1 // SPDX-License-Identifier: GPL-2.0-only
3 * Copyright (C) STMicroelectronics SA 2015
4 * Authors: Arnaud Pouliquen <arnaud.pouliquen@st.com>
5 * for STMicroelectronics.
9 #include <linux/mfd/syscon.h>
11 #include <sound/asoundef.h>
12 #include <sound/soc.h>
17 * Some hardware-related definitions
20 /* sys config registers definitions */
21 #define SYS_CFG_AUDIO_GLUE 0xA4
24 * Driver specific types.
27 #define UNIPERIF_PLAYER_CLK_ADJ_MIN -999999
28 #define UNIPERIF_PLAYER_CLK_ADJ_MAX 1000000
29 #define UNIPERIF_PLAYER_I2S_OUT 1 /* player id connected to I2S/TDM TX bus */
32 * Note: snd_pcm_hardware is linked to DMA controller but is declared here to
33 * integrate DAI_CPU capability in term of rate and supported channels
35 static const struct snd_pcm_hardware uni_player_pcm_hw
= {
36 .info
= SNDRV_PCM_INFO_INTERLEAVED
| SNDRV_PCM_INFO_BLOCK_TRANSFER
|
37 SNDRV_PCM_INFO_PAUSE
| SNDRV_PCM_INFO_MMAP
|
38 SNDRV_PCM_INFO_MMAP_VALID
,
39 .formats
= SNDRV_PCM_FMTBIT_S32_LE
| SNDRV_PCM_FMTBIT_S16_LE
,
41 .rates
= SNDRV_PCM_RATE_CONTINUOUS
,
51 .period_bytes_min
= 128,
52 .period_bytes_max
= 64 * PAGE_SIZE
,
53 .buffer_bytes_max
= 256 * PAGE_SIZE
57 * uni_player_irq_handler
58 * In case of error audio stream is stopped; stop action is protected via PCM
59 * stream lock to avoid race condition with trigger callback.
61 static irqreturn_t
uni_player_irq_handler(int irq
, void *dev_id
)
63 irqreturn_t ret
= IRQ_NONE
;
64 struct uniperif
*player
= dev_id
;
68 spin_lock(&player
->irq_lock
);
69 if (!player
->substream
)
72 snd_pcm_stream_lock(player
->substream
);
73 if (player
->state
== UNIPERIF_STATE_STOPPED
)
76 /* Get interrupt status & clear them immediately */
77 status
= GET_UNIPERIF_ITS(player
);
78 SET_UNIPERIF_ITS_BCLR(player
, status
);
80 /* Check for fifo error (underrun) */
81 if (unlikely(status
& UNIPERIF_ITS_FIFO_ERROR_MASK(player
))) {
82 dev_err(player
->dev
, "FIFO underflow error detected\n");
84 /* Interrupt is just for information when underflow recovery */
85 if (player
->underflow_enabled
) {
86 /* Update state to underflow */
87 player
->state
= UNIPERIF_STATE_UNDERFLOW
;
90 /* Disable interrupt so doesn't continually fire */
91 SET_UNIPERIF_ITM_BCLR_FIFO_ERROR(player
);
94 snd_pcm_stop(player
->substream
, SNDRV_PCM_STATE_XRUN
);
100 /* Check for dma error (overrun) */
101 if (unlikely(status
& UNIPERIF_ITS_DMA_ERROR_MASK(player
))) {
102 dev_err(player
->dev
, "DMA error detected\n");
104 /* Disable interrupt so doesn't continually fire */
105 SET_UNIPERIF_ITM_BCLR_DMA_ERROR(player
);
107 /* Stop the player */
108 snd_pcm_stop(player
->substream
, SNDRV_PCM_STATE_XRUN
);
113 /* Check for underflow recovery done */
114 if (unlikely(status
& UNIPERIF_ITM_UNDERFLOW_REC_DONE_MASK(player
))) {
115 if (!player
->underflow_enabled
) {
117 "unexpected Underflow recovering\n");
121 /* Read the underflow recovery duration */
122 tmp
= GET_UNIPERIF_STATUS_1_UNDERFLOW_DURATION(player
);
123 dev_dbg(player
->dev
, "Underflow recovered (%d LR clocks max)\n",
126 /* Clear the underflow recovery duration */
127 SET_UNIPERIF_BIT_CONTROL_CLR_UNDERFLOW_DURATION(player
);
129 /* Update state to started */
130 player
->state
= UNIPERIF_STATE_STARTED
;
135 /* Check if underflow recovery failed */
136 if (unlikely(status
&
137 UNIPERIF_ITM_UNDERFLOW_REC_FAILED_MASK(player
))) {
138 dev_err(player
->dev
, "Underflow recovery failed\n");
140 /* Stop the player */
141 snd_pcm_stop(player
->substream
, SNDRV_PCM_STATE_XRUN
);
147 snd_pcm_stream_unlock(player
->substream
);
149 spin_unlock(&player
->irq_lock
);
154 static int uni_player_clk_set_rate(struct uniperif
*player
, unsigned long rate
)
156 int rate_adjusted
, rate_achieved
, delta
, ret
;
157 int adjustment
= player
->clk_adj
;
161 * F = f + --------- * f = f + d
170 * a - adjustment in ppm (parts per milion)
171 * F - rate to be set in synthesizer
172 * d - delta (difference) between f and F
174 if (adjustment
< 0) {
175 /* div64_64 operates on unsigned values... */
177 adjustment
= -adjustment
;
181 /* 500000 ppm is 0.5, which is used to round up values */
182 delta
*= (int)div64_u64((uint64_t)rate
*
183 (uint64_t)adjustment
+ 500000, 1000000);
184 rate_adjusted
= rate
+ delta
;
186 /* Adjusted rate should never be == 0 */
190 ret
= clk_set_rate(player
->clk
, rate_adjusted
);
194 rate_achieved
= clk_get_rate(player
->clk
);
196 /* If value is 0 means that clock or parent not valid */
200 * Using ALSA's adjustment control, we can modify the rate to be up
201 * to twice as much as requested, but no more
203 delta
= rate_achieved
- rate
;
205 /* div64_64 operates on unsigned values... */
211 /* Frequency/2 is added to round up result */
212 adjustment
*= (int)div64_u64((uint64_t)delta
* 1000000 + rate
/ 2,
214 player
->clk_adj
= adjustment
;
218 static void uni_player_set_channel_status(struct uniperif
*player
,
219 struct snd_pcm_runtime
*runtime
)
225 * Some AVRs and TVs require the channel status to contain a correct
226 * sampling frequency. If no sample rate is already specified, then
230 switch (runtime
->rate
) {
232 player
->stream_settings
.iec958
.status
[3] =
233 IEC958_AES3_CON_FS_22050
;
236 player
->stream_settings
.iec958
.status
[3] =
237 IEC958_AES3_CON_FS_44100
;
240 player
->stream_settings
.iec958
.status
[3] =
241 IEC958_AES3_CON_FS_88200
;
244 player
->stream_settings
.iec958
.status
[3] =
245 IEC958_AES3_CON_FS_176400
;
248 player
->stream_settings
.iec958
.status
[3] =
249 IEC958_AES3_CON_FS_24000
;
252 player
->stream_settings
.iec958
.status
[3] =
253 IEC958_AES3_CON_FS_48000
;
256 player
->stream_settings
.iec958
.status
[3] =
257 IEC958_AES3_CON_FS_96000
;
260 player
->stream_settings
.iec958
.status
[3] =
261 IEC958_AES3_CON_FS_192000
;
264 player
->stream_settings
.iec958
.status
[3] =
265 IEC958_AES3_CON_FS_32000
;
268 /* Mark as sampling frequency not indicated */
269 player
->stream_settings
.iec958
.status
[3] =
270 IEC958_AES3_CON_FS_NOTID
;
276 * Use audio mode status to select PCM or encoded mode
278 if (player
->stream_settings
.iec958
.status
[0] & IEC958_AES0_NONAUDIO
)
279 player
->stream_settings
.encoding_mode
=
280 UNIPERIF_IEC958_ENCODING_MODE_ENCODED
;
282 player
->stream_settings
.encoding_mode
=
283 UNIPERIF_IEC958_ENCODING_MODE_PCM
;
285 if (player
->stream_settings
.encoding_mode
==
286 UNIPERIF_IEC958_ENCODING_MODE_PCM
)
287 /* Clear user validity bits */
288 SET_UNIPERIF_USER_VALIDITY_VALIDITY_LR(player
, 0);
290 /* Set user validity bits */
291 SET_UNIPERIF_USER_VALIDITY_VALIDITY_LR(player
, 1);
293 /* Program the new channel status */
294 for (n
= 0; n
< 6; ++n
) {
296 player
->stream_settings
.iec958
.status
[0 + (n
* 4)] & 0xf;
298 player
->stream_settings
.iec958
.status
[1 + (n
* 4)] << 8;
300 player
->stream_settings
.iec958
.status
[2 + (n
* 4)] << 16;
302 player
->stream_settings
.iec958
.status
[3 + (n
* 4)] << 24;
303 SET_UNIPERIF_CHANNEL_STA_REGN(player
, n
, status
);
306 /* Update the channel status */
307 if (player
->ver
< SND_ST_UNIPERIF_VERSION_UNI_PLR_TOP_1_0
)
308 SET_UNIPERIF_CONFIG_CHL_STS_UPDATE(player
);
310 SET_UNIPERIF_BIT_CONTROL_CHL_STS_UPDATE(player
);
313 static int uni_player_prepare_iec958(struct uniperif
*player
,
314 struct snd_pcm_runtime
*runtime
)
318 clk_div
= player
->mclk
/ runtime
->rate
;
320 /* Oversampling must be multiple of 128 as iec958 frame is 32-bits */
321 if ((clk_div
% 128) || (clk_div
<= 0)) {
322 dev_err(player
->dev
, "%s: invalid clk_div %d\n",
327 switch (runtime
->format
) {
328 case SNDRV_PCM_FORMAT_S16_LE
:
329 /* 16/16 memory format */
330 SET_UNIPERIF_CONFIG_MEM_FMT_16_16(player
);
331 /* 16-bits per sub-frame */
332 SET_UNIPERIF_I2S_FMT_NBIT_32(player
);
333 /* Set 16-bit sample precision */
334 SET_UNIPERIF_I2S_FMT_DATA_SIZE_16(player
);
336 case SNDRV_PCM_FORMAT_S32_LE
:
337 /* 16/0 memory format */
338 SET_UNIPERIF_CONFIG_MEM_FMT_16_0(player
);
339 /* 32-bits per sub-frame */
340 SET_UNIPERIF_I2S_FMT_NBIT_32(player
);
341 /* Set 24-bit sample precision */
342 SET_UNIPERIF_I2S_FMT_DATA_SIZE_24(player
);
345 dev_err(player
->dev
, "format not supported\n");
349 /* Set parity to be calculated by the hardware */
350 SET_UNIPERIF_CONFIG_PARITY_CNTR_BY_HW(player
);
352 /* Set channel status bits to be inserted by the hardware */
353 SET_UNIPERIF_CONFIG_CHANNEL_STA_CNTR_BY_HW(player
);
355 /* Set user data bits to be inserted by the hardware */
356 SET_UNIPERIF_CONFIG_USER_DAT_CNTR_BY_HW(player
);
358 /* Set validity bits to be inserted by the hardware */
359 SET_UNIPERIF_CONFIG_VALIDITY_DAT_CNTR_BY_HW(player
);
361 /* Set full software control to disabled */
362 SET_UNIPERIF_CONFIG_SPDIF_SW_CTRL_DISABLE(player
);
364 SET_UNIPERIF_CTRL_ZERO_STUFF_HW(player
);
366 mutex_lock(&player
->ctrl_lock
);
367 /* Update the channel status */
368 uni_player_set_channel_status(player
, runtime
);
369 mutex_unlock(&player
->ctrl_lock
);
371 /* Clear the user validity user bits */
372 SET_UNIPERIF_USER_VALIDITY_VALIDITY_LR(player
, 0);
374 /* Disable one-bit audio mode */
375 SET_UNIPERIF_CONFIG_ONE_BIT_AUD_DISABLE(player
);
377 /* Enable consecutive frames repetition of Z preamble (not for HBRA) */
378 SET_UNIPERIF_CONFIG_REPEAT_CHL_STS_ENABLE(player
);
380 /* Change to SUF0_SUBF1 and left/right channels swap! */
381 SET_UNIPERIF_CONFIG_SUBFRAME_SEL_SUBF1_SUBF0(player
);
383 /* Set data output as MSB first */
384 SET_UNIPERIF_I2S_FMT_ORDER_MSB(player
);
386 if (player
->stream_settings
.encoding_mode
==
387 UNIPERIF_IEC958_ENCODING_MODE_ENCODED
)
388 SET_UNIPERIF_CTRL_EXIT_STBY_ON_EOBLOCK_ON(player
);
390 SET_UNIPERIF_CTRL_EXIT_STBY_ON_EOBLOCK_OFF(player
);
392 SET_UNIPERIF_I2S_FMT_NUM_CH(player
, runtime
->channels
/ 2);
394 /* Set rounding to off */
395 SET_UNIPERIF_CTRL_ROUNDING_OFF(player
);
397 /* Set clock divisor */
398 SET_UNIPERIF_CTRL_DIVIDER(player
, clk_div
/ 128);
400 /* Set the spdif latency to not wait before starting player */
401 SET_UNIPERIF_CTRL_SPDIF_LAT_OFF(player
);
404 * Ensure iec958 formatting is off. It will be enabled in function
405 * uni_player_start() at the same time as the operation
406 * mode is set to work around a silicon issue.
408 if (player
->ver
< SND_ST_UNIPERIF_VERSION_UNI_PLR_TOP_1_0
)
409 SET_UNIPERIF_CTRL_SPDIF_FMT_OFF(player
);
411 SET_UNIPERIF_CTRL_SPDIF_FMT_ON(player
);
416 static int uni_player_prepare_pcm(struct uniperif
*player
,
417 struct snd_pcm_runtime
*runtime
)
419 int output_frame_size
, slot_width
, clk_div
;
421 /* Force slot width to 32 in I2S mode (HW constraint) */
422 if ((player
->daifmt
& SND_SOC_DAIFMT_FORMAT_MASK
) ==
426 slot_width
= snd_pcm_format_width(runtime
->format
);
428 output_frame_size
= slot_width
* runtime
->channels
;
430 clk_div
= player
->mclk
/ runtime
->rate
;
432 * For 32 bits subframe clk_div must be a multiple of 128,
433 * for 16 bits must be a multiple of 64
435 if ((slot_width
== 32) && (clk_div
% 128)) {
436 dev_err(player
->dev
, "%s: invalid clk_div\n", __func__
);
440 if ((slot_width
== 16) && (clk_div
% 64)) {
441 dev_err(player
->dev
, "%s: invalid clk_div\n", __func__
);
446 * Number of bits per subframe (which is one channel sample)
447 * on output - Transfer 16 or 32 bits from FIFO
449 switch (slot_width
) {
451 SET_UNIPERIF_I2S_FMT_NBIT_32(player
);
452 SET_UNIPERIF_I2S_FMT_DATA_SIZE_32(player
);
455 SET_UNIPERIF_I2S_FMT_NBIT_16(player
);
456 SET_UNIPERIF_I2S_FMT_DATA_SIZE_16(player
);
459 dev_err(player
->dev
, "subframe format not supported\n");
463 /* Configure data memory format */
464 switch (runtime
->format
) {
465 case SNDRV_PCM_FORMAT_S16_LE
:
466 /* One data word contains two samples */
467 SET_UNIPERIF_CONFIG_MEM_FMT_16_16(player
);
470 case SNDRV_PCM_FORMAT_S32_LE
:
472 * Actually "16 bits/0 bits" means "32/28/24/20/18/16 bits
473 * on the left than zeros (if less than 32 bytes)"... ;-)
475 SET_UNIPERIF_CONFIG_MEM_FMT_16_0(player
);
479 dev_err(player
->dev
, "format not supported\n");
483 /* Set rounding to off */
484 SET_UNIPERIF_CTRL_ROUNDING_OFF(player
);
486 /* Set clock divisor */
487 SET_UNIPERIF_CTRL_DIVIDER(player
, clk_div
/ (2 * output_frame_size
));
489 /* Number of channelsmust be even*/
490 if ((runtime
->channels
% 2) || (runtime
->channels
< 2) ||
491 (runtime
->channels
> 10)) {
492 dev_err(player
->dev
, "%s: invalid nb of channels\n", __func__
);
496 SET_UNIPERIF_I2S_FMT_NUM_CH(player
, runtime
->channels
/ 2);
498 /* Set 1-bit audio format to disabled */
499 SET_UNIPERIF_CONFIG_ONE_BIT_AUD_DISABLE(player
);
501 SET_UNIPERIF_I2S_FMT_ORDER_MSB(player
);
503 /* No iec958 formatting as outputting to DAC */
504 SET_UNIPERIF_CTRL_SPDIF_FMT_OFF(player
);
509 static int uni_player_prepare_tdm(struct uniperif
*player
,
510 struct snd_pcm_runtime
*runtime
)
512 int tdm_frame_size
; /* unip tdm frame size in bytes */
513 int user_frame_size
; /* user tdm frame size in bytes */
514 /* default unip TDM_WORD_POS_X_Y */
515 unsigned int word_pos
[4] = {
516 0x04060002, 0x0C0E080A, 0x14161012, 0x1C1E181A};
520 sti_uniperiph_get_unip_tdm_frame_size(player
);
522 sti_uniperiph_get_user_frame_size(runtime
);
524 /* fix 16/0 format */
525 SET_UNIPERIF_CONFIG_MEM_FMT_16_0(player
);
526 SET_UNIPERIF_I2S_FMT_DATA_SIZE_32(player
);
528 /* number of words inserted on the TDM line */
529 SET_UNIPERIF_I2S_FMT_NUM_CH(player
, user_frame_size
/ 4 / 2);
531 SET_UNIPERIF_I2S_FMT_ORDER_MSB(player
);
532 SET_UNIPERIF_I2S_FMT_ALIGN_LEFT(player
);
534 /* Enable the tdm functionality */
535 SET_UNIPERIF_TDM_ENABLE_TDM_ENABLE(player
);
537 /* number of 8 bits timeslots avail in unip tdm frame */
538 SET_UNIPERIF_TDM_FS_REF_DIV_NUM_TIMESLOT(player
, tdm_frame_size
);
540 /* set the timeslot allocation for words in FIFO */
541 sti_uniperiph_get_tdm_word_pos(player
, word_pos
);
542 SET_UNIPERIF_TDM_WORD_POS(player
, 1_2
, word_pos
[WORD_1_2
]);
543 SET_UNIPERIF_TDM_WORD_POS(player
, 3_4
, word_pos
[WORD_3_4
]);
544 SET_UNIPERIF_TDM_WORD_POS(player
, 5_6
, word_pos
[WORD_5_6
]);
545 SET_UNIPERIF_TDM_WORD_POS(player
, 7_8
, word_pos
[WORD_7_8
]);
547 /* set unip clk rate (not done vai set_sysclk ops) */
548 freq
= runtime
->rate
* tdm_frame_size
* 8;
549 mutex_lock(&player
->ctrl_lock
);
550 ret
= uni_player_clk_set_rate(player
, freq
);
553 mutex_unlock(&player
->ctrl_lock
);
559 * ALSA uniperipheral iec958 controls
561 static int uni_player_ctl_iec958_info(struct snd_kcontrol
*kcontrol
,
562 struct snd_ctl_elem_info
*uinfo
)
564 uinfo
->type
= SNDRV_CTL_ELEM_TYPE_IEC958
;
570 static int uni_player_ctl_iec958_get(struct snd_kcontrol
*kcontrol
,
571 struct snd_ctl_elem_value
*ucontrol
)
573 struct snd_soc_dai
*dai
= snd_kcontrol_chip(kcontrol
);
574 struct sti_uniperiph_data
*priv
= snd_soc_dai_get_drvdata(dai
);
575 struct uniperif
*player
= priv
->dai_data
.uni
;
576 struct snd_aes_iec958
*iec958
= &player
->stream_settings
.iec958
;
578 mutex_lock(&player
->ctrl_lock
);
579 ucontrol
->value
.iec958
.status
[0] = iec958
->status
[0];
580 ucontrol
->value
.iec958
.status
[1] = iec958
->status
[1];
581 ucontrol
->value
.iec958
.status
[2] = iec958
->status
[2];
582 ucontrol
->value
.iec958
.status
[3] = iec958
->status
[3];
583 mutex_unlock(&player
->ctrl_lock
);
587 static int uni_player_ctl_iec958_put(struct snd_kcontrol
*kcontrol
,
588 struct snd_ctl_elem_value
*ucontrol
)
590 struct snd_soc_dai
*dai
= snd_kcontrol_chip(kcontrol
);
591 struct sti_uniperiph_data
*priv
= snd_soc_dai_get_drvdata(dai
);
592 struct uniperif
*player
= priv
->dai_data
.uni
;
593 struct snd_aes_iec958
*iec958
= &player
->stream_settings
.iec958
;
596 mutex_lock(&player
->ctrl_lock
);
597 iec958
->status
[0] = ucontrol
->value
.iec958
.status
[0];
598 iec958
->status
[1] = ucontrol
->value
.iec958
.status
[1];
599 iec958
->status
[2] = ucontrol
->value
.iec958
.status
[2];
600 iec958
->status
[3] = ucontrol
->value
.iec958
.status
[3];
602 spin_lock_irqsave(&player
->irq_lock
, flags
);
603 if (player
->substream
&& player
->substream
->runtime
)
604 uni_player_set_channel_status(player
,
605 player
->substream
->runtime
);
607 uni_player_set_channel_status(player
, NULL
);
609 spin_unlock_irqrestore(&player
->irq_lock
, flags
);
610 mutex_unlock(&player
->ctrl_lock
);
615 static struct snd_kcontrol_new uni_player_iec958_ctl
= {
616 .iface
= SNDRV_CTL_ELEM_IFACE_PCM
,
617 .name
= SNDRV_CTL_NAME_IEC958("", PLAYBACK
, DEFAULT
),
618 .info
= uni_player_ctl_iec958_info
,
619 .get
= uni_player_ctl_iec958_get
,
620 .put
= uni_player_ctl_iec958_put
,
624 * uniperif rate adjustement control
626 static int snd_sti_clk_adjustment_info(struct snd_kcontrol
*kcontrol
,
627 struct snd_ctl_elem_info
*uinfo
)
629 uinfo
->type
= SNDRV_CTL_ELEM_TYPE_INTEGER
;
631 uinfo
->value
.integer
.min
= UNIPERIF_PLAYER_CLK_ADJ_MIN
;
632 uinfo
->value
.integer
.max
= UNIPERIF_PLAYER_CLK_ADJ_MAX
;
633 uinfo
->value
.integer
.step
= 1;
638 static int snd_sti_clk_adjustment_get(struct snd_kcontrol
*kcontrol
,
639 struct snd_ctl_elem_value
*ucontrol
)
641 struct snd_soc_dai
*dai
= snd_kcontrol_chip(kcontrol
);
642 struct sti_uniperiph_data
*priv
= snd_soc_dai_get_drvdata(dai
);
643 struct uniperif
*player
= priv
->dai_data
.uni
;
645 mutex_lock(&player
->ctrl_lock
);
646 ucontrol
->value
.integer
.value
[0] = player
->clk_adj
;
647 mutex_unlock(&player
->ctrl_lock
);
652 static int snd_sti_clk_adjustment_put(struct snd_kcontrol
*kcontrol
,
653 struct snd_ctl_elem_value
*ucontrol
)
655 struct snd_soc_dai
*dai
= snd_kcontrol_chip(kcontrol
);
656 struct sti_uniperiph_data
*priv
= snd_soc_dai_get_drvdata(dai
);
657 struct uniperif
*player
= priv
->dai_data
.uni
;
660 if ((ucontrol
->value
.integer
.value
[0] < UNIPERIF_PLAYER_CLK_ADJ_MIN
) ||
661 (ucontrol
->value
.integer
.value
[0] > UNIPERIF_PLAYER_CLK_ADJ_MAX
))
664 mutex_lock(&player
->ctrl_lock
);
665 player
->clk_adj
= ucontrol
->value
.integer
.value
[0];
668 ret
= uni_player_clk_set_rate(player
, player
->mclk
);
669 mutex_unlock(&player
->ctrl_lock
);
674 static struct snd_kcontrol_new uni_player_clk_adj_ctl
= {
675 .iface
= SNDRV_CTL_ELEM_IFACE_PCM
,
676 .name
= "PCM Playback Oversampling Freq. Adjustment",
677 .info
= snd_sti_clk_adjustment_info
,
678 .get
= snd_sti_clk_adjustment_get
,
679 .put
= snd_sti_clk_adjustment_put
,
682 static struct snd_kcontrol_new
*snd_sti_pcm_ctl
[] = {
683 &uni_player_clk_adj_ctl
,
686 static struct snd_kcontrol_new
*snd_sti_iec_ctl
[] = {
687 &uni_player_iec958_ctl
,
688 &uni_player_clk_adj_ctl
,
691 static int uni_player_startup(struct snd_pcm_substream
*substream
,
692 struct snd_soc_dai
*dai
)
694 struct sti_uniperiph_data
*priv
= snd_soc_dai_get_drvdata(dai
);
695 struct uniperif
*player
= priv
->dai_data
.uni
;
699 spin_lock_irqsave(&player
->irq_lock
, flags
);
700 player
->substream
= substream
;
701 spin_unlock_irqrestore(&player
->irq_lock
, flags
);
705 if (!UNIPERIF_TYPE_IS_TDM(player
))
708 /* refine hw constraint in tdm mode */
709 ret
= snd_pcm_hw_rule_add(substream
->runtime
, 0,
710 SNDRV_PCM_HW_PARAM_CHANNELS
,
711 sti_uniperiph_fix_tdm_chan
,
712 player
, SNDRV_PCM_HW_PARAM_CHANNELS
,
717 return snd_pcm_hw_rule_add(substream
->runtime
, 0,
718 SNDRV_PCM_HW_PARAM_FORMAT
,
719 sti_uniperiph_fix_tdm_format
,
720 player
, SNDRV_PCM_HW_PARAM_FORMAT
,
724 static int uni_player_set_sysclk(struct snd_soc_dai
*dai
, int clk_id
,
725 unsigned int freq
, int dir
)
727 struct sti_uniperiph_data
*priv
= snd_soc_dai_get_drvdata(dai
);
728 struct uniperif
*player
= priv
->dai_data
.uni
;
731 if (UNIPERIF_TYPE_IS_TDM(player
) || (dir
== SND_SOC_CLOCK_IN
))
737 mutex_lock(&player
->ctrl_lock
);
738 ret
= uni_player_clk_set_rate(player
, freq
);
741 mutex_unlock(&player
->ctrl_lock
);
746 static int uni_player_prepare(struct snd_pcm_substream
*substream
,
747 struct snd_soc_dai
*dai
)
749 struct sti_uniperiph_data
*priv
= snd_soc_dai_get_drvdata(dai
);
750 struct uniperif
*player
= priv
->dai_data
.uni
;
751 struct snd_pcm_runtime
*runtime
= substream
->runtime
;
752 int transfer_size
, trigger_limit
;
755 /* The player should be stopped */
756 if (player
->state
!= UNIPERIF_STATE_STOPPED
) {
757 dev_err(player
->dev
, "%s: invalid player state %d\n", __func__
,
762 /* Calculate transfer size (in fifo cells and bytes) for frame count */
763 if (player
->type
== SND_ST_UNIPERIF_TYPE_TDM
) {
764 /* transfer size = user frame size (in 32 bits FIFO cell) */
766 sti_uniperiph_get_user_frame_size(runtime
) / 4;
768 transfer_size
= runtime
->channels
* UNIPERIF_FIFO_FRAMES
;
771 /* Calculate number of empty cells available before asserting DREQ */
772 if (player
->ver
< SND_ST_UNIPERIF_VERSION_UNI_PLR_TOP_1_0
) {
773 trigger_limit
= UNIPERIF_FIFO_SIZE
- transfer_size
;
776 * Since SND_ST_UNIPERIF_VERSION_UNI_PLR_TOP_1_0
777 * FDMA_TRIGGER_LIMIT also controls when the state switches
778 * from OFF or STANDBY to AUDIO DATA.
780 trigger_limit
= transfer_size
;
783 /* Trigger limit must be an even number */
784 if ((!trigger_limit
% 2) || (trigger_limit
!= 1 && transfer_size
% 2) ||
785 (trigger_limit
> UNIPERIF_CONFIG_DMA_TRIG_LIMIT_MASK(player
))) {
786 dev_err(player
->dev
, "invalid trigger limit %d\n",
791 SET_UNIPERIF_CONFIG_DMA_TRIG_LIMIT(player
, trigger_limit
);
793 /* Uniperipheral setup depends on player type */
794 switch (player
->type
) {
795 case SND_ST_UNIPERIF_TYPE_HDMI
:
796 ret
= uni_player_prepare_iec958(player
, runtime
);
798 case SND_ST_UNIPERIF_TYPE_PCM
:
799 ret
= uni_player_prepare_pcm(player
, runtime
);
801 case SND_ST_UNIPERIF_TYPE_SPDIF
:
802 ret
= uni_player_prepare_iec958(player
, runtime
);
804 case SND_ST_UNIPERIF_TYPE_TDM
:
805 ret
= uni_player_prepare_tdm(player
, runtime
);
808 dev_err(player
->dev
, "invalid player type\n");
815 switch (player
->daifmt
& SND_SOC_DAIFMT_INV_MASK
) {
816 case SND_SOC_DAIFMT_NB_NF
:
817 SET_UNIPERIF_I2S_FMT_LR_POL_LOW(player
);
818 SET_UNIPERIF_I2S_FMT_SCLK_EDGE_RISING(player
);
820 case SND_SOC_DAIFMT_NB_IF
:
821 SET_UNIPERIF_I2S_FMT_LR_POL_HIG(player
);
822 SET_UNIPERIF_I2S_FMT_SCLK_EDGE_RISING(player
);
824 case SND_SOC_DAIFMT_IB_NF
:
825 SET_UNIPERIF_I2S_FMT_LR_POL_LOW(player
);
826 SET_UNIPERIF_I2S_FMT_SCLK_EDGE_FALLING(player
);
828 case SND_SOC_DAIFMT_IB_IF
:
829 SET_UNIPERIF_I2S_FMT_LR_POL_HIG(player
);
830 SET_UNIPERIF_I2S_FMT_SCLK_EDGE_FALLING(player
);
834 switch (player
->daifmt
& SND_SOC_DAIFMT_FORMAT_MASK
) {
835 case SND_SOC_DAIFMT_I2S
:
836 SET_UNIPERIF_I2S_FMT_ALIGN_LEFT(player
);
837 SET_UNIPERIF_I2S_FMT_PADDING_I2S_MODE(player
);
839 case SND_SOC_DAIFMT_LEFT_J
:
840 SET_UNIPERIF_I2S_FMT_ALIGN_LEFT(player
);
841 SET_UNIPERIF_I2S_FMT_PADDING_SONY_MODE(player
);
843 case SND_SOC_DAIFMT_RIGHT_J
:
844 SET_UNIPERIF_I2S_FMT_ALIGN_RIGHT(player
);
845 SET_UNIPERIF_I2S_FMT_PADDING_SONY_MODE(player
);
848 dev_err(player
->dev
, "format not supported\n");
852 SET_UNIPERIF_I2S_FMT_NO_OF_SAMPLES_TO_READ(player
, 0);
855 return sti_uniperiph_reset(player
);
858 static int uni_player_start(struct uniperif
*player
)
862 /* The player should be stopped */
863 if (player
->state
!= UNIPERIF_STATE_STOPPED
) {
864 dev_err(player
->dev
, "%s: invalid player state\n", __func__
);
868 ret
= clk_prepare_enable(player
->clk
);
870 dev_err(player
->dev
, "%s: Failed to enable clock\n", __func__
);
874 /* Clear any pending interrupts */
875 SET_UNIPERIF_ITS_BCLR(player
, GET_UNIPERIF_ITS(player
));
877 /* Set the interrupt mask */
878 SET_UNIPERIF_ITM_BSET_DMA_ERROR(player
);
879 SET_UNIPERIF_ITM_BSET_FIFO_ERROR(player
);
881 /* Enable underflow recovery interrupts */
882 if (player
->underflow_enabled
) {
883 SET_UNIPERIF_ITM_BSET_UNDERFLOW_REC_DONE(player
);
884 SET_UNIPERIF_ITM_BSET_UNDERFLOW_REC_FAILED(player
);
887 ret
= sti_uniperiph_reset(player
);
889 clk_disable_unprepare(player
->clk
);
894 * Does not use IEC61937 features of the uniperipheral hardware.
895 * Instead it performs IEC61937 in software and inserts it directly
896 * into the audio data stream. As such, when encoded mode is selected,
897 * linear pcm mode is still used, but with the differences of the
898 * channel status bits set for encoded mode and the validity bits set.
900 SET_UNIPERIF_CTRL_OPERATION_PCM_DATA(player
);
903 * If iec958 formatting is required for hdmi or spdif, then it must be
904 * enabled after the operation mode is set. If set prior to this, it
905 * will not take affect and hang the player.
907 if (player
->ver
< SND_ST_UNIPERIF_VERSION_UNI_PLR_TOP_1_0
)
908 if (UNIPERIF_TYPE_IS_IEC958(player
))
909 SET_UNIPERIF_CTRL_SPDIF_FMT_ON(player
);
911 /* Force channel status update (no update if clk disable) */
912 if (player
->ver
< SND_ST_UNIPERIF_VERSION_UNI_PLR_TOP_1_0
)
913 SET_UNIPERIF_CONFIG_CHL_STS_UPDATE(player
);
915 SET_UNIPERIF_BIT_CONTROL_CHL_STS_UPDATE(player
);
917 /* Update state to started */
918 player
->state
= UNIPERIF_STATE_STARTED
;
923 static int uni_player_stop(struct uniperif
*player
)
927 /* The player should not be in stopped state */
928 if (player
->state
== UNIPERIF_STATE_STOPPED
) {
929 dev_err(player
->dev
, "%s: invalid player state\n", __func__
);
933 /* Turn the player off */
934 SET_UNIPERIF_CTRL_OPERATION_OFF(player
);
936 ret
= sti_uniperiph_reset(player
);
940 /* Disable interrupts */
941 SET_UNIPERIF_ITM_BCLR(player
, GET_UNIPERIF_ITM(player
));
944 clk_disable_unprepare(player
->clk
);
946 /* Update state to stopped and return */
947 player
->state
= UNIPERIF_STATE_STOPPED
;
952 int uni_player_resume(struct uniperif
*player
)
956 /* Select the frequency synthesizer clock */
957 if (player
->clk_sel
) {
958 ret
= regmap_field_write(player
->clk_sel
, 1);
961 "%s: Failed to select freq synth clock\n",
967 SET_UNIPERIF_CONFIG_BACK_STALL_REQ_DISABLE(player
);
968 SET_UNIPERIF_CTRL_ROUNDING_OFF(player
);
969 SET_UNIPERIF_CTRL_SPDIF_LAT_OFF(player
);
970 SET_UNIPERIF_CONFIG_IDLE_MOD_DISABLE(player
);
974 EXPORT_SYMBOL_GPL(uni_player_resume
);
976 static int uni_player_trigger(struct snd_pcm_substream
*substream
,
977 int cmd
, struct snd_soc_dai
*dai
)
979 struct sti_uniperiph_data
*priv
= snd_soc_dai_get_drvdata(dai
);
980 struct uniperif
*player
= priv
->dai_data
.uni
;
983 case SNDRV_PCM_TRIGGER_START
:
984 return uni_player_start(player
);
985 case SNDRV_PCM_TRIGGER_STOP
:
986 return uni_player_stop(player
);
987 case SNDRV_PCM_TRIGGER_RESUME
:
988 return uni_player_resume(player
);
994 static void uni_player_shutdown(struct snd_pcm_substream
*substream
,
995 struct snd_soc_dai
*dai
)
997 struct sti_uniperiph_data
*priv
= snd_soc_dai_get_drvdata(dai
);
998 struct uniperif
*player
= priv
->dai_data
.uni
;
1001 spin_lock_irqsave(&player
->irq_lock
, flags
);
1002 if (player
->state
!= UNIPERIF_STATE_STOPPED
)
1003 /* Stop the player */
1004 uni_player_stop(player
);
1006 player
->substream
= NULL
;
1007 spin_unlock_irqrestore(&player
->irq_lock
, flags
);
1010 static int uni_player_parse_dt_audio_glue(struct platform_device
*pdev
,
1011 struct uniperif
*player
)
1013 struct device_node
*node
= pdev
->dev
.of_node
;
1014 struct regmap
*regmap
;
1015 struct reg_field regfield
[2] = {
1017 REG_FIELD(SYS_CFG_AUDIO_GLUE
,
1020 /* PCMP_VALID_SEL */
1021 REG_FIELD(SYS_CFG_AUDIO_GLUE
, 0, 1)
1024 regmap
= syscon_regmap_lookup_by_phandle(node
, "st,syscfg");
1026 if (IS_ERR(regmap
)) {
1027 dev_err(&pdev
->dev
, "sti-audio-clk-glue syscf not found\n");
1028 return PTR_ERR(regmap
);
1031 player
->clk_sel
= regmap_field_alloc(regmap
, regfield
[0]);
1032 player
->valid_sel
= regmap_field_alloc(regmap
, regfield
[1]);
1037 static const struct snd_soc_dai_ops uni_player_dai_ops
= {
1038 .startup
= uni_player_startup
,
1039 .shutdown
= uni_player_shutdown
,
1040 .prepare
= uni_player_prepare
,
1041 .probe
= sti_uniperiph_dai_probe
,
1042 .trigger
= uni_player_trigger
,
1043 .hw_params
= sti_uniperiph_dai_hw_params
,
1044 .set_fmt
= sti_uniperiph_dai_set_fmt
,
1045 .set_sysclk
= uni_player_set_sysclk
,
1046 .set_tdm_slot
= sti_uniperiph_set_tdm_slot
1049 int uni_player_init(struct platform_device
*pdev
,
1050 struct uniperif
*player
)
1054 player
->dev
= &pdev
->dev
;
1055 player
->state
= UNIPERIF_STATE_STOPPED
;
1056 player
->dai_ops
= &uni_player_dai_ops
;
1058 /* Get PCM_CLK_SEL & PCMP_VALID_SEL from audio-glue-ctrl SoC reg */
1059 ret
= uni_player_parse_dt_audio_glue(pdev
, player
);
1062 dev_err(player
->dev
, "Failed to parse DeviceTree\n");
1066 /* Underflow recovery is only supported on later ip revisions */
1067 if (player
->ver
>= SND_ST_UNIPERIF_VERSION_UNI_PLR_TOP_1_0
)
1068 player
->underflow_enabled
= 1;
1070 if (UNIPERIF_TYPE_IS_TDM(player
))
1071 player
->hw
= &uni_tdm_hw
;
1073 player
->hw
= &uni_player_pcm_hw
;
1075 /* Get uniperif resource */
1076 player
->clk
= of_clk_get(pdev
->dev
.of_node
, 0);
1077 if (IS_ERR(player
->clk
)) {
1078 dev_err(player
->dev
, "Failed to get clock\n");
1079 return PTR_ERR(player
->clk
);
1082 /* Select the frequency synthesizer clock */
1083 if (player
->clk_sel
) {
1084 ret
= regmap_field_write(player
->clk_sel
, 1);
1086 dev_err(player
->dev
,
1087 "%s: Failed to select freq synth clock\n",
1093 /* connect to I2S/TDM TX bus */
1094 if (player
->valid_sel
&&
1095 (player
->id
== UNIPERIF_PLAYER_I2S_OUT
)) {
1096 ret
= regmap_field_write(player
->valid_sel
, player
->id
);
1098 dev_err(player
->dev
,
1099 "%s: unable to connect to tdm bus\n", __func__
);
1104 ret
= devm_request_irq(&pdev
->dev
, player
->irq
,
1105 uni_player_irq_handler
, IRQF_SHARED
,
1106 dev_name(&pdev
->dev
), player
);
1108 dev_err(player
->dev
, "unable to request IRQ %d\n", player
->irq
);
1112 mutex_init(&player
->ctrl_lock
);
1113 spin_lock_init(&player
->irq_lock
);
1115 /* Ensure that disabled by default */
1116 SET_UNIPERIF_CONFIG_BACK_STALL_REQ_DISABLE(player
);
1117 SET_UNIPERIF_CTRL_ROUNDING_OFF(player
);
1118 SET_UNIPERIF_CTRL_SPDIF_LAT_OFF(player
);
1119 SET_UNIPERIF_CONFIG_IDLE_MOD_DISABLE(player
);
1121 if (UNIPERIF_TYPE_IS_IEC958(player
)) {
1122 /* Set default iec958 status bits */
1124 /* Consumer, PCM, copyright, 2ch, mode 0 */
1125 player
->stream_settings
.iec958
.status
[0] = 0x00;
1126 /* Broadcast reception category */
1127 player
->stream_settings
.iec958
.status
[1] =
1128 IEC958_AES1_CON_GENERAL
;
1129 /* Do not take into account source or channel number */
1130 player
->stream_settings
.iec958
.status
[2] =
1131 IEC958_AES2_CON_SOURCE_UNSPEC
;
1132 /* Sampling frequency not indicated */
1133 player
->stream_settings
.iec958
.status
[3] =
1134 IEC958_AES3_CON_FS_NOTID
;
1135 /* Max sample word 24-bit, sample word length not indicated */
1136 player
->stream_settings
.iec958
.status
[4] =
1137 IEC958_AES4_CON_MAX_WORDLEN_24
|
1138 IEC958_AES4_CON_WORDLEN_24_20
;
1140 player
->num_ctrls
= ARRAY_SIZE(snd_sti_iec_ctl
);
1141 player
->snd_ctrls
= snd_sti_iec_ctl
[0];
1143 player
->num_ctrls
= ARRAY_SIZE(snd_sti_pcm_ctl
);
1144 player
->snd_ctrls
= snd_sti_pcm_ctl
[0];
1149 EXPORT_SYMBOL_GPL(uni_player_init
);