 if (spr->rx_jmb_cons_idx < src_prod_idx)
6061 cpycnt = src_prod_idx - spr->rx_jmb_cons_idx;
6062 else
2c49a44d
MC
6063 cpycnt = tp->rx_jmb_ring_mask + 1 -
6064 spr->rx_jmb_cons_idx;
b196c7e4
MC
6065
6066 cpycnt = min(cpycnt,
2c49a44d 6067 tp->rx_jmb_ring_mask + 1 - dpr->rx_jmb_prod_idx);
b196c7e4
MC
6068
6069 si = spr->rx_jmb_cons_idx;
6070 di = dpr->rx_jmb_prod_idx;
6071
e92967bf 6072 for (i = di; i < di + cpycnt; i++) {
9205fd9c 6073 if (dpr->rx_jmb_buffers[i].data) {
e92967bf 6074 cpycnt = i - di;
f89f38b8 6075 err = -ENOSPC;
e92967bf
MC
6076 break;
6077 }
6078 }
6079
6080 if (!cpycnt)
6081 break;
6082
6083 /* Ensure that updates to the rx_jmb_buffers ring and the
6084 * shadowed hardware producer ring from tg3_recycle_skb() are
6085 * ordered correctly WRT the skb check above.
6086 */
6087 smp_rmb();
6088
b196c7e4
MC
6089 memcpy(&dpr->rx_jmb_buffers[di],
6090 &spr->rx_jmb_buffers[si],
6091 cpycnt * sizeof(struct ring_info));
6092
6093 for (i = 0; i < cpycnt; i++, di++, si++) {
6094 struct tg3_rx_buffer_desc *sbd, *dbd;
6095 sbd = &spr->rx_jmb[si].std;
6096 dbd = &dpr->rx_jmb[di].std;
6097 dbd->addr_hi = sbd->addr_hi;
6098 dbd->addr_lo = sbd->addr_lo;
6099 }
6100
2c49a44d
MC
6101 spr->rx_jmb_cons_idx = (spr->rx_jmb_cons_idx + cpycnt) &
6102 tp->rx_jmb_ring_mask;
6103 dpr->rx_jmb_prod_idx = (dpr->rx_jmb_prod_idx + cpycnt) &
6104 tp->rx_jmb_ring_mask;
b196c7e4 6105 }
f89f38b8
MC
6106
6107 return err;
b196c7e4
MC
6108}
6109
35f2d7d0
MC
6110static int tg3_poll_work(struct tg3_napi *tnapi, int work_done, int budget)
6111{
6112 struct tg3 *tp = tnapi->tp;
1da177e4
LT
6113
6114 /* run TX completion thread */
f3f3f27e 6115 if (tnapi->hw_status->idx[0].tx_consumer != tnapi->tx_cons) {
17375d25 6116 tg3_tx(tnapi);
63c3a66f 6117 if (unlikely(tg3_flag(tp, TX_RECOVERY_PENDING)))
4fd7ab59 6118 return work_done;
1da177e4
LT
6119 }
6120
1da177e4
LT
6121 /* run RX thread, within the bounds set by NAPI.
6122 * All RX "locking" is done by ensuring outside
bea3348e 6123 * code synchronizes with tg3->napi.poll()
1da177e4 6124 */
8d9d7cfc 6125 if (*(tnapi->rx_rcb_prod_idx) != tnapi->rx_rcb_ptr)
17375d25 6126 work_done += tg3_rx(tnapi, budget - work_done);
1da177e4 6127
63c3a66f 6128 if (tg3_flag(tp, ENABLE_RSS) && tnapi == &tp->napi[1]) {
8fea32b9 6129 struct tg3_rx_prodring_set *dpr = &tp->napi[0].prodring;
f89f38b8 6130 int i, err = 0;
e4af1af9
MC
6131 u32 std_prod_idx = dpr->rx_std_prod_idx;
6132 u32 jmb_prod_idx = dpr->rx_jmb_prod_idx;
b196c7e4 6133
e4af1af9 6134 for (i = 1; i < tp->irq_cnt; i++)
f89f38b8 6135 err |= tg3_rx_prodring_xfer(tp, dpr,
8fea32b9 6136 &tp->napi[i].prodring);
b196c7e4
MC
6137
6138 wmb();
6139
e4af1af9
MC
6140 if (std_prod_idx != dpr->rx_std_prod_idx)
6141 tw32_rx_mbox(TG3_RX_STD_PROD_IDX_REG,
6142 dpr->rx_std_prod_idx);
b196c7e4 6143
e4af1af9
MC
6144 if (jmb_prod_idx != dpr->rx_jmb_prod_idx)
6145 tw32_rx_mbox(TG3_RX_JMB_PROD_IDX_REG,
6146 dpr->rx_jmb_prod_idx);
b196c7e4
MC
6147
6148 mmiowb();
f89f38b8
MC
6149
6150 if (err)
6151 tw32_f(HOSTCC_MODE, tp->coal_now);
b196c7e4
MC
6152 }
6153
6f535763
DM
6154 return work_done;
6155}
6156
db219973
MC
6157static inline void tg3_reset_task_schedule(struct tg3 *tp)
6158{
6159 if (!test_and_set_bit(TG3_FLAG_RESET_TASK_PENDING, tp->tg3_flags))
6160 schedule_work(&tp->reset_task);
6161}
6162
6163static inline void tg3_reset_task_cancel(struct tg3 *tp)
6164{
6165 cancel_work_sync(&tp->reset_task);
6166 tg3_flag_clear(tp, RESET_TASK_PENDING);
c7101359 6167 tg3_flag_clear(tp, TX_RECOVERY_PENDING);
db219973
MC
6168}
6169
35f2d7d0
MC
6170static int tg3_poll_msix(struct napi_struct *napi, int budget)
6171{
6172 struct tg3_napi *tnapi = container_of(napi, struct tg3_napi, napi);
6173 struct tg3 *tp = tnapi->tp;
6174 int work_done = 0;
6175 struct tg3_hw_status *sblk = tnapi->hw_status;
6176
6177 while (1) {
6178 work_done = tg3_poll_work(tnapi, work_done, budget);
6179
63c3a66f 6180 if (unlikely(tg3_flag(tp, TX_RECOVERY_PENDING)))
35f2d7d0
MC
6181 goto tx_recovery;
6182
6183 if (unlikely(work_done >= budget))
6184 break;
6185
c6cdf436 6186 /* tp->last_tag is used in tg3_int_reenable() below
35f2d7d0
MC
6187 * to tell the hw how much work has been processed,
6188 * so we must read it before checking for more work.
6189 */
6190 tnapi->last_tag = sblk->status_tag;
6191 tnapi->last_irq_tag = tnapi->last_tag;
6192 rmb();
6193
6194 /* check for RX/TX work to do */
6d40db7b
MC
6195 if (likely(sblk->idx[0].tx_consumer == tnapi->tx_cons &&
6196 *(tnapi->rx_rcb_prod_idx) == tnapi->rx_rcb_ptr)) {
35f2d7d0
MC
6197 napi_complete(napi);
6198 /* Reenable interrupts. */
6199 tw32_mailbox(tnapi->int_mbox, tnapi->last_tag << 24);
6200 mmiowb();
6201 break;
6202 }
6203 }
6204
6205 return work_done;
6206
6207tx_recovery:
6208 /* work_done is guaranteed to be less than budget. */
6209 napi_complete(napi);
db219973 6210 tg3_reset_task_schedule(tp);
35f2d7d0
MC
6211 return work_done;
6212}
6213
e64de4e6
MC
6214static void tg3_process_error(struct tg3 *tp)
6215{
6216 u32 val;
6217 bool real_error = false;
6218
63c3a66f 6219 if (tg3_flag(tp, ERROR_PROCESSED))
e64de4e6
MC
6220 return;
6221
6222 /* Check Flow Attention register */
6223 val = tr32(HOSTCC_FLOW_ATTN);
6224 if (val & ~HOSTCC_FLOW_ATTN_MBUF_LWM) {
6225 netdev_err(tp->dev, "FLOW Attention error. Resetting chip.\n");
6226 real_error = true;
6227 }
6228
6229 if (tr32(MSGINT_STATUS) & ~MSGINT_STATUS_MSI_REQ) {
6230 netdev_err(tp->dev, "MSI Status error. Resetting chip.\n");
6231 real_error = true;
6232 }
6233
6234 if (tr32(RDMAC_STATUS) || tr32(WDMAC_STATUS)) {
6235 netdev_err(tp->dev, "DMA Status error. Resetting chip.\n");
6236 real_error = true;
6237 }
6238
6239 if (!real_error)
6240 return;
6241
6242 tg3_dump_state(tp);
6243
63c3a66f 6244 tg3_flag_set(tp, ERROR_PROCESSED);
db219973 6245 tg3_reset_task_schedule(tp);
e64de4e6
MC
6246}
6247
6f535763
DM
6248static int tg3_poll(struct napi_struct *napi, int budget)
6249{
8ef0442f
MC
6250 struct tg3_napi *tnapi = container_of(napi, struct tg3_napi, napi);
6251 struct tg3 *tp = tnapi->tp;
6f535763 6252 int work_done = 0;
898a56f8 6253 struct tg3_hw_status *sblk = tnapi->hw_status;
6f535763
DM
6254
6255 while (1) {
e64de4e6
MC
6256 if (sblk->status & SD_STATUS_ERROR)
6257 tg3_process_error(tp);
6258
35f2d7d0
MC
6259 tg3_poll_link(tp);
6260
17375d25 6261 work_done = tg3_poll_work(tnapi, work_done, budget);
6f535763 6262
63c3a66f 6263 if (unlikely(tg3_flag(tp, TX_RECOVERY_PENDING)))
6f535763
DM
6264 goto tx_recovery;
6265
6266 if (unlikely(work_done >= budget))
6267 break;
6268
63c3a66f 6269 if (tg3_flag(tp, TAGGED_STATUS)) {
17375d25 6270 /* tp->last_tag is used in tg3_int_reenable() below
4fd7ab59
MC
6271 * to tell the hw how much work has been processed,
6272 * so we must read it before checking for more work.
6273 */
898a56f8
MC
6274 tnapi->last_tag = sblk->status_tag;
6275 tnapi->last_irq_tag = tnapi->last_tag;
4fd7ab59
MC
6276 rmb();
6277 } else
6278 sblk->status &= ~SD_STATUS_UPDATED;
6f535763 6279
17375d25 6280 if (likely(!tg3_has_work(tnapi))) {
288379f0 6281 napi_complete(napi);
17375d25 6282 tg3_int_reenable(tnapi);
6f535763
DM
6283 break;
6284 }
1da177e4
LT
6285 }
6286
bea3348e 6287 return work_done;
6f535763
DM
6288
6289tx_recovery:
4fd7ab59 6290 /* work_done is guaranteed to be less than budget. */
288379f0 6291 napi_complete(napi);
db219973 6292 tg3_reset_task_schedule(tp);
4fd7ab59 6293 return work_done;
1da177e4
LT
6294}
6295
66cfd1bd
MC
6296static void tg3_napi_disable(struct tg3 *tp)
6297{
6298 int i;
6299
6300 for (i = tp->irq_cnt - 1; i >= 0; i--)
6301 napi_disable(&tp->napi[i].napi);
6302}
6303
6304static void tg3_napi_enable(struct tg3 *tp)
6305{
6306 int i;
6307
6308 for (i = 0; i < tp->irq_cnt; i++)
6309 napi_enable(&tp->napi[i].napi);
6310}
6311
6312static void tg3_napi_init(struct tg3 *tp)
6313{
6314 int i;
6315
6316 netif_napi_add(tp->dev, &tp->napi[0].napi, tg3_poll, 64);
6317 for (i = 1; i < tp->irq_cnt; i++)
6318 netif_napi_add(tp->dev, &tp->napi[i].napi, tg3_poll_msix, 64);
6319}
6320
6321static void tg3_napi_fini(struct tg3 *tp)
6322{
6323 int i;
6324
6325 for (i = 0; i < tp->irq_cnt; i++)
6326 netif_napi_del(&tp->napi[i].napi);
6327}
6328
6329static inline void tg3_netif_stop(struct tg3 *tp)
6330{
6331 tp->dev->trans_start = jiffies; /* prevent tx timeout */
6332 tg3_napi_disable(tp);
6333 netif_tx_disable(tp->dev);
6334}
6335
6336static inline void tg3_netif_start(struct tg3 *tp)
6337{
6338 /* NOTE: unconditional netif_tx_wake_all_queues is only
6339 * appropriate so long as all callers are assured to
6340 * have free tx slots (such as after tg3_init_hw)
6341 */
6342 netif_tx_wake_all_queues(tp->dev);
6343
6344 tg3_napi_enable(tp);
6345 tp->napi[0].hw_status->status |= SD_STATUS_UPDATED;
6346 tg3_enable_ints(tp);
6347}
6348
f47c11ee
DM
6349static void tg3_irq_quiesce(struct tg3 *tp)
6350{
4f125f42
MC
6351 int i;
6352
f47c11ee
DM
6353 BUG_ON(tp->irq_sync);
6354
6355 tp->irq_sync = 1;
6356 smp_mb();
6357
4f125f42
MC
6358 for (i = 0; i < tp->irq_cnt; i++)
6359 synchronize_irq(tp->napi[i].irq_vec);
f47c11ee
DM
6360}
6361
f47c11ee
DM
6362/* Fully shutdown all tg3 driver activity elsewhere in the system.
6363 * If irq_sync is non-zero, then the IRQ handler must be synchronized
6364 * with as well. Most of the time, this is not necessary except when
6365 * shutting down the device.
6366 */
6367static inline void tg3_full_lock(struct tg3 *tp, int irq_sync)
6368{
46966545 6369 spin_lock_bh(&tp->lock);
f47c11ee
DM
6370 if (irq_sync)
6371 tg3_irq_quiesce(tp);
f47c11ee
DM
6372}
6373
6374static inline void tg3_full_unlock(struct tg3 *tp)
6375{
f47c11ee
DM
6376 spin_unlock_bh(&tp->lock);
6377}
6378
fcfa0a32
MC
6379/* One-shot MSI handler - Chip automatically disables interrupt
6380 * after sending MSI so driver doesn't have to do it.
6381 */
7d12e780 6382static irqreturn_t tg3_msi_1shot(int irq, void *dev_id)
fcfa0a32 6383{
09943a18
MC
6384 struct tg3_napi *tnapi = dev_id;
6385 struct tg3 *tp = tnapi->tp;
fcfa0a32 6386
898a56f8 6387 prefetch(tnapi->hw_status);
0c1d0e2b
MC
6388 if (tnapi->rx_rcb)
6389 prefetch(&tnapi->rx_rcb[tnapi->rx_rcb_ptr]);
fcfa0a32
MC
6390
6391 if (likely(!tg3_irq_sync(tp)))
09943a18 6392 napi_schedule(&tnapi->napi);
fcfa0a32
MC
6393
6394 return IRQ_HANDLED;
6395}
6396
88b06bc2
MC
6397/* MSI ISR - No need to check for interrupt sharing and no need to
6398 * flush status block and interrupt mailbox. PCI ordering rules
6399 * guarantee that MSI will arrive after the status block.
6400 */
7d12e780 6401static irqreturn_t tg3_msi(int irq, void *dev_id)
88b06bc2 6402{
09943a18
MC
6403 struct tg3_napi *tnapi = dev_id;
6404 struct tg3 *tp = tnapi->tp;
88b06bc2 6405
898a56f8 6406 prefetch(tnapi->hw_status);
0c1d0e2b
MC
6407 if (tnapi->rx_rcb)
6408 prefetch(&tnapi->rx_rcb[tnapi->rx_rcb_ptr]);
88b06bc2 6409 /*
fac9b83e 6410 * Writing any value to intr-mbox-0 clears PCI INTA# and
88b06bc2 6411 * chip-internal interrupt pending events.
fac9b83e 6412 * Writing non-zero to intr-mbox-0 additional tells the
88b06bc2
MC
6413 * NIC to stop sending us irqs, engaging "in-intr-handler"
6414 * event coalescing.
6415 */
5b39de91 6416 tw32_mailbox(tnapi->int_mbox, 0x00000001);
61487480 6417 if (likely(!tg3_irq_sync(tp)))
09943a18 6418 napi_schedule(&tnapi->napi);
61487480 6419
88b06bc2
MC
6420 return IRQ_RETVAL(1);
6421}
6422
7d12e780 6423static irqreturn_t tg3_interrupt(int irq, void *dev_id)
1da177e4 6424{
09943a18
MC
6425 struct tg3_napi *tnapi = dev_id;
6426 struct tg3 *tp = tnapi->tp;
898a56f8 6427 struct tg3_hw_status *sblk = tnapi->hw_status;
1da177e4
LT
6428 unsigned int handled = 1;
6429
1da177e4
LT
6430 /* In INTx mode, it is possible for the interrupt to arrive at
6431 * the CPU before the status block posted prior to the interrupt.
6432 * Reading the PCI State register will confirm whether the
6433 * interrupt is ours and will flush the status block.
6434 */
d18edcb2 6435 if (unlikely(!(sblk->status & SD_STATUS_UPDATED))) {
63c3a66f 6436 if (tg3_flag(tp, CHIP_RESETTING) ||
d18edcb2
MC
6437 (tr32(TG3PCI_PCISTATE) & PCISTATE_INT_NOT_ACTIVE)) {
6438 handled = 0;
f47c11ee 6439 goto out;
fac9b83e 6440 }
d18edcb2
MC
6441 }
6442
6443 /*
6444 * Writing any value to intr-mbox-0 clears PCI INTA# and
6445 * chip-internal interrupt pending events.
6446 * Writing non-zero to intr-mbox-0 additional tells the
6447 * NIC to stop sending us irqs, engaging "in-intr-handler"
6448 * event coalescing.
c04cb347
MC
6449 *
6450 * Flush the mailbox to de-assert the IRQ immediately to prevent
6451 * spurious interrupts. The flush impacts performance but
6452 * excessive spurious interrupts can be worse in some cases.
d18edcb2 6453 */
c04cb347 6454 tw32_mailbox_f(MAILBOX_INTERRUPT_0 + TG3_64BIT_REG_LOW, 0x00000001);
d18edcb2
MC
6455 if (tg3_irq_sync(tp))
6456 goto out;
6457 sblk->status &= ~SD_STATUS_UPDATED;
17375d25 6458 if (likely(tg3_has_work(tnapi))) {
72334482 6459 prefetch(&tnapi->rx_rcb[tnapi->rx_rcb_ptr]);
09943a18 6460 napi_schedule(&tnapi->napi);
d18edcb2
MC
6461 } else {
6462 /* No work, shared interrupt perhaps? re-enable
6463 * interrupts, and flush that PCI write
6464 */
6465 tw32_mailbox_f(MAILBOX_INTERRUPT_0 + TG3_64BIT_REG_LOW,
6466 0x00000000);
fac9b83e 6467 }
f47c11ee 6468out:
fac9b83e
DM
6469 return IRQ_RETVAL(handled);
6470}
6471
7d12e780 6472static irqreturn_t tg3_interrupt_tagged(int irq, void *dev_id)
fac9b83e 6473{
09943a18
MC
6474 struct tg3_napi *tnapi = dev_id;
6475 struct tg3 *tp = tnapi->tp;
898a56f8 6476 struct tg3_hw_status *sblk = tnapi->hw_status;
fac9b83e
DM
6477 unsigned int handled = 1;
6478
fac9b83e
DM
6479 /* In INTx mode, it is possible for the interrupt to arrive at
6480 * the CPU before the status block posted prior to the interrupt.
6481 * Reading the PCI State register will confirm whether the
6482 * interrupt is ours and will flush the status block.
6483 */
898a56f8 6484 if (unlikely(sblk->status_tag == tnapi->last_irq_tag)) {
63c3a66f 6485 if (tg3_flag(tp, CHIP_RESETTING) ||
d18edcb2
MC
6486 (tr32(TG3PCI_PCISTATE) & PCISTATE_INT_NOT_ACTIVE)) {
6487 handled = 0;
f47c11ee 6488 goto out;
1da177e4 6489 }
d18edcb2
MC
6490 }
6491
6492 /*
6493 * writing any value to intr-mbox-0 clears PCI INTA# and
6494 * chip-internal interrupt pending events.
6495 * writing non-zero to intr-mbox-0 additional tells the
6496 * NIC to stop sending us irqs, engaging "in-intr-handler"
6497 * event coalescing.
c04cb347
MC
6498 *
6499 * Flush the mailbox to de-assert the IRQ immediately to prevent
6500 * spurious interrupts. The flush impacts performance but
6501 * excessive spurious interrupts can be worse in some cases.
d18edcb2 6502 */
c04cb347 6503 tw32_mailbox_f(MAILBOX_INTERRUPT_0 + TG3_64BIT_REG_LOW, 0x00000001);
624f8e50
MC
6504
6505 /*
6506 * In a shared interrupt configuration, sometimes other devices'
6507 * interrupts will scream. We record the current status tag here
6508 * so that the above check can report that the screaming interrupts
6509 * are unhandled. Eventually they will be silenced.
6510 */
898a56f8 6511 tnapi->last_irq_tag = sblk->status_tag;
624f8e50 6512
d18edcb2
MC
6513 if (tg3_irq_sync(tp))
6514 goto out;
624f8e50 6515
72334482 6516 prefetch(&tnapi->rx_rcb[tnapi->rx_rcb_ptr]);
624f8e50 6517
09943a18 6518 napi_schedule(&tnapi->napi);
624f8e50 6519
f47c11ee 6520out:
1da177e4
LT
6521 return IRQ_RETVAL(handled);
6522}
6523
7938109f 6524/* ISR for interrupt test */
7d12e780 6525static irqreturn_t tg3_test_isr(int irq, void *dev_id)
7938109f 6526{
09943a18
MC
6527 struct tg3_napi *tnapi = dev_id;
6528 struct tg3 *tp = tnapi->tp;
898a56f8 6529 struct tg3_hw_status *sblk = tnapi->hw_status;
7938109f 6530
f9804ddb
MC
6531 if ((sblk->status & SD_STATUS_UPDATED) ||
6532 !(tr32(TG3PCI_PCISTATE) & PCISTATE_INT_NOT_ACTIVE)) {
b16250e3 6533 tg3_disable_ints(tp);
7938109f
MC
6534 return IRQ_RETVAL(1);
6535 }
6536 return IRQ_RETVAL(0);
6537}
6538
1da177e4
LT
6539#ifdef CONFIG_NET_POLL_CONTROLLER
6540static void tg3_poll_controller(struct net_device *dev)
6541{
4f125f42 6542 int i;
88b06bc2
MC
6543 struct tg3 *tp = netdev_priv(dev);
6544
4f125f42 6545 for (i = 0; i < tp->irq_cnt; i++)
fe234f0e 6546 tg3_interrupt(tp->napi[i].irq_vec, &tp->napi[i]);
1da177e4
LT
6547}
6548#endif
6549
1da177e4
LT
6550static void tg3_tx_timeout(struct net_device *dev)
6551{
6552 struct tg3 *tp = netdev_priv(dev);
6553
b0408751 6554 if (netif_msg_tx_err(tp)) {
05dbe005 6555 netdev_err(dev, "transmit timed out, resetting\n");
97bd8e49 6556 tg3_dump_state(tp);
b0408751 6557 }
1da177e4 6558
db219973 6559 tg3_reset_task_schedule(tp);
1da177e4
LT
6560}
6561
c58ec932
MC
6562/* Test for DMA buffers crossing any 4GB boundaries: 4G, 8G, etc */
6563static inline int tg3_4g_overflow_test(dma_addr_t mapping, int len)
6564{
6565 u32 base = (u32) mapping & 0xffffffff;
6566
807540ba 6567 return (base > 0xffffdcc0) && (base + len + 8 < base);
c58ec932
MC
6568}
6569
72f2afb8
MC
6570/* Test for DMA addresses > 40-bit */
6571static inline int tg3_40bit_overflow_test(struct tg3 *tp, dma_addr_t mapping,
6572 int len)
6573{
6574#if defined(CONFIG_HIGHMEM) && (BITS_PER_LONG == 64)
63c3a66f 6575 if (tg3_flag(tp, 40BIT_DMA_BUG))
807540ba 6576 return ((u64) mapping + len) > DMA_BIT_MASK(40);
72f2afb8
MC
6577 return 0;
6578#else
6579 return 0;
6580#endif
6581}
6582
d1a3b737 6583static inline void tg3_tx_set_bd(struct tg3_tx_buffer_desc *txbd,
92cd3a17
MC
6584 dma_addr_t mapping, u32 len, u32 flags,
6585 u32 mss, u32 vlan)
2ffcc981 6586{
92cd3a17
MC
6587 txbd->addr_hi = ((u64) mapping >> 32);
6588 txbd->addr_lo = ((u64) mapping & 0xffffffff);
6589 txbd->len_flags = (len << TXD_LEN_SHIFT) | (flags & 0x0000ffff);
6590 txbd->vlan_tag = (mss << TXD_MSS_SHIFT) | (vlan << TXD_VLAN_TAG_SHIFT);
2ffcc981 6591}
1da177e4 6592
84b67b27 6593static bool tg3_tx_frag_set(struct tg3_napi *tnapi, u32 *entry, u32 *budget,
d1a3b737
MC
6594 dma_addr_t map, u32 len, u32 flags,
6595 u32 mss, u32 vlan)
6596{
6597 struct tg3 *tp = tnapi->tp;
6598 bool hwbug = false;
6599
6600 if (tg3_flag(tp, SHORT_DMA_BUG) && len <= 8)
3db1cd5c 6601 hwbug = true;
d1a3b737
MC
6602
6603 if (tg3_4g_overflow_test(map, len))
3db1cd5c 6604 hwbug = true;
d1a3b737
MC
6605
6606 if (tg3_40bit_overflow_test(tp, map, len))
3db1cd5c 6607 hwbug = true;
d1a3b737 6608
a4cb428d 6609 if (tp->dma_limit) {
b9e45482 6610 u32 prvidx = *entry;
e31aa987 6611 u32 tmp_flag = flags & ~TXD_FLAG_END;
a4cb428d
MC
6612 while (len > tp->dma_limit && *budget) {
6613 u32 frag_len = tp->dma_limit;
6614 len -= tp->dma_limit;
e31aa987 6615
b9e45482
MC
6616 /* Avoid the 8byte DMA problem */
6617 if (len <= 8) {
a4cb428d
MC
6618 len += tp->dma_limit / 2;
6619 frag_len = tp->dma_limit / 2;
e31aa987
MC
6620 }
6621
b9e45482
MC
6622 tnapi->tx_buffers[*entry].fragmented = true;
6623
6624 tg3_tx_set_bd(&tnapi->tx_ring[*entry], map,
6625 frag_len, tmp_flag, mss, vlan);
6626 *budget -= 1;
6627 prvidx = *entry;
6628 *entry = NEXT_TX(*entry);
6629
e31aa987
MC
6630 map += frag_len;
6631 }
6632
6633 if (len) {
6634 if (*budget) {
6635 tg3_tx_set_bd(&tnapi->tx_ring[*entry], map,
6636 len, flags, mss, vlan);
b9e45482 6637 *budget -= 1;
e31aa987
MC
6638 *entry = NEXT_TX(*entry);
6639 } else {
3db1cd5c 6640 hwbug = true;
b9e45482 6641 tnapi->tx_buffers[prvidx].fragmented = false;
e31aa987
MC
6642 }
6643 }
6644 } else {
84b67b27
MC
6645 tg3_tx_set_bd(&tnapi->tx_ring[*entry], map,
6646 len, flags, mss, vlan);
e31aa987
MC
6647 *entry = NEXT_TX(*entry);
6648 }
d1a3b737
MC
6649
6650 return hwbug;
6651}
6652
0d681b27 6653static void tg3_tx_skb_unmap(struct tg3_napi *tnapi, u32 entry, int last)
432aa7ed
MC
6654{
6655 int i;
0d681b27 6656 struct sk_buff *skb;
df8944cf 6657 struct tg3_tx_ring_info *txb = &tnapi->tx_buffers[entry];
432aa7ed 6658
0d681b27
MC
6659 skb = txb->skb;
6660 txb->skb = NULL;
6661
432aa7ed
MC
6662 pci_unmap_single(tnapi->tp->pdev,
6663 dma_unmap_addr(txb, mapping),
6664 skb_headlen(skb),
6665 PCI_DMA_TODEVICE);
e01ee14d
MC
6666
6667 while (txb->fragmented) {
6668 txb->fragmented = false;
6669 entry = NEXT_TX(entry);
6670 txb = &tnapi->tx_buffers[entry];
6671 }
6672
ba1142e4 6673 for (i = 0; i <= last; i++) {
9e903e08 6674 const skb_frag_t *frag = &skb_shinfo(skb)->frags[i];
432aa7ed
MC
6675
6676 entry = NEXT_TX(entry);
6677 txb = &tnapi->tx_buffers[entry];
6678
6679 pci_unmap_page(tnapi->tp->pdev,
6680 dma_unmap_addr(txb, mapping),
9e903e08 6681 skb_frag_size(frag), PCI_DMA_TODEVICE);
e01ee14d
MC
6682
6683 while (txb->fragmented) {
6684 txb->fragmented = false;
6685 entry = NEXT_TX(entry);
6686 txb = &tnapi->tx_buffers[entry];
6687 }
432aa7ed
MC
6688 }
6689}
6690
72f2afb8 6691/* Workaround 4GB and 40-bit hardware DMA bugs. */
24f4efd4 6692static int tigon3_dma_hwbug_workaround(struct tg3_napi *tnapi,
f7ff1987 6693 struct sk_buff **pskb,
84b67b27 6694 u32 *entry, u32 *budget,
92cd3a17 6695 u32 base_flags, u32 mss, u32 vlan)
1da177e4 6696{
24f4efd4 6697 struct tg3 *tp = tnapi->tp;
f7ff1987 6698 struct sk_buff *new_skb, *skb = *pskb;
c58ec932 6699 dma_addr_t new_addr = 0;
432aa7ed 6700 int ret = 0;
1da177e4 6701
41588ba1
MC
6702 if (GET_ASIC_REV(tp->pci_chip_rev_id) != ASIC_REV_5701)
6703 new_skb = skb_copy(skb, GFP_ATOMIC);
6704 else {
6705 int more_headroom = 4 - ((unsigned long)skb->data & 3);
6706
6707 new_skb = skb_copy_expand(skb,
6708 skb_headroom(skb) + more_headroom,
6709 skb_tailroom(skb), GFP_ATOMIC);
6710 }
6711
1da177e4 6712 if (!new_skb) {
c58ec932
MC
6713 ret = -1;
6714 } else {
6715 /* New SKB is guaranteed to be linear. */
f4188d8a
AD
6716 new_addr = pci_map_single(tp->pdev, new_skb->data, new_skb->len,
6717 PCI_DMA_TODEVICE);
6718 /* Make sure the mapping succeeded */
6719 if (pci_dma_mapping_error(tp->pdev, new_addr)) {
f4188d8a 6720 dev_kfree_skb(new_skb);
c58ec932 6721 ret = -1;
c58ec932 6722 } else {
b9e45482
MC
6723 u32 save_entry = *entry;
6724
92cd3a17
MC
6725 base_flags |= TXD_FLAG_END;
6726
84b67b27
MC
6727 tnapi->tx_buffers[*entry].skb = new_skb;
6728 dma_unmap_addr_set(&tnapi->tx_buffers[*entry],
432aa7ed
MC
6729 mapping, new_addr);
6730
84b67b27 6731 if (tg3_tx_frag_set(tnapi, entry, budget, new_addr,
d1a3b737
MC
6732 new_skb->len, base_flags,
6733 mss, vlan)) {
ba1142e4 6734 tg3_tx_skb_unmap(tnapi, save_entry, -1);
d1a3b737
MC
6735 dev_kfree_skb(new_skb);
6736 ret = -1;
6737 }
f4188d8a 6738 }
1da177e4
LT
6739 }
6740
6741 dev_kfree_skb(skb);
f7ff1987 6742 *pskb = new_skb;
c58ec932 6743 return ret;
1da177e4
LT
6744}
6745
2ffcc981 6746static netdev_tx_t tg3_start_xmit(struct sk_buff *, struct net_device *);
52c0fd83
MC
6747
6748/* Use GSO to workaround a rare TSO bug that may be triggered when the
6749 * TSO header is greater than 80 bytes.
6750 */
6751static int tg3_tso_bug(struct tg3 *tp, struct sk_buff *skb)
6752{
6753 struct sk_buff *segs, *nskb;
f3f3f27e 6754 u32 frag_cnt_est = skb_shinfo(skb)->gso_segs * 3;
52c0fd83
MC
6755
6756 /* Estimate the number of fragments in the worst case */
f3f3f27e 6757 if (unlikely(tg3_tx_avail(&tp->napi[0]) <= frag_cnt_est)) {
52c0fd83 6758 netif_stop_queue(tp->dev);
f65aac16
MC
6759
6760 /* netif_tx_stop_queue() must be done before checking
6761 * checking tx index in tg3_tx_avail() below, because in
6762 * tg3_tx(), we update tx index before checking for
6763 * netif_tx_queue_stopped().
6764 */
6765 smp_mb();
f3f3f27e 6766 if (tg3_tx_avail(&tp->napi[0]) <= frag_cnt_est)
7f62ad5d
MC
6767 return NETDEV_TX_BUSY;
6768
6769 netif_wake_queue(tp->dev);
52c0fd83
MC
6770 }
6771
6772 segs = skb_gso_segment(skb, tp->dev->features & ~NETIF_F_TSO);
801678c5 6773 if (IS_ERR(segs))
52c0fd83
MC
6774 goto tg3_tso_bug_end;
6775
6776 do {
6777 nskb = segs;
6778 segs = segs->next;
6779 nskb->next = NULL;
2ffcc981 6780 tg3_start_xmit(nskb, tp->dev);
52c0fd83
MC
6781 } while (segs);
6782
6783tg3_tso_bug_end:
6784 dev_kfree_skb(skb);
6785
6786 return NETDEV_TX_OK;
6787}
52c0fd83 6788
5a6f3074 6789/* hard_start_xmit for devices that have the 4G bug and/or 40-bit bug and
63c3a66f 6790 * support TG3_FLAG_HW_TSO_1 or firmware TSO only.
5a6f3074 6791 */
2ffcc981 6792static netdev_tx_t tg3_start_xmit(struct sk_buff *skb, struct net_device *dev)
1da177e4
LT
6793{
6794 struct tg3 *tp = netdev_priv(dev);
92cd3a17 6795 u32 len, entry, base_flags, mss, vlan = 0;
84b67b27 6796 u32 budget;
432aa7ed 6797 int i = -1, would_hit_hwbug;
90079ce8 6798 dma_addr_t mapping;
24f4efd4
MC
6799 struct tg3_napi *tnapi;
6800 struct netdev_queue *txq;
432aa7ed 6801 unsigned int last;
f4188d8a 6802
24f4efd4
MC
6803 txq = netdev_get_tx_queue(dev, skb_get_queue_mapping(skb));
6804 tnapi = &tp->napi[skb_get_queue_mapping(skb)];
63c3a66f 6805 if (tg3_flag(tp, ENABLE_TSS))
24f4efd4 6806 tnapi++;
1da177e4 6807
84b67b27
MC
6808 budget = tg3_tx_avail(tnapi);
6809
00b70504 6810 /* We are running in BH disabled context with netif_tx_lock
bea3348e 6811 * and TX reclaim runs via tp->napi.poll inside of a software
f47c11ee
DM
6812 * interrupt. Furthermore, IRQ processing runs lockless so we have
6813 * no IRQ context deadlocks to worry about either. Rejoice!
1da177e4 6814 */
84b67b27 6815 if (unlikely(budget <= (skb_shinfo(skb)->nr_frags + 1))) {
24f4efd4
MC
6816 if (!netif_tx_queue_stopped(txq)) {
6817 netif_tx_stop_queue(txq);
1f064a87
SH
6818
6819 /* This is a hard error, log it. */
5129c3a3
MC
6820 netdev_err(dev,
6821 "BUG! Tx Ring full when queue awake!\n");
1f064a87 6822 }
1da177e4
LT
6823 return NETDEV_TX_BUSY;
6824 }
6825
f3f3f27e 6826 entry = tnapi->tx_prod;
1da177e4 6827 base_flags = 0;
84fa7933 6828 if (skb->ip_summed == CHECKSUM_PARTIAL)
1da177e4 6829 base_flags |= TXD_FLAG_TCPUDP_CSUM;
24f4efd4 6830
be98da6a
MC
6831 mss = skb_shinfo(skb)->gso_size;
6832 if (mss) {
eddc9ec5 6833 struct iphdr *iph;
34195c3d 6834 u32 tcp_opt_len, hdr_len;
1da177e4
LT
6835
6836 if (skb_header_cloned(skb) &&
48855432
ED
6837 pskb_expand_head(skb, 0, 0, GFP_ATOMIC))
6838 goto drop;
1da177e4 6839
34195c3d 6840 iph = ip_hdr(skb);
ab6a5bb6 6841 tcp_opt_len = tcp_optlen(skb);
1da177e4 6842
a5a11955 6843 hdr_len = skb_transport_offset(skb) + tcp_hdrlen(skb) - ETH_HLEN;
34195c3d 6844
a5a11955 6845 if (!skb_is_gso_v6(skb)) {
34195c3d
MC
6846 iph->check = 0;
6847 iph->tot_len = htons(mss + hdr_len);
6848 }
6849
52c0fd83 6850 if (unlikely((ETH_HLEN + hdr_len) > 80) &&
63c3a66f 6851 tg3_flag(tp, TSO_BUG))
de6f31eb 6852 return tg3_tso_bug(tp, skb);
52c0fd83 6853
1da177e4
LT
6854 base_flags |= (TXD_FLAG_CPU_PRE_DMA |
6855 TXD_FLAG_CPU_POST_DMA);
6856
63c3a66f
JP
6857 if (tg3_flag(tp, HW_TSO_1) ||
6858 tg3_flag(tp, HW_TSO_2) ||
6859 tg3_flag(tp, HW_TSO_3)) {
aa8223c7 6860 tcp_hdr(skb)->check = 0;
1da177e4 6861 base_flags &= ~TXD_FLAG_TCPUDP_CSUM;
aa8223c7
ACM
6862 } else
6863 tcp_hdr(skb)->check = ~csum_tcpudp_magic(iph->saddr,
6864 iph->daddr, 0,
6865 IPPROTO_TCP,
6866 0);
1da177e4 6867
63c3a66f 6868 if (tg3_flag(tp, HW_TSO_3)) {
615774fe
MC
6869 mss |= (hdr_len & 0xc) << 12;
6870 if (hdr_len & 0x10)
6871 base_flags |= 0x00000010;
6872 base_flags |= (hdr_len & 0x3e0) << 5;
63c3a66f 6873 } else if (tg3_flag(tp, HW_TSO_2))
92c6b8d1 6874 mss |= hdr_len << 9;
63c3a66f 6875 else if (tg3_flag(tp, HW_TSO_1) ||
92c6b8d1 6876 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5705) {
eddc9ec5 6877 if (tcp_opt_len || iph->ihl > 5) {
1da177e4
LT
6878 int tsflags;
6879
eddc9ec5 6880 tsflags = (iph->ihl - 5) + (tcp_opt_len >> 2);
1da177e4
LT
6881 mss |= (tsflags << 11);
6882 }
6883 } else {
eddc9ec5 6884 if (tcp_opt_len || iph->ihl > 5) {
1da177e4
LT
6885 int tsflags;
6886
eddc9ec5 6887 tsflags = (iph->ihl - 5) + (tcp_opt_len >> 2);
1da177e4
LT
6888 base_flags |= tsflags << 12;
6889 }
6890 }
6891 }
bf933c80 6892
93a700a9
MC
6893 if (tg3_flag(tp, USE_JUMBO_BDFLAG) &&
6894 !mss && skb->len > VLAN_ETH_FRAME_LEN)
6895 base_flags |= TXD_FLAG_JMB_PKT;
6896
92cd3a17
MC
6897 if (vlan_tx_tag_present(skb)) {
6898 base_flags |= TXD_FLAG_VLAN;
6899 vlan = vlan_tx_tag_get(skb);
6900 }
1da177e4 6901
f4188d8a
AD
6902 len = skb_headlen(skb);
6903
6904 mapping = pci_map_single(tp->pdev, skb->data, len, PCI_DMA_TODEVICE);
48855432
ED
6905 if (pci_dma_mapping_error(tp->pdev, mapping))
6906 goto drop;
6907
90079ce8 6908
f3f3f27e 6909 tnapi->tx_buffers[entry].skb = skb;
4e5e4f0d 6910 dma_unmap_addr_set(&tnapi->tx_buffers[entry], mapping, mapping);
1da177e4
LT
6911
6912 would_hit_hwbug = 0;
6913
63c3a66f 6914 if (tg3_flag(tp, 5701_DMA_BUG))
c58ec932 6915 would_hit_hwbug = 1;
1da177e4 6916
84b67b27 6917 if (tg3_tx_frag_set(tnapi, &entry, &budget, mapping, len, base_flags |
d1a3b737 6918 ((skb_shinfo(skb)->nr_frags == 0) ? TXD_FLAG_END : 0),
ba1142e4 6919 mss, vlan)) {
d1a3b737 6920 would_hit_hwbug = 1;
ba1142e4 6921 } else if (skb_shinfo(skb)->nr_frags > 0) {
92cd3a17
MC
6922 u32 tmp_mss = mss;
6923
6924 if (!tg3_flag(tp, HW_TSO_1) &&
6925 !tg3_flag(tp, HW_TSO_2) &&
6926 !tg3_flag(tp, HW_TSO_3))
6927 tmp_mss = 0;
6928
c5665a53
MC
6929 /* Now loop through additional data
6930 * fragments, and queue them.
6931 */
1da177e4
LT
6932 last = skb_shinfo(skb)->nr_frags - 1;
6933 for (i = 0; i <= last; i++) {
6934 skb_frag_t *frag = &skb_shinfo(skb)->frags[i];
6935
9e903e08 6936 len = skb_frag_size(frag);
dc234d0b 6937 mapping = skb_frag_dma_map(&tp->pdev->dev, frag, 0,
5d6bcdfe 6938 len, DMA_TO_DEVICE);
1da177e4 6939
f3f3f27e 6940 tnapi->tx_buffers[entry].skb = NULL;
4e5e4f0d 6941 dma_unmap_addr_set(&tnapi->tx_buffers[entry], mapping,
f4188d8a 6942 mapping);
5d6bcdfe 6943 if (dma_mapping_error(&tp->pdev->dev, mapping))
f4188d8a 6944 goto dma_error;
1da177e4 6945
b9e45482
MC
6946 if (!budget ||
6947 tg3_tx_frag_set(tnapi, &entry, &budget, mapping,
84b67b27
MC
6948 len, base_flags |
6949 ((i == last) ? TXD_FLAG_END : 0),
b9e45482 6950 tmp_mss, vlan)) {
72f2afb8 6951 would_hit_hwbug = 1;
b9e45482
MC
6952 break;
6953 }
1da177e4
LT
6954 }
6955 }
6956
6957 if (would_hit_hwbug) {
0d681b27 6958 tg3_tx_skb_unmap(tnapi, tnapi->tx_prod, i);
1da177e4
LT
6959
6960 /* If the workaround fails due to memory/mapping
6961 * failure, silently drop this packet.
6962 */
84b67b27
MC
6963 entry = tnapi->tx_prod;
6964 budget = tg3_tx_avail(tnapi);
f7ff1987 6965 if (tigon3_dma_hwbug_workaround(tnapi, &skb, &entry, &budget,
84b67b27 6966 base_flags, mss, vlan))
48855432 6967 goto drop_nofree;
1da177e4
LT
6968 }
6969
d515b450 6970 skb_tx_timestamp(skb);
298376d3 6971 netdev_sent_queue(tp->dev, skb->len);
d515b450 6972
1da177e4 6973 /* Packets are ready, update Tx producer idx local and on card. */
24f4efd4 6974 tw32_tx_mbox(tnapi->prodmbox, entry);
1da177e4 6975
f3f3f27e
MC
6976 tnapi->tx_prod = entry;
6977 if (unlikely(tg3_tx_avail(tnapi) <= (MAX_SKB_FRAGS + 1))) {
24f4efd4 6978 netif_tx_stop_queue(txq);
f65aac16
MC
6979
6980 /* netif_tx_stop_queue() must be done before checking
6981 * checking tx index in tg3_tx_avail() below, because in
6982 * tg3_tx(), we update tx index before checking for
6983 * netif_tx_queue_stopped().
6984 */
6985 smp_mb();
f3f3f27e 6986 if (tg3_tx_avail(tnapi) > TG3_TX_WAKEUP_THRESH(tnapi))
24f4efd4 6987 netif_tx_wake_queue(txq);
51b91468 6988 }
1da177e4 6989
cdd0db05 6990 mmiowb();
1da177e4 6991 return NETDEV_TX_OK;
f4188d8a
AD
6992
6993dma_error:
ba1142e4 6994 tg3_tx_skb_unmap(tnapi, tnapi->tx_prod, --i);
432aa7ed 6995 tnapi->tx_buffers[tnapi->tx_prod].skb = NULL;
48855432
ED
6996drop:
6997 dev_kfree_skb(skb);
6998drop_nofree:
6999 tp->tx_dropped++;
f4188d8a 7000 return NETDEV_TX_OK;
1da177e4
LT
7001}
7002
6e01b20b
MC
7003static void tg3_mac_loopback(struct tg3 *tp, bool enable)
7004{
7005 if (enable) {
7006 tp->mac_mode &= ~(MAC_MODE_HALF_DUPLEX |
7007 MAC_MODE_PORT_MODE_MASK);
7008
7009 tp->mac_mode |= MAC_MODE_PORT_INT_LPBACK;
7010
7011 if (!tg3_flag(tp, 5705_PLUS))
7012 tp->mac_mode |= MAC_MODE_LINK_POLARITY;
7013
7014 if (tp->phy_flags & TG3_PHYFLG_10_100_ONLY)
7015 tp->mac_mode |= MAC_MODE_PORT_MODE_MII;
7016 else
7017 tp->mac_mode |= MAC_MODE_PORT_MODE_GMII;
7018 } else {
7019 tp->mac_mode &= ~MAC_MODE_PORT_INT_LPBACK;
7020
7021 if (tg3_flag(tp, 5705_PLUS) ||
7022 (tp->phy_flags & TG3_PHYFLG_PHY_SERDES) ||
7023 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5700)
7024 tp->mac_mode &= ~MAC_MODE_LINK_POLARITY;
7025 }
7026
7027 tw32(MAC_MODE, tp->mac_mode);
7028 udelay(40);
7029}
7030
941ec90f 7031static int tg3_phy_lpbk_set(struct tg3 *tp, u32 speed, bool extlpbk)
5e5a7f37 7032{
941ec90f 7033 u32 val, bmcr, mac_mode, ptest = 0;
5e5a7f37
MC
7034
7035 tg3_phy_toggle_apd(tp, false);
7036 tg3_phy_toggle_automdix(tp, 0);
7037
941ec90f
MC
7038 if (extlpbk && tg3_phy_set_extloopbk(tp))
7039 return -EIO;
7040
7041 bmcr = BMCR_FULLDPLX;
5e5a7f37
MC
7042 switch (speed) {
7043 case SPEED_10:
7044 break;
7045 case SPEED_100:
7046 bmcr |= BMCR_SPEED100;
7047 break;
7048 case SPEED_1000:
7049 default:
7050 if (tp->phy_flags & TG3_PHYFLG_IS_FET) {
7051 speed = SPEED_100;
7052 bmcr |= BMCR_SPEED100;
7053 } else {
7054 speed = SPEED_1000;
7055 bmcr |= BMCR_SPEED1000;
7056 }
7057 }
7058
941ec90f
MC
7059 if (extlpbk) {
7060 if (!(tp->phy_flags & TG3_PHYFLG_IS_FET)) {
7061 tg3_readphy(tp, MII_CTRL1000, &val);
7062 val |= CTL1000_AS_MASTER |
7063 CTL1000_ENABLE_MASTER;
7064 tg3_writephy(tp, MII_CTRL1000, val);
7065 } else {
7066 ptest = MII_TG3_FET_PTEST_TRIM_SEL |
7067 MII_TG3_FET_PTEST_TRIM_2;
7068 tg3_writephy(tp, MII_TG3_FET_PTEST, ptest);
7069 }
7070 } else
7071 bmcr |= BMCR_LOOPBACK;
7072
5e5a7f37
MC
7073 tg3_writephy(tp, MII_BMCR, bmcr);
7074
7075 /* The write needs to be flushed for the FETs */
7076 if (tp->phy_flags & TG3_PHYFLG_IS_FET)
7077 tg3_readphy(tp, MII_BMCR, &bmcr);
7078
7079 udelay(40);
7080
7081 if ((tp->phy_flags & TG3_PHYFLG_IS_FET) &&
7082 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5785) {
941ec90f 7083 tg3_writephy(tp, MII_TG3_FET_PTEST, ptest |
5e5a7f37
MC
7084 MII_TG3_FET_PTEST_FRC_TX_LINK |
7085 MII_TG3_FET_PTEST_FRC_TX_LOCK);
7086
7087 /* The write needs to be flushed for the AC131 */
7088 tg3_readphy(tp, MII_TG3_FET_PTEST, &val);
7089 }
7090
7091 /* Reset to prevent losing 1st rx packet intermittently */
7092 if ((tp->phy_flags & TG3_PHYFLG_MII_SERDES) &&
7093 tg3_flag(tp, 5780_CLASS)) {
7094 tw32_f(MAC_RX_MODE, RX_MODE_RESET);
7095 udelay(10);
7096 tw32_f(MAC_RX_MODE, tp->rx_mode);
7097 }
7098
7099 mac_mode = tp->mac_mode &
7100 ~(MAC_MODE_PORT_MODE_MASK | MAC_MODE_HALF_DUPLEX);
7101 if (speed == SPEED_1000)
7102 mac_mode |= MAC_MODE_PORT_MODE_GMII;
7103 else
7104 mac_mode |= MAC_MODE_PORT_MODE_MII;
7105
7106 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5700) {
7107 u32 masked_phy_id = tp->phy_id & TG3_PHY_ID_MASK;
7108
7109 if (masked_phy_id == TG3_PHY_ID_BCM5401)
7110 mac_mode &= ~MAC_MODE_LINK_POLARITY;
7111 else if (masked_phy_id == TG3_PHY_ID_BCM5411)
7112 mac_mode |= MAC_MODE_LINK_POLARITY;
7113
7114 tg3_writephy(tp, MII_TG3_EXT_CTRL,
7115 MII_TG3_EXT_CTRL_LNK3_LED_MODE);
7116 }
7117
7118 tw32(MAC_MODE, mac_mode);
7119 udelay(40);
941ec90f
MC
7120
7121 return 0;
5e5a7f37
MC
7122}
7123
c8f44aff 7124static void tg3_set_loopback(struct net_device *dev, netdev_features_t features)
06c03c02
MB
7125{
7126 struct tg3 *tp = netdev_priv(dev);
7127
7128 if (features & NETIF_F_LOOPBACK) {
7129 if (tp->mac_mode & MAC_MODE_PORT_INT_LPBACK)
7130 return;
7131
06c03c02 7132 spin_lock_bh(&tp->lock);
6e01b20b 7133 tg3_mac_loopback(tp, true);
06c03c02
MB
7134 netif_carrier_on(tp->dev);
7135 spin_unlock_bh(&tp->lock);
7136 netdev_info(dev, "Internal MAC loopback mode enabled.\n");
7137 } else {
7138 if (!(tp->mac_mode & MAC_MODE_PORT_INT_LPBACK))
7139 return;
7140
06c03c02 7141 spin_lock_bh(&tp->lock);
6e01b20b 7142 tg3_mac_loopback(tp, false);
06c03c02
MB
7143 /* Force link status check */
7144 tg3_setup_phy(tp, 1);
7145 spin_unlock_bh(&tp->lock);
7146 netdev_info(dev, "Internal MAC loopback mode disabled.\n");
7147 }
7148}
7149
c8f44aff
MM
7150static netdev_features_t tg3_fix_features(struct net_device *dev,
7151 netdev_features_t features)
dc668910
MM
7152{
7153 struct tg3 *tp = netdev_priv(dev);
7154
63c3a66f 7155 if (dev->mtu > ETH_DATA_LEN && tg3_flag(tp, 5780_CLASS))
dc668910
MM
7156 features &= ~NETIF_F_ALL_TSO;
7157
7158 return features;
7159}
7160
c8f44aff 7161static int tg3_set_features(struct net_device *dev, netdev_features_t features)
06c03c02 7162{
c8f44aff 7163 netdev_features_t changed = dev->features ^ features;
06c03c02
MB
7164
7165 if ((changed & NETIF_F_LOOPBACK) && netif_running(dev))
7166 tg3_set_loopback(dev, features);
7167
7168 return 0;
7169}
7170
21f581a5
MC
7171static void tg3_rx_prodring_free(struct tg3 *tp,
7172 struct tg3_rx_prodring_set *tpr)
1da177e4 7173{
1da177e4
LT
7174 int i;
7175
8fea32b9 7176 if (tpr != &tp->napi[0].prodring) {
b196c7e4 7177 for (i = tpr->rx_std_cons_idx; i != tpr->rx_std_prod_idx;
2c49a44d 7178 i = (i + 1) & tp->rx_std_ring_mask)
9205fd9c 7179 tg3_rx_data_free(tp, &tpr->rx_std_buffers[i],
b196c7e4
MC
7180 tp->rx_pkt_map_sz);
7181
63c3a66f 7182 if (tg3_flag(tp, JUMBO_CAPABLE)) {
b196c7e4
MC
7183 for (i = tpr->rx_jmb_cons_idx;
7184 i != tpr->rx_jmb_prod_idx;
2c49a44d 7185 i = (i + 1) & tp->rx_jmb_ring_mask) {
9205fd9c 7186 tg3_rx_data_free(tp, &tpr->rx_jmb_buffers[i],
b196c7e4
MC
7187 TG3_RX_JMB_MAP_SZ);
7188 }
7189 }
7190
2b2cdb65 7191 return;
b196c7e4 7192 }
1da177e4 7193
2c49a44d 7194 for (i = 0; i <= tp->rx_std_ring_mask; i++)
9205fd9c 7195 tg3_rx_data_free(tp, &tpr->rx_std_buffers[i],
2b2cdb65 7196 tp->rx_pkt_map_sz);
1da177e4 7197
63c3a66f 7198 if (tg3_flag(tp, JUMBO_CAPABLE) && !tg3_flag(tp, 5780_CLASS)) {
2c49a44d 7199 for (i = 0; i <= tp->rx_jmb_ring_mask; i++)
9205fd9c 7200 tg3_rx_data_free(tp, &tpr->rx_jmb_buffers[i],
2b2cdb65 7201 TG3_RX_JMB_MAP_SZ);
1da177e4
LT
7202 }
7203}
7204
c6cdf436 7205/* Initialize rx rings for packet processing.
1da177e4
LT
7206 *
7207 * The chip has been shut down and the driver detached from
7208 * the networking, so no interrupts or new tx packets will
7209 * end up in the driver. tp->{tx,}lock are held and thus
7210 * we may not sleep.
7211 */
21f581a5
MC
7212static int tg3_rx_prodring_alloc(struct tg3 *tp,
7213 struct tg3_rx_prodring_set *tpr)
1da177e4 7214{
287be12e 7215 u32 i, rx_pkt_dma_sz;
1da177e4 7216
b196c7e4
MC
7217 tpr->rx_std_cons_idx = 0;
7218 tpr->rx_std_prod_idx = 0;
7219 tpr->rx_jmb_cons_idx = 0;
7220 tpr->rx_jmb_prod_idx = 0;
7221
8fea32b9 7222 if (tpr != &tp->napi[0].prodring) {
2c49a44d
MC
7223 memset(&tpr->rx_std_buffers[0], 0,
7224 TG3_RX_STD_BUFF_RING_SIZE(tp));
48035728 7225 if (tpr->rx_jmb_buffers)
2b2cdb65 7226 memset(&tpr->rx_jmb_buffers[0], 0,
2c49a44d 7227 TG3_RX_JMB_BUFF_RING_SIZE(tp));
2b2cdb65
MC
7228 goto done;
7229 }
7230
1da177e4 7231 /* Zero out all descriptors. */
2c49a44d 7232 memset(tpr->rx_std, 0, TG3_RX_STD_RING_BYTES(tp));
1da177e4 7233
287be12e 7234 rx_pkt_dma_sz = TG3_RX_STD_DMA_SZ;
63c3a66f 7235 if (tg3_flag(tp, 5780_CLASS) &&
287be12e
MC
7236 tp->dev->mtu > ETH_DATA_LEN)
7237 rx_pkt_dma_sz = TG3_RX_JMB_DMA_SZ;
7238 tp->rx_pkt_map_sz = TG3_RX_DMA_TO_MAP_SZ(rx_pkt_dma_sz);
7e72aad4 7239
1da177e4
LT
7240 /* Initialize invariants of the rings, we only set this
7241 * stuff once. This works because the card does not
7242 * write into the rx buffer posting rings.
7243 */
2c49a44d 7244 for (i = 0; i <= tp->rx_std_ring_mask; i++) {
1da177e4
LT
7245 struct tg3_rx_buffer_desc *rxd;
7246
21f581a5 7247 rxd = &tpr->rx_std[i];
287be12e 7248 rxd->idx_len = rx_pkt_dma_sz << RXD_LEN_SHIFT;
1da177e4
LT
7249 rxd->type_flags = (RXD_FLAG_END << RXD_FLAGS_SHIFT);
7250 rxd->opaque = (RXD_OPAQUE_RING_STD |
7251 (i << RXD_OPAQUE_INDEX_SHIFT));
7252 }
7253
1da177e4
LT
7254 /* Now allocate fresh SKBs for each rx ring. */
7255 for (i = 0; i < tp->rx_pending; i++) {
9205fd9c 7256 if (tg3_alloc_rx_data(tp, tpr, RXD_OPAQUE_RING_STD, i) < 0) {
5129c3a3
MC
7257 netdev_warn(tp->dev,
7258 "Using a smaller RX standard ring. Only "
7259 "%d out of %d buffers were allocated "
7260 "successfully\n", i, tp->rx_pending);
32d8c572 7261 if (i == 0)
cf7a7298 7262 goto initfail;
32d8c572 7263 tp->rx_pending = i;
1da177e4 7264 break;
32d8c572 7265 }
1da177e4
LT
7266 }
7267
63c3a66f 7268 if (!tg3_flag(tp, JUMBO_CAPABLE) || tg3_flag(tp, 5780_CLASS))
cf7a7298
MC
7269 goto done;
7270
2c49a44d 7271 memset(tpr->rx_jmb, 0, TG3_RX_JMB_RING_BYTES(tp));
cf7a7298 7272
63c3a66f 7273 if (!tg3_flag(tp, JUMBO_RING_ENABLE))
0d86df80 7274 goto done;
cf7a7298 7275
2c49a44d 7276 for (i = 0; i <= tp->rx_jmb_ring_mask; i++) {
0d86df80
MC
7277 struct tg3_rx_buffer_desc *rxd;
7278
7279 rxd = &tpr->rx_jmb[i].std;
7280 rxd->idx_len = TG3_RX_JMB_DMA_SZ << RXD_LEN_SHIFT;
7281 rxd->type_flags = (RXD_FLAG_END << RXD_FLAGS_SHIFT) |
7282 RXD_FLAG_JUMBO;
7283 rxd->opaque = (RXD_OPAQUE_RING_JUMBO |
7284 (i << RXD_OPAQUE_INDEX_SHIFT));
7285 }
7286
7287 for (i = 0; i < tp->rx_jumbo_pending; i++) {
9205fd9c 7288 if (tg3_alloc_rx_data(tp, tpr, RXD_OPAQUE_RING_JUMBO, i) < 0) {
5129c3a3
MC
7289 netdev_warn(tp->dev,
7290 "Using a smaller RX jumbo ring. Only %d "
7291 "out of %d buffers were allocated "
7292 "successfully\n", i, tp->rx_jumbo_pending);
0d86df80
MC
7293 if (i == 0)
7294 goto initfail;
7295 tp->rx_jumbo_pending = i;
7296 break;
1da177e4
LT
7297 }
7298 }
cf7a7298
MC
7299
7300done:
32d8c572 7301 return 0;
cf7a7298
MC
7302
7303initfail:
21f581a5 7304 tg3_rx_prodring_free(tp, tpr);
cf7a7298 7305 return -ENOMEM;
1da177e4
LT
7306}
7307
21f581a5
MC
7308static void tg3_rx_prodring_fini(struct tg3 *tp,
7309 struct tg3_rx_prodring_set *tpr)
1da177e4 7310{
21f581a5
MC
7311 kfree(tpr->rx_std_buffers);
7312 tpr->rx_std_buffers = NULL;
7313 kfree(tpr->rx_jmb_buffers);
7314 tpr->rx_jmb_buffers = NULL;
7315 if (tpr->rx_std) {
4bae65c8
MC
7316 dma_free_coherent(&tp->pdev->dev, TG3_RX_STD_RING_BYTES(tp),
7317 tpr->rx_std, tpr->rx_std_mapping);
21f581a5 7318 tpr->rx_std = NULL;
1da177e4 7319 }
21f581a5 7320 if (tpr->rx_jmb) {
4bae65c8
MC
7321 dma_free_coherent(&tp->pdev->dev, TG3_RX_JMB_RING_BYTES(tp),
7322 tpr->rx_jmb, tpr->rx_jmb_mapping);
21f581a5 7323 tpr->rx_jmb = NULL;
1da177e4 7324 }
cf7a7298
MC
7325}
7326
21f581a5
MC
7327static int tg3_rx_prodring_init(struct tg3 *tp,
7328 struct tg3_rx_prodring_set *tpr)
cf7a7298 7329{
2c49a44d
MC
7330 tpr->rx_std_buffers = kzalloc(TG3_RX_STD_BUFF_RING_SIZE(tp),
7331 GFP_KERNEL);
21f581a5 7332 if (!tpr->rx_std_buffers)
cf7a7298
MC
7333 return -ENOMEM;
7334
4bae65c8
MC
7335 tpr->rx_std = dma_alloc_coherent(&tp->pdev->dev,
7336 TG3_RX_STD_RING_BYTES(tp),
7337 &tpr->rx_std_mapping,
7338 GFP_KERNEL);
21f581a5 7339 if (!tpr->rx_std)
cf7a7298
MC
7340 goto err_out;
7341
63c3a66f 7342 if (tg3_flag(tp, JUMBO_CAPABLE) && !tg3_flag(tp, 5780_CLASS)) {
2c49a44d 7343 tpr->rx_jmb_buffers = kzalloc(TG3_RX_JMB_BUFF_RING_SIZE(tp),
21f581a5
MC
7344 GFP_KERNEL);
7345 if (!tpr->rx_jmb_buffers)
cf7a7298
MC
7346 goto err_out;
7347
4bae65c8
MC
7348 tpr->rx_jmb = dma_alloc_coherent(&tp->pdev->dev,
7349 TG3_RX_JMB_RING_BYTES(tp),
7350 &tpr->rx_jmb_mapping,
7351 GFP_KERNEL);
21f581a5 7352 if (!tpr->rx_jmb)
cf7a7298
MC
7353 goto err_out;
7354 }
7355
7356 return 0;
7357
7358err_out:
21f581a5 7359 tg3_rx_prodring_fini(tp, tpr);
cf7a7298
MC
7360 return -ENOMEM;
7361}
7362
7363/* Free up pending packets in all rx/tx rings.
7364 *
7365 * The chip has been shut down and the driver detached from
7366 * the networking, so no interrupts or new tx packets will
7367 * end up in the driver. tp->{tx,}lock is not held and we are not
7368 * in an interrupt context and thus may sleep.
7369 */
7370static void tg3_free_rings(struct tg3 *tp)
7371{
f77a6a8e 7372 int i, j;
cf7a7298 7373
f77a6a8e
MC
7374 for (j = 0; j < tp->irq_cnt; j++) {
7375 struct tg3_napi *tnapi = &tp->napi[j];
cf7a7298 7376
8fea32b9 7377 tg3_rx_prodring_free(tp, &tnapi->prodring);
b28f6428 7378
0c1d0e2b
MC
7379 if (!tnapi->tx_buffers)
7380 continue;
7381
0d681b27
MC
7382 for (i = 0; i < TG3_TX_RING_SIZE; i++) {
7383 struct sk_buff *skb = tnapi->tx_buffers[i].skb;
cf7a7298 7384
0d681b27 7385 if (!skb)
f77a6a8e 7386 continue;
cf7a7298 7387
ba1142e4
MC
7388 tg3_tx_skb_unmap(tnapi, i,
7389 skb_shinfo(skb)->nr_frags - 1);
f77a6a8e
MC
7390
7391 dev_kfree_skb_any(skb);
7392 }
2b2cdb65 7393 }
298376d3 7394 netdev_reset_queue(tp->dev);
cf7a7298
MC
7395}
7396
7397/* Initialize tx/rx rings for packet processing.
7398 *
7399 * The chip has been shut down and the driver detached from
7400 * the networking, so no interrupts or new tx packets will
7401 * end up in the driver. tp->{tx,}lock are held and thus
7402 * we may not sleep.
7403 */
7404static int tg3_init_rings(struct tg3 *tp)
7405{
f77a6a8e 7406 int i;
72334482 7407
cf7a7298
MC
7408 /* Free up all the SKBs. */
7409 tg3_free_rings(tp);
7410
f77a6a8e
MC
7411 for (i = 0; i < tp->irq_cnt; i++) {
7412 struct tg3_napi *tnapi = &tp->napi[i];
7413
7414 tnapi->last_tag = 0;
7415 tnapi->last_irq_tag = 0;
7416 tnapi->hw_status->status = 0;
7417 tnapi->hw_status->status_tag = 0;
7418 memset(tnapi->hw_status, 0, TG3_HW_STATUS_SIZE);
cf7a7298 7419
f77a6a8e
MC
7420 tnapi->tx_prod = 0;
7421 tnapi->tx_cons = 0;
0c1d0e2b
MC
7422 if (tnapi->tx_ring)
7423 memset(tnapi->tx_ring, 0, TG3_TX_RING_BYTES);
f77a6a8e
MC
7424
7425 tnapi->rx_rcb_ptr = 0;
0c1d0e2b
MC
7426 if (tnapi->rx_rcb)
7427 memset(tnapi->rx_rcb, 0, TG3_RX_RCB_RING_BYTES(tp));
2b2cdb65 7428
8fea32b9 7429 if (tg3_rx_prodring_alloc(tp, &tnapi->prodring)) {
e4af1af9 7430 tg3_free_rings(tp);
2b2cdb65 7431 return -ENOMEM;
e4af1af9 7432 }
f77a6a8e 7433 }
72334482 7434
2b2cdb65 7435 return 0;
cf7a7298
MC
7436}
7437
7438/*
7439 * Must not be invoked with interrupt sources disabled and
7440 * the hardware shutdown down.
7441 */
7442static void tg3_free_consistent(struct tg3 *tp)
7443{
f77a6a8e 7444 int i;
898a56f8 7445
f77a6a8e
MC
7446 for (i = 0; i < tp->irq_cnt; i++) {
7447 struct tg3_napi *tnapi = &tp->napi[i];
7448
7449 if (tnapi->tx_ring) {
4bae65c8 7450 dma_free_coherent(&tp->pdev->dev, TG3_TX_RING_BYTES,
f77a6a8e
MC
7451 tnapi->tx_ring, tnapi->tx_desc_mapping);
7452 tnapi->tx_ring = NULL;
7453 }
7454
7455 kfree(tnapi->tx_buffers);
7456 tnapi->tx_buffers = NULL;
7457
7458 if (tnapi->rx_rcb) {
4bae65c8
MC
7459 dma_free_coherent(&tp->pdev->dev,
7460 TG3_RX_RCB_RING_BYTES(tp),
7461 tnapi->rx_rcb,
7462 tnapi->rx_rcb_mapping);
f77a6a8e
MC
7463 tnapi->rx_rcb = NULL;
7464 }
7465
8fea32b9
MC
7466 tg3_rx_prodring_fini(tp, &tnapi->prodring);
7467
f77a6a8e 7468 if (tnapi->hw_status) {
4bae65c8
MC
7469 dma_free_coherent(&tp->pdev->dev, TG3_HW_STATUS_SIZE,
7470 tnapi->hw_status,
7471 tnapi->status_mapping);
f77a6a8e
MC
7472 tnapi->hw_status = NULL;
7473 }
1da177e4 7474 }
f77a6a8e 7475
1da177e4 7476 if (tp->hw_stats) {
4bae65c8
MC
7477 dma_free_coherent(&tp->pdev->dev, sizeof(struct tg3_hw_stats),
7478 tp->hw_stats, tp->stats_mapping);
1da177e4
LT
7479 tp->hw_stats = NULL;
7480 }
7481}
7482
7483/*
7484 * Must not be invoked with interrupt sources disabled and
7485 * the hardware shutdown down. Can sleep.
7486 */
7487static int tg3_alloc_consistent(struct tg3 *tp)
7488{
f77a6a8e 7489 int i;
898a56f8 7490
4bae65c8
MC
7491 tp->hw_stats = dma_alloc_coherent(&tp->pdev->dev,
7492 sizeof(struct tg3_hw_stats),
7493 &tp->stats_mapping,
7494 GFP_KERNEL);
f77a6a8e 7495 if (!tp->hw_stats)
1da177e4
LT
7496 goto err_out;
7497
f77a6a8e 7498 memset(tp->hw_stats, 0, sizeof(struct tg3_hw_stats));
1da177e4 7499
f77a6a8e
MC
7500 for (i = 0; i < tp->irq_cnt; i++) {
7501 struct tg3_napi *tnapi = &tp->napi[i];
8d9d7cfc 7502 struct tg3_hw_status *sblk;
1da177e4 7503
4bae65c8
MC
7504 tnapi->hw_status = dma_alloc_coherent(&tp->pdev->dev,
7505 TG3_HW_STATUS_SIZE,
7506 &tnapi->status_mapping,
7507 GFP_KERNEL);
f77a6a8e
MC
7508 if (!tnapi->hw_status)
7509 goto err_out;
898a56f8 7510
f77a6a8e 7511 memset(tnapi->hw_status, 0, TG3_HW_STATUS_SIZE);
8d9d7cfc
MC
7512 sblk = tnapi->hw_status;
7513
8fea32b9
MC
7514 if (tg3_rx_prodring_init(tp, &tnapi->prodring))
7515 goto err_out;
7516
19cfaecc
MC
7517 /* If multivector TSS is enabled, vector 0 does not handle
7518 * tx interrupts. Don't allocate any resources for it.
7519 */
63c3a66f
JP
7520 if ((!i && !tg3_flag(tp, ENABLE_TSS)) ||
7521 (i && tg3_flag(tp, ENABLE_TSS))) {
df8944cf
MC
7522 tnapi->tx_buffers = kzalloc(
7523 sizeof(struct tg3_tx_ring_info) *
7524 TG3_TX_RING_SIZE, GFP_KERNEL);
19cfaecc
MC
7525 if (!tnapi->tx_buffers)
7526 goto err_out;
7527
4bae65c8
MC
7528 tnapi->tx_ring = dma_alloc_coherent(&tp->pdev->dev,
7529 TG3_TX_RING_BYTES,
7530 &tnapi->tx_desc_mapping,
7531 GFP_KERNEL);
19cfaecc
MC
7532 if (!tnapi->tx_ring)
7533 goto err_out;
7534 }
7535
8d9d7cfc
MC
7536 /*
7537 * When RSS is enabled, the status block format changes
7538 * slightly. The "rx_jumbo_consumer", "reserved",
7539 * and "rx_mini_consumer" members get mapped to the
7540 * other three rx return ring producer indexes.
7541 */
7542 switch (i) {
7543 default:
7544 tnapi->rx_rcb_prod_idx = &sblk->idx[0].rx_producer;
7545 break;
7546 case 2:
7547 tnapi->rx_rcb_prod_idx = &sblk->rx_jumbo_consumer;
7548 break;
7549 case 3:
7550 tnapi->rx_rcb_prod_idx = &sblk->reserved;
7551 break;
7552 case 4:
7553 tnapi->rx_rcb_prod_idx = &sblk->rx_mini_consumer;
7554 break;
7555 }
72334482 7556
0c1d0e2b
MC
7557 /*
7558 * If multivector RSS is enabled, vector 0 does not handle
7559 * rx or tx interrupts. Don't allocate any resources for it.
7560 */
63c3a66f 7561 if (!i && tg3_flag(tp, ENABLE_RSS))
0c1d0e2b
MC
7562 continue;
7563
4bae65c8
MC
7564 tnapi->rx_rcb = dma_alloc_coherent(&tp->pdev->dev,
7565 TG3_RX_RCB_RING_BYTES(tp),
7566 &tnapi->rx_rcb_mapping,
7567 GFP_KERNEL);
f77a6a8e
MC
7568 if (!tnapi->rx_rcb)
7569 goto err_out;
72334482 7570
f77a6a8e 7571 memset(tnapi->rx_rcb, 0, TG3_RX_RCB_RING_BYTES(tp));
f77a6a8e 7572 }
1da177e4
LT
7573
7574 return 0;
7575
7576err_out:
7577 tg3_free_consistent(tp);
7578 return -ENOMEM;
7579}
7580
7581#define MAX_WAIT_CNT 1000
7582
7583/* To stop a block, clear the enable bit and poll till it
7584 * clears. tp->lock is held.
7585 */
b3b7d6be 7586static int tg3_stop_block(struct tg3 *tp, unsigned long ofs, u32 enable_bit, int silent)
1da177e4
LT
7587{
7588 unsigned int i;
7589 u32 val;
7590
63c3a66f 7591 if (tg3_flag(tp, 5705_PLUS)) {
1da177e4
LT
7592 switch (ofs) {
7593 case RCVLSC_MODE:
7594 case DMAC_MODE:
7595 case MBFREE_MODE:
7596 case BUFMGR_MODE:
7597 case MEMARB_MODE:
7598 /* We can't enable/disable these bits of the
7599 * 5705/5750, just say success.
7600 */
7601 return 0;
7602
7603 default:
7604 break;
855e1111 7605 }
1da177e4
LT
7606 }
7607
7608 val = tr32(ofs);
7609 val &= ~enable_bit;
7610 tw32_f(ofs, val);
7611
7612 for (i = 0; i < MAX_WAIT_CNT; i++) {
7613 udelay(100);
7614 val = tr32(ofs);
7615 if ((val & enable_bit) == 0)
7616 break;
7617 }
7618
b3b7d6be 7619 if (i == MAX_WAIT_CNT && !silent) {
2445e461
MC
7620 dev_err(&tp->pdev->dev,
7621 "tg3_stop_block timed out, ofs=%lx enable_bit=%x\n",
7622 ofs, enable_bit);
1da177e4
LT
7623 return -ENODEV;
7624 }
7625
7626 return 0;
7627}
7628
7629/* tp->lock is held. */
b3b7d6be 7630static int tg3_abort_hw(struct tg3 *tp, int silent)
1da177e4
LT
7631{
7632 int i, err;
7633
7634 tg3_disable_ints(tp);
7635
7636 tp->rx_mode &= ~RX_MODE_ENABLE;
7637 tw32_f(MAC_RX_MODE, tp->rx_mode);
7638 udelay(10);
7639
b3b7d6be
DM
7640 err = tg3_stop_block(tp, RCVBDI_MODE, RCVBDI_MODE_ENABLE, silent);
7641 err |= tg3_stop_block(tp, RCVLPC_MODE, RCVLPC_MODE_ENABLE, silent);
7642 err |= tg3_stop_block(tp, RCVLSC_MODE, RCVLSC_MODE_ENABLE, silent);
7643 err |= tg3_stop_block(tp, RCVDBDI_MODE, RCVDBDI_MODE_ENABLE, silent);
7644 err |= tg3_stop_block(tp, RCVDCC_MODE, RCVDCC_MODE_ENABLE, silent);
7645 err |= tg3_stop_block(tp, RCVCC_MODE, RCVCC_MODE_ENABLE, silent);
7646
7647 err |= tg3_stop_block(tp, SNDBDS_MODE, SNDBDS_MODE_ENABLE, silent);
7648 err |= tg3_stop_block(tp, SNDBDI_MODE, SNDBDI_MODE_ENABLE, silent);
7649 err |= tg3_stop_block(tp, SNDDATAI_MODE, SNDDATAI_MODE_ENABLE, silent);
7650 err |= tg3_stop_block(tp, RDMAC_MODE, RDMAC_MODE_ENABLE, silent);
7651 err |= tg3_stop_block(tp, SNDDATAC_MODE, SNDDATAC_MODE_ENABLE, silent);
7652 err |= tg3_stop_block(tp, DMAC_MODE, DMAC_MODE_ENABLE, silent);
7653 err |= tg3_stop_block(tp, SNDBDC_MODE, SNDBDC_MODE_ENABLE, silent);
1da177e4
LT
7654
7655 tp->mac_mode &= ~MAC_MODE_TDE_ENABLE;
7656 tw32_f(MAC_MODE, tp->mac_mode);
7657 udelay(40);
7658
7659 tp->tx_mode &= ~TX_MODE_ENABLE;
7660 tw32_f(MAC_TX_MODE, tp->tx_mode);
7661
7662 for (i = 0; i < MAX_WAIT_CNT; i++) {
7663 udelay(100);
7664 if (!(tr32(MAC_TX_MODE) & TX_MODE_ENABLE))
7665 break;
7666 }
7667 if (i >= MAX_WAIT_CNT) {
ab96b241
MC
7668 dev_err(&tp->pdev->dev,
7669 "%s timed out, TX_MODE_ENABLE will not clear "
7670 "MAC_TX_MODE=%08x\n", __func__, tr32(MAC_TX_MODE));
e6de8ad1 7671 err |= -ENODEV;
1da177e4
LT
7672 }
7673
e6de8ad1 7674 err |= tg3_stop_block(tp, HOSTCC_MODE, HOSTCC_MODE_ENABLE, silent);
b3b7d6be
DM
7675 err |= tg3_stop_block(tp, WDMAC_MODE, WDMAC_MODE_ENABLE, silent);
7676 err |= tg3_stop_block(tp, MBFREE_MODE, MBFREE_MODE_ENABLE, silent);
1da177e4
LT
7677
7678 tw32(FTQ_RESET, 0xffffffff);
7679 tw32(FTQ_RESET, 0x00000000);
7680
b3b7d6be
DM
7681 err |= tg3_stop_block(tp, BUFMGR_MODE, BUFMGR_MODE_ENABLE, silent);
7682 err |= tg3_stop_block(tp, MEMARB_MODE, MEMARB_MODE_ENABLE, silent);
1da177e4 7683
f77a6a8e
MC
7684 for (i = 0; i < tp->irq_cnt; i++) {
7685 struct tg3_napi *tnapi = &tp->napi[i];
7686 if (tnapi->hw_status)
7687 memset(tnapi->hw_status, 0, TG3_HW_STATUS_SIZE);
7688 }
1da177e4 7689
1da177e4
LT
7690 return err;
7691}
7692
ee6a99b5
MC
7693/* Save PCI command register before chip reset */
7694static void tg3_save_pci_state(struct tg3 *tp)
7695{
8a6eac90 7696 pci_read_config_word(tp->pdev, PCI_COMMAND, &tp->pci_cmd);
ee6a99b5
MC
7697}
7698
7699/* Restore PCI state after chip reset */
7700static void tg3_restore_pci_state(struct tg3 *tp)
7701{
7702 u32 val;
7703
7704 /* Re-enable indirect register accesses. */
7705 pci_write_config_dword(tp->pdev, TG3PCI_MISC_HOST_CTRL,
7706 tp->misc_host_ctrl);
7707
7708 /* Set MAX PCI retry to zero. */
7709 val = (PCISTATE_ROM_ENABLE | PCISTATE_ROM_RETRY_ENABLE);
7710 if (tp->pci_chip_rev_id == CHIPREV_ID_5704_A0 &&
63c3a66f 7711 tg3_flag(tp, PCIX_MODE))
ee6a99b5 7712 val |= PCISTATE_RETRY_SAME_DMA;
0d3031d9 7713 /* Allow reads and writes to the APE register and memory space. */
63c3a66f 7714 if (tg3_flag(tp, ENABLE_APE))
0d3031d9 7715 val |= PCISTATE_ALLOW_APE_CTLSPC_WR |
f92d9dc1
MC
7716 PCISTATE_ALLOW_APE_SHMEM_WR |
7717 PCISTATE_ALLOW_APE_PSPACE_WR;
ee6a99b5
MC
7718 pci_write_config_dword(tp->pdev, TG3PCI_PCISTATE, val);
7719
8a6eac90 7720 pci_write_config_word(tp->pdev, PCI_COMMAND, tp->pci_cmd);
ee6a99b5 7721
2c55a3d0
MC
7722 if (!tg3_flag(tp, PCI_EXPRESS)) {
7723 pci_write_config_byte(tp->pdev, PCI_CACHE_LINE_SIZE,
7724 tp->pci_cacheline_sz);
7725 pci_write_config_byte(tp->pdev, PCI_LATENCY_TIMER,
7726 tp->pci_lat_timer);
114342f2 7727 }
5f5c51e3 7728
ee6a99b5 7729 /* Make sure PCI-X relaxed ordering bit is clear. */
63c3a66f 7730 if (tg3_flag(tp, PCIX_MODE)) {
9974a356
MC
7731 u16 pcix_cmd;
7732
7733 pci_read_config_word(tp->pdev, tp->pcix_cap + PCI_X_CMD,
7734 &pcix_cmd);
7735 pcix_cmd &= ~PCI_X_CMD_ERO;
7736 pci_write_config_word(tp->pdev, tp->pcix_cap + PCI_X_CMD,
7737 pcix_cmd);
7738 }
ee6a99b5 7739
63c3a66f 7740 if (tg3_flag(tp, 5780_CLASS)) {
ee6a99b5
MC
7741
7742 /* Chip reset on 5780 will reset MSI enable bit,
7743 * so need to restore it.
7744 */
63c3a66f 7745 if (tg3_flag(tp, USING_MSI)) {
ee6a99b5
MC
7746 u16 ctrl;
7747
7748 pci_read_config_word(tp->pdev,
7749 tp->msi_cap + PCI_MSI_FLAGS,
7750 &ctrl);
7751 pci_write_config_word(tp->pdev,
7752 tp->msi_cap + PCI_MSI_FLAGS,
7753 ctrl | PCI_MSI_FLAGS_ENABLE);
7754 val = tr32(MSGINT_MODE);
7755 tw32(MSGINT_MODE, val | MSGINT_MODE_ENABLE);
7756 }
7757 }
7758}
7759
1da177e4
LT
7760/* tp->lock is held. */
7761static int tg3_chip_reset(struct tg3 *tp)
7762{
7763 u32 val;
1ee582d8 7764 void (*write_op)(struct tg3 *, u32, u32);
4f125f42 7765 int i, err;
1da177e4 7766
f49639e6
DM
7767 tg3_nvram_lock(tp);
7768
77b483f1
MC
7769 tg3_ape_lock(tp, TG3_APE_LOCK_GRC);
7770
f49639e6
DM
7771 /* No matching tg3_nvram_unlock() after this because
7772 * chip reset below will undo the nvram lock.
7773 */
7774 tp->nvram_lock_cnt = 0;
1da177e4 7775
ee6a99b5
MC
7776 /* GRC_MISC_CFG core clock reset will clear the memory
7777 * enable bit in PCI register 4 and the MSI enable bit
7778 * on some chips, so we save relevant registers here.
7779 */
7780 tg3_save_pci_state(tp);
7781
d9ab5ad1 7782 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5752 ||
63c3a66f 7783 tg3_flag(tp, 5755_PLUS))
d9ab5ad1
MC
7784 tw32(GRC_FASTBOOT_PC, 0);
7785
1da177e4
LT
7786 /*
7787 * We must avoid the readl() that normally takes place.
7788 * It locks machines, causes machine checks, and other
7789 * fun things. So, temporarily disable the 5701
7790 * hardware workaround, while we do the reset.
7791 */
1ee582d8
MC
7792 write_op = tp->write32;
7793 if (write_op == tg3_write_flush_reg32)
7794 tp->write32 = tg3_write32;
1da177e4 7795
d18edcb2
MC
7796 /* Prevent the irq handler from reading or writing PCI registers
7797 * during chip reset when the memory enable bit in the PCI command
7798 * register may be cleared. The chip does not generate interrupt
7799 * at this time, but the irq handler may still be called due to irq
7800 * sharing or irqpoll.
7801 */
63c3a66f 7802 tg3_flag_set(tp, CHIP_RESETTING);
f77a6a8e
MC
7803 for (i = 0; i < tp->irq_cnt; i++) {
7804 struct tg3_napi *tnapi = &tp->napi[i];
7805 if (tnapi->hw_status) {
7806 tnapi->hw_status->status = 0;
7807 tnapi->hw_status->status_tag = 0;
7808 }
7809 tnapi->last_tag = 0;
7810 tnapi->last_irq_tag = 0;
b8fa2f3a 7811 }
d18edcb2 7812 smp_mb();
4f125f42
MC
7813
7814 for (i = 0; i < tp->irq_cnt; i++)
7815 synchronize_irq(tp->napi[i].irq_vec);
d18edcb2 7816
255ca311
MC
7817 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_57780) {
7818 val = tr32(TG3_PCIE_LNKCTL) & ~TG3_PCIE_LNKCTL_L1_PLL_PD_EN;
7819 tw32(TG3_PCIE_LNKCTL, val | TG3_PCIE_LNKCTL_L1_PLL_PD_DIS);
7820 }
7821
1da177e4
LT
7822 /* do the reset */
7823 val = GRC_MISC_CFG_CORECLK_RESET;
7824
63c3a66f 7825 if (tg3_flag(tp, PCI_EXPRESS)) {
88075d91
MC
7826 /* Force PCIe 1.0a mode */
7827 if (GET_ASIC_REV(tp->pci_chip_rev_id) != ASIC_REV_5785 &&
63c3a66f 7828 !tg3_flag(tp, 57765_PLUS) &&
88075d91
MC
7829 tr32(TG3_PCIE_PHY_TSTCTL) ==
7830 (TG3_PCIE_PHY_TSTCTL_PCIE10 | TG3_PCIE_PHY_TSTCTL_PSCRAM))
7831 tw32(TG3_PCIE_PHY_TSTCTL, TG3_PCIE_PHY_TSTCTL_PSCRAM);
7832
1da177e4
LT
7833 if (tp->pci_chip_rev_id != CHIPREV_ID_5750_A0) {
7834 tw32(GRC_MISC_CFG, (1 << 29));
7835 val |= (1 << 29);
7836 }
7837 }
7838
b5d3772c
MC
7839 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5906) {
7840 tw32(VCPU_STATUS, tr32(VCPU_STATUS) | VCPU_STATUS_DRV_RESET);
7841 tw32(GRC_VCPU_EXT_CTRL,
7842 tr32(GRC_VCPU_EXT_CTRL) & ~GRC_VCPU_EXT_CTRL_HALT_CPU);
7843 }
7844
f37500d3 7845 /* Manage gphy power for all CPMU absent PCIe devices. */
63c3a66f 7846 if (tg3_flag(tp, 5705_PLUS) && !tg3_flag(tp, CPMU_PRESENT))
1da177e4 7847 val |= GRC_MISC_CFG_KEEP_GPHY_POWER;
f37500d3 7848
1da177e4
LT
7849 tw32(GRC_MISC_CFG, val);
7850
1ee582d8
MC
7851 /* restore 5701 hardware bug workaround write method */
7852 tp->write32 = write_op;
1da177e4
LT
7853
7854 /* Unfortunately, we have to delay before the PCI read back.
7855 * Some 575X chips even will not respond to a PCI cfg access
7856 * when the reset command is given to the chip.
7857 *
7858 * How do these hardware designers expect things to work
7859 * properly if the PCI write is posted for a long period
7860 * of time? It is always necessary to have some method by
7861 * which a register read back can occur to push the write
7862 * out which does the reset.
7863 *
7864 * For most tg3 variants the trick below was working.
7865 * Ho hum...
7866 */
7867 udelay(120);
7868
7869 /* Flush PCI posted writes. The normal MMIO registers
7870 * are inaccessible at this time so this is the only
7871 * way to make this reliably (actually, this is no longer
7872 * the case, see above). I tried to use indirect
7873 * register read/write but this upset some 5701 variants.
7874 */
7875 pci_read_config_dword(tp->pdev, PCI_COMMAND, &val);
7876
7877 udelay(120);
7878
708ebb3a 7879 if (tg3_flag(tp, PCI_EXPRESS) && pci_pcie_cap(tp->pdev)) {
e7126997
MC
7880 u16 val16;
7881
1da177e4
LT
7882 if (tp->pci_chip_rev_id == CHIPREV_ID_5750_A0) {
7883 int i;
7884 u32 cfg_val;
7885
7886 /* Wait for link training to complete. */
7887 for (i = 0; i < 5000; i++)
7888 udelay(100);
7889
7890 pci_read_config_dword(tp->pdev, 0xc4, &cfg_val);
7891 pci_write_config_dword(tp->pdev, 0xc4,
7892 cfg_val | (1 << 15));
7893 }
5e7dfd0f 7894
e7126997
MC
7895 /* Clear the "no snoop" and "relaxed ordering" bits. */
7896 pci_read_config_word(tp->pdev,
708ebb3a 7897 pci_pcie_cap(tp->pdev) + PCI_EXP_DEVCTL,
e7126997
MC
7898 &val16);
7899 val16 &= ~(PCI_EXP_DEVCTL_RELAX_EN |
7900 PCI_EXP_DEVCTL_NOSNOOP_EN);
7901 /*
7902 * Older PCIe devices only support the 128 byte
7903 * MPS setting. Enforce the restriction.
5e7dfd0f 7904 */
63c3a66f 7905 if (!tg3_flag(tp, CPMU_PRESENT))
e7126997 7906 val16 &= ~PCI_EXP_DEVCTL_PAYLOAD;
5e7dfd0f 7907 pci_write_config_word(tp->pdev,
708ebb3a 7908 pci_pcie_cap(tp->pdev) + PCI_EXP_DEVCTL,
e7126997 7909 val16);
5e7dfd0f 7910
5e7dfd0f
MC
7911 /* Clear error status */
7912 pci_write_config_word(tp->pdev,
708ebb3a 7913 pci_pcie_cap(tp->pdev) + PCI_EXP_DEVSTA,
5e7dfd0f
MC
7914 PCI_EXP_DEVSTA_CED |
7915 PCI_EXP_DEVSTA_NFED |
7916 PCI_EXP_DEVSTA_FED |
7917 PCI_EXP_DEVSTA_URD);
1da177e4
LT
7918 }
7919
ee6a99b5 7920 tg3_restore_pci_state(tp);
1da177e4 7921
63c3a66f
JP
7922 tg3_flag_clear(tp, CHIP_RESETTING);
7923 tg3_flag_clear(tp, ERROR_PROCESSED);
d18edcb2 7924
ee6a99b5 7925 val = 0;
63c3a66f 7926 if (tg3_flag(tp, 5780_CLASS))
4cf78e4f 7927 val = tr32(MEMARB_MODE);
ee6a99b5 7928 tw32(MEMARB_MODE, val | MEMARB_MODE_ENABLE);
1da177e4
LT
7929
7930 if (tp->pci_chip_rev_id == CHIPREV_ID_5750_A3) {
7931 tg3_stop_fw(tp);
7932 tw32(0x5000, 0x400);
7933 }
7934
7935 tw32(GRC_MODE, tp->grc_mode);
7936
7937 if (tp->pci_chip_rev_id == CHIPREV_ID_5705_A0) {
ab0049b4 7938 val = tr32(0xc4);
1da177e4
LT
7939
7940 tw32(0xc4, val | (1 << 15));
7941 }
7942
7943 if ((tp->nic_sram_data_cfg & NIC_SRAM_DATA_CFG_MINI_PCI) != 0 &&
7944 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5705) {
7945 tp->pci_clock_ctrl |= CLOCK_CTRL_CLKRUN_OENABLE;
7946 if (tp->pci_chip_rev_id == CHIPREV_ID_5705_A0)
7947 tp->pci_clock_ctrl |= CLOCK_CTRL_FORCE_CLKRUN;
7948 tw32(TG3PCI_CLOCK_CTRL, tp->pci_clock_ctrl);
7949 }
7950
f07e9af3 7951 if (tp->phy_flags & TG3_PHYFLG_PHY_SERDES) {
9e975cc2 7952 tp->mac_mode = MAC_MODE_PORT_MODE_TBI;
d2394e6b 7953 val = tp->mac_mode;
f07e9af3 7954 } else if (tp->phy_flags & TG3_PHYFLG_MII_SERDES) {
9e975cc2 7955 tp->mac_mode = MAC_MODE_PORT_MODE_GMII;
d2394e6b 7956 val = tp->mac_mode;
1da177e4 7957 } else
d2394e6b
MC
7958 val = 0;
7959
7960 tw32_f(MAC_MODE, val);
1da177e4
LT
7961 udelay(40);
7962
77b483f1
MC
7963 tg3_ape_unlock(tp, TG3_APE_LOCK_GRC);
7964
7a6f4369
MC
7965 err = tg3_poll_fw(tp);
7966 if (err)
7967 return err;
1da177e4 7968
0a9140cf
MC
7969 tg3_mdio_start(tp);
7970
63c3a66f 7971 if (tg3_flag(tp, PCI_EXPRESS) &&
f6eb9b1f
MC
7972 tp->pci_chip_rev_id != CHIPREV_ID_5750_A0 &&
7973 GET_ASIC_REV(tp->pci_chip_rev_id) != ASIC_REV_5785 &&
63c3a66f 7974 !tg3_flag(tp, 57765_PLUS)) {
ab0049b4 7975 val = tr32(0x7c00);
1da177e4
LT
7976
7977 tw32(0x7c00, val | (1 << 25));
7978 }
7979
d78b59f5
MC
7980 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5720) {
7981 val = tr32(TG3_CPMU_CLCK_ORIDE);
7982 tw32(TG3_CPMU_CLCK_ORIDE, val & ~CPMU_CLCK_ORIDE_MAC_ORIDE_EN);
7983 }
7984
1da177e4 7985 /* Reprobe ASF enable state. */
63c3a66f
JP
7986 tg3_flag_clear(tp, ENABLE_ASF);
7987 tg3_flag_clear(tp, ASF_NEW_HANDSHAKE);
1da177e4
LT
7988 tg3_read_mem(tp, NIC_SRAM_DATA_SIG, &val);
7989 if (val == NIC_SRAM_DATA_SIG_MAGIC) {
7990 u32 nic_cfg;
7991
7992 tg3_read_mem(tp, NIC_SRAM_DATA_CFG, &nic_cfg);
7993 if (nic_cfg & NIC_SRAM_DATA_CFG_ASF_ENABLE) {
63c3a66f 7994 tg3_flag_set(tp, ENABLE_ASF);
4ba526ce 7995 tp->last_event_jiffies = jiffies;
63c3a66f
JP
7996 if (tg3_flag(tp, 5750_PLUS))
7997 tg3_flag_set(tp, ASF_NEW_HANDSHAKE);
1da177e4
LT
7998 }
7999 }
8000
8001 return 0;
8002}
8003
65ec698d
MC
8004static void tg3_get_nstats(struct tg3 *, struct rtnl_link_stats64 *);
8005static void tg3_get_estats(struct tg3 *, struct tg3_ethtool_stats *);
92feeabf 8006
1da177e4 8007/* tp->lock is held. */
944d980e 8008static int tg3_halt(struct tg3 *tp, int kind, int silent)
1da177e4
LT
8009{
8010 int err;
8011
8012 tg3_stop_fw(tp);
8013
944d980e 8014 tg3_write_sig_pre_reset(tp, kind);
1da177e4 8015
b3b7d6be 8016 tg3_abort_hw(tp, silent);
1da177e4
LT
8017 err = tg3_chip_reset(tp);
8018
daba2a63
MC
8019 __tg3_set_mac_addr(tp, 0);
8020
944d980e
MC
8021 tg3_write_sig_legacy(tp, kind);
8022 tg3_write_sig_post_reset(tp, kind);
1da177e4 8023
92feeabf
MC
8024 if (tp->hw_stats) {
8025 /* Save the stats across chip resets... */
b4017c53 8026 tg3_get_nstats(tp, &tp->net_stats_prev);
92feeabf
MC
8027 tg3_get_estats(tp, &tp->estats_prev);
8028
8029 /* And make sure the next sample is new data */
8030 memset(tp->hw_stats, 0, sizeof(struct tg3_hw_stats));
8031 }
8032
1da177e4
LT
8033 if (err)
8034 return err;
8035
8036 return 0;
8037}
8038
1da177e4
LT
8039static int tg3_set_mac_addr(struct net_device *dev, void *p)
8040{
8041 struct tg3 *tp = netdev_priv(dev);
8042 struct sockaddr *addr = p;
986e0aeb 8043 int err = 0, skip_mac_1 = 0;
1da177e4 8044
f9804ddb 8045 if (!is_valid_ether_addr(addr->sa_data))
504f9b5a 8046 return -EADDRNOTAVAIL;
f9804ddb 8047
1da177e4
LT
8048 memcpy(dev->dev_addr, addr->sa_data, dev->addr_len);
8049
e75f7c90
MC
8050 if (!netif_running(dev))
8051 return 0;
8052
63c3a66f 8053 if (tg3_flag(tp, ENABLE_ASF)) {
986e0aeb 8054 u32 addr0_high, addr0_low, addr1_high, addr1_low;
58712ef9 8055
986e0aeb
MC
8056 addr0_high = tr32(MAC_ADDR_0_HIGH);
8057 addr0_low = tr32(MAC_ADDR_0_LOW);
8058 addr1_high = tr32(MAC_ADDR_1_HIGH);
8059 addr1_low = tr32(MAC_ADDR_1_LOW);
8060
8061 /* Skip MAC addr 1 if ASF is using it. */
8062 if ((addr0_high != addr1_high || addr0_low != addr1_low) &&
8063 !(addr1_high == 0 && addr1_low == 0))
8064 skip_mac_1 = 1;
58712ef9 8065 }
986e0aeb
MC
8066 spin_lock_bh(&tp->lock);
8067 __tg3_set_mac_addr(tp, skip_mac_1);
8068 spin_unlock_bh(&tp->lock);
1da177e4 8069
b9ec6c1b 8070 return err;
1da177e4
LT
8071}
8072
8073/* tp->lock is held. */
8074static void tg3_set_bdinfo(struct tg3 *tp, u32 bdinfo_addr,
8075 dma_addr_t mapping, u32 maxlen_flags,
8076 u32 nic_addr)
8077{
8078 tg3_write_mem(tp,
8079 (bdinfo_addr + TG3_BDINFO_HOST_ADDR + TG3_64BIT_REG_HIGH),
8080 ((u64) mapping >> 32));
8081 tg3_write_mem(tp,
8082 (bdinfo_addr + TG3_BDINFO_HOST_ADDR + TG3_64BIT_REG_LOW),
8083 ((u64) mapping & 0xffffffff));
8084 tg3_write_mem(tp,
8085 (bdinfo_addr + TG3_BDINFO_MAXLEN_FLAGS),
8086 maxlen_flags);
8087
63c3a66f 8088 if (!tg3_flag(tp, 5705_PLUS))
1da177e4
LT
8089 tg3_write_mem(tp,
8090 (bdinfo_addr + TG3_BDINFO_NIC_ADDR),
8091 nic_addr);
8092}
8093
d244c892 8094static void __tg3_set_coalesce(struct tg3 *tp, struct ethtool_coalesce *ec)
15f9850d 8095{
b6080e12
MC
8096 int i;
8097
63c3a66f 8098 if (!tg3_flag(tp, ENABLE_TSS)) {
b6080e12
MC
8099 tw32(HOSTCC_TXCOL_TICKS, ec->tx_coalesce_usecs);
8100 tw32(HOSTCC_TXMAX_FRAMES, ec->tx_max_coalesced_frames);
8101 tw32(HOSTCC_TXCOAL_MAXF_INT, ec->tx_max_coalesced_frames_irq);
b6080e12
MC
8102 } else {
8103 tw32(HOSTCC_TXCOL_TICKS, 0);
8104 tw32(HOSTCC_TXMAX_FRAMES, 0);
8105 tw32(HOSTCC_TXCOAL_MAXF_INT, 0);
19cfaecc 8106 }
b6080e12 8107
63c3a66f 8108 if (!tg3_flag(tp, ENABLE_RSS)) {
19cfaecc
MC
8109 tw32(HOSTCC_RXCOL_TICKS, ec->rx_coalesce_usecs);
8110 tw32(HOSTCC_RXMAX_FRAMES, ec->rx_max_coalesced_frames);
8111 tw32(HOSTCC_RXCOAL_MAXF_INT, ec->rx_max_coalesced_frames_irq);
8112 } else {
b6080e12
MC
8113 tw32(HOSTCC_RXCOL_TICKS, 0);
8114 tw32(HOSTCC_RXMAX_FRAMES, 0);
8115 tw32(HOSTCC_RXCOAL_MAXF_INT, 0);
15f9850d 8116 }
b6080e12 8117
63c3a66f 8118 if (!tg3_flag(tp, 5705_PLUS)) {
15f9850d
DM
8119 u32 val = ec->stats_block_coalesce_usecs;
8120
b6080e12
MC
8121 tw32(HOSTCC_RXCOAL_TICK_INT, ec->rx_coalesce_usecs_irq);
8122 tw32(HOSTCC_TXCOAL_TICK_INT, ec->tx_coalesce_usecs_irq);
8123
15f9850d
DM
8124 if (!netif_carrier_ok(tp->dev))
8125 val = 0;
8126
8127 tw32(HOSTCC_STAT_COAL_TICKS, val);
8128 }
b6080e12
MC
8129
8130 for (i = 0; i < tp->irq_cnt - 1; i++) {
8131 u32 reg;
8132
8133 reg = HOSTCC_RXCOL_TICKS_VEC1 + i * 0x18;
8134 tw32(reg, ec->rx_coalesce_usecs);
b6080e12
MC
8135 reg = HOSTCC_RXMAX_FRAMES_VEC1 + i * 0x18;
8136 tw32(reg, ec->rx_max_coalesced_frames);
b6080e12
MC
8137 reg = HOSTCC_RXCOAL_MAXF_INT_VEC1 + i * 0x18;
8138 tw32(reg, ec->rx_max_coalesced_frames_irq);
19cfaecc 8139
63c3a66f 8140 if (tg3_flag(tp, ENABLE_TSS)) {
19cfaecc
MC
8141 reg = HOSTCC_TXCOL_TICKS_VEC1 + i * 0x18;
8142 tw32(reg, ec->tx_coalesce_usecs);
8143 reg = HOSTCC_TXMAX_FRAMES_VEC1 + i * 0x18;
8144 tw32(reg, ec->tx_max_coalesced_frames);
8145 reg = HOSTCC_TXCOAL_MAXF_INT_VEC1 + i * 0x18;
8146 tw32(reg, ec->tx_max_coalesced_frames_irq);
8147 }
b6080e12
MC
8148 }
8149
8150 for (; i < tp->irq_max - 1; i++) {
8151 tw32(HOSTCC_RXCOL_TICKS_VEC1 + i * 0x18, 0);
b6080e12 8152 tw32(HOSTCC_RXMAX_FRAMES_VEC1 + i * 0x18, 0);
b6080e12 8153 tw32(HOSTCC_RXCOAL_MAXF_INT_VEC1 + i * 0x18, 0);
19cfaecc 8154
63c3a66f 8155 if (tg3_flag(tp, ENABLE_TSS)) {
19cfaecc
MC
8156 tw32(HOSTCC_TXCOL_TICKS_VEC1 + i * 0x18, 0);
8157 tw32(HOSTCC_TXMAX_FRAMES_VEC1 + i * 0x18, 0);
8158 tw32(HOSTCC_TXCOAL_MAXF_INT_VEC1 + i * 0x18, 0);
8159 }
b6080e12 8160 }
15f9850d 8161}
1da177e4 8162
2d31ecaf
MC
8163/* tp->lock is held. */
8164static void tg3_rings_reset(struct tg3 *tp)
8165{
8166 int i;
f77a6a8e 8167 u32 stblk, txrcb, rxrcb, limit;
2d31ecaf
MC
8168 struct tg3_napi *tnapi = &tp->napi[0];
8169
8170 /* Disable all transmit rings but the first. */
63c3a66f 8171 if (!tg3_flag(tp, 5705_PLUS))
2d31ecaf 8172 limit = NIC_SRAM_SEND_RCB + TG3_BDINFO_SIZE * 16;
63c3a66f 8173 else if (tg3_flag(tp, 5717_PLUS))
3d37728b 8174 limit = NIC_SRAM_SEND_RCB + TG3_BDINFO_SIZE * 4;
55086ad9 8175 else if (tg3_flag(tp, 57765_CLASS))
b703df6f 8176 limit = NIC_SRAM_SEND_RCB + TG3_BDINFO_SIZE * 2;
2d31ecaf
MC
8177 else
8178 limit = NIC_SRAM_SEND_RCB + TG3_BDINFO_SIZE;
8179
8180 for (txrcb = NIC_SRAM_SEND_RCB + TG3_BDINFO_SIZE;
8181 txrcb < limit; txrcb += TG3_BDINFO_SIZE)
8182 tg3_write_mem(tp, txrcb + TG3_BDINFO_MAXLEN_FLAGS,
8183 BDINFO_FLAGS_DISABLED);
8184
8185
8186 /* Disable all receive return rings but the first. */
63c3a66f 8187 if (tg3_flag(tp, 5717_PLUS))
f6eb9b1f 8188 limit = NIC_SRAM_RCV_RET_RCB + TG3_BDINFO_SIZE * 17;
63c3a66f 8189 else if (!tg3_flag(tp, 5705_PLUS))
2d31ecaf 8190 limit = NIC_SRAM_RCV_RET_RCB + TG3_BDINFO_SIZE * 16;
b703df6f 8191 else if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5755 ||
55086ad9 8192 tg3_flag(tp, 57765_CLASS))
2d31ecaf
MC
8193 limit = NIC_SRAM_RCV_RET_RCB + TG3_BDINFO_SIZE * 4;
8194 else
8195 limit = NIC_SRAM_RCV_RET_RCB + TG3_BDINFO_SIZE;
8196
8197 for (rxrcb = NIC_SRAM_RCV_RET_RCB + TG3_BDINFO_SIZE;
8198 rxrcb < limit; rxrcb += TG3_BDINFO_SIZE)
8199 tg3_write_mem(tp, rxrcb + TG3_BDINFO_MAXLEN_FLAGS,
8200 BDINFO_FLAGS_DISABLED);
8201
8202 /* Disable interrupts */
8203 tw32_mailbox_f(tp->napi[0].int_mbox, 1);
0e6cf6a9
MC
8204 tp->napi[0].chk_msi_cnt = 0;
8205 tp->napi[0].last_rx_cons = 0;
8206 tp->napi[0].last_tx_cons = 0;
2d31ecaf
MC
8207
8208 /* Zero mailbox registers. */
63c3a66f 8209 if (tg3_flag(tp, SUPPORT_MSIX)) {
6fd45cb8 8210 for (i = 1; i < tp->irq_max; i++) {
f77a6a8e
MC
8211 tp->napi[i].tx_prod = 0;
8212 tp->napi[i].tx_cons = 0;
63c3a66f 8213 if (tg3_flag(tp, ENABLE_TSS))
c2353a32 8214 tw32_mailbox(tp->napi[i].prodmbox, 0);
f77a6a8e
MC
8215 tw32_rx_mbox(tp->napi[i].consmbox, 0);
8216 tw32_mailbox_f(tp->napi[i].int_mbox, 1);
7f230735 8217 tp->napi[i].chk_msi_cnt = 0;
0e6cf6a9
MC
8218 tp->napi[i].last_rx_cons = 0;
8219 tp->napi[i].last_tx_cons = 0;
f77a6a8e 8220 }
63c3a66f 8221 if (!tg3_flag(tp, ENABLE_TSS))
c2353a32 8222 tw32_mailbox(tp->napi[0].prodmbox, 0);
f77a6a8e
MC
8223 } else {
8224 tp->napi[0].tx_prod = 0;
8225 tp->napi[0].tx_cons = 0;
8226 tw32_mailbox(tp->napi[0].prodmbox, 0);
8227 tw32_rx_mbox(tp->napi[0].consmbox, 0);
8228 }
2d31ecaf
MC
8229
8230 /* Make sure the NIC-based send BD rings are disabled. */
63c3a66f 8231 if (!tg3_flag(tp, 5705_PLUS)) {
2d31ecaf
MC
8232 u32 mbox = MAILBOX_SNDNIC_PROD_IDX_0 + TG3_64BIT_REG_LOW;
8233 for (i = 0; i < 16; i++)
8234 tw32_tx_mbox(mbox + i * 8, 0);
8235 }
8236
8237 txrcb = NIC_SRAM_SEND_RCB;
8238 rxrcb = NIC_SRAM_RCV_RET_RCB;
8239
8240 /* Clear status block in ram. */
8241 memset(tnapi->hw_status, 0, TG3_HW_STATUS_SIZE);
8242
8243 /* Set status block DMA address */
8244 tw32(HOSTCC_STATUS_BLK_HOST_ADDR + TG3_64BIT_REG_HIGH,
8245 ((u64) tnapi->status_mapping >> 32));
8246 tw32(HOSTCC_STATUS_BLK_HOST_ADDR + TG3_64BIT_REG_LOW,
8247 ((u64) tnapi->status_mapping & 0xffffffff));
8248
f77a6a8e
MC
8249 if (tnapi->tx_ring) {
8250 tg3_set_bdinfo(tp, txrcb, tnapi->tx_desc_mapping,
8251 (TG3_TX_RING_SIZE <<
8252 BDINFO_FLAGS_MAXLEN_SHIFT),
8253 NIC_SRAM_TX_BUFFER_DESC);
8254 txrcb += TG3_BDINFO_SIZE;
8255 }
8256
8257 if (tnapi->rx_rcb) {
8258 tg3_set_bdinfo(tp, rxrcb, tnapi->rx_rcb_mapping,
7cb32cf2
MC
8259 (tp->rx_ret_ring_mask + 1) <<
8260 BDINFO_FLAGS_MAXLEN_SHIFT, 0);
f77a6a8e
MC
8261 rxrcb += TG3_BDINFO_SIZE;
8262 }
8263
8264 stblk = HOSTCC_STATBLCK_RING1;
2d31ecaf 8265
f77a6a8e
MC
8266 for (i = 1, tnapi++; i < tp->irq_cnt; i++, tnapi++) {
8267 u64 mapping = (u64)tnapi->status_mapping;
8268 tw32(stblk + TG3_64BIT_REG_HIGH, mapping >> 32);
8269 tw32(stblk + TG3_64BIT_REG_LOW, mapping & 0xffffffff);
8270
8271 /* Clear status block in ram. */
8272 memset(tnapi->hw_status, 0, TG3_HW_STATUS_SIZE);
8273
19cfaecc
MC
8274 if (tnapi->tx_ring) {
8275 tg3_set_bdinfo(tp, txrcb, tnapi->tx_desc_mapping,
8276 (TG3_TX_RING_SIZE <<
8277 BDINFO_FLAGS_MAXLEN_SHIFT),
8278 NIC_SRAM_TX_BUFFER_DESC);
8279 txrcb += TG3_BDINFO_SIZE;
8280 }
f77a6a8e
MC
8281
8282 tg3_set_bdinfo(tp, rxrcb, tnapi->rx_rcb_mapping,
7cb32cf2 8283 ((tp->rx_ret_ring_mask + 1) <<
f77a6a8e
MC
8284 BDINFO_FLAGS_MAXLEN_SHIFT), 0);
8285
8286 stblk += 8;
f77a6a8e
MC
8287 rxrcb += TG3_BDINFO_SIZE;
8288 }
2d31ecaf
MC
8289}
8290
eb07a940
MC
8291static void tg3_setup_rxbd_thresholds(struct tg3 *tp)
8292{
8293 u32 val, bdcache_maxcnt, host_rep_thresh, nic_rep_thresh;
8294
63c3a66f
JP
8295 if (!tg3_flag(tp, 5750_PLUS) ||
8296 tg3_flag(tp, 5780_CLASS) ||
eb07a940 8297 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5750 ||
513aa6ea
MC
8298 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5752 ||
8299 tg3_flag(tp, 57765_PLUS))
eb07a940
MC
8300 bdcache_maxcnt = TG3_SRAM_RX_STD_BDCACHE_SIZE_5700;
8301 else if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5755 ||
8302 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5787)
8303 bdcache_maxcnt = TG3_SRAM_RX_STD_BDCACHE_SIZE_5755;
8304 else
8305 bdcache_maxcnt = TG3_SRAM_RX_STD_BDCACHE_SIZE_5906;
8306
8307 nic_rep_thresh = min(bdcache_maxcnt / 2, tp->rx_std_max_post);
8308 host_rep_thresh = max_t(u32, tp->rx_pending / 8, 1);
8309
8310 val = min(nic_rep_thresh, host_rep_thresh);
8311 tw32(RCVBDI_STD_THRESH, val);
8312
63c3a66f 8313 if (tg3_flag(tp, 57765_PLUS))
eb07a940
MC
8314 tw32(STD_REPLENISH_LWM, bdcache_maxcnt);
8315
63c3a66f 8316 if (!tg3_flag(tp, JUMBO_CAPABLE) || tg3_flag(tp, 5780_CLASS))
eb07a940
MC
8317 return;
8318
513aa6ea 8319 bdcache_maxcnt = TG3_SRAM_RX_JMB_BDCACHE_SIZE_5700;
eb07a940
MC
8320
8321 host_rep_thresh = max_t(u32, tp->rx_jumbo_pending / 8, 1);
8322
8323 val = min(bdcache_maxcnt / 2, host_rep_thresh);
8324 tw32(RCVBDI_JUMBO_THRESH, val);
8325
63c3a66f 8326 if (tg3_flag(tp, 57765_PLUS))
eb07a940
MC
8327 tw32(JMB_REPLENISH_LWM, bdcache_maxcnt);
8328}
8329
ccd5ba9d
MC
8330static inline u32 calc_crc(unsigned char *buf, int len)
8331{
8332 u32 reg;
8333 u32 tmp;
8334 int j, k;
8335
8336 reg = 0xffffffff;
8337
8338 for (j = 0; j < len; j++) {
8339 reg ^= buf[j];
8340
8341 for (k = 0; k < 8; k++) {
8342 tmp = reg & 0x01;
8343
8344 reg >>= 1;
8345
8346 if (tmp)
8347 reg ^= 0xedb88320;
8348 }
8349 }
8350
8351 return ~reg;
8352}
8353
8354static void tg3_set_multi(struct tg3 *tp, unsigned int accept_all)
8355{
8356 /* accept or reject all multicast frames */
8357 tw32(MAC_HASH_REG_0, accept_all ? 0xffffffff : 0);
8358 tw32(MAC_HASH_REG_1, accept_all ? 0xffffffff : 0);
8359 tw32(MAC_HASH_REG_2, accept_all ? 0xffffffff : 0);
8360 tw32(MAC_HASH_REG_3, accept_all ? 0xffffffff : 0);
8361}
8362
8363static void __tg3_set_rx_mode(struct net_device *dev)
8364{
8365 struct tg3 *tp = netdev_priv(dev);
8366 u32 rx_mode;
8367
8368 rx_mode = tp->rx_mode & ~(RX_MODE_PROMISC |
8369 RX_MODE_KEEP_VLAN_TAG);
8370
8371#if !defined(CONFIG_VLAN_8021Q) && !defined(CONFIG_VLAN_8021Q_MODULE)
8372 /* When ASF is in use, we always keep the RX_MODE_KEEP_VLAN_TAG
8373 * flag clear.
8374 */
8375 if (!tg3_flag(tp, ENABLE_ASF))
8376 rx_mode |= RX_MODE_KEEP_VLAN_TAG;
8377#endif
8378
8379 if (dev->flags & IFF_PROMISC) {
8380 /* Promiscuous mode. */
8381 rx_mode |= RX_MODE_PROMISC;
8382 } else if (dev->flags & IFF_ALLMULTI) {
8383 /* Accept all multicast. */
8384 tg3_set_multi(tp, 1);
8385 } else if (netdev_mc_empty(dev)) {
8386 /* Reject all multicast. */
8387 tg3_set_multi(tp, 0);
8388 } else {
8389 /* Accept one or more multicast(s). */
8390 struct netdev_hw_addr *ha;
8391 u32 mc_filter[4] = { 0, };
8392 u32 regidx;
8393 u32 bit;
8394 u32 crc;
8395
8396 netdev_for_each_mc_addr(ha, dev) {
8397 crc = calc_crc(ha->addr, ETH_ALEN);
8398 bit = ~crc & 0x7f;
8399 regidx = (bit & 0x60) >> 5;
8400 bit &= 0x1f;
8401 mc_filter[regidx] |= (1 << bit);
8402 }
8403
8404 tw32(MAC_HASH_REG_0, mc_filter[0]);
8405 tw32(MAC_HASH_REG_1, mc_filter[1]);
8406 tw32(MAC_HASH_REG_2, mc_filter[2]);
8407 tw32(MAC_HASH_REG_3, mc_filter[3]);
8408 }
8409
8410 if (rx_mode != tp->rx_mode) {
8411 tp->rx_mode = rx_mode;
8412 tw32_f(MAC_RX_MODE, rx_mode);
8413 udelay(10);
8414 }
8415}
8416
90415477
MC
8417static void tg3_rss_init_dflt_indir_tbl(struct tg3 *tp)
8418{
8419 int i;
8420
8421 for (i = 0; i < TG3_RSS_INDIR_TBL_SIZE; i++)
8422 tp->rss_ind_tbl[i] =
8423 ethtool_rxfh_indir_default(i, tp->irq_cnt - 1);
8424}
8425
8426static void tg3_rss_check_indir_tbl(struct tg3 *tp)
bcebcc46
MC
8427{
8428 int i;
8429
8430 if (!tg3_flag(tp, SUPPORT_MSIX))
8431 return;
8432
90415477 8433 if (tp->irq_cnt <= 2) {
bcebcc46 8434 memset(&tp->rss_ind_tbl[0], 0, sizeof(tp->rss_ind_tbl));
90415477
MC
8435 return;
8436 }
8437
8438 /* Validate table against current IRQ count */
8439 for (i = 0; i < TG3_RSS_INDIR_TBL_SIZE; i++) {
8440 if (tp->rss_ind_tbl[i] >= tp->irq_cnt - 1)
8441 break;
8442 }
8443
8444 if (i != TG3_RSS_INDIR_TBL_SIZE)
8445 tg3_rss_init_dflt_indir_tbl(tp);
bcebcc46
MC
8446}
8447
90415477 8448static void tg3_rss_write_indir_tbl(struct tg3 *tp)
bcebcc46
MC
8449{
8450 int i = 0;
8451 u32 reg = MAC_RSS_INDIR_TBL_0;
8452
8453 while (i < TG3_RSS_INDIR_TBL_SIZE) {
8454 u32 val = tp->rss_ind_tbl[i];
8455 i++;
8456 for (; i % 8; i++) {
8457 val <<= 4;
8458 val |= tp->rss_ind_tbl[i];
8459 }
8460 tw32(reg, val);
8461 reg += 4;
8462 }
8463}
8464
1da177e4 8465/* tp->lock is held. */
8e7a22e3 8466static int tg3_reset_hw(struct tg3 *tp, int reset_phy)
1da177e4
LT
8467{
8468 u32 val, rdmac_mode;
8469 int i, err, limit;
8fea32b9 8470 struct tg3_rx_prodring_set *tpr = &tp->napi[0].prodring;
1da177e4
LT
8471
8472 tg3_disable_ints(tp);
8473
8474 tg3_stop_fw(tp);
8475
8476 tg3_write_sig_pre_reset(tp, RESET_KIND_INIT);
8477
63c3a66f 8478 if (tg3_flag(tp, INIT_COMPLETE))
e6de8ad1 8479 tg3_abort_hw(tp, 1);
1da177e4 8480
699c0193
MC
8481 /* Enable MAC control of LPI */
8482 if (tp->phy_flags & TG3_PHYFLG_EEE_CAP) {
8483 tw32_f(TG3_CPMU_EEE_LNKIDL_CTRL,
8484 TG3_CPMU_EEE_LNKIDL_PCIE_NL0 |
8485 TG3_CPMU_EEE_LNKIDL_UART_IDL);
8486
8487 tw32_f(TG3_CPMU_EEE_CTRL,
8488 TG3_CPMU_EEE_CTRL_EXIT_20_1_US);
8489
a386b901
MC
8490 val = TG3_CPMU_EEEMD_ERLY_L1_XIT_DET |
8491 TG3_CPMU_EEEMD_LPI_IN_TX |
8492 TG3_CPMU_EEEMD_LPI_IN_RX |
8493 TG3_CPMU_EEEMD_EEE_ENABLE;
8494
8495 if (GET_ASIC_REV(tp->pci_chip_rev_id) != ASIC_REV_5717)
8496 val |= TG3_CPMU_EEEMD_SND_IDX_DET_EN;
8497
63c3a66f 8498 if (tg3_flag(tp, ENABLE_APE))
a386b901
MC
8499 val |= TG3_CPMU_EEEMD_APE_TX_DET_EN;
8500
8501 tw32_f(TG3_CPMU_EEE_MODE, val);
8502
8503 tw32_f(TG3_CPMU_EEE_DBTMR1,
8504 TG3_CPMU_DBTMR1_PCIEXIT_2047US |
8505 TG3_CPMU_DBTMR1_LNKIDLE_2047US);
8506
8507 tw32_f(TG3_CPMU_EEE_DBTMR2,
d7f2ab20 8508 TG3_CPMU_DBTMR2_APE_TX_2047US |
a386b901 8509 TG3_CPMU_DBTMR2_TXIDXEQ_2047US);
699c0193
MC
8510 }
8511
603f1173 8512 if (reset_phy)
d4d2c558
MC
8513 tg3_phy_reset(tp);
8514
1da177e4
LT
8515 err = tg3_chip_reset(tp);
8516 if (err)
8517 return err;
8518
8519 tg3_write_sig_legacy(tp, RESET_KIND_INIT);
8520
bcb37f6c 8521 if (GET_CHIP_REV(tp->pci_chip_rev_id) == CHIPREV_5784_AX) {
d30cdd28
MC
8522 val = tr32(TG3_CPMU_CTRL);
8523 val &= ~(CPMU_CTRL_LINK_AWARE_MODE | CPMU_CTRL_LINK_IDLE_MODE);
8524 tw32(TG3_CPMU_CTRL, val);
9acb961e
MC
8525
8526 val = tr32(TG3_CPMU_LSPD_10MB_CLK);
8527 val &= ~CPMU_LSPD_10MB_MACCLK_MASK;
8528 val |= CPMU_LSPD_10MB_MACCLK_6_25;
8529 tw32(TG3_CPMU_LSPD_10MB_CLK, val);
8530
8531 val = tr32(TG3_CPMU_LNK_AWARE_PWRMD);
8532 val &= ~CPMU_LNK_AWARE_MACCLK_MASK;
8533 val |= CPMU_LNK_AWARE_MACCLK_6_25;
8534 tw32(TG3_CPMU_LNK_AWARE_PWRMD, val);
8535
8536 val = tr32(TG3_CPMU_HST_ACC);
8537 val &= ~CPMU_HST_ACC_MACCLK_MASK;
8538 val |= CPMU_HST_ACC_MACCLK_6_25;
8539 tw32(TG3_CPMU_HST_ACC, val);
d30cdd28
MC
8540 }
8541
33466d93
MC
8542 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_57780) {
8543 val = tr32(PCIE_PWR_MGMT_THRESH) & ~PCIE_PWR_MGMT_L1_THRESH_MSK;
8544 val |= PCIE_PWR_MGMT_EXT_ASPM_TMR_EN |
8545 PCIE_PWR_MGMT_L1_THRESH_4MS;
8546 tw32(PCIE_PWR_MGMT_THRESH, val);
521e6b90
MC
8547
8548 val = tr32(TG3_PCIE_EIDLE_DELAY) & ~TG3_PCIE_EIDLE_DELAY_MASK;
8549 tw32(TG3_PCIE_EIDLE_DELAY, val | TG3_PCIE_EIDLE_DELAY_13_CLKS);
8550
8551 tw32(TG3_CORR_ERR_STAT, TG3_CORR_ERR_STAT_CLEAR);
33466d93 8552
f40386c8
MC
8553 val = tr32(TG3_PCIE_LNKCTL) & ~TG3_PCIE_LNKCTL_L1_PLL_PD_EN;
8554 tw32(TG3_PCIE_LNKCTL, val | TG3_PCIE_LNKCTL_L1_PLL_PD_DIS);
255ca311
MC
8555 }
8556
63c3a66f 8557 if (tg3_flag(tp, L1PLLPD_EN)) {
614b0590
MC
8558 u32 grc_mode = tr32(GRC_MODE);
8559
8560 /* Access the lower 1K of PL PCIE block registers. */
8561 val = grc_mode & ~GRC_MODE_PCIE_PORT_MASK;
8562 tw32(GRC_MODE, val | GRC_MODE_PCIE_PL_SEL);
8563
8564 val = tr32(TG3_PCIE_TLDLPL_PORT + TG3_PCIE_PL_LO_PHYCTL1);
8565 tw32(TG3_PCIE_TLDLPL_PORT + TG3_PCIE_PL_LO_PHYCTL1,
8566 val | TG3_PCIE_PL_LO_PHYCTL1_L1PLLPD_EN);
8567
8568 tw32(GRC_MODE, grc_mode);
8569 }
8570
55086ad9 8571 if (tg3_flag(tp, 57765_CLASS)) {
5093eedc
MC
8572 if (tp->pci_chip_rev_id == CHIPREV_ID_57765_A0) {
8573 u32 grc_mode = tr32(GRC_MODE);
cea46462 8574
5093eedc
MC
8575 /* Access the lower 1K of PL PCIE block registers. */
8576 val = grc_mode & ~GRC_MODE_PCIE_PORT_MASK;
8577 tw32(GRC_MODE, val | GRC_MODE_PCIE_PL_SEL);
cea46462 8578
5093eedc
MC
8579 val = tr32(TG3_PCIE_TLDLPL_PORT +
8580 TG3_PCIE_PL_LO_PHYCTL5);
8581 tw32(TG3_PCIE_TLDLPL_PORT + TG3_PCIE_PL_LO_PHYCTL5,
8582 val | TG3_PCIE_PL_LO_PHYCTL5_DIS_L2CLKREQ);
cea46462 8583
5093eedc
MC
8584 tw32(GRC_MODE, grc_mode);
8585 }
a977dbe8 8586
1ff30a59
MC
8587 if (GET_CHIP_REV(tp->pci_chip_rev_id) != CHIPREV_57765_AX) {
8588 u32 grc_mode = tr32(GRC_MODE);
8589
8590 /* Access the lower 1K of DL PCIE block registers. */
8591 val = grc_mode & ~GRC_MODE_PCIE_PORT_MASK;
8592 tw32(GRC_MODE, val | GRC_MODE_PCIE_DL_SEL);
8593
8594 val = tr32(TG3_PCIE_TLDLPL_PORT +
8595 TG3_PCIE_DL_LO_FTSMAX);
8596 val &= ~TG3_PCIE_DL_LO_FTSMAX_MSK;
8597 tw32(TG3_PCIE_TLDLPL_PORT + TG3_PCIE_DL_LO_FTSMAX,
8598 val | TG3_PCIE_DL_LO_FTSMAX_VAL);
8599
8600 tw32(GRC_MODE, grc_mode);
8601 }
8602
a977dbe8
MC
8603 val = tr32(TG3_CPMU_LSPD_10MB_CLK);
8604 val &= ~CPMU_LSPD_10MB_MACCLK_MASK;
8605 val |= CPMU_LSPD_10MB_MACCLK_6_25;
8606 tw32(TG3_CPMU_LSPD_10MB_CLK, val);
cea46462
MC
8607 }
8608
1da177e4
LT
8609 /* This works around an issue with Athlon chipsets on
8610 * B3 tigon3 silicon. This bit has no effect on any
8611 * other revision. But do not set this on PCI Express
795d01c5 8612 * chips and don't even touch the clocks if the CPMU is present.
1da177e4 8613 */
63c3a66f
JP
8614 if (!tg3_flag(tp, CPMU_PRESENT)) {
8615 if (!tg3_flag(tp, PCI_EXPRESS))
795d01c5
MC
8616 tp->pci_clock_ctrl |= CLOCK_CTRL_DELAY_PCI_GRANT;
8617 tw32_f(TG3PCI_CLOCK_CTRL, tp->pci_clock_ctrl);
8618 }
1da177e4
LT
8619
8620 if (tp->pci_chip_rev_id == CHIPREV_ID_5704_A0 &&
63c3a66f 8621 tg3_flag(tp, PCIX_MODE)) {
1da177e4
LT
8622 val = tr32(TG3PCI_PCISTATE);
8623 val |= PCISTATE_RETRY_SAME_DMA;
8624 tw32(TG3PCI_PCISTATE, val);
8625 }
8626
63c3a66f 8627 if (tg3_flag(tp, ENABLE_APE)) {
0d3031d9
MC
8628 /* Allow reads and writes to the
8629 * APE register and memory space.
8630 */
8631 val = tr32(TG3PCI_PCISTATE);
8632 val |= PCISTATE_ALLOW_APE_CTLSPC_WR |
f92d9dc1
MC
8633 PCISTATE_ALLOW_APE_SHMEM_WR |
8634 PCISTATE_ALLOW_APE_PSPACE_WR;
0d3031d9
MC
8635 tw32(TG3PCI_PCISTATE, val);
8636 }
8637
1da177e4
LT
8638 if (GET_CHIP_REV(tp->pci_chip_rev_id) == CHIPREV_5704_BX) {
8639 /* Enable some hw fixes. */
8640 val = tr32(TG3PCI_MSI_DATA);
8641 val |= (1 << 26) | (1 << 28) | (1 << 29);
8642 tw32(TG3PCI_MSI_DATA, val);
8643 }
8644
8645 /* Descriptor ring init may make accesses to the
8646 * NIC SRAM area to setup the TX descriptors, so we
8647 * can only do this after the hardware has been
8648 * successfully reset.
8649 */
32d8c572
MC
8650 err = tg3_init_rings(tp);
8651 if (err)
8652 return err;
1da177e4 8653
63c3a66f 8654 if (tg3_flag(tp, 57765_PLUS)) {
cbf9ca6c
MC
8655 val = tr32(TG3PCI_DMA_RW_CTRL) &
8656 ~DMA_RWCTRL_DIS_CACHE_ALIGNMENT;
1a319025
MC
8657 if (tp->pci_chip_rev_id == CHIPREV_ID_57765_A0)
8658 val &= ~DMA_RWCTRL_CRDRDR_RDMA_MRRS_MSK;
55086ad9 8659 if (!tg3_flag(tp, 57765_CLASS) &&
0aebff48
MC
8660 GET_ASIC_REV(tp->pci_chip_rev_id) != ASIC_REV_5717)
8661 val |= DMA_RWCTRL_TAGGED_STAT_WA;
cbf9ca6c
MC
8662 tw32(TG3PCI_DMA_RW_CTRL, val | tp->dma_rwctrl);
8663 } else if (GET_ASIC_REV(tp->pci_chip_rev_id) != ASIC_REV_5784 &&
8664 GET_ASIC_REV(tp->pci_chip_rev_id) != ASIC_REV_5761) {
d30cdd28
MC
8665 /* This value is determined during the probe time DMA
8666 * engine test, tg3_test_dma.
8667 */
8668 tw32(TG3PCI_DMA_RW_CTRL, tp->dma_rwctrl);
8669 }
1da177e4
LT
8670
8671 tp->grc_mode &= ~(GRC_MODE_HOST_SENDBDS |
8672 GRC_MODE_4X_NIC_SEND_RINGS |
8673 GRC_MODE_NO_TX_PHDR_CSUM |
8674 GRC_MODE_NO_RX_PHDR_CSUM);
8675 tp->grc_mode |= GRC_MODE_HOST_SENDBDS;
d2d746f8
MC
8676
8677 /* Pseudo-header checksum is done by hardware logic and not
8678 * the offload processers, so make the chip do the pseudo-
8679 * header checksums on receive. For transmit it is more
8680 * convenient to do the pseudo-header checksum in software
8681 * as Linux does that on transmit for us in all cases.
8682 */
8683 tp->grc_mode |= GRC_MODE_NO_TX_PHDR_CSUM;
1da177e4
LT
8684
8685 tw32(GRC_MODE,
8686 tp->grc_mode |
8687 (GRC_MODE_IRQ_ON_MAC_ATTN | GRC_MODE_HOST_STACKUP));
8688
8689 /* Setup the timer prescalar register. Clock is always 66Mhz. */
8690 val = tr32(GRC_MISC_CFG);
8691 val &= ~0xff;
8692 val |= (65 << GRC_MISC_CFG_PRESCALAR_SHIFT);
8693 tw32(GRC_MISC_CFG, val);
8694
8695 /* Initialize MBUF/DESC pool. */
63c3a66f 8696 if (tg3_flag(tp, 5750_PLUS)) {
1da177e4
LT
8697 /* Do nothing. */
8698 } else if (GET_ASIC_REV(tp->pci_chip_rev_id) != ASIC_REV_5705) {
8699 tw32(BUFMGR_MB_POOL_ADDR, NIC_SRAM_MBUF_POOL_BASE);
8700 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5704)
8701 tw32(BUFMGR_MB_POOL_SIZE, NIC_SRAM_MBUF_POOL_SIZE64);
8702 else
8703 tw32(BUFMGR_MB_POOL_SIZE, NIC_SRAM_MBUF_POOL_SIZE96);
8704 tw32(BUFMGR_DMA_DESC_POOL_ADDR, NIC_SRAM_DMA_DESC_POOL_BASE);
8705 tw32(BUFMGR_DMA_DESC_POOL_SIZE, NIC_SRAM_DMA_DESC_POOL_SIZE);
63c3a66f 8706 } else if (tg3_flag(tp, TSO_CAPABLE)) {
1da177e4
LT
8707 int fw_len;
8708
077f849d 8709 fw_len = tp->fw_len;
1da177e4
LT
8710 fw_len = (fw_len + (0x80 - 1)) & ~(0x80 - 1);
8711 tw32(BUFMGR_MB_POOL_ADDR,
8712 NIC_SRAM_MBUF_POOL_BASE5705 + fw_len);
8713 tw32(BUFMGR_MB_POOL_SIZE,
8714 NIC_SRAM_MBUF_POOL_SIZE5705 - fw_len - 0xa00);
8715 }
1da177e4 8716
0f893dc6 8717 if (tp->dev->mtu <= ETH_DATA_LEN) {
1da177e4
LT
8718 tw32(BUFMGR_MB_RDMA_LOW_WATER,
8719 tp->bufmgr_config.mbuf_read_dma_low_water);
8720 tw32(BUFMGR_MB_MACRX_LOW_WATER,
8721 tp->bufmgr_config.mbuf_mac_rx_low_water);
8722 tw32(BUFMGR_MB_HIGH_WATER,
8723 tp->bufmgr_config.mbuf_high_water);
8724 } else {
8725 tw32(BUFMGR_MB_RDMA_LOW_WATER,
8726 tp->bufmgr_config.mbuf_read_dma_low_water_jumbo);
8727 tw32(BUFMGR_MB_MACRX_LOW_WATER,
8728 tp->bufmgr_config.mbuf_mac_rx_low_water_jumbo);
8729 tw32(BUFMGR_MB_HIGH_WATER,
8730 tp->bufmgr_config.mbuf_high_water_jumbo);
8731 }
8732 tw32(BUFMGR_DMA_LOW_WATER,
8733 tp->bufmgr_config.dma_low_water);
8734 tw32(BUFMGR_DMA_HIGH_WATER,
8735 tp->bufmgr_config.dma_high_water);
8736
d309a46e
MC
8737 val = BUFMGR_MODE_ENABLE | BUFMGR_MODE_ATTN_ENABLE;
8738 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5719)
8739 val |= BUFMGR_MODE_NO_TX_UNDERRUN;
4d958473
MC
8740 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5717 ||
8741 tp->pci_chip_rev_id == CHIPREV_ID_5719_A0 ||
8742 tp->pci_chip_rev_id == CHIPREV_ID_5720_A0)
8743 val |= BUFMGR_MODE_MBLOW_ATTN_ENAB;
d309a46e 8744 tw32(BUFMGR_MODE, val);
1da177e4
LT
8745 for (i = 0; i < 2000; i++) {
8746 if (tr32(BUFMGR_MODE) & BUFMGR_MODE_ENABLE)
8747 break;
8748 udelay(10);
8749 }
8750 if (i >= 2000) {
05dbe005 8751 netdev_err(tp->dev, "%s cannot enable BUFMGR\n", __func__);
1da177e4
LT
8752 return -ENODEV;
8753 }
8754
eb07a940
MC
8755 if (tp->pci_chip_rev_id == CHIPREV_ID_5906_A1)
8756 tw32(ISO_PKT_TX, (tr32(ISO_PKT_TX) & ~0x3) | 0x2);
b5d3772c 8757
eb07a940 8758 tg3_setup_rxbd_thresholds(tp);
1da177e4
LT
8759
8760 /* Initialize TG3_BDINFO's at:
8761 * RCVDBDI_STD_BD: standard eth size rx ring
8762 * RCVDBDI_JUMBO_BD: jumbo frame rx ring
8763 * RCVDBDI_MINI_BD: small frame rx ring (??? does not work)
8764 *
8765 * like so:
8766 * TG3_BDINFO_HOST_ADDR: high/low parts of DMA address of ring
8767 * TG3_BDINFO_MAXLEN_FLAGS: (rx max buffer size << 16) |
8768 * ring attribute flags
8769 * TG3_BDINFO_NIC_ADDR: location of descriptors in nic SRAM
8770 *
8771 * Standard receive ring @ NIC_SRAM_RX_BUFFER_DESC, 512 entries.
8772 * Jumbo receive ring @ NIC_SRAM_RX_JUMBO_BUFFER_DESC, 256 entries.
8773 *
8774 * The size of each ring is fixed in the firmware, but the location is
8775 * configurable.
8776 */
8777 tw32(RCVDBDI_STD_BD + TG3_BDINFO_HOST_ADDR + TG3_64BIT_REG_HIGH,
21f581a5 8778 ((u64) tpr->rx_std_mapping >> 32));
1da177e4 8779 tw32(RCVDBDI_STD_BD + TG3_BDINFO_HOST_ADDR + TG3_64BIT_REG_LOW,
21f581a5 8780 ((u64) tpr->rx_std_mapping & 0xffffffff));
63c3a66f 8781 if (!tg3_flag(tp, 5717_PLUS))
87668d35
MC
8782 tw32(RCVDBDI_STD_BD + TG3_BDINFO_NIC_ADDR,
8783 NIC_SRAM_RX_BUFFER_DESC);
1da177e4 8784
fdb72b38 8785 /* Disable the mini ring */
63c3a66f 8786 if (!tg3_flag(tp, 5705_PLUS))
1da177e4
LT
8787 tw32(RCVDBDI_MINI_BD + TG3_BDINFO_MAXLEN_FLAGS,
8788 BDINFO_FLAGS_DISABLED);
8789
fdb72b38
MC
8790 /* Program the jumbo buffer descriptor ring control
8791 * blocks on those devices that have them.
8792 */
a0512944 8793 if (tp->pci_chip_rev_id == CHIPREV_ID_5719_A0 ||
63c3a66f 8794 (tg3_flag(tp, JUMBO_CAPABLE) && !tg3_flag(tp, 5780_CLASS))) {
1da177e4 8795
63c3a66f 8796 if (tg3_flag(tp, JUMBO_RING_ENABLE)) {
1da177e4 8797 tw32(RCVDBDI_JUMBO_BD + TG3_BDINFO_HOST_ADDR + TG3_64BIT_REG_HIGH,
21f581a5 8798 ((u64) tpr->rx_jmb_mapping >> 32));
1da177e4 8799 tw32(RCVDBDI_JUMBO_BD + TG3_BDINFO_HOST_ADDR + TG3_64BIT_REG_LOW,
21f581a5 8800 ((u64) tpr->rx_jmb_mapping & 0xffffffff));
de9f5230
MC
8801 val = TG3_RX_JMB_RING_SIZE(tp) <<
8802 BDINFO_FLAGS_MAXLEN_SHIFT;
1da177e4 8803 tw32(RCVDBDI_JUMBO_BD + TG3_BDINFO_MAXLEN_FLAGS,
de9f5230 8804 val | BDINFO_FLAGS_USE_EXT_RECV);
63c3a66f 8805 if (!tg3_flag(tp, USE_JUMBO_BDFLAG) ||
55086ad9 8806 tg3_flag(tp, 57765_CLASS))
87668d35
MC
8807 tw32(RCVDBDI_JUMBO_BD + TG3_BDINFO_NIC_ADDR,
8808 NIC_SRAM_RX_JUMBO_BUFFER_DESC);
1da177e4
LT
8809 } else {
8810 tw32(RCVDBDI_JUMBO_BD + TG3_BDINFO_MAXLEN_FLAGS,
8811 BDINFO_FLAGS_DISABLED);
8812 }
8813
63c3a66f 8814 if (tg3_flag(tp, 57765_PLUS)) {
fa6b2aae 8815 val = TG3_RX_STD_RING_SIZE(tp);
7cb32cf2
MC
8816 val <<= BDINFO_FLAGS_MAXLEN_SHIFT;
8817 val |= (TG3_RX_STD_DMA_SZ << 2);
8818 } else
04380d40 8819 val = TG3_RX_STD_DMA_SZ << BDINFO_FLAGS_MAXLEN_SHIFT;
fdb72b38 8820 } else
de9f5230 8821 val = TG3_RX_STD_MAX_SIZE_5700 << BDINFO_FLAGS_MAXLEN_SHIFT;
fdb72b38
MC
8822
8823 tw32(RCVDBDI_STD_BD + TG3_BDINFO_MAXLEN_FLAGS, val);
1da177e4 8824
411da640 8825 tpr->rx_std_prod_idx = tp->rx_pending;
66711e66 8826 tw32_rx_mbox(TG3_RX_STD_PROD_IDX_REG, tpr->rx_std_prod_idx);
1da177e4 8827
63c3a66f
JP
8828 tpr->rx_jmb_prod_idx =
8829 tg3_flag(tp, JUMBO_RING_ENABLE) ? tp->rx_jumbo_pending : 0;
66711e66 8830 tw32_rx_mbox(TG3_RX_JMB_PROD_IDX_REG, tpr->rx_jmb_prod_idx);
1da177e4 8831
2d31ecaf
MC
8832 tg3_rings_reset(tp);
8833
1da177e4 8834 /* Initialize MAC address and backoff seed. */
986e0aeb 8835 __tg3_set_mac_addr(tp, 0);
1da177e4
LT
8836
8837 /* MTU + ethernet header + FCS + optional VLAN tag */
f7b493e0
MC
8838 tw32(MAC_RX_MTU_SIZE,
8839 tp->dev->mtu + ETH_HLEN + ETH_FCS_LEN + VLAN_HLEN);
1da177e4
LT
8840
8841 /* The slot time is changed by tg3_setup_phy if we
8842 * run at gigabit with half duplex.
8843 */
f2096f94
MC
8844 val = (2 << TX_LENGTHS_IPG_CRS_SHIFT) |
8845 (6 << TX_LENGTHS_IPG_SHIFT) |
8846 (32 << TX_LENGTHS_SLOT_TIME_SHIFT);
8847
8848 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5720)
8849 val |= tr32(MAC_TX_LENGTHS) &
8850 (TX_LENGTHS_JMB_FRM_LEN_MSK |
8851 TX_LENGTHS_CNT_DWN_VAL_MSK);
8852
8853 tw32(MAC_TX_LENGTHS, val);
1da177e4
LT
8854
8855 /* Receive rules. */
8856 tw32(MAC_RCV_RULE_CFG, RCV_RULE_CFG_DEFAULT_CLASS);
8857 tw32(RCVLPC_CONFIG, 0x0181);
8858
8859 /* Calculate RDMAC_MODE setting early, we need it to determine
8860 * the RCVLPC_STATE_ENABLE mask.
8861 */
8862 rdmac_mode = (RDMAC_MODE_ENABLE | RDMAC_MODE_TGTABORT_ENAB |
8863 RDMAC_MODE_MSTABORT_ENAB | RDMAC_MODE_PARITYERR_ENAB |
8864 RDMAC_MODE_ADDROFLOW_ENAB | RDMAC_MODE_FIFOOFLOW_ENAB |
8865 RDMAC_MODE_FIFOURUN_ENAB | RDMAC_MODE_FIFOOREAD_ENAB |
8866 RDMAC_MODE_LNGREAD_ENAB);
85e94ced 8867
deabaac8 8868 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5717)
0339e4e3
MC
8869 rdmac_mode |= RDMAC_MODE_MULT_DMA_RD_DIS;
8870
57e6983c 8871 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5784 ||
321d32a0
MC
8872 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5785 ||
8873 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_57780)
d30cdd28
MC
8874 rdmac_mode |= RDMAC_MODE_BD_SBD_CRPT_ENAB |
8875 RDMAC_MODE_MBUF_RBD_CRPT_ENAB |
8876 RDMAC_MODE_MBUF_SBD_CRPT_ENAB;
8877
c5908939
MC
8878 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5705 &&
8879 tp->pci_chip_rev_id != CHIPREV_ID_5705_A0) {
63c3a66f 8880 if (tg3_flag(tp, TSO_CAPABLE) &&
c13e3713 8881 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5705) {
1da177e4
LT
8882 rdmac_mode |= RDMAC_MODE_FIFO_SIZE_128;
8883 } else if (!(tr32(TG3PCI_PCISTATE) & PCISTATE_BUS_SPEED_HIGH) &&
63c3a66f 8884 !tg3_flag(tp, IS_5788)) {
1da177e4
LT
8885 rdmac_mode |= RDMAC_MODE_FIFO_LONG_BURST;
8886 }
8887 }
8888
63c3a66f 8889 if (tg3_flag(tp, PCI_EXPRESS))
85e94ced
MC
8890 rdmac_mode |= RDMAC_MODE_FIFO_LONG_BURST;
8891
63c3a66f
JP
8892 if (tg3_flag(tp, HW_TSO_1) ||
8893 tg3_flag(tp, HW_TSO_2) ||
8894 tg3_flag(tp, HW_TSO_3))
027455ad
MC
8895 rdmac_mode |= RDMAC_MODE_IPV4_LSO_EN;
8896
108a6c16 8897 if (tg3_flag(tp, 57765_PLUS) ||
e849cdc3 8898 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5785 ||
027455ad
MC
8899 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_57780)
8900 rdmac_mode |= RDMAC_MODE_IPV6_LSO_EN;
1da177e4 8901
f2096f94
MC
8902 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5720)
8903 rdmac_mode |= tr32(RDMAC_MODE) & RDMAC_MODE_H2BNC_VLAN_DET;
8904
41a8a7ee
MC
8905 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5761 ||
8906 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5784 ||
8907 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5785 ||
8908 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_57780 ||
63c3a66f 8909 tg3_flag(tp, 57765_PLUS)) {
41a8a7ee 8910 val = tr32(TG3_RDMA_RSRVCTRL_REG);
d78b59f5
MC
8911 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5719 ||
8912 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5720) {
b4495ed8
MC
8913 val &= ~(TG3_RDMA_RSRVCTRL_TXMRGN_MASK |
8914 TG3_RDMA_RSRVCTRL_FIFO_LWM_MASK |
8915 TG3_RDMA_RSRVCTRL_FIFO_HWM_MASK);
8916 val |= TG3_RDMA_RSRVCTRL_TXMRGN_320B |
8917 TG3_RDMA_RSRVCTRL_FIFO_LWM_1_5K |
8918 TG3_RDMA_RSRVCTRL_FIFO_HWM_1_5K;
b75cc0e4 8919 }
41a8a7ee
MC
8920 tw32(TG3_RDMA_RSRVCTRL_REG,
8921 val | TG3_RDMA_RSRVCTRL_FIFO_OFLW_FIX);
8922 }
8923
d78b59f5
MC
8924 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5719 ||
8925 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5720) {
d309a46e
MC
8926 val = tr32(TG3_LSO_RD_DMA_CRPTEN_CTRL);
8927 tw32(TG3_LSO_RD_DMA_CRPTEN_CTRL, val |
8928 TG3_LSO_RD_DMA_CRPTEN_CTRL_BLEN_BD_4K |
8929 TG3_LSO_RD_DMA_CRPTEN_CTRL_BLEN_LSO_4K);
8930 }
8931
1da177e4 8932 /* Receive/send statistics. */
63c3a66f 8933 if (tg3_flag(tp, 5750_PLUS)) {
1661394e
MC
8934 val = tr32(RCVLPC_STATS_ENABLE);
8935 val &= ~RCVLPC_STATSENAB_DACK_FIX;
8936 tw32(RCVLPC_STATS_ENABLE, val);
8937 } else if ((rdmac_mode & RDMAC_MODE_FIFO_SIZE_128) &&
63c3a66f 8938 tg3_flag(tp, TSO_CAPABLE)) {
1da177e4
LT
8939 val = tr32(RCVLPC_STATS_ENABLE);
8940 val &= ~RCVLPC_STATSENAB_LNGBRST_RFIX;
8941 tw32(RCVLPC_STATS_ENABLE, val);
8942 } else {
8943 tw32(RCVLPC_STATS_ENABLE, 0xffffff);
8944 }
8945 tw32(RCVLPC_STATSCTRL, RCVLPC_STATSCTRL_ENABLE);
8946 tw32(SNDDATAI_STATSENAB, 0xffffff);
8947 tw32(SNDDATAI_STATSCTRL,
8948 (SNDDATAI_SCTRL_ENABLE |
8949 SNDDATAI_SCTRL_FASTUPD));
8950
8951 /* Setup host coalescing engine. */
8952 tw32(HOSTCC_MODE, 0);
8953 for (i = 0; i < 2000; i++) {
8954 if (!(tr32(HOSTCC_MODE) & HOSTCC_MODE_ENABLE))
8955 break;
8956 udelay(10);
8957 }
8958
d244c892 8959 __tg3_set_coalesce(tp, &tp->coal);
1da177e4 8960
63c3a66f 8961 if (!tg3_flag(tp, 5705_PLUS)) {
1da177e4
LT
8962 /* Status/statistics block address. See tg3_timer,
8963 * the tg3_periodic_fetch_stats call there, and
8964 * tg3_get_stats to see how this works for 5705/5750 chips.
8965 */
1da177e4
LT
8966 tw32(HOSTCC_STATS_BLK_HOST_ADDR + TG3_64BIT_REG_HIGH,
8967 ((u64) tp->stats_mapping >> 32));
8968 tw32(HOSTCC_STATS_BLK_HOST_ADDR + TG3_64BIT_REG_LOW,
8969 ((u64) tp->stats_mapping & 0xffffffff));
8970 tw32(HOSTCC_STATS_BLK_NIC_ADDR, NIC_SRAM_STATS_BLK);
2d31ecaf 8971
1da177e4 8972 tw32(HOSTCC_STATUS_BLK_NIC_ADDR, NIC_SRAM_STATUS_BLK);
2d31ecaf
MC
8973
8974 /* Clear statistics and status block memory areas */
8975 for (i = NIC_SRAM_STATS_BLK;
8976 i < NIC_SRAM_STATUS_BLK + TG3_HW_STATUS_SIZE;
8977 i += sizeof(u32)) {
8978 tg3_write_mem(tp, i, 0);
8979 udelay(40);
8980 }
1da177e4
LT
8981 }
8982
8983 tw32(HOSTCC_MODE, HOSTCC_MODE_ENABLE | tp->coalesce_mode);
8984
8985 tw32(RCVCC_MODE, RCVCC_MODE_ENABLE | RCVCC_MODE_ATTN_ENABLE);
8986 tw32(RCVLPC_MODE, RCVLPC_MODE_ENABLE);
63c3a66f 8987 if (!tg3_flag(tp, 5705_PLUS))
1da177e4
LT
8988 tw32(RCVLSC_MODE, RCVLSC_MODE_ENABLE | RCVLSC_MODE_ATTN_ENABLE);
8989
f07e9af3
MC
8990 if (tp->phy_flags & TG3_PHYFLG_MII_SERDES) {
8991 tp->phy_flags &= ~TG3_PHYFLG_PARALLEL_DETECT;
c94e3941
MC
8992 /* reset to prevent losing 1st rx packet intermittently */
8993 tw32_f(MAC_RX_MODE, RX_MODE_RESET);
8994 udelay(10);
8995 }
8996
3bda1258 8997 tp->mac_mode |= MAC_MODE_TXSTAT_ENABLE | MAC_MODE_RXSTAT_ENABLE |
9e975cc2
MC
8998 MAC_MODE_TDE_ENABLE | MAC_MODE_RDE_ENABLE |
8999 MAC_MODE_FHDE_ENABLE;
9000 if (tg3_flag(tp, ENABLE_APE))
9001 tp->mac_mode |= MAC_MODE_APE_TX_EN | MAC_MODE_APE_RX_EN;
63c3a66f 9002 if (!tg3_flag(tp, 5705_PLUS) &&
f07e9af3 9003 !(tp->phy_flags & TG3_PHYFLG_PHY_SERDES) &&
e8f3f6ca
MC
9004 GET_ASIC_REV(tp->pci_chip_rev_id) != ASIC_REV_5700)
9005 tp->mac_mode |= MAC_MODE_LINK_POLARITY;
1da177e4
LT
9006 tw32_f(MAC_MODE, tp->mac_mode | MAC_MODE_RXSTAT_CLEAR | MAC_MODE_TXSTAT_CLEAR);
9007 udelay(40);
9008
314fba34 9009 /* tp->grc_local_ctrl is partially set up during tg3_get_invariants().
63c3a66f 9010 * If TG3_FLAG_IS_NIC is zero, we should read the
314fba34
MC
9011 * register to preserve the GPIO settings for LOMs. The GPIOs,
9012 * whether used as inputs or outputs, are set by boot code after
9013 * reset.
9014 */
63c3a66f 9015 if (!tg3_flag(tp, IS_NIC)) {
314fba34
MC
9016 u32 gpio_mask;
9017
9d26e213
MC
9018 gpio_mask = GRC_LCLCTRL_GPIO_OE0 | GRC_LCLCTRL_GPIO_OE1 |
9019 GRC_LCLCTRL_GPIO_OE2 | GRC_LCLCTRL_GPIO_OUTPUT0 |
9020 GRC_LCLCTRL_GPIO_OUTPUT1 | GRC_LCLCTRL_GPIO_OUTPUT2;
3e7d83bc
MC
9021
9022 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5752)
9023 gpio_mask |= GRC_LCLCTRL_GPIO_OE3 |
9024 GRC_LCLCTRL_GPIO_OUTPUT3;
9025
af36e6b6
MC
9026 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5755)
9027 gpio_mask |= GRC_LCLCTRL_GPIO_UART_SEL;
9028
aaf84465 9029 tp->grc_local_ctrl &= ~gpio_mask;
314fba34
MC
9030 tp->grc_local_ctrl |= tr32(GRC_LOCAL_CTRL) & gpio_mask;
9031
9032 /* GPIO1 must be driven high for eeprom write protect */
63c3a66f 9033 if (tg3_flag(tp, EEPROM_WRITE_PROT))
9d26e213
MC
9034 tp->grc_local_ctrl |= (GRC_LCLCTRL_GPIO_OE1 |
9035 GRC_LCLCTRL_GPIO_OUTPUT1);
314fba34 9036 }
1da177e4
LT
9037 tw32_f(GRC_LOCAL_CTRL, tp->grc_local_ctrl);
9038 udelay(100);
9039
c3b5003b 9040 if (tg3_flag(tp, USING_MSIX)) {
baf8a94a 9041 val = tr32(MSGINT_MODE);
c3b5003b
MC
9042 val |= MSGINT_MODE_ENABLE;
9043 if (tp->irq_cnt > 1)
9044 val |= MSGINT_MODE_MULTIVEC_EN;
5b39de91
MC
9045 if (!tg3_flag(tp, 1SHOT_MSI))
9046 val |= MSGINT_MODE_ONE_SHOT_DISABLE;
baf8a94a
MC
9047 tw32(MSGINT_MODE, val);
9048 }
9049
63c3a66f 9050 if (!tg3_flag(tp, 5705_PLUS)) {
1da177e4
LT
9051 tw32_f(DMAC_MODE, DMAC_MODE_ENABLE);
9052 udelay(40);
9053 }
9054
9055 val = (WDMAC_MODE_ENABLE | WDMAC_MODE_TGTABORT_ENAB |
9056 WDMAC_MODE_MSTABORT_ENAB | WDMAC_MODE_PARITYERR_ENAB |
9057 WDMAC_MODE_ADDROFLOW_ENAB | WDMAC_MODE_FIFOOFLOW_ENAB |
9058 WDMAC_MODE_FIFOURUN_ENAB | WDMAC_MODE_FIFOOREAD_ENAB |
9059 WDMAC_MODE_LNGREAD_ENAB);
9060
c5908939
MC
9061 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5705 &&
9062 tp->pci_chip_rev_id != CHIPREV_ID_5705_A0) {
63c3a66f 9063 if (tg3_flag(tp, TSO_CAPABLE) &&
1da177e4
LT
9064 (tp->pci_chip_rev_id == CHIPREV_ID_5705_A1 ||
9065 tp->pci_chip_rev_id == CHIPREV_ID_5705_A2)) {
9066 /* nothing */
9067 } else if (!(tr32(TG3PCI_PCISTATE) & PCISTATE_BUS_SPEED_HIGH) &&
63c3a66f 9068 !tg3_flag(tp, IS_5788)) {
1da177e4
LT
9069 val |= WDMAC_MODE_RX_ACCEL;
9070 }
9071 }
9072
d9ab5ad1 9073 /* Enable host coalescing bug fix */
63c3a66f 9074 if (tg3_flag(tp, 5755_PLUS))
f51f3562 9075 val |= WDMAC_MODE_STATUS_TAG_FIX;
d9ab5ad1 9076
788a035e
MC
9077 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5785)
9078 val |= WDMAC_MODE_BURST_ALL_DATA;
9079
1da177e4
LT
9080 tw32_f(WDMAC_MODE, val);
9081 udelay(40);
9082
63c3a66f 9083 if (tg3_flag(tp, PCIX_MODE)) {
9974a356
MC
9084 u16 pcix_cmd;
9085
9086 pci_read_config_word(tp->pdev, tp->pcix_cap + PCI_X_CMD,
9087 &pcix_cmd);
1da177e4 9088 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5703) {
9974a356
MC
9089 pcix_cmd &= ~PCI_X_CMD_MAX_READ;
9090 pcix_cmd |= PCI_X_CMD_READ_2K;
1da177e4 9091 } else if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5704) {
9974a356
MC
9092 pcix_cmd &= ~(PCI_X_CMD_MAX_SPLIT | PCI_X_CMD_MAX_READ);
9093 pcix_cmd |= PCI_X_CMD_READ_2K;
1da177e4 9094 }
9974a356
MC
9095 pci_write_config_word(tp->pdev, tp->pcix_cap + PCI_X_CMD,
9096 pcix_cmd);
1da177e4
LT
9097 }
9098
9099 tw32_f(RDMAC_MODE, rdmac_mode);
9100 udelay(40);
9101
9102 tw32(RCVDCC_MODE, RCVDCC_MODE_ENABLE | RCVDCC_MODE_ATTN_ENABLE);
63c3a66f 9103 if (!tg3_flag(tp, 5705_PLUS))
1da177e4 9104 tw32(MBFREE_MODE, MBFREE_MODE_ENABLE);
9936bcf6
MC
9105
9106 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5761)
9107 tw32(SNDDATAC_MODE,
9108 SNDDATAC_MODE_ENABLE | SNDDATAC_MODE_CDELAY);
9109 else
9110 tw32(SNDDATAC_MODE, SNDDATAC_MODE_ENABLE);
9111
1da177e4
LT
9112 tw32(SNDBDC_MODE, SNDBDC_MODE_ENABLE | SNDBDC_MODE_ATTN_ENABLE);
9113 tw32(RCVBDI_MODE, RCVBDI_MODE_ENABLE | RCVBDI_MODE_RCB_ATTN_ENAB);
7cb32cf2 9114 val = RCVDBDI_MODE_ENABLE | RCVDBDI_MODE_INV_RING_SZ;
63c3a66f 9115 if (tg3_flag(tp, LRG_PROD_RING_CAP))
7cb32cf2
MC
9116 val |= RCVDBDI_MODE_LRG_RING_SZ;
9117 tw32(RCVDBDI_MODE, val);
1da177e4 9118 tw32(SNDDATAI_MODE, SNDDATAI_MODE_ENABLE);
63c3a66f
JP
9119 if (tg3_flag(tp, HW_TSO_1) ||
9120 tg3_flag(tp, HW_TSO_2) ||
9121 tg3_flag(tp, HW_TSO_3))
1da177e4 9122 tw32(SNDDATAI_MODE, SNDDATAI_MODE_ENABLE | 0x8);
baf8a94a 9123 val = SNDBDI_MODE_ENABLE | SNDBDI_MODE_ATTN_ENABLE;
63c3a66f 9124 if (tg3_flag(tp, ENABLE_TSS))
baf8a94a
MC
9125 val |= SNDBDI_MODE_MULTI_TXQ_EN;
9126 tw32(SNDBDI_MODE, val);
1da177e4
LT
9127 tw32(SNDBDS_MODE, SNDBDS_MODE_ENABLE | SNDBDS_MODE_ATTN_ENABLE);
9128
9129 if (tp->pci_chip_rev_id == CHIPREV_ID_5701_A0) {
9130 err = tg3_load_5701_a0_firmware_fix(tp);
9131 if (err)
9132 return err;
9133 }
9134
63c3a66f 9135 if (tg3_flag(tp, TSO_CAPABLE)) {
1da177e4
LT
9136 err = tg3_load_tso_firmware(tp);
9137 if (err)
9138 return err;
9139 }
1da177e4
LT
9140
9141 tp->tx_mode = TX_MODE_ENABLE;
f2096f94 9142
63c3a66f 9143 if (tg3_flag(tp, 5755_PLUS) ||
b1d05210
MC
9144 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5906)
9145 tp->tx_mode |= TX_MODE_MBUF_LOCKUP_FIX;
f2096f94
MC
9146
9147 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5720) {
9148 val = TX_MODE_JMB_FRM_LEN | TX_MODE_CNT_DN_MODE;
9149 tp->tx_mode &= ~val;
9150 tp->tx_mode |= tr32(MAC_TX_MODE) & val;
9151 }
9152
1da177e4
LT
9153 tw32_f(MAC_TX_MODE, tp->tx_mode);
9154 udelay(100);
9155
63c3a66f 9156 if (tg3_flag(tp, ENABLE_RSS)) {
bcebcc46 9157 tg3_rss_write_indir_tbl(tp);
baf8a94a
MC
9158
9159 /* Setup the "secret" hash key. */
9160 tw32(MAC_RSS_HASH_KEY_0, 0x5f865437);
9161 tw32(MAC_RSS_HASH_KEY_1, 0xe4ac62cc);
9162 tw32(MAC_RSS_HASH_KEY_2, 0x50103a45);
9163 tw32(MAC_RSS_HASH_KEY_3, 0x36621985);
9164 tw32(MAC_RSS_HASH_KEY_4, 0xbf14c0e8);
9165 tw32(MAC_RSS_HASH_KEY_5, 0x1bc27a1e);
9166 tw32(MAC_RSS_HASH_KEY_6, 0x84f4b556);
9167 tw32(MAC_RSS_HASH_KEY_7, 0x094ea6fe);
9168 tw32(MAC_RSS_HASH_KEY_8, 0x7dda01e7);
9169 tw32(MAC_RSS_HASH_KEY_9, 0xc04d7481);
9170 }
9171
1da177e4 9172 tp->rx_mode = RX_MODE_ENABLE;
63c3a66f 9173 if (tg3_flag(tp, 5755_PLUS))
af36e6b6
MC
9174 tp->rx_mode |= RX_MODE_IPV6_CSUM_ENABLE;
9175
63c3a66f 9176 if (tg3_flag(tp, ENABLE_RSS))
baf8a94a
MC
9177 tp->rx_mode |= RX_MODE_RSS_ENABLE |
9178 RX_MODE_RSS_ITBL_HASH_BITS_7 |
9179 RX_MODE_RSS_IPV6_HASH_EN |
9180 RX_MODE_RSS_TCP_IPV6_HASH_EN |
9181 RX_MODE_RSS_IPV4_HASH_EN |
9182 RX_MODE_RSS_TCP_IPV4_HASH_EN;
9183
1da177e4
LT
9184 tw32_f(MAC_RX_MODE, tp->rx_mode);
9185 udelay(10);
9186
1da177e4
LT
9187 tw32(MAC_LED_CTRL, tp->led_ctrl);
9188
9189 tw32(MAC_MI_STAT, MAC_MI_STAT_LNKSTAT_ATTN_ENAB);
f07e9af3 9190 if (tp->phy_flags & TG3_PHYFLG_PHY_SERDES) {
1da177e4
LT
9191 tw32_f(MAC_RX_MODE, RX_MODE_RESET);
9192 udelay(10);
9193 }
9194 tw32_f(MAC_RX_MODE, tp->rx_mode);
9195 udelay(10);
9196
f07e9af3 9197 if (tp->phy_flags & TG3_PHYFLG_PHY_SERDES) {
1da177e4 9198 if ((GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5704) &&
f07e9af3 9199 !(tp->phy_flags & TG3_PHYFLG_SERDES_PREEMPHASIS)) {
1da177e4
LT
9200 /* Set drive transmission level to 1.2V */
9201 /* only if the signal pre-emphasis bit is not set */
9202 val = tr32(MAC_SERDES_CFG);
9203 val &= 0xfffff000;
9204 val |= 0x880;
9205 tw32(MAC_SERDES_CFG, val);
9206 }
9207 if (tp->pci_chip_rev_id == CHIPREV_ID_5703_A1)
9208 tw32(MAC_SERDES_CFG, 0x616000);
9209 }
9210
9211 /* Prevent chip from dropping frames when flow control
9212 * is enabled.
9213 */
55086ad9 9214 if (tg3_flag(tp, 57765_CLASS))
666bc831
MC
9215 val = 1;
9216 else
9217 val = 2;
9218 tw32_f(MAC_LOW_WMARK_MAX_RX_FRAME, val);
1da177e4
LT
9219
9220 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5704 &&
f07e9af3 9221 (tp->phy_flags & TG3_PHYFLG_PHY_SERDES)) {
1da177e4 9222 /* Use hardware link auto-negotiation */
63c3a66f 9223 tg3_flag_set(tp, HW_AUTONEG);
1da177e4
LT
9224 }
9225
f07e9af3 9226 if ((tp->phy_flags & TG3_PHYFLG_MII_SERDES) &&
6ff6f81d 9227 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5714) {
d4d2c558
MC
9228 u32 tmp;
9229
9230 tmp = tr32(SERDES_RX_CTRL);
9231 tw32(SERDES_RX_CTRL, tmp | SERDES_RX_SIG_DETECT);
9232 tp->grc_local_ctrl &= ~GRC_LCLCTRL_USE_EXT_SIG_DETECT;
9233 tp->grc_local_ctrl |= GRC_LCLCTRL_USE_SIG_DETECT;
9234 tw32(GRC_LOCAL_CTRL, tp->grc_local_ctrl);
9235 }
9236
63c3a66f 9237 if (!tg3_flag(tp, USE_PHYLIB)) {
c6700ce2 9238 if (tp->phy_flags & TG3_PHYFLG_IS_LOW_POWER)
80096068 9239 tp->phy_flags &= ~TG3_PHYFLG_IS_LOW_POWER;
1da177e4 9240
dd477003
MC
9241 err = tg3_setup_phy(tp, 0);
9242 if (err)
9243 return err;
1da177e4 9244
f07e9af3
MC
9245 if (!(tp->phy_flags & TG3_PHYFLG_PHY_SERDES) &&
9246 !(tp->phy_flags & TG3_PHYFLG_IS_FET)) {
dd477003
MC
9247 u32 tmp;
9248
9249 /* Clear CRC stats. */
9250 if (!tg3_readphy(tp, MII_TG3_TEST1, &tmp)) {
9251 tg3_writephy(tp, MII_TG3_TEST1,
9252 tmp | MII_TG3_TEST1_CRC_EN);
f08aa1a8 9253 tg3_readphy(tp, MII_TG3_RXR_COUNTERS, &tmp);
dd477003 9254 }
1da177e4
LT
9255 }
9256 }
9257
9258 __tg3_set_rx_mode(tp->dev);
9259
9260 /* Initialize receive rules. */
9261 tw32(MAC_RCV_RULE_0, 0xc2000000 & RCV_RULE_DISABLE_MASK);
9262 tw32(MAC_RCV_VALUE_0, 0xffffffff & RCV_RULE_DISABLE_MASK);
9263 tw32(MAC_RCV_RULE_1, 0x86000004 & RCV_RULE_DISABLE_MASK);
9264 tw32(MAC_RCV_VALUE_1, 0xffffffff & RCV_RULE_DISABLE_MASK);
9265
63c3a66f 9266 if (tg3_flag(tp, 5705_PLUS) && !tg3_flag(tp, 5780_CLASS))
1da177e4
LT
9267 limit = 8;
9268 else
9269 limit = 16;
63c3a66f 9270 if (tg3_flag(tp, ENABLE_ASF))
1da177e4
LT
9271 limit -= 4;
9272 switch (limit) {
9273 case 16:
9274 tw32(MAC_RCV_RULE_15, 0); tw32(MAC_RCV_VALUE_15, 0);
9275 case 15:
9276 tw32(MAC_RCV_RULE_14, 0); tw32(MAC_RCV_VALUE_14, 0);
9277 case 14:
9278 tw32(MAC_RCV_RULE_13, 0); tw32(MAC_RCV_VALUE_13, 0);
9279 case 13:
9280 tw32(MAC_RCV_RULE_12, 0); tw32(MAC_RCV_VALUE_12, 0);
9281 case 12:
9282 tw32(MAC_RCV_RULE_11, 0); tw32(MAC_RCV_VALUE_11, 0);
9283 case 11:
9284 tw32(MAC_RCV_RULE_10, 0); tw32(MAC_RCV_VALUE_10, 0);
9285 case 10:
9286 tw32(MAC_RCV_RULE_9, 0); tw32(MAC_RCV_VALUE_9, 0);
9287 case 9:
9288 tw32(MAC_RCV_RULE_8, 0); tw32(MAC_RCV_VALUE_8, 0);
9289 case 8:
9290 tw32(MAC_RCV_RULE_7, 0); tw32(MAC_RCV_VALUE_7, 0);
9291 case 7:
9292 tw32(MAC_RCV_RULE_6, 0); tw32(MAC_RCV_VALUE_6, 0);
9293 case 6:
9294 tw32(MAC_RCV_RULE_5, 0); tw32(MAC_RCV_VALUE_5, 0);
9295 case 5:
9296 tw32(MAC_RCV_RULE_4, 0); tw32(MAC_RCV_VALUE_4, 0);
9297 case 4:
9298 /* tw32(MAC_RCV_RULE_3, 0); tw32(MAC_RCV_VALUE_3, 0); */
9299 case 3:
9300 /* tw32(MAC_RCV_RULE_2, 0); tw32(MAC_RCV_VALUE_2, 0); */
9301 case 2:
9302 case 1:
9303
9304 default:
9305 break;
855e1111 9306 }
1da177e4 9307
63c3a66f 9308 if (tg3_flag(tp, ENABLE_APE))
9ce768ea
MC
9309 /* Write our heartbeat update interval to APE. */
9310 tg3_ape_write32(tp, TG3_APE_HOST_HEARTBEAT_INT_MS,
9311 APE_HOST_HEARTBEAT_INT_DISABLE);
0d3031d9 9312
1da177e4
LT
9313 tg3_write_sig_post_reset(tp, RESET_KIND_INIT);
9314
1da177e4
LT
9315 return 0;
9316}
9317
9318/* Called at device open time to get the chip ready for
9319 * packet processing. Invoked with tp->lock held.
9320 */
8e7a22e3 9321static int tg3_init_hw(struct tg3 *tp, int reset_phy)
1da177e4 9322{
1da177e4
LT
9323 tg3_switch_clocks(tp);
9324
9325 tw32(TG3PCI_MEM_WIN_BASE_ADDR, 0);
9326
2f751b67 9327 return tg3_reset_hw(tp, reset_phy);
1da177e4
LT
9328}
9329
9330#define TG3_STAT_ADD32(PSTAT, REG) \
9331do { u32 __val = tr32(REG); \
9332 (PSTAT)->low += __val; \
9333 if ((PSTAT)->low < __val) \
9334 (PSTAT)->high += 1; \
9335} while (0)
9336
9337static void tg3_periodic_fetch_stats(struct tg3 *tp)
9338{
9339 struct tg3_hw_stats *sp = tp->hw_stats;
9340
9341 if (!netif_carrier_ok(tp->dev))
9342 return;
9343
9344 TG3_STAT_ADD32(&sp->tx_octets, MAC_TX_STATS_OCTETS);
9345 TG3_STAT_ADD32(&sp->tx_collisions, MAC_TX_STATS_COLLISIONS);
9346 TG3_STAT_ADD32(&sp->tx_xon_sent, MAC_TX_STATS_XON_SENT);
9347 TG3_STAT_ADD32(&sp->tx_xoff_sent, MAC_TX_STATS_XOFF_SENT);
9348 TG3_STAT_ADD32(&sp->tx_mac_errors, MAC_TX_STATS_MAC_ERRORS);
9349 TG3_STAT_ADD32(&sp->tx_single_collisions, MAC_TX_STATS_SINGLE_COLLISIONS);
9350 TG3_STAT_ADD32(&sp->tx_mult_collisions, MAC_TX_STATS_MULT_COLLISIONS);
9351 TG3_STAT_ADD32(&sp->tx_deferred, MAC_TX_STATS_DEFERRED);
9352 TG3_STAT_ADD32(&sp->tx_excessive_collisions, MAC_TX_STATS_EXCESSIVE_COL);
9353 TG3_STAT_ADD32(&sp->tx_late_collisions, MAC_TX_STATS_LATE_COL);
9354 TG3_STAT_ADD32(&sp->tx_ucast_packets, MAC_TX_STATS_UCAST);
9355 TG3_STAT_ADD32(&sp->tx_mcast_packets, MAC_TX_STATS_MCAST);
9356 TG3_STAT_ADD32(&sp->tx_bcast_packets, MAC_TX_STATS_BCAST);
9357
9358 TG3_STAT_ADD32(&sp->rx_octets, MAC_RX_STATS_OCTETS);
9359 TG3_STAT_ADD32(&sp->rx_fragments, MAC_RX_STATS_FRAGMENTS);
9360 TG3_STAT_ADD32(&sp->rx_ucast_packets, MAC_RX_STATS_UCAST);
9361 TG3_STAT_ADD32(&sp->rx_mcast_packets, MAC_RX_STATS_MCAST);
9362 TG3_STAT_ADD32(&sp->rx_bcast_packets, MAC_RX_STATS_BCAST);
9363 TG3_STAT_ADD32(&sp->rx_fcs_errors, MAC_RX_STATS_FCS_ERRORS);
9364 TG3_STAT_ADD32(&sp->rx_align_errors, MAC_RX_STATS_ALIGN_ERRORS);
9365 TG3_STAT_ADD32(&sp->rx_xon_pause_rcvd, MAC_RX_STATS_XON_PAUSE_RECVD);
9366 TG3_STAT_ADD32(&sp->rx_xoff_pause_rcvd, MAC_RX_STATS_XOFF_PAUSE_RECVD);
9367 TG3_STAT_ADD32(&sp->rx_mac_ctrl_rcvd, MAC_RX_STATS_MAC_CTRL_RECVD);
9368 TG3_STAT_ADD32(&sp->rx_xoff_entered, MAC_RX_STATS_XOFF_ENTERED);
9369 TG3_STAT_ADD32(&sp->rx_frame_too_long_errors, MAC_RX_STATS_FRAME_TOO_LONG);
9370 TG3_STAT_ADD32(&sp->rx_jabbers, MAC_RX_STATS_JABBERS);
9371 TG3_STAT_ADD32(&sp->rx_undersize_packets, MAC_RX_STATS_UNDERSIZE);
463d305b
MC
9372
9373 TG3_STAT_ADD32(&sp->rxbds_empty, RCVLPC_NO_RCV_BD_CNT);
310050fa
MC
9374 if (GET_ASIC_REV(tp->pci_chip_rev_id) != ASIC_REV_5717 &&
9375 tp->pci_chip_rev_id != CHIPREV_ID_5719_A0 &&
9376 tp->pci_chip_rev_id != CHIPREV_ID_5720_A0) {
4d958473
MC
9377 TG3_STAT_ADD32(&sp->rx_discards, RCVLPC_IN_DISCARDS_CNT);
9378 } else {
9379 u32 val = tr32(HOSTCC_FLOW_ATTN);
9380 val = (val & HOSTCC_FLOW_ATTN_MBUF_LWM) ? 1 : 0;
9381 if (val) {
9382 tw32(HOSTCC_FLOW_ATTN, HOSTCC_FLOW_ATTN_MBUF_LWM);
9383 sp->rx_discards.low += val;
9384 if (sp->rx_discards.low < val)
9385 sp->rx_discards.high += 1;
9386 }
9387 sp->mbuf_lwm_thresh_hit = sp->rx_discards;
9388 }
463d305b 9389 TG3_STAT_ADD32(&sp->rx_errors, RCVLPC_IN_ERRORS_CNT);
1da177e4
LT
9390}
9391
0e6cf6a9
MC
9392static void tg3_chk_missed_msi(struct tg3 *tp)
9393{
9394 u32 i;
9395
9396 for (i = 0; i < tp->irq_cnt; i++) {
9397 struct tg3_napi *tnapi = &tp->napi[i];
9398
9399 if (tg3_has_work(tnapi)) {
9400 if (tnapi->last_rx_cons == tnapi->rx_rcb_ptr &&
9401 tnapi->last_tx_cons == tnapi->tx_cons) {
9402 if (tnapi->chk_msi_cnt < 1) {
9403 tnapi->chk_msi_cnt++;
9404 return;
9405 }
7f230735 9406 tg3_msi(0, tnapi);
0e6cf6a9
MC
9407 }
9408 }
9409 tnapi->chk_msi_cnt = 0;
9410 tnapi->last_rx_cons = tnapi->rx_rcb_ptr;
9411 tnapi->last_tx_cons = tnapi->tx_cons;
9412 }
9413}
9414
1da177e4
LT
9415static void tg3_timer(unsigned long __opaque)
9416{
9417 struct tg3 *tp = (struct tg3 *) __opaque;
1da177e4 9418
5b190624 9419 if (tp->irq_sync || tg3_flag(tp, RESET_TASK_PENDING))
f475f163
MC
9420 goto restart_timer;
9421
f47c11ee 9422 spin_lock(&tp->lock);
1da177e4 9423
0e6cf6a9 9424 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5717 ||
55086ad9 9425 tg3_flag(tp, 57765_CLASS))
0e6cf6a9
MC
9426 tg3_chk_missed_msi(tp);
9427
63c3a66f 9428 if (!tg3_flag(tp, TAGGED_STATUS)) {
fac9b83e
DM
9429 /* All of this garbage is because when using non-tagged
9430 * IRQ status the mailbox/status_block protocol the chip
9431 * uses with the cpu is race prone.
9432 */
898a56f8 9433 if (tp->napi[0].hw_status->status & SD_STATUS_UPDATED) {
fac9b83e
DM
9434 tw32(GRC_LOCAL_CTRL,
9435 tp->grc_local_ctrl | GRC_LCLCTRL_SETINT);
9436 } else {
9437 tw32(HOSTCC_MODE, tp->coalesce_mode |
fd2ce37f 9438 HOSTCC_MODE_ENABLE | HOSTCC_MODE_NOW);
fac9b83e 9439 }
1da177e4 9440
fac9b83e 9441 if (!(tr32(WDMAC_MODE) & WDMAC_MODE_ENABLE)) {
f47c11ee 9442 spin_unlock(&tp->lock);
db219973 9443 tg3_reset_task_schedule(tp);
5b190624 9444 goto restart_timer;
fac9b83e 9445 }
1da177e4
LT
9446 }
9447
1da177e4
LT
9448 /* This part only runs once per second. */
9449 if (!--tp->timer_counter) {
63c3a66f 9450 if (tg3_flag(tp, 5705_PLUS))
fac9b83e
DM
9451 tg3_periodic_fetch_stats(tp);
9452
b0c5943f
MC
9453 if (tp->setlpicnt && !--tp->setlpicnt)
9454 tg3_phy_eee_enable(tp);
52b02d04 9455
63c3a66f 9456 if (tg3_flag(tp, USE_LINKCHG_REG)) {
1da177e4
LT
9457 u32 mac_stat;
9458 int phy_event;
9459
9460 mac_stat = tr32(MAC_STATUS);
9461
9462 phy_event = 0;
f07e9af3 9463 if (tp->phy_flags & TG3_PHYFLG_USE_MI_INTERRUPT) {
1da177e4
LT
9464 if (mac_stat & MAC_STATUS_MI_INTERRUPT)
9465 phy_event = 1;
9466 } else if (mac_stat & MAC_STATUS_LNKSTATE_CHANGED)
9467 phy_event = 1;
9468
9469 if (phy_event)
9470 tg3_setup_phy(tp, 0);
63c3a66f 9471 } else if (tg3_flag(tp, POLL_SERDES)) {
1da177e4
LT
9472 u32 mac_stat = tr32(MAC_STATUS);
9473 int need_setup = 0;
9474
9475 if (netif_carrier_ok(tp->dev) &&
9476 (mac_stat & MAC_STATUS_LNKSTATE_CHANGED)) {
9477 need_setup = 1;
9478 }
be98da6a 9479 if (!netif_carrier_ok(tp->dev) &&
1da177e4
LT
9480 (mac_stat & (MAC_STATUS_PCS_SYNCED |
9481 MAC_STATUS_SIGNAL_DET))) {
9482 need_setup = 1;
9483 }
9484 if (need_setup) {
3d3ebe74
MC
9485 if (!tp->serdes_counter) {
9486 tw32_f(MAC_MODE,
9487 (tp->mac_mode &
9488 ~MAC_MODE_PORT_MODE_MASK));
9489 udelay(40);
9490 tw32_f(MAC_MODE, tp->mac_mode);
9491 udelay(40);
9492 }
1da177e4
LT
9493 tg3_setup_phy(tp, 0);
9494 }
f07e9af3 9495 } else if ((tp->phy_flags & TG3_PHYFLG_MII_SERDES) &&
63c3a66f 9496 tg3_flag(tp, 5780_CLASS)) {
747e8f8b 9497 tg3_serdes_parallel_detect(tp);
57d8b880 9498 }
1da177e4
LT
9499
9500 tp->timer_counter = tp->timer_multiplier;
9501 }
9502
130b8e4d
MC
9503 /* Heartbeat is only sent once every 2 seconds.
9504 *
9505 * The heartbeat is to tell the ASF firmware that the host
9506 * driver is still alive. In the event that the OS crashes,
9507 * ASF needs to reset the hardware to free up the FIFO space
9508 * that may be filled with rx packets destined for the host.
9509 * If the FIFO is full, ASF will no longer function properly.
9510 *
9511 * Unintended resets have been reported on real time kernels
9512 * where the timer doesn't run on time. Netpoll will also have
9513 * same problem.
9514 *
9515 * The new FWCMD_NICDRV_ALIVE3 command tells the ASF firmware
9516 * to check the ring condition when the heartbeat is expiring
9517 * before doing the reset. This will prevent most unintended
9518 * resets.
9519 */
1da177e4 9520 if (!--tp->asf_counter) {
63c3a66f 9521 if (tg3_flag(tp, ENABLE_ASF) && !tg3_flag(tp, ENABLE_APE)) {
7c5026aa
MC
9522 tg3_wait_for_event_ack(tp);
9523
bbadf503 9524 tg3_write_mem(tp, NIC_SRAM_FW_CMD_MBOX,
130b8e4d 9525 FWCMD_NICDRV_ALIVE3);
bbadf503 9526 tg3_write_mem(tp, NIC_SRAM_FW_CMD_LEN_MBOX, 4);
c6cdf436
MC
9527 tg3_write_mem(tp, NIC_SRAM_FW_CMD_DATA_MBOX,
9528 TG3_FW_UPDATE_TIMEOUT_SEC);
4ba526ce
MC
9529
9530 tg3_generate_fw_event(tp);
1da177e4
LT
9531 }
9532 tp->asf_counter = tp->asf_multiplier;
9533 }
9534
f47c11ee 9535 spin_unlock(&tp->lock);
1da177e4 9536
f475f163 9537restart_timer:
1da177e4
LT
9538 tp->timer.expires = jiffies + tp->timer_offset;
9539 add_timer(&tp->timer);
9540}
9541
21f7638e
MC
9542static void __devinit tg3_timer_init(struct tg3 *tp)
9543{
9544 if (tg3_flag(tp, TAGGED_STATUS) &&
9545 GET_ASIC_REV(tp->pci_chip_rev_id) != ASIC_REV_5717 &&
9546 !tg3_flag(tp, 57765_CLASS))
9547 tp->timer_offset = HZ;
9548 else
9549 tp->timer_offset = HZ / 10;
9550
9551 BUG_ON(tp->timer_offset > HZ);
9552
9553 tp->timer_multiplier = (HZ / tp->timer_offset);
9554 tp->asf_multiplier = (HZ / tp->timer_offset) *
9555 TG3_FW_UPDATE_FREQ_SEC;
9556
9557 init_timer(&tp->timer);
9558 tp->timer.data = (unsigned long) tp;
9559 tp->timer.function = tg3_timer;
9560}
9561
9562static void tg3_timer_start(struct tg3 *tp)
9563{
9564 tp->asf_counter = tp->asf_multiplier;
9565 tp->timer_counter = tp->timer_multiplier;
9566
9567 tp->timer.expires = jiffies + tp->timer_offset;
9568 add_timer(&tp->timer);
9569}
9570
9571static void tg3_timer_stop(struct tg3 *tp)
9572{
9573 del_timer_sync(&tp->timer);
9574}
9575
9576/* Restart hardware after configuration changes, self-test, etc.
9577 * Invoked with tp->lock held.
9578 */
9579static int tg3_restart_hw(struct tg3 *tp, int reset_phy)
9580 __releases(tp->lock)
9581 __acquires(tp->lock)
9582{
9583 int err;
9584
9585 err = tg3_init_hw(tp, reset_phy);
9586 if (err) {
9587 netdev_err(tp->dev,
9588 "Failed to re-initialize device, aborting\n");
9589 tg3_halt(tp, RESET_KIND_SHUTDOWN, 1);
9590 tg3_full_unlock(tp);
9591 tg3_timer_stop(tp);
9592 tp->irq_sync = 0;
9593 tg3_napi_enable(tp);
9594 dev_close(tp->dev);
9595 tg3_full_lock(tp, 0);
9596 }
9597 return err;
9598}
9599
9600static void tg3_reset_task(struct work_struct *work)
9601{
9602 struct tg3 *tp = container_of(work, struct tg3, reset_task);
9603 int err;
9604
9605 tg3_full_lock(tp, 0);
9606
9607 if (!netif_running(tp->dev)) {
9608 tg3_flag_clear(tp, RESET_TASK_PENDING);
9609 tg3_full_unlock(tp);
9610 return;
9611 }
9612
9613 tg3_full_unlock(tp);
9614
9615 tg3_phy_stop(tp);
9616
9617 tg3_netif_stop(tp);
9618
9619 tg3_full_lock(tp, 1);
9620
9621 if (tg3_flag(tp, TX_RECOVERY_PENDING)) {
9622 tp->write32_tx_mbox = tg3_write32_tx_mbox;
9623 tp->write32_rx_mbox = tg3_write_flush_reg32;
9624 tg3_flag_set(tp, MBOX_WRITE_REORDER);
9625 tg3_flag_clear(tp, TX_RECOVERY_PENDING);
9626 }
9627
9628 tg3_halt(tp, RESET_KIND_SHUTDOWN, 0);
9629 err = tg3_init_hw(tp, 1);
9630 if (err)
9631 goto out;
9632
9633 tg3_netif_start(tp);
9634
9635out:
9636 tg3_full_unlock(tp);
9637
9638 if (!err)
9639 tg3_phy_start(tp);
9640
9641 tg3_flag_clear(tp, RESET_TASK_PENDING);
9642}
9643
4f125f42 9644static int tg3_request_irq(struct tg3 *tp, int irq_num)
fcfa0a32 9645{
7d12e780 9646 irq_handler_t fn;
fcfa0a32 9647 unsigned long flags;
4f125f42
MC
9648 char *name;
9649 struct tg3_napi *tnapi = &tp->napi[irq_num];
9650
9651 if (tp->irq_cnt == 1)
9652 name = tp->dev->name;
9653 else {
9654 name = &tnapi->irq_lbl[0];
9655 snprintf(name, IFNAMSIZ, "%s-%d", tp->dev->name, irq_num);
9656 name[IFNAMSIZ-1] = 0;
9657 }
fcfa0a32 9658
63c3a66f 9659 if (tg3_flag(tp, USING_MSI) || tg3_flag(tp, USING_MSIX)) {
fcfa0a32 9660 fn = tg3_msi;
63c3a66f 9661 if (tg3_flag(tp, 1SHOT_MSI))
fcfa0a32 9662 fn = tg3_msi_1shot;
ab392d2d 9663 flags = 0;
fcfa0a32
MC
9664 } else {
9665 fn = tg3_interrupt;
63c3a66f 9666 if (tg3_flag(tp, TAGGED_STATUS))
fcfa0a32 9667 fn = tg3_interrupt_tagged;
ab392d2d 9668 flags = IRQF_SHARED;
fcfa0a32 9669 }
4f125f42
MC
9670
9671 return request_irq(tnapi->irq_vec, fn, flags, name, tnapi);
fcfa0a32
MC
9672}
9673
7938109f
MC
9674static int tg3_test_interrupt(struct tg3 *tp)
9675{
09943a18 9676 struct tg3_napi *tnapi = &tp->napi[0];
7938109f 9677 struct net_device *dev = tp->dev;
b16250e3 9678 int err, i, intr_ok = 0;
f6eb9b1f 9679 u32 val;
7938109f 9680
d4bc3927
MC
9681 if (!netif_running(dev))
9682 return -ENODEV;
9683
7938109f
MC
9684 tg3_disable_ints(tp);
9685
4f125f42 9686 free_irq(tnapi->irq_vec, tnapi);
7938109f 9687
f6eb9b1f
MC
9688 /*
9689 * Turn off MSI one shot mode. Otherwise this test has no
9690 * observable way to know whether the interrupt was delivered.
9691 */
3aa1cdf8 9692 if (tg3_flag(tp, 57765_PLUS)) {
f6eb9b1f
MC
9693 val = tr32(MSGINT_MODE) | MSGINT_MODE_ONE_SHOT_DISABLE;
9694 tw32(MSGINT_MODE, val);
9695 }
9696
4f125f42 9697 err = request_irq(tnapi->irq_vec, tg3_test_isr,
f274fd9a 9698 IRQF_SHARED, dev->name, tnapi);
7938109f
MC
9699 if (err)
9700 return err;
9701
898a56f8 9702 tnapi->hw_status->status &= ~SD_STATUS_UPDATED;
7938109f
MC
9703 tg3_enable_ints(tp);
9704
9705 tw32_f(HOSTCC_MODE, tp->coalesce_mode | HOSTCC_MODE_ENABLE |
fd2ce37f 9706 tnapi->coal_now);
7938109f
MC
9707
9708 for (i = 0; i < 5; i++) {
b16250e3
MC
9709 u32 int_mbox, misc_host_ctrl;
9710
898a56f8 9711 int_mbox = tr32_mailbox(tnapi->int_mbox);
b16250e3
MC
9712 misc_host_ctrl = tr32(TG3PCI_MISC_HOST_CTRL);
9713
9714 if ((int_mbox != 0) ||
9715 (misc_host_ctrl & MISC_HOST_CTRL_MASK_PCI_INT)) {
9716 intr_ok = 1;
7938109f 9717 break;
b16250e3
MC
9718 }
9719
3aa1cdf8
MC
9720 if (tg3_flag(tp, 57765_PLUS) &&
9721 tnapi->hw_status->status_tag != tnapi->last_tag)
9722 tw32_mailbox_f(tnapi->int_mbox, tnapi->last_tag << 24);
9723
7938109f
MC
9724 msleep(10);
9725 }
9726
9727 tg3_disable_ints(tp);
9728
4f125f42 9729 free_irq(tnapi->irq_vec, tnapi);
6aa20a22 9730
4f125f42 9731 err = tg3_request_irq(tp, 0);
7938109f
MC
9732
9733 if (err)
9734 return err;
9735
f6eb9b1f
MC
9736 if (intr_ok) {
9737 /* Reenable MSI one shot mode. */
5b39de91 9738 if (tg3_flag(tp, 57765_PLUS) && tg3_flag(tp, 1SHOT_MSI)) {
f6eb9b1f
MC
9739 val = tr32(MSGINT_MODE) & ~MSGINT_MODE_ONE_SHOT_DISABLE;
9740 tw32(MSGINT_MODE, val);
9741 }
7938109f 9742 return 0;
f6eb9b1f 9743 }
7938109f
MC
9744
9745 return -EIO;
9746}
9747
9748/* Returns 0 if MSI test succeeds or MSI test fails and INTx mode is
9749 * successfully restored
9750 */
9751static int tg3_test_msi(struct tg3 *tp)
9752{
7938109f
MC
9753 int err;
9754 u16 pci_cmd;
9755
63c3a66f 9756 if (!tg3_flag(tp, USING_MSI))
7938109f
MC
9757 return 0;
9758
9759 /* Turn off SERR reporting in case MSI terminates with Master
9760 * Abort.
9761 */
9762 pci_read_config_word(tp->pdev, PCI_COMMAND, &pci_cmd);
9763 pci_write_config_word(tp->pdev, PCI_COMMAND,
9764 pci_cmd & ~PCI_COMMAND_SERR);
9765
9766 err = tg3_test_interrupt(tp);
9767
9768 pci_write_config_word(tp->pdev, PCI_COMMAND, pci_cmd);
9769
9770 if (!err)
9771 return 0;
9772
9773 /* other failures */
9774 if (err != -EIO)
9775 return err;
9776
9777 /* MSI test failed, go back to INTx mode */
5129c3a3
MC
9778 netdev_warn(tp->dev, "No interrupt was generated using MSI. Switching "
9779 "to INTx mode. Please report this failure to the PCI "
9780 "maintainer and include system chipset information\n");
7938109f 9781
4f125f42 9782 free_irq(tp->napi[0].irq_vec, &tp->napi[0]);
09943a18 9783
7938109f
MC
9784 pci_disable_msi(tp->pdev);
9785
63c3a66f 9786 tg3_flag_clear(tp, USING_MSI);
dc8bf1b1 9787 tp->napi[0].irq_vec = tp->pdev->irq;
7938109f 9788
4f125f42 9789 err = tg3_request_irq(tp, 0);
7938109f
MC
9790 if (err)
9791 return err;
9792
9793 /* Need to reset the chip because the MSI cycle may have terminated
9794 * with Master Abort.
9795 */
f47c11ee 9796 tg3_full_lock(tp, 1);
7938109f 9797
944d980e 9798 tg3_halt(tp, RESET_KIND_SHUTDOWN, 1);
8e7a22e3 9799 err = tg3_init_hw(tp, 1);
7938109f 9800
f47c11ee 9801 tg3_full_unlock(tp);
7938109f
MC
9802
9803 if (err)
4f125f42 9804 free_irq(tp->napi[0].irq_vec, &tp->napi[0]);
7938109f
MC
9805
9806 return err;
9807}
9808
9e9fd12d
MC
9809static int tg3_request_firmware(struct tg3 *tp)
9810{
9811 const __be32 *fw_data;
9812
9813 if (request_firmware(&tp->fw, tp->fw_needed, &tp->pdev->dev)) {
05dbe005
JP
9814 netdev_err(tp->dev, "Failed to load firmware \"%s\"\n",
9815 tp->fw_needed);
9e9fd12d
MC
9816 return -ENOENT;
9817 }
9818
9819 fw_data = (void *)tp->fw->data;
9820
9821 /* Firmware blob starts with version numbers, followed by
9822 * start address and _full_ length including BSS sections
9823 * (which must be longer than the actual data, of course
9824 */
9825
9826 tp->fw_len = be32_to_cpu(fw_data[2]); /* includes bss */
9827 if (tp->fw_len < (tp->fw->size - 12)) {
05dbe005
JP
9828 netdev_err(tp->dev, "bogus length %d in \"%s\"\n",
9829 tp->fw_len, tp->fw_needed);
9e9fd12d
MC
9830 release_firmware(tp->fw);
9831 tp->fw = NULL;
9832 return -EINVAL;
9833 }
9834
9835 /* We no longer need firmware; we have it. */
9836 tp->fw_needed = NULL;
9837 return 0;
9838}
9839
679563f4
MC
9840static bool tg3_enable_msix(struct tg3 *tp)
9841{
c3b5003b 9842 int i, rc;
679563f4
MC
9843 struct msix_entry msix_ent[tp->irq_max];
9844
c3b5003b
MC
9845 tp->irq_cnt = num_online_cpus();
9846 if (tp->irq_cnt > 1) {
9847 /* We want as many rx rings enabled as there are cpus.
9848 * In multiqueue MSI-X mode, the first MSI-X vector
9849 * only deals with link interrupts, etc, so we add
9850 * one to the number of vectors we are requesting.
9851 */
9852 tp->irq_cnt = min_t(unsigned, tp->irq_cnt + 1, tp->irq_max);
9853 }
679563f4
MC
9854
9855 for (i = 0; i < tp->irq_max; i++) {
9856 msix_ent[i].entry = i;
9857 msix_ent[i].vector = 0;
9858 }
9859
9860 rc = pci_enable_msix(tp->pdev, msix_ent, tp->irq_cnt);
2430b031
MC
9861 if (rc < 0) {
9862 return false;
9863 } else if (rc != 0) {
679563f4
MC
9864 if (pci_enable_msix(tp->pdev, msix_ent, rc))
9865 return false;
05dbe005
JP
9866 netdev_notice(tp->dev, "Requested %d MSI-X vectors, received %d\n",
9867 tp->irq_cnt, rc);
679563f4
MC
9868 tp->irq_cnt = rc;
9869 }
9870
9871 for (i = 0; i < tp->irq_max; i++)
9872 tp->napi[i].irq_vec = msix_ent[i].vector;
9873
2ddaad39
BH
9874 netif_set_real_num_tx_queues(tp->dev, 1);
9875 rc = tp->irq_cnt > 1 ? tp->irq_cnt - 1 : 1;
9876 if (netif_set_real_num_rx_queues(tp->dev, rc)) {
9877 pci_disable_msix(tp->pdev);
9878 return false;
9879 }
b92b9040
MC
9880
9881 if (tp->irq_cnt > 1) {
63c3a66f 9882 tg3_flag_set(tp, ENABLE_RSS);
d78b59f5
MC
9883
9884 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5719 ||
9885 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5720) {
63c3a66f 9886 tg3_flag_set(tp, ENABLE_TSS);
b92b9040
MC
9887 netif_set_real_num_tx_queues(tp->dev, tp->irq_cnt - 1);
9888 }
9889 }
2430b031 9890
679563f4
MC
9891 return true;
9892}
9893
07b0173c
MC
9894static void tg3_ints_init(struct tg3 *tp)
9895{
63c3a66f
JP
9896 if ((tg3_flag(tp, SUPPORT_MSI) || tg3_flag(tp, SUPPORT_MSIX)) &&
9897 !tg3_flag(tp, TAGGED_STATUS)) {
07b0173c
MC
9898 /* All MSI supporting chips should support tagged
9899 * status. Assert that this is the case.
9900 */
5129c3a3
MC
9901 netdev_warn(tp->dev,
9902 "MSI without TAGGED_STATUS? Not using MSI\n");
679563f4 9903 goto defcfg;
07b0173c 9904 }
4f125f42 9905
63c3a66f
JP
9906 if (tg3_flag(tp, SUPPORT_MSIX) && tg3_enable_msix(tp))
9907 tg3_flag_set(tp, USING_MSIX);
9908 else if (tg3_flag(tp, SUPPORT_MSI) && pci_enable_msi(tp->pdev) == 0)
9909 tg3_flag_set(tp, USING_MSI);
679563f4 9910
63c3a66f 9911 if (tg3_flag(tp, USING_MSI) || tg3_flag(tp, USING_MSIX)) {
679563f4 9912 u32 msi_mode = tr32(MSGINT_MODE);
63c3a66f 9913 if (tg3_flag(tp, USING_MSIX) && tp->irq_cnt > 1)
baf8a94a 9914 msi_mode |= MSGINT_MODE_MULTIVEC_EN;
5b39de91
MC
9915 if (!tg3_flag(tp, 1SHOT_MSI))
9916 msi_mode |= MSGINT_MODE_ONE_SHOT_DISABLE;
679563f4
MC
9917 tw32(MSGINT_MODE, msi_mode | MSGINT_MODE_ENABLE);
9918 }
9919defcfg:
63c3a66f 9920 if (!tg3_flag(tp, USING_MSIX)) {
679563f4
MC
9921 tp->irq_cnt = 1;
9922 tp->napi[0].irq_vec = tp->pdev->irq;
2ddaad39 9923 netif_set_real_num_tx_queues(tp->dev, 1);
85407885 9924 netif_set_real_num_rx_queues(tp->dev, 1);
679563f4 9925 }
07b0173c
MC
9926}
9927
9928static void tg3_ints_fini(struct tg3 *tp)
9929{
63c3a66f 9930 if (tg3_flag(tp, USING_MSIX))
679563f4 9931 pci_disable_msix(tp->pdev);
63c3a66f 9932 else if (tg3_flag(tp, USING_MSI))
679563f4 9933 pci_disable_msi(tp->pdev);
63c3a66f
JP
9934 tg3_flag_clear(tp, USING_MSI);
9935 tg3_flag_clear(tp, USING_MSIX);
9936 tg3_flag_clear(tp, ENABLE_RSS);
9937 tg3_flag_clear(tp, ENABLE_TSS);
07b0173c
MC
9938}
9939
1da177e4
LT
9940static int tg3_open(struct net_device *dev)
9941{
9942 struct tg3 *tp = netdev_priv(dev);
4f125f42 9943 int i, err;
1da177e4 9944
9e9fd12d
MC
9945 if (tp->fw_needed) {
9946 err = tg3_request_firmware(tp);
9947 if (tp->pci_chip_rev_id == CHIPREV_ID_5701_A0) {
9948 if (err)
9949 return err;
9950 } else if (err) {
05dbe005 9951 netdev_warn(tp->dev, "TSO capability disabled\n");
63c3a66f
JP
9952 tg3_flag_clear(tp, TSO_CAPABLE);
9953 } else if (!tg3_flag(tp, TSO_CAPABLE)) {
05dbe005 9954 netdev_notice(tp->dev, "TSO capability restored\n");
63c3a66f 9955 tg3_flag_set(tp, TSO_CAPABLE);
9e9fd12d
MC
9956 }
9957 }
9958
c49a1561
MC
9959 netif_carrier_off(tp->dev);
9960
c866b7ea 9961 err = tg3_power_up(tp);
2f751b67 9962 if (err)
bc1c7567 9963 return err;
2f751b67
MC
9964
9965 tg3_full_lock(tp, 0);
bc1c7567 9966
1da177e4 9967 tg3_disable_ints(tp);
63c3a66f 9968 tg3_flag_clear(tp, INIT_COMPLETE);
1da177e4 9969
f47c11ee 9970 tg3_full_unlock(tp);
1da177e4 9971
679563f4
MC
9972 /*
9973 * Setup interrupts first so we know how
9974 * many NAPI resources to allocate
9975 */
9976 tg3_ints_init(tp);
9977
90415477 9978 tg3_rss_check_indir_tbl(tp);
bcebcc46 9979
1da177e4
LT
9980 /* The placement of this call is tied
9981 * to the setup and use of Host TX descriptors.
9982 */
9983 err = tg3_alloc_consistent(tp);
9984 if (err)
679563f4 9985 goto err_out1;
88b06bc2 9986
66cfd1bd
MC
9987 tg3_napi_init(tp);
9988
fed97810 9989 tg3_napi_enable(tp);
1da177e4 9990
4f125f42
MC
9991 for (i = 0; i < tp->irq_cnt; i++) {
9992 struct tg3_napi *tnapi = &tp->napi[i];
9993 err = tg3_request_irq(tp, i);
9994 if (err) {
5bc09186
MC
9995 for (i--; i >= 0; i--) {
9996 tnapi = &tp->napi[i];
4f125f42 9997 free_irq(tnapi->irq_vec, tnapi);
5bc09186
MC
9998 }
9999 goto err_out2;
4f125f42
MC
10000 }
10001 }
1da177e4 10002
f47c11ee 10003 tg3_full_lock(tp, 0);
1da177e4 10004
8e7a22e3 10005 err = tg3_init_hw(tp, 1);
1da177e4 10006 if (err) {
944d980e 10007 tg3_halt(tp, RESET_KIND_SHUTDOWN, 1);
1da177e4 10008 tg3_free_rings(tp);
1da177e4
LT
10009 }
10010
f47c11ee 10011 tg3_full_unlock(tp);
1da177e4 10012
07b0173c 10013 if (err)
679563f4 10014 goto err_out3;
1da177e4 10015
63c3a66f 10016 if (tg3_flag(tp, USING_MSI)) {
7938109f 10017 err = tg3_test_msi(tp);
fac9b83e 10018
7938109f 10019 if (err) {
f47c11ee 10020 tg3_full_lock(tp, 0);
944d980e 10021 tg3_halt(tp, RESET_KIND_SHUTDOWN, 1);
7938109f 10022 tg3_free_rings(tp);
f47c11ee 10023 tg3_full_unlock(tp);
7938109f 10024
679563f4 10025 goto err_out2;
7938109f 10026 }
fcfa0a32 10027
63c3a66f 10028 if (!tg3_flag(tp, 57765_PLUS) && tg3_flag(tp, USING_MSI)) {
f6eb9b1f 10029 u32 val = tr32(PCIE_TRANSACTION_CFG);
fcfa0a32 10030
f6eb9b1f
MC
10031 tw32(PCIE_TRANSACTION_CFG,
10032 val | PCIE_TRANS_CFG_1SHOT_MSI);
fcfa0a32 10033 }
7938109f
MC
10034 }
10035
b02fd9e3
MC
10036 tg3_phy_start(tp);
10037
f47c11ee 10038 tg3_full_lock(tp, 0);
1da177e4 10039
21f7638e 10040 tg3_timer_start(tp);
63c3a66f 10041 tg3_flag_set(tp, INIT_COMPLETE);
1da177e4
LT
10042 tg3_enable_ints(tp);
10043
f47c11ee 10044 tg3_full_unlock(tp);
1da177e4 10045
fe5f5787 10046 netif_tx_start_all_queues(dev);
1da177e4 10047
06c03c02
MB
10048 /*
10049 * Reset loopback feature if it was turned on while the device was down
10050 * make sure that it's installed properly now.
10051 */
10052 if (dev->features & NETIF_F_LOOPBACK)
10053 tg3_set_loopback(dev, dev->features);
10054
1da177e4 10055 return 0;
07b0173c 10056
679563f4 10057err_out3:
4f125f42
MC
10058 for (i = tp->irq_cnt - 1; i >= 0; i--) {
10059 struct tg3_napi *tnapi = &tp->napi[i];
10060 free_irq(tnapi->irq_vec, tnapi);
10061 }
07b0173c 10062
679563f4 10063err_out2:
fed97810 10064 tg3_napi_disable(tp);
66cfd1bd 10065 tg3_napi_fini(tp);
07b0173c 10066 tg3_free_consistent(tp);
679563f4
MC
10067
10068err_out1:
10069 tg3_ints_fini(tp);
cd0d7228
MC
10070 tg3_frob_aux_power(tp, false);
10071 pci_set_power_state(tp->pdev, PCI_D3hot);
07b0173c 10072 return err;
1da177e4
LT
10073}
10074
1da177e4
LT
10075static int tg3_close(struct net_device *dev)
10076{
4f125f42 10077 int i;
1da177e4
LT
10078 struct tg3 *tp = netdev_priv(dev);
10079
fed97810 10080 tg3_napi_disable(tp);
db219973 10081 tg3_reset_task_cancel(tp);
7faa006f 10082
fe5f5787 10083 netif_tx_stop_all_queues(dev);
1da177e4 10084
21f7638e 10085 tg3_timer_stop(tp);
1da177e4 10086
24bb4fb6
MC
10087 tg3_phy_stop(tp);
10088
f47c11ee 10089 tg3_full_lock(tp, 1);
1da177e4
LT
10090
10091 tg3_disable_ints(tp);
10092
944d980e 10093 tg3_halt(tp, RESET_KIND_SHUTDOWN, 1);
1da177e4 10094 tg3_free_rings(tp);
63c3a66f 10095 tg3_flag_clear(tp, INIT_COMPLETE);
1da177e4 10096
f47c11ee 10097 tg3_full_unlock(tp);
1da177e4 10098
4f125f42
MC
10099 for (i = tp->irq_cnt - 1; i >= 0; i--) {
10100 struct tg3_napi *tnapi = &tp->napi[i];
10101 free_irq(tnapi->irq_vec, tnapi);
10102 }
07b0173c
MC
10103
10104 tg3_ints_fini(tp);
1da177e4 10105
92feeabf
MC
10106 /* Clear stats across close / open calls */
10107 memset(&tp->net_stats_prev, 0, sizeof(tp->net_stats_prev));
10108 memset(&tp->estats_prev, 0, sizeof(tp->estats_prev));
1da177e4 10109
66cfd1bd
MC
10110 tg3_napi_fini(tp);
10111
1da177e4
LT
10112 tg3_free_consistent(tp);
10113
c866b7ea 10114 tg3_power_down(tp);
bc1c7567
MC
10115
10116 netif_carrier_off(tp->dev);
10117
1da177e4
LT
10118 return 0;
10119}
10120
511d2224 10121static inline u64 get_stat64(tg3_stat64_t *val)
816f8b86
SB
10122{
10123 return ((u64)val->high << 32) | ((u64)val->low);
10124}
10125
65ec698d 10126static u64 tg3_calc_crc_errors(struct tg3 *tp)
1da177e4
LT
10127{
10128 struct tg3_hw_stats *hw_stats = tp->hw_stats;
10129
f07e9af3 10130 if (!(tp->phy_flags & TG3_PHYFLG_PHY_SERDES) &&
1da177e4
LT
10131 (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5700 ||
10132 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5701)) {
1da177e4
LT
10133 u32 val;
10134
569a5df8
MC
10135 if (!tg3_readphy(tp, MII_TG3_TEST1, &val)) {
10136 tg3_writephy(tp, MII_TG3_TEST1,
10137 val | MII_TG3_TEST1_CRC_EN);
f08aa1a8 10138 tg3_readphy(tp, MII_TG3_RXR_COUNTERS, &val);
1da177e4
LT
10139 } else
10140 val = 0;
1da177e4
LT
10141
10142 tp->phy_crc_errors += val;
10143
10144 return tp->phy_crc_errors;
10145 }
10146
10147 return get_stat64(&hw_stats->rx_fcs_errors);
10148}
10149
10150#define ESTAT_ADD(member) \
10151 estats->member = old_estats->member + \
511d2224 10152 get_stat64(&hw_stats->member)
1da177e4 10153
65ec698d 10154static void tg3_get_estats(struct tg3 *tp, struct tg3_ethtool_stats *estats)
1da177e4 10155{
1da177e4
LT
10156 struct tg3_ethtool_stats *old_estats = &tp->estats_prev;
10157 struct tg3_hw_stats *hw_stats = tp->hw_stats;
10158
1da177e4
LT
10159 ESTAT_ADD(rx_octets);
10160 ESTAT_ADD(rx_fragments);
10161 ESTAT_ADD(rx_ucast_packets);
10162 ESTAT_ADD(rx_mcast_packets);
10163 ESTAT_ADD(rx_bcast_packets);
10164 ESTAT_ADD(rx_fcs_errors);
10165 ESTAT_ADD(rx_align_errors);
10166 ESTAT_ADD(rx_xon_pause_rcvd);
10167 ESTAT_ADD(rx_xoff_pause_rcvd);
10168 ESTAT_ADD(rx_mac_ctrl_rcvd);
10169 ESTAT_ADD(rx_xoff_entered);
10170 ESTAT_ADD(rx_frame_too_long_errors);
10171 ESTAT_ADD(rx_jabbers);
10172 ESTAT_ADD(rx_undersize_packets);
10173 ESTAT_ADD(rx_in_length_errors);
10174 ESTAT_ADD(rx_out_length_errors);
10175 ESTAT_ADD(rx_64_or_less_octet_packets);
10176 ESTAT_ADD(rx_65_to_127_octet_packets);
10177 ESTAT_ADD(rx_128_to_255_octet_packets);
10178 ESTAT_ADD(rx_256_to_511_octet_packets);
10179 ESTAT_ADD(rx_512_to_1023_octet_packets);
10180 ESTAT_ADD(rx_1024_to_1522_octet_packets);
10181 ESTAT_ADD(rx_1523_to_2047_octet_packets);
10182 ESTAT_ADD(rx_2048_to_4095_octet_packets);
10183 ESTAT_ADD(rx_4096_to_8191_octet_packets);
10184 ESTAT_ADD(rx_8192_to_9022_octet_packets);
10185
10186 ESTAT_ADD(tx_octets);
10187 ESTAT_ADD(tx_collisions);
10188 ESTAT_ADD(tx_xon_sent);
10189 ESTAT_ADD(tx_xoff_sent);
10190 ESTAT_ADD(tx_flow_control);
10191 ESTAT_ADD(tx_mac_errors);
10192 ESTAT_ADD(tx_single_collisions);
10193 ESTAT_ADD(tx_mult_collisions);
10194 ESTAT_ADD(tx_deferred);
10195 ESTAT_ADD(tx_excessive_collisions);
10196 ESTAT_ADD(tx_late_collisions);
10197 ESTAT_ADD(tx_collide_2times);
10198 ESTAT_ADD(tx_collide_3times);
10199 ESTAT_ADD(tx_collide_4times);
10200 ESTAT_ADD(tx_collide_5times);
10201 ESTAT_ADD(tx_collide_6times);
10202 ESTAT_ADD(tx_collide_7times);
10203 ESTAT_ADD(tx_collide_8times);
10204 ESTAT_ADD(tx_collide_9times);
10205 ESTAT_ADD(tx_collide_10times);
10206 ESTAT_ADD(tx_collide_11times);
10207 ESTAT_ADD(tx_collide_12times);
10208 ESTAT_ADD(tx_collide_13times);
10209 ESTAT_ADD(tx_collide_14times);
10210 ESTAT_ADD(tx_collide_15times);
10211 ESTAT_ADD(tx_ucast_packets);
10212 ESTAT_ADD(tx_mcast_packets);
10213 ESTAT_ADD(tx_bcast_packets);
10214 ESTAT_ADD(tx_carrier_sense_errors);
10215 ESTAT_ADD(tx_discards);
10216 ESTAT_ADD(tx_errors);
10217
10218 ESTAT_ADD(dma_writeq_full);
10219 ESTAT_ADD(dma_write_prioq_full);
10220 ESTAT_ADD(rxbds_empty);
10221 ESTAT_ADD(rx_discards);
10222 ESTAT_ADD(rx_errors);
10223 ESTAT_ADD(rx_threshold_hit);
10224
10225 ESTAT_ADD(dma_readq_full);
10226 ESTAT_ADD(dma_read_prioq_full);
10227 ESTAT_ADD(tx_comp_queue_full);
10228
10229 ESTAT_ADD(ring_set_send_prod_index);
10230 ESTAT_ADD(ring_status_update);
10231 ESTAT_ADD(nic_irqs);
10232 ESTAT_ADD(nic_avoided_irqs);
10233 ESTAT_ADD(nic_tx_threshold_hit);
10234
4452d099 10235 ESTAT_ADD(mbuf_lwm_thresh_hit);
1da177e4
LT
10236}
10237
65ec698d 10238static void tg3_get_nstats(struct tg3 *tp, struct rtnl_link_stats64 *stats)
1da177e4 10239{
511d2224 10240 struct rtnl_link_stats64 *old_stats = &tp->net_stats_prev;
1da177e4
LT
10241 struct tg3_hw_stats *hw_stats = tp->hw_stats;
10242
1da177e4
LT
10243 stats->rx_packets = old_stats->rx_packets +
10244 get_stat64(&hw_stats->rx_ucast_packets) +
10245 get_stat64(&hw_stats->rx_mcast_packets) +
10246 get_stat64(&hw_stats->rx_bcast_packets);
6aa20a22 10247
1da177e4
LT
10248 stats->tx_packets = old_stats->tx_packets +
10249 get_stat64(&hw_stats->tx_ucast_packets) +
10250 get_stat64(&hw_stats->tx_mcast_packets) +
10251 get_stat64(&hw_stats->tx_bcast_packets);
10252
10253 stats->rx_bytes = old_stats->rx_bytes +
10254 get_stat64(&hw_stats->rx_octets);
10255 stats->tx_bytes = old_stats->tx_bytes +
10256 get_stat64(&hw_stats->tx_octets);
10257
10258 stats->rx_errors = old_stats->rx_errors +
4f63b877 10259 get_stat64(&hw_stats->rx_errors);
1da177e4
LT
10260 stats->tx_errors = old_stats->tx_errors +
10261 get_stat64(&hw_stats->tx_errors) +
10262 get_stat64(&hw_stats->tx_mac_errors) +
10263 get_stat64(&hw_stats->tx_carrier_sense_errors) +
10264 get_stat64(&hw_stats->tx_discards);
10265
10266 stats->multicast = old_stats->multicast +
10267 get_stat64(&hw_stats->rx_mcast_packets);
10268 stats->collisions = old_stats->collisions +
10269 get_stat64(&hw_stats->tx_collisions);
10270
10271 stats->rx_length_errors = old_stats->rx_length_errors +
10272 get_stat64(&hw_stats->rx_frame_too_long_errors) +
10273 get_stat64(&hw_stats->rx_undersize_packets);
10274
10275 stats->rx_over_errors = old_stats->rx_over_errors +
10276 get_stat64(&hw_stats->rxbds_empty);
10277 stats->rx_frame_errors = old_stats->rx_frame_errors +
10278 get_stat64(&hw_stats->rx_align_errors);
10279 stats->tx_aborted_errors = old_stats->tx_aborted_errors +
10280 get_stat64(&hw_stats->tx_discards);
10281 stats->tx_carrier_errors = old_stats->tx_carrier_errors +
10282 get_stat64(&hw_stats->tx_carrier_sense_errors);
10283
10284 stats->rx_crc_errors = old_stats->rx_crc_errors +
65ec698d 10285 tg3_calc_crc_errors(tp);
1da177e4 10286
4f63b877
JL
10287 stats->rx_missed_errors = old_stats->rx_missed_errors +
10288 get_stat64(&hw_stats->rx_discards);
10289
b0057c51 10290 stats->rx_dropped = tp->rx_dropped;
48855432 10291 stats->tx_dropped = tp->tx_dropped;
1da177e4
LT
10292}
10293
1da177e4
LT
10294static int tg3_get_regs_len(struct net_device *dev)
10295{
97bd8e49 10296 return TG3_REG_BLK_SIZE;
1da177e4
LT
10297}
10298
10299static void tg3_get_regs(struct net_device *dev,
10300 struct ethtool_regs *regs, void *_p)
10301{
1da177e4 10302 struct tg3 *tp = netdev_priv(dev);
1da177e4
LT
10303
10304 regs->version = 0;
10305
97bd8e49 10306 memset(_p, 0, TG3_REG_BLK_SIZE);
1da177e4 10307
80096068 10308 if (tp->phy_flags & TG3_PHYFLG_IS_LOW_POWER)
bc1c7567
MC
10309 return;
10310
f47c11ee 10311 tg3_full_lock(tp, 0);
1da177e4 10312
97bd8e49 10313 tg3_dump_legacy_regs(tp, (u32 *)_p);
1da177e4 10314
f47c11ee 10315 tg3_full_unlock(tp);
1da177e4
LT
10316}
10317
10318static int tg3_get_eeprom_len(struct net_device *dev)
10319{
10320 struct tg3 *tp = netdev_priv(dev);
10321
10322 return tp->nvram_size;
10323}
10324
1da177e4
LT
10325static int tg3_get_eeprom(struct net_device *dev, struct ethtool_eeprom *eeprom, u8 *data)
10326{
10327 struct tg3 *tp = netdev_priv(dev);
10328 int ret;
10329 u8 *pd;
b9fc7dc5 10330 u32 i, offset, len, b_offset, b_count;
a9dc529d 10331 __be32 val;
1da177e4 10332
63c3a66f 10333 if (tg3_flag(tp, NO_NVRAM))
df259d8c
MC
10334 return -EINVAL;
10335
80096068 10336 if (tp->phy_flags & TG3_PHYFLG_IS_LOW_POWER)
bc1c7567
MC
10337 return -EAGAIN;
10338
1da177e4
LT
10339 offset = eeprom->offset;
10340 len = eeprom->len;
10341 eeprom->len = 0;
10342
10343 eeprom->magic = TG3_EEPROM_MAGIC;
10344
10345 if (offset & 3) {
10346 /* adjustments to start on required 4 byte boundary */
10347 b_offset = offset & 3;
10348 b_count = 4 - b_offset;
10349 if (b_count > len) {
10350 /* i.e. offset=1 len=2 */
10351 b_count = len;
10352 }
a9dc529d 10353 ret = tg3_nvram_read_be32(tp, offset-b_offset, &val);
1da177e4
LT
10354 if (ret)
10355 return ret;
be98da6a 10356 memcpy(data, ((char *)&val) + b_offset, b_count);
1da177e4
LT
10357 len -= b_count;
10358 offset += b_count;
c6cdf436 10359 eeprom->len += b_count;
1da177e4
LT
10360 }
10361
25985edc 10362 /* read bytes up to the last 4 byte boundary */
1da177e4
LT
10363 pd = &data[eeprom->len];
10364 for (i = 0; i < (len - (len & 3)); i += 4) {
a9dc529d 10365 ret = tg3_nvram_read_be32(tp, offset + i, &val);
1da177e4
LT
10366 if (ret) {
10367 eeprom->len += i;
10368 return ret;
10369 }
1da177e4
LT
10370 memcpy(pd + i, &val, 4);
10371 }
10372 eeprom->len += i;
10373
10374 if (len & 3) {
10375 /* read last bytes not ending on 4 byte boundary */
10376 pd = &data[eeprom->len];
10377 b_count = len & 3;
10378 b_offset = offset + len - b_count;
a9dc529d 10379 ret = tg3_nvram_read_be32(tp, b_offset, &val);
1da177e4
LT
10380 if (ret)
10381 return ret;
b9fc7dc5 10382 memcpy(pd, &val, b_count);
1da177e4
LT
10383 eeprom->len += b_count;
10384 }
10385 return 0;
10386}
10387
1da177e4
LT
10388static int tg3_set_eeprom(struct net_device *dev, struct ethtool_eeprom *eeprom, u8 *data)
10389{
10390 struct tg3 *tp = netdev_priv(dev);
10391 int ret;
b9fc7dc5 10392 u32 offset, len, b_offset, odd_len;
1da177e4 10393 u8 *buf;
a9dc529d 10394 __be32 start, end;
1da177e4 10395
80096068 10396 if (tp->phy_flags & TG3_PHYFLG_IS_LOW_POWER)
bc1c7567
MC
10397 return -EAGAIN;
10398
63c3a66f 10399 if (tg3_flag(tp, NO_NVRAM) ||
df259d8c 10400 eeprom->magic != TG3_EEPROM_MAGIC)
1da177e4
LT
10401 return -EINVAL;
10402
10403 offset = eeprom->offset;
10404 len = eeprom->len;
10405
10406 if ((b_offset = (offset & 3))) {
10407 /* adjustments to start on required 4 byte boundary */
a9dc529d 10408 ret = tg3_nvram_read_be32(tp, offset-b_offset, &start);
1da177e4
LT
10409 if (ret)
10410 return ret;
1da177e4
LT
10411 len += b_offset;
10412 offset &= ~3;
1c8594b4
MC
10413 if (len < 4)
10414 len = 4;
1da177e4
LT
10415 }
10416
10417 odd_len = 0;
1c8594b4 10418 if (len & 3) {
1da177e4
LT
10419 /* adjustments to end on required 4 byte boundary */
10420 odd_len = 1;
10421 len = (len + 3) & ~3;
a9dc529d 10422 ret = tg3_nvram_read_be32(tp, offset+len-4, &end);
1da177e4
LT
10423 if (ret)
10424 return ret;
1da177e4
LT
10425 }
10426
10427 buf = data;
10428 if (b_offset || odd_len) {
10429 buf = kmalloc(len, GFP_KERNEL);
ab0049b4 10430 if (!buf)
1da177e4
LT
10431 return -ENOMEM;
10432 if (b_offset)
10433 memcpy(buf, &start, 4);
10434 if (odd_len)
10435 memcpy(buf+len-4, &end, 4);
10436 memcpy(buf + b_offset, data, eeprom->len);
10437 }
10438
10439 ret = tg3_nvram_write_block(tp, offset, len, buf);
10440
10441 if (buf != data)
10442 kfree(buf);
10443
10444 return ret;
10445}
10446
10447static int tg3_get_settings(struct net_device *dev, struct ethtool_cmd *cmd)
10448{
b02fd9e3
MC
10449 struct tg3 *tp = netdev_priv(dev);
10450
63c3a66f 10451 if (tg3_flag(tp, USE_PHYLIB)) {
3f0e3ad7 10452 struct phy_device *phydev;
f07e9af3 10453 if (!(tp->phy_flags & TG3_PHYFLG_IS_CONNECTED))
b02fd9e3 10454 return -EAGAIN;
3f0e3ad7
MC
10455 phydev = tp->mdio_bus->phy_map[TG3_PHY_MII_ADDR];
10456 return phy_ethtool_gset(phydev, cmd);
b02fd9e3 10457 }
6aa20a22 10458
1da177e4
LT
10459 cmd->supported = (SUPPORTED_Autoneg);
10460
f07e9af3 10461 if (!(tp->phy_flags & TG3_PHYFLG_10_100_ONLY))
1da177e4
LT
10462 cmd->supported |= (SUPPORTED_1000baseT_Half |
10463 SUPPORTED_1000baseT_Full);
10464
f07e9af3 10465 if (!(tp->phy_flags & TG3_PHYFLG_ANY_SERDES)) {
1da177e4
LT
10466 cmd->supported |= (SUPPORTED_100baseT_Half |
10467 SUPPORTED_100baseT_Full |
10468 SUPPORTED_10baseT_Half |
10469 SUPPORTED_10baseT_Full |
3bebab59 10470 SUPPORTED_TP);
ef348144
KK
10471 cmd->port = PORT_TP;
10472 } else {
1da177e4 10473 cmd->supported |= SUPPORTED_FIBRE;
ef348144
KK
10474 cmd->port = PORT_FIBRE;
10475 }
6aa20a22 10476
1da177e4 10477 cmd->advertising = tp->link_config.advertising;
5bb09778
MC
10478 if (tg3_flag(tp, PAUSE_AUTONEG)) {
10479 if (tp->link_config.flowctrl & FLOW_CTRL_RX) {
10480 if (tp->link_config.flowctrl & FLOW_CTRL_TX) {
10481 cmd->advertising |= ADVERTISED_Pause;
10482 } else {
10483 cmd->advertising |= ADVERTISED_Pause |
10484 ADVERTISED_Asym_Pause;
10485 }
10486 } else if (tp->link_config.flowctrl & FLOW_CTRL_TX) {
10487 cmd->advertising |= ADVERTISED_Asym_Pause;
10488 }
10489 }
859edb26 10490 if (netif_running(dev) && netif_carrier_ok(dev)) {
70739497 10491 ethtool_cmd_speed_set(cmd, tp->link_config.active_speed);
1da177e4 10492 cmd->duplex = tp->link_config.active_duplex;
859edb26 10493 cmd->lp_advertising = tp->link_config.rmt_adv;
e348c5e7
MC
10494 if (!(tp->phy_flags & TG3_PHYFLG_ANY_SERDES)) {
10495 if (tp->phy_flags & TG3_PHYFLG_MDIX_STATE)
10496 cmd->eth_tp_mdix = ETH_TP_MDI_X;
10497 else
10498 cmd->eth_tp_mdix = ETH_TP_MDI;
10499 }
64c22182 10500 } else {
e740522e
MC
10501 ethtool_cmd_speed_set(cmd, SPEED_UNKNOWN);
10502 cmd->duplex = DUPLEX_UNKNOWN;
e348c5e7 10503 cmd->eth_tp_mdix = ETH_TP_MDI_INVALID;
1da177e4 10504 }
882e9793 10505 cmd->phy_address = tp->phy_addr;
7e5856bd 10506 cmd->transceiver = XCVR_INTERNAL;
1da177e4
LT
10507 cmd->autoneg = tp->link_config.autoneg;
10508 cmd->maxtxpkt = 0;
10509 cmd->maxrxpkt = 0;
10510 return 0;
10511}
6aa20a22 10512
1da177e4
LT
10513static int tg3_set_settings(struct net_device *dev, struct ethtool_cmd *cmd)
10514{
10515 struct tg3 *tp = netdev_priv(dev);
25db0338 10516 u32 speed = ethtool_cmd_speed(cmd);
6aa20a22 10517
63c3a66f 10518 if (tg3_flag(tp, USE_PHYLIB)) {
3f0e3ad7 10519 struct phy_device *phydev;
f07e9af3 10520 if (!(tp->phy_flags & TG3_PHYFLG_IS_CONNECTED))
b02fd9e3 10521 return -EAGAIN;
3f0e3ad7
MC
10522 phydev = tp->mdio_bus->phy_map[TG3_PHY_MII_ADDR];
10523 return phy_ethtool_sset(phydev, cmd);
b02fd9e3
MC
10524 }
10525
7e5856bd
MC
10526 if (cmd->autoneg != AUTONEG_ENABLE &&
10527 cmd->autoneg != AUTONEG_DISABLE)
37ff238d 10528 return -EINVAL;
7e5856bd
MC
10529
10530 if (cmd->autoneg == AUTONEG_DISABLE &&
10531 cmd->duplex != DUPLEX_FULL &&
10532 cmd->duplex != DUPLEX_HALF)
37ff238d 10533 return -EINVAL;
1da177e4 10534
7e5856bd
MC
10535 if (cmd->autoneg == AUTONEG_ENABLE) {
10536 u32 mask = ADVERTISED_Autoneg |
10537 ADVERTISED_Pause |
10538 ADVERTISED_Asym_Pause;
10539
f07e9af3 10540 if (!(tp->phy_flags & TG3_PHYFLG_10_100_ONLY))
7e5856bd
MC
10541 mask |= ADVERTISED_1000baseT_Half |
10542 ADVERTISED_1000baseT_Full;
10543
f07e9af3 10544 if (!(tp->phy_flags & TG3_PHYFLG_ANY_SERDES))
7e5856bd
MC
10545 mask |= ADVERTISED_100baseT_Half |
10546 ADVERTISED_100baseT_Full |
10547 ADVERTISED_10baseT_Half |
10548 ADVERTISED_10baseT_Full |
10549 ADVERTISED_TP;
10550 else
10551 mask |= ADVERTISED_FIBRE;
10552
10553 if (cmd->advertising & ~mask)
10554 return -EINVAL;
10555
10556 mask &= (ADVERTISED_1000baseT_Half |
10557 ADVERTISED_1000baseT_Full |
10558 ADVERTISED_100baseT_Half |
10559 ADVERTISED_100baseT_Full |
10560 ADVERTISED_10baseT_Half |
10561 ADVERTISED_10baseT_Full);
10562
10563 cmd->advertising &= mask;
10564 } else {
f07e9af3 10565 if (tp->phy_flags & TG3_PHYFLG_ANY_SERDES) {
25db0338 10566 if (speed != SPEED_1000)
7e5856bd
MC
10567 return -EINVAL;
10568
10569 if (cmd->duplex != DUPLEX_FULL)
10570 return -EINVAL;
10571 } else {
25db0338
DD
10572 if (speed != SPEED_100 &&
10573 speed != SPEED_10)
7e5856bd
MC
10574 return -EINVAL;
10575 }
10576 }
10577
f47c11ee 10578 tg3_full_lock(tp, 0);
1da177e4
LT
10579
10580 tp->link_config.autoneg = cmd->autoneg;
10581 if (cmd->autoneg == AUTONEG_ENABLE) {
405d8e5c
AG
10582 tp->link_config.advertising = (cmd->advertising |
10583 ADVERTISED_Autoneg);
e740522e
MC
10584 tp->link_config.speed = SPEED_UNKNOWN;
10585 tp->link_config.duplex = DUPLEX_UNKNOWN;
1da177e4
LT
10586 } else {
10587 tp->link_config.advertising = 0;
25db0338 10588 tp->link_config.speed = speed;
1da177e4 10589 tp->link_config.duplex = cmd->duplex;
b02fd9e3 10590 }
6aa20a22 10591
1da177e4
LT
10592 if (netif_running(dev))
10593 tg3_setup_phy(tp, 1);
10594
f47c11ee 10595 tg3_full_unlock(tp);
6aa20a22 10596
1da177e4
LT
10597 return 0;
10598}
6aa20a22 10599
1da177e4
LT
10600static void tg3_get_drvinfo(struct net_device *dev, struct ethtool_drvinfo *info)
10601{
10602 struct tg3 *tp = netdev_priv(dev);
6aa20a22 10603
68aad78c
RJ
10604 strlcpy(info->driver, DRV_MODULE_NAME, sizeof(info->driver));
10605 strlcpy(info->version, DRV_MODULE_VERSION, sizeof(info->version));
10606 strlcpy(info->fw_version, tp->fw_ver, sizeof(info->fw_version));
10607 strlcpy(info->bus_info, pci_name(tp->pdev), sizeof(info->bus_info));
1da177e4 10608}
6aa20a22 10609
1da177e4
LT
10610static void tg3_get_wol(struct net_device *dev, struct ethtool_wolinfo *wol)
10611{
10612 struct tg3 *tp = netdev_priv(dev);
6aa20a22 10613
63c3a66f 10614 if (tg3_flag(tp, WOL_CAP) && device_can_wakeup(&tp->pdev->dev))
a85feb8c
GZ
10615 wol->supported = WAKE_MAGIC;
10616 else
10617 wol->supported = 0;
1da177e4 10618 wol->wolopts = 0;
63c3a66f 10619 if (tg3_flag(tp, WOL_ENABLE) && device_can_wakeup(&tp->pdev->dev))
1da177e4
LT
10620 wol->wolopts = WAKE_MAGIC;
10621 memset(&wol->sopass, 0, sizeof(wol->sopass));
10622}
6aa20a22 10623
1da177e4
LT
10624static int tg3_set_wol(struct net_device *dev, struct ethtool_wolinfo *wol)
10625{
10626 struct tg3 *tp = netdev_priv(dev);
12dac075 10627 struct device *dp = &tp->pdev->dev;
6aa20a22 10628
1da177e4
LT
10629 if (wol->wolopts & ~WAKE_MAGIC)
10630 return -EINVAL;
10631 if ((wol->wolopts & WAKE_MAGIC) &&
63c3a66f 10632 !(tg3_flag(tp, WOL_CAP) && device_can_wakeup(dp)))
1da177e4 10633 return -EINVAL;
6aa20a22 10634
f2dc0d18
RW
10635 device_set_wakeup_enable(dp, wol->wolopts & WAKE_MAGIC);
10636
f47c11ee 10637 spin_lock_bh(&tp->lock);
f2dc0d18 10638 if (device_may_wakeup(dp))
63c3a66f 10639 tg3_flag_set(tp, WOL_ENABLE);
f2dc0d18 10640 else
63c3a66f 10641 tg3_flag_clear(tp, WOL_ENABLE);
f47c11ee 10642 spin_unlock_bh(&tp->lock);
6aa20a22 10643
1da177e4
LT
10644 return 0;
10645}
6aa20a22 10646
1da177e4
LT
10647static u32 tg3_get_msglevel(struct net_device *dev)
10648{
10649 struct tg3 *tp = netdev_priv(dev);
10650 return tp->msg_enable;
10651}
6aa20a22 10652
1da177e4
LT
10653static void tg3_set_msglevel(struct net_device *dev, u32 value)
10654{
10655 struct tg3 *tp = netdev_priv(dev);
10656 tp->msg_enable = value;
10657}
6aa20a22 10658
1da177e4
LT
10659static int tg3_nway_reset(struct net_device *dev)
10660{
10661 struct tg3 *tp = netdev_priv(dev);
1da177e4 10662 int r;
6aa20a22 10663
1da177e4
LT
10664 if (!netif_running(dev))
10665 return -EAGAIN;
10666
f07e9af3 10667 if (tp->phy_flags & TG3_PHYFLG_PHY_SERDES)
c94e3941
MC
10668 return -EINVAL;
10669
63c3a66f 10670 if (tg3_flag(tp, USE_PHYLIB)) {
f07e9af3 10671 if (!(tp->phy_flags & TG3_PHYFLG_IS_CONNECTED))
b02fd9e3 10672 return -EAGAIN;
3f0e3ad7 10673 r = phy_start_aneg(tp->mdio_bus->phy_map[TG3_PHY_MII_ADDR]);
b02fd9e3
MC
10674 } else {
10675 u32 bmcr;
10676
10677 spin_lock_bh(&tp->lock);
10678 r = -EINVAL;
10679 tg3_readphy(tp, MII_BMCR, &bmcr);
10680 if (!tg3_readphy(tp, MII_BMCR, &bmcr) &&
10681 ((bmcr & BMCR_ANENABLE) ||
f07e9af3 10682 (tp->phy_flags & TG3_PHYFLG_PARALLEL_DETECT))) {
b02fd9e3
MC
10683 tg3_writephy(tp, MII_BMCR, bmcr | BMCR_ANRESTART |
10684 BMCR_ANENABLE);
10685 r = 0;
10686 }
10687 spin_unlock_bh(&tp->lock);
1da177e4 10688 }
6aa20a22 10689
1da177e4
LT
10690 return r;
10691}
6aa20a22 10692
1da177e4
LT
10693static void tg3_get_ringparam(struct net_device *dev, struct ethtool_ringparam *ering)
10694{
10695 struct tg3 *tp = netdev_priv(dev);
6aa20a22 10696
2c49a44d 10697 ering->rx_max_pending = tp->rx_std_ring_mask;
63c3a66f 10698 if (tg3_flag(tp, JUMBO_RING_ENABLE))
2c49a44d 10699 ering->rx_jumbo_max_pending = tp->rx_jmb_ring_mask;
4f81c32b
MC
10700 else
10701 ering->rx_jumbo_max_pending = 0;
10702
10703 ering->tx_max_pending = TG3_TX_RING_SIZE - 1;
1da177e4
LT
10704
10705 ering->rx_pending = tp->rx_pending;
63c3a66f 10706 if (tg3_flag(tp, JUMBO_RING_ENABLE))
4f81c32b
MC
10707 ering->rx_jumbo_pending = tp->rx_jumbo_pending;
10708 else
10709 ering->rx_jumbo_pending = 0;
10710
f3f3f27e 10711 ering->tx_pending = tp->napi[0].tx_pending;
1da177e4 10712}
6aa20a22 10713
1da177e4
LT
10714static int tg3_set_ringparam(struct net_device *dev, struct ethtool_ringparam *ering)
10715{
10716 struct tg3 *tp = netdev_priv(dev);
646c9edd 10717 int i, irq_sync = 0, err = 0;
6aa20a22 10718
2c49a44d
MC
10719 if ((ering->rx_pending > tp->rx_std_ring_mask) ||
10720 (ering->rx_jumbo_pending > tp->rx_jmb_ring_mask) ||
bc3a9254
MC
10721 (ering->tx_pending > TG3_TX_RING_SIZE - 1) ||
10722 (ering->tx_pending <= MAX_SKB_FRAGS) ||
63c3a66f 10723 (tg3_flag(tp, TSO_BUG) &&
bc3a9254 10724 (ering->tx_pending <= (MAX_SKB_FRAGS * 3))))
1da177e4 10725 return -EINVAL;
6aa20a22 10726
bbe832c0 10727 if (netif_running(dev)) {
b02fd9e3 10728 tg3_phy_stop(tp);
1da177e4 10729 tg3_netif_stop(tp);
bbe832c0
MC
10730 irq_sync = 1;
10731 }
1da177e4 10732
bbe832c0 10733 tg3_full_lock(tp, irq_sync);
6aa20a22 10734
1da177e4
LT
10735 tp->rx_pending = ering->rx_pending;
10736
63c3a66f 10737 if (tg3_flag(tp, MAX_RXPEND_64) &&
1da177e4
LT
10738 tp->rx_pending > 63)
10739 tp->rx_pending = 63;
10740 tp->rx_jumbo_pending = ering->rx_jumbo_pending;
646c9edd 10741
6fd45cb8 10742 for (i = 0; i < tp->irq_max; i++)
646c9edd 10743 tp->napi[i].tx_pending = ering->tx_pending;
1da177e4
LT
10744
10745 if (netif_running(dev)) {
944d980e 10746 tg3_halt(tp, RESET_KIND_SHUTDOWN, 1);
b9ec6c1b
MC
10747 err = tg3_restart_hw(tp, 1);
10748 if (!err)
10749 tg3_netif_start(tp);
1da177e4
LT
10750 }
10751
f47c11ee 10752 tg3_full_unlock(tp);
6aa20a22 10753
b02fd9e3
MC
10754 if (irq_sync && !err)
10755 tg3_phy_start(tp);
10756
b9ec6c1b 10757 return err;
1da177e4 10758}
6aa20a22 10759
1da177e4
LT
10760static void tg3_get_pauseparam(struct net_device *dev, struct ethtool_pauseparam *epause)
10761{
10762 struct tg3 *tp = netdev_priv(dev);
6aa20a22 10763
63c3a66f 10764 epause->autoneg = !!tg3_flag(tp, PAUSE_AUTONEG);
8d018621 10765
4a2db503 10766 if (tp->link_config.flowctrl & FLOW_CTRL_RX)
8d018621
MC
10767 epause->rx_pause = 1;
10768 else
10769 epause->rx_pause = 0;
10770
4a2db503 10771 if (tp->link_config.flowctrl & FLOW_CTRL_TX)
8d018621
MC
10772 epause->tx_pause = 1;
10773 else
10774 epause->tx_pause = 0;
1da177e4 10775}
6aa20a22 10776
1da177e4
LT
10777static int tg3_set_pauseparam(struct net_device *dev, struct ethtool_pauseparam *epause)
10778{
10779 struct tg3 *tp = netdev_priv(dev);
b02fd9e3 10780 int err = 0;
6aa20a22 10781
63c3a66f 10782 if (tg3_flag(tp, USE_PHYLIB)) {
2712168f
MC
10783 u32 newadv;
10784 struct phy_device *phydev;
1da177e4 10785
2712168f 10786 phydev = tp->mdio_bus->phy_map[TG3_PHY_MII_ADDR];
f47c11ee 10787
2712168f
MC
10788 if (!(phydev->supported & SUPPORTED_Pause) ||
10789 (!(phydev->supported & SUPPORTED_Asym_Pause) &&
2259dca3 10790 (epause->rx_pause != epause->tx_pause)))
2712168f 10791 return -EINVAL;
1da177e4 10792
2712168f
MC
10793 tp->link_config.flowctrl = 0;
10794 if (epause->rx_pause) {
10795 tp->link_config.flowctrl |= FLOW_CTRL_RX;
10796
10797 if (epause->tx_pause) {
10798 tp->link_config.flowctrl |= FLOW_CTRL_TX;
10799 newadv = ADVERTISED_Pause;
b02fd9e3 10800 } else
2712168f
MC
10801 newadv = ADVERTISED_Pause |
10802 ADVERTISED_Asym_Pause;
10803 } else if (epause->tx_pause) {
10804 tp->link_config.flowctrl |= FLOW_CTRL_TX;
10805 newadv = ADVERTISED_Asym_Pause;
10806 } else
10807 newadv = 0;
10808
10809 if (epause->autoneg)
63c3a66f 10810 tg3_flag_set(tp, PAUSE_AUTONEG);
2712168f 10811 else
63c3a66f 10812 tg3_flag_clear(tp, PAUSE_AUTONEG);
2712168f 10813
f07e9af3 10814 if (tp->phy_flags & TG3_PHYFLG_IS_CONNECTED) {
2712168f
MC
10815 u32 oldadv = phydev->advertising &
10816 (ADVERTISED_Pause | ADVERTISED_Asym_Pause);
10817 if (oldadv != newadv) {
10818 phydev->advertising &=
10819 ~(ADVERTISED_Pause |
10820 ADVERTISED_Asym_Pause);
10821 phydev->advertising |= newadv;
10822 if (phydev->autoneg) {
10823 /*
10824 * Always renegotiate the link to
10825 * inform our link partner of our
10826 * flow control settings, even if the
10827 * flow control is forced. Let
10828 * tg3_adjust_link() do the final
10829 * flow control setup.
10830 */
10831 return phy_start_aneg(phydev);
b02fd9e3 10832 }
b02fd9e3 10833 }
b02fd9e3 10834
2712168f 10835 if (!epause->autoneg)
b02fd9e3 10836 tg3_setup_flow_control(tp, 0, 0);
2712168f 10837 } else {
c6700ce2 10838 tp->link_config.advertising &=
2712168f
MC
10839 ~(ADVERTISED_Pause |
10840 ADVERTISED_Asym_Pause);
c6700ce2 10841 tp->link_config.advertising |= newadv;
b02fd9e3
MC
10842 }
10843 } else {
10844 int irq_sync = 0;
10845
10846 if (netif_running(dev)) {
10847 tg3_netif_stop(tp);
10848 irq_sync = 1;
10849 }
10850
10851 tg3_full_lock(tp, irq_sync);
10852
10853 if (epause->autoneg)
63c3a66f 10854 tg3_flag_set(tp, PAUSE_AUTONEG);
b02fd9e3 10855 else
63c3a66f 10856 tg3_flag_clear(tp, PAUSE_AUTONEG);
b02fd9e3 10857 if (epause->rx_pause)
e18ce346 10858 tp->link_config.flowctrl |= FLOW_CTRL_RX;
b02fd9e3 10859 else
e18ce346 10860 tp->link_config.flowctrl &= ~FLOW_CTRL_RX;
b02fd9e3 10861 if (epause->tx_pause)
e18ce346 10862 tp->link_config.flowctrl |= FLOW_CTRL_TX;
b02fd9e3 10863 else
e18ce346 10864 tp->link_config.flowctrl &= ~FLOW_CTRL_TX;
b02fd9e3
MC
10865
10866 if (netif_running(dev)) {
10867 tg3_halt(tp, RESET_KIND_SHUTDOWN, 1);
10868 err = tg3_restart_hw(tp, 1);
10869 if (!err)
10870 tg3_netif_start(tp);
10871 }
10872
10873 tg3_full_unlock(tp);
10874 }
6aa20a22 10875
b9ec6c1b 10876 return err;
1da177e4 10877}
6aa20a22 10878
de6f31eb 10879static int tg3_get_sset_count(struct net_device *dev, int sset)
1da177e4 10880{
b9f2c044
JG
10881 switch (sset) {
10882 case ETH_SS_TEST:
10883 return TG3_NUM_TEST;
10884 case ETH_SS_STATS:
10885 return TG3_NUM_STATS;
10886 default:
10887 return -EOPNOTSUPP;
10888 }
4cafd3f5
MC
10889}
10890
90415477
MC
10891static int tg3_get_rxnfc(struct net_device *dev, struct ethtool_rxnfc *info,
10892 u32 *rules __always_unused)
10893{
10894 struct tg3 *tp = netdev_priv(dev);
10895
10896 if (!tg3_flag(tp, SUPPORT_MSIX))
10897 return -EOPNOTSUPP;
10898
10899 switch (info->cmd) {
10900 case ETHTOOL_GRXRINGS:
10901 if (netif_running(tp->dev))
10902 info->data = tp->irq_cnt;
10903 else {
10904 info->data = num_online_cpus();
10905 if (info->data > TG3_IRQ_MAX_VECS_RSS)
10906 info->data = TG3_IRQ_MAX_VECS_RSS;
10907 }
10908
10909 /* The first interrupt vector only
10910 * handles link interrupts.
10911 */
10912 info->data -= 1;
10913 return 0;
10914
10915 default:
10916 return -EOPNOTSUPP;
10917 }
10918}
10919
10920static u32 tg3_get_rxfh_indir_size(struct net_device *dev)
10921{
10922 u32 size = 0;
10923 struct tg3 *tp = netdev_priv(dev);
10924
10925 if (tg3_flag(tp, SUPPORT_MSIX))
10926 size = TG3_RSS_INDIR_TBL_SIZE;
10927
10928 return size;
10929}
10930
10931static int tg3_get_rxfh_indir(struct net_device *dev, u32 *indir)
10932{
10933 struct tg3 *tp = netdev_priv(dev);
10934 int i;
10935
10936 for (i = 0; i < TG3_RSS_INDIR_TBL_SIZE; i++)
10937 indir[i] = tp->rss_ind_tbl[i];
10938
10939 return 0;
10940}
10941
10942static int tg3_set_rxfh_indir(struct net_device *dev, const u32 *indir)
10943{
10944 struct tg3 *tp = netdev_priv(dev);
10945 size_t i;
10946
10947 for (i = 0; i < TG3_RSS_INDIR_TBL_SIZE; i++)
10948 tp->rss_ind_tbl[i] = indir[i];
10949
10950 if (!netif_running(dev) || !tg3_flag(tp, ENABLE_RSS))
10951 return 0;
10952
10953 /* It is legal to write the indirection
10954 * table while the device is running.
10955 */
10956 tg3_full_lock(tp, 0);
10957 tg3_rss_write_indir_tbl(tp);
10958 tg3_full_unlock(tp);
10959
10960 return 0;
10961}
10962
de6f31eb 10963static void tg3_get_strings(struct net_device *dev, u32 stringset, u8 *buf)
1da177e4
LT
10964{
10965 switch (stringset) {
10966 case ETH_SS_STATS:
10967 memcpy(buf, &ethtool_stats_keys, sizeof(ethtool_stats_keys));
10968 break;
4cafd3f5
MC
10969 case ETH_SS_TEST:
10970 memcpy(buf, &ethtool_test_keys, sizeof(ethtool_test_keys));
10971 break;
1da177e4
LT
10972 default:
10973 WARN_ON(1); /* we need a WARN() */
10974 break;
10975 }
10976}
10977
81b8709c 10978static int tg3_set_phys_id(struct net_device *dev,
10979 enum ethtool_phys_id_state state)
4009a93d
MC
10980{
10981 struct tg3 *tp = netdev_priv(dev);
4009a93d
MC
10982
10983 if (!netif_running(tp->dev))
10984 return -EAGAIN;
10985
81b8709c 10986 switch (state) {
10987 case ETHTOOL_ID_ACTIVE:
fce55922 10988 return 1; /* cycle on/off once per second */
4009a93d 10989
81b8709c 10990 case ETHTOOL_ID_ON:
10991 tw32(MAC_LED_CTRL, LED_CTRL_LNKLED_OVERRIDE |
10992 LED_CTRL_1000MBPS_ON |
10993 LED_CTRL_100MBPS_ON |
10994 LED_CTRL_10MBPS_ON |
10995 LED_CTRL_TRAFFIC_OVERRIDE |
10996 LED_CTRL_TRAFFIC_BLINK |
10997 LED_CTRL_TRAFFIC_LED);
10998 break;
6aa20a22 10999
81b8709c 11000 case ETHTOOL_ID_OFF:
11001 tw32(MAC_LED_CTRL, LED_CTRL_LNKLED_OVERRIDE |
11002 LED_CTRL_TRAFFIC_OVERRIDE);
11003 break;
4009a93d 11004
81b8709c 11005 case ETHTOOL_ID_INACTIVE:
11006 tw32(MAC_LED_CTRL, tp->led_ctrl);
11007 break;
4009a93d 11008 }
81b8709c 11009
4009a93d
MC
11010 return 0;
11011}
11012
de6f31eb 11013static void tg3_get_ethtool_stats(struct net_device *dev,
1da177e4
LT
11014 struct ethtool_stats *estats, u64 *tmp_stats)
11015{
11016 struct tg3 *tp = netdev_priv(dev);
0e6c9da3 11017
b546e46f
MC
11018 if (tp->hw_stats)
11019 tg3_get_estats(tp, (struct tg3_ethtool_stats *)tmp_stats);
11020 else
11021 memset(tmp_stats, 0, sizeof(struct tg3_ethtool_stats));
1da177e4
LT
11022}
11023
535a490e 11024static __be32 *tg3_vpd_readblock(struct tg3 *tp, u32 *vpdlen)
c3e94500
MC
11025{
11026 int i;
11027 __be32 *buf;
11028 u32 offset = 0, len = 0;
11029 u32 magic, val;
11030
63c3a66f 11031 if (tg3_flag(tp, NO_NVRAM) || tg3_nvram_read(tp, 0, &magic))
c3e94500
MC
11032 return NULL;
11033
11034 if (magic == TG3_EEPROM_MAGIC) {
11035 for (offset = TG3_NVM_DIR_START;
11036 offset < TG3_NVM_DIR_END;
11037 offset += TG3_NVM_DIRENT_SIZE) {
11038 if (tg3_nvram_read(tp, offset, &val))
11039 return NULL;
11040
11041 if ((val >> TG3_NVM_DIRTYPE_SHIFT) ==
11042 TG3_NVM_DIRTYPE_EXTVPD)
11043 break;
11044 }
11045
11046 if (offset != TG3_NVM_DIR_END) {
11047 len = (val & TG3_NVM_DIRTYPE_LENMSK) * 4;
11048 if (tg3_nvram_read(tp, offset + 4, &offset))
11049 return NULL;
11050
11051 offset = tg3_nvram_logical_addr(tp, offset);
11052 }
11053 }
11054
11055 if (!offset || !len) {
11056 offset = TG3_NVM_VPD_OFF;
11057 len = TG3_NVM_VPD_LEN;
11058 }
11059
11060 buf = kmalloc(len, GFP_KERNEL);
11061 if (buf == NULL)
11062 return NULL;
11063
11064 if (magic == TG3_EEPROM_MAGIC) {
11065 for (i = 0; i < len; i += 4) {
11066 /* The data is in little-endian format in NVRAM.
11067 * Use the big-endian read routines to preserve
11068 * the byte order as it exists in NVRAM.
11069 */
11070 if (tg3_nvram_read_be32(tp, offset + i, &buf[i/4]))
11071 goto error;
11072 }
11073 } else {
11074 u8 *ptr;
11075 ssize_t cnt;
11076 unsigned int pos = 0;
11077
11078 ptr = (u8 *)&buf[0];
11079 for (i = 0; pos < len && i < 3; i++, pos += cnt, ptr += cnt) {
11080 cnt = pci_read_vpd(tp->pdev, pos,
11081 len - pos, ptr);
11082 if (cnt == -ETIMEDOUT || cnt == -EINTR)
11083 cnt = 0;
11084 else if (cnt < 0)
11085 goto error;
11086 }
11087 if (pos != len)
11088 goto error;
11089 }
11090
535a490e
MC
11091 *vpdlen = len;
11092
c3e94500
MC
11093 return buf;
11094
11095error:
11096 kfree(buf);
11097 return NULL;
11098}
11099
566f86ad 11100#define NVRAM_TEST_SIZE 0x100
a5767dec
MC
11101#define NVRAM_SELFBOOT_FORMAT1_0_SIZE 0x14
11102#define NVRAM_SELFBOOT_FORMAT1_2_SIZE 0x18
11103#define NVRAM_SELFBOOT_FORMAT1_3_SIZE 0x1c
727a6d9f
MC
11104#define NVRAM_SELFBOOT_FORMAT1_4_SIZE 0x20
11105#define NVRAM_SELFBOOT_FORMAT1_5_SIZE 0x24
bda18faf 11106#define NVRAM_SELFBOOT_FORMAT1_6_SIZE 0x50
b16250e3
MC
11107#define NVRAM_SELFBOOT_HW_SIZE 0x20
11108#define NVRAM_SELFBOOT_DATA_SIZE 0x1c
566f86ad
MC
11109
11110static int tg3_test_nvram(struct tg3 *tp)
11111{
535a490e 11112 u32 csum, magic, len;
a9dc529d 11113 __be32 *buf;
ab0049b4 11114 int i, j, k, err = 0, size;
566f86ad 11115
63c3a66f 11116 if (tg3_flag(tp, NO_NVRAM))
df259d8c
MC
11117 return 0;
11118
e4f34110 11119 if (tg3_nvram_read(tp, 0, &magic) != 0)
1b27777a
MC
11120 return -EIO;
11121
1b27777a
MC
11122 if (magic == TG3_EEPROM_MAGIC)
11123 size = NVRAM_TEST_SIZE;
b16250e3 11124 else if ((magic & TG3_EEPROM_MAGIC_FW_MSK) == TG3_EEPROM_MAGIC_FW) {
a5767dec
MC
11125 if ((magic & TG3_EEPROM_SB_FORMAT_MASK) ==
11126 TG3_EEPROM_SB_FORMAT_1) {
11127 switch (magic & TG3_EEPROM_SB_REVISION_MASK) {
11128 case TG3_EEPROM_SB_REVISION_0:
11129 size = NVRAM_SELFBOOT_FORMAT1_0_SIZE;
11130 break;
11131 case TG3_EEPROM_SB_REVISION_2:
11132 size = NVRAM_SELFBOOT_FORMAT1_2_SIZE;
11133 break;
11134 case TG3_EEPROM_SB_REVISION_3:
11135 size = NVRAM_SELFBOOT_FORMAT1_3_SIZE;
11136 break;
727a6d9f
MC
11137 case TG3_EEPROM_SB_REVISION_4:
11138 size = NVRAM_SELFBOOT_FORMAT1_4_SIZE;
11139 break;
11140 case TG3_EEPROM_SB_REVISION_5:
11141 size = NVRAM_SELFBOOT_FORMAT1_5_SIZE;
11142 break;
11143 case TG3_EEPROM_SB_REVISION_6:
11144 size = NVRAM_SELFBOOT_FORMAT1_6_SIZE;
11145 break;
a5767dec 11146 default:
727a6d9f 11147 return -EIO;
a5767dec
MC
11148 }
11149 } else
1b27777a 11150 return 0;
b16250e3
MC
11151 } else if ((magic & TG3_EEPROM_MAGIC_HW_MSK) == TG3_EEPROM_MAGIC_HW)
11152 size = NVRAM_SELFBOOT_HW_SIZE;
11153 else
1b27777a
MC
11154 return -EIO;
11155
11156 buf = kmalloc(size, GFP_KERNEL);
566f86ad
MC
11157 if (buf == NULL)
11158 return -ENOMEM;
11159
1b27777a
MC
11160 err = -EIO;
11161 for (i = 0, j = 0; i < size; i += 4, j++) {
a9dc529d
MC
11162 err = tg3_nvram_read_be32(tp, i, &buf[j]);
11163 if (err)
566f86ad 11164 break;
566f86ad 11165 }
1b27777a 11166 if (i < size)
566f86ad
MC
11167 goto out;
11168
1b27777a 11169 /* Selfboot format */
a9dc529d 11170 magic = be32_to_cpu(buf[0]);
b9fc7dc5 11171 if ((magic & TG3_EEPROM_MAGIC_FW_MSK) ==
b16250e3 11172 TG3_EEPROM_MAGIC_FW) {
1b27777a
MC
11173 u8 *buf8 = (u8 *) buf, csum8 = 0;
11174
b9fc7dc5 11175 if ((magic & TG3_EEPROM_SB_REVISION_MASK) ==
a5767dec
MC
11176 TG3_EEPROM_SB_REVISION_2) {
11177 /* For rev 2, the csum doesn't include the MBA. */
11178 for (i = 0; i < TG3_EEPROM_SB_F1R2_MBA_OFF; i++)
11179 csum8 += buf8[i];
11180 for (i = TG3_EEPROM_SB_F1R2_MBA_OFF + 4; i < size; i++)
11181 csum8 += buf8[i];
11182 } else {
11183 for (i = 0; i < size; i++)
11184 csum8 += buf8[i];
11185 }
1b27777a 11186
ad96b485
AB
11187 if (csum8 == 0) {
11188 err = 0;
11189 goto out;
11190 }
11191
11192 err = -EIO;
11193 goto out;
1b27777a 11194 }
566f86ad 11195
b9fc7dc5 11196 if ((magic & TG3_EEPROM_MAGIC_HW_MSK) ==
b16250e3
MC
11197 TG3_EEPROM_MAGIC_HW) {
11198 u8 data[NVRAM_SELFBOOT_DATA_SIZE];
a9dc529d 11199 u8 parity[NVRAM_SELFBOOT_DATA_SIZE];
b16250e3 11200 u8 *buf8 = (u8 *) buf;
b16250e3
MC
11201
11202 /* Separate the parity bits and the data bytes. */
11203 for (i = 0, j = 0, k = 0; i < NVRAM_SELFBOOT_HW_SIZE; i++) {
11204 if ((i == 0) || (i == 8)) {
11205 int l;
11206 u8 msk;
11207
11208 for (l = 0, msk = 0x80; l < 7; l++, msk >>= 1)
11209 parity[k++] = buf8[i] & msk;
11210 i++;
859a5887 11211 } else if (i == 16) {
b16250e3
MC
11212 int l;
11213 u8 msk;
11214
11215 for (l = 0, msk = 0x20; l < 6; l++, msk >>= 1)
11216 parity[k++] = buf8[i] & msk;
11217 i++;
11218
11219 for (l = 0, msk = 0x80; l < 8; l++, msk >>= 1)
11220 parity[k++] = buf8[i] & msk;
11221 i++;
11222 }
11223 data[j++] = buf8[i];
11224 }
11225
11226 err = -EIO;
11227 for (i = 0; i < NVRAM_SELFBOOT_DATA_SIZE; i++) {
11228 u8 hw8 = hweight8(data[i]);
11229
11230 if ((hw8 & 0x1) && parity[i])
11231 goto out;
11232 else if (!(hw8 & 0x1) && !parity[i])
11233 goto out;
11234 }
11235 err = 0;
11236 goto out;
11237 }
11238
01c3a392
MC
11239 err = -EIO;
11240
566f86ad
MC
11241 /* Bootstrap checksum at offset 0x10 */
11242 csum = calc_crc((unsigned char *) buf, 0x10);
01c3a392 11243 if (csum != le32_to_cpu(buf[0x10/4]))
566f86ad
MC
11244 goto out;
11245
11246 /* Manufacturing block starts at offset 0x74, checksum at 0xfc */
11247 csum = calc_crc((unsigned char *) &buf[0x74/4], 0x88);
01c3a392 11248 if (csum != le32_to_cpu(buf[0xfc/4]))
a9dc529d 11249 goto out;
566f86ad 11250
c3e94500
MC
11251 kfree(buf);
11252
535a490e 11253 buf = tg3_vpd_readblock(tp, &len);
c3e94500
MC
11254 if (!buf)
11255 return -ENOMEM;
d4894f3e 11256
535a490e 11257 i = pci_vpd_find_tag((u8 *)buf, 0, len, PCI_VPD_LRDT_RO_DATA);
d4894f3e
MC
11258 if (i > 0) {
11259 j = pci_vpd_lrdt_size(&((u8 *)buf)[i]);
11260 if (j < 0)
11261 goto out;
11262
535a490e 11263 if (i + PCI_VPD_LRDT_TAG_SIZE + j > len)
d4894f3e
MC
11264 goto out;
11265
11266 i += PCI_VPD_LRDT_TAG_SIZE;
11267 j = pci_vpd_find_info_keyword((u8 *)buf, i, j,
11268 PCI_VPD_RO_KEYWORD_CHKSUM);
11269 if (j > 0) {
11270 u8 csum8 = 0;
11271
11272 j += PCI_VPD_INFO_FLD_HDR_SIZE;
11273
11274 for (i = 0; i <= j; i++)
11275 csum8 += ((u8 *)buf)[i];
11276
11277 if (csum8)
11278 goto out;
11279 }
11280 }
11281
566f86ad
MC
11282 err = 0;
11283
11284out:
11285 kfree(buf);
11286 return err;
11287}
11288
ca43007a
MC
11289#define TG3_SERDES_TIMEOUT_SEC 2
11290#define TG3_COPPER_TIMEOUT_SEC 6
11291
11292static int tg3_test_link(struct tg3 *tp)
11293{
11294 int i, max;
11295
11296 if (!netif_running(tp->dev))
11297 return -ENODEV;
11298
f07e9af3 11299 if (tp->phy_flags & TG3_PHYFLG_ANY_SERDES)
ca43007a
MC
11300 max = TG3_SERDES_TIMEOUT_SEC;
11301 else
11302 max = TG3_COPPER_TIMEOUT_SEC;
11303
11304 for (i = 0; i < max; i++) {
11305 if (netif_carrier_ok(tp->dev))
11306 return 0;
11307
11308 if (msleep_interruptible(1000))
11309 break;
11310 }
11311
11312 return -EIO;
11313}
11314
a71116d1 11315/* Only test the commonly used registers */
30ca3e37 11316static int tg3_test_registers(struct tg3 *tp)
a71116d1 11317{
b16250e3 11318 int i, is_5705, is_5750;
a71116d1
MC
11319 u32 offset, read_mask, write_mask, val, save_val, read_val;
11320 static struct {
11321 u16 offset;
11322 u16 flags;
11323#define TG3_FL_5705 0x1
11324#define TG3_FL_NOT_5705 0x2
11325#define TG3_FL_NOT_5788 0x4
b16250e3 11326#define TG3_FL_NOT_5750 0x8
a71116d1
MC
11327 u32 read_mask;
11328 u32 write_mask;
11329 } reg_tbl[] = {
11330 /* MAC Control Registers */
11331 { MAC_MODE, TG3_FL_NOT_5705,
11332 0x00000000, 0x00ef6f8c },
11333 { MAC_MODE, TG3_FL_5705,
11334 0x00000000, 0x01ef6b8c },
11335 { MAC_STATUS, TG3_FL_NOT_5705,
11336 0x03800107, 0x00000000 },
11337 { MAC_STATUS, TG3_FL_5705,
11338 0x03800100, 0x00000000 },
11339 { MAC_ADDR_0_HIGH, 0x0000,
11340 0x00000000, 0x0000ffff },
11341 { MAC_ADDR_0_LOW, 0x0000,
c6cdf436 11342 0x00000000, 0xffffffff },
a71116d1
MC
11343 { MAC_RX_MTU_SIZE, 0x0000,
11344 0x00000000, 0x0000ffff },
11345 { MAC_TX_MODE, 0x0000,
11346 0x00000000, 0x00000070 },
11347 { MAC_TX_LENGTHS, 0x0000,
11348 0x00000000, 0x00003fff },
11349 { MAC_RX_MODE, TG3_FL_NOT_5705,
11350 0x00000000, 0x000007fc },
11351 { MAC_RX_MODE, TG3_FL_5705,
11352 0x00000000, 0x000007dc },
11353 { MAC_HASH_REG_0, 0x0000,
11354 0x00000000, 0xffffffff },
11355 { MAC_HASH_REG_1, 0x0000,
11356 0x00000000, 0xffffffff },
11357 { MAC_HASH_REG_2, 0x0000,
11358 0x00000000, 0xffffffff },
11359 { MAC_HASH_REG_3, 0x0000,
11360 0x00000000, 0xffffffff },
11361
11362 /* Receive Data and Receive BD Initiator Control Registers. */
11363 { RCVDBDI_JUMBO_BD+0, TG3_FL_NOT_5705,
11364 0x00000000, 0xffffffff },
11365 { RCVDBDI_JUMBO_BD+4, TG3_FL_NOT_5705,
11366 0x00000000, 0xffffffff },
11367 { RCVDBDI_JUMBO_BD+8, TG3_FL_NOT_5705,
11368 0x00000000, 0x00000003 },
11369 { RCVDBDI_JUMBO_BD+0xc, TG3_FL_NOT_5705,
11370 0x00000000, 0xffffffff },
11371 { RCVDBDI_STD_BD+0, 0x0000,
11372 0x00000000, 0xffffffff },
11373 { RCVDBDI_STD_BD+4, 0x0000,
11374 0x00000000, 0xffffffff },
11375 { RCVDBDI_STD_BD+8, 0x0000,
11376 0x00000000, 0xffff0002 },
11377 { RCVDBDI_STD_BD+0xc, 0x0000,
11378 0x00000000, 0xffffffff },
6aa20a22 11379
a71116d1
MC
11380 /* Receive BD Initiator Control Registers. */
11381 { RCVBDI_STD_THRESH, TG3_FL_NOT_5705,
11382 0x00000000, 0xffffffff },
11383 { RCVBDI_STD_THRESH, TG3_FL_5705,
11384 0x00000000, 0x000003ff },
11385 { RCVBDI_JUMBO_THRESH, TG3_FL_NOT_5705,
11386 0x00000000, 0xffffffff },
6aa20a22 11387
a71116d1
MC
11388 /* Host Coalescing Control Registers. */
11389 { HOSTCC_MODE, TG3_FL_NOT_5705,
11390 0x00000000, 0x00000004 },
11391 { HOSTCC_MODE, TG3_FL_5705,
11392 0x00000000, 0x000000f6 },
11393 { HOSTCC_RXCOL_TICKS, TG3_FL_NOT_5705,
11394 0x00000000, 0xffffffff },
11395 { HOSTCC_RXCOL_TICKS, TG3_FL_5705,
11396 0x00000000, 0x000003ff },
11397 { HOSTCC_TXCOL_TICKS, TG3_FL_NOT_5705,
11398 0x00000000, 0xffffffff },
11399 { HOSTCC_TXCOL_TICKS, TG3_FL_5705,
11400 0x00000000, 0x000003ff },
11401 { HOSTCC_RXMAX_FRAMES, TG3_FL_NOT_5705,
11402 0x00000000, 0xffffffff },
11403 { HOSTCC_RXMAX_FRAMES, TG3_FL_5705 | TG3_FL_NOT_5788,
11404 0x00000000, 0x000000ff },
11405 { HOSTCC_TXMAX_FRAMES, TG3_FL_NOT_5705,
11406 0x00000000, 0xffffffff },
11407 { HOSTCC_TXMAX_FRAMES, TG3_FL_5705 | TG3_FL_NOT_5788,
11408 0x00000000, 0x000000ff },
11409 { HOSTCC_RXCOAL_TICK_INT, TG3_FL_NOT_5705,
11410 0x00000000, 0xffffffff },
11411 { HOSTCC_TXCOAL_TICK_INT, TG3_FL_NOT_5705,
11412 0x00000000, 0xffffffff },
11413 { HOSTCC_RXCOAL_MAXF_INT, TG3_FL_NOT_5705,
11414 0x00000000, 0xffffffff },
11415 { HOSTCC_RXCOAL_MAXF_INT, TG3_FL_5705 | TG3_FL_NOT_5788,
11416 0x00000000, 0x000000ff },
11417 { HOSTCC_TXCOAL_MAXF_INT, TG3_FL_NOT_5705,
11418 0x00000000, 0xffffffff },
11419 { HOSTCC_TXCOAL_MAXF_INT, TG3_FL_5705 | TG3_FL_NOT_5788,
11420 0x00000000, 0x000000ff },
11421 { HOSTCC_STAT_COAL_TICKS, TG3_FL_NOT_5705,
11422 0x00000000, 0xffffffff },
11423 { HOSTCC_STATS_BLK_HOST_ADDR, TG3_FL_NOT_5705,
11424 0x00000000, 0xffffffff },
11425 { HOSTCC_STATS_BLK_HOST_ADDR+4, TG3_FL_NOT_5705,
11426 0x00000000, 0xffffffff },
11427 { HOSTCC_STATUS_BLK_HOST_ADDR, 0x0000,
11428 0x00000000, 0xffffffff },
11429 { HOSTCC_STATUS_BLK_HOST_ADDR+4, 0x0000,
11430 0x00000000, 0xffffffff },
11431 { HOSTCC_STATS_BLK_NIC_ADDR, 0x0000,
11432 0xffffffff, 0x00000000 },
11433 { HOSTCC_STATUS_BLK_NIC_ADDR, 0x0000,
11434 0xffffffff, 0x00000000 },
11435
11436 /* Buffer Manager Control Registers. */
b16250e3 11437 { BUFMGR_MB_POOL_ADDR, TG3_FL_NOT_5750,
a71116d1 11438 0x00000000, 0x007fff80 },
b16250e3 11439 { BUFMGR_MB_POOL_SIZE, TG3_FL_NOT_5750,
a71116d1
MC
11440 0x00000000, 0x007fffff },
11441 { BUFMGR_MB_RDMA_LOW_WATER, 0x0000,
11442 0x00000000, 0x0000003f },
11443 { BUFMGR_MB_MACRX_LOW_WATER, 0x0000,
11444 0x00000000, 0x000001ff },
11445 { BUFMGR_MB_HIGH_WATER, 0x0000,
11446 0x00000000, 0x000001ff },
11447 { BUFMGR_DMA_DESC_POOL_ADDR, TG3_FL_NOT_5705,
11448 0xffffffff, 0x00000000 },
11449 { BUFMGR_DMA_DESC_POOL_SIZE, TG3_FL_NOT_5705,
11450 0xffffffff, 0x00000000 },
6aa20a22 11451
a71116d1
MC
11452 /* Mailbox Registers */
11453 { GRCMBOX_RCVSTD_PROD_IDX+4, 0x0000,
11454 0x00000000, 0x000001ff },
11455 { GRCMBOX_RCVJUMBO_PROD_IDX+4, TG3_FL_NOT_5705,
11456 0x00000000, 0x000001ff },
11457 { GRCMBOX_RCVRET_CON_IDX_0+4, 0x0000,
11458 0x00000000, 0x000007ff },
11459 { GRCMBOX_SNDHOST_PROD_IDX_0+4, 0x0000,
11460 0x00000000, 0x000001ff },
11461
11462 { 0xffff, 0x0000, 0x00000000, 0x00000000 },
11463 };
11464
b16250e3 11465 is_5705 = is_5750 = 0;
63c3a66f 11466 if (tg3_flag(tp, 5705_PLUS)) {
a71116d1 11467 is_5705 = 1;
63c3a66f 11468 if (tg3_flag(tp, 5750_PLUS))
b16250e3
MC
11469 is_5750 = 1;
11470 }
a71116d1
MC
11471
11472 for (i = 0; reg_tbl[i].offset != 0xffff; i++) {
11473 if (is_5705 && (reg_tbl[i].flags & TG3_FL_NOT_5705))
11474 continue;
11475
11476 if (!is_5705 && (reg_tbl[i].flags & TG3_FL_5705))
11477 continue;
11478
63c3a66f 11479 if (tg3_flag(tp, IS_5788) &&
a71116d1
MC
11480 (reg_tbl[i].flags & TG3_FL_NOT_5788))
11481 continue;
11482
b16250e3
MC
11483 if (is_5750 && (reg_tbl[i].flags & TG3_FL_NOT_5750))
11484 continue;
11485
a71116d1
MC
11486 offset = (u32) reg_tbl[i].offset;
11487 read_mask = reg_tbl[i].read_mask;
11488 write_mask = reg_tbl[i].write_mask;
11489
11490 /* Save the original register content */
11491 save_val = tr32(offset);
11492
11493 /* Determine the read-only value. */
11494 read_val = save_val & read_mask;
11495
11496 /* Write zero to the register, then make sure the read-only bits
11497 * are not changed and the read/write bits are all zeros.
11498 */
11499 tw32(offset, 0);
11500
11501 val = tr32(offset);
11502
11503 /* Test the read-only and read/write bits. */
11504 if (((val & read_mask) != read_val) || (val & write_mask))
11505 goto out;
11506
11507 /* Write ones to all the bits defined by RdMask and WrMask, then
11508 * make sure the read-only bits are not changed and the
11509 * read/write bits are all ones.
11510 */
11511 tw32(offset, read_mask | write_mask);
11512
11513 val = tr32(offset);
11514
11515 /* Test the read-only bits. */
11516 if ((val & read_mask) != read_val)
11517 goto out;
11518
11519 /* Test the read/write bits. */
11520 if ((val & write_mask) != write_mask)
11521 goto out;
11522
11523 tw32(offset, save_val);
11524 }
11525
11526 return 0;
11527
11528out:
9f88f29f 11529 if (netif_msg_hw(tp))
2445e461
MC
11530 netdev_err(tp->dev,
11531 "Register test failed at offset %x\n", offset);
a71116d1
MC
11532 tw32(offset, save_val);
11533 return -EIO;
11534}
11535
7942e1db
MC
11536static int tg3_do_mem_test(struct tg3 *tp, u32 offset, u32 len)
11537{
f71e1309 11538 static const u32 test_pattern[] = { 0x00000000, 0xffffffff, 0xaa55a55a };
7942e1db
MC
11539 int i;
11540 u32 j;
11541
e9edda69 11542 for (i = 0; i < ARRAY_SIZE(test_pattern); i++) {
7942e1db
MC
11543 for (j = 0; j < len; j += 4) {
11544 u32 val;
11545
11546 tg3_write_mem(tp, offset + j, test_pattern[i]);
11547 tg3_read_mem(tp, offset + j, &val);
11548 if (val != test_pattern[i])
11549 return -EIO;
11550 }
11551 }
11552 return 0;
11553}
11554
11555static int tg3_test_memory(struct tg3 *tp)
11556{
11557 static struct mem_entry {
11558 u32 offset;
11559 u32 len;
11560 } mem_tbl_570x[] = {
38690194 11561 { 0x00000000, 0x00b50},
7942e1db
MC
11562 { 0x00002000, 0x1c000},
11563 { 0xffffffff, 0x00000}
11564 }, mem_tbl_5705[] = {
11565 { 0x00000100, 0x0000c},
11566 { 0x00000200, 0x00008},
7942e1db
MC
11567 { 0x00004000, 0x00800},
11568 { 0x00006000, 0x01000},
11569 { 0x00008000, 0x02000},
11570 { 0x00010000, 0x0e000},
11571 { 0xffffffff, 0x00000}
79f4d13a
MC
11572 }, mem_tbl_5755[] = {
11573 { 0x00000200, 0x00008},
11574 { 0x00004000, 0x00800},
11575 { 0x00006000, 0x00800},
11576 { 0x00008000, 0x02000},
11577 { 0x00010000, 0x0c000},
11578 { 0xffffffff, 0x00000}
b16250e3
MC
11579 }, mem_tbl_5906[] = {
11580 { 0x00000200, 0x00008},
11581 { 0x00004000, 0x00400},
11582 { 0x00006000, 0x00400},
11583 { 0x00008000, 0x01000},
11584 { 0x00010000, 0x01000},
11585 { 0xffffffff, 0x00000}
8b5a6c42
MC
11586 }, mem_tbl_5717[] = {
11587 { 0x00000200, 0x00008},
11588 { 0x00010000, 0x0a000},
11589 { 0x00020000, 0x13c00},
11590 { 0xffffffff, 0x00000}
11591 }, mem_tbl_57765[] = {
11592 { 0x00000200, 0x00008},
11593 { 0x00004000, 0x00800},
11594 { 0x00006000, 0x09800},
11595 { 0x00010000, 0x0a000},
11596 { 0xffffffff, 0x00000}
7942e1db
MC
11597 };
11598 struct mem_entry *mem_tbl;
11599 int err = 0;
11600 int i;
11601
63c3a66f 11602 if (tg3_flag(tp, 5717_PLUS))
8b5a6c42 11603 mem_tbl = mem_tbl_5717;
55086ad9 11604 else if (tg3_flag(tp, 57765_CLASS))
8b5a6c42 11605 mem_tbl = mem_tbl_57765;
63c3a66f 11606 else if (tg3_flag(tp, 5755_PLUS))
321d32a0
MC
11607 mem_tbl = mem_tbl_5755;
11608 else if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5906)
11609 mem_tbl = mem_tbl_5906;
63c3a66f 11610 else if (tg3_flag(tp, 5705_PLUS))
321d32a0
MC
11611 mem_tbl = mem_tbl_5705;
11612 else
7942e1db
MC
11613 mem_tbl = mem_tbl_570x;
11614
11615 for (i = 0; mem_tbl[i].offset != 0xffffffff; i++) {
be98da6a
MC
11616 err = tg3_do_mem_test(tp, mem_tbl[i].offset, mem_tbl[i].len);
11617 if (err)
7942e1db
MC
11618 break;
11619 }
6aa20a22 11620
7942e1db
MC
11621 return err;
11622}
11623
bb158d69
MC
11624#define TG3_TSO_MSS 500
11625
11626#define TG3_TSO_IP_HDR_LEN 20
11627#define TG3_TSO_TCP_HDR_LEN 20
11628#define TG3_TSO_TCP_OPT_LEN 12
11629
11630static const u8 tg3_tso_header[] = {
116310x08, 0x00,
116320x45, 0x00, 0x00, 0x00,
116330x00, 0x00, 0x40, 0x00,
116340x40, 0x06, 0x00, 0x00,
116350x0a, 0x00, 0x00, 0x01,
116360x0a, 0x00, 0x00, 0x02,
116370x0d, 0x00, 0xe0, 0x00,
116380x00, 0x00, 0x01, 0x00,
116390x00, 0x00, 0x02, 0x00,
116400x80, 0x10, 0x10, 0x00,
116410x14, 0x09, 0x00, 0x00,
116420x01, 0x01, 0x08, 0x0a,
116430x11, 0x11, 0x11, 0x11,
116440x11, 0x11, 0x11, 0x11,
11645};
9f40dead 11646
28a45957 11647static int tg3_run_loopback(struct tg3 *tp, u32 pktsz, bool tso_loopback)
c76949a6 11648{
5e5a7f37 11649 u32 rx_start_idx, rx_idx, tx_idx, opaque_key;
bb158d69 11650 u32 base_flags = 0, mss = 0, desc_idx, coal_now, data_off, val;
84b67b27 11651 u32 budget;
9205fd9c
ED
11652 struct sk_buff *skb;
11653 u8 *tx_data, *rx_data;
c76949a6
MC
11654 dma_addr_t map;
11655 int num_pkts, tx_len, rx_len, i, err;
11656 struct tg3_rx_buffer_desc *desc;
898a56f8 11657 struct tg3_napi *tnapi, *rnapi;
8fea32b9 11658 struct tg3_rx_prodring_set *tpr = &tp->napi[0].prodring;
c76949a6 11659
c8873405
MC
11660 tnapi = &tp->napi[0];
11661 rnapi = &tp->napi[0];
0c1d0e2b 11662 if (tp->irq_cnt > 1) {
63c3a66f 11663 if (tg3_flag(tp, ENABLE_RSS))
1da85aa3 11664 rnapi = &tp->napi[1];
63c3a66f 11665 if (tg3_flag(tp, ENABLE_TSS))
c8873405 11666 tnapi = &tp->napi[1];
0c1d0e2b 11667 }
fd2ce37f 11668 coal_now = tnapi->coal_now | rnapi->coal_now;
898a56f8 11669
c76949a6
MC
11670 err = -EIO;
11671
4852a861 11672 tx_len = pktsz;
a20e9c62 11673 skb = netdev_alloc_skb(tp->dev, tx_len);
a50bb7b9
JJ
11674 if (!skb)
11675 return -ENOMEM;
11676
c76949a6
MC
11677 tx_data = skb_put(skb, tx_len);
11678 memcpy(tx_data, tp->dev->dev_addr, 6);
11679 memset(tx_data + 6, 0x0, 8);
11680
4852a861 11681 tw32(MAC_RX_MTU_SIZE, tx_len + ETH_FCS_LEN);
c76949a6 11682
28a45957 11683 if (tso_loopback) {
bb158d69
MC
11684 struct iphdr *iph = (struct iphdr *)&tx_data[ETH_HLEN];
11685
11686 u32 hdr_len = TG3_TSO_IP_HDR_LEN + TG3_TSO_TCP_HDR_LEN +
11687 TG3_TSO_TCP_OPT_LEN;
11688
11689 memcpy(tx_data + ETH_ALEN * 2, tg3_tso_header,
11690 sizeof(tg3_tso_header));
11691 mss = TG3_TSO_MSS;
11692
11693 val = tx_len - ETH_ALEN * 2 - sizeof(tg3_tso_header);
11694 num_pkts = DIV_ROUND_UP(val, TG3_TSO_MSS);
11695
11696 /* Set the total length field in the IP header */
11697 iph->tot_len = htons((u16)(mss + hdr_len));
11698
11699 base_flags = (TXD_FLAG_CPU_PRE_DMA |
11700 TXD_FLAG_CPU_POST_DMA);
11701
63c3a66f
JP
11702 if (tg3_flag(tp, HW_TSO_1) ||
11703 tg3_flag(tp, HW_TSO_2) ||
11704 tg3_flag(tp, HW_TSO_3)) {
bb158d69
MC
11705 struct tcphdr *th;
11706 val = ETH_HLEN + TG3_TSO_IP_HDR_LEN;
11707 th = (struct tcphdr *)&tx_data[val];
11708 th->check = 0;
11709 } else
11710 base_flags |= TXD_FLAG_TCPUDP_CSUM;
11711
63c3a66f 11712 if (tg3_flag(tp, HW_TSO_3)) {
bb158d69
MC
11713 mss |= (hdr_len & 0xc) << 12;
11714 if (hdr_len & 0x10)
11715 base_flags |= 0x00000010;
11716 base_flags |= (hdr_len & 0x3e0) << 5;
63c3a66f 11717 } else if (tg3_flag(tp, HW_TSO_2))
bb158d69 11718 mss |= hdr_len << 9;
63c3a66f 11719 else if (tg3_flag(tp, HW_TSO_1) ||
bb158d69
MC
11720 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5705) {
11721 mss |= (TG3_TSO_TCP_OPT_LEN << 9);
11722 } else {
11723 base_flags |= (TG3_TSO_TCP_OPT_LEN << 10);
11724 }
11725
11726 data_off = ETH_ALEN * 2 + sizeof(tg3_tso_header);
11727 } else {
11728 num_pkts = 1;
11729 data_off = ETH_HLEN;
c441b456
MC
11730
11731 if (tg3_flag(tp, USE_JUMBO_BDFLAG) &&
11732 tx_len > VLAN_ETH_FRAME_LEN)
11733 base_flags |= TXD_FLAG_JMB_PKT;
bb158d69
MC
11734 }
11735
11736 for (i = data_off; i < tx_len; i++)
c76949a6
MC
11737 tx_data[i] = (u8) (i & 0xff);
11738
f4188d8a
AD
11739 map = pci_map_single(tp->pdev, skb->data, tx_len, PCI_DMA_TODEVICE);
11740 if (pci_dma_mapping_error(tp->pdev, map)) {
a21771dd
MC
11741 dev_kfree_skb(skb);
11742 return -EIO;
11743 }
c76949a6 11744
0d681b27
MC
11745 val = tnapi->tx_prod;
11746 tnapi->tx_buffers[val].skb = skb;
11747 dma_unmap_addr_set(&tnapi->tx_buffers[val], mapping, map);
11748
c76949a6 11749 tw32_f(HOSTCC_MODE, tp->coalesce_mode | HOSTCC_MODE_ENABLE |
fd2ce37f 11750 rnapi->coal_now);
c76949a6
MC
11751
11752 udelay(10);
11753
898a56f8 11754 rx_start_idx = rnapi->hw_status->idx[0].rx_producer;
c76949a6 11755
84b67b27
MC
11756 budget = tg3_tx_avail(tnapi);
11757 if (tg3_tx_frag_set(tnapi, &val, &budget, map, tx_len,
d1a3b737
MC
11758 base_flags | TXD_FLAG_END, mss, 0)) {
11759 tnapi->tx_buffers[val].skb = NULL;
11760 dev_kfree_skb(skb);
11761 return -EIO;
11762 }
c76949a6 11763
f3f3f27e 11764 tnapi->tx_prod++;
c76949a6 11765
f3f3f27e
MC
11766 tw32_tx_mbox(tnapi->prodmbox, tnapi->tx_prod);
11767 tr32_mailbox(tnapi->prodmbox);
c76949a6
MC
11768
11769 udelay(10);
11770
303fc921
MC
11771 /* 350 usec to allow enough time on some 10/100 Mbps devices. */
11772 for (i = 0; i < 35; i++) {
c76949a6 11773 tw32_f(HOSTCC_MODE, tp->coalesce_mode | HOSTCC_MODE_ENABLE |
fd2ce37f 11774 coal_now);
c76949a6
MC
11775
11776 udelay(10);
11777
898a56f8
MC
11778 tx_idx = tnapi->hw_status->idx[0].tx_consumer;
11779 rx_idx = rnapi->hw_status->idx[0].rx_producer;
f3f3f27e 11780 if ((tx_idx == tnapi->tx_prod) &&
c76949a6
MC
11781 (rx_idx == (rx_start_idx + num_pkts)))
11782 break;
11783 }
11784
ba1142e4 11785 tg3_tx_skb_unmap(tnapi, tnapi->tx_prod - 1, -1);
c76949a6
MC
11786 dev_kfree_skb(skb);
11787
f3f3f27e 11788 if (tx_idx != tnapi->tx_prod)
c76949a6
MC
11789 goto out;
11790
11791 if (rx_idx != rx_start_idx + num_pkts)
11792 goto out;
11793
bb158d69
MC
11794 val = data_off;
11795 while (rx_idx != rx_start_idx) {
11796 desc = &rnapi->rx_rcb[rx_start_idx++];
11797 desc_idx = desc->opaque & RXD_OPAQUE_INDEX_MASK;
11798 opaque_key = desc->opaque & RXD_OPAQUE_RING_MASK;
c76949a6 11799
bb158d69
MC
11800 if ((desc->err_vlan & RXD_ERR_MASK) != 0 &&
11801 (desc->err_vlan != RXD_ERR_ODD_NIBBLE_RCVD_MII))
11802 goto out;
c76949a6 11803
bb158d69
MC
11804 rx_len = ((desc->idx_len & RXD_LEN_MASK) >> RXD_LEN_SHIFT)
11805 - ETH_FCS_LEN;
c76949a6 11806
28a45957 11807 if (!tso_loopback) {
bb158d69
MC
11808 if (rx_len != tx_len)
11809 goto out;
4852a861 11810
bb158d69
MC
11811 if (pktsz <= TG3_RX_STD_DMA_SZ - ETH_FCS_LEN) {
11812 if (opaque_key != RXD_OPAQUE_RING_STD)
11813 goto out;
11814 } else {
11815 if (opaque_key != RXD_OPAQUE_RING_JUMBO)
11816 goto out;
11817 }
11818 } else if ((desc->type_flags & RXD_FLAG_TCPUDP_CSUM) &&
11819 (desc->ip_tcp_csum & RXD_TCPCSUM_MASK)
54e0a67f 11820 >> RXD_TCPCSUM_SHIFT != 0xffff) {
4852a861 11821 goto out;
bb158d69 11822 }
4852a861 11823
bb158d69 11824 if (opaque_key == RXD_OPAQUE_RING_STD) {
9205fd9c 11825 rx_data = tpr->rx_std_buffers[desc_idx].data;
bb158d69
MC
11826 map = dma_unmap_addr(&tpr->rx_std_buffers[desc_idx],
11827 mapping);
11828 } else if (opaque_key == RXD_OPAQUE_RING_JUMBO) {
9205fd9c 11829 rx_data = tpr->rx_jmb_buffers[desc_idx].data;
bb158d69
MC
11830 map = dma_unmap_addr(&tpr->rx_jmb_buffers[desc_idx],
11831 mapping);
11832 } else
11833 goto out;
c76949a6 11834
bb158d69
MC
11835 pci_dma_sync_single_for_cpu(tp->pdev, map, rx_len,
11836 PCI_DMA_FROMDEVICE);
c76949a6 11837
9205fd9c 11838 rx_data += TG3_RX_OFFSET(tp);
bb158d69 11839 for (i = data_off; i < rx_len; i++, val++) {
9205fd9c 11840 if (*(rx_data + i) != (u8) (val & 0xff))
bb158d69
MC
11841 goto out;
11842 }
c76949a6 11843 }
bb158d69 11844
c76949a6 11845 err = 0;
6aa20a22 11846
9205fd9c 11847 /* tg3_free_rings will unmap and free the rx_data */
c76949a6
MC
11848out:
11849 return err;
11850}
11851
00c266b7
MC
11852#define TG3_STD_LOOPBACK_FAILED 1
11853#define TG3_JMB_LOOPBACK_FAILED 2
bb158d69 11854#define TG3_TSO_LOOPBACK_FAILED 4
28a45957
MC
11855#define TG3_LOOPBACK_FAILED \
11856 (TG3_STD_LOOPBACK_FAILED | \
11857 TG3_JMB_LOOPBACK_FAILED | \
11858 TG3_TSO_LOOPBACK_FAILED)
00c266b7 11859
941ec90f 11860static int tg3_test_loopback(struct tg3 *tp, u64 *data, bool do_extlpbk)
9f40dead 11861{
28a45957 11862 int err = -EIO;
2215e24c 11863 u32 eee_cap;
c441b456
MC
11864 u32 jmb_pkt_sz = 9000;
11865
11866 if (tp->dma_limit)
11867 jmb_pkt_sz = tp->dma_limit - ETH_HLEN;
9f40dead 11868
ab789046
MC
11869 eee_cap = tp->phy_flags & TG3_PHYFLG_EEE_CAP;
11870 tp->phy_flags &= ~TG3_PHYFLG_EEE_CAP;
11871
28a45957
MC
11872 if (!netif_running(tp->dev)) {
11873 data[0] = TG3_LOOPBACK_FAILED;
11874 data[1] = TG3_LOOPBACK_FAILED;
941ec90f
MC
11875 if (do_extlpbk)
11876 data[2] = TG3_LOOPBACK_FAILED;
28a45957
MC
11877 goto done;
11878 }
11879
b9ec6c1b 11880 err = tg3_reset_hw(tp, 1);
ab789046 11881 if (err) {
28a45957
MC
11882 data[0] = TG3_LOOPBACK_FAILED;
11883 data[1] = TG3_LOOPBACK_FAILED;
941ec90f
MC
11884 if (do_extlpbk)
11885 data[2] = TG3_LOOPBACK_FAILED;
ab789046
MC
11886 goto done;
11887 }
9f40dead 11888
63c3a66f 11889 if (tg3_flag(tp, ENABLE_RSS)) {
4a85f098
MC
11890 int i;
11891
11892 /* Reroute all rx packets to the 1st queue */
11893 for (i = MAC_RSS_INDIR_TBL_0;
11894 i < MAC_RSS_INDIR_TBL_0 + TG3_RSS_INDIR_TBL_SIZE; i += 4)
11895 tw32(i, 0x0);
11896 }
11897
6e01b20b
MC
11898 /* HW errata - mac loopback fails in some cases on 5780.
11899 * Normal traffic and PHY loopback are not affected by
11900 * errata. Also, the MAC loopback test is deprecated for
11901 * all newer ASIC revisions.
11902 */
11903 if (GET_ASIC_REV(tp->pci_chip_rev_id) != ASIC_REV_5780 &&
11904 !tg3_flag(tp, CPMU_PRESENT)) {
11905 tg3_mac_loopback(tp, true);
9936bcf6 11906
28a45957
MC
11907 if (tg3_run_loopback(tp, ETH_FRAME_LEN, false))
11908 data[0] |= TG3_STD_LOOPBACK_FAILED;
6e01b20b
MC
11909
11910 if (tg3_flag(tp, JUMBO_RING_ENABLE) &&
c441b456 11911 tg3_run_loopback(tp, jmb_pkt_sz + ETH_HLEN, false))
28a45957 11912 data[0] |= TG3_JMB_LOOPBACK_FAILED;
6e01b20b
MC
11913
11914 tg3_mac_loopback(tp, false);
11915 }
4852a861 11916
f07e9af3 11917 if (!(tp->phy_flags & TG3_PHYFLG_PHY_SERDES) &&
63c3a66f 11918 !tg3_flag(tp, USE_PHYLIB)) {
5e5a7f37
MC
11919 int i;
11920
941ec90f 11921 tg3_phy_lpbk_set(tp, 0, false);
5e5a7f37
MC
11922
11923 /* Wait for link */
11924 for (i = 0; i < 100; i++) {
11925 if (tr32(MAC_TX_STATUS) & TX_STATUS_LINK_UP)
11926 break;
11927 mdelay(1);
11928 }
11929
28a45957
MC
11930 if (tg3_run_loopback(tp, ETH_FRAME_LEN, false))
11931 data[1] |= TG3_STD_LOOPBACK_FAILED;
63c3a66f 11932 if (tg3_flag(tp, TSO_CAPABLE) &&
28a45957
MC
11933 tg3_run_loopback(tp, ETH_FRAME_LEN, true))
11934 data[1] |= TG3_TSO_LOOPBACK_FAILED;
63c3a66f 11935 if (tg3_flag(tp, JUMBO_RING_ENABLE) &&
c441b456 11936 tg3_run_loopback(tp, jmb_pkt_sz + ETH_HLEN, false))
28a45957 11937 data[1] |= TG3_JMB_LOOPBACK_FAILED;
9f40dead 11938
941ec90f
MC
11939 if (do_extlpbk) {
11940 tg3_phy_lpbk_set(tp, 0, true);
11941
11942 /* All link indications report up, but the hardware
11943 * isn't really ready for about 20 msec. Double it
11944 * to be sure.
11945 */
11946 mdelay(40);
11947
11948 if (tg3_run_loopback(tp, ETH_FRAME_LEN, false))
11949 data[2] |= TG3_STD_LOOPBACK_FAILED;
11950 if (tg3_flag(tp, TSO_CAPABLE) &&
11951 tg3_run_loopback(tp, ETH_FRAME_LEN, true))
11952 data[2] |= TG3_TSO_LOOPBACK_FAILED;
11953 if (tg3_flag(tp, JUMBO_RING_ENABLE) &&
c441b456 11954 tg3_run_loopback(tp, jmb_pkt_sz + ETH_HLEN, false))
941ec90f
MC
11955 data[2] |= TG3_JMB_LOOPBACK_FAILED;
11956 }
11957
5e5a7f37
MC
11958 /* Re-enable gphy autopowerdown. */
11959 if (tp->phy_flags & TG3_PHYFLG_ENABLE_APD)
11960 tg3_phy_toggle_apd(tp, true);
11961 }
6833c043 11962
941ec90f 11963 err = (data[0] | data[1] | data[2]) ? -EIO : 0;
28a45957 11964
ab789046
MC
11965done:
11966 tp->phy_flags |= eee_cap;
11967
9f40dead
MC
11968 return err;
11969}
11970
4cafd3f5
MC
11971static void tg3_self_test(struct net_device *dev, struct ethtool_test *etest,
11972 u64 *data)
11973{
566f86ad 11974 struct tg3 *tp = netdev_priv(dev);
941ec90f 11975 bool doextlpbk = etest->flags & ETH_TEST_FL_EXTERNAL_LB;
566f86ad 11976
bed9829f
MC
11977 if ((tp->phy_flags & TG3_PHYFLG_IS_LOW_POWER) &&
11978 tg3_power_up(tp)) {
11979 etest->flags |= ETH_TEST_FL_FAILED;
11980 memset(data, 1, sizeof(u64) * TG3_NUM_TEST);
11981 return;
11982 }
bc1c7567 11983
566f86ad
MC
11984 memset(data, 0, sizeof(u64) * TG3_NUM_TEST);
11985
11986 if (tg3_test_nvram(tp) != 0) {
11987 etest->flags |= ETH_TEST_FL_FAILED;
11988 data[0] = 1;
11989 }
941ec90f 11990 if (!doextlpbk && tg3_test_link(tp)) {
ca43007a
MC
11991 etest->flags |= ETH_TEST_FL_FAILED;
11992 data[1] = 1;
11993 }
a71116d1 11994 if (etest->flags & ETH_TEST_FL_OFFLINE) {
b02fd9e3 11995 int err, err2 = 0, irq_sync = 0;
bbe832c0
MC
11996
11997 if (netif_running(dev)) {
b02fd9e3 11998 tg3_phy_stop(tp);
a71116d1 11999 tg3_netif_stop(tp);
bbe832c0
MC
12000 irq_sync = 1;
12001 }
a71116d1 12002
bbe832c0 12003 tg3_full_lock(tp, irq_sync);
a71116d1
MC
12004
12005 tg3_halt(tp, RESET_KIND_SUSPEND, 1);
ec41c7df 12006 err = tg3_nvram_lock(tp);
a71116d1 12007 tg3_halt_cpu(tp, RX_CPU_BASE);
63c3a66f 12008 if (!tg3_flag(tp, 5705_PLUS))
a71116d1 12009 tg3_halt_cpu(tp, TX_CPU_BASE);
ec41c7df
MC
12010 if (!err)
12011 tg3_nvram_unlock(tp);
a71116d1 12012
f07e9af3 12013 if (tp->phy_flags & TG3_PHYFLG_MII_SERDES)
d9ab5ad1
MC
12014 tg3_phy_reset(tp);
12015
a71116d1
MC
12016 if (tg3_test_registers(tp) != 0) {
12017 etest->flags |= ETH_TEST_FL_FAILED;
12018 data[2] = 1;
12019 }
28a45957 12020
7942e1db
MC
12021 if (tg3_test_memory(tp) != 0) {
12022 etest->flags |= ETH_TEST_FL_FAILED;
12023 data[3] = 1;
12024 }
28a45957 12025
941ec90f
MC
12026 if (doextlpbk)
12027 etest->flags |= ETH_TEST_FL_EXTERNAL_LB_DONE;
12028
12029 if (tg3_test_loopback(tp, &data[4], doextlpbk))
c76949a6 12030 etest->flags |= ETH_TEST_FL_FAILED;
a71116d1 12031
f47c11ee
DM
12032 tg3_full_unlock(tp);
12033
d4bc3927
MC
12034 if (tg3_test_interrupt(tp) != 0) {
12035 etest->flags |= ETH_TEST_FL_FAILED;
941ec90f 12036 data[7] = 1;
d4bc3927 12037 }
f47c11ee
DM
12038
12039 tg3_full_lock(tp, 0);
d4bc3927 12040
a71116d1
MC
12041 tg3_halt(tp, RESET_KIND_SHUTDOWN, 1);
12042 if (netif_running(dev)) {
63c3a66f 12043 tg3_flag_set(tp, INIT_COMPLETE);
b02fd9e3
MC
12044 err2 = tg3_restart_hw(tp, 1);
12045 if (!err2)
b9ec6c1b 12046 tg3_netif_start(tp);
a71116d1 12047 }
f47c11ee
DM
12048
12049 tg3_full_unlock(tp);
b02fd9e3
MC
12050
12051 if (irq_sync && !err2)
12052 tg3_phy_start(tp);
a71116d1 12053 }
80096068 12054 if (tp->phy_flags & TG3_PHYFLG_IS_LOW_POWER)
c866b7ea 12055 tg3_power_down(tp);
bc1c7567 12056
4cafd3f5
MC
12057}
12058
1da177e4
LT
12059static int tg3_ioctl(struct net_device *dev, struct ifreq *ifr, int cmd)
12060{
12061 struct mii_ioctl_data *data = if_mii(ifr);
12062 struct tg3 *tp = netdev_priv(dev);
12063 int err;
12064
63c3a66f 12065 if (tg3_flag(tp, USE_PHYLIB)) {
3f0e3ad7 12066 struct phy_device *phydev;
f07e9af3 12067 if (!(tp->phy_flags & TG3_PHYFLG_IS_CONNECTED))
b02fd9e3 12068 return -EAGAIN;
3f0e3ad7 12069 phydev = tp->mdio_bus->phy_map[TG3_PHY_MII_ADDR];
28b04113 12070 return phy_mii_ioctl(phydev, ifr, cmd);
b02fd9e3
MC
12071 }
12072
33f401ae 12073 switch (cmd) {
1da177e4 12074 case SIOCGMIIPHY:
882e9793 12075 data->phy_id = tp->phy_addr;
1da177e4
LT
12076
12077 /* fallthru */
12078 case SIOCGMIIREG: {
12079 u32 mii_regval;
12080
f07e9af3 12081 if (tp->phy_flags & TG3_PHYFLG_PHY_SERDES)
1da177e4
LT
12082 break; /* We have no PHY */
12083
34eea5ac 12084 if (!netif_running(dev))
bc1c7567
MC
12085 return -EAGAIN;
12086
f47c11ee 12087 spin_lock_bh(&tp->lock);
1da177e4 12088 err = tg3_readphy(tp, data->reg_num & 0x1f, &mii_regval);
f47c11ee 12089 spin_unlock_bh(&tp->lock);
1da177e4
LT
12090
12091 data->val_out = mii_regval;
12092
12093 return err;
12094 }
12095
12096 case SIOCSMIIREG:
f07e9af3 12097 if (tp->phy_flags & TG3_PHYFLG_PHY_SERDES)
1da177e4
LT
12098 break; /* We have no PHY */
12099
34eea5ac 12100 if (!netif_running(dev))
bc1c7567
MC
12101 return -EAGAIN;
12102
f47c11ee 12103 spin_lock_bh(&tp->lock);
1da177e4 12104 err = tg3_writephy(tp, data->reg_num & 0x1f, data->val_in);
f47c11ee 12105 spin_unlock_bh(&tp->lock);
1da177e4
LT
12106
12107 return err;
12108
12109 default:
12110 /* do nothing */
12111 break;
12112 }
12113 return -EOPNOTSUPP;
12114}
12115
15f9850d
DM
12116static int tg3_get_coalesce(struct net_device *dev, struct ethtool_coalesce *ec)
12117{
12118 struct tg3 *tp = netdev_priv(dev);
12119
12120 memcpy(ec, &tp->coal, sizeof(*ec));
12121 return 0;
12122}
12123
d244c892
MC
12124static int tg3_set_coalesce(struct net_device *dev, struct ethtool_coalesce *ec)
12125{
12126 struct tg3 *tp = netdev_priv(dev);
12127 u32 max_rxcoal_tick_int = 0, max_txcoal_tick_int = 0;
12128 u32 max_stat_coal_ticks = 0, min_stat_coal_ticks = 0;
12129
63c3a66f 12130 if (!tg3_flag(tp, 5705_PLUS)) {
d244c892
MC
12131 max_rxcoal_tick_int = MAX_RXCOAL_TICK_INT;
12132 max_txcoal_tick_int = MAX_TXCOAL_TICK_INT;
12133 max_stat_coal_ticks = MAX_STAT_COAL_TICKS;
12134 min_stat_coal_ticks = MIN_STAT_COAL_TICKS;
12135 }
12136
12137 if ((ec->rx_coalesce_usecs > MAX_RXCOL_TICKS) ||
12138 (ec->tx_coalesce_usecs > MAX_TXCOL_TICKS) ||
12139 (ec->rx_max_coalesced_frames > MAX_RXMAX_FRAMES) ||
12140 (ec->tx_max_coalesced_frames > MAX_TXMAX_FRAMES) ||
12141 (ec->rx_coalesce_usecs_irq > max_rxcoal_tick_int) ||
12142 (ec->tx_coalesce_usecs_irq > max_txcoal_tick_int) ||
12143 (ec->rx_max_coalesced_frames_irq > MAX_RXCOAL_MAXF_INT) ||
12144 (ec->tx_max_coalesced_frames_irq > MAX_TXCOAL_MAXF_INT) ||
12145 (ec->stats_block_coalesce_usecs > max_stat_coal_ticks) ||
12146 (ec->stats_block_coalesce_usecs < min_stat_coal_ticks))
12147 return -EINVAL;
12148
12149 /* No rx interrupts will be generated if both are zero */
12150 if ((ec->rx_coalesce_usecs == 0) &&
12151 (ec->rx_max_coalesced_frames == 0))
12152 return -EINVAL;
12153
12154 /* No tx interrupts will be generated if both are zero */
12155 if ((ec->tx_coalesce_usecs == 0) &&
12156 (ec->tx_max_coalesced_frames == 0))
12157 return -EINVAL;
12158
12159 /* Only copy relevant parameters, ignore all others. */
12160 tp->coal.rx_coalesce_usecs = ec->rx_coalesce_usecs;
12161 tp->coal.tx_coalesce_usecs = ec->tx_coalesce_usecs;
12162 tp->coal.rx_max_coalesced_frames = ec->rx_max_coalesced_frames;
12163 tp->coal.tx_max_coalesced_frames = ec->tx_max_coalesced_frames;
12164 tp->coal.rx_coalesce_usecs_irq = ec->rx_coalesce_usecs_irq;
12165 tp->coal.tx_coalesce_usecs_irq = ec->tx_coalesce_usecs_irq;
12166 tp->coal.rx_max_coalesced_frames_irq = ec->rx_max_coalesced_frames_irq;
12167 tp->coal.tx_max_coalesced_frames_irq = ec->tx_max_coalesced_frames_irq;
12168 tp->coal.stats_block_coalesce_usecs = ec->stats_block_coalesce_usecs;
12169
12170 if (netif_running(dev)) {
12171 tg3_full_lock(tp, 0);
12172 __tg3_set_coalesce(tp, &tp->coal);
12173 tg3_full_unlock(tp);
12174 }
12175 return 0;
12176}
12177
7282d491 12178static const struct ethtool_ops tg3_ethtool_ops = {
1da177e4
LT
12179 .get_settings = tg3_get_settings,
12180 .set_settings = tg3_set_settings,
12181 .get_drvinfo = tg3_get_drvinfo,
12182 .get_regs_len = tg3_get_regs_len,
12183 .get_regs = tg3_get_regs,
12184 .get_wol = tg3_get_wol,
12185 .set_wol = tg3_set_wol,
12186 .get_msglevel = tg3_get_msglevel,
12187 .set_msglevel = tg3_set_msglevel,
12188 .nway_reset = tg3_nway_reset,
12189 .get_link = ethtool_op_get_link,
12190 .get_eeprom_len = tg3_get_eeprom_len,
12191 .get_eeprom = tg3_get_eeprom,
12192 .set_eeprom = tg3_set_eeprom,
12193 .get_ringparam = tg3_get_ringparam,
12194 .set_ringparam = tg3_set_ringparam,
12195 .get_pauseparam = tg3_get_pauseparam,
12196 .set_pauseparam = tg3_set_pauseparam,
4cafd3f5 12197 .self_test = tg3_self_test,
1da177e4 12198 .get_strings = tg3_get_strings,
81b8709c 12199 .set_phys_id = tg3_set_phys_id,
1da177e4 12200 .get_ethtool_stats = tg3_get_ethtool_stats,
15f9850d 12201 .get_coalesce = tg3_get_coalesce,
d244c892 12202 .set_coalesce = tg3_set_coalesce,
b9f2c044 12203 .get_sset_count = tg3_get_sset_count,
90415477
MC
12204 .get_rxnfc = tg3_get_rxnfc,
12205 .get_rxfh_indir_size = tg3_get_rxfh_indir_size,
12206 .get_rxfh_indir = tg3_get_rxfh_indir,
12207 .set_rxfh_indir = tg3_set_rxfh_indir,
1da177e4
LT
12208};
12209
b4017c53
DM
12210static struct rtnl_link_stats64 *tg3_get_stats64(struct net_device *dev,
12211 struct rtnl_link_stats64 *stats)
12212{
12213 struct tg3 *tp = netdev_priv(dev);
12214
12215 if (!tp->hw_stats)
12216 return &tp->net_stats_prev;
12217
12218 spin_lock_bh(&tp->lock);
12219 tg3_get_nstats(tp, stats);
12220 spin_unlock_bh(&tp->lock);
12221
12222 return stats;
12223}
12224
ccd5ba9d
MC
12225static void tg3_set_rx_mode(struct net_device *dev)
12226{
12227 struct tg3 *tp = netdev_priv(dev);
12228
12229 if (!netif_running(dev))
12230 return;
12231
12232 tg3_full_lock(tp, 0);
12233 __tg3_set_rx_mode(dev);
12234 tg3_full_unlock(tp);
12235}
12236
faf1627a
MC
12237static inline void tg3_set_mtu(struct net_device *dev, struct tg3 *tp,
12238 int new_mtu)
12239{
12240 dev->mtu = new_mtu;
12241
12242 if (new_mtu > ETH_DATA_LEN) {
12243 if (tg3_flag(tp, 5780_CLASS)) {
12244 netdev_update_features(dev);
12245 tg3_flag_clear(tp, TSO_CAPABLE);
12246 } else {
12247 tg3_flag_set(tp, JUMBO_RING_ENABLE);
12248 }
12249 } else {
12250 if (tg3_flag(tp, 5780_CLASS)) {
12251 tg3_flag_set(tp, TSO_CAPABLE);
12252 netdev_update_features(dev);
12253 }
12254 tg3_flag_clear(tp, JUMBO_RING_ENABLE);
12255 }
12256}
12257
12258static int tg3_change_mtu(struct net_device *dev, int new_mtu)
12259{
12260 struct tg3 *tp = netdev_priv(dev);
12261 int err;
12262
12263 if (new_mtu < TG3_MIN_MTU || new_mtu > TG3_MAX_MTU(tp))
12264 return -EINVAL;
12265
12266 if (!netif_running(dev)) {
12267 /* We'll just catch it later when the
12268 * device is up'd.
12269 */
12270 tg3_set_mtu(dev, tp, new_mtu);
12271 return 0;
12272 }
12273
12274 tg3_phy_stop(tp);
12275
12276 tg3_netif_stop(tp);
12277
12278 tg3_full_lock(tp, 1);
12279
12280 tg3_halt(tp, RESET_KIND_SHUTDOWN, 1);
12281
12282 tg3_set_mtu(dev, tp, new_mtu);
12283
12284 err = tg3_restart_hw(tp, 0);
12285
12286 if (!err)
12287 tg3_netif_start(tp);
12288
12289 tg3_full_unlock(tp);
12290
12291 if (!err)
12292 tg3_phy_start(tp);
12293
12294 return err;
12295}
12296
12297static const struct net_device_ops tg3_netdev_ops = {
12298 .ndo_open = tg3_open,
12299 .ndo_stop = tg3_close,
12300 .ndo_start_xmit = tg3_start_xmit,
12301 .ndo_get_stats64 = tg3_get_stats64,
12302 .ndo_validate_addr = eth_validate_addr,
12303 .ndo_set_rx_mode = tg3_set_rx_mode,
12304 .ndo_set_mac_address = tg3_set_mac_addr,
12305 .ndo_do_ioctl = tg3_ioctl,
12306 .ndo_tx_timeout = tg3_tx_timeout,
12307 .ndo_change_mtu = tg3_change_mtu,
12308 .ndo_fix_features = tg3_fix_features,
12309 .ndo_set_features = tg3_set_features,
12310#ifdef CONFIG_NET_POLL_CONTROLLER
12311 .ndo_poll_controller = tg3_poll_controller,
12312#endif
12313};
12314
1da177e4
LT
12315static void __devinit tg3_get_eeprom_size(struct tg3 *tp)
12316{
1b27777a 12317 u32 cursize, val, magic;
1da177e4
LT
12318
12319 tp->nvram_size = EEPROM_CHIP_SIZE;
12320
e4f34110 12321 if (tg3_nvram_read(tp, 0, &magic) != 0)
1da177e4
LT
12322 return;
12323
b16250e3
MC
12324 if ((magic != TG3_EEPROM_MAGIC) &&
12325 ((magic & TG3_EEPROM_MAGIC_FW_MSK) != TG3_EEPROM_MAGIC_FW) &&
12326 ((magic & TG3_EEPROM_MAGIC_HW_MSK) != TG3_EEPROM_MAGIC_HW))
1da177e4
LT
12327 return;
12328
12329 /*
12330 * Size the chip by reading offsets at increasing powers of two.
12331 * When we encounter our validation signature, we know the addressing
12332 * has wrapped around, and thus have our chip size.
12333 */
1b27777a 12334 cursize = 0x10;
1da177e4
LT
12335
12336 while (cursize < tp->nvram_size) {
e4f34110 12337 if (tg3_nvram_read(tp, cursize, &val) != 0)
1da177e4
LT
12338 return;
12339
1820180b 12340 if (val == magic)
1da177e4
LT
12341 break;
12342
12343 cursize <<= 1;
12344 }
12345
12346 tp->nvram_size = cursize;
12347}
6aa20a22 12348
1da177e4
LT
12349static void __devinit tg3_get_nvram_size(struct tg3 *tp)
12350{
12351 u32 val;
12352
63c3a66f 12353 if (tg3_flag(tp, NO_NVRAM) || tg3_nvram_read(tp, 0, &val) != 0)
1b27777a
MC
12354 return;
12355
12356 /* Selfboot format */
1820180b 12357 if (val != TG3_EEPROM_MAGIC) {
1b27777a
MC
12358 tg3_get_eeprom_size(tp);
12359 return;
12360 }
12361
6d348f2c 12362 if (tg3_nvram_read(tp, 0xf0, &val) == 0) {
1da177e4 12363 if (val != 0) {
6d348f2c
MC
12364 /* This is confusing. We want to operate on the
12365 * 16-bit value at offset 0xf2. The tg3_nvram_read()
12366 * call will read from NVRAM and byteswap the data
12367 * according to the byteswapping settings for all
12368 * other register accesses. This ensures the data we
12369 * want will always reside in the lower 16-bits.
12370 * However, the data in NVRAM is in LE format, which
12371 * means the data from the NVRAM read will always be
12372 * opposite the endianness of the CPU. The 16-bit
12373 * byteswap then brings the data to CPU endianness.
12374 */
12375 tp->nvram_size = swab16((u16)(val & 0x0000ffff)) * 1024;
1da177e4
LT
12376 return;
12377 }
12378 }
fd1122a2 12379 tp->nvram_size = TG3_NVRAM_SIZE_512KB;
1da177e4
LT
12380}
12381
12382static void __devinit tg3_get_nvram_info(struct tg3 *tp)
12383{
12384 u32 nvcfg1;
12385
12386 nvcfg1 = tr32(NVRAM_CFG1);
12387 if (nvcfg1 & NVRAM_CFG1_FLASHIF_ENAB) {
63c3a66f 12388 tg3_flag_set(tp, FLASH);
8590a603 12389 } else {
1da177e4
LT
12390 nvcfg1 &= ~NVRAM_CFG1_COMPAT_BYPASS;
12391 tw32(NVRAM_CFG1, nvcfg1);
12392 }
12393
6ff6f81d 12394 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5750 ||
63c3a66f 12395 tg3_flag(tp, 5780_CLASS)) {
1da177e4 12396 switch (nvcfg1 & NVRAM_CFG1_VENDOR_MASK) {
8590a603
MC
12397 case FLASH_VENDOR_ATMEL_FLASH_BUFFERED:
12398 tp->nvram_jedecnum = JEDEC_ATMEL;
12399 tp->nvram_pagesize = ATMEL_AT45DB0X1B_PAGE_SIZE;
63c3a66f 12400 tg3_flag_set(tp, NVRAM_BUFFERED);
8590a603
MC
12401 break;
12402 case FLASH_VENDOR_ATMEL_FLASH_UNBUFFERED:
12403 tp->nvram_jedecnum = JEDEC_ATMEL;
12404 tp->nvram_pagesize = ATMEL_AT25F512_PAGE_SIZE;
12405 break;
12406 case FLASH_VENDOR_ATMEL_EEPROM:
12407 tp->nvram_jedecnum = JEDEC_ATMEL;
12408 tp->nvram_pagesize = ATMEL_AT24C512_CHIP_SIZE;
63c3a66f 12409 tg3_flag_set(tp, NVRAM_BUFFERED);
8590a603
MC
12410 break;
12411 case FLASH_VENDOR_ST:
12412 tp->nvram_jedecnum = JEDEC_ST;
12413 tp->nvram_pagesize = ST_M45PEX0_PAGE_SIZE;
63c3a66f 12414 tg3_flag_set(tp, NVRAM_BUFFERED);
8590a603
MC
12415 break;
12416 case FLASH_VENDOR_SAIFUN:
12417 tp->nvram_jedecnum = JEDEC_SAIFUN;
12418 tp->nvram_pagesize = SAIFUN_SA25F0XX_PAGE_SIZE;
12419 break;
12420 case FLASH_VENDOR_SST_SMALL:
12421 case FLASH_VENDOR_SST_LARGE:
12422 tp->nvram_jedecnum = JEDEC_SST;
12423 tp->nvram_pagesize = SST_25VF0X0_PAGE_SIZE;
12424 break;
1da177e4 12425 }
8590a603 12426 } else {
1da177e4
LT
12427 tp->nvram_jedecnum = JEDEC_ATMEL;
12428 tp->nvram_pagesize = ATMEL_AT45DB0X1B_PAGE_SIZE;
63c3a66f 12429 tg3_flag_set(tp, NVRAM_BUFFERED);
1da177e4
LT
12430 }
12431}
12432
a1b950d5
MC
12433static void __devinit tg3_nvram_get_pagesize(struct tg3 *tp, u32 nvmcfg1)
12434{
12435 switch (nvmcfg1 & NVRAM_CFG1_5752PAGE_SIZE_MASK) {
12436 case FLASH_5752PAGE_SIZE_256:
12437 tp->nvram_pagesize = 256;
12438 break;
12439 case FLASH_5752PAGE_SIZE_512:
12440 tp->nvram_pagesize = 512;
12441 break;
12442 case FLASH_5752PAGE_SIZE_1K:
12443 tp->nvram_pagesize = 1024;
12444 break;
12445 case FLASH_5752PAGE_SIZE_2K:
12446 tp->nvram_pagesize = 2048;
12447 break;
12448 case FLASH_5752PAGE_SIZE_4K:
12449 tp->nvram_pagesize = 4096;
12450 break;
12451 case FLASH_5752PAGE_SIZE_264:
12452 tp->nvram_pagesize = 264;
12453 break;
12454 case FLASH_5752PAGE_SIZE_528:
12455 tp->nvram_pagesize = 528;
12456 break;
12457 }
12458}
12459
361b4ac2
MC
12460static void __devinit tg3_get_5752_nvram_info(struct tg3 *tp)
12461{
12462 u32 nvcfg1;
12463
12464 nvcfg1 = tr32(NVRAM_CFG1);
12465
e6af301b
MC
12466 /* NVRAM protection for TPM */
12467 if (nvcfg1 & (1 << 27))
63c3a66f 12468 tg3_flag_set(tp, PROTECTED_NVRAM);
e6af301b 12469
361b4ac2 12470 switch (nvcfg1 & NVRAM_CFG1_5752VENDOR_MASK) {
8590a603
MC
12471 case FLASH_5752VENDOR_ATMEL_EEPROM_64KHZ:
12472 case FLASH_5752VENDOR_ATMEL_EEPROM_376KHZ:
12473 tp->nvram_jedecnum = JEDEC_ATMEL;
63c3a66f 12474 tg3_flag_set(tp, NVRAM_BUFFERED);
8590a603
MC
12475 break;
12476 case FLASH_5752VENDOR_ATMEL_FLASH_BUFFERED:
12477 tp->nvram_jedecnum = JEDEC_ATMEL;
63c3a66f
JP
12478 tg3_flag_set(tp, NVRAM_BUFFERED);
12479 tg3_flag_set(tp, FLASH);
8590a603
MC
12480 break;
12481 case FLASH_5752VENDOR_ST_M45PE10:
12482 case FLASH_5752VENDOR_ST_M45PE20:
12483 case FLASH_5752VENDOR_ST_M45PE40:
12484 tp->nvram_jedecnum = JEDEC_ST;
63c3a66f
JP
12485 tg3_flag_set(tp, NVRAM_BUFFERED);
12486 tg3_flag_set(tp, FLASH);
8590a603 12487 break;
361b4ac2
MC
12488 }
12489
63c3a66f 12490 if (tg3_flag(tp, FLASH)) {
a1b950d5 12491 tg3_nvram_get_pagesize(tp, nvcfg1);
8590a603 12492 } else {
361b4ac2
MC
12493 /* For eeprom, set pagesize to maximum eeprom size */
12494 tp->nvram_pagesize = ATMEL_AT24C512_CHIP_SIZE;
12495
12496 nvcfg1 &= ~NVRAM_CFG1_COMPAT_BYPASS;
12497 tw32(NVRAM_CFG1, nvcfg1);
12498 }
12499}
12500
d3c7b886
MC
12501static void __devinit tg3_get_5755_nvram_info(struct tg3 *tp)
12502{
989a9d23 12503 u32 nvcfg1, protect = 0;
d3c7b886
MC
12504
12505 nvcfg1 = tr32(NVRAM_CFG1);
12506
12507 /* NVRAM protection for TPM */
989a9d23 12508 if (nvcfg1 & (1 << 27)) {
63c3a66f 12509 tg3_flag_set(tp, PROTECTED_NVRAM);
989a9d23
MC
12510 protect = 1;
12511 }
d3c7b886 12512
989a9d23
MC
12513 nvcfg1 &= NVRAM_CFG1_5752VENDOR_MASK;
12514 switch (nvcfg1) {
8590a603
MC
12515 case FLASH_5755VENDOR_ATMEL_FLASH_1:
12516 case FLASH_5755VENDOR_ATMEL_FLASH_2:
12517 case FLASH_5755VENDOR_ATMEL_FLASH_3:
12518 case FLASH_5755VENDOR_ATMEL_FLASH_5:
12519 tp->nvram_jedecnum = JEDEC_ATMEL;
63c3a66f
JP
12520 tg3_flag_set(tp, NVRAM_BUFFERED);
12521 tg3_flag_set(tp, FLASH);
8590a603
MC
12522 tp->nvram_pagesize = 264;
12523 if (nvcfg1 == FLASH_5755VENDOR_ATMEL_FLASH_1 ||
12524 nvcfg1 == FLASH_5755VENDOR_ATMEL_FLASH_5)
12525 tp->nvram_size = (protect ? 0x3e200 :
12526 TG3_NVRAM_SIZE_512KB);
12527 else if (nvcfg1 == FLASH_5755VENDOR_ATMEL_FLASH_2)
12528 tp->nvram_size = (protect ? 0x1f200 :
12529 TG3_NVRAM_SIZE_256KB);
12530 else
12531 tp->nvram_size = (protect ? 0x1f200 :
12532 TG3_NVRAM_SIZE_128KB);
12533 break;
12534 case FLASH_5752VENDOR_ST_M45PE10:
12535 case FLASH_5752VENDOR_ST_M45PE20:
12536 case FLASH_5752VENDOR_ST_M45PE40:
12537 tp->nvram_jedecnum = JEDEC_ST;
63c3a66f
JP
12538 tg3_flag_set(tp, NVRAM_BUFFERED);
12539 tg3_flag_set(tp, FLASH);
8590a603
MC
12540 tp->nvram_pagesize = 256;
12541 if (nvcfg1 == FLASH_5752VENDOR_ST_M45PE10)
12542 tp->nvram_size = (protect ?
12543 TG3_NVRAM_SIZE_64KB :
12544 TG3_NVRAM_SIZE_128KB);
12545 else if (nvcfg1 == FLASH_5752VENDOR_ST_M45PE20)
12546 tp->nvram_size = (protect ?
12547 TG3_NVRAM_SIZE_64KB :
12548 TG3_NVRAM_SIZE_256KB);
12549 else
12550 tp->nvram_size = (protect ?
12551 TG3_NVRAM_SIZE_128KB :
12552 TG3_NVRAM_SIZE_512KB);
12553 break;
d3c7b886
MC
12554 }
12555}
12556
1b27777a
MC
12557static void __devinit tg3_get_5787_nvram_info(struct tg3 *tp)
12558{
12559 u32 nvcfg1;
12560
12561 nvcfg1 = tr32(NVRAM_CFG1);
12562
12563 switch (nvcfg1 & NVRAM_CFG1_5752VENDOR_MASK) {
8590a603
MC
12564 case FLASH_5787VENDOR_ATMEL_EEPROM_64KHZ:
12565 case FLASH_5787VENDOR_ATMEL_EEPROM_376KHZ:
12566 case FLASH_5787VENDOR_MICRO_EEPROM_64KHZ:
12567 case FLASH_5787VENDOR_MICRO_EEPROM_376KHZ:
12568 tp->nvram_jedecnum = JEDEC_ATMEL;
63c3a66f 12569 tg3_flag_set(tp, NVRAM_BUFFERED);
8590a603 12570 tp->nvram_pagesize = ATMEL_AT24C512_CHIP_SIZE;
1b27777a 12571
8590a603
MC
12572 nvcfg1 &= ~NVRAM_CFG1_COMPAT_BYPASS;
12573 tw32(NVRAM_CFG1, nvcfg1);
12574 break;
12575 case FLASH_5752VENDOR_ATMEL_FLASH_BUFFERED:
12576 case FLASH_5755VENDOR_ATMEL_FLASH_1:
12577 case FLASH_5755VENDOR_ATMEL_FLASH_2:
12578 case FLASH_5755VENDOR_ATMEL_FLASH_3:
12579 tp->nvram_jedecnum = JEDEC_ATMEL;
63c3a66f
JP
12580 tg3_flag_set(tp, NVRAM_BUFFERED);
12581 tg3_flag_set(tp, FLASH);
8590a603
MC
12582 tp->nvram_pagesize = 264;
12583 break;
12584 case FLASH_5752VENDOR_ST_M45PE10:
12585 case FLASH_5752VENDOR_ST_M45PE20:
12586 case FLASH_5752VENDOR_ST_M45PE40:
12587 tp->nvram_jedecnum = JEDEC_ST;
63c3a66f
JP
12588 tg3_flag_set(tp, NVRAM_BUFFERED);
12589 tg3_flag_set(tp, FLASH);
8590a603
MC
12590 tp->nvram_pagesize = 256;
12591 break;
1b27777a
MC
12592 }
12593}
12594
6b91fa02
MC
12595static void __devinit tg3_get_5761_nvram_info(struct tg3 *tp)
12596{
12597 u32 nvcfg1, protect = 0;
12598
12599 nvcfg1 = tr32(NVRAM_CFG1);
12600
12601 /* NVRAM protection for TPM */
12602 if (nvcfg1 & (1 << 27)) {
63c3a66f 12603 tg3_flag_set(tp, PROTECTED_NVRAM);
6b91fa02
MC
12604 protect = 1;
12605 }
12606
12607 nvcfg1 &= NVRAM_CFG1_5752VENDOR_MASK;
12608 switch (nvcfg1) {
8590a603
MC
12609 case FLASH_5761VENDOR_ATMEL_ADB021D:
12610 case FLASH_5761VENDOR_ATMEL_ADB041D:
12611 case FLASH_5761VENDOR_ATMEL_ADB081D:
12612 case FLASH_5761VENDOR_ATMEL_ADB161D:
12613 case FLASH_5761VENDOR_ATMEL_MDB021D:
12614 case FLASH_5761VENDOR_ATMEL_MDB041D:
12615 case FLASH_5761VENDOR_ATMEL_MDB081D:
12616 case FLASH_5761VENDOR_ATMEL_MDB161D:
12617 tp->nvram_jedecnum = JEDEC_ATMEL;
63c3a66f
JP
12618 tg3_flag_set(tp, NVRAM_BUFFERED);
12619 tg3_flag_set(tp, FLASH);
12620 tg3_flag_set(tp, NO_NVRAM_ADDR_TRANS);
8590a603
MC
12621 tp->nvram_pagesize = 256;
12622 break;
12623 case FLASH_5761VENDOR_ST_A_M45PE20:
12624 case FLASH_5761VENDOR_ST_A_M45PE40:
12625 case FLASH_5761VENDOR_ST_A_M45PE80:
12626 case FLASH_5761VENDOR_ST_A_M45PE16:
12627 case FLASH_5761VENDOR_ST_M_M45PE20:
12628 case FLASH_5761VENDOR_ST_M_M45PE40:
12629 case FLASH_5761VENDOR_ST_M_M45PE80:
12630 case FLASH_5761VENDOR_ST_M_M45PE16:
12631 tp->nvram_jedecnum = JEDEC_ST;
63c3a66f
JP
12632 tg3_flag_set(tp, NVRAM_BUFFERED);
12633 tg3_flag_set(tp, FLASH);
8590a603
MC
12634 tp->nvram_pagesize = 256;
12635 break;
6b91fa02
MC
12636 }
12637
12638 if (protect) {
12639 tp->nvram_size = tr32(NVRAM_ADDR_LOCKOUT);
12640 } else {
12641 switch (nvcfg1) {
8590a603
MC
12642 case FLASH_5761VENDOR_ATMEL_ADB161D:
12643 case FLASH_5761VENDOR_ATMEL_MDB161D:
12644 case FLASH_5761VENDOR_ST_A_M45PE16:
12645 case FLASH_5761VENDOR_ST_M_M45PE16:
12646 tp->nvram_size = TG3_NVRAM_SIZE_2MB;
12647 break;
12648 case FLASH_5761VENDOR_ATMEL_ADB081D:
12649 case FLASH_5761VENDOR_ATMEL_MDB081D:
12650 case FLASH_5761VENDOR_ST_A_M45PE80:
12651 case FLASH_5761VENDOR_ST_M_M45PE80:
12652 tp->nvram_size = TG3_NVRAM_SIZE_1MB;
12653 break;
12654 case FLASH_5761VENDOR_ATMEL_ADB041D:
12655 case FLASH_5761VENDOR_ATMEL_MDB041D:
12656 case FLASH_5761VENDOR_ST_A_M45PE40:
12657 case FLASH_5761VENDOR_ST_M_M45PE40:
12658 tp->nvram_size = TG3_NVRAM_SIZE_512KB;
12659 break;
12660 case FLASH_5761VENDOR_ATMEL_ADB021D:
12661 case FLASH_5761VENDOR_ATMEL_MDB021D:
12662 case FLASH_5761VENDOR_ST_A_M45PE20:
12663 case FLASH_5761VENDOR_ST_M_M45PE20:
12664 tp->nvram_size = TG3_NVRAM_SIZE_256KB;
12665 break;
6b91fa02
MC
12666 }
12667 }
12668}
12669
b5d3772c
MC
12670static void __devinit tg3_get_5906_nvram_info(struct tg3 *tp)
12671{
12672 tp->nvram_jedecnum = JEDEC_ATMEL;
63c3a66f 12673 tg3_flag_set(tp, NVRAM_BUFFERED);
b5d3772c
MC
12674 tp->nvram_pagesize = ATMEL_AT24C512_CHIP_SIZE;
12675}
12676
321d32a0
MC
12677static void __devinit tg3_get_57780_nvram_info(struct tg3 *tp)
12678{
12679 u32 nvcfg1;
12680
12681 nvcfg1 = tr32(NVRAM_CFG1);
12682
12683 switch (nvcfg1 & NVRAM_CFG1_5752VENDOR_MASK) {
12684 case FLASH_5787VENDOR_ATMEL_EEPROM_376KHZ:
12685 case FLASH_5787VENDOR_MICRO_EEPROM_376KHZ:
12686 tp->nvram_jedecnum = JEDEC_ATMEL;
63c3a66f 12687 tg3_flag_set(tp, NVRAM_BUFFERED);
321d32a0
MC
12688 tp->nvram_pagesize = ATMEL_AT24C512_CHIP_SIZE;
12689
12690 nvcfg1 &= ~NVRAM_CFG1_COMPAT_BYPASS;
12691 tw32(NVRAM_CFG1, nvcfg1);
12692 return;
12693 case FLASH_5752VENDOR_ATMEL_FLASH_BUFFERED:
12694 case FLASH_57780VENDOR_ATMEL_AT45DB011D:
12695 case FLASH_57780VENDOR_ATMEL_AT45DB011B:
12696 case FLASH_57780VENDOR_ATMEL_AT45DB021D:
12697 case FLASH_57780VENDOR_ATMEL_AT45DB021B:
12698 case FLASH_57780VENDOR_ATMEL_AT45DB041D:
12699 case FLASH_57780VENDOR_ATMEL_AT45DB041B:
12700 tp->nvram_jedecnum = JEDEC_ATMEL;
63c3a66f
JP
12701 tg3_flag_set(tp, NVRAM_BUFFERED);
12702 tg3_flag_set(tp, FLASH);
321d32a0
MC
12703
12704 switch (nvcfg1 & NVRAM_CFG1_5752VENDOR_MASK) {
12705 case FLASH_5752VENDOR_ATMEL_FLASH_BUFFERED:
12706 case FLASH_57780VENDOR_ATMEL_AT45DB011D:
12707 case FLASH_57780VENDOR_ATMEL_AT45DB011B:
12708 tp->nvram_size = TG3_NVRAM_SIZE_128KB;
12709 break;
12710 case FLASH_57780VENDOR_ATMEL_AT45DB021D:
12711 case FLASH_57780VENDOR_ATMEL_AT45DB021B:
12712 tp->nvram_size = TG3_NVRAM_SIZE_256KB;
12713 break;
12714 case FLASH_57780VENDOR_ATMEL_AT45DB041D:
12715 case FLASH_57780VENDOR_ATMEL_AT45DB041B:
12716 tp->nvram_size = TG3_NVRAM_SIZE_512KB;
12717 break;
12718 }
12719 break;
12720 case FLASH_5752VENDOR_ST_M45PE10:
12721 case FLASH_5752VENDOR_ST_M45PE20:
12722 case FLASH_5752VENDOR_ST_M45PE40:
12723 tp->nvram_jedecnum = JEDEC_ST;
63c3a66f
JP
12724 tg3_flag_set(tp, NVRAM_BUFFERED);
12725 tg3_flag_set(tp, FLASH);
321d32a0
MC
12726
12727 switch (nvcfg1 & NVRAM_CFG1_5752VENDOR_MASK) {
12728 case FLASH_5752VENDOR_ST_M45PE10:
12729 tp->nvram_size = TG3_NVRAM_SIZE_128KB;
12730 break;
12731 case FLASH_5752VENDOR_ST_M45PE20:
12732 tp->nvram_size = TG3_NVRAM_SIZE_256KB;
12733 break;
12734 case FLASH_5752VENDOR_ST_M45PE40:
12735 tp->nvram_size = TG3_NVRAM_SIZE_512KB;
12736 break;
12737 }
12738 break;
12739 default:
63c3a66f 12740 tg3_flag_set(tp, NO_NVRAM);
321d32a0
MC
12741 return;
12742 }
12743
a1b950d5
MC
12744 tg3_nvram_get_pagesize(tp, nvcfg1);
12745 if (tp->nvram_pagesize != 264 && tp->nvram_pagesize != 528)
63c3a66f 12746 tg3_flag_set(tp, NO_NVRAM_ADDR_TRANS);
a1b950d5
MC
12747}
12748
12749
12750static void __devinit tg3_get_5717_nvram_info(struct tg3 *tp)
12751{
12752 u32 nvcfg1;
12753
12754 nvcfg1 = tr32(NVRAM_CFG1);
12755
12756 switch (nvcfg1 & NVRAM_CFG1_5752VENDOR_MASK) {
12757 case FLASH_5717VENDOR_ATMEL_EEPROM:
12758 case FLASH_5717VENDOR_MICRO_EEPROM:
12759 tp->nvram_jedecnum = JEDEC_ATMEL;
63c3a66f 12760 tg3_flag_set(tp, NVRAM_BUFFERED);
a1b950d5
MC
12761 tp->nvram_pagesize = ATMEL_AT24C512_CHIP_SIZE;
12762
12763 nvcfg1 &= ~NVRAM_CFG1_COMPAT_BYPASS;
12764 tw32(NVRAM_CFG1, nvcfg1);
12765 return;
12766 case FLASH_5717VENDOR_ATMEL_MDB011D:
12767 case FLASH_5717VENDOR_ATMEL_ADB011B:
12768 case FLASH_5717VENDOR_ATMEL_ADB011D:
12769 case FLASH_5717VENDOR_ATMEL_MDB021D:
12770 case FLASH_5717VENDOR_ATMEL_ADB021B:
12771 case FLASH_5717VENDOR_ATMEL_ADB021D:
12772 case FLASH_5717VENDOR_ATMEL_45USPT:
12773 tp->nvram_jedecnum = JEDEC_ATMEL;
63c3a66f
JP
12774 tg3_flag_set(tp, NVRAM_BUFFERED);
12775 tg3_flag_set(tp, FLASH);
a1b950d5
MC
12776
12777 switch (nvcfg1 & NVRAM_CFG1_5752VENDOR_MASK) {
12778 case FLASH_5717VENDOR_ATMEL_MDB021D:
66ee33bf
MC
12779 /* Detect size with tg3_nvram_get_size() */
12780 break;
a1b950d5
MC
12781 case FLASH_5717VENDOR_ATMEL_ADB021B:
12782 case FLASH_5717VENDOR_ATMEL_ADB021D:
12783 tp->nvram_size = TG3_NVRAM_SIZE_256KB;
12784 break;
12785 default:
12786 tp->nvram_size = TG3_NVRAM_SIZE_128KB;
12787 break;
12788 }
321d32a0 12789 break;
a1b950d5
MC
12790 case FLASH_5717VENDOR_ST_M_M25PE10:
12791 case FLASH_5717VENDOR_ST_A_M25PE10:
12792 case FLASH_5717VENDOR_ST_M_M45PE10:
12793 case FLASH_5717VENDOR_ST_A_M45PE10:
12794 case FLASH_5717VENDOR_ST_M_M25PE20:
12795 case FLASH_5717VENDOR_ST_A_M25PE20:
12796 case FLASH_5717VENDOR_ST_M_M45PE20:
12797 case FLASH_5717VENDOR_ST_A_M45PE20:
12798 case FLASH_5717VENDOR_ST_25USPT:
12799 case FLASH_5717VENDOR_ST_45USPT:
12800 tp->nvram_jedecnum = JEDEC_ST;
63c3a66f
JP
12801 tg3_flag_set(tp, NVRAM_BUFFERED);
12802 tg3_flag_set(tp, FLASH);
a1b950d5
MC
12803
12804 switch (nvcfg1 & NVRAM_CFG1_5752VENDOR_MASK) {
12805 case FLASH_5717VENDOR_ST_M_M25PE20:
a1b950d5 12806 case FLASH_5717VENDOR_ST_M_M45PE20:
66ee33bf
MC
12807 /* Detect size with tg3_nvram_get_size() */
12808 break;
12809 case FLASH_5717VENDOR_ST_A_M25PE20:
a1b950d5
MC
12810 case FLASH_5717VENDOR_ST_A_M45PE20:
12811 tp->nvram_size = TG3_NVRAM_SIZE_256KB;
12812 break;
12813 default:
12814 tp->nvram_size = TG3_NVRAM_SIZE_128KB;
12815 break;
12816 }
321d32a0 12817 break;
a1b950d5 12818 default:
63c3a66f 12819 tg3_flag_set(tp, NO_NVRAM);
a1b950d5 12820 return;
321d32a0 12821 }
a1b950d5
MC
12822
12823 tg3_nvram_get_pagesize(tp, nvcfg1);
12824 if (tp->nvram_pagesize != 264 && tp->nvram_pagesize != 528)
63c3a66f 12825 tg3_flag_set(tp, NO_NVRAM_ADDR_TRANS);
321d32a0
MC
12826}
12827
9b91b5f1
MC
12828static void __devinit tg3_get_5720_nvram_info(struct tg3 *tp)
12829{
12830 u32 nvcfg1, nvmpinstrp;
12831
12832 nvcfg1 = tr32(NVRAM_CFG1);
12833 nvmpinstrp = nvcfg1 & NVRAM_CFG1_5752VENDOR_MASK;
12834
12835 switch (nvmpinstrp) {
12836 case FLASH_5720_EEPROM_HD:
12837 case FLASH_5720_EEPROM_LD:
12838 tp->nvram_jedecnum = JEDEC_ATMEL;
63c3a66f 12839 tg3_flag_set(tp, NVRAM_BUFFERED);
9b91b5f1
MC
12840
12841 nvcfg1 &= ~NVRAM_CFG1_COMPAT_BYPASS;
12842 tw32(NVRAM_CFG1, nvcfg1);
12843 if (nvmpinstrp == FLASH_5720_EEPROM_HD)
12844 tp->nvram_pagesize = ATMEL_AT24C512_CHIP_SIZE;
12845 else
12846 tp->nvram_pagesize = ATMEL_AT24C02_CHIP_SIZE;
12847 return;
12848 case FLASH_5720VENDOR_M_ATMEL_DB011D:
12849 case FLASH_5720VENDOR_A_ATMEL_DB011B:
12850 case FLASH_5720VENDOR_A_ATMEL_DB011D:
12851 case FLASH_5720VENDOR_M_ATMEL_DB021D:
12852 case FLASH_5720VENDOR_A_ATMEL_DB021B:
12853 case FLASH_5720VENDOR_A_ATMEL_DB021D:
12854 case FLASH_5720VENDOR_M_ATMEL_DB041D:
12855 case FLASH_5720VENDOR_A_ATMEL_DB041B:
12856 case FLASH_5720VENDOR_A_ATMEL_DB041D:
12857 case FLASH_5720VENDOR_M_ATMEL_DB081D:
12858 case FLASH_5720VENDOR_A_ATMEL_DB081D:
12859 case FLASH_5720VENDOR_ATMEL_45USPT:
12860 tp->nvram_jedecnum = JEDEC_ATMEL;
63c3a66f
JP
12861 tg3_flag_set(tp, NVRAM_BUFFERED);
12862 tg3_flag_set(tp, FLASH);
9b91b5f1
MC
12863
12864 switch (nvmpinstrp) {
12865 case FLASH_5720VENDOR_M_ATMEL_DB021D:
12866 case FLASH_5720VENDOR_A_ATMEL_DB021B:
12867 case FLASH_5720VENDOR_A_ATMEL_DB021D:
12868 tp->nvram_size = TG3_NVRAM_SIZE_256KB;
12869 break;
12870 case FLASH_5720VENDOR_M_ATMEL_DB041D:
12871 case FLASH_5720VENDOR_A_ATMEL_DB041B:
12872 case FLASH_5720VENDOR_A_ATMEL_DB041D:
12873 tp->nvram_size = TG3_NVRAM_SIZE_512KB;
12874 break;
12875 case FLASH_5720VENDOR_M_ATMEL_DB081D:
12876 case FLASH_5720VENDOR_A_ATMEL_DB081D:
12877 tp->nvram_size = TG3_NVRAM_SIZE_1MB;
12878 break;
12879 default:
12880 tp->nvram_size = TG3_NVRAM_SIZE_128KB;
12881 break;
12882 }
12883 break;
12884 case FLASH_5720VENDOR_M_ST_M25PE10:
12885 case FLASH_5720VENDOR_M_ST_M45PE10:
12886 case FLASH_5720VENDOR_A_ST_M25PE10:
12887 case FLASH_5720VENDOR_A_ST_M45PE10:
12888 case FLASH_5720VENDOR_M_ST_M25PE20:
12889 case FLASH_5720VENDOR_M_ST_M45PE20:
12890 case FLASH_5720VENDOR_A_ST_M25PE20:
12891 case FLASH_5720VENDOR_A_ST_M45PE20:
12892 case FLASH_5720VENDOR_M_ST_M25PE40:
12893 case FLASH_5720VENDOR_M_ST_M45PE40:
12894 case FLASH_5720VENDOR_A_ST_M25PE40:
12895 case FLASH_5720VENDOR_A_ST_M45PE40:
12896 case FLASH_5720VENDOR_M_ST_M25PE80:
12897 case FLASH_5720VENDOR_M_ST_M45PE80:
12898 case FLASH_5720VENDOR_A_ST_M25PE80:
12899 case FLASH_5720VENDOR_A_ST_M45PE80:
12900 case FLASH_5720VENDOR_ST_25USPT:
12901 case FLASH_5720VENDOR_ST_45USPT:
12902 tp->nvram_jedecnum = JEDEC_ST;
63c3a66f
JP
12903 tg3_flag_set(tp, NVRAM_BUFFERED);
12904 tg3_flag_set(tp, FLASH);
9b91b5f1
MC
12905
12906 switch (nvmpinstrp) {
12907 case FLASH_5720VENDOR_M_ST_M25PE20:
12908 case FLASH_5720VENDOR_M_ST_M45PE20:
12909 case FLASH_5720VENDOR_A_ST_M25PE20:
12910 case FLASH_5720VENDOR_A_ST_M45PE20:
12911 tp->nvram_size = TG3_NVRAM_SIZE_256KB;
12912 break;
12913 case FLASH_5720VENDOR_M_ST_M25PE40:
12914 case FLASH_5720VENDOR_M_ST_M45PE40:
12915 case FLASH_5720VENDOR_A_ST_M25PE40:
12916 case FLASH_5720VENDOR_A_ST_M45PE40:
12917 tp->nvram_size = TG3_NVRAM_SIZE_512KB;
12918 break;
12919 case FLASH_5720VENDOR_M_ST_M25PE80:
12920 case FLASH_5720VENDOR_M_ST_M45PE80:
12921 case FLASH_5720VENDOR_A_ST_M25PE80:
12922 case FLASH_5720VENDOR_A_ST_M45PE80:
12923 tp->nvram_size = TG3_NVRAM_SIZE_1MB;
12924 break;
12925 default:
12926 tp->nvram_size = TG3_NVRAM_SIZE_128KB;
12927 break;
12928 }
12929 break;
12930 default:
63c3a66f 12931 tg3_flag_set(tp, NO_NVRAM);
9b91b5f1
MC
12932 return;
12933 }
12934
12935 tg3_nvram_get_pagesize(tp, nvcfg1);
12936 if (tp->nvram_pagesize != 264 && tp->nvram_pagesize != 528)
63c3a66f 12937 tg3_flag_set(tp, NO_NVRAM_ADDR_TRANS);
9b91b5f1
MC
12938}
12939
1da177e4
LT
12940/* Chips other than 5700/5701 use the NVRAM for fetching info. */
12941static void __devinit tg3_nvram_init(struct tg3 *tp)
12942{
1da177e4
LT
12943 tw32_f(GRC_EEPROM_ADDR,
12944 (EEPROM_ADDR_FSM_RESET |
12945 (EEPROM_DEFAULT_CLOCK_PERIOD <<
12946 EEPROM_ADDR_CLKPERD_SHIFT)));
12947
9d57f01c 12948 msleep(1);
1da177e4
LT
12949
12950 /* Enable seeprom accesses. */
12951 tw32_f(GRC_LOCAL_CTRL,
12952 tr32(GRC_LOCAL_CTRL) | GRC_LCLCTRL_AUTO_SEEPROM);
12953 udelay(100);
12954
12955 if (GET_ASIC_REV(tp->pci_chip_rev_id) != ASIC_REV_5700 &&
12956 GET_ASIC_REV(tp->pci_chip_rev_id) != ASIC_REV_5701) {
63c3a66f 12957 tg3_flag_set(tp, NVRAM);
1da177e4 12958
ec41c7df 12959 if (tg3_nvram_lock(tp)) {
5129c3a3
MC
12960 netdev_warn(tp->dev,
12961 "Cannot get nvram lock, %s failed\n",
05dbe005 12962 __func__);
ec41c7df
MC
12963 return;
12964 }
e6af301b 12965 tg3_enable_nvram_access(tp);
1da177e4 12966
989a9d23
MC
12967 tp->nvram_size = 0;
12968
361b4ac2
MC
12969 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5752)
12970 tg3_get_5752_nvram_info(tp);
d3c7b886
MC
12971 else if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5755)
12972 tg3_get_5755_nvram_info(tp);
d30cdd28 12973 else if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5787 ||
57e6983c
MC
12974 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5784 ||
12975 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5785)
1b27777a 12976 tg3_get_5787_nvram_info(tp);
6b91fa02
MC
12977 else if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5761)
12978 tg3_get_5761_nvram_info(tp);
b5d3772c
MC
12979 else if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5906)
12980 tg3_get_5906_nvram_info(tp);
b703df6f 12981 else if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_57780 ||
55086ad9 12982 tg3_flag(tp, 57765_CLASS))
321d32a0 12983 tg3_get_57780_nvram_info(tp);
9b91b5f1
MC
12984 else if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5717 ||
12985 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5719)
a1b950d5 12986 tg3_get_5717_nvram_info(tp);
9b91b5f1
MC
12987 else if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5720)
12988 tg3_get_5720_nvram_info(tp);
361b4ac2
MC
12989 else
12990 tg3_get_nvram_info(tp);
12991
989a9d23
MC
12992 if (tp->nvram_size == 0)
12993 tg3_get_nvram_size(tp);
1da177e4 12994
e6af301b 12995 tg3_disable_nvram_access(tp);
381291b7 12996 tg3_nvram_unlock(tp);
1da177e4
LT
12997
12998 } else {
63c3a66f
JP
12999 tg3_flag_clear(tp, NVRAM);
13000 tg3_flag_clear(tp, NVRAM_BUFFERED);
1da177e4
LT
13001
13002 tg3_get_eeprom_size(tp);
13003 }
13004}
13005
1da177e4
LT
13006struct subsys_tbl_ent {
13007 u16 subsys_vendor, subsys_devid;
13008 u32 phy_id;
13009};
13010
24daf2b0 13011static struct subsys_tbl_ent subsys_id_to_phy_id[] __devinitdata = {
1da177e4 13012 /* Broadcom boards. */
24daf2b0 13013 { TG3PCI_SUBVENDOR_ID_BROADCOM,
79eb6904 13014 TG3PCI_SUBDEVICE_ID_BROADCOM_95700A6, TG3_PHY_ID_BCM5401 },
24daf2b0 13015 { TG3PCI_SUBVENDOR_ID_BROADCOM,
79eb6904 13016 TG3PCI_SUBDEVICE_ID_BROADCOM_95701A5, TG3_PHY_ID_BCM5701 },
24daf2b0 13017 { TG3PCI_SUBVENDOR_ID_BROADCOM,
79eb6904 13018 TG3PCI_SUBDEVICE_ID_BROADCOM_95700T6, TG3_PHY_ID_BCM8002 },
24daf2b0
MC
13019 { TG3PCI_SUBVENDOR_ID_BROADCOM,
13020 TG3PCI_SUBDEVICE_ID_BROADCOM_95700A9, 0 },
13021 { TG3PCI_SUBVENDOR_ID_BROADCOM,
79eb6904 13022 TG3PCI_SUBDEVICE_ID_BROADCOM_95701T1, TG3_PHY_ID_BCM5701 },
24daf2b0 13023 { TG3PCI_SUBVENDOR_ID_BROADCOM,
79eb6904 13024 TG3PCI_SUBDEVICE_ID_BROADCOM_95701T8, TG3_PHY_ID_BCM5701 },
24daf2b0
MC
13025 { TG3PCI_SUBVENDOR_ID_BROADCOM,
13026 TG3PCI_SUBDEVICE_ID_BROADCOM_95701A7, 0 },
13027 { TG3PCI_SUBVENDOR_ID_BROADCOM,
79eb6904 13028 TG3PCI_SUBDEVICE_ID_BROADCOM_95701A10, TG3_PHY_ID_BCM5701 },
24daf2b0 13029 { TG3PCI_SUBVENDOR_ID_BROADCOM,
79eb6904 13030 TG3PCI_SUBDEVICE_ID_BROADCOM_95701A12, TG3_PHY_ID_BCM5701 },
24daf2b0 13031 { TG3PCI_SUBVENDOR_ID_BROADCOM,
79eb6904 13032 TG3PCI_SUBDEVICE_ID_BROADCOM_95703AX1, TG3_PHY_ID_BCM5703 },
24daf2b0 13033 { TG3PCI_SUBVENDOR_ID_BROADCOM,
79eb6904 13034 TG3PCI_SUBDEVICE_ID_BROADCOM_95703AX2, TG3_PHY_ID_BCM5703 },
1da177e4
LT
13035
13036 /* 3com boards. */
24daf2b0 13037 { TG3PCI_SUBVENDOR_ID_3COM,
79eb6904 13038 TG3PCI_SUBDEVICE_ID_3COM_3C996T, TG3_PHY_ID_BCM5401 },
24daf2b0 13039 { TG3PCI_SUBVENDOR_ID_3COM,
79eb6904 13040 TG3PCI_SUBDEVICE_ID_3COM_3C996BT, TG3_PHY_ID_BCM5701 },
24daf2b0
MC
13041 { TG3PCI_SUBVENDOR_ID_3COM,
13042 TG3PCI_SUBDEVICE_ID_3COM_3C996SX, 0 },
13043 { TG3PCI_SUBVENDOR_ID_3COM,
79eb6904 13044 TG3PCI_SUBDEVICE_ID_3COM_3C1000T, TG3_PHY_ID_BCM5701 },
24daf2b0 13045 { TG3PCI_SUBVENDOR_ID_3COM,
79eb6904 13046 TG3PCI_SUBDEVICE_ID_3COM_3C940BR01, TG3_PHY_ID_BCM5701 },
1da177e4
LT
13047
13048 /* DELL boards. */
24daf2b0 13049 { TG3PCI_SUBVENDOR_ID_DELL,
79eb6904 13050 TG3PCI_SUBDEVICE_ID_DELL_VIPER, TG3_PHY_ID_BCM5401 },
24daf2b0 13051 { TG3PCI_SUBVENDOR_ID_DELL,
79eb6904 13052 TG3PCI_SUBDEVICE_ID_DELL_JAGUAR, TG3_PHY_ID_BCM5401 },
24daf2b0 13053 { TG3PCI_SUBVENDOR_ID_DELL,
79eb6904 13054 TG3PCI_SUBDEVICE_ID_DELL_MERLOT, TG3_PHY_ID_BCM5411 },
24daf2b0 13055 { TG3PCI_SUBVENDOR_ID_DELL,
79eb6904 13056 TG3PCI_SUBDEVICE_ID_DELL_SLIM_MERLOT, TG3_PHY_ID_BCM5411 },
1da177e4
LT
13057
13058 /* Compaq boards. */
24daf2b0 13059 { TG3PCI_SUBVENDOR_ID_COMPAQ,
79eb6904 13060 TG3PCI_SUBDEVICE_ID_COMPAQ_BANSHEE, TG3_PHY_ID_BCM5701 },
24daf2b0 13061 { TG3PCI_SUBVENDOR_ID_COMPAQ,
79eb6904 13062 TG3PCI_SUBDEVICE_ID_COMPAQ_BANSHEE_2, TG3_PHY_ID_BCM5701 },
24daf2b0
MC
13063 { TG3PCI_SUBVENDOR_ID_COMPAQ,
13064 TG3PCI_SUBDEVICE_ID_COMPAQ_CHANGELING, 0 },
13065 { TG3PCI_SUBVENDOR_ID_COMPAQ,
79eb6904 13066 TG3PCI_SUBDEVICE_ID_COMPAQ_NC7780, TG3_PHY_ID_BCM5701 },
24daf2b0 13067 { TG3PCI_SUBVENDOR_ID_COMPAQ,
79eb6904 13068 TG3PCI_SUBDEVICE_ID_COMPAQ_NC7780_2, TG3_PHY_ID_BCM5701 },
1da177e4
LT
13069
13070 /* IBM boards. */
24daf2b0
MC
13071 { TG3PCI_SUBVENDOR_ID_IBM,
13072 TG3PCI_SUBDEVICE_ID_IBM_5703SAX2, 0 }
1da177e4
LT
13073};
13074
24daf2b0 13075static struct subsys_tbl_ent * __devinit tg3_lookup_by_subsys(struct tg3 *tp)
1da177e4
LT
13076{
13077 int i;
13078
13079 for (i = 0; i < ARRAY_SIZE(subsys_id_to_phy_id); i++) {
13080 if ((subsys_id_to_phy_id[i].subsys_vendor ==
13081 tp->pdev->subsystem_vendor) &&
13082 (subsys_id_to_phy_id[i].subsys_devid ==
13083 tp->pdev->subsystem_device))
13084 return &subsys_id_to_phy_id[i];
13085 }
13086 return NULL;
13087}
13088
7d0c41ef 13089static void __devinit tg3_get_eeprom_hw_cfg(struct tg3 *tp)
1da177e4 13090{
1da177e4 13091 u32 val;
f49639e6 13092
79eb6904 13093 tp->phy_id = TG3_PHY_ID_INVALID;
7d0c41ef
MC
13094 tp->led_ctrl = LED_CTRL_MODE_PHY_1;
13095
a85feb8c 13096 /* Assume an onboard device and WOL capable by default. */
63c3a66f
JP
13097 tg3_flag_set(tp, EEPROM_WRITE_PROT);
13098 tg3_flag_set(tp, WOL_CAP);
72b845e0 13099
b5d3772c 13100 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5906) {
9d26e213 13101 if (!(tr32(PCIE_TRANSACTION_CFG) & PCIE_TRANS_CFG_LOM)) {
63c3a66f
JP
13102 tg3_flag_clear(tp, EEPROM_WRITE_PROT);
13103 tg3_flag_set(tp, IS_NIC);
9d26e213 13104 }
0527ba35
MC
13105 val = tr32(VCPU_CFGSHDW);
13106 if (val & VCPU_CFGSHDW_ASPM_DBNC)
63c3a66f 13107 tg3_flag_set(tp, ASPM_WORKAROUND);
0527ba35 13108 if ((val & VCPU_CFGSHDW_WOL_ENABLE) &&
6fdbab9d 13109 (val & VCPU_CFGSHDW_WOL_MAGPKT)) {
63c3a66f 13110 tg3_flag_set(tp, WOL_ENABLE);
6fdbab9d
RW
13111 device_set_wakeup_enable(&tp->pdev->dev, true);
13112 }
05ac4cb7 13113 goto done;
b5d3772c
MC
13114 }
13115
1da177e4
LT
13116 tg3_read_mem(tp, NIC_SRAM_DATA_SIG, &val);
13117 if (val == NIC_SRAM_DATA_SIG_MAGIC) {
13118 u32 nic_cfg, led_cfg;
a9daf367 13119 u32 nic_phy_id, ver, cfg2 = 0, cfg4 = 0, eeprom_phy_id;
7d0c41ef 13120 int eeprom_phy_serdes = 0;
1da177e4
LT
13121
13122 tg3_read_mem(tp, NIC_SRAM_DATA_CFG, &nic_cfg);
13123 tp->nic_sram_data_cfg = nic_cfg;
13124
13125 tg3_read_mem(tp, NIC_SRAM_DATA_VER, &ver);
13126 ver >>= NIC_SRAM_DATA_VER_SHIFT;
6ff6f81d
MC
13127 if (GET_ASIC_REV(tp->pci_chip_rev_id) != ASIC_REV_5700 &&
13128 GET_ASIC_REV(tp->pci_chip_rev_id) != ASIC_REV_5701 &&
13129 GET_ASIC_REV(tp->pci_chip_rev_id) != ASIC_REV_5703 &&
1da177e4
LT
13130 (ver > 0) && (ver < 0x100))
13131 tg3_read_mem(tp, NIC_SRAM_DATA_CFG_2, &cfg2);
13132
a9daf367
MC
13133 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5785)
13134 tg3_read_mem(tp, NIC_SRAM_DATA_CFG_4, &cfg4);
13135
1da177e4
LT
13136 if ((nic_cfg & NIC_SRAM_DATA_CFG_PHY_TYPE_MASK) ==
13137 NIC_SRAM_DATA_CFG_PHY_TYPE_FIBER)
13138 eeprom_phy_serdes = 1;
13139
13140 tg3_read_mem(tp, NIC_SRAM_DATA_PHY_ID, &nic_phy_id);
13141 if (nic_phy_id != 0) {
13142 u32 id1 = nic_phy_id & NIC_SRAM_DATA_PHY_ID1_MASK;
13143 u32 id2 = nic_phy_id & NIC_SRAM_DATA_PHY_ID2_MASK;
13144
13145 eeprom_phy_id = (id1 >> 16) << 10;
13146 eeprom_phy_id |= (id2 & 0xfc00) << 16;
13147 eeprom_phy_id |= (id2 & 0x03ff) << 0;
13148 } else
13149 eeprom_phy_id = 0;
13150
7d0c41ef 13151 tp->phy_id = eeprom_phy_id;
747e8f8b 13152 if (eeprom_phy_serdes) {
63c3a66f 13153 if (!tg3_flag(tp, 5705_PLUS))
f07e9af3 13154 tp->phy_flags |= TG3_PHYFLG_PHY_SERDES;
a50d0796 13155 else
f07e9af3 13156 tp->phy_flags |= TG3_PHYFLG_MII_SERDES;
747e8f8b 13157 }
7d0c41ef 13158
63c3a66f 13159 if (tg3_flag(tp, 5750_PLUS))
1da177e4
LT
13160 led_cfg = cfg2 & (NIC_SRAM_DATA_CFG_LED_MODE_MASK |
13161 SHASTA_EXT_LED_MODE_MASK);
cbf46853 13162 else
1da177e4
LT
13163 led_cfg = nic_cfg & NIC_SRAM_DATA_CFG_LED_MODE_MASK;
13164
13165 switch (led_cfg) {
13166 default:
13167 case NIC_SRAM_DATA_CFG_LED_MODE_PHY_1:
13168 tp->led_ctrl = LED_CTRL_MODE_PHY_1;
13169 break;
13170
13171 case NIC_SRAM_DATA_CFG_LED_MODE_PHY_2:
13172 tp->led_ctrl = LED_CTRL_MODE_PHY_2;
13173 break;
13174
13175 case NIC_SRAM_DATA_CFG_LED_MODE_MAC:
13176 tp->led_ctrl = LED_CTRL_MODE_MAC;
9ba27794
MC
13177
13178 /* Default to PHY_1_MODE if 0 (MAC_MODE) is
13179 * read on some older 5700/5701 bootcode.
13180 */
13181 if (GET_ASIC_REV(tp->pci_chip_rev_id) ==
13182 ASIC_REV_5700 ||
13183 GET_ASIC_REV(tp->pci_chip_rev_id) ==
13184 ASIC_REV_5701)
13185 tp->led_ctrl = LED_CTRL_MODE_PHY_1;
13186
1da177e4
LT
13187 break;
13188
13189 case SHASTA_EXT_LED_SHARED:
13190 tp->led_ctrl = LED_CTRL_MODE_SHARED;
13191 if (tp->pci_chip_rev_id != CHIPREV_ID_5750_A0 &&
13192 tp->pci_chip_rev_id != CHIPREV_ID_5750_A1)
13193 tp->led_ctrl |= (LED_CTRL_MODE_PHY_1 |
13194 LED_CTRL_MODE_PHY_2);
13195 break;
13196
13197 case SHASTA_EXT_LED_MAC:
13198 tp->led_ctrl = LED_CTRL_MODE_SHASTA_MAC;
13199 break;
13200
13201 case SHASTA_EXT_LED_COMBO:
13202 tp->led_ctrl = LED_CTRL_MODE_COMBO;
13203 if (tp->pci_chip_rev_id != CHIPREV_ID_5750_A0)
13204 tp->led_ctrl |= (LED_CTRL_MODE_PHY_1 |
13205 LED_CTRL_MODE_PHY_2);
13206 break;
13207
855e1111 13208 }
1da177e4
LT
13209
13210 if ((GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5700 ||
13211 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5701) &&
13212 tp->pdev->subsystem_vendor == PCI_VENDOR_ID_DELL)
13213 tp->led_ctrl = LED_CTRL_MODE_PHY_2;
13214
b2a5c19c
MC
13215 if (GET_CHIP_REV(tp->pci_chip_rev_id) == CHIPREV_5784_AX)
13216 tp->led_ctrl = LED_CTRL_MODE_PHY_1;
5f60891b 13217
9d26e213 13218 if (nic_cfg & NIC_SRAM_DATA_CFG_EEPROM_WP) {
63c3a66f 13219 tg3_flag_set(tp, EEPROM_WRITE_PROT);
9d26e213
MC
13220 if ((tp->pdev->subsystem_vendor ==
13221 PCI_VENDOR_ID_ARIMA) &&
13222 (tp->pdev->subsystem_device == 0x205a ||
13223 tp->pdev->subsystem_device == 0x2063))
63c3a66f 13224 tg3_flag_clear(tp, EEPROM_WRITE_PROT);
9d26e213 13225 } else {
63c3a66f
JP
13226 tg3_flag_clear(tp, EEPROM_WRITE_PROT);
13227 tg3_flag_set(tp, IS_NIC);
9d26e213 13228 }
1da177e4
LT
13229
13230 if (nic_cfg & NIC_SRAM_DATA_CFG_ASF_ENABLE) {
63c3a66f
JP
13231 tg3_flag_set(tp, ENABLE_ASF);
13232 if (tg3_flag(tp, 5750_PLUS))
13233 tg3_flag_set(tp, ASF_NEW_HANDSHAKE);
1da177e4 13234 }
b2b98d4a
MC
13235
13236 if ((nic_cfg & NIC_SRAM_DATA_CFG_APE_ENABLE) &&
63c3a66f
JP
13237 tg3_flag(tp, 5750_PLUS))
13238 tg3_flag_set(tp, ENABLE_APE);
b2b98d4a 13239
f07e9af3 13240 if (tp->phy_flags & TG3_PHYFLG_ANY_SERDES &&
a85feb8c 13241 !(nic_cfg & NIC_SRAM_DATA_CFG_FIBER_WOL))
63c3a66f 13242 tg3_flag_clear(tp, WOL_CAP);
1da177e4 13243
63c3a66f 13244 if (tg3_flag(tp, WOL_CAP) &&
6fdbab9d 13245 (nic_cfg & NIC_SRAM_DATA_CFG_WOL_ENABLE)) {
63c3a66f 13246 tg3_flag_set(tp, WOL_ENABLE);
6fdbab9d
RW
13247 device_set_wakeup_enable(&tp->pdev->dev, true);
13248 }
0527ba35 13249
1da177e4 13250 if (cfg2 & (1 << 17))
f07e9af3 13251 tp->phy_flags |= TG3_PHYFLG_CAPACITIVE_COUPLING;
1da177e4
LT
13252
13253 /* serdes signal pre-emphasis in register 0x590 set by */
13254 /* bootcode if bit 18 is set */
13255 if (cfg2 & (1 << 18))
f07e9af3 13256 tp->phy_flags |= TG3_PHYFLG_SERDES_PREEMPHASIS;
8ed5d97e 13257
63c3a66f
JP
13258 if ((tg3_flag(tp, 57765_PLUS) ||
13259 (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5784 &&
13260 GET_CHIP_REV(tp->pci_chip_rev_id) != CHIPREV_5784_AX)) &&
6833c043 13261 (cfg2 & NIC_SRAM_DATA_CFG_2_APD_EN))
f07e9af3 13262 tp->phy_flags |= TG3_PHYFLG_ENABLE_APD;
6833c043 13263
63c3a66f 13264 if (tg3_flag(tp, PCI_EXPRESS) &&
8c69b1e7 13265 GET_ASIC_REV(tp->pci_chip_rev_id) != ASIC_REV_5785 &&
63c3a66f 13266 !tg3_flag(tp, 57765_PLUS)) {
8ed5d97e
MC
13267 u32 cfg3;
13268
13269 tg3_read_mem(tp, NIC_SRAM_DATA_CFG_3, &cfg3);
13270 if (cfg3 & NIC_SRAM_ASPM_DEBOUNCE)
63c3a66f 13271 tg3_flag_set(tp, ASPM_WORKAROUND);
8ed5d97e 13272 }
a9daf367 13273
14417063 13274 if (cfg4 & NIC_SRAM_RGMII_INBAND_DISABLE)
63c3a66f 13275 tg3_flag_set(tp, RGMII_INBAND_DISABLE);
a9daf367 13276 if (cfg4 & NIC_SRAM_RGMII_EXT_IBND_RX_EN)
63c3a66f 13277 tg3_flag_set(tp, RGMII_EXT_IBND_RX_EN);
a9daf367 13278 if (cfg4 & NIC_SRAM_RGMII_EXT_IBND_TX_EN)
63c3a66f 13279 tg3_flag_set(tp, RGMII_EXT_IBND_TX_EN);
1da177e4 13280 }
05ac4cb7 13281done:
63c3a66f 13282 if (tg3_flag(tp, WOL_CAP))
43067ed8 13283 device_set_wakeup_enable(&tp->pdev->dev,
63c3a66f 13284 tg3_flag(tp, WOL_ENABLE));
43067ed8
RW
13285 else
13286 device_set_wakeup_capable(&tp->pdev->dev, false);
7d0c41ef
MC
13287}
13288
b2a5c19c
MC
13289static int __devinit tg3_issue_otp_command(struct tg3 *tp, u32 cmd)
13290{
13291 int i;
13292 u32 val;
13293
13294 tw32(OTP_CTRL, cmd | OTP_CTRL_OTP_CMD_START);
13295 tw32(OTP_CTRL, cmd);
13296
13297 /* Wait for up to 1 ms for command to execute. */
13298 for (i = 0; i < 100; i++) {
13299 val = tr32(OTP_STATUS);
13300 if (val & OTP_STATUS_CMD_DONE)
13301 break;
13302 udelay(10);
13303 }
13304
13305 return (val & OTP_STATUS_CMD_DONE) ? 0 : -EBUSY;
13306}
13307
13308/* Read the gphy configuration from the OTP region of the chip. The gphy
13309 * configuration is a 32-bit value that straddles the alignment boundary.
13310 * We do two 32-bit reads and then shift and merge the results.
13311 */
13312static u32 __devinit tg3_read_otp_phycfg(struct tg3 *tp)
13313{
13314 u32 bhalf_otp, thalf_otp;
13315
13316 tw32(OTP_MODE, OTP_MODE_OTP_THRU_GRC);
13317
13318 if (tg3_issue_otp_command(tp, OTP_CTRL_OTP_CMD_INIT))
13319 return 0;
13320
13321 tw32(OTP_ADDRESS, OTP_ADDRESS_MAGIC1);
13322
13323 if (tg3_issue_otp_command(tp, OTP_CTRL_OTP_CMD_READ))
13324 return 0;
13325
13326 thalf_otp = tr32(OTP_READ_DATA);
13327
13328 tw32(OTP_ADDRESS, OTP_ADDRESS_MAGIC2);
13329
13330 if (tg3_issue_otp_command(tp, OTP_CTRL_OTP_CMD_READ))
13331 return 0;
13332
13333 bhalf_otp = tr32(OTP_READ_DATA);
13334
13335 return ((thalf_otp & 0x0000ffff) << 16) | (bhalf_otp >> 16);
13336}
13337
e256f8a3
MC
13338static void __devinit tg3_phy_init_link_config(struct tg3 *tp)
13339{
202ff1c2 13340 u32 adv = ADVERTISED_Autoneg;
e256f8a3
MC
13341
13342 if (!(tp->phy_flags & TG3_PHYFLG_10_100_ONLY))
13343 adv |= ADVERTISED_1000baseT_Half |
13344 ADVERTISED_1000baseT_Full;
13345
13346 if (!(tp->phy_flags & TG3_PHYFLG_ANY_SERDES))
13347 adv |= ADVERTISED_100baseT_Half |
13348 ADVERTISED_100baseT_Full |
13349 ADVERTISED_10baseT_Half |
13350 ADVERTISED_10baseT_Full |
13351 ADVERTISED_TP;
13352 else
13353 adv |= ADVERTISED_FIBRE;
13354
13355 tp->link_config.advertising = adv;
e740522e
MC
13356 tp->link_config.speed = SPEED_UNKNOWN;
13357 tp->link_config.duplex = DUPLEX_UNKNOWN;
e256f8a3 13358 tp->link_config.autoneg = AUTONEG_ENABLE;
e740522e
MC
13359 tp->link_config.active_speed = SPEED_UNKNOWN;
13360 tp->link_config.active_duplex = DUPLEX_UNKNOWN;
34655ad6
MC
13361
13362 tp->old_link = -1;
e256f8a3
MC
13363}
13364
7d0c41ef
MC
13365static int __devinit tg3_phy_probe(struct tg3 *tp)
13366{
13367 u32 hw_phy_id_1, hw_phy_id_2;
13368 u32 hw_phy_id, hw_phy_id_masked;
13369 int err;
1da177e4 13370
e256f8a3 13371 /* flow control autonegotiation is default behavior */
63c3a66f 13372 tg3_flag_set(tp, PAUSE_AUTONEG);
e256f8a3
MC
13373 tp->link_config.flowctrl = FLOW_CTRL_TX | FLOW_CTRL_RX;
13374
63c3a66f 13375 if (tg3_flag(tp, USE_PHYLIB))
b02fd9e3
MC
13376 return tg3_phy_init(tp);
13377
1da177e4 13378 /* Reading the PHY ID register can conflict with ASF
877d0310 13379 * firmware access to the PHY hardware.
1da177e4
LT
13380 */
13381 err = 0;
63c3a66f 13382 if (tg3_flag(tp, ENABLE_ASF) || tg3_flag(tp, ENABLE_APE)) {
79eb6904 13383 hw_phy_id = hw_phy_id_masked = TG3_PHY_ID_INVALID;
1da177e4
LT
13384 } else {
13385 /* Now read the physical PHY_ID from the chip and verify
13386 * that it is sane. If it doesn't look good, we fall back
13387 * to either the hard-coded table based PHY_ID and failing
13388 * that the value found in the eeprom area.
13389 */
13390 err |= tg3_readphy(tp, MII_PHYSID1, &hw_phy_id_1);
13391 err |= tg3_readphy(tp, MII_PHYSID2, &hw_phy_id_2);
13392
13393 hw_phy_id = (hw_phy_id_1 & 0xffff) << 10;
13394 hw_phy_id |= (hw_phy_id_2 & 0xfc00) << 16;
13395 hw_phy_id |= (hw_phy_id_2 & 0x03ff) << 0;
13396
79eb6904 13397 hw_phy_id_masked = hw_phy_id & TG3_PHY_ID_MASK;
1da177e4
LT
13398 }
13399
79eb6904 13400 if (!err && TG3_KNOWN_PHY_ID(hw_phy_id_masked)) {
1da177e4 13401 tp->phy_id = hw_phy_id;
79eb6904 13402 if (hw_phy_id_masked == TG3_PHY_ID_BCM8002)
f07e9af3 13403 tp->phy_flags |= TG3_PHYFLG_PHY_SERDES;
da6b2d01 13404 else
f07e9af3 13405 tp->phy_flags &= ~TG3_PHYFLG_PHY_SERDES;
1da177e4 13406 } else {
79eb6904 13407 if (tp->phy_id != TG3_PHY_ID_INVALID) {
7d0c41ef
MC
13408 /* Do nothing, phy ID already set up in
13409 * tg3_get_eeprom_hw_cfg().
13410 */
1da177e4
LT
13411 } else {
13412 struct subsys_tbl_ent *p;
13413
13414 /* No eeprom signature? Try the hardcoded
13415 * subsys device table.
13416 */
24daf2b0 13417 p = tg3_lookup_by_subsys(tp);
1da177e4
LT
13418 if (!p)
13419 return -ENODEV;
13420
13421 tp->phy_id = p->phy_id;
13422 if (!tp->phy_id ||
79eb6904 13423 tp->phy_id == TG3_PHY_ID_BCM8002)
f07e9af3 13424 tp->phy_flags |= TG3_PHYFLG_PHY_SERDES;
1da177e4
LT
13425 }
13426 }
13427
a6b68dab 13428 if (!(tp->phy_flags & TG3_PHYFLG_ANY_SERDES) &&
5baa5e9a
MC
13429 (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5719 ||
13430 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5720 ||
13431 (tp->pdev->device == TG3PCI_DEVICE_TIGON3_5718 &&
a6b68dab
MC
13432 tp->pci_chip_rev_id != CHIPREV_ID_5717_A0) ||
13433 (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_57765 &&
13434 tp->pci_chip_rev_id != CHIPREV_ID_57765_A0)))
52b02d04
MC
13435 tp->phy_flags |= TG3_PHYFLG_EEE_CAP;
13436
e256f8a3
MC
13437 tg3_phy_init_link_config(tp);
13438
f07e9af3 13439 if (!(tp->phy_flags & TG3_PHYFLG_ANY_SERDES) &&
63c3a66f
JP
13440 !tg3_flag(tp, ENABLE_APE) &&
13441 !tg3_flag(tp, ENABLE_ASF)) {
e2bf73e7 13442 u32 bmsr, dummy;
1da177e4
LT
13443
13444 tg3_readphy(tp, MII_BMSR, &bmsr);
13445 if (!tg3_readphy(tp, MII_BMSR, &bmsr) &&
13446 (bmsr & BMSR_LSTATUS))
13447 goto skip_phy_reset;
6aa20a22 13448
1da177e4
LT
13449 err = tg3_phy_reset(tp);
13450 if (err)
13451 return err;
13452
42b64a45 13453 tg3_phy_set_wirespeed(tp);
1da177e4 13454
e2bf73e7 13455 if (!tg3_phy_copper_an_config_ok(tp, &dummy)) {
42b64a45
MC
13456 tg3_phy_autoneg_cfg(tp, tp->link_config.advertising,
13457 tp->link_config.flowctrl);
1da177e4
LT
13458
13459 tg3_writephy(tp, MII_BMCR,
13460 BMCR_ANENABLE | BMCR_ANRESTART);
13461 }
1da177e4
LT
13462 }
13463
13464skip_phy_reset:
79eb6904 13465 if ((tp->phy_id & TG3_PHY_ID_MASK) == TG3_PHY_ID_BCM5401) {
1da177e4
LT
13466 err = tg3_init_5401phy_dsp(tp);
13467 if (err)
13468 return err;
1da177e4 13469
1da177e4
LT
13470 err = tg3_init_5401phy_dsp(tp);
13471 }
13472
1da177e4
LT
13473 return err;
13474}
13475
184b8904 13476static void __devinit tg3_read_vpd(struct tg3 *tp)
1da177e4 13477{
a4a8bb15 13478 u8 *vpd_data;
4181b2c8 13479 unsigned int block_end, rosize, len;
535a490e 13480 u32 vpdlen;
184b8904 13481 int j, i = 0;
a4a8bb15 13482
535a490e 13483 vpd_data = (u8 *)tg3_vpd_readblock(tp, &vpdlen);
a4a8bb15
MC
13484 if (!vpd_data)
13485 goto out_no_vpd;
1da177e4 13486
535a490e 13487 i = pci_vpd_find_tag(vpd_data, 0, vpdlen, PCI_VPD_LRDT_RO_DATA);
4181b2c8
MC
13488 if (i < 0)
13489 goto out_not_found;
1da177e4 13490
4181b2c8
MC
13491 rosize = pci_vpd_lrdt_size(&vpd_data[i]);
13492 block_end = i + PCI_VPD_LRDT_TAG_SIZE + rosize;
13493 i += PCI_VPD_LRDT_TAG_SIZE;
1da177e4 13494
535a490e 13495 if (block_end > vpdlen)
4181b2c8 13496 goto out_not_found;
af2c6a4a 13497
184b8904
MC
13498 j = pci_vpd_find_info_keyword(vpd_data, i, rosize,
13499 PCI_VPD_RO_KEYWORD_MFR_ID);
13500 if (j > 0) {
13501 len = pci_vpd_info_field_size(&vpd_data[j]);
13502
13503 j += PCI_VPD_INFO_FLD_HDR_SIZE;
13504 if (j + len > block_end || len != 4 ||
13505 memcmp(&vpd_data[j], "1028", 4))
13506 goto partno;
13507
13508 j = pci_vpd_find_info_keyword(vpd_data, i, rosize,
13509 PCI_VPD_RO_KEYWORD_VENDOR0);
13510 if (j < 0)
13511 goto partno;
13512
13513 len = pci_vpd_info_field_size(&vpd_data[j]);
13514
13515 j += PCI_VPD_INFO_FLD_HDR_SIZE;
13516 if (j + len > block_end)
13517 goto partno;
13518
13519 memcpy(tp->fw_ver, &vpd_data[j], len);
535a490e 13520 strncat(tp->fw_ver, " bc ", vpdlen - len - 1);
184b8904
MC
13521 }
13522
13523partno:
4181b2c8
MC
13524 i = pci_vpd_find_info_keyword(vpd_data, i, rosize,
13525 PCI_VPD_RO_KEYWORD_PARTNO);
13526 if (i < 0)
13527 goto out_not_found;
af2c6a4a 13528
4181b2c8 13529 len = pci_vpd_info_field_size(&vpd_data[i]);
1da177e4 13530
4181b2c8
MC
13531 i += PCI_VPD_INFO_FLD_HDR_SIZE;
13532 if (len > TG3_BPN_SIZE ||
535a490e 13533 (len + i) > vpdlen)
4181b2c8 13534 goto out_not_found;
1da177e4 13535
4181b2c8 13536 memcpy(tp->board_part_number, &vpd_data[i], len);
1da177e4 13537
1da177e4 13538out_not_found:
a4a8bb15 13539 kfree(vpd_data);
37a949c5 13540 if (tp->board_part_number[0])
a4a8bb15
MC
13541 return;
13542
13543out_no_vpd:
37a949c5
MC
13544 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5717) {
13545 if (tp->pdev->device == TG3PCI_DEVICE_TIGON3_5717)
13546 strcpy(tp->board_part_number, "BCM5717");
13547 else if (tp->pdev->device == TG3PCI_DEVICE_TIGON3_5718)
13548 strcpy(tp->board_part_number, "BCM5718");
13549 else
13550 goto nomatch;
13551 } else if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_57780) {
13552 if (tp->pdev->device == TG3PCI_DEVICE_TIGON3_57780)
13553 strcpy(tp->board_part_number, "BCM57780");
13554 else if (tp->pdev->device == TG3PCI_DEVICE_TIGON3_57760)
13555 strcpy(tp->board_part_number, "BCM57760");
13556 else if (tp->pdev->device == TG3PCI_DEVICE_TIGON3_57790)
13557 strcpy(tp->board_part_number, "BCM57790");
13558 else if (tp->pdev->device == TG3PCI_DEVICE_TIGON3_57788)
13559 strcpy(tp->board_part_number, "BCM57788");
13560 else
13561 goto nomatch;
13562 } else if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_57765) {
13563 if (tp->pdev->device == TG3PCI_DEVICE_TIGON3_57761)
13564 strcpy(tp->board_part_number, "BCM57761");
13565 else if (tp->pdev->device == TG3PCI_DEVICE_TIGON3_57765)
13566 strcpy(tp->board_part_number, "BCM57765");
13567 else if (tp->pdev->device == TG3PCI_DEVICE_TIGON3_57781)
13568 strcpy(tp->board_part_number, "BCM57781");
13569 else if (tp->pdev->device == TG3PCI_DEVICE_TIGON3_57785)
13570 strcpy(tp->board_part_number, "BCM57785");
13571 else if (tp->pdev->device == TG3PCI_DEVICE_TIGON3_57791)
13572 strcpy(tp->board_part_number, "BCM57791");
13573 else if (tp->pdev->device == TG3PCI_DEVICE_TIGON3_57795)
13574 strcpy(tp->board_part_number, "BCM57795");
13575 else
13576 goto nomatch;
55086ad9
MC
13577 } else if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_57766) {
13578 if (tp->pdev->device == TG3PCI_DEVICE_TIGON3_57762)
13579 strcpy(tp->board_part_number, "BCM57762");
13580 else if (tp->pdev->device == TG3PCI_DEVICE_TIGON3_57766)
13581 strcpy(tp->board_part_number, "BCM57766");
13582 else if (tp->pdev->device == TG3PCI_DEVICE_TIGON3_57782)
13583 strcpy(tp->board_part_number, "BCM57782");
13584 else if (tp->pdev->device == TG3PCI_DEVICE_TIGON3_57786)
13585 strcpy(tp->board_part_number, "BCM57786");
13586 else
13587 goto nomatch;
37a949c5 13588 } else if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5906) {
b5d3772c 13589 strcpy(tp->board_part_number, "BCM95906");
37a949c5
MC
13590 } else {
13591nomatch:
b5d3772c 13592 strcpy(tp->board_part_number, "none");
37a949c5 13593 }
1da177e4
LT
13594}
13595
9c8a620e
MC
13596static int __devinit tg3_fw_img_is_valid(struct tg3 *tp, u32 offset)
13597{
13598 u32 val;
13599
e4f34110 13600 if (tg3_nvram_read(tp, offset, &val) ||
9c8a620e 13601 (val & 0xfc000000) != 0x0c000000 ||
e4f34110 13602 tg3_nvram_read(tp, offset + 4, &val) ||
9c8a620e
MC
13603 val != 0)
13604 return 0;
13605
13606 return 1;
13607}
13608
acd9c119
MC
13609static void __devinit tg3_read_bc_ver(struct tg3 *tp)
13610{
ff3a7cb2 13611 u32 val, offset, start, ver_offset;
75f9936e 13612 int i, dst_off;
ff3a7cb2 13613 bool newver = false;
acd9c119
MC
13614
13615 if (tg3_nvram_read(tp, 0xc, &offset) ||
13616 tg3_nvram_read(tp, 0x4, &start))
13617 return;
13618
13619 offset = tg3_nvram_logical_addr(tp, offset);
13620
ff3a7cb2 13621 if (tg3_nvram_read(tp, offset, &val))
acd9c119
MC
13622 return;
13623
ff3a7cb2
MC
13624 if ((val & 0xfc000000) == 0x0c000000) {
13625 if (tg3_nvram_read(tp, offset + 4, &val))
acd9c119
MC
13626 return;
13627
ff3a7cb2
MC
13628 if (val == 0)
13629 newver = true;
13630 }
13631
75f9936e
MC
13632 dst_off = strlen(tp->fw_ver);
13633
ff3a7cb2 13634 if (newver) {
75f9936e
MC
13635 if (TG3_VER_SIZE - dst_off < 16 ||
13636 tg3_nvram_read(tp, offset + 8, &ver_offset))
ff3a7cb2
MC
13637 return;
13638
13639 offset = offset + ver_offset - start;
13640 for (i = 0; i < 16; i += 4) {
13641 __be32 v;
13642 if (tg3_nvram_read_be32(tp, offset + i, &v))
13643 return;
13644
75f9936e 13645 memcpy(tp->fw_ver + dst_off + i, &v, sizeof(v));
ff3a7cb2
MC
13646 }
13647 } else {
13648 u32 major, minor;
13649
13650 if (tg3_nvram_read(tp, TG3_NVM_PTREV_BCVER, &ver_offset))
13651 return;
13652
13653 major = (ver_offset & TG3_NVM_BCVER_MAJMSK) >>
13654 TG3_NVM_BCVER_MAJSFT;
13655 minor = ver_offset & TG3_NVM_BCVER_MINMSK;
75f9936e
MC
13656 snprintf(&tp->fw_ver[dst_off], TG3_VER_SIZE - dst_off,
13657 "v%d.%02d", major, minor);
acd9c119
MC
13658 }
13659}
13660
a6f6cb1c
MC
13661static void __devinit tg3_read_hwsb_ver(struct tg3 *tp)
13662{
13663 u32 val, major, minor;
13664
13665 /* Use native endian representation */
13666 if (tg3_nvram_read(tp, TG3_NVM_HWSB_CFG1, &val))
13667 return;
13668
13669 major = (val & TG3_NVM_HWSB_CFG1_MAJMSK) >>
13670 TG3_NVM_HWSB_CFG1_MAJSFT;
13671 minor = (val & TG3_NVM_HWSB_CFG1_MINMSK) >>
13672 TG3_NVM_HWSB_CFG1_MINSFT;
13673
13674 snprintf(&tp->fw_ver[0], 32, "sb v%d.%02d", major, minor);
13675}
13676
dfe00d7d
MC
13677static void __devinit tg3_read_sb_ver(struct tg3 *tp, u32 val)
13678{
13679 u32 offset, major, minor, build;
13680
75f9936e 13681 strncat(tp->fw_ver, "sb", TG3_VER_SIZE - strlen(tp->fw_ver) - 1);
dfe00d7d
MC
13682
13683 if ((val & TG3_EEPROM_SB_FORMAT_MASK) != TG3_EEPROM_SB_FORMAT_1)
13684 return;
13685
13686 switch (val & TG3_EEPROM_SB_REVISION_MASK) {
13687 case TG3_EEPROM_SB_REVISION_0:
13688 offset = TG3_EEPROM_SB_F1R0_EDH_OFF;
13689 break;
13690 case TG3_EEPROM_SB_REVISION_2:
13691 offset = TG3_EEPROM_SB_F1R2_EDH_OFF;
13692 break;
13693 case TG3_EEPROM_SB_REVISION_3:
13694 offset = TG3_EEPROM_SB_F1R3_EDH_OFF;
13695 break;
a4153d40
MC
13696 case TG3_EEPROM_SB_REVISION_4:
13697 offset = TG3_EEPROM_SB_F1R4_EDH_OFF;
13698 break;
13699 case TG3_EEPROM_SB_REVISION_5:
13700 offset = TG3_EEPROM_SB_F1R5_EDH_OFF;
13701 break;
bba226ac
MC
13702 case TG3_EEPROM_SB_REVISION_6:
13703 offset = TG3_EEPROM_SB_F1R6_EDH_OFF;
13704 break;
dfe00d7d
MC
13705 default:
13706 return;
13707 }
13708
e4f34110 13709 if (tg3_nvram_read(tp, offset, &val))
dfe00d7d
MC
13710 return;
13711
13712 build = (val & TG3_EEPROM_SB_EDH_BLD_MASK) >>
13713 TG3_EEPROM_SB_EDH_BLD_SHFT;
13714 major = (val & TG3_EEPROM_SB_EDH_MAJ_MASK) >>
13715 TG3_EEPROM_SB_EDH_MAJ_SHFT;
13716 minor = val & TG3_EEPROM_SB_EDH_MIN_MASK;
13717
13718 if (minor > 99 || build > 26)
13719 return;
13720
75f9936e
MC
13721 offset = strlen(tp->fw_ver);
13722 snprintf(&tp->fw_ver[offset], TG3_VER_SIZE - offset,
13723 " v%d.%02d", major, minor);
dfe00d7d
MC
13724
13725 if (build > 0) {
75f9936e
MC
13726 offset = strlen(tp->fw_ver);
13727 if (offset < TG3_VER_SIZE - 1)
13728 tp->fw_ver[offset] = 'a' + build - 1;
dfe00d7d
MC
13729 }
13730}
13731
acd9c119 13732static void __devinit tg3_read_mgmtfw_ver(struct tg3 *tp)
c4e6575c
MC
13733{
13734 u32 val, offset, start;
acd9c119 13735 int i, vlen;
9c8a620e
MC
13736
13737 for (offset = TG3_NVM_DIR_START;
13738 offset < TG3_NVM_DIR_END;
13739 offset += TG3_NVM_DIRENT_SIZE) {
e4f34110 13740 if (tg3_nvram_read(tp, offset, &val))
c4e6575c
MC
13741 return;
13742
9c8a620e
MC
13743 if ((val >> TG3_NVM_DIRTYPE_SHIFT) == TG3_NVM_DIRTYPE_ASFINI)
13744 break;
13745 }
13746
13747 if (offset == TG3_NVM_DIR_END)
13748 return;
13749
63c3a66f 13750 if (!tg3_flag(tp, 5705_PLUS))
9c8a620e 13751 start = 0x08000000;
e4f34110 13752 else if (tg3_nvram_read(tp, offset - 4, &start))
9c8a620e
MC
13753 return;
13754
e4f34110 13755 if (tg3_nvram_read(tp, offset + 4, &offset) ||
9c8a620e 13756 !tg3_fw_img_is_valid(tp, offset) ||
e4f34110 13757 tg3_nvram_read(tp, offset + 8, &val))
9c8a620e
MC
13758 return;
13759
13760 offset += val - start;
13761
acd9c119 13762 vlen = strlen(tp->fw_ver);
9c8a620e 13763
acd9c119
MC
13764 tp->fw_ver[vlen++] = ',';
13765 tp->fw_ver[vlen++] = ' ';
9c8a620e
MC
13766
13767 for (i = 0; i < 4; i++) {
a9dc529d
MC
13768 __be32 v;
13769 if (tg3_nvram_read_be32(tp, offset, &v))
c4e6575c
MC
13770 return;
13771
b9fc7dc5 13772 offset += sizeof(v);
c4e6575c 13773
acd9c119
MC
13774 if (vlen > TG3_VER_SIZE - sizeof(v)) {
13775 memcpy(&tp->fw_ver[vlen], &v, TG3_VER_SIZE - vlen);
9c8a620e 13776 break;
c4e6575c 13777 }
9c8a620e 13778
acd9c119
MC
13779 memcpy(&tp->fw_ver[vlen], &v, sizeof(v));
13780 vlen += sizeof(v);
c4e6575c 13781 }
acd9c119
MC
13782}
13783
7fd76445
MC
13784static void __devinit tg3_read_dash_ver(struct tg3 *tp)
13785{
13786 int vlen;
13787 u32 apedata;
ecc79648 13788 char *fwtype;
7fd76445 13789
63c3a66f 13790 if (!tg3_flag(tp, ENABLE_APE) || !tg3_flag(tp, ENABLE_ASF))
7fd76445
MC
13791 return;
13792
13793 apedata = tg3_ape_read32(tp, TG3_APE_SEG_SIG);
13794 if (apedata != APE_SEG_SIG_MAGIC)
13795 return;
13796
13797 apedata = tg3_ape_read32(tp, TG3_APE_FW_STATUS);
13798 if (!(apedata & APE_FW_STATUS_READY))
13799 return;
13800
13801 apedata = tg3_ape_read32(tp, TG3_APE_FW_VERSION);
13802
dc6d0744 13803 if (tg3_ape_read32(tp, TG3_APE_FW_FEATURES) & TG3_APE_FW_FEATURE_NCSI) {
63c3a66f 13804 tg3_flag_set(tp, APE_HAS_NCSI);
ecc79648 13805 fwtype = "NCSI";
dc6d0744 13806 } else {
ecc79648 13807 fwtype = "DASH";
dc6d0744 13808 }
ecc79648 13809
7fd76445
MC
13810 vlen = strlen(tp->fw_ver);
13811
ecc79648
MC
13812 snprintf(&tp->fw_ver[vlen], TG3_VER_SIZE - vlen, " %s v%d.%d.%d.%d",
13813 fwtype,
7fd76445
MC
13814 (apedata & APE_FW_VERSION_MAJMSK) >> APE_FW_VERSION_MAJSFT,
13815 (apedata & APE_FW_VERSION_MINMSK) >> APE_FW_VERSION_MINSFT,
13816 (apedata & APE_FW_VERSION_REVMSK) >> APE_FW_VERSION_REVSFT,
13817 (apedata & APE_FW_VERSION_BLDMSK));
13818}
13819
acd9c119
MC
13820static void __devinit tg3_read_fw_ver(struct tg3 *tp)
13821{
13822 u32 val;
75f9936e 13823 bool vpd_vers = false;
acd9c119 13824
75f9936e
MC
13825 if (tp->fw_ver[0] != 0)
13826 vpd_vers = true;
df259d8c 13827
63c3a66f 13828 if (tg3_flag(tp, NO_NVRAM)) {
75f9936e 13829 strcat(tp->fw_ver, "sb");
df259d8c
MC
13830 return;
13831 }
13832
acd9c119
MC
13833 if (tg3_nvram_read(tp, 0, &val))
13834 return;
13835
13836 if (val == TG3_EEPROM_MAGIC)
13837 tg3_read_bc_ver(tp);
13838 else if ((val & TG3_EEPROM_MAGIC_FW_MSK) == TG3_EEPROM_MAGIC_FW)
13839 tg3_read_sb_ver(tp, val);
a6f6cb1c
MC
13840 else if ((val & TG3_EEPROM_MAGIC_HW_MSK) == TG3_EEPROM_MAGIC_HW)
13841 tg3_read_hwsb_ver(tp);
acd9c119
MC
13842 else
13843 return;
13844
c9cab24e 13845 if (vpd_vers)
75f9936e 13846 goto done;
acd9c119 13847
c9cab24e
MC
13848 if (tg3_flag(tp, ENABLE_APE)) {
13849 if (tg3_flag(tp, ENABLE_ASF))
13850 tg3_read_dash_ver(tp);
13851 } else if (tg3_flag(tp, ENABLE_ASF)) {
13852 tg3_read_mgmtfw_ver(tp);
13853 }
9c8a620e 13854
75f9936e 13855done:
9c8a620e 13856 tp->fw_ver[TG3_VER_SIZE - 1] = 0;
c4e6575c
MC
13857}
13858
7cb32cf2
MC
13859static inline u32 tg3_rx_ret_ring_size(struct tg3 *tp)
13860{
63c3a66f 13861 if (tg3_flag(tp, LRG_PROD_RING_CAP))
de9f5230 13862 return TG3_RX_RET_MAX_SIZE_5717;
63c3a66f 13863 else if (tg3_flag(tp, JUMBO_CAPABLE) && !tg3_flag(tp, 5780_CLASS))
de9f5230 13864 return TG3_RX_RET_MAX_SIZE_5700;
7cb32cf2 13865 else
de9f5230 13866 return TG3_RX_RET_MAX_SIZE_5705;
7cb32cf2
MC
13867}
13868
4143470c 13869static DEFINE_PCI_DEVICE_TABLE(tg3_write_reorder_chipsets) = {
895950c2
JP
13870 { PCI_DEVICE(PCI_VENDOR_ID_AMD, PCI_DEVICE_ID_AMD_FE_GATE_700C) },
13871 { PCI_DEVICE(PCI_VENDOR_ID_AMD, PCI_DEVICE_ID_AMD_8131_BRIDGE) },
13872 { PCI_DEVICE(PCI_VENDOR_ID_VIA, PCI_DEVICE_ID_VIA_8385_0) },
13873 { },
13874};
13875
16c7fa7d
MC
13876static struct pci_dev * __devinit tg3_find_peer(struct tg3 *tp)
13877{
13878 struct pci_dev *peer;
13879 unsigned int func, devnr = tp->pdev->devfn & ~7;
13880
13881 for (func = 0; func < 8; func++) {
13882 peer = pci_get_slot(tp->pdev->bus, devnr | func);
13883 if (peer && peer != tp->pdev)
13884 break;
13885 pci_dev_put(peer);
13886 }
13887 /* 5704 can be configured in single-port mode, set peer to
13888 * tp->pdev in that case.
13889 */
13890 if (!peer) {
13891 peer = tp->pdev;
13892 return peer;
13893 }
13894
13895 /*
13896 * We don't need to keep the refcount elevated; there's no way
13897 * to remove one half of this device without removing the other
13898 */
13899 pci_dev_put(peer);
13900
13901 return peer;
13902}
13903
42b123b1
MC
13904static void __devinit tg3_detect_asic_rev(struct tg3 *tp, u32 misc_ctrl_reg)
13905{
13906 tp->pci_chip_rev_id = misc_ctrl_reg >> MISC_HOST_CTRL_CHIPREV_SHIFT;
13907 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_USE_PROD_ID_REG) {
13908 u32 reg;
13909
13910 /* All devices that use the alternate
13911 * ASIC REV location have a CPMU.
13912 */
13913 tg3_flag_set(tp, CPMU_PRESENT);
13914
13915 if (tp->pdev->device == TG3PCI_DEVICE_TIGON3_5717 ||
13916 tp->pdev->device == TG3PCI_DEVICE_TIGON3_5718 ||
13917 tp->pdev->device == TG3PCI_DEVICE_TIGON3_5719 ||
13918 tp->pdev->device == TG3PCI_DEVICE_TIGON3_5720)
13919 reg = TG3PCI_GEN2_PRODID_ASICREV;
13920 else if (tp->pdev->device == TG3PCI_DEVICE_TIGON3_57781 ||
13921 tp->pdev->device == TG3PCI_DEVICE_TIGON3_57785 ||
13922 tp->pdev->device == TG3PCI_DEVICE_TIGON3_57761 ||
13923 tp->pdev->device == TG3PCI_DEVICE_TIGON3_57765 ||
13924 tp->pdev->device == TG3PCI_DEVICE_TIGON3_57791 ||
13925 tp->pdev->device == TG3PCI_DEVICE_TIGON3_57795 ||
13926 tp->pdev->device == TG3PCI_DEVICE_TIGON3_57762 ||
13927 tp->pdev->device == TG3PCI_DEVICE_TIGON3_57766 ||
13928 tp->pdev->device == TG3PCI_DEVICE_TIGON3_57782 ||
13929 tp->pdev->device == TG3PCI_DEVICE_TIGON3_57786)
13930 reg = TG3PCI_GEN15_PRODID_ASICREV;
13931 else
13932 reg = TG3PCI_PRODID_ASICREV;
13933
13934 pci_read_config_dword(tp->pdev, reg, &tp->pci_chip_rev_id);
13935 }
13936
13937 /* Wrong chip ID in 5752 A0. This code can be removed later
13938 * as A0 is not in production.
13939 */
13940 if (tp->pci_chip_rev_id == CHIPREV_ID_5752_A0_HW)
13941 tp->pci_chip_rev_id = CHIPREV_ID_5752_A0;
13942
13943 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5717 ||
13944 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5719 ||
13945 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5720)
13946 tg3_flag_set(tp, 5717_PLUS);
13947
13948 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_57765 ||
13949 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_57766)
13950 tg3_flag_set(tp, 57765_CLASS);
13951
13952 if (tg3_flag(tp, 57765_CLASS) || tg3_flag(tp, 5717_PLUS))
13953 tg3_flag_set(tp, 57765_PLUS);
13954
13955 /* Intentionally exclude ASIC_REV_5906 */
13956 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5755 ||
13957 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5787 ||
13958 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5784 ||
13959 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5761 ||
13960 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5785 ||
13961 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_57780 ||
13962 tg3_flag(tp, 57765_PLUS))
13963 tg3_flag_set(tp, 5755_PLUS);
13964
13965 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5780 ||
13966 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5714)
13967 tg3_flag_set(tp, 5780_CLASS);
13968
13969 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5750 ||
13970 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5752 ||
13971 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5906 ||
13972 tg3_flag(tp, 5755_PLUS) ||
13973 tg3_flag(tp, 5780_CLASS))
13974 tg3_flag_set(tp, 5750_PLUS);
13975
13976 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5705 ||
13977 tg3_flag(tp, 5750_PLUS))
13978 tg3_flag_set(tp, 5705_PLUS);
13979}
13980
1da177e4
LT
13981static int __devinit tg3_get_invariants(struct tg3 *tp)
13982{
1da177e4 13983 u32 misc_ctrl_reg;
1da177e4
LT
13984 u32 pci_state_reg, grc_misc_cfg;
13985 u32 val;
13986 u16 pci_cmd;
5e7dfd0f 13987 int err;
1da177e4 13988
1da177e4
LT
13989 /* Force memory write invalidate off. If we leave it on,
13990 * then on 5700_BX chips we have to enable a workaround.
13991 * The workaround is to set the TG3PCI_DMA_RW_CTRL boundary
13992 * to match the cacheline size. The Broadcom driver have this
13993 * workaround but turns MWI off all the times so never uses
13994 * it. This seems to suggest that the workaround is insufficient.
13995 */
13996 pci_read_config_word(tp->pdev, PCI_COMMAND, &pci_cmd);
13997 pci_cmd &= ~PCI_COMMAND_INVALIDATE;
13998 pci_write_config_word(tp->pdev, PCI_COMMAND, pci_cmd);
13999
16821285
MC
14000 /* Important! -- Make sure register accesses are byteswapped
14001 * correctly. Also, for those chips that require it, make
14002 * sure that indirect register accesses are enabled before
14003 * the first operation.
1da177e4
LT
14004 */
14005 pci_read_config_dword(tp->pdev, TG3PCI_MISC_HOST_CTRL,
14006 &misc_ctrl_reg);
16821285
MC
14007 tp->misc_host_ctrl |= (misc_ctrl_reg &
14008 MISC_HOST_CTRL_CHIPREV);
14009 pci_write_config_dword(tp->pdev, TG3PCI_MISC_HOST_CTRL,
14010 tp->misc_host_ctrl);
1da177e4 14011
42b123b1 14012 tg3_detect_asic_rev(tp, misc_ctrl_reg);
ff645bec 14013
6892914f
MC
14014 /* If we have 5702/03 A1 or A2 on certain ICH chipsets,
14015 * we need to disable memory and use config. cycles
14016 * only to access all registers. The 5702/03 chips
14017 * can mistakenly decode the special cycles from the
14018 * ICH chipsets as memory write cycles, causing corruption
14019 * of register and memory space. Only certain ICH bridges
14020 * will drive special cycles with non-zero data during the
14021 * address phase which can fall within the 5703's address
14022 * range. This is not an ICH bug as the PCI spec allows
14023 * non-zero address during special cycles. However, only
14024 * these ICH bridges are known to drive non-zero addresses
14025 * during special cycles.
14026 *
14027 * Since special cycles do not cross PCI bridges, we only
14028 * enable this workaround if the 5703 is on the secondary
14029 * bus of these ICH bridges.
14030 */
14031 if ((tp->pci_chip_rev_id == CHIPREV_ID_5703_A1) ||
14032 (tp->pci_chip_rev_id == CHIPREV_ID_5703_A2)) {
14033 static struct tg3_dev_id {
14034 u32 vendor;
14035 u32 device;
14036 u32 rev;
14037 } ich_chipsets[] = {
14038 { PCI_VENDOR_ID_INTEL, PCI_DEVICE_ID_INTEL_82801AA_8,
14039 PCI_ANY_ID },
14040 { PCI_VENDOR_ID_INTEL, PCI_DEVICE_ID_INTEL_82801AB_8,
14041 PCI_ANY_ID },
14042 { PCI_VENDOR_ID_INTEL, PCI_DEVICE_ID_INTEL_82801BA_11,
14043 0xa },
14044 { PCI_VENDOR_ID_INTEL, PCI_DEVICE_ID_INTEL_82801BA_6,
14045 PCI_ANY_ID },
14046 { },
14047 };
14048 struct tg3_dev_id *pci_id = &ich_chipsets[0];
14049 struct pci_dev *bridge = NULL;
14050
14051 while (pci_id->vendor != 0) {
14052 bridge = pci_get_device(pci_id->vendor, pci_id->device,
14053 bridge);
14054 if (!bridge) {
14055 pci_id++;
14056 continue;
14057 }
14058 if (pci_id->rev != PCI_ANY_ID) {
44c10138 14059 if (bridge->revision > pci_id->rev)
6892914f
MC
14060 continue;
14061 }
14062 if (bridge->subordinate &&
14063 (bridge->subordinate->number ==
14064 tp->pdev->bus->number)) {
63c3a66f 14065 tg3_flag_set(tp, ICH_WORKAROUND);
6892914f
MC
14066 pci_dev_put(bridge);
14067 break;
14068 }
14069 }
14070 }
14071
6ff6f81d 14072 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5701) {
41588ba1
MC
14073 static struct tg3_dev_id {
14074 u32 vendor;
14075 u32 device;
14076 } bridge_chipsets[] = {
14077 { PCI_VENDOR_ID_INTEL, PCI_DEVICE_ID_INTEL_PXH_0 },
14078 { PCI_VENDOR_ID_INTEL, PCI_DEVICE_ID_INTEL_PXH_1 },
14079 { },
14080 };
14081 struct tg3_dev_id *pci_id = &bridge_chipsets[0];
14082 struct pci_dev *bridge = NULL;
14083
14084 while (pci_id->vendor != 0) {
14085 bridge = pci_get_device(pci_id->vendor,
14086 pci_id->device,
14087 bridge);
14088 if (!bridge) {
14089 pci_id++;
14090 continue;
14091 }
14092 if (bridge->subordinate &&
14093 (bridge->subordinate->number <=
14094 tp->pdev->bus->number) &&
14095 (bridge->subordinate->subordinate >=
14096 tp->pdev->bus->number)) {
63c3a66f 14097 tg3_flag_set(tp, 5701_DMA_BUG);
41588ba1
MC
14098 pci_dev_put(bridge);
14099 break;
14100 }
14101 }
14102 }
14103
4a29cc2e
MC
14104 /* The EPB bridge inside 5714, 5715, and 5780 cannot support
14105 * DMA addresses > 40-bit. This bridge may have other additional
14106 * 57xx devices behind it in some 4-port NIC designs for example.
14107 * Any tg3 device found behind the bridge will also need the 40-bit
14108 * DMA workaround.
14109 */
42b123b1 14110 if (tg3_flag(tp, 5780_CLASS)) {
63c3a66f 14111 tg3_flag_set(tp, 40BIT_DMA_BUG);
4cf78e4f 14112 tp->msi_cap = pci_find_capability(tp->pdev, PCI_CAP_ID_MSI);
859a5887 14113 } else {
4a29cc2e
MC
14114 struct pci_dev *bridge = NULL;
14115
14116 do {
14117 bridge = pci_get_device(PCI_VENDOR_ID_SERVERWORKS,
14118 PCI_DEVICE_ID_SERVERWORKS_EPB,
14119 bridge);
14120 if (bridge && bridge->subordinate &&
14121 (bridge->subordinate->number <=
14122 tp->pdev->bus->number) &&
14123 (bridge->subordinate->subordinate >=
14124 tp->pdev->bus->number)) {
63c3a66f 14125 tg3_flag_set(tp, 40BIT_DMA_BUG);
4a29cc2e
MC
14126 pci_dev_put(bridge);
14127 break;
14128 }
14129 } while (bridge);
14130 }
4cf78e4f 14131
f6eb9b1f 14132 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5704 ||
3a1e19d3 14133 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5714)
7544b097
MC
14134 tp->pdev_peer = tg3_find_peer(tp);
14135
507399f1 14136 /* Determine TSO capabilities */
a0512944 14137 if (tp->pci_chip_rev_id == CHIPREV_ID_5719_A0)
4d163b75 14138 ; /* Do nothing. HW bug. */
63c3a66f
JP
14139 else if (tg3_flag(tp, 57765_PLUS))
14140 tg3_flag_set(tp, HW_TSO_3);
14141 else if (tg3_flag(tp, 5755_PLUS) ||
e849cdc3 14142 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5906)
63c3a66f
JP
14143 tg3_flag_set(tp, HW_TSO_2);
14144 else if (tg3_flag(tp, 5750_PLUS)) {
14145 tg3_flag_set(tp, HW_TSO_1);
14146 tg3_flag_set(tp, TSO_BUG);
507399f1
MC
14147 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5750 &&
14148 tp->pci_chip_rev_id >= CHIPREV_ID_5750_C2)
63c3a66f 14149 tg3_flag_clear(tp, TSO_BUG);
507399f1
MC
14150 } else if (GET_ASIC_REV(tp->pci_chip_rev_id) != ASIC_REV_5700 &&
14151 GET_ASIC_REV(tp->pci_chip_rev_id) != ASIC_REV_5701 &&
14152 tp->pci_chip_rev_id != CHIPREV_ID_5705_A0) {
63c3a66f 14153 tg3_flag_set(tp, TSO_BUG);
507399f1
MC
14154 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5705)
14155 tp->fw_needed = FIRMWARE_TG3TSO5;
14156 else
14157 tp->fw_needed = FIRMWARE_TG3TSO;
14158 }
14159
dabc5c67 14160 /* Selectively allow TSO based on operating conditions */
6ff6f81d
MC
14161 if (tg3_flag(tp, HW_TSO_1) ||
14162 tg3_flag(tp, HW_TSO_2) ||
14163 tg3_flag(tp, HW_TSO_3) ||
cf9ecf4b
MC
14164 tp->fw_needed) {
14165 /* For firmware TSO, assume ASF is disabled.
14166 * We'll disable TSO later if we discover ASF
14167 * is enabled in tg3_get_eeprom_hw_cfg().
14168 */
dabc5c67 14169 tg3_flag_set(tp, TSO_CAPABLE);
cf9ecf4b 14170 } else {
dabc5c67
MC
14171 tg3_flag_clear(tp, TSO_CAPABLE);
14172 tg3_flag_clear(tp, TSO_BUG);
14173 tp->fw_needed = NULL;
14174 }
14175
14176 if (tp->pci_chip_rev_id == CHIPREV_ID_5701_A0)
14177 tp->fw_needed = FIRMWARE_TG3;
14178
507399f1
MC
14179 tp->irq_max = 1;
14180
63c3a66f
JP
14181 if (tg3_flag(tp, 5750_PLUS)) {
14182 tg3_flag_set(tp, SUPPORT_MSI);
7544b097
MC
14183 if (GET_CHIP_REV(tp->pci_chip_rev_id) == CHIPREV_5750_AX ||
14184 GET_CHIP_REV(tp->pci_chip_rev_id) == CHIPREV_5750_BX ||
14185 (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5714 &&
14186 tp->pci_chip_rev_id <= CHIPREV_ID_5714_A2 &&
14187 tp->pdev_peer == tp->pdev))
63c3a66f 14188 tg3_flag_clear(tp, SUPPORT_MSI);
7544b097 14189
63c3a66f 14190 if (tg3_flag(tp, 5755_PLUS) ||
b5d3772c 14191 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5906) {
63c3a66f 14192 tg3_flag_set(tp, 1SHOT_MSI);
52c0fd83 14193 }
4f125f42 14194
63c3a66f
JP
14195 if (tg3_flag(tp, 57765_PLUS)) {
14196 tg3_flag_set(tp, SUPPORT_MSIX);
507399f1 14197 tp->irq_max = TG3_IRQ_MAX_VECS;
90415477 14198 tg3_rss_init_dflt_indir_tbl(tp);
507399f1 14199 }
f6eb9b1f 14200 }
0e1406dd 14201
2ffcc981 14202 if (tg3_flag(tp, 5755_PLUS))
63c3a66f 14203 tg3_flag_set(tp, SHORT_DMA_BUG);
f6eb9b1f 14204
e31aa987 14205 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5719)
a4cb428d 14206 tp->dma_limit = TG3_TX_BD_DMA_MAX_4K;
e31aa987 14207
fa6b2aae
MC
14208 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5717 ||
14209 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5719 ||
14210 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5720)
63c3a66f 14211 tg3_flag_set(tp, LRG_PROD_RING_CAP);
de9f5230 14212
63c3a66f 14213 if (tg3_flag(tp, 57765_PLUS) &&
a0512944 14214 tp->pci_chip_rev_id != CHIPREV_ID_5719_A0)
63c3a66f 14215 tg3_flag_set(tp, USE_JUMBO_BDFLAG);
b703df6f 14216
63c3a66f
JP
14217 if (!tg3_flag(tp, 5705_PLUS) ||
14218 tg3_flag(tp, 5780_CLASS) ||
14219 tg3_flag(tp, USE_JUMBO_BDFLAG))
14220 tg3_flag_set(tp, JUMBO_CAPABLE);
0f893dc6 14221
52f4490c
MC
14222 pci_read_config_dword(tp->pdev, TG3PCI_PCISTATE,
14223 &pci_state_reg);
14224
708ebb3a 14225 if (pci_is_pcie(tp->pdev)) {
5e7dfd0f
MC
14226 u16 lnkctl;
14227
63c3a66f 14228 tg3_flag_set(tp, PCI_EXPRESS);
5f5c51e3 14229
2c55a3d0
MC
14230 if (tp->pci_chip_rev_id == CHIPREV_ID_5719_A0) {
14231 int readrq = pcie_get_readrq(tp->pdev);
14232 if (readrq > 2048)
14233 pcie_set_readrq(tp->pdev, 2048);
14234 }
5f5c51e3 14235
5e7dfd0f 14236 pci_read_config_word(tp->pdev,
708ebb3a 14237 pci_pcie_cap(tp->pdev) + PCI_EXP_LNKCTL,
5e7dfd0f
MC
14238 &lnkctl);
14239 if (lnkctl & PCI_EXP_LNKCTL_CLKREQ_EN) {
7196cd6c
MC
14240 if (GET_ASIC_REV(tp->pci_chip_rev_id) ==
14241 ASIC_REV_5906) {
63c3a66f 14242 tg3_flag_clear(tp, HW_TSO_2);
dabc5c67 14243 tg3_flag_clear(tp, TSO_CAPABLE);
7196cd6c 14244 }
5e7dfd0f 14245 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5784 ||
321d32a0 14246 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5761 ||
9cf74ebb
MC
14247 tp->pci_chip_rev_id == CHIPREV_ID_57780_A0 ||
14248 tp->pci_chip_rev_id == CHIPREV_ID_57780_A1)
63c3a66f 14249 tg3_flag_set(tp, CLKREQ_BUG);
614b0590 14250 } else if (tp->pci_chip_rev_id == CHIPREV_ID_5717_A0) {
63c3a66f 14251 tg3_flag_set(tp, L1PLLPD_EN);
c7835a77 14252 }
52f4490c 14253 } else if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5785) {
708ebb3a
JM
14254 /* BCM5785 devices are effectively PCIe devices, and should
14255 * follow PCIe codepaths, but do not have a PCIe capabilities
14256 * section.
93a700a9 14257 */
63c3a66f
JP
14258 tg3_flag_set(tp, PCI_EXPRESS);
14259 } else if (!tg3_flag(tp, 5705_PLUS) ||
14260 tg3_flag(tp, 5780_CLASS)) {
52f4490c
MC
14261 tp->pcix_cap = pci_find_capability(tp->pdev, PCI_CAP_ID_PCIX);
14262 if (!tp->pcix_cap) {
2445e461
MC
14263 dev_err(&tp->pdev->dev,
14264 "Cannot find PCI-X capability, aborting\n");
52f4490c
MC
14265 return -EIO;
14266 }
14267
14268 if (!(pci_state_reg & PCISTATE_CONV_PCI_MODE))
63c3a66f 14269 tg3_flag_set(tp, PCIX_MODE);
52f4490c 14270 }
1da177e4 14271
399de50b
MC
14272 /* If we have an AMD 762 or VIA K8T800 chipset, write
14273 * reordering to the mailbox registers done by the host
14274 * controller can cause major troubles. We read back from
14275 * every mailbox register write to force the writes to be
14276 * posted to the chip in order.
14277 */
4143470c 14278 if (pci_dev_present(tg3_write_reorder_chipsets) &&
63c3a66f
JP
14279 !tg3_flag(tp, PCI_EXPRESS))
14280 tg3_flag_set(tp, MBOX_WRITE_REORDER);
399de50b 14281
69fc4053
MC
14282 pci_read_config_byte(tp->pdev, PCI_CACHE_LINE_SIZE,
14283 &tp->pci_cacheline_sz);
14284 pci_read_config_byte(tp->pdev, PCI_LATENCY_TIMER,
14285 &tp->pci_lat_timer);
1da177e4
LT
14286 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5703 &&
14287 tp->pci_lat_timer < 64) {
14288 tp->pci_lat_timer = 64;
69fc4053
MC
14289 pci_write_config_byte(tp->pdev, PCI_LATENCY_TIMER,
14290 tp->pci_lat_timer);
1da177e4
LT
14291 }
14292
16821285
MC
14293 /* Important! -- It is critical that the PCI-X hw workaround
14294 * situation is decided before the first MMIO register access.
14295 */
52f4490c
MC
14296 if (GET_CHIP_REV(tp->pci_chip_rev_id) == CHIPREV_5700_BX) {
14297 /* 5700 BX chips need to have their TX producer index
14298 * mailboxes written twice to workaround a bug.
14299 */
63c3a66f 14300 tg3_flag_set(tp, TXD_MBOX_HWBUG);
1da177e4 14301
52f4490c 14302 /* If we are in PCI-X mode, enable register write workaround.
1da177e4
LT
14303 *
14304 * The workaround is to use indirect register accesses
14305 * for all chip writes not to mailbox registers.
14306 */
63c3a66f 14307 if (tg3_flag(tp, PCIX_MODE)) {
1da177e4 14308 u32 pm_reg;
1da177e4 14309
63c3a66f 14310 tg3_flag_set(tp, PCIX_TARGET_HWBUG);
1da177e4
LT
14311
14312 /* The chip can have it's power management PCI config
14313 * space registers clobbered due to this bug.
14314 * So explicitly force the chip into D0 here.
14315 */
9974a356
MC
14316 pci_read_config_dword(tp->pdev,
14317 tp->pm_cap + PCI_PM_CTRL,
1da177e4
LT
14318 &pm_reg);
14319 pm_reg &= ~PCI_PM_CTRL_STATE_MASK;
14320 pm_reg |= PCI_PM_CTRL_PME_ENABLE | 0 /* D0 */;
9974a356
MC
14321 pci_write_config_dword(tp->pdev,
14322 tp->pm_cap + PCI_PM_CTRL,
1da177e4
LT
14323 pm_reg);
14324
14325 /* Also, force SERR#/PERR# in PCI command. */
14326 pci_read_config_word(tp->pdev, PCI_COMMAND, &pci_cmd);
14327 pci_cmd |= PCI_COMMAND_PARITY | PCI_COMMAND_SERR;
14328 pci_write_config_word(tp->pdev, PCI_COMMAND, pci_cmd);
14329 }
14330 }
14331
1da177e4 14332 if ((pci_state_reg & PCISTATE_BUS_SPEED_HIGH) != 0)
63c3a66f 14333 tg3_flag_set(tp, PCI_HIGH_SPEED);
1da177e4 14334 if ((pci_state_reg & PCISTATE_BUS_32BIT) != 0)
63c3a66f 14335 tg3_flag_set(tp, PCI_32BIT);
1da177e4
LT
14336
14337 /* Chip-specific fixup from Broadcom driver */
14338 if ((tp->pci_chip_rev_id == CHIPREV_ID_5704_A0) &&
14339 (!(pci_state_reg & PCISTATE_RETRY_SAME_DMA))) {
14340 pci_state_reg |= PCISTATE_RETRY_SAME_DMA;
14341 pci_write_config_dword(tp->pdev, TG3PCI_PCISTATE, pci_state_reg);
14342 }
14343
1ee582d8 14344 /* Default fast path register access methods */
20094930 14345 tp->read32 = tg3_read32;
1ee582d8 14346 tp->write32 = tg3_write32;
09ee929c 14347 tp->read32_mbox = tg3_read32;
20094930 14348 tp->write32_mbox = tg3_write32;
1ee582d8
MC
14349 tp->write32_tx_mbox = tg3_write32;
14350 tp->write32_rx_mbox = tg3_write32;
14351
14352 /* Various workaround register access methods */
63c3a66f 14353 if (tg3_flag(tp, PCIX_TARGET_HWBUG))
1ee582d8 14354 tp->write32 = tg3_write_indirect_reg32;
98efd8a6 14355 else if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5701 ||
63c3a66f 14356 (tg3_flag(tp, PCI_EXPRESS) &&
98efd8a6
MC
14357 tp->pci_chip_rev_id == CHIPREV_ID_5750_A0)) {
14358 /*
14359 * Back to back register writes can cause problems on these
14360 * chips, the workaround is to read back all reg writes
14361 * except those to mailbox regs.
14362 *
14363 * See tg3_write_indirect_reg32().
14364 */
1ee582d8 14365 tp->write32 = tg3_write_flush_reg32;
98efd8a6
MC
14366 }
14367
63c3a66f 14368 if (tg3_flag(tp, TXD_MBOX_HWBUG) || tg3_flag(tp, MBOX_WRITE_REORDER)) {
1ee582d8 14369 tp->write32_tx_mbox = tg3_write32_tx_mbox;
63c3a66f 14370 if (tg3_flag(tp, MBOX_WRITE_REORDER))
1ee582d8
MC
14371 tp->write32_rx_mbox = tg3_write_flush_reg32;
14372 }
20094930 14373
63c3a66f 14374 if (tg3_flag(tp, ICH_WORKAROUND)) {
6892914f
MC
14375 tp->read32 = tg3_read_indirect_reg32;
14376 tp->write32 = tg3_write_indirect_reg32;
14377 tp->read32_mbox = tg3_read_indirect_mbox;
14378 tp->write32_mbox = tg3_write_indirect_mbox;
14379 tp->write32_tx_mbox = tg3_write_indirect_mbox;
14380 tp->write32_rx_mbox = tg3_write_indirect_mbox;
14381
14382 iounmap(tp->regs);
22abe310 14383 tp->regs = NULL;
6892914f
MC
14384
14385 pci_read_config_word(tp->pdev, PCI_COMMAND, &pci_cmd);
14386 pci_cmd &= ~PCI_COMMAND_MEMORY;
14387 pci_write_config_word(tp->pdev, PCI_COMMAND, pci_cmd);
14388 }
b5d3772c
MC
14389 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5906) {
14390 tp->read32_mbox = tg3_read32_mbox_5906;
14391 tp->write32_mbox = tg3_write32_mbox_5906;
14392 tp->write32_tx_mbox = tg3_write32_mbox_5906;
14393 tp->write32_rx_mbox = tg3_write32_mbox_5906;
14394 }
6892914f 14395
bbadf503 14396 if (tp->write32 == tg3_write_indirect_reg32 ||
63c3a66f 14397 (tg3_flag(tp, PCIX_MODE) &&
bbadf503 14398 (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5700 ||
f49639e6 14399 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5701)))
63c3a66f 14400 tg3_flag_set(tp, SRAM_USE_CONFIG);
bbadf503 14401
16821285
MC
14402 /* The memory arbiter has to be enabled in order for SRAM accesses
14403 * to succeed. Normally on powerup the tg3 chip firmware will make
14404 * sure it is enabled, but other entities such as system netboot
14405 * code might disable it.
14406 */
14407 val = tr32(MEMARB_MODE);
14408 tw32(MEMARB_MODE, val | MEMARB_MODE_ENABLE);
14409
9dc5e342
MC
14410 tp->pci_fn = PCI_FUNC(tp->pdev->devfn) & 3;
14411 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5704 ||
14412 tg3_flag(tp, 5780_CLASS)) {
14413 if (tg3_flag(tp, PCIX_MODE)) {
14414 pci_read_config_dword(tp->pdev,
14415 tp->pcix_cap + PCI_X_STATUS,
14416 &val);
14417 tp->pci_fn = val & 0x7;
14418 }
14419 } else if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5717) {
14420 tg3_read_mem(tp, NIC_SRAM_CPMU_STATUS, &val);
14421 if ((val & NIC_SRAM_CPMUSTAT_SIG_MSK) ==
14422 NIC_SRAM_CPMUSTAT_SIG) {
14423 tp->pci_fn = val & TG3_CPMU_STATUS_FMSK_5717;
14424 tp->pci_fn = tp->pci_fn ? 1 : 0;
14425 }
14426 } else if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5719 ||
14427 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5720) {
14428 tg3_read_mem(tp, NIC_SRAM_CPMU_STATUS, &val);
14429 if ((val & NIC_SRAM_CPMUSTAT_SIG_MSK) ==
14430 NIC_SRAM_CPMUSTAT_SIG) {
14431 tp->pci_fn = (val & TG3_CPMU_STATUS_FMSK_5719) >>
14432 TG3_CPMU_STATUS_FSHFT_5719;
14433 }
69f11c99
MC
14434 }
14435
7d0c41ef 14436 /* Get eeprom hw config before calling tg3_set_power_state().
63c3a66f 14437 * In particular, the TG3_FLAG_IS_NIC flag must be
7d0c41ef
MC
14438 * determined before calling tg3_set_power_state() so that
14439 * we know whether or not to switch out of Vaux power.
14440 * When the flag is set, it means that GPIO1 is used for eeprom
14441 * write protect and also implies that it is a LOM where GPIOs
14442 * are not used to switch power.
6aa20a22 14443 */
7d0c41ef
MC
14444 tg3_get_eeprom_hw_cfg(tp);
14445
cf9ecf4b
MC
14446 if (tp->fw_needed && tg3_flag(tp, ENABLE_ASF)) {
14447 tg3_flag_clear(tp, TSO_CAPABLE);
14448 tg3_flag_clear(tp, TSO_BUG);
14449 tp->fw_needed = NULL;
14450 }
14451
63c3a66f 14452 if (tg3_flag(tp, ENABLE_APE)) {
0d3031d9
MC
14453 /* Allow reads and writes to the
14454 * APE register and memory space.
14455 */
14456 pci_state_reg |= PCISTATE_ALLOW_APE_CTLSPC_WR |
f92d9dc1
MC
14457 PCISTATE_ALLOW_APE_SHMEM_WR |
14458 PCISTATE_ALLOW_APE_PSPACE_WR;
0d3031d9
MC
14459 pci_write_config_dword(tp->pdev, TG3PCI_PCISTATE,
14460 pci_state_reg);
c9cab24e
MC
14461
14462 tg3_ape_lock_init(tp);
0d3031d9
MC
14463 }
14464
16821285
MC
14465 /* Set up tp->grc_local_ctrl before calling
14466 * tg3_pwrsrc_switch_to_vmain(). GPIO1 driven high
14467 * will bring 5700's external PHY out of reset.
314fba34
MC
14468 * It is also used as eeprom write protect on LOMs.
14469 */
14470 tp->grc_local_ctrl = GRC_LCLCTRL_INT_ON_ATTN | GRC_LCLCTRL_AUTO_SEEPROM;
6ff6f81d 14471 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5700 ||
63c3a66f 14472 tg3_flag(tp, EEPROM_WRITE_PROT))
314fba34
MC
14473 tp->grc_local_ctrl |= (GRC_LCLCTRL_GPIO_OE1 |
14474 GRC_LCLCTRL_GPIO_OUTPUT1);
3e7d83bc
MC
14475 /* Unused GPIO3 must be driven as output on 5752 because there
14476 * are no pull-up resistors on unused GPIO pins.
14477 */
14478 else if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5752)
14479 tp->grc_local_ctrl |= GRC_LCLCTRL_GPIO_OE3;
314fba34 14480
321d32a0 14481 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5755 ||
cb4ed1fd 14482 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_57780 ||
55086ad9 14483 tg3_flag(tp, 57765_CLASS))
af36e6b6
MC
14484 tp->grc_local_ctrl |= GRC_LCLCTRL_GPIO_UART_SEL;
14485
8d519ab2
MC
14486 if (tp->pdev->device == PCI_DEVICE_ID_TIGON3_5761 ||
14487 tp->pdev->device == TG3PCI_DEVICE_TIGON3_5761S) {
5f0c4a3c
MC
14488 /* Turn off the debug UART. */
14489 tp->grc_local_ctrl |= GRC_LCLCTRL_GPIO_UART_SEL;
63c3a66f 14490 if (tg3_flag(tp, IS_NIC))
5f0c4a3c
MC
14491 /* Keep VMain power. */
14492 tp->grc_local_ctrl |= GRC_LCLCTRL_GPIO_OE0 |
14493 GRC_LCLCTRL_GPIO_OUTPUT0;
14494 }
14495
16821285
MC
14496 /* Switch out of Vaux if it is a NIC */
14497 tg3_pwrsrc_switch_to_vmain(tp);
1da177e4 14498
1da177e4
LT
14499 /* Derive initial jumbo mode from MTU assigned in
14500 * ether_setup() via the alloc_etherdev() call
14501 */
63c3a66f
JP
14502 if (tp->dev->mtu > ETH_DATA_LEN && !tg3_flag(tp, 5780_CLASS))
14503 tg3_flag_set(tp, JUMBO_RING_ENABLE);
1da177e4
LT
14504
14505 /* Determine WakeOnLan speed to use. */
14506 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5700 ||
14507 tp->pci_chip_rev_id == CHIPREV_ID_5701_A0 ||
14508 tp->pci_chip_rev_id == CHIPREV_ID_5701_B0 ||
14509 tp->pci_chip_rev_id == CHIPREV_ID_5701_B2) {
63c3a66f 14510 tg3_flag_clear(tp, WOL_SPEED_100MB);
1da177e4 14511 } else {
63c3a66f 14512 tg3_flag_set(tp, WOL_SPEED_100MB);
1da177e4
LT
14513 }
14514
7f97a4bd 14515 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5906)
f07e9af3 14516 tp->phy_flags |= TG3_PHYFLG_IS_FET;
7f97a4bd 14517
1da177e4 14518 /* A few boards don't want Ethernet@WireSpeed phy feature */
6ff6f81d
MC
14519 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5700 ||
14520 (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5705 &&
1da177e4 14521 (tp->pci_chip_rev_id != CHIPREV_ID_5705_A0) &&
747e8f8b 14522 (tp->pci_chip_rev_id != CHIPREV_ID_5705_A1)) ||
f07e9af3
MC
14523 (tp->phy_flags & TG3_PHYFLG_IS_FET) ||
14524 (tp->phy_flags & TG3_PHYFLG_ANY_SERDES))
14525 tp->phy_flags |= TG3_PHYFLG_NO_ETH_WIRE_SPEED;
1da177e4
LT
14526
14527 if (GET_CHIP_REV(tp->pci_chip_rev_id) == CHIPREV_5703_AX ||
14528 GET_CHIP_REV(tp->pci_chip_rev_id) == CHIPREV_5704_AX)
f07e9af3 14529 tp->phy_flags |= TG3_PHYFLG_ADC_BUG;
1da177e4 14530 if (tp->pci_chip_rev_id == CHIPREV_ID_5704_A0)
f07e9af3 14531 tp->phy_flags |= TG3_PHYFLG_5704_A0_BUG;
1da177e4 14532
63c3a66f 14533 if (tg3_flag(tp, 5705_PLUS) &&
f07e9af3 14534 !(tp->phy_flags & TG3_PHYFLG_IS_FET) &&
321d32a0 14535 GET_ASIC_REV(tp->pci_chip_rev_id) != ASIC_REV_5785 &&
f6eb9b1f 14536 GET_ASIC_REV(tp->pci_chip_rev_id) != ASIC_REV_57780 &&
63c3a66f 14537 !tg3_flag(tp, 57765_PLUS)) {
c424cb24 14538 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5755 ||
d30cdd28 14539 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5787 ||
9936bcf6
MC
14540 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5784 ||
14541 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5761) {
d4011ada
MC
14542 if (tp->pdev->device != PCI_DEVICE_ID_TIGON3_5756 &&
14543 tp->pdev->device != PCI_DEVICE_ID_TIGON3_5722)
f07e9af3 14544 tp->phy_flags |= TG3_PHYFLG_JITTER_BUG;
c1d2a196 14545 if (tp->pdev->device == PCI_DEVICE_ID_TIGON3_5755M)
f07e9af3 14546 tp->phy_flags |= TG3_PHYFLG_ADJUST_TRIM;
321d32a0 14547 } else
f07e9af3 14548 tp->phy_flags |= TG3_PHYFLG_BER_BUG;
c424cb24 14549 }
1da177e4 14550
b2a5c19c
MC
14551 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5784 &&
14552 GET_CHIP_REV(tp->pci_chip_rev_id) != CHIPREV_5784_AX) {
14553 tp->phy_otp = tg3_read_otp_phycfg(tp);
14554 if (tp->phy_otp == 0)
14555 tp->phy_otp = TG3_OTP_DEFAULT;
14556 }
14557
63c3a66f 14558 if (tg3_flag(tp, CPMU_PRESENT))
8ef21428
MC
14559 tp->mi_mode = MAC_MI_MODE_500KHZ_CONST;
14560 else
14561 tp->mi_mode = MAC_MI_MODE_BASE;
14562
1da177e4 14563 tp->coalesce_mode = 0;
1da177e4
LT
14564 if (GET_CHIP_REV(tp->pci_chip_rev_id) != CHIPREV_5700_AX &&
14565 GET_CHIP_REV(tp->pci_chip_rev_id) != CHIPREV_5700_BX)
14566 tp->coalesce_mode |= HOSTCC_MODE_32BYTE;
14567
4d958473
MC
14568 /* Set these bits to enable statistics workaround. */
14569 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5717 ||
14570 tp->pci_chip_rev_id == CHIPREV_ID_5719_A0 ||
14571 tp->pci_chip_rev_id == CHIPREV_ID_5720_A0) {
14572 tp->coalesce_mode |= HOSTCC_MODE_ATTN;
14573 tp->grc_mode |= GRC_MODE_IRQ_ON_FLOW_ATTN;
14574 }
14575
321d32a0
MC
14576 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5785 ||
14577 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_57780)
63c3a66f 14578 tg3_flag_set(tp, USE_PHYLIB);
57e6983c 14579
158d7abd
MC
14580 err = tg3_mdio_init(tp);
14581 if (err)
14582 return err;
1da177e4
LT
14583
14584 /* Initialize data/descriptor byte/word swapping. */
14585 val = tr32(GRC_MODE);
f2096f94
MC
14586 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5720)
14587 val &= (GRC_MODE_BYTE_SWAP_B2HRX_DATA |
14588 GRC_MODE_WORD_SWAP_B2HRX_DATA |
14589 GRC_MODE_B2HRX_ENABLE |
14590 GRC_MODE_HTX2B_ENABLE |
14591 GRC_MODE_HOST_STACKUP);
14592 else
14593 val &= GRC_MODE_HOST_STACKUP;
14594
1da177e4
LT
14595 tw32(GRC_MODE, val | tp->grc_mode);
14596
14597 tg3_switch_clocks(tp);
14598
14599 /* Clear this out for sanity. */
14600 tw32(TG3PCI_MEM_WIN_BASE_ADDR, 0);
14601
14602 pci_read_config_dword(tp->pdev, TG3PCI_PCISTATE,
14603 &pci_state_reg);
14604 if ((pci_state_reg & PCISTATE_CONV_PCI_MODE) == 0 &&
63c3a66f 14605 !tg3_flag(tp, PCIX_TARGET_HWBUG)) {
1da177e4
LT
14606 u32 chiprevid = GET_CHIP_REV_ID(tp->misc_host_ctrl);
14607
14608 if (chiprevid == CHIPREV_ID_5701_A0 ||
14609 chiprevid == CHIPREV_ID_5701_B0 ||
14610 chiprevid == CHIPREV_ID_5701_B2 ||
14611 chiprevid == CHIPREV_ID_5701_B5) {
14612 void __iomem *sram_base;
14613
14614 /* Write some dummy words into the SRAM status block
14615 * area, see if it reads back correctly. If the return
14616 * value is bad, force enable the PCIX workaround.
14617 */
14618 sram_base = tp->regs + NIC_SRAM_WIN_BASE + NIC_SRAM_STATS_BLK;
14619
14620 writel(0x00000000, sram_base);
14621 writel(0x00000000, sram_base + 4);
14622 writel(0xffffffff, sram_base + 4);
14623 if (readl(sram_base) != 0x00000000)
63c3a66f 14624 tg3_flag_set(tp, PCIX_TARGET_HWBUG);
1da177e4
LT
14625 }
14626 }
14627
14628 udelay(50);
14629 tg3_nvram_init(tp);
14630
14631 grc_misc_cfg = tr32(GRC_MISC_CFG);
14632 grc_misc_cfg &= GRC_MISC_CFG_BOARD_ID_MASK;
14633
1da177e4
LT
14634 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5705 &&
14635 (grc_misc_cfg == GRC_MISC_CFG_BOARD_ID_5788 ||
14636 grc_misc_cfg == GRC_MISC_CFG_BOARD_ID_5788M))
63c3a66f 14637 tg3_flag_set(tp, IS_5788);
1da177e4 14638
63c3a66f 14639 if (!tg3_flag(tp, IS_5788) &&
6ff6f81d 14640 GET_ASIC_REV(tp->pci_chip_rev_id) != ASIC_REV_5700)
63c3a66f
JP
14641 tg3_flag_set(tp, TAGGED_STATUS);
14642 if (tg3_flag(tp, TAGGED_STATUS)) {
fac9b83e
DM
14643 tp->coalesce_mode |= (HOSTCC_MODE_CLRTICK_RXBD |
14644 HOSTCC_MODE_CLRTICK_TXBD);
14645
14646 tp->misc_host_ctrl |= MISC_HOST_CTRL_TAGGED_STATUS;
14647 pci_write_config_dword(tp->pdev, TG3PCI_MISC_HOST_CTRL,
14648 tp->misc_host_ctrl);
14649 }
14650
3bda1258 14651 /* Preserve the APE MAC_MODE bits */
63c3a66f 14652 if (tg3_flag(tp, ENABLE_APE))
d2394e6b 14653 tp->mac_mode = MAC_MODE_APE_TX_EN | MAC_MODE_APE_RX_EN;
3bda1258 14654 else
6e01b20b 14655 tp->mac_mode = 0;
3bda1258 14656
1da177e4
LT
14657 /* these are limited to 10/100 only */
14658 if ((GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5703 &&
14659 (grc_misc_cfg == 0x8000 || grc_misc_cfg == 0x4000)) ||
14660 (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5705 &&
14661 tp->pdev->vendor == PCI_VENDOR_ID_BROADCOM &&
14662 (tp->pdev->device == PCI_DEVICE_ID_TIGON3_5901 ||
14663 tp->pdev->device == PCI_DEVICE_ID_TIGON3_5901_2 ||
14664 tp->pdev->device == PCI_DEVICE_ID_TIGON3_5705F)) ||
14665 (tp->pdev->vendor == PCI_VENDOR_ID_BROADCOM &&
14666 (tp->pdev->device == PCI_DEVICE_ID_TIGON3_5751F ||
676917d4
MC
14667 tp->pdev->device == PCI_DEVICE_ID_TIGON3_5753F ||
14668 tp->pdev->device == PCI_DEVICE_ID_TIGON3_5787F)) ||
321d32a0 14669 tp->pdev->device == TG3PCI_DEVICE_TIGON3_57790 ||
d1101142
MC
14670 tp->pdev->device == TG3PCI_DEVICE_TIGON3_57791 ||
14671 tp->pdev->device == TG3PCI_DEVICE_TIGON3_57795 ||
f07e9af3
MC
14672 (tp->phy_flags & TG3_PHYFLG_IS_FET))
14673 tp->phy_flags |= TG3_PHYFLG_10_100_ONLY;
1da177e4
LT
14674
14675 err = tg3_phy_probe(tp);
14676 if (err) {
2445e461 14677 dev_err(&tp->pdev->dev, "phy probe failed, err %d\n", err);
1da177e4 14678 /* ... but do not return immediately ... */
b02fd9e3 14679 tg3_mdio_fini(tp);
1da177e4
LT
14680 }
14681
184b8904 14682 tg3_read_vpd(tp);
c4e6575c 14683 tg3_read_fw_ver(tp);
1da177e4 14684
f07e9af3
MC
14685 if (tp->phy_flags & TG3_PHYFLG_PHY_SERDES) {
14686 tp->phy_flags &= ~TG3_PHYFLG_USE_MI_INTERRUPT;
1da177e4
LT
14687 } else {
14688 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5700)
f07e9af3 14689 tp->phy_flags |= TG3_PHYFLG_USE_MI_INTERRUPT;
1da177e4 14690 else
f07e9af3 14691 tp->phy_flags &= ~TG3_PHYFLG_USE_MI_INTERRUPT;
1da177e4
LT
14692 }
14693
14694 /* 5700 {AX,BX} chips have a broken status block link
14695 * change bit implementation, so we must use the
14696 * status register in those cases.
14697 */
14698 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5700)
63c3a66f 14699 tg3_flag_set(tp, USE_LINKCHG_REG);
1da177e4 14700 else
63c3a66f 14701 tg3_flag_clear(tp, USE_LINKCHG_REG);
1da177e4
LT
14702
14703 /* The led_ctrl is set during tg3_phy_probe, here we might
14704 * have to force the link status polling mechanism based
14705 * upon subsystem IDs.
14706 */
14707 if (tp->pdev->subsystem_vendor == PCI_VENDOR_ID_DELL &&
007a880d 14708 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5701 &&
f07e9af3
MC
14709 !(tp->phy_flags & TG3_PHYFLG_PHY_SERDES)) {
14710 tp->phy_flags |= TG3_PHYFLG_USE_MI_INTERRUPT;
63c3a66f 14711 tg3_flag_set(tp, USE_LINKCHG_REG);
1da177e4
LT
14712 }
14713
14714 /* For all SERDES we poll the MAC status register. */
f07e9af3 14715 if (tp->phy_flags & TG3_PHYFLG_PHY_SERDES)
63c3a66f 14716 tg3_flag_set(tp, POLL_SERDES);
1da177e4 14717 else
63c3a66f 14718 tg3_flag_clear(tp, POLL_SERDES);
1da177e4 14719
9205fd9c 14720 tp->rx_offset = NET_SKB_PAD + NET_IP_ALIGN;
d2757fc4 14721 tp->rx_copy_thresh = TG3_RX_COPY_THRESHOLD;
1da177e4 14722 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5701 &&
63c3a66f 14723 tg3_flag(tp, PCIX_MODE)) {
9205fd9c 14724 tp->rx_offset = NET_SKB_PAD;
d2757fc4 14725#ifndef CONFIG_HAVE_EFFICIENT_UNALIGNED_ACCESS
9dc7a113 14726 tp->rx_copy_thresh = ~(u16)0;
d2757fc4
MC
14727#endif
14728 }
1da177e4 14729
2c49a44d
MC
14730 tp->rx_std_ring_mask = TG3_RX_STD_RING_SIZE(tp) - 1;
14731 tp->rx_jmb_ring_mask = TG3_RX_JMB_RING_SIZE(tp) - 1;
7cb32cf2
MC
14732 tp->rx_ret_ring_mask = tg3_rx_ret_ring_size(tp) - 1;
14733
2c49a44d 14734 tp->rx_std_max_post = tp->rx_std_ring_mask + 1;
f92905de
MC
14735
14736 /* Increment the rx prod index on the rx std ring by at most
14737 * 8 for these chips to workaround hw errata.
14738 */
14739 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5750 ||
14740 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5752 ||
14741 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5755)
14742 tp->rx_std_max_post = 8;
14743
63c3a66f 14744 if (tg3_flag(tp, ASPM_WORKAROUND))
8ed5d97e
MC
14745 tp->pwrmgmt_thresh = tr32(PCIE_PWR_MGMT_THRESH) &
14746 PCIE_PWR_MGMT_L1_THRESH_MSK;
14747
1da177e4
LT
14748 return err;
14749}
14750
49b6e95f 14751#ifdef CONFIG_SPARC
1da177e4
LT
14752static int __devinit tg3_get_macaddr_sparc(struct tg3 *tp)
14753{
14754 struct net_device *dev = tp->dev;
14755 struct pci_dev *pdev = tp->pdev;
49b6e95f 14756 struct device_node *dp = pci_device_to_OF_node(pdev);
374d4cac 14757 const unsigned char *addr;
49b6e95f
DM
14758 int len;
14759
14760 addr = of_get_property(dp, "local-mac-address", &len);
14761 if (addr && len == 6) {
14762 memcpy(dev->dev_addr, addr, 6);
14763 memcpy(dev->perm_addr, dev->dev_addr, 6);
14764 return 0;
1da177e4
LT
14765 }
14766 return -ENODEV;
14767}
14768
14769static int __devinit tg3_get_default_macaddr_sparc(struct tg3 *tp)
14770{
14771 struct net_device *dev = tp->dev;
14772
14773 memcpy(dev->dev_addr, idprom->id_ethaddr, 6);
2ff43697 14774 memcpy(dev->perm_addr, idprom->id_ethaddr, 6);
1da177e4
LT
14775 return 0;
14776}
14777#endif
14778
14779static int __devinit tg3_get_device_address(struct tg3 *tp)
14780{
14781 struct net_device *dev = tp->dev;
14782 u32 hi, lo, mac_offset;
008652b3 14783 int addr_ok = 0;
1da177e4 14784
49b6e95f 14785#ifdef CONFIG_SPARC
1da177e4
LT
14786 if (!tg3_get_macaddr_sparc(tp))
14787 return 0;
14788#endif
14789
14790 mac_offset = 0x7c;
6ff6f81d 14791 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5704 ||
63c3a66f 14792 tg3_flag(tp, 5780_CLASS)) {
1da177e4
LT
14793 if (tr32(TG3PCI_DUAL_MAC_CTRL) & DUAL_MAC_CTRL_ID)
14794 mac_offset = 0xcc;
14795 if (tg3_nvram_lock(tp))
14796 tw32_f(NVRAM_CMD, NVRAM_CMD_RESET);
14797 else
14798 tg3_nvram_unlock(tp);
63c3a66f 14799 } else if (tg3_flag(tp, 5717_PLUS)) {
69f11c99 14800 if (tp->pci_fn & 1)
a1b950d5 14801 mac_offset = 0xcc;
69f11c99 14802 if (tp->pci_fn > 1)
a50d0796 14803 mac_offset += 0x18c;
a1b950d5 14804 } else if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5906)
b5d3772c 14805 mac_offset = 0x10;
1da177e4
LT
14806
14807 /* First try to get it from MAC address mailbox. */
14808 tg3_read_mem(tp, NIC_SRAM_MAC_ADDR_HIGH_MBOX, &hi);
14809 if ((hi >> 16) == 0x484b) {
14810 dev->dev_addr[0] = (hi >> 8) & 0xff;
14811 dev->dev_addr[1] = (hi >> 0) & 0xff;
14812
14813 tg3_read_mem(tp, NIC_SRAM_MAC_ADDR_LOW_MBOX, &lo);
14814 dev->dev_addr[2] = (lo >> 24) & 0xff;
14815 dev->dev_addr[3] = (lo >> 16) & 0xff;
14816 dev->dev_addr[4] = (lo >> 8) & 0xff;
14817 dev->dev_addr[5] = (lo >> 0) & 0xff;
1da177e4 14818
008652b3
MC
14819 /* Some old bootcode may report a 0 MAC address in SRAM */
14820 addr_ok = is_valid_ether_addr(&dev->dev_addr[0]);
14821 }
14822 if (!addr_ok) {
14823 /* Next, try NVRAM. */
63c3a66f 14824 if (!tg3_flag(tp, NO_NVRAM) &&
df259d8c 14825 !tg3_nvram_read_be32(tp, mac_offset + 0, &hi) &&
6d348f2c 14826 !tg3_nvram_read_be32(tp, mac_offset + 4, &lo)) {
62cedd11
MC
14827 memcpy(&dev->dev_addr[0], ((char *)&hi) + 2, 2);
14828 memcpy(&dev->dev_addr[2], (char *)&lo, sizeof(lo));
008652b3
MC
14829 }
14830 /* Finally just fetch it out of the MAC control regs. */
14831 else {
14832 hi = tr32(MAC_ADDR_0_HIGH);
14833 lo = tr32(MAC_ADDR_0_LOW);
14834
14835 dev->dev_addr[5] = lo & 0xff;
14836 dev->dev_addr[4] = (lo >> 8) & 0xff;
14837 dev->dev_addr[3] = (lo >> 16) & 0xff;
14838 dev->dev_addr[2] = (lo >> 24) & 0xff;
14839 dev->dev_addr[1] = hi & 0xff;
14840 dev->dev_addr[0] = (hi >> 8) & 0xff;
14841 }
1da177e4
LT
14842 }
14843
14844 if (!is_valid_ether_addr(&dev->dev_addr[0])) {
7582a335 14845#ifdef CONFIG_SPARC
1da177e4
LT
14846 if (!tg3_get_default_macaddr_sparc(tp))
14847 return 0;
14848#endif
14849 return -EINVAL;
14850 }
2ff43697 14851 memcpy(dev->perm_addr, dev->dev_addr, dev->addr_len);
1da177e4
LT
14852 return 0;
14853}
14854
59e6b434
DM
14855#define BOUNDARY_SINGLE_CACHELINE 1
14856#define BOUNDARY_MULTI_CACHELINE 2
14857
14858static u32 __devinit tg3_calc_dma_bndry(struct tg3 *tp, u32 val)
14859{
14860 int cacheline_size;
14861 u8 byte;
14862 int goal;
14863
14864 pci_read_config_byte(tp->pdev, PCI_CACHE_LINE_SIZE, &byte);
14865 if (byte == 0)
14866 cacheline_size = 1024;
14867 else
14868 cacheline_size = (int) byte * 4;
14869
14870 /* On 5703 and later chips, the boundary bits have no
14871 * effect.
14872 */
14873 if (GET_ASIC_REV(tp->pci_chip_rev_id) != ASIC_REV_5700 &&
14874 GET_ASIC_REV(tp->pci_chip_rev_id) != ASIC_REV_5701 &&
63c3a66f 14875 !tg3_flag(tp, PCI_EXPRESS))
59e6b434
DM
14876 goto out;
14877
14878#if defined(CONFIG_PPC64) || defined(CONFIG_IA64) || defined(CONFIG_PARISC)
14879 goal = BOUNDARY_MULTI_CACHELINE;
14880#else
14881#if defined(CONFIG_SPARC64) || defined(CONFIG_ALPHA)
14882 goal = BOUNDARY_SINGLE_CACHELINE;
14883#else
14884 goal = 0;
14885#endif
14886#endif
14887
63c3a66f 14888 if (tg3_flag(tp, 57765_PLUS)) {
cbf9ca6c
MC
14889 val = goal ? 0 : DMA_RWCTRL_DIS_CACHE_ALIGNMENT;
14890 goto out;
14891 }
14892
59e6b434
DM
14893 if (!goal)
14894 goto out;
14895
14896 /* PCI controllers on most RISC systems tend to disconnect
14897 * when a device tries to burst across a cache-line boundary.
14898 * Therefore, letting tg3 do so just wastes PCI bandwidth.
14899 *
14900 * Unfortunately, for PCI-E there are only limited
14901 * write-side controls for this, and thus for reads
14902 * we will still get the disconnects. We'll also waste
14903 * these PCI cycles for both read and write for chips
14904 * other than 5700 and 5701 which do not implement the
14905 * boundary bits.
14906 */
63c3a66f 14907 if (tg3_flag(tp, PCIX_MODE) && !tg3_flag(tp, PCI_EXPRESS)) {
59e6b434
DM
14908 switch (cacheline_size) {
14909 case 16:
14910 case 32:
14911 case 64:
14912 case 128:
14913 if (goal == BOUNDARY_SINGLE_CACHELINE) {
14914 val |= (DMA_RWCTRL_READ_BNDRY_128_PCIX |
14915 DMA_RWCTRL_WRITE_BNDRY_128_PCIX);
14916 } else {
14917 val |= (DMA_RWCTRL_READ_BNDRY_384_PCIX |
14918 DMA_RWCTRL_WRITE_BNDRY_384_PCIX);
14919 }
14920 break;
14921
14922 case 256:
14923 val |= (DMA_RWCTRL_READ_BNDRY_256_PCIX |
14924 DMA_RWCTRL_WRITE_BNDRY_256_PCIX);
14925 break;
14926
14927 default:
14928 val |= (DMA_RWCTRL_READ_BNDRY_384_PCIX |
14929 DMA_RWCTRL_WRITE_BNDRY_384_PCIX);
14930 break;
855e1111 14931 }
63c3a66f 14932 } else if (tg3_flag(tp, PCI_EXPRESS)) {
59e6b434
DM
14933 switch (cacheline_size) {
14934 case 16:
14935 case 32:
14936 case 64:
14937 if (goal == BOUNDARY_SINGLE_CACHELINE) {
14938 val &= ~DMA_RWCTRL_WRITE_BNDRY_DISAB_PCIE;
14939 val |= DMA_RWCTRL_WRITE_BNDRY_64_PCIE;
14940 break;
14941 }
14942 /* fallthrough */
14943 case 128:
14944 default:
14945 val &= ~DMA_RWCTRL_WRITE_BNDRY_DISAB_PCIE;
14946 val |= DMA_RWCTRL_WRITE_BNDRY_128_PCIE;
14947 break;
855e1111 14948 }
59e6b434
DM
14949 } else {
14950 switch (cacheline_size) {
14951 case 16:
14952 if (goal == BOUNDARY_SINGLE_CACHELINE) {
14953 val |= (DMA_RWCTRL_READ_BNDRY_16 |
14954 DMA_RWCTRL_WRITE_BNDRY_16);
14955 break;
14956 }
14957 /* fallthrough */
14958 case 32:
14959 if (goal == BOUNDARY_SINGLE_CACHELINE) {
14960 val |= (DMA_RWCTRL_READ_BNDRY_32 |
14961 DMA_RWCTRL_WRITE_BNDRY_32);
14962 break;
14963 }
14964 /* fallthrough */
14965 case 64:
14966 if (goal == BOUNDARY_SINGLE_CACHELINE) {
14967 val |= (DMA_RWCTRL_READ_BNDRY_64 |
14968 DMA_RWCTRL_WRITE_BNDRY_64);
14969 break;
14970 }
14971 /* fallthrough */
14972 case 128:
14973 if (goal == BOUNDARY_SINGLE_CACHELINE) {
14974 val |= (DMA_RWCTRL_READ_BNDRY_128 |
14975 DMA_RWCTRL_WRITE_BNDRY_128);
14976 break;
14977 }
14978 /* fallthrough */
14979 case 256:
14980 val |= (DMA_RWCTRL_READ_BNDRY_256 |
14981 DMA_RWCTRL_WRITE_BNDRY_256);
14982 break;
14983 case 512:
14984 val |= (DMA_RWCTRL_READ_BNDRY_512 |
14985 DMA_RWCTRL_WRITE_BNDRY_512);
14986 break;
14987 case 1024:
14988 default:
14989 val |= (DMA_RWCTRL_READ_BNDRY_1024 |
14990 DMA_RWCTRL_WRITE_BNDRY_1024);
14991 break;
855e1111 14992 }
59e6b434
DM
14993 }
14994
14995out:
14996 return val;
14997}
14998
1da177e4
LT
14999static int __devinit tg3_do_test_dma(struct tg3 *tp, u32 *buf, dma_addr_t buf_dma, int size, int to_device)
15000{
15001 struct tg3_internal_buffer_desc test_desc;
15002 u32 sram_dma_descs;
15003 int i, ret;
15004
15005 sram_dma_descs = NIC_SRAM_DMA_DESC_POOL_BASE;
15006
15007 tw32(FTQ_RCVBD_COMP_FIFO_ENQDEQ, 0);
15008 tw32(FTQ_RCVDATA_COMP_FIFO_ENQDEQ, 0);
15009 tw32(RDMAC_STATUS, 0);
15010 tw32(WDMAC_STATUS, 0);
15011
15012 tw32(BUFMGR_MODE, 0);
15013 tw32(FTQ_RESET, 0);
15014
15015 test_desc.addr_hi = ((u64) buf_dma) >> 32;
15016 test_desc.addr_lo = buf_dma & 0xffffffff;
15017 test_desc.nic_mbuf = 0x00002100;
15018 test_desc.len = size;
15019
15020 /*
15021 * HP ZX1 was seeing test failures for 5701 cards running at 33Mhz
15022 * the *second* time the tg3 driver was getting loaded after an
15023 * initial scan.
15024 *
15025 * Broadcom tells me:
15026 * ...the DMA engine is connected to the GRC block and a DMA
15027 * reset may affect the GRC block in some unpredictable way...
15028 * The behavior of resets to individual blocks has not been tested.
15029 *
15030 * Broadcom noted the GRC reset will also reset all sub-components.
15031 */
15032 if (to_device) {
15033 test_desc.cqid_sqid = (13 << 8) | 2;
15034
15035 tw32_f(RDMAC_MODE, RDMAC_MODE_ENABLE);
15036 udelay(40);
15037 } else {
15038 test_desc.cqid_sqid = (16 << 8) | 7;
15039
15040 tw32_f(WDMAC_MODE, WDMAC_MODE_ENABLE);
15041 udelay(40);
15042 }
15043 test_desc.flags = 0x00000005;
15044
15045 for (i = 0; i < (sizeof(test_desc) / sizeof(u32)); i++) {
15046 u32 val;
15047
15048 val = *(((u32 *)&test_desc) + i);
15049 pci_write_config_dword(tp->pdev, TG3PCI_MEM_WIN_BASE_ADDR,
15050 sram_dma_descs + (i * sizeof(u32)));
15051 pci_write_config_dword(tp->pdev, TG3PCI_MEM_WIN_DATA, val);
15052 }
15053 pci_write_config_dword(tp->pdev, TG3PCI_MEM_WIN_BASE_ADDR, 0);
15054
859a5887 15055 if (to_device)
1da177e4 15056 tw32(FTQ_DMA_HIGH_READ_FIFO_ENQDEQ, sram_dma_descs);
859a5887 15057 else
1da177e4 15058 tw32(FTQ_DMA_HIGH_WRITE_FIFO_ENQDEQ, sram_dma_descs);
1da177e4
LT
15059
15060 ret = -ENODEV;
15061 for (i = 0; i < 40; i++) {
15062 u32 val;
15063
15064 if (to_device)
15065 val = tr32(FTQ_RCVBD_COMP_FIFO_ENQDEQ);
15066 else
15067 val = tr32(FTQ_RCVDATA_COMP_FIFO_ENQDEQ);
15068 if ((val & 0xffff) == sram_dma_descs) {
15069 ret = 0;
15070 break;
15071 }
15072
15073 udelay(100);
15074 }
15075
15076 return ret;
15077}
15078
ded7340d 15079#define TEST_BUFFER_SIZE 0x2000
1da177e4 15080
4143470c 15081static DEFINE_PCI_DEVICE_TABLE(tg3_dma_wait_state_chipsets) = {
895950c2
JP
15082 { PCI_DEVICE(PCI_VENDOR_ID_APPLE, PCI_DEVICE_ID_APPLE_UNI_N_PCI15) },
15083 { },
15084};
15085
1da177e4
LT
15086static int __devinit tg3_test_dma(struct tg3 *tp)
15087{
15088 dma_addr_t buf_dma;
59e6b434 15089 u32 *buf, saved_dma_rwctrl;
cbf9ca6c 15090 int ret = 0;
1da177e4 15091
4bae65c8
MC
15092 buf = dma_alloc_coherent(&tp->pdev->dev, TEST_BUFFER_SIZE,
15093 &buf_dma, GFP_KERNEL);
1da177e4
LT
15094 if (!buf) {
15095 ret = -ENOMEM;
15096 goto out_nofree;
15097 }
15098
15099 tp->dma_rwctrl = ((0x7 << DMA_RWCTRL_PCI_WRITE_CMD_SHIFT) |
15100 (0x6 << DMA_RWCTRL_PCI_READ_CMD_SHIFT));
15101
59e6b434 15102 tp->dma_rwctrl = tg3_calc_dma_bndry(tp, tp->dma_rwctrl);
1da177e4 15103
63c3a66f 15104 if (tg3_flag(tp, 57765_PLUS))
cbf9ca6c
MC
15105 goto out;
15106
63c3a66f 15107 if (tg3_flag(tp, PCI_EXPRESS)) {
1da177e4
LT
15108 /* DMA read watermark not used on PCIE */
15109 tp->dma_rwctrl |= 0x00180000;
63c3a66f 15110 } else if (!tg3_flag(tp, PCIX_MODE)) {
85e94ced
MC
15111 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5705 ||
15112 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5750)
1da177e4
LT
15113 tp->dma_rwctrl |= 0x003f0000;
15114 else
15115 tp->dma_rwctrl |= 0x003f000f;
15116 } else {
15117 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5703 ||
15118 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5704) {
15119 u32 ccval = (tr32(TG3PCI_CLOCK_CTRL) & 0x1f);
49afdeb6 15120 u32 read_water = 0x7;
1da177e4 15121
4a29cc2e
MC
15122 /* If the 5704 is behind the EPB bridge, we can
15123 * do the less restrictive ONE_DMA workaround for
15124 * better performance.
15125 */
63c3a66f 15126 if (tg3_flag(tp, 40BIT_DMA_BUG) &&
4a29cc2e
MC
15127 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5704)
15128 tp->dma_rwctrl |= 0x8000;
15129 else if (ccval == 0x6 || ccval == 0x7)
1da177e4
LT
15130 tp->dma_rwctrl |= DMA_RWCTRL_ONE_DMA;
15131
49afdeb6
MC
15132 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5703)
15133 read_water = 4;
59e6b434 15134 /* Set bit 23 to enable PCIX hw bug fix */
49afdeb6
MC
15135 tp->dma_rwctrl |=
15136 (read_water << DMA_RWCTRL_READ_WATER_SHIFT) |
15137 (0x3 << DMA_RWCTRL_WRITE_WATER_SHIFT) |
15138 (1 << 23);
4cf78e4f
MC
15139 } else if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5780) {
15140 /* 5780 always in PCIX mode */
15141 tp->dma_rwctrl |= 0x00144000;
a4e2b347
MC
15142 } else if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5714) {
15143 /* 5714 always in PCIX mode */
15144 tp->dma_rwctrl |= 0x00148000;
1da177e4
LT
15145 } else {
15146 tp->dma_rwctrl |= 0x001b000f;
15147 }
15148 }
15149
15150 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5703 ||
15151 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5704)
15152 tp->dma_rwctrl &= 0xfffffff0;
15153
15154 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5700 ||
15155 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5701) {
15156 /* Remove this if it causes problems for some boards. */
15157 tp->dma_rwctrl |= DMA_RWCTRL_USE_MEM_READ_MULT;
15158
15159 /* On 5700/5701 chips, we need to set this bit.
15160 * Otherwise the chip will issue cacheline transactions
15161 * to streamable DMA memory with not all the byte
15162 * enables turned on. This is an error on several
15163 * RISC PCI controllers, in particular sparc64.
15164 *
15165 * On 5703/5704 chips, this bit has been reassigned
15166 * a different meaning. In particular, it is used
15167 * on those chips to enable a PCI-X workaround.
15168 */
15169 tp->dma_rwctrl |= DMA_RWCTRL_ASSERT_ALL_BE;
15170 }
15171
15172 tw32(TG3PCI_DMA_RW_CTRL, tp->dma_rwctrl);
15173
15174#if 0
15175 /* Unneeded, already done by tg3_get_invariants. */
15176 tg3_switch_clocks(tp);
15177#endif
15178
1da177e4
LT
15179 if (GET_ASIC_REV(tp->pci_chip_rev_id) != ASIC_REV_5700 &&
15180 GET_ASIC_REV(tp->pci_chip_rev_id) != ASIC_REV_5701)
15181 goto out;
15182
59e6b434
DM
15183 /* It is best to perform DMA test with maximum write burst size
15184 * to expose the 5700/5701 write DMA bug.
15185 */
15186 saved_dma_rwctrl = tp->dma_rwctrl;
15187 tp->dma_rwctrl &= ~DMA_RWCTRL_WRITE_BNDRY_MASK;
15188 tw32(TG3PCI_DMA_RW_CTRL, tp->dma_rwctrl);
15189
1da177e4
LT
15190 while (1) {
15191 u32 *p = buf, i;
15192
15193 for (i = 0; i < TEST_BUFFER_SIZE / sizeof(u32); i++)
15194 p[i] = i;
15195
15196 /* Send the buffer to the chip. */
15197 ret = tg3_do_test_dma(tp, buf, buf_dma, TEST_BUFFER_SIZE, 1);
15198 if (ret) {
2445e461
MC
15199 dev_err(&tp->pdev->dev,
15200 "%s: Buffer write failed. err = %d\n",
15201 __func__, ret);
1da177e4
LT
15202 break;
15203 }
15204
15205#if 0
15206 /* validate data reached card RAM correctly. */
15207 for (i = 0; i < TEST_BUFFER_SIZE / sizeof(u32); i++) {
15208 u32 val;
15209 tg3_read_mem(tp, 0x2100 + (i*4), &val);
15210 if (le32_to_cpu(val) != p[i]) {
2445e461
MC
15211 dev_err(&tp->pdev->dev,
15212 "%s: Buffer corrupted on device! "
15213 "(%d != %d)\n", __func__, val, i);
1da177e4
LT
15214 /* ret = -ENODEV here? */
15215 }
15216 p[i] = 0;
15217 }
15218#endif
15219 /* Now read it back. */
15220 ret = tg3_do_test_dma(tp, buf, buf_dma, TEST_BUFFER_SIZE, 0);
15221 if (ret) {
5129c3a3
MC
15222 dev_err(&tp->pdev->dev, "%s: Buffer read failed. "
15223 "err = %d\n", __func__, ret);
1da177e4
LT
15224 break;
15225 }
15226
15227 /* Verify it. */
15228 for (i = 0; i < TEST_BUFFER_SIZE / sizeof(u32); i++) {
15229 if (p[i] == i)
15230 continue;
15231
59e6b434
DM
15232 if ((tp->dma_rwctrl & DMA_RWCTRL_WRITE_BNDRY_MASK) !=
15233 DMA_RWCTRL_WRITE_BNDRY_16) {
15234 tp->dma_rwctrl &= ~DMA_RWCTRL_WRITE_BNDRY_MASK;
1da177e4
LT
15235 tp->dma_rwctrl |= DMA_RWCTRL_WRITE_BNDRY_16;
15236 tw32(TG3PCI_DMA_RW_CTRL, tp->dma_rwctrl);
15237 break;
15238 } else {
2445e461
MC
15239 dev_err(&tp->pdev->dev,
15240 "%s: Buffer corrupted on read back! "
15241 "(%d != %d)\n", __func__, p[i], i);
1da177e4
LT
15242 ret = -ENODEV;
15243 goto out;
15244 }
15245 }
15246
15247 if (i == (TEST_BUFFER_SIZE / sizeof(u32))) {
15248 /* Success. */
15249 ret = 0;
15250 break;
15251 }
15252 }
59e6b434
DM
15253 if ((tp->dma_rwctrl & DMA_RWCTRL_WRITE_BNDRY_MASK) !=
15254 DMA_RWCTRL_WRITE_BNDRY_16) {
15255 /* DMA test passed without adjusting DMA boundary,
6d1cfbab
MC
15256 * now look for chipsets that are known to expose the
15257 * DMA bug without failing the test.
59e6b434 15258 */
4143470c 15259 if (pci_dev_present(tg3_dma_wait_state_chipsets)) {
6d1cfbab
MC
15260 tp->dma_rwctrl &= ~DMA_RWCTRL_WRITE_BNDRY_MASK;
15261 tp->dma_rwctrl |= DMA_RWCTRL_WRITE_BNDRY_16;
859a5887 15262 } else {
6d1cfbab
MC
15263 /* Safe to use the calculated DMA boundary. */
15264 tp->dma_rwctrl = saved_dma_rwctrl;
859a5887 15265 }
6d1cfbab 15266
59e6b434
DM
15267 tw32(TG3PCI_DMA_RW_CTRL, tp->dma_rwctrl);
15268 }
1da177e4
LT
15269
15270out:
4bae65c8 15271 dma_free_coherent(&tp->pdev->dev, TEST_BUFFER_SIZE, buf, buf_dma);
1da177e4
LT
15272out_nofree:
15273 return ret;
15274}
15275
1da177e4
LT
15276static void __devinit tg3_init_bufmgr_config(struct tg3 *tp)
15277{
63c3a66f 15278 if (tg3_flag(tp, 57765_PLUS)) {
666bc831
MC
15279 tp->bufmgr_config.mbuf_read_dma_low_water =
15280 DEFAULT_MB_RDMA_LOW_WATER_5705;
15281 tp->bufmgr_config.mbuf_mac_rx_low_water =
15282 DEFAULT_MB_MACRX_LOW_WATER_57765;
15283 tp->bufmgr_config.mbuf_high_water =
15284 DEFAULT_MB_HIGH_WATER_57765;
15285
15286 tp->bufmgr_config.mbuf_read_dma_low_water_jumbo =
15287 DEFAULT_MB_RDMA_LOW_WATER_5705;
15288 tp->bufmgr_config.mbuf_mac_rx_low_water_jumbo =
15289 DEFAULT_MB_MACRX_LOW_WATER_JUMBO_57765;
15290 tp->bufmgr_config.mbuf_high_water_jumbo =
15291 DEFAULT_MB_HIGH_WATER_JUMBO_57765;
63c3a66f 15292 } else if (tg3_flag(tp, 5705_PLUS)) {
fdfec172
MC
15293 tp->bufmgr_config.mbuf_read_dma_low_water =
15294 DEFAULT_MB_RDMA_LOW_WATER_5705;
15295 tp->bufmgr_config.mbuf_mac_rx_low_water =
15296 DEFAULT_MB_MACRX_LOW_WATER_5705;
15297 tp->bufmgr_config.mbuf_high_water =
15298 DEFAULT_MB_HIGH_WATER_5705;
b5d3772c
MC
15299 if (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5906) {
15300 tp->bufmgr_config.mbuf_mac_rx_low_water =
15301 DEFAULT_MB_MACRX_LOW_WATER_5906;
15302 tp->bufmgr_config.mbuf_high_water =
15303 DEFAULT_MB_HIGH_WATER_5906;
15304 }
fdfec172
MC
15305
15306 tp->bufmgr_config.mbuf_read_dma_low_water_jumbo =
15307 DEFAULT_MB_RDMA_LOW_WATER_JUMBO_5780;
15308 tp->bufmgr_config.mbuf_mac_rx_low_water_jumbo =
15309 DEFAULT_MB_MACRX_LOW_WATER_JUMBO_5780;
15310 tp->bufmgr_config.mbuf_high_water_jumbo =
15311 DEFAULT_MB_HIGH_WATER_JUMBO_5780;
15312 } else {
15313 tp->bufmgr_config.mbuf_read_dma_low_water =
15314 DEFAULT_MB_RDMA_LOW_WATER;
15315 tp->bufmgr_config.mbuf_mac_rx_low_water =
15316 DEFAULT_MB_MACRX_LOW_WATER;
15317 tp->bufmgr_config.mbuf_high_water =
15318 DEFAULT_MB_HIGH_WATER;
15319
15320 tp->bufmgr_config.mbuf_read_dma_low_water_jumbo =
15321 DEFAULT_MB_RDMA_LOW_WATER_JUMBO;
15322 tp->bufmgr_config.mbuf_mac_rx_low_water_jumbo =
15323 DEFAULT_MB_MACRX_LOW_WATER_JUMBO;
15324 tp->bufmgr_config.mbuf_high_water_jumbo =
15325 DEFAULT_MB_HIGH_WATER_JUMBO;
15326 }
1da177e4
LT
15327
15328 tp->bufmgr_config.dma_low_water = DEFAULT_DMA_LOW_WATER;
15329 tp->bufmgr_config.dma_high_water = DEFAULT_DMA_HIGH_WATER;
15330}
15331
15332static char * __devinit tg3_phy_string(struct tg3 *tp)
15333{
79eb6904
MC
15334 switch (tp->phy_id & TG3_PHY_ID_MASK) {
15335 case TG3_PHY_ID_BCM5400: return "5400";
15336 case TG3_PHY_ID_BCM5401: return "5401";
15337 case TG3_PHY_ID_BCM5411: return "5411";
15338 case TG3_PHY_ID_BCM5701: return "5701";
15339 case TG3_PHY_ID_BCM5703: return "5703";
15340 case TG3_PHY_ID_BCM5704: return "5704";
15341 case TG3_PHY_ID_BCM5705: return "5705";
15342 case TG3_PHY_ID_BCM5750: return "5750";
15343 case TG3_PHY_ID_BCM5752: return "5752";
15344 case TG3_PHY_ID_BCM5714: return "5714";
15345 case TG3_PHY_ID_BCM5780: return "5780";
15346 case TG3_PHY_ID_BCM5755: return "5755";
15347 case TG3_PHY_ID_BCM5787: return "5787";
15348 case TG3_PHY_ID_BCM5784: return "5784";
15349 case TG3_PHY_ID_BCM5756: return "5722/5756";
15350 case TG3_PHY_ID_BCM5906: return "5906";
15351 case TG3_PHY_ID_BCM5761: return "5761";
15352 case TG3_PHY_ID_BCM5718C: return "5718C";
15353 case TG3_PHY_ID_BCM5718S: return "5718S";
15354 case TG3_PHY_ID_BCM57765: return "57765";
302b500b 15355 case TG3_PHY_ID_BCM5719C: return "5719C";
6418f2c1 15356 case TG3_PHY_ID_BCM5720C: return "5720C";
79eb6904 15357 case TG3_PHY_ID_BCM8002: return "8002/serdes";
1da177e4
LT
15358 case 0: return "serdes";
15359 default: return "unknown";
855e1111 15360 }
1da177e4
LT
15361}
15362
f9804ddb
MC
15363static char * __devinit tg3_bus_string(struct tg3 *tp, char *str)
15364{
63c3a66f 15365 if (tg3_flag(tp, PCI_EXPRESS)) {
f9804ddb
MC
15366 strcpy(str, "PCI Express");
15367 return str;
63c3a66f 15368 } else if (tg3_flag(tp, PCIX_MODE)) {
f9804ddb
MC
15369 u32 clock_ctrl = tr32(TG3PCI_CLOCK_CTRL) & 0x1f;
15370
15371 strcpy(str, "PCIX:");
15372
15373 if ((clock_ctrl == 7) ||
15374 ((tr32(GRC_MISC_CFG) & GRC_MISC_CFG_BOARD_ID_MASK) ==
15375 GRC_MISC_CFG_BOARD_ID_5704CIOBE))
15376 strcat(str, "133MHz");
15377 else if (clock_ctrl == 0)
15378 strcat(str, "33MHz");
15379 else if (clock_ctrl == 2)
15380 strcat(str, "50MHz");
15381 else if (clock_ctrl == 4)
15382 strcat(str, "66MHz");
15383 else if (clock_ctrl == 6)
15384 strcat(str, "100MHz");
f9804ddb
MC
15385 } else {
15386 strcpy(str, "PCI:");
63c3a66f 15387 if (tg3_flag(tp, PCI_HIGH_SPEED))
f9804ddb
MC
15388 strcat(str, "66MHz");
15389 else
15390 strcat(str, "33MHz");
15391 }
63c3a66f 15392 if (tg3_flag(tp, PCI_32BIT))
f9804ddb
MC
15393 strcat(str, ":32-bit");
15394 else
15395 strcat(str, ":64-bit");
15396 return str;
15397}
15398
15f9850d
DM
15399static void __devinit tg3_init_coal(struct tg3 *tp)
15400{
15401 struct ethtool_coalesce *ec = &tp->coal;
15402
15403 memset(ec, 0, sizeof(*ec));
15404 ec->cmd = ETHTOOL_GCOALESCE;
15405 ec->rx_coalesce_usecs = LOW_RXCOL_TICKS;
15406 ec->tx_coalesce_usecs = LOW_TXCOL_TICKS;
15407 ec->rx_max_coalesced_frames = LOW_RXMAX_FRAMES;
15408 ec->tx_max_coalesced_frames = LOW_TXMAX_FRAMES;
15409 ec->rx_coalesce_usecs_irq = DEFAULT_RXCOAL_TICK_INT;
15410 ec->tx_coalesce_usecs_irq = DEFAULT_TXCOAL_TICK_INT;
15411 ec->rx_max_coalesced_frames_irq = DEFAULT_RXCOAL_MAXF_INT;
15412 ec->tx_max_coalesced_frames_irq = DEFAULT_TXCOAL_MAXF_INT;
15413 ec->stats_block_coalesce_usecs = DEFAULT_STAT_COAL_TICKS;
15414
15415 if (tp->coalesce_mode & (HOSTCC_MODE_CLRTICK_RXBD |
15416 HOSTCC_MODE_CLRTICK_TXBD)) {
15417 ec->rx_coalesce_usecs = LOW_RXCOL_TICKS_CLRTCKS;
15418 ec->rx_coalesce_usecs_irq = DEFAULT_RXCOAL_TICK_INT_CLRTCKS;
15419 ec->tx_coalesce_usecs = LOW_TXCOL_TICKS_CLRTCKS;
15420 ec->tx_coalesce_usecs_irq = DEFAULT_TXCOAL_TICK_INT_CLRTCKS;
15421 }
d244c892 15422
63c3a66f 15423 if (tg3_flag(tp, 5705_PLUS)) {
d244c892
MC
15424 ec->rx_coalesce_usecs_irq = 0;
15425 ec->tx_coalesce_usecs_irq = 0;
15426 ec->stats_block_coalesce_usecs = 0;
15427 }
15f9850d
DM
15428}
15429
1da177e4
LT
15430static int __devinit tg3_init_one(struct pci_dev *pdev,
15431 const struct pci_device_id *ent)
15432{
1da177e4
LT
15433 struct net_device *dev;
15434 struct tg3 *tp;
646c9edd
MC
15435 int i, err, pm_cap;
15436 u32 sndmbx, rcvmbx, intmbx;
f9804ddb 15437 char str[40];
72f2afb8 15438 u64 dma_mask, persist_dma_mask;
c8f44aff 15439 netdev_features_t features = 0;
1da177e4 15440
05dbe005 15441 printk_once(KERN_INFO "%s\n", version);
1da177e4
LT
15442
15443 err = pci_enable_device(pdev);
15444 if (err) {
2445e461 15445 dev_err(&pdev->dev, "Cannot enable PCI device, aborting\n");
1da177e4
LT
15446 return err;
15447 }
15448
1da177e4
LT
15449 err = pci_request_regions(pdev, DRV_MODULE_NAME);
15450 if (err) {
2445e461 15451 dev_err(&pdev->dev, "Cannot obtain PCI resources, aborting\n");
1da177e4
LT
15452 goto err_out_disable_pdev;
15453 }
15454
15455 pci_set_master(pdev);
15456
15457 /* Find power-management capability. */
15458 pm_cap = pci_find_capability(pdev, PCI_CAP_ID_PM);
15459 if (pm_cap == 0) {
2445e461
MC
15460 dev_err(&pdev->dev,
15461 "Cannot find Power Management capability, aborting\n");
1da177e4
LT
15462 err = -EIO;
15463 goto err_out_free_res;
15464 }
15465
16821285
MC
15466 err = pci_set_power_state(pdev, PCI_D0);
15467 if (err) {
15468 dev_err(&pdev->dev, "Transition to D0 failed, aborting\n");
15469 goto err_out_free_res;
15470 }
15471
fe5f5787 15472 dev = alloc_etherdev_mq(sizeof(*tp), TG3_IRQ_MAX_VECS);
1da177e4 15473 if (!dev) {
1da177e4 15474 err = -ENOMEM;
16821285 15475 goto err_out_power_down;
1da177e4
LT
15476 }
15477
1da177e4
LT
15478 SET_NETDEV_DEV(dev, &pdev->dev);
15479
1da177e4
LT
15480 tp = netdev_priv(dev);
15481 tp->pdev = pdev;
15482 tp->dev = dev;
15483 tp->pm_cap = pm_cap;
1da177e4
LT
15484 tp->rx_mode = TG3_DEF_RX_MODE;
15485 tp->tx_mode = TG3_DEF_TX_MODE;
8ef21428 15486
1da177e4
LT
15487 if (tg3_debug > 0)
15488 tp->msg_enable = tg3_debug;
15489 else
15490 tp->msg_enable = TG3_DEF_MSG_ENABLE;
15491
15492 /* The word/byte swap controls here control register access byte
15493 * swapping. DMA data byte swapping is controlled in the GRC_MODE
15494 * setting below.
15495 */
15496 tp->misc_host_ctrl =
15497 MISC_HOST_CTRL_MASK_PCI_INT |
15498 MISC_HOST_CTRL_WORD_SWAP |
15499 MISC_HOST_CTRL_INDIR_ACCESS |
15500 MISC_HOST_CTRL_PCISTATE_RW;
15501
15502 /* The NONFRM (non-frame) byte/word swap controls take effect
15503 * on descriptor entries, anything which isn't packet data.
15504 *
15505 * The StrongARM chips on the board (one for tx, one for rx)
15506 * are running in big-endian mode.
15507 */
15508 tp->grc_mode = (GRC_MODE_WSWAP_DATA | GRC_MODE_BSWAP_DATA |
15509 GRC_MODE_WSWAP_NONFRM_DATA);
15510#ifdef __BIG_ENDIAN
15511 tp->grc_mode |= GRC_MODE_BSWAP_NONFRM_DATA;
15512#endif
15513 spin_lock_init(&tp->lock);
1da177e4 15514 spin_lock_init(&tp->indirect_lock);
c4028958 15515 INIT_WORK(&tp->reset_task, tg3_reset_task);
1da177e4 15516
d5fe488a 15517 tp->regs = pci_ioremap_bar(pdev, BAR_0);
ab0049b4 15518 if (!tp->regs) {
ab96b241 15519 dev_err(&pdev->dev, "Cannot map device registers, aborting\n");
1da177e4
LT
15520 err = -ENOMEM;
15521 goto err_out_free_dev;
15522 }
15523
c9cab24e
MC
15524 if (tp->pdev->device == PCI_DEVICE_ID_TIGON3_5761 ||
15525 tp->pdev->device == PCI_DEVICE_ID_TIGON3_5761E ||
15526 tp->pdev->device == TG3PCI_DEVICE_TIGON3_5761S ||
15527 tp->pdev->device == TG3PCI_DEVICE_TIGON3_5761SE ||
15528 tp->pdev->device == TG3PCI_DEVICE_TIGON3_5717 ||
15529 tp->pdev->device == TG3PCI_DEVICE_TIGON3_5718 ||
15530 tp->pdev->device == TG3PCI_DEVICE_TIGON3_5719 ||
15531 tp->pdev->device == TG3PCI_DEVICE_TIGON3_5720) {
15532 tg3_flag_set(tp, ENABLE_APE);
15533 tp->aperegs = pci_ioremap_bar(pdev, BAR_2);
15534 if (!tp->aperegs) {
15535 dev_err(&pdev->dev,
15536 "Cannot map APE registers, aborting\n");
15537 err = -ENOMEM;
15538 goto err_out_iounmap;
15539 }
15540 }
15541
1da177e4
LT
15542 tp->rx_pending = TG3_DEF_RX_RING_PENDING;
15543 tp->rx_jumbo_pending = TG3_DEF_RX_JUMBO_RING_PENDING;
1da177e4 15544
1da177e4 15545 dev->ethtool_ops = &tg3_ethtool_ops;
1da177e4 15546 dev->watchdog_timeo = TG3_TX_TIMEOUT;
2ffcc981 15547 dev->netdev_ops = &tg3_netdev_ops;
1da177e4 15548 dev->irq = pdev->irq;
1da177e4
LT
15549
15550 err = tg3_get_invariants(tp);
15551 if (err) {
ab96b241
MC
15552 dev_err(&pdev->dev,
15553 "Problem fetching invariants of chip, aborting\n");
c9cab24e 15554 goto err_out_apeunmap;
1da177e4
LT
15555 }
15556
4a29cc2e
MC
15557 /* The EPB bridge inside 5714, 5715, and 5780 and any
15558 * device behind the EPB cannot support DMA addresses > 40-bit.
72f2afb8
MC
15559 * On 64-bit systems with IOMMU, use 40-bit dma_mask.
15560 * On 64-bit systems without IOMMU, use 64-bit dma_mask and
15561 * do DMA address check in tg3_start_xmit().
15562 */
63c3a66f 15563 if (tg3_flag(tp, IS_5788))
284901a9 15564 persist_dma_mask = dma_mask = DMA_BIT_MASK(32);
63c3a66f 15565 else if (tg3_flag(tp, 40BIT_DMA_BUG)) {
50cf156a 15566 persist_dma_mask = dma_mask = DMA_BIT_MASK(40);
72f2afb8 15567#ifdef CONFIG_HIGHMEM
6a35528a 15568 dma_mask = DMA_BIT_MASK(64);
72f2afb8 15569#endif
4a29cc2e 15570 } else
6a35528a 15571 persist_dma_mask = dma_mask = DMA_BIT_MASK(64);
72f2afb8
MC
15572
15573 /* Configure DMA attributes. */
284901a9 15574 if (dma_mask > DMA_BIT_MASK(32)) {
72f2afb8
MC
15575 err = pci_set_dma_mask(pdev, dma_mask);
15576 if (!err) {
0da0606f 15577 features |= NETIF_F_HIGHDMA;
72f2afb8
MC
15578 err = pci_set_consistent_dma_mask(pdev,
15579 persist_dma_mask);
15580 if (err < 0) {
ab96b241
MC
15581 dev_err(&pdev->dev, "Unable to obtain 64 bit "
15582 "DMA for consistent allocations\n");
c9cab24e 15583 goto err_out_apeunmap;
72f2afb8
MC
15584 }
15585 }
15586 }
284901a9
YH
15587 if (err || dma_mask == DMA_BIT_MASK(32)) {
15588 err = pci_set_dma_mask(pdev, DMA_BIT_MASK(32));
72f2afb8 15589 if (err) {
ab96b241
MC
15590 dev_err(&pdev->dev,
15591 "No usable DMA configuration, aborting\n");
c9cab24e 15592 goto err_out_apeunmap;
72f2afb8
MC
15593 }
15594 }
15595
fdfec172 15596 tg3_init_bufmgr_config(tp);
1da177e4 15597
0da0606f
MC
15598 features |= NETIF_F_HW_VLAN_TX | NETIF_F_HW_VLAN_RX;
15599
15600 /* 5700 B0 chips do not support checksumming correctly due
15601 * to hardware bugs.
15602 */
15603 if (tp->pci_chip_rev_id != CHIPREV_ID_5700_B0) {
15604 features |= NETIF_F_SG | NETIF_F_IP_CSUM | NETIF_F_RXCSUM;
15605
15606 if (tg3_flag(tp, 5755_PLUS))
15607 features |= NETIF_F_IPV6_CSUM;
15608 }
15609
4e3a7aaa
MC
15610 /* TSO is on by default on chips that support hardware TSO.
15611 * Firmware TSO on older chips gives lower performance, so it
15612 * is off by default, but can be enabled using ethtool.
15613 */
63c3a66f
JP
15614 if ((tg3_flag(tp, HW_TSO_1) ||
15615 tg3_flag(tp, HW_TSO_2) ||
15616 tg3_flag(tp, HW_TSO_3)) &&
0da0606f
MC
15617 (features & NETIF_F_IP_CSUM))
15618 features |= NETIF_F_TSO;
63c3a66f 15619 if (tg3_flag(tp, HW_TSO_2) || tg3_flag(tp, HW_TSO_3)) {
0da0606f
MC
15620 if (features & NETIF_F_IPV6_CSUM)
15621 features |= NETIF_F_TSO6;
63c3a66f 15622 if (tg3_flag(tp, HW_TSO_3) ||
e849cdc3 15623 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5761 ||
57e6983c
MC
15624 (GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5784 &&
15625 GET_CHIP_REV(tp->pci_chip_rev_id) != CHIPREV_5784_AX) ||
63c3a66f 15626 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_5785 ||
dc668910 15627 GET_ASIC_REV(tp->pci_chip_rev_id) == ASIC_REV_57780)
0da0606f 15628 features |= NETIF_F_TSO_ECN;
b0026624 15629 }
1da177e4 15630
d542fe27
MC
15631 dev->features |= features;
15632 dev->vlan_features |= features;
15633
06c03c02
MB
15634 /*
15635 * Add loopback capability only for a subset of devices that support
15636 * MAC-LOOPBACK. Eventually this need to be enhanced to allow INT-PHY
15637 * loopback for the remaining devices.
15638 */
15639 if (GET_ASIC_REV(tp->pci_chip_rev_id) != ASIC_REV_5780 &&
15640 !tg3_flag(tp, CPMU_PRESENT))
15641 /* Add the loopback capability */
0da0606f
MC
15642 features |= NETIF_F_LOOPBACK;
15643
0da0606f 15644 dev->hw_features |= features;
06c03c02 15645
1da177e4 15646 if (tp->pci_chip_rev_id == CHIPREV_ID_5705_A1 &&
63c3a66f 15647 !tg3_flag(tp, TSO_CAPABLE) &&
1da177e4 15648 !(tr32(TG3PCI_PCISTATE) & PCISTATE_BUS_SPEED_HIGH)) {
63c3a66f 15649 tg3_flag_set(tp, MAX_RXPEND_64);
1da177e4
LT
15650 tp->rx_pending = 63;
15651 }
15652
1da177e4
LT
15653 err = tg3_get_device_address(tp);
15654 if (err) {
ab96b241
MC
15655 dev_err(&pdev->dev,
15656 "Could not obtain valid ethernet address, aborting\n");
c9cab24e 15657 goto err_out_apeunmap;
c88864df
MC
15658 }
15659
1da177e4
LT
15660 /*
15661 * Reset chip in case UNDI or EFI driver did not shutdown
15662 * DMA self test will enable WDMAC and we'll see (spurious)
15663 * pending DMA on the PCI bus at that point.
15664 */
15665 if ((tr32(HOSTCC_MODE) & HOSTCC_MODE_ENABLE) ||
15666 (tr32(WDMAC_MODE) & WDMAC_MODE_ENABLE)) {
1da177e4 15667 tw32(MEMARB_MODE, MEMARB_MODE_ENABLE);
944d980e 15668 tg3_halt(tp, RESET_KIND_SHUTDOWN, 1);
1da177e4
LT
15669 }
15670
15671 err = tg3_test_dma(tp);
15672 if (err) {
ab96b241 15673 dev_err(&pdev->dev, "DMA engine test failed, aborting\n");
c88864df 15674 goto err_out_apeunmap;
1da177e4
LT
15675 }
15676
78f90dcf
MC
15677 intmbx = MAILBOX_INTERRUPT_0 + TG3_64BIT_REG_LOW;
15678 rcvmbx = MAILBOX_RCVRET_CON_IDX_0 + TG3_64BIT_REG_LOW;
15679 sndmbx = MAILBOX_SNDHOST_PROD_IDX_0 + TG3_64BIT_REG_LOW;
6fd45cb8 15680 for (i = 0; i < tp->irq_max; i++) {
78f90dcf
MC
15681 struct tg3_napi *tnapi = &tp->napi[i];
15682
15683 tnapi->tp = tp;
15684 tnapi->tx_pending = TG3_DEF_TX_RING_PENDING;
15685
15686 tnapi->int_mbox = intmbx;
93a700a9 15687 if (i <= 4)
78f90dcf
MC
15688 intmbx += 0x8;
15689 else
15690 intmbx += 0x4;
15691
15692 tnapi->consmbox = rcvmbx;
15693 tnapi->prodmbox = sndmbx;
15694
66cfd1bd 15695 if (i)
78f90dcf 15696 tnapi->coal_now = HOSTCC_MODE_COAL_VEC1_NOW << (i - 1);
66cfd1bd 15697 else
78f90dcf 15698 tnapi->coal_now = HOSTCC_MODE_NOW;
78f90dcf 15699
63c3a66f 15700 if (!tg3_flag(tp, SUPPORT_MSIX))
78f90dcf
MC
15701 break;
15702
15703 /*
15704 * If we support MSIX, we'll be using RSS. If we're using
15705 * RSS, the first vector only handles link interrupts and the
15706 * remaining vectors handle rx and tx interrupts. Reuse the
15707 * mailbox values for the next iteration. The values we setup
15708 * above are still useful for the single vectored mode.
15709 */
15710 if (!i)
15711 continue;
15712
15713 rcvmbx += 0x8;
15714
15715 if (sndmbx & 0x4)
15716 sndmbx -= 0x4;
15717 else
15718 sndmbx += 0xc;
15719 }
15720
15f9850d
DM
15721 tg3_init_coal(tp);
15722
c49a1561
MC
15723 pci_set_drvdata(pdev, dev);
15724
cd0d7228
MC
15725 if (tg3_flag(tp, 5717_PLUS)) {
15726 /* Resume a low-power mode */
15727 tg3_frob_aux_power(tp, false);
15728 }
15729
21f7638e
MC
15730 tg3_timer_init(tp);
15731
1da177e4
LT
15732 err = register_netdev(dev);
15733 if (err) {
ab96b241 15734 dev_err(&pdev->dev, "Cannot register net device, aborting\n");
0d3031d9 15735 goto err_out_apeunmap;
1da177e4
LT
15736 }
15737
05dbe005
JP
15738 netdev_info(dev, "Tigon3 [partno(%s) rev %04x] (%s) MAC address %pM\n",
15739 tp->board_part_number,
15740 tp->pci_chip_rev_id,
15741 tg3_bus_string(tp, str),
15742 dev->dev_addr);
1da177e4 15743
f07e9af3 15744 if (tp->phy_flags & TG3_PHYFLG_IS_CONNECTED) {
3f0e3ad7
MC
15745 struct phy_device *phydev;
15746 phydev = tp->mdio_bus->phy_map[TG3_PHY_MII_ADDR];
5129c3a3
MC
15747 netdev_info(dev,
15748 "attached PHY driver [%s] (mii_bus:phy_addr=%s)\n",
05dbe005 15749 phydev->drv->name, dev_name(&phydev->dev));
f07e9af3
MC
15750 } else {
15751 char *ethtype;
15752
15753 if (tp->phy_flags & TG3_PHYFLG_10_100_ONLY)
15754 ethtype = "10/100Base-TX";
15755 else if (tp->phy_flags & TG3_PHYFLG_ANY_SERDES)
15756 ethtype = "1000Base-SX";
15757 else
15758 ethtype = "10/100/1000Base-T";
15759
5129c3a3 15760 netdev_info(dev, "attached PHY is %s (%s Ethernet) "
47007831
MC
15761 "(WireSpeed[%d], EEE[%d])\n",
15762 tg3_phy_string(tp), ethtype,
15763 (tp->phy_flags & TG3_PHYFLG_NO_ETH_WIRE_SPEED) == 0,
15764 (tp->phy_flags & TG3_PHYFLG_EEE_CAP) != 0);
f07e9af3 15765 }
05dbe005
JP
15766
15767 netdev_info(dev, "RXcsums[%d] LinkChgREG[%d] MIirq[%d] ASF[%d] TSOcap[%d]\n",
dc668910 15768 (dev->features & NETIF_F_RXCSUM) != 0,
63c3a66f 15769 tg3_flag(tp, USE_LINKCHG_REG) != 0,
f07e9af3 15770 (tp->phy_flags & TG3_PHYFLG_USE_MI_INTERRUPT) != 0,
63c3a66f
JP
15771 tg3_flag(tp, ENABLE_ASF) != 0,
15772 tg3_flag(tp, TSO_CAPABLE) != 0);
05dbe005
JP
15773 netdev_info(dev, "dma_rwctrl[%08x] dma_mask[%d-bit]\n",
15774 tp->dma_rwctrl,
15775 pdev->dma_mask == DMA_BIT_MASK(32) ? 32 :
15776 ((u64)pdev->dma_mask) == DMA_BIT_MASK(40) ? 40 : 64);
1da177e4 15777
b45aa2f6
MC
15778 pci_save_state(pdev);
15779
1da177e4
LT
15780 return 0;
15781
0d3031d9
MC
15782err_out_apeunmap:
15783 if (tp->aperegs) {
15784 iounmap(tp->aperegs);
15785 tp->aperegs = NULL;
15786 }
15787
1da177e4 15788err_out_iounmap:
6892914f
MC
15789 if (tp->regs) {
15790 iounmap(tp->regs);
22abe310 15791 tp->regs = NULL;
6892914f 15792 }
1da177e4
LT
15793
15794err_out_free_dev:
15795 free_netdev(dev);
15796
16821285
MC
15797err_out_power_down:
15798 pci_set_power_state(pdev, PCI_D3hot);
15799
1da177e4
LT
15800err_out_free_res:
15801 pci_release_regions(pdev);
15802
15803err_out_disable_pdev:
15804 pci_disable_device(pdev);
15805 pci_set_drvdata(pdev, NULL);
15806 return err;
15807}
15808
15809static void __devexit tg3_remove_one(struct pci_dev *pdev)
15810{
15811 struct net_device *dev = pci_get_drvdata(pdev);
15812
15813 if (dev) {
15814 struct tg3 *tp = netdev_priv(dev);
15815
077f849d
JSR
15816 if (tp->fw)
15817 release_firmware(tp->fw);
15818
db219973 15819 tg3_reset_task_cancel(tp);
158d7abd 15820
e730c823 15821 if (tg3_flag(tp, USE_PHYLIB)) {
b02fd9e3 15822 tg3_phy_fini(tp);
158d7abd 15823 tg3_mdio_fini(tp);
b02fd9e3 15824 }
158d7abd 15825
1da177e4 15826 unregister_netdev(dev);
0d3031d9
MC
15827 if (tp->aperegs) {
15828 iounmap(tp->aperegs);
15829 tp->aperegs = NULL;
15830 }
6892914f
MC
15831 if (tp->regs) {
15832 iounmap(tp->regs);
22abe310 15833 tp->regs = NULL;
6892914f 15834 }
1da177e4
LT
15835 free_netdev(dev);
15836 pci_release_regions(pdev);
15837 pci_disable_device(pdev);
15838 pci_set_drvdata(pdev, NULL);
15839 }
15840}
15841
aa6027ca 15842#ifdef CONFIG_PM_SLEEP
c866b7ea 15843static int tg3_suspend(struct device *device)
1da177e4 15844{
c866b7ea 15845 struct pci_dev *pdev = to_pci_dev(device);
1da177e4
LT
15846 struct net_device *dev = pci_get_drvdata(pdev);
15847 struct tg3 *tp = netdev_priv(dev);
15848 int err;
15849
15850 if (!netif_running(dev))
15851 return 0;
15852
db219973 15853 tg3_reset_task_cancel(tp);
b02fd9e3 15854 tg3_phy_stop(tp);
1da177e4
LT
15855 tg3_netif_stop(tp);
15856
21f7638e 15857 tg3_timer_stop(tp);
1da177e4 15858
f47c11ee 15859 tg3_full_lock(tp, 1);
1da177e4 15860 tg3_disable_ints(tp);
f47c11ee 15861 tg3_full_unlock(tp);
1da177e4
LT
15862
15863 netif_device_detach(dev);
15864
f47c11ee 15865 tg3_full_lock(tp, 0);
944d980e 15866 tg3_halt(tp, RESET_KIND_SHUTDOWN, 1);
63c3a66f 15867 tg3_flag_clear(tp, INIT_COMPLETE);
f47c11ee 15868 tg3_full_unlock(tp);
1da177e4 15869
c866b7ea 15870 err = tg3_power_down_prepare(tp);
1da177e4 15871 if (err) {
b02fd9e3
MC
15872 int err2;
15873
f47c11ee 15874 tg3_full_lock(tp, 0);
1da177e4 15875
63c3a66f 15876 tg3_flag_set(tp, INIT_COMPLETE);
b02fd9e3
MC
15877 err2 = tg3_restart_hw(tp, 1);
15878 if (err2)
b9ec6c1b 15879 goto out;
1da177e4 15880
21f7638e 15881 tg3_timer_start(tp);
1da177e4
LT
15882
15883 netif_device_attach(dev);
15884 tg3_netif_start(tp);
15885
b9ec6c1b 15886out:
f47c11ee 15887 tg3_full_unlock(tp);
b02fd9e3
MC
15888
15889 if (!err2)
15890 tg3_phy_start(tp);
1da177e4
LT
15891 }
15892
15893 return err;
15894}
15895
c866b7ea 15896static int tg3_resume(struct device *device)
1da177e4 15897{
c866b7ea 15898 struct pci_dev *pdev = to_pci_dev(device);
1da177e4
LT
15899 struct net_device *dev = pci_get_drvdata(pdev);
15900 struct tg3 *tp = netdev_priv(dev);
15901 int err;
15902
15903 if (!netif_running(dev))
15904 return 0;
15905
1da177e4
LT
15906 netif_device_attach(dev);
15907
f47c11ee 15908 tg3_full_lock(tp, 0);
1da177e4 15909
63c3a66f 15910 tg3_flag_set(tp, INIT_COMPLETE);
b9ec6c1b
MC
15911 err = tg3_restart_hw(tp, 1);
15912 if (err)
15913 goto out;
1da177e4 15914
21f7638e 15915 tg3_timer_start(tp);
1da177e4 15916
1da177e4
LT
15917 tg3_netif_start(tp);
15918
b9ec6c1b 15919out:
f47c11ee 15920 tg3_full_unlock(tp);
1da177e4 15921
b02fd9e3
MC
15922 if (!err)
15923 tg3_phy_start(tp);
15924
b9ec6c1b 15925 return err;
1da177e4
LT
15926}
15927
c866b7ea 15928static SIMPLE_DEV_PM_OPS(tg3_pm_ops, tg3_suspend, tg3_resume);
aa6027ca
ED
15929#define TG3_PM_OPS (&tg3_pm_ops)
15930
15931#else
15932
15933#define TG3_PM_OPS NULL
15934
15935#endif /* CONFIG_PM_SLEEP */
c866b7ea 15936
b45aa2f6
MC
15937/**
15938 * tg3_io_error_detected - called when PCI error is detected
15939 * @pdev: Pointer to PCI device
15940 * @state: The current pci connection state
15941 *
15942 * This function is called after a PCI bus error affecting
15943 * this device has been detected.
15944 */
15945static pci_ers_result_t tg3_io_error_detected(struct pci_dev *pdev,
15946 pci_channel_state_t state)
15947{
15948 struct net_device *netdev = pci_get_drvdata(pdev);
15949 struct tg3 *tp = netdev_priv(netdev);
15950 pci_ers_result_t err = PCI_ERS_RESULT_NEED_RESET;
15951
15952 netdev_info(netdev, "PCI I/O error detected\n");
15953
15954 rtnl_lock();
15955
15956 if (!netif_running(netdev))
15957 goto done;
15958
15959 tg3_phy_stop(tp);
15960
15961 tg3_netif_stop(tp);
15962
21f7638e 15963 tg3_timer_stop(tp);
b45aa2f6
MC
15964
15965 /* Want to make sure that the reset task doesn't run */
db219973 15966 tg3_reset_task_cancel(tp);
b45aa2f6
MC
15967
15968 netif_device_detach(netdev);
15969
15970 /* Clean up software state, even if MMIO is blocked */
15971 tg3_full_lock(tp, 0);
15972 tg3_halt(tp, RESET_KIND_SHUTDOWN, 0);
15973 tg3_full_unlock(tp);
15974
15975done:
15976 if (state == pci_channel_io_perm_failure)
15977 err = PCI_ERS_RESULT_DISCONNECT;
15978 else
15979 pci_disable_device(pdev);
15980
15981 rtnl_unlock();
15982
15983 return err;
15984}
15985
15986/**
15987 * tg3_io_slot_reset - called after the pci bus has been reset.
15988 * @pdev: Pointer to PCI device
15989 *
15990 * Restart the card from scratch, as if from a cold-boot.
15991 * At this point, the card has exprienced a hard reset,
15992 * followed by fixups by BIOS, and has its config space
15993 * set up identically to what it was at cold boot.
15994 */
15995static pci_ers_result_t tg3_io_slot_reset(struct pci_dev *pdev)
15996{
15997 struct net_device *netdev = pci_get_drvdata(pdev);
15998 struct tg3 *tp = netdev_priv(netdev);
15999 pci_ers_result_t rc = PCI_ERS_RESULT_DISCONNECT;
16000 int err;
16001
16002 rtnl_lock();
16003
16004 if (pci_enable_device(pdev)) {
16005 netdev_err(netdev, "Cannot re-enable PCI device after reset.\n");
16006 goto done;
16007 }
16008
16009 pci_set_master(pdev);
16010 pci_restore_state(pdev);
16011 pci_save_state(pdev);
16012
16013 if (!netif_running(netdev)) {
16014 rc = PCI_ERS_RESULT_RECOVERED;
16015 goto done;
16016 }
16017
16018 err = tg3_power_up(tp);
bed9829f 16019 if (err)
b45aa2f6 16020 goto done;
b45aa2f6
MC
16021
16022 rc = PCI_ERS_RESULT_RECOVERED;
16023
16024done:
16025 rtnl_unlock();
16026
16027 return rc;
16028}
16029
16030/**
16031 * tg3_io_resume - called when traffic can start flowing again.
16032 * @pdev: Pointer to PCI device
16033 *
16034 * This callback is called when the error recovery driver tells
16035 * us that its OK to resume normal operation.
16036 */
16037static void tg3_io_resume(struct pci_dev *pdev)
16038{
16039 struct net_device *netdev = pci_get_drvdata(pdev);
16040 struct tg3 *tp = netdev_priv(netdev);
16041 int err;
16042
16043 rtnl_lock();
16044
16045 if (!netif_running(netdev))
16046 goto done;
16047
16048 tg3_full_lock(tp, 0);
63c3a66f 16049 tg3_flag_set(tp, INIT_COMPLETE);
b45aa2f6
MC
16050 err = tg3_restart_hw(tp, 1);
16051 tg3_full_unlock(tp);
16052 if (err) {
16053 netdev_err(netdev, "Cannot restart hardware after reset.\n");
16054 goto done;
16055 }
16056
16057 netif_device_attach(netdev);
16058
21f7638e 16059 tg3_timer_start(tp);
b45aa2f6
MC
16060
16061 tg3_netif_start(tp);
16062
16063 tg3_phy_start(tp);
16064
16065done:
16066 rtnl_unlock();
16067}
16068
16069static struct pci_error_handlers tg3_err_handler = {
16070 .error_detected = tg3_io_error_detected,
16071 .slot_reset = tg3_io_slot_reset,
16072 .resume = tg3_io_resume
16073};
16074
1da177e4
LT
16075static struct pci_driver tg3_driver = {
16076 .name = DRV_MODULE_NAME,
16077 .id_table = tg3_pci_tbl,
16078 .probe = tg3_init_one,
16079 .remove = __devexit_p(tg3_remove_one),
b45aa2f6 16080 .err_handler = &tg3_err_handler,
aa6027ca 16081 .driver.pm = TG3_PM_OPS,
1da177e4
LT
16082};
16083
16084static int __init tg3_init(void)
16085{
29917620 16086 return pci_register_driver(&tg3_driver);
1da177e4
LT
16087}
16088
16089static void __exit tg3_cleanup(void)
16090{
16091 pci_unregister_driver(&tg3_driver);
16092}
16093
16094module_init(tg3_init);
16095module_exit(tg3_cleanup);
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