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c781c06d
KH
1/*
2 * Copyright (C) 2005-2007 Kristian Hoegsberg <krh@bitplanet.net>
3038e353
KH
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
e8ca9702 19#include <linux/bug.h>
459f7923
SR
20#include <linux/completion.h>
21#include <linux/crc-itu-t.h>
3038e353 22#include <linux/device.h>
459f7923 23#include <linux/errno.h>
77c9a5da
SR
24#include <linux/firewire.h>
25#include <linux/firewire-constants.h>
e8ca9702
SR
26#include <linux/jiffies.h>
27#include <linux/kernel.h>
459f7923 28#include <linux/kref.h>
e8ca9702 29#include <linux/list.h>
459f7923 30#include <linux/module.h>
6a5033be 31#include <linux/mutex.h>
e8ca9702 32#include <linux/spinlock.h>
e8ca9702
SR
33#include <linux/workqueue.h>
34
35#include <asm/atomic.h>
36#include <asm/byteorder.h>
459f7923 37
77c9a5da 38#include "core.h"
3038e353 39
cb7c96da 40int fw_compute_block_crc(__be32 *block)
8e85973e
SR
41{
42 int length;
43 u16 crc;
44
45 length = (be32_to_cpu(block[0]) >> 16) & 0xff;
46 crc = crc_itu_t(0, (u8 *)&block[1], length * 4);
47 *block |= cpu_to_be32(crc);
48
49 return length;
50}
51
6a5033be 52static DEFINE_MUTEX(card_mutex);
3038e353
KH
53static LIST_HEAD(card_list);
54
55static LIST_HEAD(descriptor_list);
56static int descriptor_count;
57
fe242579 58static __be32 tmp_config_rom[256];
e300839d
SR
59/* ROM header, bus info block, root dir header, capabilities = 7 quadlets */
60static size_t config_rom_length = 1 + 4 + 1 + 1;
fe242579 61
a77754a7
KH
62#define BIB_CRC(v) ((v) << 0)
63#define BIB_CRC_LENGTH(v) ((v) << 16)
64#define BIB_INFO_LENGTH(v) ((v) << 24)
edd5bdaf 65#define BIB_BUS_NAME 0x31333934 /* "1394" */
a77754a7
KH
66#define BIB_LINK_SPEED(v) ((v) << 0)
67#define BIB_GENERATION(v) ((v) << 4)
68#define BIB_MAX_ROM(v) ((v) << 8)
69#define BIB_MAX_RECEIVE(v) ((v) << 12)
70#define BIB_CYC_CLK_ACC(v) ((v) << 16)
71#define BIB_PMC ((1) << 27)
72#define BIB_BMC ((1) << 28)
73#define BIB_ISC ((1) << 29)
74#define BIB_CMC ((1) << 30)
edd5bdaf
SR
75#define BIB_IRMC ((1) << 31)
76#define NODE_CAPABILITIES 0x0c0083c0 /* per IEEE 1394 clause 8.3.2.6.5.2 */
3038e353 77
e300839d 78static void generate_config_rom(struct fw_card *card, __be32 *config_rom)
3038e353
KH
79{
80 struct fw_descriptor *desc;
8e85973e 81 int i, j, k, length;
3038e353 82
c781c06d
KH
83 /*
84 * Initialize contents of config rom buffer. On the OHCI
5e20c282
SR
85 * controller, block reads to the config rom accesses the host
86 * memory, but quadlet read access the hardware bus info block
87 * registers. That's just crack, but it means we should make
2cc489c2 88 * sure the contents of bus info block in host memory matches
c781c06d
KH
89 * the version stored in the OHCI registers.
90 */
3038e353 91
8e85973e
SR
92 config_rom[0] = cpu_to_be32(
93 BIB_CRC_LENGTH(4) | BIB_INFO_LENGTH(4) | BIB_CRC(0));
edd5bdaf 94 config_rom[1] = cpu_to_be32(BIB_BUS_NAME);
8e85973e 95 config_rom[2] = cpu_to_be32(
a77754a7
KH
96 BIB_LINK_SPEED(card->link_speed) |
97 BIB_GENERATION(card->config_rom_generation++ % 14 + 2) |
98 BIB_MAX_ROM(2) |
99 BIB_MAX_RECEIVE(card->max_receive) |
edd5bdaf 100 BIB_BMC | BIB_ISC | BIB_CMC | BIB_IRMC);
8e85973e
SR
101 config_rom[3] = cpu_to_be32(card->guid >> 32);
102 config_rom[4] = cpu_to_be32(card->guid);
3038e353
KH
103
104 /* Generate root directory. */
edd5bdaf 105 config_rom[6] = cpu_to_be32(NODE_CAPABILITIES);
8e85973e
SR
106 i = 7;
107 j = 7 + descriptor_count;
3038e353
KH
108
109 /* Generate root directory entries for descriptors. */
110 list_for_each_entry (desc, &descriptor_list, link) {
937f6879 111 if (desc->immediate > 0)
8e85973e
SR
112 config_rom[i++] = cpu_to_be32(desc->immediate);
113 config_rom[i] = cpu_to_be32(desc->key | (j - i));
3038e353
KH
114 i++;
115 j += desc->length;
116 }
117
118 /* Update root directory length. */
8e85973e 119 config_rom[5] = cpu_to_be32((i - 5 - 1) << 16);
3038e353
KH
120
121 /* End of root directory, now copy in descriptors. */
122 list_for_each_entry (desc, &descriptor_list, link) {
8e85973e
SR
123 for (k = 0; k < desc->length; k++)
124 config_rom[i + k] = cpu_to_be32(desc->data[k]);
3038e353
KH
125 i += desc->length;
126 }
127
128 /* Calculate CRCs for all blocks in the config rom. This
129 * assumes that CRC length and info length are identical for
130 * the bus info block, which is always the case for this
131 * implementation. */
e175569c 132 for (i = 0; i < j; i += length + 1)
cb7c96da 133 length = fw_compute_block_crc(config_rom + i);
3038e353 134
e300839d 135 WARN_ON(j != config_rom_length);
3038e353
KH
136}
137
53dca511 138static void update_config_roms(void)
3038e353
KH
139{
140 struct fw_card *card;
3038e353
KH
141
142 list_for_each_entry (card, &card_list, link) {
e300839d
SR
143 generate_config_rom(card, tmp_config_rom);
144 card->driver->set_config_rom(card, tmp_config_rom,
145 config_rom_length);
3038e353
KH
146 }
147}
148
e300839d
SR
149static size_t required_space(struct fw_descriptor *desc)
150{
151 /* descriptor + entry into root dir + optional immediate entry */
152 return desc->length + 1 + (desc->immediate > 0 ? 1 : 0);
153}
154
53dca511 155int fw_core_add_descriptor(struct fw_descriptor *desc)
3038e353
KH
156{
157 size_t i;
e300839d 158 int ret;
3038e353 159
c781c06d
KH
160 /*
161 * Check descriptor is valid; the length of all blocks in the
3038e353 162 * descriptor has to add up to exactly the length of the
c781c06d
KH
163 * block.
164 */
3038e353
KH
165 i = 0;
166 while (i < desc->length)
167 i += (desc->data[i] >> 16) + 1;
168
169 if (i != desc->length)
66dea3e5 170 return -EINVAL;
3038e353 171
6a5033be 172 mutex_lock(&card_mutex);
3038e353 173
e300839d
SR
174 if (config_rom_length + required_space(desc) > 256) {
175 ret = -EBUSY;
176 } else {
177 list_add_tail(&desc->link, &descriptor_list);
178 config_rom_length += required_space(desc);
937f6879 179 descriptor_count++;
e300839d
SR
180 if (desc->immediate > 0)
181 descriptor_count++;
182 update_config_roms();
183 ret = 0;
184 }
3038e353 185
6a5033be 186 mutex_unlock(&card_mutex);
3038e353 187
e300839d 188 return ret;
3038e353 189}
c76acec6 190EXPORT_SYMBOL(fw_core_add_descriptor);
3038e353 191
53dca511 192void fw_core_remove_descriptor(struct fw_descriptor *desc)
3038e353 193{
6a5033be 194 mutex_lock(&card_mutex);
3038e353
KH
195
196 list_del(&desc->link);
e300839d 197 config_rom_length -= required_space(desc);
3038e353 198 descriptor_count--;
937f6879
KH
199 if (desc->immediate > 0)
200 descriptor_count--;
3038e353
KH
201 update_config_roms();
202
6a5033be 203 mutex_unlock(&card_mutex);
3038e353 204}
c76acec6 205EXPORT_SYMBOL(fw_core_remove_descriptor);
3038e353 206
02d37bed
SR
207static int reset_bus(struct fw_card *card, bool short_reset)
208{
209 int reg = short_reset ? 5 : 1;
210 int bit = short_reset ? PHY_BUS_SHORT_RESET : PHY_BUS_RESET;
211
212 return card->driver->update_phy_reg(card, reg, 0, bit);
213}
214
215void fw_schedule_bus_reset(struct fw_card *card, bool delayed, bool short_reset)
216{
217 /* We don't try hard to sort out requests of long vs. short resets. */
218 card->br_short = short_reset;
219
220 /* Use an arbitrary short delay to combine multiple reset requests. */
221 fw_card_get(card);
222 if (!schedule_delayed_work(&card->br_work,
223 delayed ? DIV_ROUND_UP(HZ, 100) : 0))
224 fw_card_put(card);
225}
226EXPORT_SYMBOL(fw_schedule_bus_reset);
227
228static void br_work(struct work_struct *work)
229{
230 struct fw_card *card = container_of(work, struct fw_card, br_work.work);
231
232 /* Delay for 2s after last reset per IEEE 1394 clause 8.2.1. */
233 if (card->reset_jiffies != 0 &&
234 time_is_after_jiffies(card->reset_jiffies + 2 * HZ)) {
235 if (!schedule_delayed_work(&card->br_work, 2 * HZ))
236 fw_card_put(card);
237 return;
238 }
239
240 fw_send_phy_config(card, FW_PHY_CONFIG_NO_NODE_ID, card->generation,
241 FW_PHY_CONFIG_CURRENT_GAP_COUNT);
242 reset_bus(card, card->br_short);
243 fw_card_put(card);
244}
245
cbae787c 246static void allocate_broadcast_channel(struct fw_card *card, int generation)
6104ee92 247{
cbae787c
SR
248 int channel, bandwidth = 0;
249
e91b2787
CL
250 if (!card->broadcast_channel_allocated) {
251 fw_iso_resource_manage(card, generation, 1ULL << 31,
252 &channel, &bandwidth, true,
253 card->bm_transaction_data);
254 if (channel != 31) {
255 fw_notify("failed to allocate broadcast channel\n");
256 return;
257 }
7889b60e 258 card->broadcast_channel_allocated = true;
6104ee92 259 }
e91b2787
CL
260
261 device_for_each_child(card->device, (void *)(long)generation,
262 fw_device_set_broadcast_channel);
6104ee92 263}
6104ee92 264
83db801c
KH
265static const char gap_count_table[] = {
266 63, 5, 7, 8, 10, 13, 16, 18, 21, 24, 26, 29, 32, 35, 37, 40
267};
268
53dca511 269void fw_schedule_bm_work(struct fw_card *card, unsigned long delay)
0fa1986f 270{
0fa1986f 271 fw_card_get(card);
02d37bed 272 if (!schedule_delayed_work(&card->bm_work, delay))
0fa1986f
JF
273 fw_card_put(card);
274}
275
02d37bed 276static void bm_work(struct work_struct *work)
19a15b93 277{
02d37bed 278 struct fw_card *card = container_of(work, struct fw_card, bm_work.work);
10389536 279 struct fw_device *root_device, *irm_device;
cbae787c 280 struct fw_node *root_node;
250b2b6d 281 int root_id, new_root_id, irm_id, bm_id, local_id;
cbae787c 282 int gap_count, generation, grace, rcode;
25b1c3d8 283 bool do_reset = false;
62305823
SR
284 bool root_device_is_running;
285 bool root_device_is_cmc;
10389536 286 bool irm_is_1394_1995_only;
19a15b93 287
ae948011 288 spin_lock_irq(&card->lock);
15803478 289
cbae787c 290 if (card->local_node == NULL) {
ae948011 291 spin_unlock_irq(&card->lock);
0fa1986f 292 goto out_put_card;
15803478 293 }
19a15b93
KH
294
295 generation = card->generation;
10389536 296
cbae787c
SR
297 root_node = card->root_node;
298 fw_node_get(root_node);
15803478 299 root_device = root_node->data;
62305823
SR
300 root_device_is_running = root_device &&
301 atomic_read(&root_device->state) == FW_DEVICE_RUNNING;
302 root_device_is_cmc = root_device && root_device->cmc;
10389536
SR
303
304 irm_device = card->irm_node->data;
305 irm_is_1394_1995_only = irm_device && irm_device->config_rom &&
306 (irm_device->config_rom[2] & 0x000000f0) == 0;
307
cbae787c
SR
308 root_id = root_node->node_id;
309 irm_id = card->irm_node->node_id;
310 local_id = card->local_node->node_id;
e1dc7cab
SR
311
312 grace = time_after(jiffies, card->reset_jiffies + DIV_ROUND_UP(HZ, 8));
313
7e0e314f
CL
314 if ((is_next_generation(generation, card->bm_generation) &&
315 !card->bm_abdicate) ||
931c4834 316 (card->bm_generation != generation && grace)) {
c781c06d
KH
317 /*
318 * This first step is to figure out who is IRM and
931c4834
KH
319 * then try to become bus manager. If the IRM is not
320 * well defined (e.g. does not have an active link
321 * layer or does not responds to our lock request, we
322 * will have to do a little vigilante bus management.
323 * In that case, we do a goto into the gap count logic
324 * so that when we do the reset, we still optimize the
325 * gap count. That could well save a reset in the
c781c06d
KH
326 * next generation.
327 */
931c4834 328
cbae787c
SR
329 if (!card->irm_node->link_on) {
330 new_root_id = local_id;
10389536
SR
331 fw_notify("%s, making local node (%02x) root.\n",
332 "IRM has link off", new_root_id);
333 goto pick_me;
334 }
335
336 if (irm_is_1394_1995_only) {
337 new_root_id = local_id;
338 fw_notify("%s, making local node (%02x) root.\n",
339 "IRM is not 1394a compliant", new_root_id);
931c4834
KH
340 goto pick_me;
341 }
342
6fdc0370
SR
343 card->bm_transaction_data[0] = cpu_to_be32(0x3f);
344 card->bm_transaction_data[1] = cpu_to_be32(local_id);
931c4834 345
ae948011 346 spin_unlock_irq(&card->lock);
931c4834 347
1e119fa9
JF
348 rcode = fw_run_transaction(card, TCODE_LOCK_COMPARE_SWAP,
349 irm_id, generation, SCODE_100,
350 CSR_REGISTER_BASE + CSR_BUS_MANAGER_ID,
e847cc83 351 card->bm_transaction_data, 8);
931c4834 352
1e119fa9
JF
353 if (rcode == RCODE_GENERATION)
354 /* Another bus reset, BM work has been rescheduled. */
15803478 355 goto out;
931c4834 356
250b2b6d 357 bm_id = be32_to_cpu(card->bm_transaction_data[0]);
cbae787c 358
250b2b6d
SR
359 spin_lock_irq(&card->lock);
360 if (rcode == RCODE_COMPLETE && generation == card->generation)
361 card->bm_node_id =
362 bm_id == 0x3f ? local_id : 0xffc0 | bm_id;
363 spin_unlock_irq(&card->lock);
cbae787c 364
250b2b6d 365 if (rcode == RCODE_COMPLETE && bm_id != 0x3f) {
cbae787c
SR
366 /* Somebody else is BM. Only act as IRM. */
367 if (local_id == irm_id)
368 allocate_broadcast_channel(card, generation);
369
15803478 370 goto out;
6104ee92 371 }
931c4834 372
bda3b8a1
CL
373 if (rcode == RCODE_SEND_ERROR) {
374 /*
375 * We have been unable to send the lock request due to
376 * some local problem. Let's try again later and hope
377 * that the problem has gone away by then.
378 */
379 fw_schedule_bm_work(card, DIV_ROUND_UP(HZ, 8));
380 goto out;
381 }
382
ae948011 383 spin_lock_irq(&card->lock);
1e119fa9
JF
384
385 if (rcode != RCODE_COMPLETE) {
c781c06d
KH
386 /*
387 * The lock request failed, maybe the IRM
931c4834
KH
388 * isn't really IRM capable after all. Let's
389 * do a bus reset and pick the local node as
c781c06d
KH
390 * root, and thus, IRM.
391 */
cbae787c 392 new_root_id = local_id;
10389536
SR
393 fw_notify("%s, making local node (%02x) root.\n",
394 "BM lock failed", new_root_id);
931c4834
KH
395 goto pick_me;
396 }
397 } else if (card->bm_generation != generation) {
c781c06d 398 /*
e1dc7cab
SR
399 * We weren't BM in the last generation, and the last
400 * bus reset is less than 125ms ago. Reschedule this job.
c781c06d 401 */
ae948011 402 spin_unlock_irq(&card->lock);
e1dc7cab 403 fw_schedule_bm_work(card, DIV_ROUND_UP(HZ, 8));
15803478 404 goto out;
931c4834
KH
405 }
406
c781c06d
KH
407 /*
408 * We're bus manager for this generation, so next step is to
931c4834 409 * make sure we have an active cycle master and do gap count
c781c06d
KH
410 * optimization.
411 */
931c4834 412 card->bm_generation = generation;
19a15b93 413
15803478 414 if (root_device == NULL) {
c781c06d
KH
415 /*
416 * Either link_on is false, or we failed to read the
417 * config rom. In either case, pick another root.
418 */
cbae787c 419 new_root_id = local_id;
62305823 420 } else if (!root_device_is_running) {
c781c06d
KH
421 /*
422 * If we haven't probed this device yet, bail out now
423 * and let's try again once that's done.
424 */
ae948011 425 spin_unlock_irq(&card->lock);
15803478 426 goto out;
62305823 427 } else if (root_device_is_cmc) {
c781c06d 428 /*
c374ab42
CL
429 * We will send out a force root packet for this
430 * node as part of the gap count optimization.
c781c06d 431 */
931c4834 432 new_root_id = root_id;
83db801c 433 } else {
c781c06d
KH
434 /*
435 * Current root has an active link layer and we
19a15b93 436 * successfully read the config rom, but it's not
c781c06d
KH
437 * cycle master capable.
438 */
cbae787c 439 new_root_id = local_id;
83db801c
KH
440 }
441
931c4834 442 pick_me:
24d40125
SR
443 /*
444 * Pick a gap count from 1394a table E-1. The table doesn't cover
445 * the typically much larger 1394b beta repeater delays though.
446 */
447 if (!card->beta_repeaters_present &&
15803478
SR
448 root_node->max_hops < ARRAY_SIZE(gap_count_table))
449 gap_count = gap_count_table[root_node->max_hops];
83db801c
KH
450 else
451 gap_count = 63;
452
c781c06d 453 /*
25b1c3d8
SR
454 * Finally, figure out if we should do a reset or not. If we have
455 * done less than 5 resets with the same physical topology and we
c781c06d
KH
456 * have either a new root or a new gap count setting, let's do it.
457 */
19a15b93 458
931c4834
KH
459 if (card->bm_retries++ < 5 &&
460 (card->gap_count != gap_count || new_root_id != root_id))
25b1c3d8 461 do_reset = true;
19a15b93 462
ae948011 463 spin_unlock_irq(&card->lock);
19a15b93 464
83db801c
KH
465 if (do_reset) {
466 fw_notify("phy config: card %d, new root=%x, gap_count=%d\n",
931c4834
KH
467 card->index, new_root_id, gap_count);
468 fw_send_phy_config(card, new_root_id, generation, gap_count);
02d37bed 469 reset_bus(card, true);
cbae787c 470 /* Will allocate broadcast channel after the reset. */
c374ab42 471 goto out;
19a15b93 472 }
6104ee92 473
c374ab42
CL
474 if (root_device_is_cmc) {
475 /*
476 * Make sure that the cycle master sends cycle start packets.
477 */
478 card->bm_transaction_data[0] = cpu_to_be32(CSR_STATE_BIT_CMSTR);
479 rcode = fw_run_transaction(card, TCODE_WRITE_QUADLET_REQUEST,
480 root_id, generation, SCODE_100,
481 CSR_REGISTER_BASE + CSR_STATE_SET,
e847cc83 482 card->bm_transaction_data, 4);
c374ab42
CL
483 if (rcode == RCODE_GENERATION)
484 goto out;
19a15b93 485 }
6104ee92 486
c374ab42
CL
487 if (local_id == irm_id)
488 allocate_broadcast_channel(card, generation);
489
15803478 490 out:
15803478 491 fw_node_put(root_node);
0fa1986f
JF
492 out_put_card:
493 fw_card_put(card);
19a15b93
KH
494}
495
53dca511
SR
496void fw_card_initialize(struct fw_card *card,
497 const struct fw_card_driver *driver,
498 struct device *device)
3038e353 499{
bbf19db3 500 static atomic_t index = ATOMIC_INIT(-1);
3038e353 501
bbf19db3 502 card->index = atomic_inc_return(&index);
5e20c282 503 card->driver = driver;
3038e353 504 card->device = device;
5e20c282
SR
505 card->current_tlabel = 0;
506 card->tlabel_mask = 0;
8e4b50f9
CL
507 card->split_timeout_hi = 0;
508 card->split_timeout_lo = 800 << 19;
509 card->split_timeout_cycles = 800;
510 card->split_timeout_jiffies = DIV_ROUND_UP(HZ, 10);
3038e353 511 card->color = 0;
e534fe16 512 card->broadcast_channel = BROADCAST_CHANNEL_INITIAL;
3038e353 513
459f7923
SR
514 kref_init(&card->kref);
515 init_completion(&card->done);
5e20c282 516 INIT_LIST_HEAD(&card->transaction_list);
bf54e146 517 INIT_LIST_HEAD(&card->phy_receiver_list);
3038e353 518 spin_lock_init(&card->lock);
3038e353
KH
519
520 card->local_node = NULL;
521
02d37bed
SR
522 INIT_DELAYED_WORK(&card->br_work, br_work);
523 INIT_DELAYED_WORK(&card->bm_work, bm_work);
3038e353
KH
524}
525EXPORT_SYMBOL(fw_card_initialize);
526
53dca511
SR
527int fw_card_add(struct fw_card *card,
528 u32 max_receive, u32 link_speed, u64 guid)
3038e353 529{
e1eff7a3 530 int ret;
3038e353
KH
531
532 card->max_receive = max_receive;
533 card->link_speed = link_speed;
534 card->guid = guid;
535
6a5033be 536 mutex_lock(&card_mutex);
3038e353 537
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538 generate_config_rom(card, tmp_config_rom);
539 ret = card->driver->enable(card, tmp_config_rom, config_rom_length);
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540 if (ret == 0)
541 list_add_tail(&card->link, &card_list);
542
543 mutex_unlock(&card_mutex);
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544
545 return ret;
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546}
547EXPORT_SYMBOL(fw_card_add);
548
c781c06d 549/*
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550 * The next few functions implement a dummy driver that is used once a card
551 * driver shuts down an fw_card. This allows the driver to cleanly unload,
552 * as all IO to the card will be handled (and failed) by the dummy driver
553 * instead of calling into the module. Only functions for iso context
554 * shutdown still need to be provided by the card driver.
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555 *
556 * .read/write_csr() should never be called anymore after the dummy driver
557 * was bound since they are only used within request handler context.
558 * .set_config_rom() is never called since the card is taken out of card_list
559 * before switching to the dummy driver.
c781c06d 560 */
3038e353 561
02d37bed 562static int dummy_read_phy_reg(struct fw_card *card, int address)
3038e353 563{
02d37bed 564 return -ENODEV;
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565}
566
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567static int dummy_update_phy_reg(struct fw_card *card, int address,
568 int clear_bits, int set_bits)
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569{
570 return -ENODEV;
571}
572
53dca511 573static void dummy_send_request(struct fw_card *card, struct fw_packet *packet)
3038e353 574{
18d0cdfd 575 packet->callback(packet, card, RCODE_CANCELLED);
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576}
577
53dca511 578static void dummy_send_response(struct fw_card *card, struct fw_packet *packet)
3038e353 579{
18d0cdfd 580 packet->callback(packet, card, RCODE_CANCELLED);
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581}
582
53dca511 583static int dummy_cancel_packet(struct fw_card *card, struct fw_packet *packet)
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584{
585 return -ENOENT;
586}
587
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588static int dummy_enable_phys_dma(struct fw_card *card,
589 int node_id, int generation)
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590{
591 return -ENODEV;
592}
593
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594static struct fw_iso_context *dummy_allocate_iso_context(struct fw_card *card,
595 int type, int channel, size_t header_size)
596{
597 return ERR_PTR(-ENODEV);
598}
599
600static int dummy_start_iso(struct fw_iso_context *ctx,
601 s32 cycle, u32 sync, u32 tags)
602{
603 return -ENODEV;
604}
605
606static int dummy_set_iso_channels(struct fw_iso_context *ctx, u64 *channels)
607{
608 return -ENODEV;
609}
610
611static int dummy_queue_iso(struct fw_iso_context *ctx, struct fw_iso_packet *p,
612 struct fw_iso_buffer *buffer, unsigned long payload)
613{
614 return -ENODEV;
615}
616
d645f4da 617static const struct fw_card_driver dummy_driver_template = {
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618 .read_phy_reg = dummy_read_phy_reg,
619 .update_phy_reg = dummy_update_phy_reg,
620 .send_request = dummy_send_request,
621 .send_response = dummy_send_response,
622 .cancel_packet = dummy_cancel_packet,
623 .enable_phys_dma = dummy_enable_phys_dma,
624 .allocate_iso_context = dummy_allocate_iso_context,
625 .start_iso = dummy_start_iso,
626 .set_iso_channels = dummy_set_iso_channels,
627 .queue_iso = dummy_queue_iso,
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628};
629
53dca511 630void fw_card_release(struct kref *kref)
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631{
632 struct fw_card *card = container_of(kref, struct fw_card, kref);
633
634 complete(&card->done);
635}
636
53dca511 637void fw_core_remove_card(struct fw_card *card)
3038e353 638{
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639 struct fw_card_driver dummy_driver = dummy_driver_template;
640
ecab4133
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641 card->driver->update_phy_reg(card, 4,
642 PHY_LINK_ACTIVE | PHY_CONTENDER, 0);
02d37bed 643 fw_schedule_bus_reset(card, false, true);
3038e353 644
6a5033be 645 mutex_lock(&card_mutex);
e747a5c0 646 list_del_init(&card->link);
6a5033be 647 mutex_unlock(&card_mutex);
3038e353 648
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649 /* Switch off most of the card driver interface. */
650 dummy_driver.free_iso_context = card->driver->free_iso_context;
651 dummy_driver.stop_iso = card->driver->stop_iso;
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652 card->driver = &dummy_driver;
653
3038e353 654 fw_destroy_nodes(card);
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655
656 /* Wait for all users, especially device workqueue jobs, to finish. */
657 fw_card_put(card);
658 wait_for_completion(&card->done);
8a2d9ed3 659
1e8afea1 660 WARN_ON(!list_empty(&card->transaction_list));
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661}
662EXPORT_SYMBOL(fw_core_remove_card);