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Clemens Ladisch31ef9132011-03-15 07:53:21 +01001/*
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>
Takashi Sakamoto7b3b0d82014-04-25 22:44:49 +090014#include <linux/sched.h>
Clemens Ladisch31ef9132011-03-15 07:53:21 +010015#include <sound/pcm.h>
Takashi Sakamoto7b2d99f2014-04-25 22:44:52 +090016#include <sound/pcm_params.h>
Takashi Sakamoto83d8d722014-04-25 22:44:47 +090017#include <sound/rawmidi.h>
Clemens Ladisch31ef9132011-03-15 07:53:21 +010018#include "amdtp.h"
19
20#define TICKS_PER_CYCLE 3072
21#define CYCLES_PER_SECOND 8000
22#define TICKS_PER_SECOND (TICKS_PER_CYCLE * CYCLES_PER_SECOND)
23
Clemens Ladisch5c697e52014-11-25 22:52:24 +010024/*
Clemens Ladisch25ca9172014-11-25 22:54:10 +010025 * Nominally 3125 bytes/second, but the MIDI port's clock might be
26 * 1% too slow, and the bus clock 100 ppm too fast.
27 */
28#define MIDI_BYTES_PER_SECOND 3093
29
30/*
Clemens Ladisch5c697e52014-11-25 22:52:24 +010031 * Several devices look only at the first eight data blocks.
32 * In any case, this is more than enough for the MIDI data rate.
33 */
34#define MAX_MIDI_RX_BLOCKS 8
35
Takashi Sakamotoca5b5052015-02-21 11:50:17 +090036#define TRANSFER_DELAY_TICKS 0x2e00 /* 479.17 microseconds */
Clemens Ladisch31ef9132011-03-15 07:53:21 +010037
Takashi Sakamotob445db42014-04-25 22:44:43 +090038/* isochronous header parameters */
39#define ISO_DATA_LENGTH_SHIFT 16
Clemens Ladisch31ef9132011-03-15 07:53:21 +010040#define TAG_CIP 1
41
Takashi Sakamotob445db42014-04-25 22:44:43 +090042/* common isochronous packet header parameters */
Clemens Ladisch31ef9132011-03-15 07:53:21 +010043#define CIP_EOH (1u << 31)
Takashi Sakamotob445db42014-04-25 22:44:43 +090044#define CIP_EOH_MASK 0x80000000
Clemens Ladisch31ef9132011-03-15 07:53:21 +010045#define CIP_FMT_AM (0x10 << 24)
Takashi Sakamotob445db42014-04-25 22:44:43 +090046#define CIP_FMT_MASK 0x3f000000
47#define CIP_SYT_MASK 0x0000ffff
48#define CIP_SYT_NO_INFO 0xffff
49#define CIP_FDF_MASK 0x00ff0000
50#define CIP_FDF_SFC_SHIFT 16
51
52/*
53 * Audio and Music transfer protocol specific parameters
54 * only "Clock-based rate control mode" is supported
55 */
56#define AMDTP_FDF_AM824 (0 << (CIP_FDF_SFC_SHIFT + 3))
Takashi Sakamoto2b3fc452014-04-25 22:44:46 +090057#define AMDTP_FDF_NO_DATA 0xff
Takashi Sakamotob445db42014-04-25 22:44:43 +090058#define AMDTP_DBS_MASK 0x00ff0000
59#define AMDTP_DBS_SHIFT 16
60#define AMDTP_DBC_MASK 0x000000ff
Clemens Ladisch31ef9132011-03-15 07:53:21 +010061
62/* TODO: make these configurable */
63#define INTERRUPT_INTERVAL 16
64#define QUEUE_LENGTH 48
65
Takashi Sakamoto2b3fc452014-04-25 22:44:46 +090066#define IN_PACKET_HEADER_SIZE 4
Takashi Sakamoto4b7da112014-04-25 22:44:45 +090067#define OUT_PACKET_HEADER_SIZE 0
68
Clemens Ladisch76fb8782012-05-13 22:03:09 +020069static void pcm_period_tasklet(unsigned long data);
70
Clemens Ladisch31ef9132011-03-15 07:53:21 +010071/**
Takashi Sakamotobe4a2892014-04-25 22:44:42 +090072 * amdtp_stream_init - initialize an AMDTP stream structure
73 * @s: the AMDTP stream to initialize
Clemens Ladisch31ef9132011-03-15 07:53:21 +010074 * @unit: the target of the stream
Takashi Sakamoto3ff7e8f2014-04-25 22:44:44 +090075 * @dir: the direction of stream
Clemens Ladisch31ef9132011-03-15 07:53:21 +010076 * @flags: the packet transmission method to use
77 */
Takashi Sakamotobe4a2892014-04-25 22:44:42 +090078int amdtp_stream_init(struct amdtp_stream *s, struct fw_unit *unit,
Takashi Sakamoto3ff7e8f2014-04-25 22:44:44 +090079 enum amdtp_stream_direction dir, enum cip_flags flags)
Clemens Ladisch31ef9132011-03-15 07:53:21 +010080{
Takashi Sakamotoc6f224d2015-02-21 23:54:58 +090081 s->unit = unit;
Takashi Sakamoto3ff7e8f2014-04-25 22:44:44 +090082 s->direction = dir;
Clemens Ladisch31ef9132011-03-15 07:53:21 +010083 s->flags = flags;
84 s->context = ERR_PTR(-1);
85 mutex_init(&s->mutex);
Clemens Ladisch76fb8782012-05-13 22:03:09 +020086 tasklet_init(&s->period_tasklet, pcm_period_tasklet, (unsigned long)s);
Clemens Ladischec00f5e2011-03-15 07:57:24 +010087 s->packet_index = 0;
Clemens Ladisch31ef9132011-03-15 07:53:21 +010088
Takashi Sakamoto7b3b0d82014-04-25 22:44:49 +090089 init_waitqueue_head(&s->callback_wait);
90 s->callbacked = false;
91 s->sync_slave = NULL;
92
Clemens Ladisch31ef9132011-03-15 07:53:21 +010093 return 0;
94}
Takashi Sakamotobe4a2892014-04-25 22:44:42 +090095EXPORT_SYMBOL(amdtp_stream_init);
Clemens Ladisch31ef9132011-03-15 07:53:21 +010096
97/**
Takashi Sakamotobe4a2892014-04-25 22:44:42 +090098 * amdtp_stream_destroy - free stream resources
99 * @s: the AMDTP stream to destroy
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100100 */
Takashi Sakamotobe4a2892014-04-25 22:44:42 +0900101void amdtp_stream_destroy(struct amdtp_stream *s)
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100102{
Takashi Sakamotobe4a2892014-04-25 22:44:42 +0900103 WARN_ON(amdtp_stream_running(s));
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100104 mutex_destroy(&s->mutex);
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100105}
Takashi Sakamotobe4a2892014-04-25 22:44:42 +0900106EXPORT_SYMBOL(amdtp_stream_destroy);
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100107
Clemens Ladischc5280e92011-10-16 21:39:00 +0200108const unsigned int amdtp_syt_intervals[CIP_SFC_COUNT] = {
Clemens Ladischa7304e32011-09-04 22:16:10 +0200109 [CIP_SFC_32000] = 8,
110 [CIP_SFC_44100] = 8,
111 [CIP_SFC_48000] = 8,
112 [CIP_SFC_88200] = 16,
113 [CIP_SFC_96000] = 16,
114 [CIP_SFC_176400] = 32,
115 [CIP_SFC_192000] = 32,
116};
117EXPORT_SYMBOL(amdtp_syt_intervals);
118
Takashi Sakamotof9503a62014-05-28 00:14:36 +0900119const unsigned int amdtp_rate_table[CIP_SFC_COUNT] = {
Takashi Sakamoto1017abe2014-04-25 22:44:59 +0900120 [CIP_SFC_32000] = 32000,
121 [CIP_SFC_44100] = 44100,
122 [CIP_SFC_48000] = 48000,
123 [CIP_SFC_88200] = 88200,
124 [CIP_SFC_96000] = 96000,
125 [CIP_SFC_176400] = 176400,
126 [CIP_SFC_192000] = 192000,
127};
128EXPORT_SYMBOL(amdtp_rate_table);
129
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100130/**
Takashi Sakamoto7b2d99f2014-04-25 22:44:52 +0900131 * amdtp_stream_add_pcm_hw_constraints - add hw constraints for PCM substream
132 * @s: the AMDTP stream, which must be initialized.
133 * @runtime: the PCM substream runtime
134 */
135int amdtp_stream_add_pcm_hw_constraints(struct amdtp_stream *s,
136 struct snd_pcm_runtime *runtime)
137{
138 int err;
139
140 /* AM824 in IEC 61883-6 can deliver 24bit data */
141 err = snd_pcm_hw_constraint_msbits(runtime, 0, 32, 24);
142 if (err < 0)
143 goto end;
144
145 /*
146 * Currently firewire-lib processes 16 packets in one software
147 * interrupt callback. This equals to 2msec but actually the
148 * interval of the interrupts has a jitter.
149 * Additionally, even if adding a constraint to fit period size to
150 * 2msec, actual calculated frames per period doesn't equal to 2msec,
151 * depending on sampling rate.
152 * Anyway, the interval to call snd_pcm_period_elapsed() cannot 2msec.
153 * Here let us use 5msec for safe period interrupt.
154 */
155 err = snd_pcm_hw_constraint_minmax(runtime,
156 SNDRV_PCM_HW_PARAM_PERIOD_TIME,
157 5000, UINT_MAX);
158 if (err < 0)
159 goto end;
160
161 /* Non-Blocking stream has no more constraints */
162 if (!(s->flags & CIP_BLOCKING))
163 goto end;
164
165 /*
166 * One AMDTP packet can include some frames. In blocking mode, the
167 * number equals to SYT_INTERVAL. So the number is 8, 16 or 32,
168 * depending on its sampling rate. For accurate period interrupt, it's
Yannick Guerrinice991982015-03-09 22:13:03 +0100169 * preferrable to align period/buffer sizes to current SYT_INTERVAL.
Takashi Sakamoto7b2d99f2014-04-25 22:44:52 +0900170 *
Yannick Guerrinice991982015-03-09 22:13:03 +0100171 * TODO: These constraints can be improved with proper rules.
172 * Currently apply LCM of SYT_INTERVALs.
Takashi Sakamoto7b2d99f2014-04-25 22:44:52 +0900173 */
174 err = snd_pcm_hw_constraint_step(runtime, 0,
175 SNDRV_PCM_HW_PARAM_PERIOD_SIZE, 32);
176 if (err < 0)
177 goto end;
178 err = snd_pcm_hw_constraint_step(runtime, 0,
179 SNDRV_PCM_HW_PARAM_BUFFER_SIZE, 32);
180end:
181 return err;
182}
183EXPORT_SYMBOL(amdtp_stream_add_pcm_hw_constraints);
184
185/**
Takashi Sakamotobe4a2892014-04-25 22:44:42 +0900186 * amdtp_stream_set_parameters - set stream parameters
187 * @s: the AMDTP stream to configure
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100188 * @rate: the sample rate
Clemens Ladischa7304e32011-09-04 22:16:10 +0200189 * @pcm_channels: the number of PCM samples in each data block, to be encoded
190 * as AM824 multi-bit linear audio
191 * @midi_ports: the number of MIDI ports (i.e., MPX-MIDI Data Channels)
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100192 *
Clemens Ladischa7304e32011-09-04 22:16:10 +0200193 * The parameters must be set before the stream is started, and must not be
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100194 * changed while the stream is running.
195 */
Takashi Sakamotobe4a2892014-04-25 22:44:42 +0900196void amdtp_stream_set_parameters(struct amdtp_stream *s,
197 unsigned int rate,
198 unsigned int pcm_channels,
199 unsigned int midi_ports)
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100200{
Takashi Sakamoto77d2a8a2014-04-25 22:44:50 +0900201 unsigned int i, sfc, midi_channels;
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100202
Takashi Sakamoto83d8d722014-04-25 22:44:47 +0900203 midi_channels = DIV_ROUND_UP(midi_ports, 8);
204
Takashi Sakamoto77d2a8a2014-04-25 22:44:50 +0900205 if (WARN_ON(amdtp_stream_running(s)) |
206 WARN_ON(pcm_channels > AMDTP_MAX_CHANNELS_FOR_PCM) |
Takashi Sakamoto83d8d722014-04-25 22:44:47 +0900207 WARN_ON(midi_channels > AMDTP_MAX_CHANNELS_FOR_MIDI))
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100208 return;
209
Takashi Sakamotof9503a62014-05-28 00:14:36 +0900210 for (sfc = 0; sfc < ARRAY_SIZE(amdtp_rate_table); ++sfc)
Takashi Sakamoto1017abe2014-04-25 22:44:59 +0900211 if (amdtp_rate_table[sfc] == rate)
Clemens Ladische84d15f2011-09-04 22:12:48 +0200212 goto sfc_found;
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100213 WARN_ON(1);
Clemens Ladische84d15f2011-09-04 22:12:48 +0200214 return;
215
216sfc_found:
Takashi Sakamoto10550be2014-04-25 22:44:51 +0900217 s->pcm_channels = pcm_channels;
Clemens Ladische84d15f2011-09-04 22:12:48 +0200218 s->sfc = sfc;
Takashi Sakamoto77d2a8a2014-04-25 22:44:50 +0900219 s->data_block_quadlets = s->pcm_channels + midi_channels;
Clemens Ladischa7304e32011-09-04 22:16:10 +0200220 s->midi_ports = midi_ports;
221
222 s->syt_interval = amdtp_syt_intervals[sfc];
Clemens Ladische84d15f2011-09-04 22:12:48 +0200223
224 /* default buffering in the device */
225 s->transfer_delay = TRANSFER_DELAY_TICKS - TICKS_PER_CYCLE;
226 if (s->flags & CIP_BLOCKING)
227 /* additional buffering needed to adjust for no-data packets */
228 s->transfer_delay += TICKS_PER_SECOND * s->syt_interval / rate;
Takashi Sakamoto77d2a8a2014-04-25 22:44:50 +0900229
230 /* init the position map for PCM and MIDI channels */
231 for (i = 0; i < pcm_channels; i++)
232 s->pcm_positions[i] = i;
233 s->midi_position = s->pcm_channels;
Clemens Ladisch25ca9172014-11-25 22:54:10 +0100234
235 /*
236 * We do not know the actual MIDI FIFO size of most devices. Just
237 * assume two bytes, i.e., one byte can be received over the bus while
238 * the previous one is transmitted over MIDI.
239 * (The value here is adjusted for midi_ratelimit_per_packet().)
240 */
241 s->midi_fifo_limit = rate - MIDI_BYTES_PER_SECOND * s->syt_interval + 1;
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100242}
Takashi Sakamotobe4a2892014-04-25 22:44:42 +0900243EXPORT_SYMBOL(amdtp_stream_set_parameters);
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100244
245/**
Takashi Sakamotobe4a2892014-04-25 22:44:42 +0900246 * amdtp_stream_get_max_payload - get the stream's packet size
247 * @s: the AMDTP stream
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100248 *
249 * This function must not be called before the stream has been configured
Takashi Sakamotobe4a2892014-04-25 22:44:42 +0900250 * with amdtp_stream_set_parameters().
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100251 */
Takashi Sakamotobe4a2892014-04-25 22:44:42 +0900252unsigned int amdtp_stream_get_max_payload(struct amdtp_stream *s)
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100253{
Takashi Sakamotoa2064712015-05-22 23:00:50 +0900254 unsigned int multiplier = 1;
255
256 if (s->flags & CIP_JUMBO_PAYLOAD)
257 multiplier = 5;
258
259 return 8 + s->syt_interval * s->data_block_quadlets * 4 * multiplier;
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100260}
Takashi Sakamotobe4a2892014-04-25 22:44:42 +0900261EXPORT_SYMBOL(amdtp_stream_get_max_payload);
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100262
Takashi Sakamotobe4a2892014-04-25 22:44:42 +0900263static void amdtp_write_s16(struct amdtp_stream *s,
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100264 struct snd_pcm_substream *pcm,
265 __be32 *buffer, unsigned int frames);
Takashi Sakamotobe4a2892014-04-25 22:44:42 +0900266static void amdtp_write_s32(struct amdtp_stream *s,
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100267 struct snd_pcm_substream *pcm,
268 __be32 *buffer, unsigned int frames);
Takashi Sakamoto2b3fc452014-04-25 22:44:46 +0900269static void amdtp_read_s32(struct amdtp_stream *s,
270 struct snd_pcm_substream *pcm,
271 __be32 *buffer, unsigned int frames);
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100272
273/**
Takashi Sakamotobe4a2892014-04-25 22:44:42 +0900274 * amdtp_stream_set_pcm_format - set the PCM format
275 * @s: the AMDTP stream to configure
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100276 * @format: the format of the ALSA PCM device
277 *
Yannick Guerrinice991982015-03-09 22:13:03 +0100278 * The sample format must be set after the other parameters (rate/PCM channels/
Clemens Ladischa7304e32011-09-04 22:16:10 +0200279 * MIDI) and before the stream is started, and must not be changed while the
280 * stream is running.
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100281 */
Takashi Sakamotobe4a2892014-04-25 22:44:42 +0900282void amdtp_stream_set_pcm_format(struct amdtp_stream *s,
283 snd_pcm_format_t format)
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100284{
Takashi Sakamoto83d8d722014-04-25 22:44:47 +0900285 if (WARN_ON(amdtp_stream_pcm_running(s)))
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100286 return;
287
288 switch (format) {
289 default:
290 WARN_ON(1);
291 /* fall through */
292 case SNDRV_PCM_FORMAT_S16:
Takashi Sakamoto2b3fc452014-04-25 22:44:46 +0900293 if (s->direction == AMDTP_OUT_STREAM) {
Takashi Sakamoto10550be2014-04-25 22:44:51 +0900294 s->transfer_samples = amdtp_write_s16;
Takashi Sakamoto2b3fc452014-04-25 22:44:46 +0900295 break;
296 }
297 WARN_ON(1);
298 /* fall through */
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100299 case SNDRV_PCM_FORMAT_S32:
Takashi Sakamoto10550be2014-04-25 22:44:51 +0900300 if (s->direction == AMDTP_OUT_STREAM)
301 s->transfer_samples = amdtp_write_s32;
302 else
303 s->transfer_samples = amdtp_read_s32;
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100304 break;
305 }
306}
Takashi Sakamotobe4a2892014-04-25 22:44:42 +0900307EXPORT_SYMBOL(amdtp_stream_set_pcm_format);
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100308
Clemens Ladisch76fb8782012-05-13 22:03:09 +0200309/**
Takashi Sakamotobe4a2892014-04-25 22:44:42 +0900310 * amdtp_stream_pcm_prepare - prepare PCM device for running
311 * @s: the AMDTP stream
Clemens Ladisch76fb8782012-05-13 22:03:09 +0200312 *
313 * This function should be called from the PCM device's .prepare callback.
314 */
Takashi Sakamotobe4a2892014-04-25 22:44:42 +0900315void amdtp_stream_pcm_prepare(struct amdtp_stream *s)
Clemens Ladisch76fb8782012-05-13 22:03:09 +0200316{
317 tasklet_kill(&s->period_tasklet);
318 s->pcm_buffer_pointer = 0;
319 s->pcm_period_pointer = 0;
Clemens Ladisch92b862c2012-05-13 19:07:22 +0200320 s->pointer_flush = true;
Clemens Ladisch76fb8782012-05-13 22:03:09 +0200321}
Takashi Sakamotobe4a2892014-04-25 22:44:42 +0900322EXPORT_SYMBOL(amdtp_stream_pcm_prepare);
Clemens Ladisch76fb8782012-05-13 22:03:09 +0200323
Takashi Sakamoto875be092015-05-22 23:00:51 +0900324static unsigned int calculate_data_blocks(struct amdtp_stream *s,
325 unsigned int syt)
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100326{
327 unsigned int phase, data_blocks;
328
Takashi Sakamoto875be092015-05-22 23:00:51 +0900329 /* Blocking mode. */
330 if (s->flags & CIP_BLOCKING) {
331 /* This module generate empty packet for 'no data'. */
332 if (syt == CIP_SYT_NO_INFO)
333 data_blocks = 0;
334 else
335 data_blocks = s->syt_interval;
336 /* Non-blocking mode. */
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100337 } else {
Takashi Sakamoto875be092015-05-22 23:00:51 +0900338 if (!cip_sfc_is_base_44100(s->sfc)) {
339 /* Sample_rate / 8000 is an integer, and precomputed. */
340 data_blocks = s->data_block_state;
341 } else {
342 phase = s->data_block_state;
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100343
344 /*
345 * This calculates the number of data blocks per packet so that
346 * 1) the overall rate is correct and exactly synchronized to
347 * the bus clock, and
348 * 2) packets with a rounded-up number of blocks occur as early
349 * as possible in the sequence (to prevent underruns of the
350 * device's buffer).
351 */
Takashi Sakamoto875be092015-05-22 23:00:51 +0900352 if (s->sfc == CIP_SFC_44100)
353 /* 6 6 5 6 5 6 5 ... */
354 data_blocks = 5 + ((phase & 1) ^
355 (phase == 0 || phase >= 40));
356 else
357 /* 12 11 11 11 11 ... or 23 22 22 22 22 ... */
358 data_blocks = 11 * (s->sfc >> 1) + (phase == 0);
359 if (++phase >= (80 >> (s->sfc >> 1)))
360 phase = 0;
361 s->data_block_state = phase;
362 }
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100363 }
364
365 return data_blocks;
366}
367
Takashi Sakamotobe4a2892014-04-25 22:44:42 +0900368static unsigned int calculate_syt(struct amdtp_stream *s,
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100369 unsigned int cycle)
370{
371 unsigned int syt_offset, phase, index, syt;
372
373 if (s->last_syt_offset < TICKS_PER_CYCLE) {
374 if (!cip_sfc_is_base_44100(s->sfc))
375 syt_offset = s->last_syt_offset + s->syt_offset_state;
376 else {
377 /*
378 * The time, in ticks, of the n'th SYT_INTERVAL sample is:
379 * n * SYT_INTERVAL * 24576000 / sample_rate
380 * Modulo TICKS_PER_CYCLE, the difference between successive
381 * elements is about 1386.23. Rounding the results of this
382 * formula to the SYT precision results in a sequence of
383 * differences that begins with:
384 * 1386 1386 1387 1386 1386 1386 1387 1386 1386 1386 1387 ...
385 * This code generates _exactly_ the same sequence.
386 */
387 phase = s->syt_offset_state;
388 index = phase % 13;
389 syt_offset = s->last_syt_offset;
390 syt_offset += 1386 + ((index && !(index & 3)) ||
391 phase == 146);
392 if (++phase >= 147)
393 phase = 0;
394 s->syt_offset_state = phase;
395 }
396 } else
397 syt_offset = s->last_syt_offset - TICKS_PER_CYCLE;
398 s->last_syt_offset = syt_offset;
399
Clemens Ladischbe454362011-03-15 07:55:02 +0100400 if (syt_offset < TICKS_PER_CYCLE) {
Clemens Ladische84d15f2011-09-04 22:12:48 +0200401 syt_offset += s->transfer_delay;
Clemens Ladischbe454362011-03-15 07:55:02 +0100402 syt = (cycle + syt_offset / TICKS_PER_CYCLE) << 12;
403 syt += syt_offset % TICKS_PER_CYCLE;
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100404
Takashi Sakamotob445db42014-04-25 22:44:43 +0900405 return syt & CIP_SYT_MASK;
Clemens Ladischbe454362011-03-15 07:55:02 +0100406 } else {
Takashi Sakamotob445db42014-04-25 22:44:43 +0900407 return CIP_SYT_NO_INFO;
Clemens Ladischbe454362011-03-15 07:55:02 +0100408 }
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100409}
410
Takashi Sakamotobe4a2892014-04-25 22:44:42 +0900411static void amdtp_write_s32(struct amdtp_stream *s,
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100412 struct snd_pcm_substream *pcm,
413 __be32 *buffer, unsigned int frames)
414{
415 struct snd_pcm_runtime *runtime = pcm->runtime;
Takashi Sakamoto77d2a8a2014-04-25 22:44:50 +0900416 unsigned int channels, remaining_frames, i, c;
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100417 const u32 *src;
418
419 channels = s->pcm_channels;
420 src = (void *)runtime->dma_area +
Takashi Sakamotoe84841f2013-09-14 00:35:47 +0900421 frames_to_bytes(runtime, s->pcm_buffer_pointer);
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100422 remaining_frames = runtime->buffer_size - s->pcm_buffer_pointer;
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100423
424 for (i = 0; i < frames; ++i) {
425 for (c = 0; c < channels; ++c) {
Takashi Sakamoto77d2a8a2014-04-25 22:44:50 +0900426 buffer[s->pcm_positions[c]] =
427 cpu_to_be32((*src >> 8) | 0x40000000);
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100428 src++;
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100429 }
Takashi Sakamoto77d2a8a2014-04-25 22:44:50 +0900430 buffer += s->data_block_quadlets;
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100431 if (--remaining_frames == 0)
432 src = (void *)runtime->dma_area;
433 }
434}
435
Takashi Sakamotobe4a2892014-04-25 22:44:42 +0900436static void amdtp_write_s16(struct amdtp_stream *s,
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100437 struct snd_pcm_substream *pcm,
438 __be32 *buffer, unsigned int frames)
439{
440 struct snd_pcm_runtime *runtime = pcm->runtime;
Takashi Sakamoto77d2a8a2014-04-25 22:44:50 +0900441 unsigned int channels, remaining_frames, i, c;
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100442 const u16 *src;
443
444 channels = s->pcm_channels;
445 src = (void *)runtime->dma_area +
Takashi Sakamotoe84841f2013-09-14 00:35:47 +0900446 frames_to_bytes(runtime, s->pcm_buffer_pointer);
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100447 remaining_frames = runtime->buffer_size - s->pcm_buffer_pointer;
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100448
449 for (i = 0; i < frames; ++i) {
450 for (c = 0; c < channels; ++c) {
Takashi Sakamoto77d2a8a2014-04-25 22:44:50 +0900451 buffer[s->pcm_positions[c]] =
Takashi Sakamotoa6975f22014-06-02 01:50:16 +0900452 cpu_to_be32((*src << 8) | 0x42000000);
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100453 src++;
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100454 }
Takashi Sakamoto77d2a8a2014-04-25 22:44:50 +0900455 buffer += s->data_block_quadlets;
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100456 if (--remaining_frames == 0)
457 src = (void *)runtime->dma_area;
458 }
459}
460
Takashi Sakamoto2b3fc452014-04-25 22:44:46 +0900461static void amdtp_read_s32(struct amdtp_stream *s,
462 struct snd_pcm_substream *pcm,
463 __be32 *buffer, unsigned int frames)
464{
465 struct snd_pcm_runtime *runtime = pcm->runtime;
466 unsigned int channels, remaining_frames, i, c;
467 u32 *dst;
468
469 channels = s->pcm_channels;
470 dst = (void *)runtime->dma_area +
471 frames_to_bytes(runtime, s->pcm_buffer_pointer);
472 remaining_frames = runtime->buffer_size - s->pcm_buffer_pointer;
473
474 for (i = 0; i < frames; ++i) {
475 for (c = 0; c < channels; ++c) {
Takashi Sakamoto77d2a8a2014-04-25 22:44:50 +0900476 *dst = be32_to_cpu(buffer[s->pcm_positions[c]]) << 8;
Takashi Sakamoto2b3fc452014-04-25 22:44:46 +0900477 dst++;
478 }
479 buffer += s->data_block_quadlets;
480 if (--remaining_frames == 0)
481 dst = (void *)runtime->dma_area;
482 }
483}
484
Takashi Sakamotobe4a2892014-04-25 22:44:42 +0900485static void amdtp_fill_pcm_silence(struct amdtp_stream *s,
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100486 __be32 *buffer, unsigned int frames)
487{
488 unsigned int i, c;
489
490 for (i = 0; i < frames; ++i) {
491 for (c = 0; c < s->pcm_channels; ++c)
Takashi Sakamoto77d2a8a2014-04-25 22:44:50 +0900492 buffer[s->pcm_positions[c]] = cpu_to_be32(0x40000000);
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100493 buffer += s->data_block_quadlets;
494 }
495}
496
Clemens Ladisch25ca9172014-11-25 22:54:10 +0100497/*
498 * To avoid sending MIDI bytes at too high a rate, assume that the receiving
499 * device has a FIFO, and track how much it is filled. This values increases
500 * by one whenever we send one byte in a packet, but the FIFO empties at
501 * a constant rate independent of our packet rate. One packet has syt_interval
502 * samples, so the number of bytes that empty out of the FIFO, per packet(!),
503 * is MIDI_BYTES_PER_SECOND * syt_interval / sample_rate. To avoid storing
504 * fractional values, the values in midi_fifo_used[] are measured in bytes
505 * multiplied by the sample rate.
506 */
507static bool midi_ratelimit_per_packet(struct amdtp_stream *s, unsigned int port)
508{
509 int used;
510
511 used = s->midi_fifo_used[port];
512 if (used == 0) /* common shortcut */
513 return true;
514
515 used -= MIDI_BYTES_PER_SECOND * s->syt_interval;
516 used = max(used, 0);
517 s->midi_fifo_used[port] = used;
518
519 return used < s->midi_fifo_limit;
520}
521
522static void midi_rate_use_one_byte(struct amdtp_stream *s, unsigned int port)
523{
524 s->midi_fifo_used[port] += amdtp_rate_table[s->sfc];
525}
526
Takashi Sakamotobe4a2892014-04-25 22:44:42 +0900527static void amdtp_fill_midi(struct amdtp_stream *s,
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100528 __be32 *buffer, unsigned int frames)
529{
Takashi Sakamoto83d8d722014-04-25 22:44:47 +0900530 unsigned int f, port;
531 u8 *b;
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100532
Takashi Sakamoto83d8d722014-04-25 22:44:47 +0900533 for (f = 0; f < frames; f++) {
Takashi Sakamoto77d2a8a2014-04-25 22:44:50 +0900534 b = (u8 *)&buffer[s->midi_position];
Takashi Sakamoto83d8d722014-04-25 22:44:47 +0900535
536 port = (s->data_block_counter + f) % 8;
Clemens Ladisch25ca9172014-11-25 22:54:10 +0100537 if (f < MAX_MIDI_RX_BLOCKS &&
538 midi_ratelimit_per_packet(s, port) &&
539 s->midi[port] != NULL &&
540 snd_rawmidi_transmit(s->midi[port], &b[1], 1) == 1) {
541 midi_rate_use_one_byte(s, port);
Takashi Sakamoto83d8d722014-04-25 22:44:47 +0900542 b[0] = 0x81;
Clemens Ladisch25ca9172014-11-25 22:54:10 +0100543 } else {
544 b[0] = 0x80;
545 b[1] = 0;
546 }
547 b[2] = 0;
548 b[3] = 0;
Takashi Sakamoto83d8d722014-04-25 22:44:47 +0900549
550 buffer += s->data_block_quadlets;
551 }
552}
553
554static void amdtp_pull_midi(struct amdtp_stream *s,
555 __be32 *buffer, unsigned int frames)
556{
557 unsigned int f, port;
558 int len;
559 u8 *b;
560
561 for (f = 0; f < frames; f++) {
562 port = (s->data_block_counter + f) % 8;
Takashi Sakamoto77d2a8a2014-04-25 22:44:50 +0900563 b = (u8 *)&buffer[s->midi_position];
Takashi Sakamoto83d8d722014-04-25 22:44:47 +0900564
565 len = b[0] - 0x80;
566 if ((1 <= len) && (len <= 3) && (s->midi[port]))
567 snd_rawmidi_receive(s->midi[port], b + 1, len);
568
569 buffer += s->data_block_quadlets;
570 }
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100571}
572
Takashi Sakamoto4b7da112014-04-25 22:44:45 +0900573static void update_pcm_pointers(struct amdtp_stream *s,
574 struct snd_pcm_substream *pcm,
575 unsigned int frames)
Takashi Sakamoto65845f22014-08-29 13:40:45 +0900576{
577 unsigned int ptr;
578
579 /*
580 * In IEC 61883-6, one data block represents one event. In ALSA, one
581 * event equals to one PCM frame. But Dice has a quirk to transfer
582 * two PCM frames in one data block.
583 */
584 if (s->double_pcm_frames)
585 frames *= 2;
Takashi Sakamoto4b7da112014-04-25 22:44:45 +0900586
Takashi Sakamoto4b7da112014-04-25 22:44:45 +0900587 ptr = s->pcm_buffer_pointer + frames;
588 if (ptr >= pcm->runtime->buffer_size)
589 ptr -= pcm->runtime->buffer_size;
590 ACCESS_ONCE(s->pcm_buffer_pointer) = ptr;
591
592 s->pcm_period_pointer += frames;
593 if (s->pcm_period_pointer >= pcm->runtime->period_size) {
594 s->pcm_period_pointer -= pcm->runtime->period_size;
595 s->pointer_flush = false;
596 tasklet_hi_schedule(&s->period_tasklet);
597 }
598}
599
600static void pcm_period_tasklet(unsigned long data)
601{
602 struct amdtp_stream *s = (void *)data;
603 struct snd_pcm_substream *pcm = ACCESS_ONCE(s->pcm);
604
605 if (pcm)
606 snd_pcm_period_elapsed(pcm);
607}
608
609static int queue_packet(struct amdtp_stream *s,
610 unsigned int header_length,
611 unsigned int payload_length, bool skip)
612{
613 struct fw_iso_packet p = {0};
Takashi Sakamoto7b3b0d82014-04-25 22:44:49 +0900614 int err = 0;
615
616 if (IS_ERR(s->context))
617 goto end;
Takashi Sakamoto4b7da112014-04-25 22:44:45 +0900618
619 p.interrupt = IS_ALIGNED(s->packet_index + 1, INTERRUPT_INTERVAL);
620 p.tag = TAG_CIP;
621 p.header_length = header_length;
622 p.payload_length = (!skip) ? payload_length : 0;
623 p.skip = skip;
624 err = fw_iso_context_queue(s->context, &p, &s->buffer.iso_buffer,
625 s->buffer.packets[s->packet_index].offset);
626 if (err < 0) {
627 dev_err(&s->unit->device, "queueing error: %d\n", err);
628 goto end;
629 }
630
631 if (++s->packet_index >= QUEUE_LENGTH)
632 s->packet_index = 0;
633end:
634 return err;
635}
636
637static inline int queue_out_packet(struct amdtp_stream *s,
638 unsigned int payload_length, bool skip)
639{
640 return queue_packet(s, OUT_PACKET_HEADER_SIZE,
641 payload_length, skip);
642}
643
Takashi Sakamoto2b3fc452014-04-25 22:44:46 +0900644static inline int queue_in_packet(struct amdtp_stream *s)
645{
646 return queue_packet(s, IN_PACKET_HEADER_SIZE,
647 amdtp_stream_get_max_payload(s), false);
648}
649
Takashi Sakamotoa4103bd2015-05-22 23:00:53 +0900650static int handle_out_packet(struct amdtp_stream *s, unsigned int data_blocks,
651 unsigned int syt)
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100652{
653 __be32 *buffer;
Takashi Sakamoto6fc6b9c2015-05-22 23:00:52 +0900654 unsigned int payload_length;
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100655 struct snd_pcm_substream *pcm;
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100656
Takashi Sakamotoccccad82014-04-25 22:44:48 +0900657 buffer = s->buffer.packets[s->packet_index].buffer;
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100658 buffer[0] = cpu_to_be32(ACCESS_ONCE(s->source_node_id_field) |
Takashi Sakamotob445db42014-04-25 22:44:43 +0900659 (s->data_block_quadlets << AMDTP_DBS_SHIFT) |
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100660 s->data_block_counter);
661 buffer[1] = cpu_to_be32(CIP_EOH | CIP_FMT_AM | AMDTP_FDF_AM824 |
Takashi Sakamotob445db42014-04-25 22:44:43 +0900662 (s->sfc << CIP_FDF_SFC_SHIFT) | syt);
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100663 buffer += 2;
664
665 pcm = ACCESS_ONCE(s->pcm);
666 if (pcm)
667 s->transfer_samples(s, pcm, buffer, data_blocks);
668 else
669 amdtp_fill_pcm_silence(s, buffer, data_blocks);
670 if (s->midi_ports)
671 amdtp_fill_midi(s, buffer, data_blocks);
672
673 s->data_block_counter = (s->data_block_counter + data_blocks) & 0xff;
674
Takashi Sakamoto4b7da112014-04-25 22:44:45 +0900675 payload_length = 8 + data_blocks * 4 * s->data_block_quadlets;
Takashi Sakamotoa4103bd2015-05-22 23:00:53 +0900676 if (queue_out_packet(s, payload_length, false) < 0)
677 return -EIO;
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100678
Clemens Ladisch76fb8782012-05-13 22:03:09 +0200679 if (pcm)
Takashi Sakamoto4b7da112014-04-25 22:44:45 +0900680 update_pcm_pointers(s, pcm, data_blocks);
Takashi Sakamotoa4103bd2015-05-22 23:00:53 +0900681
682 /* No need to return the number of handled data blocks. */
683 return 0;
Clemens Ladisch76fb8782012-05-13 22:03:09 +0200684}
685
Takashi Sakamoto6fc6b9c2015-05-22 23:00:52 +0900686static int handle_in_packet(struct amdtp_stream *s,
687 unsigned int payload_quadlets, __be32 *buffer)
Takashi Sakamoto2b3fc452014-04-25 22:44:46 +0900688{
689 u32 cip_header[2];
Takashi Sakamoto6fc6b9c2015-05-22 23:00:52 +0900690 unsigned int data_blocks;
691 unsigned int data_block_quadlets, data_block_counter, dbc_interval;
Takashi Sakamoto2b3fc452014-04-25 22:44:46 +0900692 struct snd_pcm_substream *pcm = NULL;
Takashi Sakamotoc8bdf492014-04-25 22:45:04 +0900693 bool lost;
Takashi Sakamoto2b3fc452014-04-25 22:44:46 +0900694
695 cip_header[0] = be32_to_cpu(buffer[0]);
696 cip_header[1] = be32_to_cpu(buffer[1]);
697
698 /*
699 * This module supports 'Two-quadlet CIP header with SYT field'.
Takashi Sakamoto77d2a8a2014-04-25 22:44:50 +0900700 * For convenience, also check FMT field is AM824 or not.
Takashi Sakamoto2b3fc452014-04-25 22:44:46 +0900701 */
702 if (((cip_header[0] & CIP_EOH_MASK) == CIP_EOH) ||
703 ((cip_header[1] & CIP_EOH_MASK) != CIP_EOH) ||
704 ((cip_header[1] & CIP_FMT_MASK) != CIP_FMT_AM)) {
705 dev_info_ratelimited(&s->unit->device,
706 "Invalid CIP header for AMDTP: %08X:%08X\n",
707 cip_header[0], cip_header[1]);
Takashi Sakamoto6fc6b9c2015-05-22 23:00:52 +0900708 data_blocks = 0;
Takashi Sakamoto2b3fc452014-04-25 22:44:46 +0900709 goto end;
710 }
711
712 /* Calculate data blocks */
713 if (payload_quadlets < 3 ||
714 ((cip_header[1] & CIP_FDF_MASK) ==
715 (AMDTP_FDF_NO_DATA << CIP_FDF_SFC_SHIFT))) {
716 data_blocks = 0;
717 } else {
718 data_block_quadlets =
719 (cip_header[0] & AMDTP_DBS_MASK) >> AMDTP_DBS_SHIFT;
720 /* avoid division by zero */
721 if (data_block_quadlets == 0) {
722 dev_info_ratelimited(&s->unit->device,
723 "Detect invalid value in dbs field: %08X\n",
724 cip_header[0]);
Takashi Sakamoto6fc6b9c2015-05-22 23:00:52 +0900725 return -EIO;
Takashi Sakamoto2b3fc452014-04-25 22:44:46 +0900726 }
Takashi Sakamoto69702232014-04-25 22:45:05 +0900727 if (s->flags & CIP_WRONG_DBS)
728 data_block_quadlets = s->data_block_quadlets;
Takashi Sakamoto2b3fc452014-04-25 22:44:46 +0900729
730 data_blocks = (payload_quadlets - 2) / data_block_quadlets;
731 }
732
733 /* Check data block counter continuity */
734 data_block_counter = cip_header[0] & AMDTP_DBC_MASK;
Takashi Sakamoto9d591242014-04-25 22:45:27 +0900735 if (data_blocks == 0 && (s->flags & CIP_EMPTY_HAS_WRONG_DBC) &&
736 s->data_block_counter != UINT_MAX)
737 data_block_counter = s->data_block_counter;
738
Takashi Sakamotob6bc8122014-04-25 22:45:16 +0900739 if (((s->flags & CIP_SKIP_DBC_ZERO_CHECK) && data_block_counter == 0) ||
740 (s->data_block_counter == UINT_MAX)) {
Takashi Sakamotob84b1a22014-04-25 22:45:07 +0900741 lost = false;
742 } else if (!(s->flags & CIP_DBC_IS_END_EVENT)) {
Takashi Sakamotoc8bdf492014-04-25 22:45:04 +0900743 lost = data_block_counter != s->data_block_counter;
Takashi Sakamotod9cd0062014-04-25 22:45:06 +0900744 } else {
745 if ((data_blocks > 0) && (s->tx_dbc_interval > 0))
746 dbc_interval = s->tx_dbc_interval;
747 else
748 dbc_interval = data_blocks;
749
Takashi Sakamotoc8bdf492014-04-25 22:45:04 +0900750 lost = data_block_counter !=
Takashi Sakamotod9cd0062014-04-25 22:45:06 +0900751 ((s->data_block_counter + dbc_interval) & 0xff);
752 }
Takashi Sakamotoc8bdf492014-04-25 22:45:04 +0900753
754 if (lost) {
Takashi Sakamoto2b3fc452014-04-25 22:44:46 +0900755 dev_info(&s->unit->device,
756 "Detect discontinuity of CIP: %02X %02X\n",
757 s->data_block_counter, data_block_counter);
Takashi Sakamoto6fc6b9c2015-05-22 23:00:52 +0900758 return -EIO;
Takashi Sakamoto2b3fc452014-04-25 22:44:46 +0900759 }
760
761 if (data_blocks > 0) {
762 buffer += 2;
763
764 pcm = ACCESS_ONCE(s->pcm);
765 if (pcm)
766 s->transfer_samples(s, pcm, buffer, data_blocks);
Takashi Sakamoto83d8d722014-04-25 22:44:47 +0900767
768 if (s->midi_ports)
769 amdtp_pull_midi(s, buffer, data_blocks);
Takashi Sakamoto2b3fc452014-04-25 22:44:46 +0900770 }
771
Takashi Sakamotoc8bdf492014-04-25 22:45:04 +0900772 if (s->flags & CIP_DBC_IS_END_EVENT)
773 s->data_block_counter = data_block_counter;
774 else
775 s->data_block_counter =
776 (data_block_counter + data_blocks) & 0xff;
Takashi Sakamoto2b3fc452014-04-25 22:44:46 +0900777end:
778 if (queue_in_packet(s) < 0)
Takashi Sakamoto6fc6b9c2015-05-22 23:00:52 +0900779 return -EIO;
Takashi Sakamoto2b3fc452014-04-25 22:44:46 +0900780
781 if (pcm)
782 update_pcm_pointers(s, pcm, data_blocks);
783
Takashi Sakamoto6fc6b9c2015-05-22 23:00:52 +0900784 return data_blocks;
Takashi Sakamoto2b3fc452014-04-25 22:44:46 +0900785}
786
Takashi Sakamoto4b7da112014-04-25 22:44:45 +0900787static void out_stream_callback(struct fw_iso_context *context, u32 cycle,
788 size_t header_length, void *header,
789 void *private_data)
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100790{
Takashi Sakamotobe4a2892014-04-25 22:44:42 +0900791 struct amdtp_stream *s = private_data;
Takashi Sakamotoccccad82014-04-25 22:44:48 +0900792 unsigned int i, syt, packets = header_length / 4;
Takashi Sakamoto6fc6b9c2015-05-22 23:00:52 +0900793 unsigned int data_blocks;
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100794
Takashi Sakamotoa4103bd2015-05-22 23:00:53 +0900795 if (s->packet_index < 0)
796 return;
797
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100798 /*
799 * Compute the cycle of the last queued packet.
800 * (We need only the four lowest bits for the SYT, so we can ignore
801 * that bits 0-11 must wrap around at 3072.)
802 */
803 cycle += QUEUE_LENGTH - packets;
804
Takashi Sakamotoccccad82014-04-25 22:44:48 +0900805 for (i = 0; i < packets; ++i) {
806 syt = calculate_syt(s, ++cycle);
Takashi Sakamoto6fc6b9c2015-05-22 23:00:52 +0900807 data_blocks = calculate_data_blocks(s, syt);
808
Takashi Sakamotoa4103bd2015-05-22 23:00:53 +0900809 if (handle_out_packet(s, data_blocks, syt) < 0) {
810 s->packet_index = -1;
811 amdtp_stream_pcm_abort(s);
812 return;
813 }
Takashi Sakamotoccccad82014-04-25 22:44:48 +0900814 }
Takashi Sakamotoa4103bd2015-05-22 23:00:53 +0900815
Clemens Ladisch13882a82011-05-02 09:33:56 +0200816 fw_iso_context_queue_flush(s->context);
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100817}
818
Takashi Sakamoto2b3fc452014-04-25 22:44:46 +0900819static void in_stream_callback(struct fw_iso_context *context, u32 cycle,
820 size_t header_length, void *header,
821 void *private_data)
822{
823 struct amdtp_stream *s = private_data;
Takashi Sakamotoa2064712015-05-22 23:00:50 +0900824 unsigned int p, syt, packets;
825 unsigned int payload_quadlets, max_payload_quadlets;
Takashi Sakamoto6fc6b9c2015-05-22 23:00:52 +0900826 unsigned int data_blocks;
Takashi Sakamoto2b3fc452014-04-25 22:44:46 +0900827 __be32 *buffer, *headers = header;
828
Takashi Sakamotoa4103bd2015-05-22 23:00:53 +0900829 if (s->packet_index < 0)
830 return;
831
Takashi Sakamoto2b3fc452014-04-25 22:44:46 +0900832 /* The number of packets in buffer */
833 packets = header_length / IN_PACKET_HEADER_SIZE;
834
Takashi Sakamotoa2064712015-05-22 23:00:50 +0900835 /* For buffer-over-run prevention. */
836 max_payload_quadlets = amdtp_stream_get_max_payload(s) / 4;
837
Takashi Sakamoto2b3fc452014-04-25 22:44:46 +0900838 for (p = 0; p < packets; p++) {
Takashi Sakamoto2b3fc452014-04-25 22:44:46 +0900839 buffer = s->buffer.packets[s->packet_index].buffer;
840
841 /* The number of quadlets in this packet */
842 payload_quadlets =
843 (be32_to_cpu(headers[p]) >> ISO_DATA_LENGTH_SHIFT) / 4;
Takashi Sakamotoa2064712015-05-22 23:00:50 +0900844 if (payload_quadlets > max_payload_quadlets) {
845 dev_err(&s->unit->device,
846 "Detect jumbo payload: %02x %02x\n",
847 payload_quadlets, max_payload_quadlets);
848 s->packet_index = -1;
849 break;
850 }
851
Takashi Sakamoto6fc6b9c2015-05-22 23:00:52 +0900852 data_blocks = handle_in_packet(s, payload_quadlets, buffer);
853 if (data_blocks < 0) {
854 s->packet_index = -1;
855 break;
856 }
857
858 /* Process sync slave stream */
859 if (s->sync_slave && s->sync_slave->callbacked) {
860 syt = be32_to_cpu(buffer[1]) & CIP_SYT_MASK;
Takashi Sakamotoa4103bd2015-05-22 23:00:53 +0900861 if (handle_out_packet(s->sync_slave,
862 data_blocks, syt) < 0) {
863 s->packet_index = -1;
864 break;
865 }
Takashi Sakamoto6fc6b9c2015-05-22 23:00:52 +0900866 }
Takashi Sakamoto2b3fc452014-04-25 22:44:46 +0900867 }
868
Takashi Sakamoto7b3b0d82014-04-25 22:44:49 +0900869 /* Queueing error or detecting discontinuity */
870 if (s->packet_index < 0) {
Takashi Sakamoto6fc6b9c2015-05-22 23:00:52 +0900871 amdtp_stream_pcm_abort(s);
872
Takashi Sakamoto7b3b0d82014-04-25 22:44:49 +0900873 /* Abort sync slave. */
874 if (s->sync_slave) {
875 s->sync_slave->packet_index = -1;
876 amdtp_stream_pcm_abort(s->sync_slave);
877 }
878 return;
879 }
880
881 /* when sync to device, flush the packets for slave stream */
882 if (s->sync_slave && s->sync_slave->callbacked)
883 fw_iso_context_queue_flush(s->sync_slave->context);
884
Takashi Sakamoto2b3fc452014-04-25 22:44:46 +0900885 fw_iso_context_queue_flush(s->context);
886}
887
Takashi Sakamoto7b3b0d82014-04-25 22:44:49 +0900888/* processing is done by master callback */
889static void slave_stream_callback(struct fw_iso_context *context, u32 cycle,
890 size_t header_length, void *header,
891 void *private_data)
892{
893 return;
894}
895
896/* this is executed one time */
897static void amdtp_stream_first_callback(struct fw_iso_context *context,
898 u32 cycle, size_t header_length,
899 void *header, void *private_data)
900{
901 struct amdtp_stream *s = private_data;
902
903 /*
904 * For in-stream, first packet has come.
905 * For out-stream, prepared to transmit first packet
906 */
907 s->callbacked = true;
908 wake_up(&s->callback_wait);
909
910 if (s->direction == AMDTP_IN_STREAM)
911 context->callback.sc = in_stream_callback;
Takashi Sakamoto727d3a02015-05-22 23:00:54 +0900912 else if (s->flags & CIP_SYNC_TO_DEVICE)
Takashi Sakamoto7b3b0d82014-04-25 22:44:49 +0900913 context->callback.sc = slave_stream_callback;
914 else
915 context->callback.sc = out_stream_callback;
916
917 context->callback.sc(context, cycle, header_length, header, s);
918}
919
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100920/**
Takashi Sakamotobe4a2892014-04-25 22:44:42 +0900921 * amdtp_stream_start - start transferring packets
922 * @s: the AMDTP stream to start
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100923 * @channel: the isochronous channel on the bus
924 * @speed: firewire speed code
925 *
926 * The stream cannot be started until it has been configured with
Takashi Sakamotobe4a2892014-04-25 22:44:42 +0900927 * amdtp_stream_set_parameters() and it must be started before any PCM or MIDI
928 * device can be started.
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100929 */
Takashi Sakamotobe4a2892014-04-25 22:44:42 +0900930int amdtp_stream_start(struct amdtp_stream *s, int channel, int speed)
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100931{
932 static const struct {
933 unsigned int data_block;
934 unsigned int syt_offset;
935 } initial_state[] = {
936 [CIP_SFC_32000] = { 4, 3072 },
937 [CIP_SFC_48000] = { 6, 1024 },
938 [CIP_SFC_96000] = { 12, 1024 },
939 [CIP_SFC_192000] = { 24, 1024 },
940 [CIP_SFC_44100] = { 0, 67 },
941 [CIP_SFC_88200] = { 0, 67 },
942 [CIP_SFC_176400] = { 0, 67 },
943 };
Takashi Sakamoto2b3fc452014-04-25 22:44:46 +0900944 unsigned int header_size;
945 enum dma_data_direction dir;
Takashi Sakamoto7ab56642014-04-25 22:45:03 +0900946 int type, tag, err;
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100947
948 mutex_lock(&s->mutex);
949
Takashi Sakamotobe4a2892014-04-25 22:44:42 +0900950 if (WARN_ON(amdtp_stream_running(s) ||
Takashi Sakamoto4b7da112014-04-25 22:44:45 +0900951 (s->data_block_quadlets < 1))) {
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100952 err = -EBADFD;
953 goto err_unlock;
954 }
955
Takashi Sakamotob6bc8122014-04-25 22:45:16 +0900956 if (s->direction == AMDTP_IN_STREAM &&
957 s->flags & CIP_SKIP_INIT_DBC_CHECK)
958 s->data_block_counter = UINT_MAX;
959 else
960 s->data_block_counter = 0;
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100961 s->data_block_state = initial_state[s->sfc].data_block;
962 s->syt_offset_state = initial_state[s->sfc].syt_offset;
963 s->last_syt_offset = TICKS_PER_CYCLE;
964
Takashi Sakamoto2b3fc452014-04-25 22:44:46 +0900965 /* initialize packet buffer */
966 if (s->direction == AMDTP_IN_STREAM) {
967 dir = DMA_FROM_DEVICE;
968 type = FW_ISO_CONTEXT_RECEIVE;
969 header_size = IN_PACKET_HEADER_SIZE;
Takashi Sakamoto2b3fc452014-04-25 22:44:46 +0900970 } else {
971 dir = DMA_TO_DEVICE;
972 type = FW_ISO_CONTEXT_TRANSMIT;
973 header_size = OUT_PACKET_HEADER_SIZE;
Takashi Sakamoto2b3fc452014-04-25 22:44:46 +0900974 }
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100975 err = iso_packets_buffer_init(&s->buffer, s->unit, QUEUE_LENGTH,
Takashi Sakamoto2b3fc452014-04-25 22:44:46 +0900976 amdtp_stream_get_max_payload(s), dir);
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100977 if (err < 0)
978 goto err_unlock;
979
980 s->context = fw_iso_context_create(fw_parent_device(s->unit)->card,
Takashi Sakamoto2b3fc452014-04-25 22:44:46 +0900981 type, channel, speed, header_size,
Takashi Sakamoto7b3b0d82014-04-25 22:44:49 +0900982 amdtp_stream_first_callback, s);
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100983 if (IS_ERR(s->context)) {
984 err = PTR_ERR(s->context);
985 if (err == -EBUSY)
986 dev_err(&s->unit->device,
Takashi Sakamotobe4a2892014-04-25 22:44:42 +0900987 "no free stream on this controller\n");
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100988 goto err_buffer;
989 }
990
Takashi Sakamotobe4a2892014-04-25 22:44:42 +0900991 amdtp_stream_update(s);
Clemens Ladisch31ef9132011-03-15 07:53:21 +0100992
Clemens Ladischec00f5e2011-03-15 07:57:24 +0100993 s->packet_index = 0;
Takashi Sakamoto4b7da112014-04-25 22:44:45 +0900994 do {
Takashi Sakamoto2b3fc452014-04-25 22:44:46 +0900995 if (s->direction == AMDTP_IN_STREAM)
996 err = queue_in_packet(s);
997 else
998 err = queue_out_packet(s, 0, true);
Takashi Sakamoto4b7da112014-04-25 22:44:45 +0900999 if (err < 0)
1000 goto err_context;
1001 } while (s->packet_index > 0);
Clemens Ladisch31ef9132011-03-15 07:53:21 +01001002
Takashi Sakamoto2b3fc452014-04-25 22:44:46 +09001003 /* NOTE: TAG1 matches CIP. This just affects in stream. */
Takashi Sakamoto7ab56642014-04-25 22:45:03 +09001004 tag = FW_ISO_CONTEXT_MATCH_TAG1;
1005 if (s->flags & CIP_EMPTY_WITH_TAG0)
1006 tag |= FW_ISO_CONTEXT_MATCH_TAG0;
1007
Takashi Sakamoto7b3b0d82014-04-25 22:44:49 +09001008 s->callbacked = false;
Takashi Sakamoto7ab56642014-04-25 22:45:03 +09001009 err = fw_iso_context_start(s->context, -1, 0, tag);
Clemens Ladisch31ef9132011-03-15 07:53:21 +01001010 if (err < 0)
1011 goto err_context;
1012
1013 mutex_unlock(&s->mutex);
1014
1015 return 0;
1016
1017err_context:
1018 fw_iso_context_destroy(s->context);
1019 s->context = ERR_PTR(-1);
1020err_buffer:
1021 iso_packets_buffer_destroy(&s->buffer, s->unit);
1022err_unlock:
1023 mutex_unlock(&s->mutex);
1024
1025 return err;
1026}
Takashi Sakamotobe4a2892014-04-25 22:44:42 +09001027EXPORT_SYMBOL(amdtp_stream_start);
Clemens Ladisch31ef9132011-03-15 07:53:21 +01001028
1029/**
Takashi Sakamotobe4a2892014-04-25 22:44:42 +09001030 * amdtp_stream_pcm_pointer - get the PCM buffer position
1031 * @s: the AMDTP stream that transports the PCM data
Clemens Ladische9148dd2012-05-13 18:49:14 +02001032 *
1033 * Returns the current buffer position, in frames.
1034 */
Takashi Sakamotobe4a2892014-04-25 22:44:42 +09001035unsigned long amdtp_stream_pcm_pointer(struct amdtp_stream *s)
Clemens Ladische9148dd2012-05-13 18:49:14 +02001036{
Clemens Ladisch92b862c2012-05-13 19:07:22 +02001037 /* this optimization is allowed to be racy */
Takashi Sakamotoc8de6db2014-04-25 22:44:53 +09001038 if (s->pointer_flush && amdtp_stream_running(s))
Clemens Ladisch92b862c2012-05-13 19:07:22 +02001039 fw_iso_context_flush_completions(s->context);
1040 else
1041 s->pointer_flush = true;
Clemens Ladische9148dd2012-05-13 18:49:14 +02001042
1043 return ACCESS_ONCE(s->pcm_buffer_pointer);
1044}
Takashi Sakamotobe4a2892014-04-25 22:44:42 +09001045EXPORT_SYMBOL(amdtp_stream_pcm_pointer);
Clemens Ladische9148dd2012-05-13 18:49:14 +02001046
1047/**
Takashi Sakamotobe4a2892014-04-25 22:44:42 +09001048 * amdtp_stream_update - update the stream after a bus reset
1049 * @s: the AMDTP stream
Clemens Ladisch31ef9132011-03-15 07:53:21 +01001050 */
Takashi Sakamotobe4a2892014-04-25 22:44:42 +09001051void amdtp_stream_update(struct amdtp_stream *s)
Clemens Ladisch31ef9132011-03-15 07:53:21 +01001052{
1053 ACCESS_ONCE(s->source_node_id_field) =
1054 (fw_parent_device(s->unit)->card->node_id & 0x3f) << 24;
1055}
Takashi Sakamotobe4a2892014-04-25 22:44:42 +09001056EXPORT_SYMBOL(amdtp_stream_update);
Clemens Ladisch31ef9132011-03-15 07:53:21 +01001057
1058/**
Takashi Sakamotobe4a2892014-04-25 22:44:42 +09001059 * amdtp_stream_stop - stop sending packets
1060 * @s: the AMDTP stream to stop
Clemens Ladisch31ef9132011-03-15 07:53:21 +01001061 *
1062 * All PCM and MIDI devices of the stream must be stopped before the stream
1063 * itself can be stopped.
1064 */
Takashi Sakamotobe4a2892014-04-25 22:44:42 +09001065void amdtp_stream_stop(struct amdtp_stream *s)
Clemens Ladisch31ef9132011-03-15 07:53:21 +01001066{
1067 mutex_lock(&s->mutex);
1068
Takashi Sakamotobe4a2892014-04-25 22:44:42 +09001069 if (!amdtp_stream_running(s)) {
Clemens Ladisch31ef9132011-03-15 07:53:21 +01001070 mutex_unlock(&s->mutex);
1071 return;
1072 }
1073
Clemens Ladisch76fb8782012-05-13 22:03:09 +02001074 tasklet_kill(&s->period_tasklet);
Clemens Ladisch31ef9132011-03-15 07:53:21 +01001075 fw_iso_context_stop(s->context);
1076 fw_iso_context_destroy(s->context);
1077 s->context = ERR_PTR(-1);
1078 iso_packets_buffer_destroy(&s->buffer, s->unit);
1079
Takashi Sakamoto7b3b0d82014-04-25 22:44:49 +09001080 s->callbacked = false;
1081
Clemens Ladisch31ef9132011-03-15 07:53:21 +01001082 mutex_unlock(&s->mutex);
1083}
Takashi Sakamotobe4a2892014-04-25 22:44:42 +09001084EXPORT_SYMBOL(amdtp_stream_stop);
Clemens Ladisch31ef9132011-03-15 07:53:21 +01001085
1086/**
Takashi Sakamotobe4a2892014-04-25 22:44:42 +09001087 * amdtp_stream_pcm_abort - abort the running PCM device
Clemens Ladisch31ef9132011-03-15 07:53:21 +01001088 * @s: the AMDTP stream about to be stopped
1089 *
1090 * If the isochronous stream needs to be stopped asynchronously, call this
1091 * function first to stop the PCM device.
1092 */
Takashi Sakamotobe4a2892014-04-25 22:44:42 +09001093void amdtp_stream_pcm_abort(struct amdtp_stream *s)
Clemens Ladisch31ef9132011-03-15 07:53:21 +01001094{
1095 struct snd_pcm_substream *pcm;
1096
1097 pcm = ACCESS_ONCE(s->pcm);
Takashi Iwai1fb85102014-11-07 17:08:28 +01001098 if (pcm)
1099 snd_pcm_stop_xrun(pcm);
Clemens Ladisch31ef9132011-03-15 07:53:21 +01001100}
Takashi Sakamotobe4a2892014-04-25 22:44:42 +09001101EXPORT_SYMBOL(amdtp_stream_pcm_abort);