blob: d44c74584e0f7d7c084710fba72a0f4a8aa76bdf [file] [log] [blame]
Ben Hutchingsf4150722008-11-04 20:34:28 +00001/****************************************************************************
2 * Driver for Solarflare Solarstorm network controllers and boards
3 * Copyright 2005-2006 Fen Systems Ltd.
Ben Hutchings906bb262009-11-29 15:16:19 +00004 * Copyright 2006-2009 Solarflare Communications Inc.
Ben Hutchingsf4150722008-11-04 20:34:28 +00005 *
6 * This program is free software; you can redistribute it and/or modify it
7 * under the terms of the GNU General Public License version 2 as published
8 * by the Free Software Foundation, incorporated herein by reference.
9 */
10
Ben Hutchings8880f4e2009-11-29 15:15:41 +000011#include <linux/bitops.h>
Ben Hutchingsf4150722008-11-04 20:34:28 +000012#include <linux/module.h>
13#include <linux/mtd/mtd.h>
14#include <linux/delay.h>
Tejun Heo5a0e3ad2010-03-24 17:04:11 +090015#include <linux/slab.h>
Ben Hutchings76884832009-11-29 15:10:44 +000016#include <linux/rtnetlink.h>
Ben Hutchingsf4150722008-11-04 20:34:28 +000017
Ben Hutchingsf4150722008-11-04 20:34:28 +000018#include "net_driver.h"
19#include "spi.h"
Hannes Ederff2ef902009-02-18 17:49:50 -080020#include "efx.h"
Ben Hutchings744093c2009-11-29 15:12:08 +000021#include "nic.h"
Ben Hutchings8880f4e2009-11-29 15:15:41 +000022#include "mcdi.h"
23#include "mcdi_pcol.h"
Ben Hutchingsf4150722008-11-04 20:34:28 +000024
25#define EFX_SPI_VERIFY_BUF_LEN 16
26
Ben Hutchings76884832009-11-29 15:10:44 +000027struct efx_mtd_partition {
Ben Hutchingsf4150722008-11-04 20:34:28 +000028 struct mtd_info mtd;
Ben Hutchings8880f4e2009-11-29 15:15:41 +000029 union {
30 struct {
31 bool updating;
32 u8 nvram_type;
33 u16 fw_subtype;
34 } mcdi;
35 size_t offset;
36 };
Ben Hutchings76884832009-11-29 15:10:44 +000037 const char *type_name;
Ben Hutchingsf4150722008-11-04 20:34:28 +000038 char name[IFNAMSIZ + 20];
39};
40
Ben Hutchings76884832009-11-29 15:10:44 +000041struct efx_mtd_ops {
42 int (*read)(struct mtd_info *mtd, loff_t start, size_t len,
43 size_t *retlen, u8 *buffer);
44 int (*erase)(struct mtd_info *mtd, loff_t start, size_t len);
45 int (*write)(struct mtd_info *mtd, loff_t start, size_t len,
46 size_t *retlen, const u8 *buffer);
47 int (*sync)(struct mtd_info *mtd);
48};
49
50struct efx_mtd {
51 struct list_head node;
52 struct efx_nic *efx;
53 const struct efx_spi_device *spi;
54 const char *name;
55 const struct efx_mtd_ops *ops;
56 size_t n_parts;
57 struct efx_mtd_partition part[0];
58};
59
60#define efx_for_each_partition(part, efx_mtd) \
61 for ((part) = &(efx_mtd)->part[0]; \
62 (part) != &(efx_mtd)->part[(efx_mtd)->n_parts]; \
63 (part)++)
64
65#define to_efx_mtd_partition(mtd) \
66 container_of(mtd, struct efx_mtd_partition, mtd)
67
68static int falcon_mtd_probe(struct efx_nic *efx);
Ben Hutchings8880f4e2009-11-29 15:15:41 +000069static int siena_mtd_probe(struct efx_nic *efx);
Ben Hutchings76884832009-11-29 15:10:44 +000070
Ben Hutchingsf4150722008-11-04 20:34:28 +000071/* SPI utilities */
72
Ben Hutchings0c605a22010-06-23 11:29:24 +000073static int
74efx_spi_slow_wait(struct efx_mtd_partition *part, bool uninterruptible)
Ben Hutchingsf4150722008-11-04 20:34:28 +000075{
Ben Hutchings0c605a22010-06-23 11:29:24 +000076 struct efx_mtd *efx_mtd = part->mtd.priv;
Ben Hutchingsf4150722008-11-04 20:34:28 +000077 const struct efx_spi_device *spi = efx_mtd->spi;
Ben Hutchings76884832009-11-29 15:10:44 +000078 struct efx_nic *efx = efx_mtd->efx;
Ben Hutchingsf4150722008-11-04 20:34:28 +000079 u8 status;
80 int rc, i;
81
82 /* Wait up to 4s for flash/EEPROM to finish a slow operation. */
83 for (i = 0; i < 40; i++) {
84 __set_current_state(uninterruptible ?
85 TASK_UNINTERRUPTIBLE : TASK_INTERRUPTIBLE);
86 schedule_timeout(HZ / 10);
Ben Hutchings76884832009-11-29 15:10:44 +000087 rc = falcon_spi_cmd(efx, spi, SPI_RDSR, -1, NULL,
Ben Hutchingsf4150722008-11-04 20:34:28 +000088 &status, sizeof(status));
89 if (rc)
90 return rc;
91 if (!(status & SPI_STATUS_NRDY))
92 return 0;
93 if (signal_pending(current))
94 return -EINTR;
95 }
Ben Hutchings0c605a22010-06-23 11:29:24 +000096 pr_err("%s: timed out waiting for %s\n", part->name, efx_mtd->name);
Ben Hutchingsf4150722008-11-04 20:34:28 +000097 return -ETIMEDOUT;
98}
99
Ben Hutchings76884832009-11-29 15:10:44 +0000100static int
101efx_spi_unlock(struct efx_nic *efx, const struct efx_spi_device *spi)
Ben Hutchingsf4150722008-11-04 20:34:28 +0000102{
103 const u8 unlock_mask = (SPI_STATUS_BP2 | SPI_STATUS_BP1 |
104 SPI_STATUS_BP0);
105 u8 status;
106 int rc;
107
Ben Hutchings76884832009-11-29 15:10:44 +0000108 rc = falcon_spi_cmd(efx, spi, SPI_RDSR, -1, NULL,
109 &status, sizeof(status));
Ben Hutchingsf4150722008-11-04 20:34:28 +0000110 if (rc)
111 return rc;
112
113 if (!(status & unlock_mask))
114 return 0; /* already unlocked */
115
Ben Hutchings76884832009-11-29 15:10:44 +0000116 rc = falcon_spi_cmd(efx, spi, SPI_WREN, -1, NULL, NULL, 0);
Ben Hutchingsf4150722008-11-04 20:34:28 +0000117 if (rc)
118 return rc;
Ben Hutchings76884832009-11-29 15:10:44 +0000119 rc = falcon_spi_cmd(efx, spi, SPI_SST_EWSR, -1, NULL, NULL, 0);
Ben Hutchingsf4150722008-11-04 20:34:28 +0000120 if (rc)
121 return rc;
122
123 status &= ~unlock_mask;
Ben Hutchings76884832009-11-29 15:10:44 +0000124 rc = falcon_spi_cmd(efx, spi, SPI_WRSR, -1, &status,
125 NULL, sizeof(status));
Ben Hutchingsf4150722008-11-04 20:34:28 +0000126 if (rc)
127 return rc;
Ben Hutchings76884832009-11-29 15:10:44 +0000128 rc = falcon_spi_wait_write(efx, spi);
Ben Hutchingsf4150722008-11-04 20:34:28 +0000129 if (rc)
130 return rc;
131
132 return 0;
133}
134
Ben Hutchings0c605a22010-06-23 11:29:24 +0000135static int
136efx_spi_erase(struct efx_mtd_partition *part, loff_t start, size_t len)
Ben Hutchingsf4150722008-11-04 20:34:28 +0000137{
Ben Hutchings0c605a22010-06-23 11:29:24 +0000138 struct efx_mtd *efx_mtd = part->mtd.priv;
Ben Hutchingsf4150722008-11-04 20:34:28 +0000139 const struct efx_spi_device *spi = efx_mtd->spi;
Ben Hutchings76884832009-11-29 15:10:44 +0000140 struct efx_nic *efx = efx_mtd->efx;
Ben Hutchingsf4150722008-11-04 20:34:28 +0000141 unsigned pos, block_len;
142 u8 empty[EFX_SPI_VERIFY_BUF_LEN];
143 u8 buffer[EFX_SPI_VERIFY_BUF_LEN];
144 int rc;
145
146 if (len != spi->erase_size)
147 return -EINVAL;
148
149 if (spi->erase_command == 0)
150 return -EOPNOTSUPP;
151
Ben Hutchings76884832009-11-29 15:10:44 +0000152 rc = efx_spi_unlock(efx, spi);
Ben Hutchingsf4150722008-11-04 20:34:28 +0000153 if (rc)
154 return rc;
Ben Hutchings76884832009-11-29 15:10:44 +0000155 rc = falcon_spi_cmd(efx, spi, SPI_WREN, -1, NULL, NULL, 0);
Ben Hutchingsf4150722008-11-04 20:34:28 +0000156 if (rc)
157 return rc;
Ben Hutchings76884832009-11-29 15:10:44 +0000158 rc = falcon_spi_cmd(efx, spi, spi->erase_command, start, NULL,
159 NULL, 0);
Ben Hutchingsf4150722008-11-04 20:34:28 +0000160 if (rc)
161 return rc;
Ben Hutchings0c605a22010-06-23 11:29:24 +0000162 rc = efx_spi_slow_wait(part, false);
Ben Hutchingsf4150722008-11-04 20:34:28 +0000163
164 /* Verify the entire region has been wiped */
165 memset(empty, 0xff, sizeof(empty));
166 for (pos = 0; pos < len; pos += block_len) {
167 block_len = min(len - pos, sizeof(buffer));
Ben Hutchings76884832009-11-29 15:10:44 +0000168 rc = falcon_spi_read(efx, spi, start + pos, block_len,
169 NULL, buffer);
Ben Hutchingsf4150722008-11-04 20:34:28 +0000170 if (rc)
171 return rc;
172 if (memcmp(empty, buffer, block_len))
173 return -EIO;
174
175 /* Avoid locking up the system */
176 cond_resched();
177 if (signal_pending(current))
178 return -EINTR;
179 }
180
181 return rc;
182}
183
184/* MTD interface */
185
Ben Hutchingsf4150722008-11-04 20:34:28 +0000186static int efx_mtd_erase(struct mtd_info *mtd, struct erase_info *erase)
187{
188 struct efx_mtd *efx_mtd = mtd->priv;
Ben Hutchingsf4150722008-11-04 20:34:28 +0000189 int rc;
190
Ben Hutchings76884832009-11-29 15:10:44 +0000191 rc = efx_mtd->ops->erase(mtd, erase->addr, erase->len);
Ben Hutchingsf4150722008-11-04 20:34:28 +0000192 if (rc == 0) {
193 erase->state = MTD_ERASE_DONE;
194 } else {
195 erase->state = MTD_ERASE_FAILED;
196 erase->fail_addr = 0xffffffff;
197 }
198 mtd_erase_callback(erase);
199 return rc;
200}
201
Ben Hutchings76884832009-11-29 15:10:44 +0000202static void efx_mtd_sync(struct mtd_info *mtd)
Ben Hutchingsf4150722008-11-04 20:34:28 +0000203{
Ben Hutchings0c605a22010-06-23 11:29:24 +0000204 struct efx_mtd_partition *part = to_efx_mtd_partition(mtd);
Ben Hutchingsf4150722008-11-04 20:34:28 +0000205 struct efx_mtd *efx_mtd = mtd->priv;
Ben Hutchings76884832009-11-29 15:10:44 +0000206 int rc;
207
208 rc = efx_mtd->ops->sync(mtd);
209 if (rc)
Ben Hutchings0c605a22010-06-23 11:29:24 +0000210 pr_err("%s: %s sync failed (%d)\n",
211 part->name, efx_mtd->name, rc);
Ben Hutchings76884832009-11-29 15:10:44 +0000212}
213
214static void efx_mtd_remove_partition(struct efx_mtd_partition *part)
215{
216 int rc;
217
218 for (;;) {
219 rc = del_mtd_device(&part->mtd);
220 if (rc != -EBUSY)
221 break;
222 ssleep(1);
223 }
224 WARN_ON(rc);
225}
226
227static void efx_mtd_remove_device(struct efx_mtd *efx_mtd)
228{
229 struct efx_mtd_partition *part;
230
231 efx_for_each_partition(part, efx_mtd)
232 efx_mtd_remove_partition(part);
233 list_del(&efx_mtd->node);
234 kfree(efx_mtd);
235}
236
237static void efx_mtd_rename_device(struct efx_mtd *efx_mtd)
238{
239 struct efx_mtd_partition *part;
240
241 efx_for_each_partition(part, efx_mtd)
Ben Hutchings8880f4e2009-11-29 15:15:41 +0000242 if (efx_nic_rev(efx_mtd->efx) >= EFX_REV_SIENA_A0)
243 snprintf(part->name, sizeof(part->name),
244 "%s %s:%02x", efx_mtd->efx->name,
245 part->type_name, part->mcdi.fw_subtype);
246 else
247 snprintf(part->name, sizeof(part->name),
248 "%s %s", efx_mtd->efx->name,
249 part->type_name);
Ben Hutchings76884832009-11-29 15:10:44 +0000250}
251
252static int efx_mtd_probe_device(struct efx_nic *efx, struct efx_mtd *efx_mtd)
253{
254 struct efx_mtd_partition *part;
255
256 efx_mtd->efx = efx;
257
258 efx_mtd_rename_device(efx_mtd);
259
260 efx_for_each_partition(part, efx_mtd) {
261 part->mtd.writesize = 1;
262
263 part->mtd.owner = THIS_MODULE;
264 part->mtd.priv = efx_mtd;
265 part->mtd.name = part->name;
266 part->mtd.erase = efx_mtd_erase;
267 part->mtd.read = efx_mtd->ops->read;
268 part->mtd.write = efx_mtd->ops->write;
269 part->mtd.sync = efx_mtd_sync;
270
271 if (add_mtd_device(&part->mtd))
272 goto fail;
273 }
274
275 list_add(&efx_mtd->node, &efx->mtd_list);
276 return 0;
277
278fail:
279 while (part != &efx_mtd->part[0]) {
280 --part;
281 efx_mtd_remove_partition(part);
282 }
283 /* add_mtd_device() returns 1 if the MTD table is full */
284 return -ENOMEM;
285}
286
287void efx_mtd_remove(struct efx_nic *efx)
288{
289 struct efx_mtd *efx_mtd, *next;
290
291 WARN_ON(efx_dev_registered(efx));
292
293 list_for_each_entry_safe(efx_mtd, next, &efx->mtd_list, node)
294 efx_mtd_remove_device(efx_mtd);
295}
296
297void efx_mtd_rename(struct efx_nic *efx)
298{
299 struct efx_mtd *efx_mtd;
300
301 ASSERT_RTNL();
302
303 list_for_each_entry(efx_mtd, &efx->mtd_list, node)
304 efx_mtd_rename_device(efx_mtd);
305}
306
307int efx_mtd_probe(struct efx_nic *efx)
308{
Ben Hutchings8880f4e2009-11-29 15:15:41 +0000309 if (efx_nic_rev(efx) >= EFX_REV_SIENA_A0)
310 return siena_mtd_probe(efx);
311 else
312 return falcon_mtd_probe(efx);
Ben Hutchings76884832009-11-29 15:10:44 +0000313}
314
315/* Implementation of MTD operations for Falcon */
316
317static int falcon_mtd_read(struct mtd_info *mtd, loff_t start,
318 size_t len, size_t *retlen, u8 *buffer)
319{
320 struct efx_mtd_partition *part = to_efx_mtd_partition(mtd);
321 struct efx_mtd *efx_mtd = mtd->priv;
Ben Hutchingsf4150722008-11-04 20:34:28 +0000322 const struct efx_spi_device *spi = efx_mtd->spi;
Ben Hutchings76884832009-11-29 15:10:44 +0000323 struct efx_nic *efx = efx_mtd->efx;
Ben Hutchingsf4150722008-11-04 20:34:28 +0000324 int rc;
325
326 rc = mutex_lock_interruptible(&efx->spi_lock);
327 if (rc)
328 return rc;
Ben Hutchings76884832009-11-29 15:10:44 +0000329 rc = falcon_spi_read(efx, spi, part->offset + start, len,
330 retlen, buffer);
Ben Hutchingsf4150722008-11-04 20:34:28 +0000331 mutex_unlock(&efx->spi_lock);
332 return rc;
333}
334
Ben Hutchings76884832009-11-29 15:10:44 +0000335static int falcon_mtd_erase(struct mtd_info *mtd, loff_t start, size_t len)
336{
337 struct efx_mtd_partition *part = to_efx_mtd_partition(mtd);
338 struct efx_mtd *efx_mtd = mtd->priv;
339 struct efx_nic *efx = efx_mtd->efx;
340 int rc;
341
342 rc = mutex_lock_interruptible(&efx->spi_lock);
343 if (rc)
344 return rc;
Ben Hutchings0c605a22010-06-23 11:29:24 +0000345 rc = efx_spi_erase(part, part->offset + start, len);
Ben Hutchings76884832009-11-29 15:10:44 +0000346 mutex_unlock(&efx->spi_lock);
347 return rc;
348}
349
350static int falcon_mtd_write(struct mtd_info *mtd, loff_t start,
351 size_t len, size_t *retlen, const u8 *buffer)
352{
353 struct efx_mtd_partition *part = to_efx_mtd_partition(mtd);
354 struct efx_mtd *efx_mtd = mtd->priv;
355 const struct efx_spi_device *spi = efx_mtd->spi;
356 struct efx_nic *efx = efx_mtd->efx;
357 int rc;
358
359 rc = mutex_lock_interruptible(&efx->spi_lock);
360 if (rc)
361 return rc;
362 rc = falcon_spi_write(efx, spi, part->offset + start, len,
363 retlen, buffer);
364 mutex_unlock(&efx->spi_lock);
365 return rc;
366}
367
368static int falcon_mtd_sync(struct mtd_info *mtd)
Ben Hutchingsf4150722008-11-04 20:34:28 +0000369{
Ben Hutchings0c605a22010-06-23 11:29:24 +0000370 struct efx_mtd_partition *part = to_efx_mtd_partition(mtd);
Ben Hutchingsf4150722008-11-04 20:34:28 +0000371 struct efx_mtd *efx_mtd = mtd->priv;
Ben Hutchings76884832009-11-29 15:10:44 +0000372 struct efx_nic *efx = efx_mtd->efx;
Ben Hutchingsf4150722008-11-04 20:34:28 +0000373 int rc;
374
375 mutex_lock(&efx->spi_lock);
Ben Hutchings0c605a22010-06-23 11:29:24 +0000376 rc = efx_spi_slow_wait(part, true);
Ben Hutchingsf4150722008-11-04 20:34:28 +0000377 mutex_unlock(&efx->spi_lock);
Ben Hutchings76884832009-11-29 15:10:44 +0000378 return rc;
Ben Hutchingsf4150722008-11-04 20:34:28 +0000379}
380
Ben Hutchings76884832009-11-29 15:10:44 +0000381static struct efx_mtd_ops falcon_mtd_ops = {
382 .read = falcon_mtd_read,
383 .erase = falcon_mtd_erase,
384 .write = falcon_mtd_write,
385 .sync = falcon_mtd_sync,
386};
Ben Hutchingsf4150722008-11-04 20:34:28 +0000387
Ben Hutchings76884832009-11-29 15:10:44 +0000388static int falcon_mtd_probe(struct efx_nic *efx)
Ben Hutchingsf4150722008-11-04 20:34:28 +0000389{
Ben Hutchings6a8872c2010-12-02 13:47:10 +0000390 struct efx_spi_device *spi;
Ben Hutchingsf4150722008-11-04 20:34:28 +0000391 struct efx_mtd *efx_mtd;
Ben Hutchings6a8872c2010-12-02 13:47:10 +0000392 int rc = -ENODEV;
Ben Hutchings76884832009-11-29 15:10:44 +0000393
394 ASSERT_RTNL();
Ben Hutchingsf4150722008-11-04 20:34:28 +0000395
Ben Hutchings6a8872c2010-12-02 13:47:10 +0000396 spi = efx->spi_flash;
397 if (spi && spi->size > FALCON_FLASH_BOOTCODE_START) {
398 efx_mtd = kzalloc(sizeof(*efx_mtd) + sizeof(efx_mtd->part[0]),
399 GFP_KERNEL);
400 if (!efx_mtd)
401 return -ENOMEM;
Ben Hutchingsf4150722008-11-04 20:34:28 +0000402
Ben Hutchings6a8872c2010-12-02 13:47:10 +0000403 efx_mtd->spi = spi;
404 efx_mtd->name = "flash";
405 efx_mtd->ops = &falcon_mtd_ops;
Ben Hutchingsf4150722008-11-04 20:34:28 +0000406
Ben Hutchings6a8872c2010-12-02 13:47:10 +0000407 efx_mtd->n_parts = 1;
408 efx_mtd->part[0].mtd.type = MTD_NORFLASH;
409 efx_mtd->part[0].mtd.flags = MTD_CAP_NORFLASH;
410 efx_mtd->part[0].mtd.size = spi->size - FALCON_FLASH_BOOTCODE_START;
411 efx_mtd->part[0].mtd.erasesize = spi->erase_size;
412 efx_mtd->part[0].offset = FALCON_FLASH_BOOTCODE_START;
413 efx_mtd->part[0].type_name = "sfc_flash_bootrom";
Ben Hutchingsf4150722008-11-04 20:34:28 +0000414
Ben Hutchings6a8872c2010-12-02 13:47:10 +0000415 rc = efx_mtd_probe_device(efx, efx_mtd);
416 if (rc) {
417 kfree(efx_mtd);
418 return rc;
419 }
420 }
Ben Hutchingsf4150722008-11-04 20:34:28 +0000421
Ben Hutchings6a8872c2010-12-02 13:47:10 +0000422 spi = efx->spi_eeprom;
423 if (spi && spi->size > EFX_EEPROM_BOOTCONFIG_START) {
424 efx_mtd = kzalloc(sizeof(*efx_mtd) + sizeof(efx_mtd->part[0]),
425 GFP_KERNEL);
426 if (!efx_mtd)
427 return -ENOMEM;
428
429 efx_mtd->spi = spi;
430 efx_mtd->name = "EEPROM";
431 efx_mtd->ops = &falcon_mtd_ops;
432
433 efx_mtd->n_parts = 1;
434 efx_mtd->part[0].mtd.type = MTD_RAM;
435 efx_mtd->part[0].mtd.flags = MTD_CAP_RAM;
436 efx_mtd->part[0].mtd.size =
437 min(spi->size, EFX_EEPROM_BOOTCONFIG_END) -
438 EFX_EEPROM_BOOTCONFIG_START;
439 efx_mtd->part[0].mtd.erasesize = spi->erase_size;
440 efx_mtd->part[0].offset = EFX_EEPROM_BOOTCONFIG_START;
441 efx_mtd->part[0].type_name = "sfc_bootconfig";
442
443 rc = efx_mtd_probe_device(efx, efx_mtd);
444 if (rc) {
445 kfree(efx_mtd);
446 return rc;
447 }
448 }
449
Ben Hutchings76884832009-11-29 15:10:44 +0000450 return rc;
Ben Hutchingsf4150722008-11-04 20:34:28 +0000451}
Ben Hutchings8880f4e2009-11-29 15:15:41 +0000452
453/* Implementation of MTD operations for Siena */
454
455static int siena_mtd_read(struct mtd_info *mtd, loff_t start,
456 size_t len, size_t *retlen, u8 *buffer)
457{
458 struct efx_mtd_partition *part = to_efx_mtd_partition(mtd);
459 struct efx_mtd *efx_mtd = mtd->priv;
460 struct efx_nic *efx = efx_mtd->efx;
461 loff_t offset = start;
462 loff_t end = min_t(loff_t, start + len, mtd->size);
463 size_t chunk;
464 int rc = 0;
465
466 while (offset < end) {
Ben Hutchings5a27e862010-01-25 15:49:59 -0800467 chunk = min_t(size_t, end - offset, EFX_MCDI_NVRAM_LEN_MAX);
Ben Hutchings8880f4e2009-11-29 15:15:41 +0000468 rc = efx_mcdi_nvram_read(efx, part->mcdi.nvram_type, offset,
469 buffer, chunk);
470 if (rc)
471 goto out;
472 offset += chunk;
473 buffer += chunk;
474 }
475out:
476 *retlen = offset - start;
477 return rc;
478}
479
480static int siena_mtd_erase(struct mtd_info *mtd, loff_t start, size_t len)
481{
482 struct efx_mtd_partition *part = to_efx_mtd_partition(mtd);
483 struct efx_mtd *efx_mtd = mtd->priv;
484 struct efx_nic *efx = efx_mtd->efx;
485 loff_t offset = start & ~((loff_t)(mtd->erasesize - 1));
486 loff_t end = min_t(loff_t, start + len, mtd->size);
487 size_t chunk = part->mtd.erasesize;
488 int rc = 0;
489
490 if (!part->mcdi.updating) {
491 rc = efx_mcdi_nvram_update_start(efx, part->mcdi.nvram_type);
492 if (rc)
493 goto out;
494 part->mcdi.updating = 1;
495 }
496
497 /* The MCDI interface can in fact do multiple erase blocks at once;
498 * but erasing may be slow, so we make multiple calls here to avoid
499 * tripping the MCDI RPC timeout. */
500 while (offset < end) {
501 rc = efx_mcdi_nvram_erase(efx, part->mcdi.nvram_type, offset,
502 chunk);
503 if (rc)
504 goto out;
505 offset += chunk;
506 }
507out:
508 return rc;
509}
510
511static int siena_mtd_write(struct mtd_info *mtd, loff_t start,
512 size_t len, size_t *retlen, const u8 *buffer)
513{
514 struct efx_mtd_partition *part = to_efx_mtd_partition(mtd);
515 struct efx_mtd *efx_mtd = mtd->priv;
516 struct efx_nic *efx = efx_mtd->efx;
517 loff_t offset = start;
518 loff_t end = min_t(loff_t, start + len, mtd->size);
519 size_t chunk;
520 int rc = 0;
521
522 if (!part->mcdi.updating) {
523 rc = efx_mcdi_nvram_update_start(efx, part->mcdi.nvram_type);
524 if (rc)
525 goto out;
526 part->mcdi.updating = 1;
527 }
528
529 while (offset < end) {
Ben Hutchings5a27e862010-01-25 15:49:59 -0800530 chunk = min_t(size_t, end - offset, EFX_MCDI_NVRAM_LEN_MAX);
Ben Hutchings8880f4e2009-11-29 15:15:41 +0000531 rc = efx_mcdi_nvram_write(efx, part->mcdi.nvram_type, offset,
532 buffer, chunk);
533 if (rc)
534 goto out;
535 offset += chunk;
536 buffer += chunk;
537 }
538out:
539 *retlen = offset - start;
540 return rc;
541}
542
543static int siena_mtd_sync(struct mtd_info *mtd)
544{
545 struct efx_mtd_partition *part = to_efx_mtd_partition(mtd);
546 struct efx_mtd *efx_mtd = mtd->priv;
547 struct efx_nic *efx = efx_mtd->efx;
548 int rc = 0;
549
550 if (part->mcdi.updating) {
551 part->mcdi.updating = 0;
552 rc = efx_mcdi_nvram_update_finish(efx, part->mcdi.nvram_type);
553 }
554
555 return rc;
556}
557
558static struct efx_mtd_ops siena_mtd_ops = {
559 .read = siena_mtd_read,
560 .erase = siena_mtd_erase,
561 .write = siena_mtd_write,
562 .sync = siena_mtd_sync,
563};
564
565struct siena_nvram_type_info {
566 int port;
567 const char *name;
568};
569
570static struct siena_nvram_type_info siena_nvram_types[] = {
571 [MC_CMD_NVRAM_TYPE_DISABLED_CALLISTO] = { 0, "sfc_dummy_phy" },
572 [MC_CMD_NVRAM_TYPE_MC_FW] = { 0, "sfc_mcfw" },
573 [MC_CMD_NVRAM_TYPE_MC_FW_BACKUP] = { 0, "sfc_mcfw_backup" },
574 [MC_CMD_NVRAM_TYPE_STATIC_CFG_PORT0] = { 0, "sfc_static_cfg" },
575 [MC_CMD_NVRAM_TYPE_STATIC_CFG_PORT1] = { 1, "sfc_static_cfg" },
576 [MC_CMD_NVRAM_TYPE_DYNAMIC_CFG_PORT0] = { 0, "sfc_dynamic_cfg" },
577 [MC_CMD_NVRAM_TYPE_DYNAMIC_CFG_PORT1] = { 1, "sfc_dynamic_cfg" },
578 [MC_CMD_NVRAM_TYPE_EXP_ROM] = { 0, "sfc_exp_rom" },
579 [MC_CMD_NVRAM_TYPE_EXP_ROM_CFG_PORT0] = { 0, "sfc_exp_rom_cfg" },
580 [MC_CMD_NVRAM_TYPE_EXP_ROM_CFG_PORT1] = { 1, "sfc_exp_rom_cfg" },
581 [MC_CMD_NVRAM_TYPE_PHY_PORT0] = { 0, "sfc_phy_fw" },
582 [MC_CMD_NVRAM_TYPE_PHY_PORT1] = { 1, "sfc_phy_fw" },
583};
584
585static int siena_mtd_probe_partition(struct efx_nic *efx,
586 struct efx_mtd *efx_mtd,
587 unsigned int part_id,
588 unsigned int type)
589{
590 struct efx_mtd_partition *part = &efx_mtd->part[part_id];
591 struct siena_nvram_type_info *info;
592 size_t size, erase_size;
593 bool protected;
594 int rc;
595
596 if (type >= ARRAY_SIZE(siena_nvram_types))
597 return -ENODEV;
598
599 info = &siena_nvram_types[type];
600
601 if (info->port != efx_port_num(efx))
602 return -ENODEV;
603
604 rc = efx_mcdi_nvram_info(efx, type, &size, &erase_size, &protected);
605 if (rc)
606 return rc;
607 if (protected)
608 return -ENODEV; /* hide it */
609
610 part->mcdi.nvram_type = type;
611 part->type_name = info->name;
612
613 part->mtd.type = MTD_NORFLASH;
614 part->mtd.flags = MTD_CAP_NORFLASH;
615 part->mtd.size = size;
616 part->mtd.erasesize = erase_size;
617
618 return 0;
619}
620
621static int siena_mtd_get_fw_subtypes(struct efx_nic *efx,
622 struct efx_mtd *efx_mtd)
623{
624 struct efx_mtd_partition *part;
625 uint16_t fw_subtype_list[MC_CMD_GET_BOARD_CFG_OUT_FW_SUBTYPE_LIST_LEN /
626 sizeof(uint16_t)];
627 int rc;
628
629 rc = efx_mcdi_get_board_cfg(efx, NULL, fw_subtype_list);
630 if (rc)
631 return rc;
632
633 efx_for_each_partition(part, efx_mtd)
634 part->mcdi.fw_subtype = fw_subtype_list[part->mcdi.nvram_type];
635
636 return 0;
637}
638
639static int siena_mtd_probe(struct efx_nic *efx)
640{
641 struct efx_mtd *efx_mtd;
642 int rc = -ENODEV;
643 u32 nvram_types;
644 unsigned int type;
645
646 ASSERT_RTNL();
647
648 rc = efx_mcdi_nvram_types(efx, &nvram_types);
649 if (rc)
650 return rc;
651
652 efx_mtd = kzalloc(sizeof(*efx_mtd) +
653 hweight32(nvram_types) * sizeof(efx_mtd->part[0]),
654 GFP_KERNEL);
655 if (!efx_mtd)
656 return -ENOMEM;
657
658 efx_mtd->name = "Siena NVRAM manager";
659
660 efx_mtd->ops = &siena_mtd_ops;
661
662 type = 0;
663 efx_mtd->n_parts = 0;
664
665 while (nvram_types != 0) {
666 if (nvram_types & 1) {
667 rc = siena_mtd_probe_partition(efx, efx_mtd,
668 efx_mtd->n_parts, type);
669 if (rc == 0)
670 efx_mtd->n_parts++;
671 else if (rc != -ENODEV)
672 goto fail;
673 }
674 type++;
675 nvram_types >>= 1;
676 }
677
678 rc = siena_mtd_get_fw_subtypes(efx, efx_mtd);
679 if (rc)
680 goto fail;
681
682 rc = efx_mtd_probe_device(efx, efx_mtd);
683fail:
684 if (rc)
685 kfree(efx_mtd);
686 return rc;
687}
688