Merge tag 'firewire-update2' of git://git.kernel.org/pub/scm/linux/kernel/git/ieee139...
[deliverable/linux.git] / drivers / net / ethernet / qlogic / qed / qed_main.c
1 /* QLogic qed NIC Driver
2 * Copyright (c) 2015 QLogic Corporation
3 *
4 * This software is available under the terms of the GNU General Public License
5 * (GPL) Version 2, available from the file COPYING in the main directory of
6 * this source tree.
7 */
8
9 #include <linux/stddef.h>
10 #include <linux/pci.h>
11 #include <linux/kernel.h>
12 #include <linux/slab.h>
13 #include <linux/version.h>
14 #include <linux/delay.h>
15 #include <asm/byteorder.h>
16 #include <linux/dma-mapping.h>
17 #include <linux/string.h>
18 #include <linux/module.h>
19 #include <linux/interrupt.h>
20 #include <linux/workqueue.h>
21 #include <linux/ethtool.h>
22 #include <linux/etherdevice.h>
23 #include <linux/vmalloc.h>
24 #include <linux/qed/qed_if.h>
25
26 #include "qed.h"
27 #include "qed_sp.h"
28 #include "qed_dev_api.h"
29 #include "qed_mcp.h"
30 #include "qed_hw.h"
31
32 static char version[] =
33 "QLogic FastLinQ 4xxxx Core Module qed " DRV_MODULE_VERSION "\n";
34
35 MODULE_DESCRIPTION("QLogic FastLinQ 4xxxx Core Module");
36 MODULE_LICENSE("GPL");
37 MODULE_VERSION(DRV_MODULE_VERSION);
38
39 #define FW_FILE_VERSION \
40 __stringify(FW_MAJOR_VERSION) "." \
41 __stringify(FW_MINOR_VERSION) "." \
42 __stringify(FW_REVISION_VERSION) "." \
43 __stringify(FW_ENGINEERING_VERSION)
44
45 #define QED_FW_FILE_NAME \
46 "qed/qed_init_values_zipped-" FW_FILE_VERSION ".bin"
47
48 MODULE_FIRMWARE(QED_FW_FILE_NAME);
49
50 static int __init qed_init(void)
51 {
52 pr_notice("qed_init called\n");
53
54 pr_info("%s", version);
55
56 return 0;
57 }
58
59 static void __exit qed_cleanup(void)
60 {
61 pr_notice("qed_cleanup called\n");
62 }
63
64 module_init(qed_init);
65 module_exit(qed_cleanup);
66
67 /* Check if the DMA controller on the machine can properly handle the DMA
68 * addressing required by the device.
69 */
70 static int qed_set_coherency_mask(struct qed_dev *cdev)
71 {
72 struct device *dev = &cdev->pdev->dev;
73
74 if (dma_set_mask(dev, DMA_BIT_MASK(64)) == 0) {
75 if (dma_set_coherent_mask(dev, DMA_BIT_MASK(64)) != 0) {
76 DP_NOTICE(cdev,
77 "Can't request 64-bit consistent allocations\n");
78 return -EIO;
79 }
80 } else if (dma_set_mask(dev, DMA_BIT_MASK(32)) != 0) {
81 DP_NOTICE(cdev, "Can't request 64b/32b DMA addresses\n");
82 return -EIO;
83 }
84
85 return 0;
86 }
87
88 static void qed_free_pci(struct qed_dev *cdev)
89 {
90 struct pci_dev *pdev = cdev->pdev;
91
92 if (cdev->doorbells)
93 iounmap(cdev->doorbells);
94 if (cdev->regview)
95 iounmap(cdev->regview);
96 if (atomic_read(&pdev->enable_cnt) == 1)
97 pci_release_regions(pdev);
98
99 pci_disable_device(pdev);
100 }
101
102 #define PCI_REVISION_ID_ERROR_VAL 0xff
103
104 /* Performs PCI initializations as well as initializing PCI-related parameters
105 * in the device structrue. Returns 0 in case of success.
106 */
107 static int qed_init_pci(struct qed_dev *cdev,
108 struct pci_dev *pdev)
109 {
110 u8 rev_id;
111 int rc;
112
113 cdev->pdev = pdev;
114
115 rc = pci_enable_device(pdev);
116 if (rc) {
117 DP_NOTICE(cdev, "Cannot enable PCI device\n");
118 goto err0;
119 }
120
121 if (!(pci_resource_flags(pdev, 0) & IORESOURCE_MEM)) {
122 DP_NOTICE(cdev, "No memory region found in bar #0\n");
123 rc = -EIO;
124 goto err1;
125 }
126
127 if (!(pci_resource_flags(pdev, 2) & IORESOURCE_MEM)) {
128 DP_NOTICE(cdev, "No memory region found in bar #2\n");
129 rc = -EIO;
130 goto err1;
131 }
132
133 if (atomic_read(&pdev->enable_cnt) == 1) {
134 rc = pci_request_regions(pdev, "qed");
135 if (rc) {
136 DP_NOTICE(cdev,
137 "Failed to request PCI memory resources\n");
138 goto err1;
139 }
140 pci_set_master(pdev);
141 pci_save_state(pdev);
142 }
143
144 pci_read_config_byte(pdev, PCI_REVISION_ID, &rev_id);
145 if (rev_id == PCI_REVISION_ID_ERROR_VAL) {
146 DP_NOTICE(cdev,
147 "Detected PCI device error [rev_id 0x%x]. Probably due to prior indication. Aborting.\n",
148 rev_id);
149 rc = -ENODEV;
150 goto err2;
151 }
152 if (!pci_is_pcie(pdev)) {
153 DP_NOTICE(cdev, "The bus is not PCI Express\n");
154 rc = -EIO;
155 goto err2;
156 }
157
158 cdev->pci_params.pm_cap = pci_find_capability(pdev, PCI_CAP_ID_PM);
159 if (cdev->pci_params.pm_cap == 0)
160 DP_NOTICE(cdev, "Cannot find power management capability\n");
161
162 rc = qed_set_coherency_mask(cdev);
163 if (rc)
164 goto err2;
165
166 cdev->pci_params.mem_start = pci_resource_start(pdev, 0);
167 cdev->pci_params.mem_end = pci_resource_end(pdev, 0);
168 cdev->pci_params.irq = pdev->irq;
169
170 cdev->regview = pci_ioremap_bar(pdev, 0);
171 if (!cdev->regview) {
172 DP_NOTICE(cdev, "Cannot map register space, aborting\n");
173 rc = -ENOMEM;
174 goto err2;
175 }
176
177 cdev->db_phys_addr = pci_resource_start(cdev->pdev, 2);
178 cdev->db_size = pci_resource_len(cdev->pdev, 2);
179 cdev->doorbells = ioremap_wc(cdev->db_phys_addr, cdev->db_size);
180 if (!cdev->doorbells) {
181 DP_NOTICE(cdev, "Cannot map doorbell space\n");
182 return -ENOMEM;
183 }
184
185 return 0;
186
187 err2:
188 pci_release_regions(pdev);
189 err1:
190 pci_disable_device(pdev);
191 err0:
192 return rc;
193 }
194
195 int qed_fill_dev_info(struct qed_dev *cdev,
196 struct qed_dev_info *dev_info)
197 {
198 struct qed_ptt *ptt;
199
200 memset(dev_info, 0, sizeof(struct qed_dev_info));
201
202 dev_info->num_hwfns = cdev->num_hwfns;
203 dev_info->pci_mem_start = cdev->pci_params.mem_start;
204 dev_info->pci_mem_end = cdev->pci_params.mem_end;
205 dev_info->pci_irq = cdev->pci_params.irq;
206 dev_info->is_mf_default = IS_MF_DEFAULT(&cdev->hwfns[0]);
207 ether_addr_copy(dev_info->hw_mac, cdev->hwfns[0].hw_info.hw_mac_addr);
208
209 dev_info->fw_major = FW_MAJOR_VERSION;
210 dev_info->fw_minor = FW_MINOR_VERSION;
211 dev_info->fw_rev = FW_REVISION_VERSION;
212 dev_info->fw_eng = FW_ENGINEERING_VERSION;
213 dev_info->mf_mode = cdev->mf_mode;
214
215 qed_mcp_get_mfw_ver(cdev, &dev_info->mfw_rev);
216
217 ptt = qed_ptt_acquire(QED_LEADING_HWFN(cdev));
218 if (ptt) {
219 qed_mcp_get_flash_size(QED_LEADING_HWFN(cdev), ptt,
220 &dev_info->flash_size);
221
222 qed_ptt_release(QED_LEADING_HWFN(cdev), ptt);
223 }
224
225 return 0;
226 }
227
228 static void qed_free_cdev(struct qed_dev *cdev)
229 {
230 kfree((void *)cdev);
231 }
232
233 static struct qed_dev *qed_alloc_cdev(struct pci_dev *pdev)
234 {
235 struct qed_dev *cdev;
236
237 cdev = kzalloc(sizeof(*cdev), GFP_KERNEL);
238 if (!cdev)
239 return cdev;
240
241 qed_init_struct(cdev);
242
243 return cdev;
244 }
245
246 /* Sets the requested power state */
247 static int qed_set_power_state(struct qed_dev *cdev,
248 pci_power_t state)
249 {
250 if (!cdev)
251 return -ENODEV;
252
253 DP_VERBOSE(cdev, NETIF_MSG_DRV, "Omitting Power state change\n");
254 return 0;
255 }
256
257 /* probing */
258 static struct qed_dev *qed_probe(struct pci_dev *pdev,
259 enum qed_protocol protocol,
260 u32 dp_module,
261 u8 dp_level)
262 {
263 struct qed_dev *cdev;
264 int rc;
265
266 cdev = qed_alloc_cdev(pdev);
267 if (!cdev)
268 goto err0;
269
270 cdev->protocol = protocol;
271
272 qed_init_dp(cdev, dp_module, dp_level);
273
274 rc = qed_init_pci(cdev, pdev);
275 if (rc) {
276 DP_ERR(cdev, "init pci failed\n");
277 goto err1;
278 }
279 DP_INFO(cdev, "PCI init completed successfully\n");
280
281 rc = qed_hw_prepare(cdev, QED_PCI_DEFAULT);
282 if (rc) {
283 DP_ERR(cdev, "hw prepare failed\n");
284 goto err2;
285 }
286
287 DP_INFO(cdev, "qed_probe completed successffuly\n");
288
289 return cdev;
290
291 err2:
292 qed_free_pci(cdev);
293 err1:
294 qed_free_cdev(cdev);
295 err0:
296 return NULL;
297 }
298
299 static void qed_remove(struct qed_dev *cdev)
300 {
301 if (!cdev)
302 return;
303
304 qed_hw_remove(cdev);
305
306 qed_free_pci(cdev);
307
308 qed_set_power_state(cdev, PCI_D3hot);
309
310 qed_free_cdev(cdev);
311 }
312
313 static void qed_disable_msix(struct qed_dev *cdev)
314 {
315 if (cdev->int_params.out.int_mode == QED_INT_MODE_MSIX) {
316 pci_disable_msix(cdev->pdev);
317 kfree(cdev->int_params.msix_table);
318 } else if (cdev->int_params.out.int_mode == QED_INT_MODE_MSI) {
319 pci_disable_msi(cdev->pdev);
320 }
321
322 memset(&cdev->int_params.out, 0, sizeof(struct qed_int_param));
323 }
324
325 static int qed_enable_msix(struct qed_dev *cdev,
326 struct qed_int_params *int_params)
327 {
328 int i, rc, cnt;
329
330 cnt = int_params->in.num_vectors;
331
332 for (i = 0; i < cnt; i++)
333 int_params->msix_table[i].entry = i;
334
335 rc = pci_enable_msix_range(cdev->pdev, int_params->msix_table,
336 int_params->in.min_msix_cnt, cnt);
337 if (rc < cnt && rc >= int_params->in.min_msix_cnt &&
338 (rc % cdev->num_hwfns)) {
339 pci_disable_msix(cdev->pdev);
340
341 /* If fastpath is initialized, we need at least one interrupt
342 * per hwfn [and the slow path interrupts]. New requested number
343 * should be a multiple of the number of hwfns.
344 */
345 cnt = (rc / cdev->num_hwfns) * cdev->num_hwfns;
346 DP_NOTICE(cdev,
347 "Trying to enable MSI-X with less vectors (%d out of %d)\n",
348 cnt, int_params->in.num_vectors);
349 rc = pci_enable_msix_exact(cdev->pdev,
350 int_params->msix_table, cnt);
351 if (!rc)
352 rc = cnt;
353 }
354
355 if (rc > 0) {
356 /* MSI-x configuration was achieved */
357 int_params->out.int_mode = QED_INT_MODE_MSIX;
358 int_params->out.num_vectors = rc;
359 rc = 0;
360 } else {
361 DP_NOTICE(cdev,
362 "Failed to enable MSI-X [Requested %d vectors][rc %d]\n",
363 cnt, rc);
364 }
365
366 return rc;
367 }
368
369 /* This function outputs the int mode and the number of enabled msix vector */
370 static int qed_set_int_mode(struct qed_dev *cdev, bool force_mode)
371 {
372 struct qed_int_params *int_params = &cdev->int_params;
373 struct msix_entry *tbl;
374 int rc = 0, cnt;
375
376 switch (int_params->in.int_mode) {
377 case QED_INT_MODE_MSIX:
378 /* Allocate MSIX table */
379 cnt = int_params->in.num_vectors;
380 int_params->msix_table = kcalloc(cnt, sizeof(*tbl), GFP_KERNEL);
381 if (!int_params->msix_table) {
382 rc = -ENOMEM;
383 goto out;
384 }
385
386 /* Enable MSIX */
387 rc = qed_enable_msix(cdev, int_params);
388 if (!rc)
389 goto out;
390
391 DP_NOTICE(cdev, "Failed to enable MSI-X\n");
392 kfree(int_params->msix_table);
393 if (force_mode)
394 goto out;
395 /* Fallthrough */
396
397 case QED_INT_MODE_MSI:
398 rc = pci_enable_msi(cdev->pdev);
399 if (!rc) {
400 int_params->out.int_mode = QED_INT_MODE_MSI;
401 goto out;
402 }
403
404 DP_NOTICE(cdev, "Failed to enable MSI\n");
405 if (force_mode)
406 goto out;
407 /* Fallthrough */
408
409 case QED_INT_MODE_INTA:
410 int_params->out.int_mode = QED_INT_MODE_INTA;
411 rc = 0;
412 goto out;
413 default:
414 DP_NOTICE(cdev, "Unknown int_mode value %d\n",
415 int_params->in.int_mode);
416 rc = -EINVAL;
417 }
418
419 out:
420 cdev->int_coalescing_mode = QED_COAL_MODE_ENABLE;
421
422 return rc;
423 }
424
425 static void qed_simd_handler_config(struct qed_dev *cdev, void *token,
426 int index, void(*handler)(void *))
427 {
428 struct qed_hwfn *hwfn = &cdev->hwfns[index % cdev->num_hwfns];
429 int relative_idx = index / cdev->num_hwfns;
430
431 hwfn->simd_proto_handler[relative_idx].func = handler;
432 hwfn->simd_proto_handler[relative_idx].token = token;
433 }
434
435 static void qed_simd_handler_clean(struct qed_dev *cdev, int index)
436 {
437 struct qed_hwfn *hwfn = &cdev->hwfns[index % cdev->num_hwfns];
438 int relative_idx = index / cdev->num_hwfns;
439
440 memset(&hwfn->simd_proto_handler[relative_idx], 0,
441 sizeof(struct qed_simd_fp_handler));
442 }
443
444 static irqreturn_t qed_msix_sp_int(int irq, void *tasklet)
445 {
446 tasklet_schedule((struct tasklet_struct *)tasklet);
447 return IRQ_HANDLED;
448 }
449
450 static irqreturn_t qed_single_int(int irq, void *dev_instance)
451 {
452 struct qed_dev *cdev = (struct qed_dev *)dev_instance;
453 struct qed_hwfn *hwfn;
454 irqreturn_t rc = IRQ_NONE;
455 u64 status;
456 int i, j;
457
458 for (i = 0; i < cdev->num_hwfns; i++) {
459 status = qed_int_igu_read_sisr_reg(&cdev->hwfns[i]);
460
461 if (!status)
462 continue;
463
464 hwfn = &cdev->hwfns[i];
465
466 /* Slowpath interrupt */
467 if (unlikely(status & 0x1)) {
468 tasklet_schedule(hwfn->sp_dpc);
469 status &= ~0x1;
470 rc = IRQ_HANDLED;
471 }
472
473 /* Fastpath interrupts */
474 for (j = 0; j < 64; j++) {
475 if ((0x2ULL << j) & status) {
476 hwfn->simd_proto_handler[j].func(
477 hwfn->simd_proto_handler[j].token);
478 status &= ~(0x2ULL << j);
479 rc = IRQ_HANDLED;
480 }
481 }
482
483 if (unlikely(status))
484 DP_VERBOSE(hwfn, NETIF_MSG_INTR,
485 "got an unknown interrupt status 0x%llx\n",
486 status);
487 }
488
489 return rc;
490 }
491
492 int qed_slowpath_irq_req(struct qed_hwfn *hwfn)
493 {
494 struct qed_dev *cdev = hwfn->cdev;
495 int rc = 0;
496 u8 id;
497
498 if (cdev->int_params.out.int_mode == QED_INT_MODE_MSIX) {
499 id = hwfn->my_id;
500 snprintf(hwfn->name, NAME_SIZE, "sp-%d-%02x:%02x.%02x",
501 id, cdev->pdev->bus->number,
502 PCI_SLOT(cdev->pdev->devfn), hwfn->abs_pf_id);
503 rc = request_irq(cdev->int_params.msix_table[id].vector,
504 qed_msix_sp_int, 0, hwfn->name, hwfn->sp_dpc);
505 if (!rc)
506 DP_VERBOSE(hwfn, (NETIF_MSG_INTR | QED_MSG_SP),
507 "Requested slowpath MSI-X\n");
508 } else {
509 unsigned long flags = 0;
510
511 snprintf(cdev->name, NAME_SIZE, "%02x:%02x.%02x",
512 cdev->pdev->bus->number, PCI_SLOT(cdev->pdev->devfn),
513 PCI_FUNC(cdev->pdev->devfn));
514
515 if (cdev->int_params.out.int_mode == QED_INT_MODE_INTA)
516 flags |= IRQF_SHARED;
517
518 rc = request_irq(cdev->pdev->irq, qed_single_int,
519 flags, cdev->name, cdev);
520 }
521
522 return rc;
523 }
524
525 static void qed_slowpath_irq_free(struct qed_dev *cdev)
526 {
527 int i;
528
529 if (cdev->int_params.out.int_mode == QED_INT_MODE_MSIX) {
530 for_each_hwfn(cdev, i) {
531 if (!cdev->hwfns[i].b_int_requested)
532 break;
533 synchronize_irq(cdev->int_params.msix_table[i].vector);
534 free_irq(cdev->int_params.msix_table[i].vector,
535 cdev->hwfns[i].sp_dpc);
536 }
537 } else {
538 if (QED_LEADING_HWFN(cdev)->b_int_requested)
539 free_irq(cdev->pdev->irq, cdev);
540 }
541 qed_int_disable_post_isr_release(cdev);
542 }
543
544 static int qed_nic_stop(struct qed_dev *cdev)
545 {
546 int i, rc;
547
548 rc = qed_hw_stop(cdev);
549
550 for (i = 0; i < cdev->num_hwfns; i++) {
551 struct qed_hwfn *p_hwfn = &cdev->hwfns[i];
552
553 if (p_hwfn->b_sp_dpc_enabled) {
554 tasklet_disable(p_hwfn->sp_dpc);
555 p_hwfn->b_sp_dpc_enabled = false;
556 DP_VERBOSE(cdev, NETIF_MSG_IFDOWN,
557 "Disabled sp taskelt [hwfn %d] at %p\n",
558 i, p_hwfn->sp_dpc);
559 }
560 }
561
562 return rc;
563 }
564
565 static int qed_nic_reset(struct qed_dev *cdev)
566 {
567 int rc;
568
569 rc = qed_hw_reset(cdev);
570 if (rc)
571 return rc;
572
573 qed_resc_free(cdev);
574
575 return 0;
576 }
577
578 static int qed_nic_setup(struct qed_dev *cdev)
579 {
580 int rc;
581
582 rc = qed_resc_alloc(cdev);
583 if (rc)
584 return rc;
585
586 DP_INFO(cdev, "Allocated qed resources\n");
587
588 qed_resc_setup(cdev);
589
590 return rc;
591 }
592
593 static int qed_set_int_fp(struct qed_dev *cdev, u16 cnt)
594 {
595 int limit = 0;
596
597 /* Mark the fastpath as free/used */
598 cdev->int_params.fp_initialized = cnt ? true : false;
599
600 if (cdev->int_params.out.int_mode != QED_INT_MODE_MSIX)
601 limit = cdev->num_hwfns * 63;
602 else if (cdev->int_params.fp_msix_cnt)
603 limit = cdev->int_params.fp_msix_cnt;
604
605 if (!limit)
606 return -ENOMEM;
607
608 return min_t(int, cnt, limit);
609 }
610
611 static int qed_get_int_fp(struct qed_dev *cdev, struct qed_int_info *info)
612 {
613 memset(info, 0, sizeof(struct qed_int_info));
614
615 if (!cdev->int_params.fp_initialized) {
616 DP_INFO(cdev,
617 "Protocol driver requested interrupt information, but its support is not yet configured\n");
618 return -EINVAL;
619 }
620
621 /* Need to expose only MSI-X information; Single IRQ is handled solely
622 * by qed.
623 */
624 if (cdev->int_params.out.int_mode == QED_INT_MODE_MSIX) {
625 int msix_base = cdev->int_params.fp_msix_base;
626
627 info->msix_cnt = cdev->int_params.fp_msix_cnt;
628 info->msix = &cdev->int_params.msix_table[msix_base];
629 }
630
631 return 0;
632 }
633
634 static int qed_slowpath_setup_int(struct qed_dev *cdev,
635 enum qed_int_mode int_mode)
636 {
637 struct qed_sb_cnt_info sb_cnt_info;
638 int rc;
639 int i;
640 memset(&cdev->int_params, 0, sizeof(struct qed_int_params));
641
642 cdev->int_params.in.int_mode = int_mode;
643 for_each_hwfn(cdev, i) {
644 memset(&sb_cnt_info, 0, sizeof(sb_cnt_info));
645 qed_int_get_num_sbs(&cdev->hwfns[i], &sb_cnt_info);
646 cdev->int_params.in.num_vectors += sb_cnt_info.sb_cnt;
647 cdev->int_params.in.num_vectors++; /* slowpath */
648 }
649
650 /* We want a minimum of one slowpath and one fastpath vector per hwfn */
651 cdev->int_params.in.min_msix_cnt = cdev->num_hwfns * 2;
652
653 rc = qed_set_int_mode(cdev, false);
654 if (rc) {
655 DP_ERR(cdev, "qed_slowpath_setup_int ERR\n");
656 return rc;
657 }
658
659 cdev->int_params.fp_msix_base = cdev->num_hwfns;
660 cdev->int_params.fp_msix_cnt = cdev->int_params.out.num_vectors -
661 cdev->num_hwfns;
662
663 return 0;
664 }
665
666 u32 qed_unzip_data(struct qed_hwfn *p_hwfn, u32 input_len,
667 u8 *input_buf, u32 max_size, u8 *unzip_buf)
668 {
669 int rc;
670
671 p_hwfn->stream->next_in = input_buf;
672 p_hwfn->stream->avail_in = input_len;
673 p_hwfn->stream->next_out = unzip_buf;
674 p_hwfn->stream->avail_out = max_size;
675
676 rc = zlib_inflateInit2(p_hwfn->stream, MAX_WBITS);
677
678 if (rc != Z_OK) {
679 DP_VERBOSE(p_hwfn, NETIF_MSG_DRV, "zlib init failed, rc = %d\n",
680 rc);
681 return 0;
682 }
683
684 rc = zlib_inflate(p_hwfn->stream, Z_FINISH);
685 zlib_inflateEnd(p_hwfn->stream);
686
687 if (rc != Z_OK && rc != Z_STREAM_END) {
688 DP_VERBOSE(p_hwfn, NETIF_MSG_DRV, "FW unzip error: %s, rc=%d\n",
689 p_hwfn->stream->msg, rc);
690 return 0;
691 }
692
693 return p_hwfn->stream->total_out / 4;
694 }
695
696 static int qed_alloc_stream_mem(struct qed_dev *cdev)
697 {
698 int i;
699 void *workspace;
700
701 for_each_hwfn(cdev, i) {
702 struct qed_hwfn *p_hwfn = &cdev->hwfns[i];
703
704 p_hwfn->stream = kzalloc(sizeof(*p_hwfn->stream), GFP_KERNEL);
705 if (!p_hwfn->stream)
706 return -ENOMEM;
707
708 workspace = vzalloc(zlib_inflate_workspacesize());
709 if (!workspace)
710 return -ENOMEM;
711 p_hwfn->stream->workspace = workspace;
712 }
713
714 return 0;
715 }
716
717 static void qed_free_stream_mem(struct qed_dev *cdev)
718 {
719 int i;
720
721 for_each_hwfn(cdev, i) {
722 struct qed_hwfn *p_hwfn = &cdev->hwfns[i];
723
724 if (!p_hwfn->stream)
725 return;
726
727 vfree(p_hwfn->stream->workspace);
728 kfree(p_hwfn->stream);
729 }
730 }
731
732 static void qed_update_pf_params(struct qed_dev *cdev,
733 struct qed_pf_params *params)
734 {
735 int i;
736
737 for (i = 0; i < cdev->num_hwfns; i++) {
738 struct qed_hwfn *p_hwfn = &cdev->hwfns[i];
739
740 p_hwfn->pf_params = *params;
741 }
742 }
743
744 static int qed_slowpath_start(struct qed_dev *cdev,
745 struct qed_slowpath_params *params)
746 {
747 struct qed_mcp_drv_version drv_version;
748 const u8 *data = NULL;
749 struct qed_hwfn *hwfn;
750 int rc;
751
752 rc = request_firmware(&cdev->firmware, QED_FW_FILE_NAME,
753 &cdev->pdev->dev);
754 if (rc) {
755 DP_NOTICE(cdev,
756 "Failed to find fw file - /lib/firmware/%s\n",
757 QED_FW_FILE_NAME);
758 goto err;
759 }
760
761 rc = qed_nic_setup(cdev);
762 if (rc)
763 goto err;
764
765 rc = qed_slowpath_setup_int(cdev, params->int_mode);
766 if (rc)
767 goto err1;
768
769 /* Allocate stream for unzipping */
770 rc = qed_alloc_stream_mem(cdev);
771 if (rc) {
772 DP_NOTICE(cdev, "Failed to allocate stream memory\n");
773 goto err2;
774 }
775
776 /* Start the slowpath */
777 data = cdev->firmware->data;
778
779 rc = qed_hw_init(cdev, true, cdev->int_params.out.int_mode,
780 true, data);
781 if (rc)
782 goto err2;
783
784 DP_INFO(cdev,
785 "HW initialization and function start completed successfully\n");
786
787 hwfn = QED_LEADING_HWFN(cdev);
788 drv_version.version = (params->drv_major << 24) |
789 (params->drv_minor << 16) |
790 (params->drv_rev << 8) |
791 (params->drv_eng);
792 strlcpy(drv_version.name, params->name,
793 MCP_DRV_VER_STR_SIZE - 4);
794 rc = qed_mcp_send_drv_version(hwfn, hwfn->p_main_ptt,
795 &drv_version);
796 if (rc) {
797 DP_NOTICE(cdev, "Failed sending drv version command\n");
798 return rc;
799 }
800
801 qed_reset_vport_stats(cdev);
802
803 return 0;
804
805 err2:
806 qed_hw_timers_stop_all(cdev);
807 qed_slowpath_irq_free(cdev);
808 qed_free_stream_mem(cdev);
809 qed_disable_msix(cdev);
810 err1:
811 qed_resc_free(cdev);
812 err:
813 release_firmware(cdev->firmware);
814
815 return rc;
816 }
817
818 static int qed_slowpath_stop(struct qed_dev *cdev)
819 {
820 if (!cdev)
821 return -ENODEV;
822
823 qed_free_stream_mem(cdev);
824
825 qed_nic_stop(cdev);
826 qed_slowpath_irq_free(cdev);
827
828 qed_disable_msix(cdev);
829 qed_nic_reset(cdev);
830
831 release_firmware(cdev->firmware);
832
833 return 0;
834 }
835
836 static void qed_set_id(struct qed_dev *cdev, char name[NAME_SIZE],
837 char ver_str[VER_SIZE])
838 {
839 int i;
840
841 memcpy(cdev->name, name, NAME_SIZE);
842 for_each_hwfn(cdev, i)
843 snprintf(cdev->hwfns[i].name, NAME_SIZE, "%s-%d", name, i);
844
845 memcpy(cdev->ver_str, ver_str, VER_SIZE);
846 cdev->drv_type = DRV_ID_DRV_TYPE_LINUX;
847 }
848
849 static u32 qed_sb_init(struct qed_dev *cdev,
850 struct qed_sb_info *sb_info,
851 void *sb_virt_addr,
852 dma_addr_t sb_phy_addr, u16 sb_id,
853 enum qed_sb_type type)
854 {
855 struct qed_hwfn *p_hwfn;
856 int hwfn_index;
857 u16 rel_sb_id;
858 u8 n_hwfns;
859 u32 rc;
860
861 /* RoCE uses single engine and CMT uses two engines. When using both
862 * we force only a single engine. Storage uses only engine 0 too.
863 */
864 if (type == QED_SB_TYPE_L2_QUEUE)
865 n_hwfns = cdev->num_hwfns;
866 else
867 n_hwfns = 1;
868
869 hwfn_index = sb_id % n_hwfns;
870 p_hwfn = &cdev->hwfns[hwfn_index];
871 rel_sb_id = sb_id / n_hwfns;
872
873 DP_VERBOSE(cdev, NETIF_MSG_INTR,
874 "hwfn [%d] <--[init]-- SB %04x [0x%04x upper]\n",
875 hwfn_index, rel_sb_id, sb_id);
876
877 rc = qed_int_sb_init(p_hwfn, p_hwfn->p_main_ptt, sb_info,
878 sb_virt_addr, sb_phy_addr, rel_sb_id);
879
880 return rc;
881 }
882
883 static u32 qed_sb_release(struct qed_dev *cdev,
884 struct qed_sb_info *sb_info,
885 u16 sb_id)
886 {
887 struct qed_hwfn *p_hwfn;
888 int hwfn_index;
889 u16 rel_sb_id;
890 u32 rc;
891
892 hwfn_index = sb_id % cdev->num_hwfns;
893 p_hwfn = &cdev->hwfns[hwfn_index];
894 rel_sb_id = sb_id / cdev->num_hwfns;
895
896 DP_VERBOSE(cdev, NETIF_MSG_INTR,
897 "hwfn [%d] <--[init]-- SB %04x [0x%04x upper]\n",
898 hwfn_index, rel_sb_id, sb_id);
899
900 rc = qed_int_sb_release(p_hwfn, sb_info, rel_sb_id);
901
902 return rc;
903 }
904
905 static int qed_set_link(struct qed_dev *cdev,
906 struct qed_link_params *params)
907 {
908 struct qed_hwfn *hwfn;
909 struct qed_mcp_link_params *link_params;
910 struct qed_ptt *ptt;
911 int rc;
912
913 if (!cdev)
914 return -ENODEV;
915
916 /* The link should be set only once per PF */
917 hwfn = &cdev->hwfns[0];
918
919 ptt = qed_ptt_acquire(hwfn);
920 if (!ptt)
921 return -EBUSY;
922
923 link_params = qed_mcp_get_link_params(hwfn);
924 if (params->override_flags & QED_LINK_OVERRIDE_SPEED_AUTONEG)
925 link_params->speed.autoneg = params->autoneg;
926 if (params->override_flags & QED_LINK_OVERRIDE_SPEED_ADV_SPEEDS) {
927 link_params->speed.advertised_speeds = 0;
928 if ((params->adv_speeds & SUPPORTED_1000baseT_Half) ||
929 (params->adv_speeds & SUPPORTED_1000baseT_Full))
930 link_params->speed.advertised_speeds |=
931 NVM_CFG1_PORT_DRV_SPEED_CAPABILITY_MASK_1G;
932 if (params->adv_speeds & SUPPORTED_10000baseKR_Full)
933 link_params->speed.advertised_speeds |=
934 NVM_CFG1_PORT_DRV_SPEED_CAPABILITY_MASK_10G;
935 if (params->adv_speeds & SUPPORTED_40000baseLR4_Full)
936 link_params->speed.advertised_speeds |=
937 NVM_CFG1_PORT_DRV_SPEED_CAPABILITY_MASK_40G;
938 if (params->adv_speeds & 0)
939 link_params->speed.advertised_speeds |=
940 NVM_CFG1_PORT_DRV_SPEED_CAPABILITY_MASK_50G;
941 if (params->adv_speeds & 0)
942 link_params->speed.advertised_speeds |=
943 NVM_CFG1_PORT_DRV_SPEED_CAPABILITY_MASK_100G;
944 }
945 if (params->override_flags & QED_LINK_OVERRIDE_SPEED_FORCED_SPEED)
946 link_params->speed.forced_speed = params->forced_speed;
947
948 rc = qed_mcp_set_link(hwfn, ptt, params->link_up);
949
950 qed_ptt_release(hwfn, ptt);
951
952 return rc;
953 }
954
955 static int qed_get_port_type(u32 media_type)
956 {
957 int port_type;
958
959 switch (media_type) {
960 case MEDIA_SFPP_10G_FIBER:
961 case MEDIA_SFP_1G_FIBER:
962 case MEDIA_XFP_FIBER:
963 case MEDIA_KR:
964 port_type = PORT_FIBRE;
965 break;
966 case MEDIA_DA_TWINAX:
967 port_type = PORT_DA;
968 break;
969 case MEDIA_BASE_T:
970 port_type = PORT_TP;
971 break;
972 case MEDIA_NOT_PRESENT:
973 port_type = PORT_NONE;
974 break;
975 case MEDIA_UNSPECIFIED:
976 default:
977 port_type = PORT_OTHER;
978 break;
979 }
980 return port_type;
981 }
982
983 static void qed_fill_link(struct qed_hwfn *hwfn,
984 struct qed_link_output *if_link)
985 {
986 struct qed_mcp_link_params params;
987 struct qed_mcp_link_state link;
988 struct qed_mcp_link_capabilities link_caps;
989 u32 media_type;
990
991 memset(if_link, 0, sizeof(*if_link));
992
993 /* Prepare source inputs */
994 memcpy(&params, qed_mcp_get_link_params(hwfn), sizeof(params));
995 memcpy(&link, qed_mcp_get_link_state(hwfn), sizeof(link));
996 memcpy(&link_caps, qed_mcp_get_link_capabilities(hwfn),
997 sizeof(link_caps));
998
999 /* Set the link parameters to pass to protocol driver */
1000 if (link.link_up)
1001 if_link->link_up = true;
1002
1003 /* TODO - at the moment assume supported and advertised speed equal */
1004 if_link->supported_caps = SUPPORTED_FIBRE;
1005 if (params.speed.autoneg)
1006 if_link->supported_caps |= SUPPORTED_Autoneg;
1007 if (params.pause.autoneg ||
1008 (params.pause.forced_rx && params.pause.forced_tx))
1009 if_link->supported_caps |= SUPPORTED_Asym_Pause;
1010 if (params.pause.autoneg || params.pause.forced_rx ||
1011 params.pause.forced_tx)
1012 if_link->supported_caps |= SUPPORTED_Pause;
1013
1014 if_link->advertised_caps = if_link->supported_caps;
1015 if (params.speed.advertised_speeds &
1016 NVM_CFG1_PORT_DRV_SPEED_CAPABILITY_MASK_1G)
1017 if_link->advertised_caps |= SUPPORTED_1000baseT_Half |
1018 SUPPORTED_1000baseT_Full;
1019 if (params.speed.advertised_speeds &
1020 NVM_CFG1_PORT_DRV_SPEED_CAPABILITY_MASK_10G)
1021 if_link->advertised_caps |= SUPPORTED_10000baseKR_Full;
1022 if (params.speed.advertised_speeds &
1023 NVM_CFG1_PORT_DRV_SPEED_CAPABILITY_MASK_40G)
1024 if_link->advertised_caps |= SUPPORTED_40000baseLR4_Full;
1025 if (params.speed.advertised_speeds &
1026 NVM_CFG1_PORT_DRV_SPEED_CAPABILITY_MASK_50G)
1027 if_link->advertised_caps |= 0;
1028 if (params.speed.advertised_speeds &
1029 NVM_CFG1_PORT_DRV_SPEED_CAPABILITY_MASK_100G)
1030 if_link->advertised_caps |= 0;
1031
1032 if (link_caps.speed_capabilities &
1033 NVM_CFG1_PORT_DRV_SPEED_CAPABILITY_MASK_1G)
1034 if_link->supported_caps |= SUPPORTED_1000baseT_Half |
1035 SUPPORTED_1000baseT_Full;
1036 if (link_caps.speed_capabilities &
1037 NVM_CFG1_PORT_DRV_SPEED_CAPABILITY_MASK_10G)
1038 if_link->supported_caps |= SUPPORTED_10000baseKR_Full;
1039 if (link_caps.speed_capabilities &
1040 NVM_CFG1_PORT_DRV_SPEED_CAPABILITY_MASK_40G)
1041 if_link->supported_caps |= SUPPORTED_40000baseLR4_Full;
1042 if (link_caps.speed_capabilities &
1043 NVM_CFG1_PORT_DRV_SPEED_CAPABILITY_MASK_50G)
1044 if_link->supported_caps |= 0;
1045 if (link_caps.speed_capabilities &
1046 NVM_CFG1_PORT_DRV_SPEED_CAPABILITY_MASK_100G)
1047 if_link->supported_caps |= 0;
1048
1049 if (link.link_up)
1050 if_link->speed = link.speed;
1051
1052 /* TODO - fill duplex properly */
1053 if_link->duplex = DUPLEX_FULL;
1054 qed_mcp_get_media_type(hwfn->cdev, &media_type);
1055 if_link->port = qed_get_port_type(media_type);
1056
1057 if_link->autoneg = params.speed.autoneg;
1058
1059 if (params.pause.autoneg)
1060 if_link->pause_config |= QED_LINK_PAUSE_AUTONEG_ENABLE;
1061 if (params.pause.forced_rx)
1062 if_link->pause_config |= QED_LINK_PAUSE_RX_ENABLE;
1063 if (params.pause.forced_tx)
1064 if_link->pause_config |= QED_LINK_PAUSE_TX_ENABLE;
1065
1066 /* Link partner capabilities */
1067 if (link.partner_adv_speed &
1068 QED_LINK_PARTNER_SPEED_1G_HD)
1069 if_link->lp_caps |= SUPPORTED_1000baseT_Half;
1070 if (link.partner_adv_speed &
1071 QED_LINK_PARTNER_SPEED_1G_FD)
1072 if_link->lp_caps |= SUPPORTED_1000baseT_Full;
1073 if (link.partner_adv_speed &
1074 QED_LINK_PARTNER_SPEED_10G)
1075 if_link->lp_caps |= SUPPORTED_10000baseKR_Full;
1076 if (link.partner_adv_speed &
1077 QED_LINK_PARTNER_SPEED_40G)
1078 if_link->lp_caps |= SUPPORTED_40000baseLR4_Full;
1079 if (link.partner_adv_speed &
1080 QED_LINK_PARTNER_SPEED_50G)
1081 if_link->lp_caps |= 0;
1082 if (link.partner_adv_speed &
1083 QED_LINK_PARTNER_SPEED_100G)
1084 if_link->lp_caps |= 0;
1085
1086 if (link.an_complete)
1087 if_link->lp_caps |= SUPPORTED_Autoneg;
1088
1089 if (link.partner_adv_pause)
1090 if_link->lp_caps |= SUPPORTED_Pause;
1091 if (link.partner_adv_pause == QED_LINK_PARTNER_ASYMMETRIC_PAUSE ||
1092 link.partner_adv_pause == QED_LINK_PARTNER_BOTH_PAUSE)
1093 if_link->lp_caps |= SUPPORTED_Asym_Pause;
1094 }
1095
1096 static void qed_get_current_link(struct qed_dev *cdev,
1097 struct qed_link_output *if_link)
1098 {
1099 qed_fill_link(&cdev->hwfns[0], if_link);
1100 }
1101
1102 void qed_link_update(struct qed_hwfn *hwfn)
1103 {
1104 void *cookie = hwfn->cdev->ops_cookie;
1105 struct qed_common_cb_ops *op = hwfn->cdev->protocol_ops.common;
1106 struct qed_link_output if_link;
1107
1108 qed_fill_link(hwfn, &if_link);
1109
1110 if (IS_LEAD_HWFN(hwfn) && cookie)
1111 op->link_update(cookie, &if_link);
1112 }
1113
1114 static int qed_drain(struct qed_dev *cdev)
1115 {
1116 struct qed_hwfn *hwfn;
1117 struct qed_ptt *ptt;
1118 int i, rc;
1119
1120 for_each_hwfn(cdev, i) {
1121 hwfn = &cdev->hwfns[i];
1122 ptt = qed_ptt_acquire(hwfn);
1123 if (!ptt) {
1124 DP_NOTICE(hwfn, "Failed to drain NIG; No PTT\n");
1125 return -EBUSY;
1126 }
1127 rc = qed_mcp_drain(hwfn, ptt);
1128 if (rc)
1129 return rc;
1130 qed_ptt_release(hwfn, ptt);
1131 }
1132
1133 return 0;
1134 }
1135
1136 static int qed_set_led(struct qed_dev *cdev, enum qed_led_mode mode)
1137 {
1138 struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev);
1139 struct qed_ptt *ptt;
1140 int status = 0;
1141
1142 ptt = qed_ptt_acquire(hwfn);
1143 if (!ptt)
1144 return -EAGAIN;
1145
1146 status = qed_mcp_set_led(hwfn, ptt, mode);
1147
1148 qed_ptt_release(hwfn, ptt);
1149
1150 return status;
1151 }
1152
1153 const struct qed_common_ops qed_common_ops_pass = {
1154 .probe = &qed_probe,
1155 .remove = &qed_remove,
1156 .set_power_state = &qed_set_power_state,
1157 .set_id = &qed_set_id,
1158 .update_pf_params = &qed_update_pf_params,
1159 .slowpath_start = &qed_slowpath_start,
1160 .slowpath_stop = &qed_slowpath_stop,
1161 .set_fp_int = &qed_set_int_fp,
1162 .get_fp_int = &qed_get_int_fp,
1163 .sb_init = &qed_sb_init,
1164 .sb_release = &qed_sb_release,
1165 .simd_handler_config = &qed_simd_handler_config,
1166 .simd_handler_clean = &qed_simd_handler_clean,
1167 .set_link = &qed_set_link,
1168 .get_link = &qed_get_current_link,
1169 .drain = &qed_drain,
1170 .update_msglvl = &qed_init_dp,
1171 .chain_alloc = &qed_chain_alloc,
1172 .chain_free = &qed_chain_free,
1173 .set_led = &qed_set_led,
1174 };
1175
1176 u32 qed_get_protocol_version(enum qed_protocol protocol)
1177 {
1178 switch (protocol) {
1179 case QED_PROTOCOL_ETH:
1180 return QED_ETH_INTERFACE_VERSION;
1181 default:
1182 return 0;
1183 }
1184 }
1185 EXPORT_SYMBOL(qed_get_protocol_version);
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