ALSA: firewire-lib: compute the value of second field in cycle count for IT context
[deliverable/linux.git] / sound / firewire / amdtp-stream.c
CommitLineData
31ef9134
CL
1/*
2 * Audio and Music Data Transmission Protocol (IEC 61883-6) streams
3 * with Common Isochronous Packet (IEC 61883-1) headers
4 *
5 * Copyright (c) Clemens Ladisch <clemens@ladisch.de>
6 * Licensed under the terms of the GNU General Public License, version 2.
7 */
8
9#include <linux/device.h>
10#include <linux/err.h>
11#include <linux/firewire.h>
12#include <linux/module.h>
13#include <linux/slab.h>
14#include <sound/pcm.h>
7b2d99fa 15#include <sound/pcm_params.h>
d67c46b9 16#include "amdtp-stream.h"
31ef9134
CL
17
18#define TICKS_PER_CYCLE 3072
19#define CYCLES_PER_SECOND 8000
20#define TICKS_PER_SECOND (TICKS_PER_CYCLE * CYCLES_PER_SECOND)
21
ca5b5050 22#define TRANSFER_DELAY_TICKS 0x2e00 /* 479.17 microseconds */
31ef9134 23
b445db44
TS
24/* isochronous header parameters */
25#define ISO_DATA_LENGTH_SHIFT 16
31ef9134
CL
26#define TAG_CIP 1
27
b445db44 28/* common isochronous packet header parameters */
9a2820c1
TS
29#define CIP_EOH_SHIFT 31
30#define CIP_EOH (1u << CIP_EOH_SHIFT)
b445db44 31#define CIP_EOH_MASK 0x80000000
9a2820c1
TS
32#define CIP_SID_SHIFT 24
33#define CIP_SID_MASK 0x3f000000
34#define CIP_DBS_MASK 0x00ff0000
35#define CIP_DBS_SHIFT 16
36#define CIP_DBC_MASK 0x000000ff
37#define CIP_FMT_SHIFT 24
b445db44 38#define CIP_FMT_MASK 0x3f000000
9a2820c1
TS
39#define CIP_FDF_MASK 0x00ff0000
40#define CIP_FDF_SHIFT 16
b445db44
TS
41#define CIP_SYT_MASK 0x0000ffff
42#define CIP_SYT_NO_INFO 0xffff
b445db44 43
51c29fd2 44/* Audio and Music transfer protocol specific parameters */
414ba022 45#define CIP_FMT_AM 0x10
2b3fc456 46#define AMDTP_FDF_NO_DATA 0xff
31ef9134
CL
47
48/* TODO: make these configurable */
49#define INTERRUPT_INTERVAL 16
50#define QUEUE_LENGTH 48
51
2b3fc456 52#define IN_PACKET_HEADER_SIZE 4
4b7da117
TS
53#define OUT_PACKET_HEADER_SIZE 0
54
76fb8789
CL
55static void pcm_period_tasklet(unsigned long data);
56
31ef9134 57/**
be4a2894
TS
58 * amdtp_stream_init - initialize an AMDTP stream structure
59 * @s: the AMDTP stream to initialize
31ef9134 60 * @unit: the target of the stream
3ff7e8f0 61 * @dir: the direction of stream
31ef9134 62 * @flags: the packet transmission method to use
5955815e 63 * @fmt: the value of fmt field in CIP header
df075fee
TS
64 * @process_data_blocks: callback handler to process data blocks
65 * @protocol_size: the size to allocate newly for protocol
31ef9134 66 */
be4a2894 67int amdtp_stream_init(struct amdtp_stream *s, struct fw_unit *unit,
5955815e 68 enum amdtp_stream_direction dir, enum cip_flags flags,
df075fee
TS
69 unsigned int fmt,
70 amdtp_stream_process_data_blocks_t process_data_blocks,
71 unsigned int protocol_size)
31ef9134 72{
df075fee
TS
73 if (process_data_blocks == NULL)
74 return -EINVAL;
75
76 s->protocol = kzalloc(protocol_size, GFP_KERNEL);
77 if (!s->protocol)
78 return -ENOMEM;
79
c6f224dc 80 s->unit = unit;
3ff7e8f0 81 s->direction = dir;
31ef9134
CL
82 s->flags = flags;
83 s->context = ERR_PTR(-1);
84 mutex_init(&s->mutex);
76fb8789 85 tasklet_init(&s->period_tasklet, pcm_period_tasklet, (unsigned long)s);
ec00f5e4 86 s->packet_index = 0;
31ef9134 87
7b3b0d85
TS
88 init_waitqueue_head(&s->callback_wait);
89 s->callbacked = false;
90 s->sync_slave = NULL;
91
5955815e 92 s->fmt = fmt;
df075fee 93 s->process_data_blocks = process_data_blocks;
414ba022 94
31ef9134
CL
95 return 0;
96}
be4a2894 97EXPORT_SYMBOL(amdtp_stream_init);
31ef9134
CL
98
99/**
be4a2894
TS
100 * amdtp_stream_destroy - free stream resources
101 * @s: the AMDTP stream to destroy
31ef9134 102 */
be4a2894 103void amdtp_stream_destroy(struct amdtp_stream *s)
31ef9134 104{
44c376b9
TS
105 /* Not initialized. */
106 if (s->protocol == NULL)
107 return;
108
be4a2894 109 WARN_ON(amdtp_stream_running(s));
df075fee 110 kfree(s->protocol);
31ef9134 111 mutex_destroy(&s->mutex);
31ef9134 112}
be4a2894 113EXPORT_SYMBOL(amdtp_stream_destroy);
31ef9134 114
c5280e99 115const unsigned int amdtp_syt_intervals[CIP_SFC_COUNT] = {
a7304e3b
CL
116 [CIP_SFC_32000] = 8,
117 [CIP_SFC_44100] = 8,
118 [CIP_SFC_48000] = 8,
119 [CIP_SFC_88200] = 16,
120 [CIP_SFC_96000] = 16,
121 [CIP_SFC_176400] = 32,
122 [CIP_SFC_192000] = 32,
123};
124EXPORT_SYMBOL(amdtp_syt_intervals);
125
f9503a68 126const unsigned int amdtp_rate_table[CIP_SFC_COUNT] = {
1017abed
TS
127 [CIP_SFC_32000] = 32000,
128 [CIP_SFC_44100] = 44100,
129 [CIP_SFC_48000] = 48000,
130 [CIP_SFC_88200] = 88200,
131 [CIP_SFC_96000] = 96000,
132 [CIP_SFC_176400] = 176400,
133 [CIP_SFC_192000] = 192000,
134};
135EXPORT_SYMBOL(amdtp_rate_table);
136
7b2d99fa
TS
137/**
138 * amdtp_stream_add_pcm_hw_constraints - add hw constraints for PCM substream
139 * @s: the AMDTP stream, which must be initialized.
140 * @runtime: the PCM substream runtime
141 */
142int amdtp_stream_add_pcm_hw_constraints(struct amdtp_stream *s,
143 struct snd_pcm_runtime *runtime)
144{
145 int err;
146
7b2d99fa
TS
147 /*
148 * Currently firewire-lib processes 16 packets in one software
149 * interrupt callback. This equals to 2msec but actually the
150 * interval of the interrupts has a jitter.
151 * Additionally, even if adding a constraint to fit period size to
152 * 2msec, actual calculated frames per period doesn't equal to 2msec,
153 * depending on sampling rate.
154 * Anyway, the interval to call snd_pcm_period_elapsed() cannot 2msec.
155 * Here let us use 5msec for safe period interrupt.
156 */
157 err = snd_pcm_hw_constraint_minmax(runtime,
158 SNDRV_PCM_HW_PARAM_PERIOD_TIME,
159 5000, UINT_MAX);
160 if (err < 0)
161 goto end;
162
163 /* Non-Blocking stream has no more constraints */
164 if (!(s->flags & CIP_BLOCKING))
165 goto end;
166
167 /*
168 * One AMDTP packet can include some frames. In blocking mode, the
169 * number equals to SYT_INTERVAL. So the number is 8, 16 or 32,
170 * depending on its sampling rate. For accurate period interrupt, it's
ce991981 171 * preferrable to align period/buffer sizes to current SYT_INTERVAL.
7b2d99fa 172 *
ce991981
YG
173 * TODO: These constraints can be improved with proper rules.
174 * Currently apply LCM of SYT_INTERVALs.
7b2d99fa
TS
175 */
176 err = snd_pcm_hw_constraint_step(runtime, 0,
177 SNDRV_PCM_HW_PARAM_PERIOD_SIZE, 32);
178 if (err < 0)
179 goto end;
180 err = snd_pcm_hw_constraint_step(runtime, 0,
181 SNDRV_PCM_HW_PARAM_BUFFER_SIZE, 32);
182end:
183 return err;
184}
185EXPORT_SYMBOL(amdtp_stream_add_pcm_hw_constraints);
186
31ef9134 187/**
be4a2894
TS
188 * amdtp_stream_set_parameters - set stream parameters
189 * @s: the AMDTP stream to configure
31ef9134 190 * @rate: the sample rate
df075fee 191 * @data_block_quadlets: the size of a data block in quadlet unit
31ef9134 192 *
a7304e3b 193 * The parameters must be set before the stream is started, and must not be
31ef9134
CL
194 * changed while the stream is running.
195 */
df075fee
TS
196int amdtp_stream_set_parameters(struct amdtp_stream *s, unsigned int rate,
197 unsigned int data_block_quadlets)
31ef9134 198{
df075fee 199 unsigned int sfc;
31ef9134 200
547e631c 201 for (sfc = 0; sfc < ARRAY_SIZE(amdtp_rate_table); ++sfc) {
1017abed 202 if (amdtp_rate_table[sfc] == rate)
547e631c
TS
203 break;
204 }
205 if (sfc == ARRAY_SIZE(amdtp_rate_table))
206 return -EINVAL;
e84d15f6 207
e84d15f6 208 s->sfc = sfc;
df075fee 209 s->data_block_quadlets = data_block_quadlets;
a7304e3b 210 s->syt_interval = amdtp_syt_intervals[sfc];
e84d15f6
CL
211
212 /* default buffering in the device */
213 s->transfer_delay = TRANSFER_DELAY_TICKS - TICKS_PER_CYCLE;
214 if (s->flags & CIP_BLOCKING)
215 /* additional buffering needed to adjust for no-data packets */
216 s->transfer_delay += TICKS_PER_SECOND * s->syt_interval / rate;
77d2a8a4 217
547e631c 218 return 0;
31ef9134 219}
be4a2894 220EXPORT_SYMBOL(amdtp_stream_set_parameters);
31ef9134
CL
221
222/**
be4a2894
TS
223 * amdtp_stream_get_max_payload - get the stream's packet size
224 * @s: the AMDTP stream
31ef9134
CL
225 *
226 * This function must not be called before the stream has been configured
be4a2894 227 * with amdtp_stream_set_parameters().
31ef9134 228 */
be4a2894 229unsigned int amdtp_stream_get_max_payload(struct amdtp_stream *s)
31ef9134 230{
a2064710
TS
231 unsigned int multiplier = 1;
232
233 if (s->flags & CIP_JUMBO_PAYLOAD)
234 multiplier = 5;
235
236 return 8 + s->syt_interval * s->data_block_quadlets * 4 * multiplier;
31ef9134 237}
be4a2894 238EXPORT_SYMBOL(amdtp_stream_get_max_payload);
31ef9134 239
76fb8789 240/**
be4a2894
TS
241 * amdtp_stream_pcm_prepare - prepare PCM device for running
242 * @s: the AMDTP stream
76fb8789
CL
243 *
244 * This function should be called from the PCM device's .prepare callback.
245 */
be4a2894 246void amdtp_stream_pcm_prepare(struct amdtp_stream *s)
76fb8789
CL
247{
248 tasklet_kill(&s->period_tasklet);
249 s->pcm_buffer_pointer = 0;
250 s->pcm_period_pointer = 0;
92b862c7 251 s->pointer_flush = true;
76fb8789 252}
be4a2894 253EXPORT_SYMBOL(amdtp_stream_pcm_prepare);
76fb8789 254
875be091
TS
255static unsigned int calculate_data_blocks(struct amdtp_stream *s,
256 unsigned int syt)
31ef9134
CL
257{
258 unsigned int phase, data_blocks;
259
875be091
TS
260 /* Blocking mode. */
261 if (s->flags & CIP_BLOCKING) {
262 /* This module generate empty packet for 'no data'. */
263 if (syt == CIP_SYT_NO_INFO)
264 data_blocks = 0;
265 else
266 data_blocks = s->syt_interval;
267 /* Non-blocking mode. */
31ef9134 268 } else {
875be091
TS
269 if (!cip_sfc_is_base_44100(s->sfc)) {
270 /* Sample_rate / 8000 is an integer, and precomputed. */
271 data_blocks = s->data_block_state;
272 } else {
273 phase = s->data_block_state;
31ef9134
CL
274
275 /*
276 * This calculates the number of data blocks per packet so that
277 * 1) the overall rate is correct and exactly synchronized to
278 * the bus clock, and
279 * 2) packets with a rounded-up number of blocks occur as early
280 * as possible in the sequence (to prevent underruns of the
281 * device's buffer).
282 */
875be091
TS
283 if (s->sfc == CIP_SFC_44100)
284 /* 6 6 5 6 5 6 5 ... */
285 data_blocks = 5 + ((phase & 1) ^
286 (phase == 0 || phase >= 40));
287 else
288 /* 12 11 11 11 11 ... or 23 22 22 22 22 ... */
289 data_blocks = 11 * (s->sfc >> 1) + (phase == 0);
290 if (++phase >= (80 >> (s->sfc >> 1)))
291 phase = 0;
292 s->data_block_state = phase;
293 }
31ef9134
CL
294 }
295
296 return data_blocks;
297}
298
be4a2894 299static unsigned int calculate_syt(struct amdtp_stream *s,
31ef9134
CL
300 unsigned int cycle)
301{
302 unsigned int syt_offset, phase, index, syt;
303
304 if (s->last_syt_offset < TICKS_PER_CYCLE) {
305 if (!cip_sfc_is_base_44100(s->sfc))
306 syt_offset = s->last_syt_offset + s->syt_offset_state;
307 else {
308 /*
309 * The time, in ticks, of the n'th SYT_INTERVAL sample is:
310 * n * SYT_INTERVAL * 24576000 / sample_rate
311 * Modulo TICKS_PER_CYCLE, the difference between successive
312 * elements is about 1386.23. Rounding the results of this
313 * formula to the SYT precision results in a sequence of
314 * differences that begins with:
315 * 1386 1386 1387 1386 1386 1386 1387 1386 1386 1386 1387 ...
316 * This code generates _exactly_ the same sequence.
317 */
318 phase = s->syt_offset_state;
319 index = phase % 13;
320 syt_offset = s->last_syt_offset;
321 syt_offset += 1386 + ((index && !(index & 3)) ||
322 phase == 146);
323 if (++phase >= 147)
324 phase = 0;
325 s->syt_offset_state = phase;
326 }
327 } else
328 syt_offset = s->last_syt_offset - TICKS_PER_CYCLE;
329 s->last_syt_offset = syt_offset;
330
be454366 331 if (syt_offset < TICKS_PER_CYCLE) {
e84d15f6 332 syt_offset += s->transfer_delay;
be454366
CL
333 syt = (cycle + syt_offset / TICKS_PER_CYCLE) << 12;
334 syt += syt_offset % TICKS_PER_CYCLE;
31ef9134 335
b445db44 336 return syt & CIP_SYT_MASK;
be454366 337 } else {
b445db44 338 return CIP_SYT_NO_INFO;
be454366 339 }
31ef9134
CL
340}
341
4b7da117
TS
342static void update_pcm_pointers(struct amdtp_stream *s,
343 struct snd_pcm_substream *pcm,
344 unsigned int frames)
65845f29
TS
345{
346 unsigned int ptr;
347
4b7da117
TS
348 ptr = s->pcm_buffer_pointer + frames;
349 if (ptr >= pcm->runtime->buffer_size)
350 ptr -= pcm->runtime->buffer_size;
351 ACCESS_ONCE(s->pcm_buffer_pointer) = ptr;
352
353 s->pcm_period_pointer += frames;
354 if (s->pcm_period_pointer >= pcm->runtime->period_size) {
355 s->pcm_period_pointer -= pcm->runtime->period_size;
356 s->pointer_flush = false;
357 tasklet_hi_schedule(&s->period_tasklet);
358 }
359}
360
361static void pcm_period_tasklet(unsigned long data)
362{
363 struct amdtp_stream *s = (void *)data;
364 struct snd_pcm_substream *pcm = ACCESS_ONCE(s->pcm);
365
366 if (pcm)
367 snd_pcm_period_elapsed(pcm);
368}
369
370static int queue_packet(struct amdtp_stream *s,
371 unsigned int header_length,
372 unsigned int payload_length, bool skip)
373{
374 struct fw_iso_packet p = {0};
7b3b0d85
TS
375 int err = 0;
376
377 if (IS_ERR(s->context))
378 goto end;
4b7da117
TS
379
380 p.interrupt = IS_ALIGNED(s->packet_index + 1, INTERRUPT_INTERVAL);
381 p.tag = TAG_CIP;
382 p.header_length = header_length;
383 p.payload_length = (!skip) ? payload_length : 0;
384 p.skip = skip;
385 err = fw_iso_context_queue(s->context, &p, &s->buffer.iso_buffer,
386 s->buffer.packets[s->packet_index].offset);
387 if (err < 0) {
388 dev_err(&s->unit->device, "queueing error: %d\n", err);
389 goto end;
390 }
391
392 if (++s->packet_index >= QUEUE_LENGTH)
393 s->packet_index = 0;
394end:
395 return err;
396}
397
398static inline int queue_out_packet(struct amdtp_stream *s,
399 unsigned int payload_length, bool skip)
400{
401 return queue_packet(s, OUT_PACKET_HEADER_SIZE,
402 payload_length, skip);
403}
404
2b3fc456
TS
405static inline int queue_in_packet(struct amdtp_stream *s)
406{
407 return queue_packet(s, IN_PACKET_HEADER_SIZE,
408 amdtp_stream_get_max_payload(s), false);
409}
410
a4103bd7
TS
411static int handle_out_packet(struct amdtp_stream *s, unsigned int data_blocks,
412 unsigned int syt)
31ef9134
CL
413{
414 __be32 *buffer;
6fc6b9ce 415 unsigned int payload_length;
20e44577 416 unsigned int pcm_frames;
31ef9134 417 struct snd_pcm_substream *pcm;
31ef9134 418
ccccad86 419 buffer = s->buffer.packets[s->packet_index].buffer;
df075fee 420 pcm_frames = s->process_data_blocks(s, buffer + 2, data_blocks, &syt);
20e44577 421
31ef9134 422 buffer[0] = cpu_to_be32(ACCESS_ONCE(s->source_node_id_field) |
9a2820c1 423 (s->data_block_quadlets << CIP_DBS_SHIFT) |
31ef9134 424 s->data_block_counter);
414ba022
TS
425 buffer[1] = cpu_to_be32(CIP_EOH |
426 ((s->fmt << CIP_FMT_SHIFT) & CIP_FMT_MASK) |
427 ((s->fdf << CIP_FDF_SHIFT) & CIP_FDF_MASK) |
428 (syt & CIP_SYT_MASK));
31ef9134
CL
429
430 s->data_block_counter = (s->data_block_counter + data_blocks) & 0xff;
431
4b7da117 432 payload_length = 8 + data_blocks * 4 * s->data_block_quadlets;
a4103bd7
TS
433 if (queue_out_packet(s, payload_length, false) < 0)
434 return -EIO;
31ef9134 435
20e44577
TS
436 pcm = ACCESS_ONCE(s->pcm);
437 if (pcm && pcm_frames > 0)
438 update_pcm_pointers(s, pcm, pcm_frames);
a4103bd7
TS
439
440 /* No need to return the number of handled data blocks. */
441 return 0;
76fb8789
CL
442}
443
6fc6b9ce 444static int handle_in_packet(struct amdtp_stream *s,
31ea49ba 445 unsigned int payload_quadlets, __be32 *buffer,
20e44577 446 unsigned int *data_blocks, unsigned int syt)
2b3fc456
TS
447{
448 u32 cip_header[2];
414ba022 449 unsigned int fmt, fdf;
6fc6b9ce 450 unsigned int data_block_quadlets, data_block_counter, dbc_interval;
20e44577
TS
451 struct snd_pcm_substream *pcm;
452 unsigned int pcm_frames;
c8bdf49b 453 bool lost;
2b3fc456
TS
454
455 cip_header[0] = be32_to_cpu(buffer[0]);
456 cip_header[1] = be32_to_cpu(buffer[1]);
457
458 /*
459 * This module supports 'Two-quadlet CIP header with SYT field'.
77d2a8a4 460 * For convenience, also check FMT field is AM824 or not.
2b3fc456
TS
461 */
462 if (((cip_header[0] & CIP_EOH_MASK) == CIP_EOH) ||
414ba022 463 ((cip_header[1] & CIP_EOH_MASK) != CIP_EOH)) {
2b3fc456
TS
464 dev_info_ratelimited(&s->unit->device,
465 "Invalid CIP header for AMDTP: %08X:%08X\n",
466 cip_header[0], cip_header[1]);
31ea49ba 467 *data_blocks = 0;
20e44577 468 pcm_frames = 0;
2b3fc456
TS
469 goto end;
470 }
471
414ba022
TS
472 /* Check valid protocol or not. */
473 fmt = (cip_header[1] & CIP_FMT_MASK) >> CIP_FMT_SHIFT;
474 if (fmt != s->fmt) {
2a7e1713
TS
475 dev_info_ratelimited(&s->unit->device,
476 "Detect unexpected protocol: %08x %08x\n",
477 cip_header[0], cip_header[1]);
478 *data_blocks = 0;
479 pcm_frames = 0;
480 goto end;
414ba022
TS
481 }
482
2b3fc456 483 /* Calculate data blocks */
414ba022 484 fdf = (cip_header[1] & CIP_FDF_MASK) >> CIP_FDF_SHIFT;
2b3fc456 485 if (payload_quadlets < 3 ||
414ba022 486 (fmt == CIP_FMT_AM && fdf == AMDTP_FDF_NO_DATA)) {
31ea49ba 487 *data_blocks = 0;
2b3fc456
TS
488 } else {
489 data_block_quadlets =
9a2820c1 490 (cip_header[0] & CIP_DBS_MASK) >> CIP_DBS_SHIFT;
2b3fc456
TS
491 /* avoid division by zero */
492 if (data_block_quadlets == 0) {
12e0f438 493 dev_err(&s->unit->device,
2b3fc456
TS
494 "Detect invalid value in dbs field: %08X\n",
495 cip_header[0]);
a9007054 496 return -EPROTO;
2b3fc456 497 }
69702239
TS
498 if (s->flags & CIP_WRONG_DBS)
499 data_block_quadlets = s->data_block_quadlets;
2b3fc456 500
31ea49ba 501 *data_blocks = (payload_quadlets - 2) / data_block_quadlets;
2b3fc456
TS
502 }
503
504 /* Check data block counter continuity */
9a2820c1 505 data_block_counter = cip_header[0] & CIP_DBC_MASK;
31ea49ba 506 if (*data_blocks == 0 && (s->flags & CIP_EMPTY_HAS_WRONG_DBC) &&
9d59124c
TS
507 s->data_block_counter != UINT_MAX)
508 data_block_counter = s->data_block_counter;
509
18f5ed36
TS
510 if (((s->flags & CIP_SKIP_DBC_ZERO_CHECK) &&
511 data_block_counter == s->tx_first_dbc) ||
512 s->data_block_counter == UINT_MAX) {
b84b1a27
TS
513 lost = false;
514 } else if (!(s->flags & CIP_DBC_IS_END_EVENT)) {
c8bdf49b 515 lost = data_block_counter != s->data_block_counter;
d9cd0065 516 } else {
31ea49ba 517 if ((*data_blocks > 0) && (s->tx_dbc_interval > 0))
d9cd0065
TS
518 dbc_interval = s->tx_dbc_interval;
519 else
31ea49ba 520 dbc_interval = *data_blocks;
d9cd0065 521
c8bdf49b 522 lost = data_block_counter !=
d9cd0065
TS
523 ((s->data_block_counter + dbc_interval) & 0xff);
524 }
c8bdf49b
TS
525
526 if (lost) {
12e0f438
TS
527 dev_err(&s->unit->device,
528 "Detect discontinuity of CIP: %02X %02X\n",
529 s->data_block_counter, data_block_counter);
6fc6b9ce 530 return -EIO;
2b3fc456
TS
531 }
532
df075fee 533 pcm_frames = s->process_data_blocks(s, buffer + 2, *data_blocks, &syt);
2b3fc456 534
c8bdf49b
TS
535 if (s->flags & CIP_DBC_IS_END_EVENT)
536 s->data_block_counter = data_block_counter;
537 else
538 s->data_block_counter =
31ea49ba 539 (data_block_counter + *data_blocks) & 0xff;
2b3fc456
TS
540end:
541 if (queue_in_packet(s) < 0)
6fc6b9ce 542 return -EIO;
2b3fc456 543
20e44577
TS
544 pcm = ACCESS_ONCE(s->pcm);
545 if (pcm && pcm_frames > 0)
546 update_pcm_pointers(s, pcm, pcm_frames);
2b3fc456 547
31ea49ba 548 return 0;
2b3fc456
TS
549}
550
73fc7f08
TS
551/*
552 * In CYCLE_TIMER register of IEEE 1394, 7 bits are used to represent second. On
553 * the other hand, in DMA descriptors of 1394 OHCI, 3 bits are used to represent
554 * it. Thus, via Linux firewire subsystem, we can get the 3 bits for second.
555 */
556static inline u32 compute_cycle_count(u32 tstamp)
557{
558 return (((tstamp >> 13) & 0x07) * 8000) + (tstamp & 0x1fff);
559}
560
561static inline u32 increment_cycle_count(u32 cycle, unsigned int addend)
562{
563 cycle += addend;
564 if (cycle >= 8 * CYCLES_PER_SECOND)
565 cycle -= 8 * CYCLES_PER_SECOND;
566 return cycle;
567}
568
569static void out_stream_callback(struct fw_iso_context *context, u32 tstamp,
4b7da117
TS
570 size_t header_length, void *header,
571 void *private_data)
31ef9134 572{
be4a2894 573 struct amdtp_stream *s = private_data;
ccccad86 574 unsigned int i, syt, packets = header_length / 4;
6fc6b9ce 575 unsigned int data_blocks;
73fc7f08 576 u32 cycle;
31ef9134 577
a4103bd7
TS
578 if (s->packet_index < 0)
579 return;
580
73fc7f08
TS
581 cycle = compute_cycle_count(tstamp);
582
583 /* Align to actual cycle count for the last packet. */
584 cycle = increment_cycle_count(cycle, QUEUE_LENGTH - packets);
31ef9134 585
ccccad86 586 for (i = 0; i < packets; ++i) {
73fc7f08
TS
587 cycle = increment_cycle_count(cycle, 1);
588 syt = calculate_syt(s, cycle);
6fc6b9ce
TS
589 data_blocks = calculate_data_blocks(s, syt);
590
a4103bd7
TS
591 if (handle_out_packet(s, data_blocks, syt) < 0) {
592 s->packet_index = -1;
593 amdtp_stream_pcm_abort(s);
594 return;
595 }
ccccad86 596 }
a4103bd7 597
13882a82 598 fw_iso_context_queue_flush(s->context);
31ef9134
CL
599}
600
73fc7f08 601static void in_stream_callback(struct fw_iso_context *context, u32 tstamp,
2b3fc456
TS
602 size_t header_length, void *header,
603 void *private_data)
604{
605 struct amdtp_stream *s = private_data;
a2064710
TS
606 unsigned int p, syt, packets;
607 unsigned int payload_quadlets, max_payload_quadlets;
6fc6b9ce 608 unsigned int data_blocks;
2b3fc456
TS
609 __be32 *buffer, *headers = header;
610
a4103bd7
TS
611 if (s->packet_index < 0)
612 return;
613
2b3fc456
TS
614 /* The number of packets in buffer */
615 packets = header_length / IN_PACKET_HEADER_SIZE;
616
a2064710
TS
617 /* For buffer-over-run prevention. */
618 max_payload_quadlets = amdtp_stream_get_max_payload(s) / 4;
619
2b3fc456 620 for (p = 0; p < packets; p++) {
2b3fc456
TS
621 buffer = s->buffer.packets[s->packet_index].buffer;
622
623 /* The number of quadlets in this packet */
624 payload_quadlets =
625 (be32_to_cpu(headers[p]) >> ISO_DATA_LENGTH_SHIFT) / 4;
a2064710
TS
626 if (payload_quadlets > max_payload_quadlets) {
627 dev_err(&s->unit->device,
628 "Detect jumbo payload: %02x %02x\n",
629 payload_quadlets, max_payload_quadlets);
630 s->packet_index = -1;
631 break;
632 }
633
20e44577 634 syt = be32_to_cpu(buffer[1]) & CIP_SYT_MASK;
31ea49ba 635 if (handle_in_packet(s, payload_quadlets, buffer,
20e44577 636 &data_blocks, syt) < 0) {
6fc6b9ce
TS
637 s->packet_index = -1;
638 break;
639 }
640
641 /* Process sync slave stream */
642 if (s->sync_slave && s->sync_slave->callbacked) {
a4103bd7
TS
643 if (handle_out_packet(s->sync_slave,
644 data_blocks, syt) < 0) {
645 s->packet_index = -1;
646 break;
647 }
6fc6b9ce 648 }
2b3fc456
TS
649 }
650
7b3b0d85
TS
651 /* Queueing error or detecting discontinuity */
652 if (s->packet_index < 0) {
6fc6b9ce
TS
653 amdtp_stream_pcm_abort(s);
654
7b3b0d85
TS
655 /* Abort sync slave. */
656 if (s->sync_slave) {
657 s->sync_slave->packet_index = -1;
658 amdtp_stream_pcm_abort(s->sync_slave);
659 }
660 return;
661 }
662
663 /* when sync to device, flush the packets for slave stream */
664 if (s->sync_slave && s->sync_slave->callbacked)
665 fw_iso_context_queue_flush(s->sync_slave->context);
666
2b3fc456
TS
667 fw_iso_context_queue_flush(s->context);
668}
669
7b3b0d85 670/* processing is done by master callback */
73fc7f08 671static void slave_stream_callback(struct fw_iso_context *context, u32 tstamp,
7b3b0d85
TS
672 size_t header_length, void *header,
673 void *private_data)
674{
675 return;
676}
677
678/* this is executed one time */
679static void amdtp_stream_first_callback(struct fw_iso_context *context,
73fc7f08 680 u32 tstamp, size_t header_length,
7b3b0d85
TS
681 void *header, void *private_data)
682{
683 struct amdtp_stream *s = private_data;
684
685 /*
686 * For in-stream, first packet has come.
687 * For out-stream, prepared to transmit first packet
688 */
689 s->callbacked = true;
690 wake_up(&s->callback_wait);
691
692 if (s->direction == AMDTP_IN_STREAM)
693 context->callback.sc = in_stream_callback;
727d3a0b 694 else if (s->flags & CIP_SYNC_TO_DEVICE)
7b3b0d85
TS
695 context->callback.sc = slave_stream_callback;
696 else
697 context->callback.sc = out_stream_callback;
698
73fc7f08 699 context->callback.sc(context, tstamp, header_length, header, s);
7b3b0d85
TS
700}
701
31ef9134 702/**
be4a2894
TS
703 * amdtp_stream_start - start transferring packets
704 * @s: the AMDTP stream to start
31ef9134
CL
705 * @channel: the isochronous channel on the bus
706 * @speed: firewire speed code
707 *
708 * The stream cannot be started until it has been configured with
be4a2894
TS
709 * amdtp_stream_set_parameters() and it must be started before any PCM or MIDI
710 * device can be started.
31ef9134 711 */
be4a2894 712int amdtp_stream_start(struct amdtp_stream *s, int channel, int speed)
31ef9134
CL
713{
714 static const struct {
715 unsigned int data_block;
716 unsigned int syt_offset;
717 } initial_state[] = {
718 [CIP_SFC_32000] = { 4, 3072 },
719 [CIP_SFC_48000] = { 6, 1024 },
720 [CIP_SFC_96000] = { 12, 1024 },
721 [CIP_SFC_192000] = { 24, 1024 },
722 [CIP_SFC_44100] = { 0, 67 },
723 [CIP_SFC_88200] = { 0, 67 },
724 [CIP_SFC_176400] = { 0, 67 },
725 };
2b3fc456
TS
726 unsigned int header_size;
727 enum dma_data_direction dir;
7ab56645 728 int type, tag, err;
31ef9134
CL
729
730 mutex_lock(&s->mutex);
731
be4a2894 732 if (WARN_ON(amdtp_stream_running(s) ||
4b7da117 733 (s->data_block_quadlets < 1))) {
31ef9134
CL
734 err = -EBADFD;
735 goto err_unlock;
736 }
737
b6bc8123
TS
738 if (s->direction == AMDTP_IN_STREAM &&
739 s->flags & CIP_SKIP_INIT_DBC_CHECK)
740 s->data_block_counter = UINT_MAX;
741 else
742 s->data_block_counter = 0;
31ef9134
CL
743 s->data_block_state = initial_state[s->sfc].data_block;
744 s->syt_offset_state = initial_state[s->sfc].syt_offset;
745 s->last_syt_offset = TICKS_PER_CYCLE;
746
2b3fc456
TS
747 /* initialize packet buffer */
748 if (s->direction == AMDTP_IN_STREAM) {
749 dir = DMA_FROM_DEVICE;
750 type = FW_ISO_CONTEXT_RECEIVE;
751 header_size = IN_PACKET_HEADER_SIZE;
2b3fc456
TS
752 } else {
753 dir = DMA_TO_DEVICE;
754 type = FW_ISO_CONTEXT_TRANSMIT;
755 header_size = OUT_PACKET_HEADER_SIZE;
2b3fc456 756 }
31ef9134 757 err = iso_packets_buffer_init(&s->buffer, s->unit, QUEUE_LENGTH,
2b3fc456 758 amdtp_stream_get_max_payload(s), dir);
31ef9134
CL
759 if (err < 0)
760 goto err_unlock;
761
762 s->context = fw_iso_context_create(fw_parent_device(s->unit)->card,
2b3fc456 763 type, channel, speed, header_size,
7b3b0d85 764 amdtp_stream_first_callback, s);
31ef9134
CL
765 if (IS_ERR(s->context)) {
766 err = PTR_ERR(s->context);
767 if (err == -EBUSY)
768 dev_err(&s->unit->device,
be4a2894 769 "no free stream on this controller\n");
31ef9134
CL
770 goto err_buffer;
771 }
772
be4a2894 773 amdtp_stream_update(s);
31ef9134 774
ec00f5e4 775 s->packet_index = 0;
4b7da117 776 do {
2b3fc456
TS
777 if (s->direction == AMDTP_IN_STREAM)
778 err = queue_in_packet(s);
779 else
780 err = queue_out_packet(s, 0, true);
4b7da117
TS
781 if (err < 0)
782 goto err_context;
783 } while (s->packet_index > 0);
31ef9134 784
2b3fc456 785 /* NOTE: TAG1 matches CIP. This just affects in stream. */
7ab56645
TS
786 tag = FW_ISO_CONTEXT_MATCH_TAG1;
787 if (s->flags & CIP_EMPTY_WITH_TAG0)
788 tag |= FW_ISO_CONTEXT_MATCH_TAG0;
789
7b3b0d85 790 s->callbacked = false;
7ab56645 791 err = fw_iso_context_start(s->context, -1, 0, tag);
31ef9134
CL
792 if (err < 0)
793 goto err_context;
794
795 mutex_unlock(&s->mutex);
796
797 return 0;
798
799err_context:
800 fw_iso_context_destroy(s->context);
801 s->context = ERR_PTR(-1);
802err_buffer:
803 iso_packets_buffer_destroy(&s->buffer, s->unit);
804err_unlock:
805 mutex_unlock(&s->mutex);
806
807 return err;
808}
be4a2894 809EXPORT_SYMBOL(amdtp_stream_start);
31ef9134 810
e9148ddd 811/**
be4a2894
TS
812 * amdtp_stream_pcm_pointer - get the PCM buffer position
813 * @s: the AMDTP stream that transports the PCM data
e9148ddd
CL
814 *
815 * Returns the current buffer position, in frames.
816 */
be4a2894 817unsigned long amdtp_stream_pcm_pointer(struct amdtp_stream *s)
e9148ddd 818{
92b862c7 819 /* this optimization is allowed to be racy */
c8de6dbb 820 if (s->pointer_flush && amdtp_stream_running(s))
92b862c7
CL
821 fw_iso_context_flush_completions(s->context);
822 else
823 s->pointer_flush = true;
e9148ddd
CL
824
825 return ACCESS_ONCE(s->pcm_buffer_pointer);
826}
be4a2894 827EXPORT_SYMBOL(amdtp_stream_pcm_pointer);
e9148ddd 828
31ef9134 829/**
be4a2894
TS
830 * amdtp_stream_update - update the stream after a bus reset
831 * @s: the AMDTP stream
31ef9134 832 */
be4a2894 833void amdtp_stream_update(struct amdtp_stream *s)
31ef9134 834{
9a2820c1 835 /* Precomputing. */
31ef9134 836 ACCESS_ONCE(s->source_node_id_field) =
9a2820c1
TS
837 (fw_parent_device(s->unit)->card->node_id << CIP_SID_SHIFT) &
838 CIP_SID_MASK;
31ef9134 839}
be4a2894 840EXPORT_SYMBOL(amdtp_stream_update);
31ef9134
CL
841
842/**
be4a2894
TS
843 * amdtp_stream_stop - stop sending packets
844 * @s: the AMDTP stream to stop
31ef9134
CL
845 *
846 * All PCM and MIDI devices of the stream must be stopped before the stream
847 * itself can be stopped.
848 */
be4a2894 849void amdtp_stream_stop(struct amdtp_stream *s)
31ef9134
CL
850{
851 mutex_lock(&s->mutex);
852
be4a2894 853 if (!amdtp_stream_running(s)) {
31ef9134
CL
854 mutex_unlock(&s->mutex);
855 return;
856 }
857
76fb8789 858 tasklet_kill(&s->period_tasklet);
31ef9134
CL
859 fw_iso_context_stop(s->context);
860 fw_iso_context_destroy(s->context);
861 s->context = ERR_PTR(-1);
862 iso_packets_buffer_destroy(&s->buffer, s->unit);
863
7b3b0d85
TS
864 s->callbacked = false;
865
31ef9134
CL
866 mutex_unlock(&s->mutex);
867}
be4a2894 868EXPORT_SYMBOL(amdtp_stream_stop);
31ef9134
CL
869
870/**
be4a2894 871 * amdtp_stream_pcm_abort - abort the running PCM device
31ef9134
CL
872 * @s: the AMDTP stream about to be stopped
873 *
874 * If the isochronous stream needs to be stopped asynchronously, call this
875 * function first to stop the PCM device.
876 */
be4a2894 877void amdtp_stream_pcm_abort(struct amdtp_stream *s)
31ef9134
CL
878{
879 struct snd_pcm_substream *pcm;
880
881 pcm = ACCESS_ONCE(s->pcm);
1fb8510c
TI
882 if (pcm)
883 snd_pcm_stop_xrun(pcm);
31ef9134 884}
be4a2894 885EXPORT_SYMBOL(amdtp_stream_pcm_abort);
This page took 0.244008 seconds and 5 git commands to generate.