locks: fix vfs_test_lock() comment
[deliverable/linux.git] / drivers / firewire / fw-transaction.h
1 /*
2 * Copyright (C) 2003-2006 Kristian Hoegsberg <krh@bitplanet.net>
3 *
4 * This program is free software; you can redistribute it and/or modify
5 * it under the terms of the GNU General Public License as published by
6 * the Free Software Foundation; either version 2 of the License, or
7 * (at your option) any later version.
8 *
9 * This program is distributed in the hope that it will be useful,
10 * but WITHOUT ANY WARRANTY; without even the implied warranty of
11 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
12 * GNU General Public License for more details.
13 *
14 * You should have received a copy of the GNU General Public License
15 * along with this program; if not, write to the Free Software Foundation,
16 * Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
17 */
18
19 #ifndef __fw_transaction_h
20 #define __fw_transaction_h
21
22 #include <linux/device.h>
23 #include <linux/timer.h>
24 #include <linux/interrupt.h>
25 #include <linux/list.h>
26 #include <linux/fs.h>
27 #include <linux/dma-mapping.h>
28 #include <linux/firewire-constants.h>
29
30 #define TCODE_IS_READ_REQUEST(tcode) (((tcode) & ~1) == 4)
31 #define TCODE_IS_BLOCK_PACKET(tcode) (((tcode) & 1) != 0)
32 #define TCODE_IS_REQUEST(tcode) (((tcode) & 2) == 0)
33 #define TCODE_IS_RESPONSE(tcode) (((tcode) & 2) != 0)
34 #define TCODE_HAS_REQUEST_DATA(tcode) (((tcode) & 12) != 4)
35 #define TCODE_HAS_RESPONSE_DATA(tcode) (((tcode) & 12) != 0)
36
37 #define LOCAL_BUS 0xffc0
38
39 #define SELFID_PORT_CHILD 0x3
40 #define SELFID_PORT_PARENT 0x2
41 #define SELFID_PORT_NCONN 0x1
42 #define SELFID_PORT_NONE 0x0
43
44 #define PHY_PACKET_CONFIG 0x0
45 #define PHY_PACKET_LINK_ON 0x1
46 #define PHY_PACKET_SELF_ID 0x2
47
48 /* Bit fields _within_ the PHY registers. */
49 #define PHY_LINK_ACTIVE 0x80
50 #define PHY_CONTENDER 0x40
51 #define PHY_BUS_RESET 0x40
52 #define PHY_BUS_SHORT_RESET 0x40
53
54 #define CSR_REGISTER_BASE 0xfffff0000000ULL
55
56 /* register offsets relative to CSR_REGISTER_BASE */
57 #define CSR_STATE_CLEAR 0x0
58 #define CSR_STATE_SET 0x4
59 #define CSR_NODE_IDS 0x8
60 #define CSR_RESET_START 0xc
61 #define CSR_SPLIT_TIMEOUT_HI 0x18
62 #define CSR_SPLIT_TIMEOUT_LO 0x1c
63 #define CSR_CYCLE_TIME 0x200
64 #define CSR_BUS_TIME 0x204
65 #define CSR_BUSY_TIMEOUT 0x210
66 #define CSR_BUS_MANAGER_ID 0x21c
67 #define CSR_BANDWIDTH_AVAILABLE 0x220
68 #define CSR_CHANNELS_AVAILABLE 0x224
69 #define CSR_CHANNELS_AVAILABLE_HI 0x224
70 #define CSR_CHANNELS_AVAILABLE_LO 0x228
71 #define CSR_BROADCAST_CHANNEL 0x234
72 #define CSR_CONFIG_ROM 0x400
73 #define CSR_CONFIG_ROM_END 0x800
74 #define CSR_FCP_COMMAND 0xB00
75 #define CSR_FCP_RESPONSE 0xD00
76 #define CSR_FCP_END 0xF00
77 #define CSR_TOPOLOGY_MAP 0x1000
78 #define CSR_TOPOLOGY_MAP_END 0x1400
79 #define CSR_SPEED_MAP 0x2000
80 #define CSR_SPEED_MAP_END 0x3000
81
82 #define fw_notify(s, args...) printk(KERN_NOTICE KBUILD_MODNAME ": " s, ## args)
83 #define fw_error(s, args...) printk(KERN_ERR KBUILD_MODNAME ": " s, ## args)
84
85 static inline void
86 fw_memcpy_from_be32(void *_dst, void *_src, size_t size)
87 {
88 u32 *dst = _dst;
89 u32 *src = _src;
90 int i;
91
92 for (i = 0; i < size / 4; i++)
93 dst[i] = cpu_to_be32(src[i]);
94 }
95
96 static inline void
97 fw_memcpy_to_be32(void *_dst, void *_src, size_t size)
98 {
99 fw_memcpy_from_be32(_dst, _src, size);
100 }
101
102 struct fw_card;
103 struct fw_packet;
104 struct fw_node;
105 struct fw_request;
106
107 struct fw_descriptor {
108 struct list_head link;
109 size_t length;
110 u32 immediate;
111 u32 key;
112 const u32 *data;
113 };
114
115 int fw_core_add_descriptor(struct fw_descriptor *desc);
116 void fw_core_remove_descriptor(struct fw_descriptor *desc);
117
118 typedef void (*fw_packet_callback_t)(struct fw_packet *packet,
119 struct fw_card *card, int status);
120
121 typedef void (*fw_transaction_callback_t)(struct fw_card *card, int rcode,
122 void *data,
123 size_t length,
124 void *callback_data);
125
126 typedef void (*fw_address_callback_t)(struct fw_card *card,
127 struct fw_request *request,
128 int tcode, int destination, int source,
129 int generation, int speed,
130 unsigned long long offset,
131 void *data, size_t length,
132 void *callback_data);
133
134 typedef void (*fw_bus_reset_callback_t)(struct fw_card *handle,
135 int node_id, int generation,
136 u32 *self_ids,
137 int self_id_count,
138 void *callback_data);
139
140 struct fw_packet {
141 int speed;
142 int generation;
143 u32 header[4];
144 size_t header_length;
145 void *payload;
146 size_t payload_length;
147 u32 timestamp;
148
149 /*
150 * This callback is called when the packet transmission has
151 * completed; for successful transmission, the status code is
152 * the ack received from the destination, otherwise it's a
153 * negative errno: ENOMEM, ESTALE, ETIMEDOUT, ENODEV, EIO.
154 * The callback can be called from tasklet context and thus
155 * must never block.
156 */
157 fw_packet_callback_t callback;
158 int ack;
159 struct list_head link;
160 void *driver_data;
161 };
162
163 struct fw_transaction {
164 int node_id; /* The generation is implied; it is always the current. */
165 int tlabel;
166 int timestamp;
167 struct list_head link;
168
169 struct fw_packet packet;
170
171 /*
172 * The data passed to the callback is valid only during the
173 * callback.
174 */
175 fw_transaction_callback_t callback;
176 void *callback_data;
177 };
178
179 static inline struct fw_packet *
180 fw_packet(struct list_head *l)
181 {
182 return list_entry(l, struct fw_packet, link);
183 }
184
185 struct fw_address_handler {
186 u64 offset;
187 size_t length;
188 fw_address_callback_t address_callback;
189 void *callback_data;
190 struct list_head link;
191 };
192
193
194 struct fw_address_region {
195 u64 start;
196 u64 end;
197 };
198
199 extern const struct fw_address_region fw_low_memory_region;
200 extern const struct fw_address_region fw_high_memory_region;
201 extern const struct fw_address_region fw_private_region;
202 extern const struct fw_address_region fw_csr_region;
203 extern const struct fw_address_region fw_unit_space_region;
204
205 int fw_core_add_address_handler(struct fw_address_handler *handler,
206 const struct fw_address_region *region);
207 void fw_core_remove_address_handler(struct fw_address_handler *handler);
208 void fw_fill_response(struct fw_packet *response, u32 *request_header,
209 int rcode, void *payload, size_t length);
210 void fw_send_response(struct fw_card *card,
211 struct fw_request *request, int rcode);
212
213 extern struct bus_type fw_bus_type;
214
215 struct fw_card {
216 const struct fw_card_driver *driver;
217 struct device *device;
218 struct kref kref;
219
220 int node_id;
221 int generation;
222 /* This is the generation used for timestamping incoming requests. */
223 int request_generation;
224 int current_tlabel, tlabel_mask;
225 struct list_head transaction_list;
226 struct timer_list flush_timer;
227 unsigned long reset_jiffies;
228
229 unsigned long long guid;
230 int max_receive;
231 int link_speed;
232 int config_rom_generation;
233
234 /*
235 * We need to store up to 4 self ID for a maximum of 63
236 * devices plus 3 words for the topology map header.
237 */
238 int self_id_count;
239 u32 topology_map[252 + 3];
240
241 spinlock_t lock; /* Take this lock when handling the lists in
242 * this struct. */
243 struct fw_node *local_node;
244 struct fw_node *root_node;
245 struct fw_node *irm_node;
246 int color;
247 int gap_count;
248 bool beta_repeaters_present;
249
250 int index;
251
252 struct list_head link;
253
254 /* Work struct for BM duties. */
255 struct delayed_work work;
256 int bm_retries;
257 int bm_generation;
258 };
259
260 struct fw_card *fw_card_get(struct fw_card *card);
261 void fw_card_put(struct fw_card *card);
262
263 /*
264 * The iso packet format allows for an immediate header/payload part
265 * stored in 'header' immediately after the packet info plus an
266 * indirect payload part that is pointer to by the 'payload' field.
267 * Applications can use one or the other or both to implement simple
268 * low-bandwidth streaming (e.g. audio) or more advanced
269 * scatter-gather streaming (e.g. assembling video frame automatically).
270 */
271
272 struct fw_iso_packet {
273 u16 payload_length; /* Length of indirect payload. */
274 u32 interrupt : 1; /* Generate interrupt on this packet */
275 u32 skip : 1; /* Set to not send packet at all. */
276 u32 tag : 2;
277 u32 sy : 4;
278 u32 header_length : 8; /* Length of immediate header. */
279 u32 header[0];
280 };
281
282 #define FW_ISO_CONTEXT_TRANSMIT 0
283 #define FW_ISO_CONTEXT_RECEIVE 1
284
285 #define FW_ISO_CONTEXT_MATCH_TAG0 1
286 #define FW_ISO_CONTEXT_MATCH_TAG1 2
287 #define FW_ISO_CONTEXT_MATCH_TAG2 4
288 #define FW_ISO_CONTEXT_MATCH_TAG3 8
289 #define FW_ISO_CONTEXT_MATCH_ALL_TAGS 15
290
291 struct fw_iso_context;
292
293 typedef void (*fw_iso_callback_t)(struct fw_iso_context *context,
294 u32 cycle,
295 size_t header_length,
296 void *header,
297 void *data);
298
299 /*
300 * An iso buffer is just a set of pages mapped for DMA in the
301 * specified direction. Since the pages are to be used for DMA, they
302 * are not mapped into the kernel virtual address space. We store the
303 * DMA address in the page private. The helper function
304 * fw_iso_buffer_map() will map the pages into a given vma.
305 */
306
307 struct fw_iso_buffer {
308 enum dma_data_direction direction;
309 struct page **pages;
310 int page_count;
311 };
312
313 struct fw_iso_context {
314 struct fw_card *card;
315 int type;
316 int channel;
317 int speed;
318 size_t header_size;
319 fw_iso_callback_t callback;
320 void *callback_data;
321 };
322
323 int
324 fw_iso_buffer_init(struct fw_iso_buffer *buffer,
325 struct fw_card *card,
326 int page_count,
327 enum dma_data_direction direction);
328 int
329 fw_iso_buffer_map(struct fw_iso_buffer *buffer, struct vm_area_struct *vma);
330 void
331 fw_iso_buffer_destroy(struct fw_iso_buffer *buffer, struct fw_card *card);
332
333 struct fw_iso_context *
334 fw_iso_context_create(struct fw_card *card, int type,
335 int channel, int speed, size_t header_size,
336 fw_iso_callback_t callback, void *callback_data);
337
338 void
339 fw_iso_context_destroy(struct fw_iso_context *ctx);
340
341 int
342 fw_iso_context_queue(struct fw_iso_context *ctx,
343 struct fw_iso_packet *packet,
344 struct fw_iso_buffer *buffer,
345 unsigned long payload);
346
347 int
348 fw_iso_context_start(struct fw_iso_context *ctx,
349 int cycle, int sync, int tags);
350
351 int
352 fw_iso_context_stop(struct fw_iso_context *ctx);
353
354 struct fw_card_driver {
355 const char *name;
356
357 /*
358 * Enable the given card with the given initial config rom.
359 * This function is expected to activate the card, and either
360 * enable the PHY or set the link_on bit and initiate a bus
361 * reset.
362 */
363 int (*enable)(struct fw_card *card, u32 *config_rom, size_t length);
364
365 int (*update_phy_reg)(struct fw_card *card, int address,
366 int clear_bits, int set_bits);
367
368 /*
369 * Update the config rom for an enabled card. This function
370 * should change the config rom that is presented on the bus
371 * an initiate a bus reset.
372 */
373 int (*set_config_rom)(struct fw_card *card,
374 u32 *config_rom, size_t length);
375
376 void (*send_request)(struct fw_card *card, struct fw_packet *packet);
377 void (*send_response)(struct fw_card *card, struct fw_packet *packet);
378 /* Calling cancel is valid once a packet has been submitted. */
379 int (*cancel_packet)(struct fw_card *card, struct fw_packet *packet);
380
381 /*
382 * Allow the specified node ID to do direct DMA out and in of
383 * host memory. The card will disable this for all node when
384 * a bus reset happens, so driver need to reenable this after
385 * bus reset. Returns 0 on success, -ENODEV if the card
386 * doesn't support this, -ESTALE if the generation doesn't
387 * match.
388 */
389 int (*enable_phys_dma)(struct fw_card *card,
390 int node_id, int generation);
391
392 u64 (*get_bus_time)(struct fw_card *card);
393
394 struct fw_iso_context *
395 (*allocate_iso_context)(struct fw_card *card,
396 int type, size_t header_size);
397 void (*free_iso_context)(struct fw_iso_context *ctx);
398
399 int (*start_iso)(struct fw_iso_context *ctx,
400 s32 cycle, u32 sync, u32 tags);
401
402 int (*queue_iso)(struct fw_iso_context *ctx,
403 struct fw_iso_packet *packet,
404 struct fw_iso_buffer *buffer,
405 unsigned long payload);
406
407 int (*stop_iso)(struct fw_iso_context *ctx);
408 };
409
410 int
411 fw_core_initiate_bus_reset(struct fw_card *card, int short_reset);
412
413 void
414 fw_send_request(struct fw_card *card, struct fw_transaction *t,
415 int tcode, int node_id, int generation, int speed,
416 unsigned long long offset,
417 void *data, size_t length,
418 fw_transaction_callback_t callback, void *callback_data);
419
420 int fw_cancel_transaction(struct fw_card *card,
421 struct fw_transaction *transaction);
422
423 void fw_flush_transactions(struct fw_card *card);
424
425 void fw_send_phy_config(struct fw_card *card,
426 int node_id, int generation, int gap_count);
427
428 /*
429 * Called by the topology code to inform the device code of node
430 * activity; found, lost, or updated nodes.
431 */
432 void
433 fw_node_event(struct fw_card *card, struct fw_node *node, int event);
434
435 /* API used by card level drivers */
436
437 void
438 fw_card_initialize(struct fw_card *card, const struct fw_card_driver *driver,
439 struct device *device);
440 int
441 fw_card_add(struct fw_card *card,
442 u32 max_receive, u32 link_speed, u64 guid);
443
444 void
445 fw_core_remove_card(struct fw_card *card);
446
447 void
448 fw_core_handle_bus_reset(struct fw_card *card,
449 int node_id, int generation,
450 int self_id_count, u32 *self_ids);
451 void
452 fw_core_handle_request(struct fw_card *card, struct fw_packet *request);
453
454 void
455 fw_core_handle_response(struct fw_card *card, struct fw_packet *packet);
456
457 #endif /* __fw_transaction_h */
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