intel_hdmi_audio.c 58.9 KB
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/*
 *   intel_hdmi_audio.c - Intel HDMI audio driver
 *
 *  Copyright (C) 2016 Intel Corp
 *  Authors:	Sailaja Bandarupalli <sailaja.bandarupalli@intel.com>
 *		Ramesh Babu K V	<ramesh.babu@intel.com>
 *		Vaibhav Agarwal <vaibhav.agarwal@intel.com>
 *		Jerome Anand <jerome.anand@intel.com>
 *  ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
 *
 *  This program is free software; you can redistribute it and/or modify
 *  it under the terms of the GNU General Public License as published by
 *  the Free Software Foundation; version 2 of the License.
 *
 *  This program is distributed in the hope that it will be useful, but
 *  WITHOUT ANY WARRANTY; without even the implied warranty of
 *  MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
 *  General Public License for more details.
 *
 * ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
 * ALSA driver for Intel HDMI audio
 */

#include <linux/platform_device.h>
#include <linux/io.h>
#include <linux/slab.h>
#include <linux/module.h>
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#include <linux/interrupt.h>
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#include <linux/acpi.h>
#include <asm/cacheflush.h>
#include <sound/pcm.h>
#include <sound/core.h>
#include <sound/pcm_params.h>
#include <sound/initval.h>
#include <sound/control.h>
#include <sound/initval.h>
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#include <drm/intel_lpe_audio.h>
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#include "intel_hdmi_audio.h"

/*standard module options for ALSA. This module supports only one card*/
static int hdmi_card_index = SNDRV_DEFAULT_IDX1;
static char *hdmi_card_id = SNDRV_DEFAULT_STR1;

module_param_named(index, hdmi_card_index, int, 0444);
MODULE_PARM_DESC(index,
		"Index value for INTEL Intel HDMI Audio controller.");
module_param_named(id, hdmi_card_id, charp, 0444);
MODULE_PARM_DESC(id,
		"ID string for INTEL Intel HDMI Audio controller.");

/*
 * ELD SA bits in the CEA Speaker Allocation data block
 */
static int eld_speaker_allocation_bits[] = {
	[0] = FL | FR,
	[1] = LFE,
	[2] = FC,
	[3] = RL | RR,
	[4] = RC,
	[5] = FLC | FRC,
	[6] = RLC | RRC,
	/* the following are not defined in ELD yet */
	[7] = 0,
};

/*
 * This is an ordered list!
 *
 * The preceding ones have better chances to be selected by
 * hdmi_channel_allocation().
 */
static struct cea_channel_speaker_allocation channel_allocations[] = {
/*                        channel:   7     6    5    4    3     2    1    0  */
{ .ca_index = 0x00,  .speakers = {   0,    0,   0,   0,   0,    0,  FR,  FL } },
				/* 2.1 */
{ .ca_index = 0x01,  .speakers = {   0,    0,   0,   0,   0,  LFE,  FR,  FL } },
				/* Dolby Surround */
{ .ca_index = 0x02,  .speakers = {   0,    0,   0,   0,  FC,    0,  FR,  FL } },
				/* surround40 */
{ .ca_index = 0x08,  .speakers = {   0,    0,  RR,  RL,   0,    0,  FR,  FL } },
				/* surround41 */
{ .ca_index = 0x09,  .speakers = {   0,    0,  RR,  RL,   0,  LFE,  FR,  FL } },
				/* surround50 */
{ .ca_index = 0x0a,  .speakers = {   0,    0,  RR,  RL,  FC,    0,  FR,  FL } },
				/* surround51 */
{ .ca_index = 0x0b,  .speakers = {   0,    0,  RR,  RL,  FC,  LFE,  FR,  FL } },
				/* 6.1 */
{ .ca_index = 0x0f,  .speakers = {   0,   RC,  RR,  RL,  FC,  LFE,  FR,  FL } },
				/* surround71 */
{ .ca_index = 0x13,  .speakers = { RRC,  RLC,  RR,  RL,  FC,  LFE,  FR,  FL } },

{ .ca_index = 0x03,  .speakers = {   0,    0,   0,   0,  FC,  LFE,  FR,  FL } },
{ .ca_index = 0x04,  .speakers = {   0,    0,   0,  RC,   0,    0,  FR,  FL } },
{ .ca_index = 0x05,  .speakers = {   0,    0,   0,  RC,   0,  LFE,  FR,  FL } },
{ .ca_index = 0x06,  .speakers = {   0,    0,   0,  RC,  FC,    0,  FR,  FL } },
{ .ca_index = 0x07,  .speakers = {   0,    0,   0,  RC,  FC,  LFE,  FR,  FL } },
{ .ca_index = 0x0c,  .speakers = {   0,   RC,  RR,  RL,   0,    0,  FR,  FL } },
{ .ca_index = 0x0d,  .speakers = {   0,   RC,  RR,  RL,   0,  LFE,  FR,  FL } },
{ .ca_index = 0x0e,  .speakers = {   0,   RC,  RR,  RL,  FC,    0,  FR,  FL } },
{ .ca_index = 0x10,  .speakers = { RRC,  RLC,  RR,  RL,   0,    0,  FR,  FL } },
{ .ca_index = 0x11,  .speakers = { RRC,  RLC,  RR,  RL,   0,  LFE,  FR,  FL } },
{ .ca_index = 0x12,  .speakers = { RRC,  RLC,  RR,  RL,  FC,    0,  FR,  FL } },
{ .ca_index = 0x14,  .speakers = { FRC,  FLC,   0,   0,   0,    0,  FR,  FL } },
{ .ca_index = 0x15,  .speakers = { FRC,  FLC,   0,   0,   0,  LFE,  FR,  FL } },
{ .ca_index = 0x16,  .speakers = { FRC,  FLC,   0,   0,  FC,    0,  FR,  FL } },
{ .ca_index = 0x17,  .speakers = { FRC,  FLC,   0,   0,  FC,  LFE,  FR,  FL } },
{ .ca_index = 0x18,  .speakers = { FRC,  FLC,   0,  RC,   0,    0,  FR,  FL } },
{ .ca_index = 0x19,  .speakers = { FRC,  FLC,   0,  RC,   0,  LFE,  FR,  FL } },
{ .ca_index = 0x1a,  .speakers = { FRC,  FLC,   0,  RC,  FC,    0,  FR,  FL } },
{ .ca_index = 0x1b,  .speakers = { FRC,  FLC,   0,  RC,  FC,  LFE,  FR,  FL } },
{ .ca_index = 0x1c,  .speakers = { FRC,  FLC,  RR,  RL,   0,    0,  FR,  FL } },
{ .ca_index = 0x1d,  .speakers = { FRC,  FLC,  RR,  RL,   0,  LFE,  FR,  FL } },
{ .ca_index = 0x1e,  .speakers = { FRC,  FLC,  RR,  RL,  FC,    0,  FR,  FL } },
{ .ca_index = 0x1f,  .speakers = { FRC,  FLC,  RR,  RL,  FC,  LFE,  FR,  FL } },
};

static struct channel_map_table map_tables[] = {
	{ SNDRV_CHMAP_FL,       0x00,   FL },
	{ SNDRV_CHMAP_FR,       0x01,   FR },
	{ SNDRV_CHMAP_RL,       0x04,   RL },
	{ SNDRV_CHMAP_RR,       0x05,   RR },
	{ SNDRV_CHMAP_LFE,      0x02,   LFE },
	{ SNDRV_CHMAP_FC,       0x03,   FC },
	{ SNDRV_CHMAP_RLC,      0x06,   RLC },
	{ SNDRV_CHMAP_RRC,      0x07,   RRC },
	{} /* terminator */
};

/* hardware capability structure */
static const struct snd_pcm_hardware snd_intel_hadstream = {
	.info =	(SNDRV_PCM_INFO_INTERLEAVED |
		SNDRV_PCM_INFO_DOUBLE |
		SNDRV_PCM_INFO_MMAP|
		SNDRV_PCM_INFO_MMAP_VALID |
		SNDRV_PCM_INFO_BATCH),
	.formats = (SNDRV_PCM_FMTBIT_S24 |
		SNDRV_PCM_FMTBIT_U24),
	.rates = SNDRV_PCM_RATE_32000 |
		SNDRV_PCM_RATE_44100 |
		SNDRV_PCM_RATE_48000 |
		SNDRV_PCM_RATE_88200 |
		SNDRV_PCM_RATE_96000 |
		SNDRV_PCM_RATE_176400 |
		SNDRV_PCM_RATE_192000,
	.rate_min = HAD_MIN_RATE,
	.rate_max = HAD_MAX_RATE,
	.channels_min = HAD_MIN_CHANNEL,
	.channels_max = HAD_MAX_CHANNEL,
	.buffer_bytes_max = HAD_MAX_BUFFER,
	.period_bytes_min = HAD_MIN_PERIOD_BYTES,
	.period_bytes_max = HAD_MAX_PERIOD_BYTES,
	.periods_min = HAD_MIN_PERIODS,
	.periods_max = HAD_MAX_PERIODS,
	.fifo_size = HAD_FIFO_SIZE,
};

/* Register access functions */
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static inline void
mid_hdmi_audio_read(struct snd_intelhad *ctx, u32 reg, u32 *val)
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{
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	*val = ioread32(ctx->mmio_start + ctx->had_config_offset + reg);
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}

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static inline void
mid_hdmi_audio_write(struct snd_intelhad *ctx, u32 reg, u32 val)
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{
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	iowrite32(val, ctx->mmio_start + ctx->had_config_offset + reg);
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}

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static int had_read_register(struct snd_intelhad *intelhaddata,
			     u32 offset, u32 *data)
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{
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	if (intelhaddata->drv_status == HAD_DRV_DISCONNECTED)
		return -ENODEV;
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	mid_hdmi_audio_read(intelhaddata, offset, data);
	return 0;
}

static void fixup_dp_config(struct snd_intelhad *intelhaddata,
			    u32 offset, u32 *data)
{
	if (intelhaddata->dp_output) {
		if (offset == AUD_CONFIG && (*data & AUD_CONFIG_VALID_BIT))
			*data |= AUD_CONFIG_DP_MODE | AUD_CONFIG_BLOCK_BIT;
	}
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}

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static int had_write_register(struct snd_intelhad *intelhaddata,
			      u32 offset, u32 data)
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{
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	if (intelhaddata->drv_status == HAD_DRV_DISCONNECTED)
		return -ENODEV;
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	fixup_dp_config(intelhaddata, offset, &data);
	mid_hdmi_audio_write(intelhaddata, offset, data);
	return 0;
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}

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static int had_read_modify(struct snd_intelhad *intelhaddata, u32 offset,
			   u32 data, u32 mask)
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{
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	u32 val_tmp;
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	if (intelhaddata->drv_status == HAD_DRV_DISCONNECTED)
		return -ENODEV;
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	mid_hdmi_audio_read(intelhaddata, offset, &val_tmp);
	val_tmp &= ~mask;
	val_tmp |= (data & mask);

	fixup_dp_config(intelhaddata, offset, &val_tmp);
	mid_hdmi_audio_write(intelhaddata, offset, val_tmp);
	return 0;
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}
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/*
 * function to read-modify AUD_CONFIG register on VLV2.
 * The had_read_modify() function should not directly be used on VLV2 for
 * updating AUD_CONFIG register.
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 * This is because:
 * Bit6 of AUD_CONFIG register is writeonly due to a silicon bug on VLV2
 * HDMI IP. As a result a read-modify of AUD_CONFIG regiter will always
 * clear bit6. AUD_CONFIG[6:4] represents the "channels" field of the
 * register. This field should be 1xy binary for configuration with 6 or
 * more channels. Read-modify of AUD_CONFIG (Eg. for enabling audio)
 * causes the "channels" field to be updated as 0xy binary resulting in
 * bad audio. The fix is to always write the AUD_CONFIG[6:4] with
 * appropriate value when doing read-modify of AUD_CONFIG register.
 *
 * @substream: the current substream or NULL if no active substream
 * @data : data to be written
 * @mask : mask
 *
 */
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static int had_read_modify_aud_config_v2(struct snd_intelhad *intelhaddata,
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					u32 data, u32 mask)
{
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	struct snd_pcm_substream *substream;
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	union aud_cfg cfg_val = {.cfg_regval = 0};
	u8 channels;

	/*
	 * If substream is NULL, there is no active stream.
	 * In this case just set channels to 2
	 */
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	substream = intelhaddata->stream_info.had_substream;
	if (substream && substream->runtime)
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		channels = substream->runtime->channels;
	else
		channels = 2;
	cfg_val.cfg_regx_v2.num_ch = channels - 2;

	data = data | cfg_val.cfg_regval;
	mask = mask | AUD_CONFIG_CH_MASK_V2;

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	dev_dbg(intelhaddata->dev, "%s : data = %x, mask =%x\n",
		__func__, data, mask);
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	return had_read_modify(intelhaddata, AUD_CONFIG, data, mask);
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}

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static void snd_intelhad_enable_audio_int(struct snd_intelhad *ctx, bool enable)
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{
	u32 status_reg;

	if (enable) {
		mid_hdmi_audio_read(ctx, AUD_HDMI_STATUS_v2, &status_reg);
		status_reg |= HDMI_AUDIO_BUFFER_DONE | HDMI_AUDIO_UNDERRUN;
		mid_hdmi_audio_write(ctx, AUD_HDMI_STATUS_v2, status_reg);
		mid_hdmi_audio_read(ctx, AUD_HDMI_STATUS_v2, &status_reg);
	}
}

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static void snd_intelhad_enable_audio(struct snd_intelhad *intelhaddata,
				      bool enable)
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{
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	had_read_modify_aud_config_v2(intelhaddata, enable ? BIT(0) : 0,
				      BIT(0));
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}

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static void snd_intelhad_reset_audio(struct snd_intelhad *intelhaddata,
				     u8 reset)
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{
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	had_write_register(intelhaddata, AUD_HDMI_STATUS_v2, reset);
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}

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/*
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 * initialize audio channel status registers
 * This function is called in the prepare callback
 */
static int had_prog_status_reg(struct snd_pcm_substream *substream,
			struct snd_intelhad *intelhaddata)
{
	union aud_cfg cfg_val = {.cfg_regval = 0};
	union aud_ch_status_0 ch_stat0 = {.status_0_regval = 0};
	union aud_ch_status_1 ch_stat1 = {.status_1_regval = 0};
	int format;

	ch_stat0.status_0_regx.lpcm_id = (intelhaddata->aes_bits &
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					  IEC958_AES0_NONAUDIO) >> 1;
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	ch_stat0.status_0_regx.clk_acc = (intelhaddata->aes_bits &
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					  IEC958_AES3_CON_CLOCK) >> 4;
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	cfg_val.cfg_regx_v2.val_bit = ch_stat0.status_0_regx.lpcm_id;
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	switch (substream->runtime->rate) {
	case AUD_SAMPLE_RATE_32:
		ch_stat0.status_0_regx.samp_freq = CH_STATUS_MAP_32KHZ;
		break;

	case AUD_SAMPLE_RATE_44_1:
		ch_stat0.status_0_regx.samp_freq = CH_STATUS_MAP_44KHZ;
		break;
	case AUD_SAMPLE_RATE_48:
		ch_stat0.status_0_regx.samp_freq = CH_STATUS_MAP_48KHZ;
		break;
	case AUD_SAMPLE_RATE_88_2:
		ch_stat0.status_0_regx.samp_freq = CH_STATUS_MAP_88KHZ;
		break;
	case AUD_SAMPLE_RATE_96:
		ch_stat0.status_0_regx.samp_freq = CH_STATUS_MAP_96KHZ;
		break;
	case AUD_SAMPLE_RATE_176_4:
		ch_stat0.status_0_regx.samp_freq = CH_STATUS_MAP_176KHZ;
		break;
	case AUD_SAMPLE_RATE_192:
		ch_stat0.status_0_regx.samp_freq = CH_STATUS_MAP_192KHZ;
		break;

	default:
		/* control should never come here */
		return -EINVAL;
	}
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	had_write_register(intelhaddata,
			   AUD_CH_STATUS_0, ch_stat0.status_0_regval);
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	format = substream->runtime->format;

	if (format == SNDRV_PCM_FORMAT_S16_LE) {
		ch_stat1.status_1_regx.max_wrd_len = MAX_SMPL_WIDTH_20;
		ch_stat1.status_1_regx.wrd_len = SMPL_WIDTH_16BITS;
	} else if (format == SNDRV_PCM_FORMAT_S24_LE) {
		ch_stat1.status_1_regx.max_wrd_len = MAX_SMPL_WIDTH_24;
		ch_stat1.status_1_regx.wrd_len = SMPL_WIDTH_24BITS;
	} else {
		ch_stat1.status_1_regx.max_wrd_len = 0;
		ch_stat1.status_1_regx.wrd_len = 0;
	}
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	had_write_register(intelhaddata,
			   AUD_CH_STATUS_1, ch_stat1.status_1_regval);
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	return 0;
}

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/*
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 * function to initialize audio
 * registers and buffer confgiuration registers
 * This function is called in the prepare callback
 */
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static int snd_intelhad_audio_ctrl(struct snd_pcm_substream *substream,
				   struct snd_intelhad *intelhaddata)
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{
	union aud_cfg cfg_val = {.cfg_regval = 0};
	union aud_buf_config buf_cfg = {.buf_cfgval = 0};
	u8 channels;

	had_prog_status_reg(substream, intelhaddata);

	buf_cfg.buf_cfg_regx_v2.audio_fifo_watermark = FIFO_THRESHOLD;
	buf_cfg.buf_cfg_regx_v2.dma_fifo_watermark = DMA_FIFO_THRESHOLD;
	buf_cfg.buf_cfg_regx_v2.aud_delay = 0;
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	had_write_register(intelhaddata, AUD_BUF_CONFIG, buf_cfg.buf_cfgval);
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	channels = substream->runtime->channels;
	cfg_val.cfg_regx_v2.num_ch = channels - 2;
	if (channels <= 2)
		cfg_val.cfg_regx_v2.layout = LAYOUT0;
	else
		cfg_val.cfg_regx_v2.layout = LAYOUT1;

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	cfg_val.cfg_regx_v2.val_bit = 1;
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	had_write_register(intelhaddata, AUD_CONFIG, cfg_val.cfg_regval);
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	return 0;
}

/*
 * Compute derived values in channel_allocations[].
 */
static void init_channel_allocations(void)
{
	int i, j;
	struct cea_channel_speaker_allocation *p;

	for (i = 0; i < ARRAY_SIZE(channel_allocations); i++) {
		p = channel_allocations + i;
		p->channels = 0;
		p->spk_mask = 0;
		for (j = 0; j < ARRAY_SIZE(p->speakers); j++)
			if (p->speakers[j]) {
				p->channels++;
				p->spk_mask |= p->speakers[j];
			}
	}
}

/*
 * The transformation takes two steps:
 *
 *      eld->spk_alloc => (eld_speaker_allocation_bits[]) => spk_mask
 *            spk_mask => (channel_allocations[])         => ai->CA
 *
 * TODO: it could select the wrong CA from multiple candidates.
 */
static int snd_intelhad_channel_allocation(struct snd_intelhad *intelhaddata,
					int channels)
{
	int i;
	int ca = 0;
	int spk_mask = 0;

	/*
	 * CA defaults to 0 for basic stereo audio
	 */
	if (channels <= 2)
		return 0;

	/*
	 * expand ELD's speaker allocation mask
	 *
	 * ELD tells the speaker mask in a compact(paired) form,
	 * expand ELD's notions to match the ones used by Audio InfoFrame.
	 */

	for (i = 0; i < ARRAY_SIZE(eld_speaker_allocation_bits); i++) {
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		if (intelhaddata->eld.speaker_allocation_block & (1 << i))
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			spk_mask |= eld_speaker_allocation_bits[i];
	}

	/* search for the first working match in the CA table */
	for (i = 0; i < ARRAY_SIZE(channel_allocations); i++) {
		if (channels == channel_allocations[i].channels &&
		(spk_mask & channel_allocations[i].spk_mask) ==
				channel_allocations[i].spk_mask) {
			ca = channel_allocations[i].ca_index;
			break;
		}
	}

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	dev_dbg(intelhaddata->dev, "select CA 0x%x for %d\n", ca, channels);
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	return ca;
}

/* from speaker bit mask to ALSA API channel position */
static int spk_to_chmap(int spk)
{
	struct channel_map_table *t = map_tables;

	for (; t->map; t++) {
		if (t->spk_mask == spk)
			return t->map;
	}
	return 0;
}

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static void had_build_channel_allocation_map(struct snd_intelhad *intelhaddata)
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{
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	int i, c;
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	int spk_mask = 0;
	struct snd_pcm_chmap_elem *chmap;
	u8 eld_high, eld_high_mask = 0xF0;
	u8 high_msb;

	chmap = kzalloc(sizeof(*chmap), GFP_KERNEL);
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	if (!chmap) {
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		intelhaddata->chmap->chmap = NULL;
		return;
	}

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	dev_dbg(intelhaddata->dev, "eld.speaker_allocation_block = %x\n",
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			intelhaddata->eld.speaker_allocation_block);
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	/* WA: Fix the max channel supported to 8 */

	/*
	 * Sink may support more than 8 channels, if eld_high has more than
	 * one bit set. SOC supports max 8 channels.
	 * Refer eld_speaker_allocation_bits, for sink speaker allocation
	 */

	/* if 0x2F < eld < 0x4F fall back to 0x2f, else fall back to 0x4F */
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	eld_high = intelhaddata->eld.speaker_allocation_block & eld_high_mask;
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	if ((eld_high & (eld_high-1)) && (eld_high > 0x1F)) {
		/* eld_high & (eld_high-1): if more than 1 bit set */
		/* 0x1F: 7 channels */
		for (i = 1; i < 4; i++) {
			high_msb = eld_high & (0x80 >> i);
			if (high_msb) {
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				intelhaddata->eld.speaker_allocation_block &=
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					high_msb | 0xF;
				break;
			}
		}
	}

	for (i = 0; i < ARRAY_SIZE(eld_speaker_allocation_bits); i++) {
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		if (intelhaddata->eld.speaker_allocation_block & (1 << i))
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			spk_mask |= eld_speaker_allocation_bits[i];
	}

	for (i = 0; i < ARRAY_SIZE(channel_allocations); i++) {
		if (spk_mask == channel_allocations[i].spk_mask) {
			for (c = 0; c < channel_allocations[i].channels; c++) {
				chmap->map[c] = spk_to_chmap(
					channel_allocations[i].speakers[
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						(MAX_SPEAKERS - 1) - c]);
518 519 520 521 522 523 524 525 526 527 528 529 530 531 532 533 534 535 536 537 538 539 540 541 542 543 544 545 546 547 548 549 550 551 552
			}
			chmap->channels = channel_allocations[i].channels;
			intelhaddata->chmap->chmap = chmap;
			break;
		}
	}
	if (i >= ARRAY_SIZE(channel_allocations)) {
		intelhaddata->chmap->chmap = NULL;
		kfree(chmap);
	}
}

/*
 * ALSA API channel-map control callbacks
 */
static int had_chmap_ctl_info(struct snd_kcontrol *kcontrol,
				struct snd_ctl_elem_info *uinfo)
{
	struct snd_pcm_chmap *info = snd_kcontrol_chip(kcontrol);
	struct snd_intelhad *intelhaddata = info->private_data;

	if (intelhaddata->drv_status == HAD_DRV_DISCONNECTED)
		return -ENODEV;
	uinfo->type = SNDRV_CTL_ELEM_TYPE_INTEGER;
	uinfo->count = HAD_MAX_CHANNEL;
	uinfo->value.integer.min = 0;
	uinfo->value.integer.max = SNDRV_CHMAP_LAST;
	return 0;
}

static int had_chmap_ctl_get(struct snd_kcontrol *kcontrol,
				struct snd_ctl_elem_value *ucontrol)
{
	struct snd_pcm_chmap *info = snd_kcontrol_chip(kcontrol);
	struct snd_intelhad *intelhaddata = info->private_data;
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	int i;
554 555 556 557
	const struct snd_pcm_chmap_elem *chmap;

	if (intelhaddata->drv_status == HAD_DRV_DISCONNECTED)
		return -ENODEV;
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	if (!intelhaddata->chmap->chmap)
559 560
		return -ENODATA;
	chmap = intelhaddata->chmap->chmap;
561
	for (i = 0; i < chmap->channels; i++)
562 563 564 565 566 567 568 569
		ucontrol->value.integer.value[i] = chmap->map[i];

	return 0;
}

static int had_register_chmap_ctls(struct snd_intelhad *intelhaddata,
						struct snd_pcm *pcm)
{
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	int err;
571 572 573 574 575 576 577 578

	err = snd_pcm_add_chmap_ctls(pcm, SNDRV_PCM_STREAM_PLAYBACK,
			NULL, 0, (unsigned long)intelhaddata,
			&intelhaddata->chmap);
	if (err < 0)
		return err;

	intelhaddata->chmap->private_data = intelhaddata;
579 580
	intelhaddata->chmap->kctl->info = had_chmap_ctl_info;
	intelhaddata->chmap->kctl->get = had_chmap_ctl_get;
581 582 583 584
	intelhaddata->chmap->chmap = NULL;
	return 0;
}

585 586
/*
 * snd_intelhad_prog_dip - to initialize Data Island Packets registers
587 588 589 590 591 592
 *
 * @substream:substream for which the prepare function is called
 * @intelhaddata:substream private data
 *
 * This function is called in the prepare callback
 */
593 594
static void snd_intelhad_prog_dip(struct snd_pcm_substream *substream,
				  struct snd_intelhad *intelhaddata)
595 596 597 598 599 600
{
	int i;
	union aud_ctrl_st ctrl_state = {.ctrl_val = 0};
	union aud_info_frame2 frame2 = {.fr2_val = 0};
	union aud_info_frame3 frame3 = {.fr3_val = 0};
	u8 checksum = 0;
601
	u32 info_frame;
602 603 604 605
	int channels;

	channels = substream->runtime->channels;

606
	had_write_register(intelhaddata, AUD_CNTL_ST, ctrl_state.ctrl_val);
607

608 609 610 611 612 613
	if (intelhaddata->dp_output) {
		info_frame = DP_INFO_FRAME_WORD1;
		frame2.fr2_val = 1;
	} else {
		info_frame = HDMI_INFO_FRAME_WORD1;
		frame2.fr2_regx.chnl_cnt = substream->runtime->channels - 1;
614

615 616
		frame3.fr3_regx.chnl_alloc = snd_intelhad_channel_allocation(
			intelhaddata, channels);
617

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		/* Calculte the byte wide checksum for all valid DIP words */
619 620 621 622 623 624
		for (i = 0; i < BYTES_PER_WORD; i++)
			checksum += (info_frame >> i*BITS_PER_BYTE) & MASK_BYTE0;
		for (i = 0; i < BYTES_PER_WORD; i++)
			checksum += (frame2.fr2_val >> i*BITS_PER_BYTE) & MASK_BYTE0;
		for (i = 0; i < BYTES_PER_WORD; i++)
			checksum += (frame3.fr3_val >> i*BITS_PER_BYTE) & MASK_BYTE0;
625

626 627
		frame2.fr2_regx.chksum = -(checksum);
	}
628

629 630 631
	had_write_register(intelhaddata, AUD_HDMIW_INFOFR_v2, info_frame);
	had_write_register(intelhaddata, AUD_HDMIW_INFOFR_v2, frame2.fr2_val);
	had_write_register(intelhaddata, AUD_HDMIW_INFOFR_v2, frame3.fr3_val);
632 633 634

	/* program remaining DIP words with zero */
	for (i = 0; i < HAD_MAX_DIP_WORDS-VALID_DIP_WORDS; i++)
635
		had_write_register(intelhaddata, AUD_HDMIW_INFOFR_v2, 0x0);
636 637 638

	ctrl_state.ctrl_regx.dip_freq = 1;
	ctrl_state.ctrl_regx.dip_en_sta = 1;
639
	had_write_register(intelhaddata, AUD_CNTL_ST, ctrl_state.ctrl_val);
640 641
}

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/*
 * snd_intelhad_prog_buffer - programs buffer address and length registers
644 645 646 647 648
 * @substream:substream for which the prepare function is called
 * @intelhaddata:substream private data
 *
 * This function programs ring buffer address and length into registers.
 */
649
static int snd_intelhad_prog_buffer(struct snd_intelhad *intelhaddata,
650 651 652 653 654 655 656
					int start, int end)
{
	u32 ring_buf_addr, ring_buf_size, period_bytes;
	u8 i, num_periods;
	struct snd_pcm_substream *substream;

	substream = intelhaddata->stream_info.had_substream;
657
	if (WARN_ON(!substream))
658 659 660 661 662 663 664 665 666 667 668 669 670 671 672 673 674 675 676 677 678 679 680 681 682 683 684
		return 0;

	ring_buf_addr = substream->runtime->dma_addr;
	ring_buf_size = snd_pcm_lib_buffer_bytes(substream);
	intelhaddata->stream_info.ring_buf_size = ring_buf_size;
	period_bytes = frames_to_bytes(substream->runtime,
				substream->runtime->period_size);
	num_periods = substream->runtime->periods;

	/*
	 * buffer addr should  be 64 byte aligned, period bytes
	 * will be used to calculate addr offset
	 */
	period_bytes &= ~0x3F;

	/* Hardware supports MAX_PERIODS buffers */
	if (end >= HAD_MAX_PERIODS)
		return -EINVAL;

	for (i = start; i <= end; i++) {
		/* Program the buf registers with addr and len */
		intelhaddata->buf_info[i].buf_addr = ring_buf_addr +
							 (i * period_bytes);
		if (i < num_periods-1)
			intelhaddata->buf_info[i].buf_size = period_bytes;
		else
			intelhaddata->buf_info[i].buf_size = ring_buf_size -
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							(i * period_bytes);
686

687 688
		had_write_register(intelhaddata,
				   AUD_BUF_A_ADDR + (i * HAD_REG_WIDTH),
689 690
					intelhaddata->buf_info[i].buf_addr |
					BIT(0) | BIT(1));
691 692
		had_write_register(intelhaddata,
				   AUD_BUF_A_LENGTH + (i * HAD_REG_WIDTH),
693 694 695
					period_bytes);
		intelhaddata->buf_info[i].is_valid = true;
	}
696 697 698 699
	dev_dbg(intelhaddata->dev, "%s:buf[%d-%d] addr=%#x  and size=%d\n",
		__func__, start, end,
		intelhaddata->buf_info[start].buf_addr,
		intelhaddata->buf_info[start].buf_size);
700 701 702 703
	intelhaddata->valid_buf_cnt = num_periods;
	return 0;
}

704
static int snd_intelhad_read_len(struct snd_intelhad *intelhaddata)
705 706 707 708 709
{
	int i, retval = 0;
	u32 len[4];

	for (i = 0; i < 4 ; i++) {
710 711 712
		had_read_register(intelhaddata,
				  AUD_BUF_A_LENGTH + (i * HAD_REG_WIDTH),
				  &len[i]);
713 714 715 716 717
		if (!len[i])
			retval++;
	}
	if (retval != 1) {
		for (i = 0; i < 4 ; i++)
718 719
			dev_dbg(intelhaddata->dev, "buf[%d] size=%d\n",
				i, len[i]);
720 721 722 723 724
	}

	return retval;
}

725 726 727 728
static int had_calculate_maud_value(u32 aud_samp_freq, u32 link_rate)
{
	u32 maud_val;

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	/* Select maud according to DP 1.2 spec */
730 731 732 733 734 735 736 737 738 739 740 741 742 743 744 745 746 747 748 749 750 751 752 753 754 755 756 757 758 759 760 761 762 763 764 765 766 767 768 769 770 771 772 773 774 775 776 777 778 779 780 781 782 783 784 785 786 787 788 789 790 791 792 793 794 795 796 797 798 799 800 801 802 803
	if (link_rate == DP_2_7_GHZ) {
		switch (aud_samp_freq) {
		case AUD_SAMPLE_RATE_32:
			maud_val = AUD_SAMPLE_RATE_32_DP_2_7_MAUD_VAL;
			break;

		case AUD_SAMPLE_RATE_44_1:
			maud_val = AUD_SAMPLE_RATE_44_1_DP_2_7_MAUD_VAL;
			break;

		case AUD_SAMPLE_RATE_48:
			maud_val = AUD_SAMPLE_RATE_48_DP_2_7_MAUD_VAL;
			break;

		case AUD_SAMPLE_RATE_88_2:
			maud_val = AUD_SAMPLE_RATE_88_2_DP_2_7_MAUD_VAL;
			break;

		case AUD_SAMPLE_RATE_96:
			maud_val = AUD_SAMPLE_RATE_96_DP_2_7_MAUD_VAL;
			break;

		case AUD_SAMPLE_RATE_176_4:
			maud_val = AUD_SAMPLE_RATE_176_4_DP_2_7_MAUD_VAL;
			break;

		case HAD_MAX_RATE:
			maud_val = HAD_MAX_RATE_DP_2_7_MAUD_VAL;
			break;

		default:
			maud_val = -EINVAL;
			break;
		}
	} else if (link_rate == DP_1_62_GHZ) {
		switch (aud_samp_freq) {
		case AUD_SAMPLE_RATE_32:
			maud_val = AUD_SAMPLE_RATE_32_DP_1_62_MAUD_VAL;
			break;

		case AUD_SAMPLE_RATE_44_1:
			maud_val = AUD_SAMPLE_RATE_44_1_DP_1_62_MAUD_VAL;
			break;

		case AUD_SAMPLE_RATE_48:
			maud_val = AUD_SAMPLE_RATE_48_DP_1_62_MAUD_VAL;
			break;

		case AUD_SAMPLE_RATE_88_2:
			maud_val = AUD_SAMPLE_RATE_88_2_DP_1_62_MAUD_VAL;
			break;

		case AUD_SAMPLE_RATE_96:
			maud_val = AUD_SAMPLE_RATE_96_DP_1_62_MAUD_VAL;
			break;

		case AUD_SAMPLE_RATE_176_4:
			maud_val = AUD_SAMPLE_RATE_176_4_DP_1_62_MAUD_VAL;
			break;

		case HAD_MAX_RATE:
			maud_val = HAD_MAX_RATE_DP_1_62_MAUD_VAL;
			break;

		default:
			maud_val = -EINVAL;
			break;
		}
	} else
		maud_val = -EINVAL;

	return maud_val;
}

804 805
/*
 * snd_intelhad_prog_cts - Program HDMI audio CTS value
806 807 808 809 810 811 812 813
 *
 * @aud_samp_freq: sampling frequency of audio data
 * @tmds: sampling frequency of the display data
 * @n_param: N value, depends on aud_samp_freq
 * @intelhaddata:substream private data
 *
 * Program CTS register based on the audio and display sampling frequency
 */
814 815 816
static void snd_intelhad_prog_cts(u32 aud_samp_freq, u32 tmds,
				  u32 link_rate, u32 n_param,
				  struct snd_intelhad *intelhaddata)
817 818 819 820
{
	u32 cts_val;
	u64 dividend, divisor;

821 822 823 824 825 826 827 828 829
	if (intelhaddata->dp_output) {
		/* Substitute cts_val with Maud according to DP 1.2 spec*/
		cts_val = had_calculate_maud_value(aud_samp_freq, link_rate);
	} else {
		/* Calculate CTS according to HDMI 1.3a spec*/
		dividend = (u64)tmds * n_param*1000;
		divisor = 128 * aud_samp_freq;
		cts_val = div64_u64(dividend, divisor);
	}
830
	dev_dbg(intelhaddata->dev, "TMDS value=%d, N value=%d, CTS Value=%d\n",
831
		 tmds, n_param, cts_val);
832
	had_write_register(intelhaddata, AUD_HDMI_CTS, (BIT(24) | cts_val));
833 834 835 836
}

static int had_calculate_n_value(u32 aud_samp_freq)
{
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837
	int n_val;
838 839 840 841 842

	/* Select N according to HDMI 1.3a spec*/
	switch (aud_samp_freq) {
	case AUD_SAMPLE_RATE_32:
		n_val = 4096;
T
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843
		break;
844 845 846

	case AUD_SAMPLE_RATE_44_1:
		n_val = 6272;
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847
		break;
848 849 850

	case AUD_SAMPLE_RATE_48:
		n_val = 6144;
T
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851
		break;
852 853 854

	case AUD_SAMPLE_RATE_88_2:
		n_val = 12544;
T
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855
		break;
856 857 858

	case AUD_SAMPLE_RATE_96:
		n_val = 12288;
T
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859
		break;
860 861 862

	case AUD_SAMPLE_RATE_176_4:
		n_val = 25088;
T
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863
		break;
864 865 866

	case HAD_MAX_RATE:
		n_val = 24576;
T
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867
		break;
868 869 870

	default:
		n_val = -EINVAL;
T
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871
		break;
872 873 874 875
	}
	return n_val;
}

876 877
/*
 * snd_intelhad_prog_n - Program HDMI audio N value
878 879 880 881 882 883 884 885
 *
 * @aud_samp_freq: sampling frequency of audio data
 * @n_param: N value, depends on aud_samp_freq
 * @intelhaddata:substream private data
 *
 * This function is called in the prepare callback.
 * It programs based on the audio and display sampling frequency
 */
886 887
static int snd_intelhad_prog_n(u32 aud_samp_freq, u32 *n_param,
			       struct snd_intelhad *intelhaddata)
888
{
T
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889
	int n_val;
890

891 892 893 894 895 896 897 898 899 900 901 902
	if (intelhaddata->dp_output) {
		/*
		 * According to DP specs, Maud and Naud values hold
		 * a relationship, which is stated as:
		 * Maud/Naud = 512 * fs / f_LS_Clk
		 * where, fs is the sampling frequency of the audio stream
		 * and Naud is 32768 for Async clock.
		 */

		n_val = DP_NAUD_VAL;
	} else
		n_val =	had_calculate_n_value(aud_samp_freq);
903 904 905 906

	if (n_val < 0)
		return n_val;

907
	had_write_register(intelhaddata, AUD_N_ENABLE, (BIT(24) | n_val));
908 909 910 911
	*n_param = n_val;
	return 0;
}

912
static void snd_intelhad_handle_underrun(struct snd_intelhad *intelhaddata)
913
{
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914
	u32 hdmi_status = 0, i = 0;
915 916

	/* Handle Underrun interrupt within Audio Unit */
917
	had_write_register(intelhaddata, AUD_CONFIG, 0);
918
	/* Reset buffer pointers */
919 920
	had_write_register(intelhaddata, AUD_HDMI_STATUS_v2, 1);
	had_write_register(intelhaddata, AUD_HDMI_STATUS_v2, 0);
T
Takashi Iwai 已提交
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	/*
922 923 924 925
	 * The interrupt status 'sticky' bits might not be cleared by
	 * setting '1' to that bit once...
	 */
	do { /* clear bit30, 31 AUD_HDMI_STATUS */
926 927
		had_read_register(intelhaddata, AUD_HDMI_STATUS_v2,
				  &hdmi_status);
928
		dev_dbg(intelhaddata->dev, "HDMI status =0x%x\n", hdmi_status);
929 930
		if (hdmi_status & AUD_CONFIG_MASK_UNDERRUN) {
			i++;
931 932
			had_write_register(intelhaddata,
					   AUD_HDMI_STATUS_v2, hdmi_status);
933 934 935 936
		} else
			break;
	} while (i < MAX_CNT);
	if (i >= MAX_CNT)
937
		dev_err(intelhaddata->dev, "Unable to clear UNDERRUN bits\n");
938 939
}

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Takashi Iwai 已提交
940
/*
941 942 943 944 945 946 947 948 949 950
 * snd_intelhad_open - stream initializations are done here
 * @substream:substream for which the stream function is called
 *
 * This function is called whenever a PCM stream is opened
 */
static int snd_intelhad_open(struct snd_pcm_substream *substream)
{
	struct snd_intelhad *intelhaddata;
	struct snd_pcm_runtime *runtime;
	struct had_stream_pvt *stream;
951
	struct had_stream_data *had_stream;
952 953 954
	int retval;

	intelhaddata = snd_pcm_substream_chip(substream);
955
	had_stream = &intelhaddata->stream_data;
956
	runtime = substream->runtime;
957
	intelhaddata->underrun_count = 0;
958 959 960

	pm_runtime_get(intelhaddata->dev);

T
Takashi Iwai 已提交
961
	if (intelhaddata->drv_status == HAD_DRV_DISCONNECTED) {
962 963
		dev_dbg(intelhaddata->dev, "%s: HDMI cable plugged-out\n",
			__func__);
964 965 966 967 968 969
		retval = -ENODEV;
		goto exit_put_handle;
	}

	/* Check, if device already in use */
	if (runtime->private_data) {
970
		dev_dbg(intelhaddata->dev, "Device already in use\n");
971 972 973 974 975 976 977 978 979 980 981 982 983 984 985 986 987 988 989 990 991 992 993 994 995 996
		retval = -EBUSY;
		goto exit_put_handle;
	}

	/* set the runtime hw parameter with local snd_pcm_hardware struct */
	runtime->hw = snd_intel_hadstream;

	stream = kzalloc(sizeof(*stream), GFP_KERNEL);
	if (!stream) {
		retval = -ENOMEM;
		goto exit_put_handle;
	}
	stream->stream_status = STREAM_INIT;
	runtime->private_data = stream;

	retval = snd_pcm_hw_constraint_integer(runtime,
			 SNDRV_PCM_HW_PARAM_PERIODS);
	if (retval < 0)
		goto exit_err;

	/* Make sure, that the period size is always aligned
	 * 64byte boundary
	 */
	retval = snd_pcm_hw_constraint_step(substream->runtime, 0,
			SNDRV_PCM_HW_PARAM_PERIOD_BYTES, 64);
	if (retval < 0) {
997 998
		dev_dbg(intelhaddata->dev, "%s:step_size=64 failed,err=%d\n",
			__func__, retval);
999 1000 1001 1002 1003 1004 1005 1006 1007 1008 1009 1010
		goto exit_err;
	}

	return retval;
exit_err:
	kfree(stream);
exit_put_handle:
	pm_runtime_put(intelhaddata->dev);
	runtime->private_data = NULL;
	return retval;
}

1011
/*
1012
 * had_period_elapsed - updates the hardware pointer status
1013
 * @had_substream: substream for which the stream function is called
1014
 */
1015
static void had_period_elapsed(struct snd_pcm_substream *substream)
1016 1017 1018 1019 1020 1021 1022 1023 1024 1025 1026 1027 1028 1029
{
	struct had_stream_pvt *stream;

	if (!substream || !substream->runtime)
		return;
	stream = substream->runtime->private_data;
	if (!stream)
		return;

	if (stream->stream_status != STREAM_RUNNING)
		return;
	snd_pcm_period_elapsed(substream);
}

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Takashi Iwai 已提交
1030 1031
/*
 * snd_intelhad_close - to free parameteres when stream is stopped
1032 1033 1034 1035 1036 1037 1038 1039 1040 1041 1042 1043
 * @substream:  substream for which the function is called
 *
 * This function is called by ALSA framework when stream is stopped
 */
static int snd_intelhad_close(struct snd_pcm_substream *substream)
{
	struct snd_intelhad *intelhaddata;
	struct snd_pcm_runtime *runtime;

	intelhaddata = snd_pcm_substream_chip(substream);
	runtime = substream->runtime;

1044
	if (WARN_ON(!runtime->private_data))
1045 1046 1047 1048 1049 1050 1051 1052 1053 1054
		return 0;

	intelhaddata->stream_info.buffer_rendered = 0;
	intelhaddata->stream_info.buffer_ptr = 0;
	intelhaddata->stream_info.str_id = 0;
	intelhaddata->stream_info.had_substream = NULL;

	/* Check if following drv_status modification is required - VA */
	if (intelhaddata->drv_status != HAD_DRV_DISCONNECTED) {
		intelhaddata->drv_status = HAD_DRV_CONNECTED;
1055 1056
		dev_dbg(intelhaddata->dev,
			"%s @ %d:DEBUG PLUG/UNPLUG : HAD_DRV_CONNECTED\n",
1057 1058 1059 1060 1061 1062 1063 1064
			__func__, __LINE__);
	}
	kfree(runtime->private_data);
	runtime->private_data = NULL;
	pm_runtime_put(intelhaddata->dev);
	return 0;
}

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Takashi Iwai 已提交
1065 1066 1067 1068
/*
 * snd_intelhad_hw_params - to setup the hardware parameters
 *   like allocating the buffers
 * @substream: substream for which the function is called
1069 1070 1071 1072 1073 1074 1075
 * @hw_params: hardware parameters
 *
 * This function is called by ALSA framework when hardware params are set
 */
static int snd_intelhad_hw_params(struct snd_pcm_substream *substream,
				    struct snd_pcm_hw_params *hw_params)
{
1076
	struct snd_intelhad *intelhaddata;
1077 1078 1079 1080 1081 1082
	unsigned long addr;
	int pages, buf_size, retval;

	if (!hw_params)
		return -EINVAL;

1083
	intelhaddata = snd_pcm_substream_chip(substream);
1084 1085 1086 1087
	buf_size = params_buffer_bytes(hw_params);
	retval = snd_pcm_lib_malloc_pages(substream, buf_size);
	if (retval < 0)
		return retval;
1088 1089
	dev_dbg(intelhaddata->dev, "%s:allocated memory = %d\n",
		__func__, buf_size);
1090 1091 1092 1093 1094
	/* mark the pages as uncached region */
	addr = (unsigned long) substream->runtime->dma_area;
	pages = (substream->runtime->dma_bytes + PAGE_SIZE - 1) / PAGE_SIZE;
	retval = set_memory_uc(addr, pages);
	if (retval) {
1095 1096
		dev_err(intelhaddata->dev, "set_memory_uc failed.Error:%d\n",
			retval);
1097 1098 1099 1100 1101 1102 1103
		return retval;
	}
	memset(substream->runtime->dma_area, 0, buf_size);

	return retval;
}

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1104 1105 1106
/*
 * snd_intelhad_hw_free - to release the resources allocated during
 *   hardware params setup
1107 1108 1109 1110 1111 1112 1113 1114 1115 1116 1117 1118 1119 1120 1121 1122 1123 1124 1125 1126
 * @substream:  substream for which the function is called
 *
 * This function is called by ALSA framework before close callback.
 */
static int snd_intelhad_hw_free(struct snd_pcm_substream *substream)
{
	unsigned long addr;
	u32 pages;

	/* mark back the pages as cached/writeback region before the free */
	if (substream->runtime->dma_area != NULL) {
		addr = (unsigned long) substream->runtime->dma_area;
		pages = (substream->runtime->dma_bytes + PAGE_SIZE - 1) /
								PAGE_SIZE;
		set_memory_wb(addr, pages);
		return snd_pcm_lib_free_pages(substream);
	}
	return 0;
}

T
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1127
/*
1128
 * snd_intelhad_pcm_trigger - stream activities are handled here
T
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1129 1130 1131
 * @substream: substream for which the stream function is called
 * @cmd: the stream commamd thats requested from upper layer
 *
1132 1133 1134 1135 1136
 * This function is called whenever an a stream activity is invoked
 */
static int snd_intelhad_pcm_trigger(struct snd_pcm_substream *substream,
					int cmd)
{
1137
	int retval = 0;
1138 1139 1140
	unsigned long flag_irq;
	struct snd_intelhad *intelhaddata;
	struct had_stream_pvt *stream;
1141
	struct had_stream_data *had_stream;
1142 1143 1144

	intelhaddata = snd_pcm_substream_chip(substream);
	stream = substream->runtime->private_data;
1145
	had_stream = &intelhaddata->stream_data;
1146 1147 1148 1149

	switch (cmd) {
	case SNDRV_PCM_TRIGGER_START:
		/* Disable local INTRs till register prgmng is done */
T
Takashi Iwai 已提交
1150
		if (intelhaddata->drv_status == HAD_DRV_DISCONNECTED) {
1151 1152
			dev_dbg(intelhaddata->dev,
				"_START: HDMI cable plugged-out\n");
1153 1154 1155 1156 1157 1158 1159 1160
			retval = -ENODEV;
			break;
		}
		stream->stream_status = STREAM_RUNNING;

		had_stream->stream_type = HAD_RUNNING_STREAM;

		/* Enable Audio */
1161 1162
		snd_intelhad_enable_audio_int(intelhaddata, true);
		snd_intelhad_enable_audio(intelhaddata, true);
1163 1164 1165 1166 1167 1168 1169
		break;

	case SNDRV_PCM_TRIGGER_STOP:
		spin_lock_irqsave(&intelhaddata->had_spinlock, flag_irq);
		intelhaddata->stream_info.str_id = 0;
		intelhaddata->curr_buf = 0;

1170
		/* Stop reporting BUFFER_DONE/UNDERRUN to above layers */
1171 1172 1173 1174

		had_stream->stream_type = HAD_INIT;
		spin_unlock_irqrestore(&intelhaddata->had_spinlock, flag_irq);
		/* Disable Audio */
1175 1176
		snd_intelhad_enable_audio_int(intelhaddata, false);
		snd_intelhad_enable_audio(intelhaddata, false);
1177
		/* Reset buffer pointers */
1178 1179
		snd_intelhad_reset_audio(intelhaddata, 1);
		snd_intelhad_reset_audio(intelhaddata, 0);
1180
		stream->stream_status = STREAM_DROPPED;
1181
		snd_intelhad_enable_audio_int(intelhaddata, false);
1182 1183 1184 1185 1186 1187 1188 1189
		break;

	default:
		retval = -EINVAL;
	}
	return retval;
}

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1190 1191 1192
/*
 * snd_intelhad_pcm_prepare - internal preparation before starting a stream
 * @substream: substream for which the function is called
1193 1194 1195 1196 1197 1198 1199
 *
 * This function is called when a stream is started for internal preparation.
 */
static int snd_intelhad_pcm_prepare(struct snd_pcm_substream *substream)
{
	int retval;
	u32 disp_samp_freq, n_param;
1200
	u32 link_rate = 0;
1201 1202
	struct snd_intelhad *intelhaddata;
	struct snd_pcm_runtime *runtime;
1203
	struct had_stream_data *had_stream;
1204 1205 1206

	intelhaddata = snd_pcm_substream_chip(substream);
	runtime = substream->runtime;
1207
	had_stream = &intelhaddata->stream_data;
1208

T
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	if (intelhaddata->drv_status == HAD_DRV_DISCONNECTED) {
1210 1211
		dev_dbg(intelhaddata->dev, "%s: HDMI cable plugged-out\n",
			__func__);
1212 1213 1214 1215
		retval = -ENODEV;
		goto prep_end;
	}

1216
	dev_dbg(intelhaddata->dev, "period_size=%d\n",
1217
		(int)frames_to_bytes(runtime, runtime->period_size));
1218 1219 1220 1221 1222
	dev_dbg(intelhaddata->dev, "periods=%d\n", runtime->periods);
	dev_dbg(intelhaddata->dev, "buffer_size=%d\n",
		(int)snd_pcm_lib_buffer_bytes(substream));
	dev_dbg(intelhaddata->dev, "rate=%d\n", runtime->rate);
	dev_dbg(intelhaddata->dev, "channels=%d\n", runtime->channels);
1223 1224

	if (intelhaddata->stream_info.str_id) {
1225 1226
		dev_dbg(intelhaddata->dev,
			"_prepare is called for existing str_id#%d\n",
1227 1228 1229 1230 1231 1232
					intelhaddata->stream_info.str_id);
		retval = snd_intelhad_pcm_trigger(substream,
						SNDRV_PCM_TRIGGER_STOP);
		return retval;
	}

T
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1233 1234 1235 1236
	intelhaddata->stream_info.had_substream = substream;
	intelhaddata->stream_info.buffer_ptr = 0;
	intelhaddata->stream_info.buffer_rendered = 0;
	intelhaddata->stream_info.sfreq = substream->runtime->rate;
1237 1238

	/* Get N value in KHz */
1239
	disp_samp_freq = intelhaddata->tmds_clock_speed;
1240

1241 1242
	retval = snd_intelhad_prog_n(substream->runtime->rate, &n_param,
				     intelhaddata);
1243
	if (retval) {
1244 1245
		dev_err(intelhaddata->dev,
			"programming N value failed %#x\n", retval);
1246 1247
		goto prep_end;
	}
1248 1249

	if (intelhaddata->dp_output)
1250
		link_rate = intelhaddata->link_rate;
1251

1252 1253 1254
	snd_intelhad_prog_cts(substream->runtime->rate,
			      disp_samp_freq, link_rate,
			      n_param, intelhaddata);
1255

1256
	snd_intelhad_prog_dip(substream, intelhaddata);
1257

1258
	retval = snd_intelhad_audio_ctrl(substream, intelhaddata);
1259 1260 1261 1262 1263 1264 1265 1266 1267 1268

	/* Prog buffer address */
	retval = snd_intelhad_prog_buffer(intelhaddata,
			HAD_BUF_TYPE_A, HAD_BUF_TYPE_D);

	/*
	 * Program channel mapping in following order:
	 * FL, FR, C, LFE, RL, RR
	 */

1269
	had_write_register(intelhaddata, AUD_BUF_CH_SWAP, SWAP_LFE_CENTER);
1270 1271 1272 1273 1274

prep_end:
	return retval;
}

T
Takashi Iwai 已提交
1275
/*
1276
 * snd_intelhad_pcm_pointer- to send the current buffer pointerprocessed by hw
T
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1277
 * @substream: substream for which the function is called
1278 1279 1280 1281 1282 1283 1284 1285 1286 1287 1288 1289 1290 1291
 *
 * This function is called by ALSA framework to get the current hw buffer ptr
 * when a period is elapsed
 */
static snd_pcm_uframes_t snd_intelhad_pcm_pointer(
					struct snd_pcm_substream *substream)
{
	struct snd_intelhad *intelhaddata;
	u32 bytes_rendered = 0;
	u32 t;
	int buf_id;

	intelhaddata = snd_pcm_substream_chip(substream);

T
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1292 1293 1294
	if (intelhaddata->drv_status == HAD_DRV_DISCONNECTED)
		return SNDRV_PCM_POS_XRUN;

1295
	if (intelhaddata->flag_underrun) {
1296
		intelhaddata->flag_underrun = false;
1297 1298 1299 1300 1301 1302 1303 1304
		return SNDRV_PCM_POS_XRUN;
	}

	/* Use a hw register to calculate sub-period position reports.
	 * This makes PulseAudio happier.
	 */

	buf_id = intelhaddata->curr_buf % 4;
1305 1306
	had_read_register(intelhaddata,
			  AUD_BUF_A_LENGTH + (buf_id * HAD_REG_WIDTH), &t);
1307 1308

	if ((t == 0) || (t == ((u32)-1L))) {
1309
		intelhaddata->underrun_count++;
1310 1311
		dev_dbg(intelhaddata->dev,
			"discovered buffer done for buf %d, count = %d\n",
1312
			 buf_id, intelhaddata->underrun_count);
1313

1314
		if (intelhaddata->underrun_count > (HAD_MIN_PERIODS/2)) {
1315 1316
			dev_dbg(intelhaddata->dev,
				"assume audio_codec_reset, underrun = %d - do xrun\n",
1317 1318
				 intelhaddata->underrun_count);
			intelhaddata->underrun_count = 0;
1319 1320 1321 1322
			return SNDRV_PCM_POS_XRUN;
		}
	} else {
		/* Reset Counter */
1323
		intelhaddata->underrun_count = 0;
1324
	}
1325

1326 1327 1328 1329 1330 1331 1332 1333 1334 1335 1336 1337 1338
	t = intelhaddata->buf_info[buf_id].buf_size - t;

	if (intelhaddata->stream_info.buffer_rendered)
		div_u64_rem(intelhaddata->stream_info.buffer_rendered,
			intelhaddata->stream_info.ring_buf_size,
			&(bytes_rendered));

	intelhaddata->stream_info.buffer_ptr = bytes_to_frames(
						substream->runtime,
						bytes_rendered + t);
	return intelhaddata->stream_info.buffer_ptr;
}

T
Takashi Iwai 已提交
1339
/*
1340
 * snd_intelhad_pcm_mmap- mmaps a kernel buffer to user space for copying data
T
Takashi Iwai 已提交
1341 1342
 * @substream: substream for which the function is called
 * @vma: struct instance of memory VMM memory area
1343 1344 1345 1346 1347 1348 1349 1350 1351 1352 1353 1354 1355
 *
 * This function is called by OS when a user space component
 * tries to get mmap memory from driver
 */
static int snd_intelhad_pcm_mmap(struct snd_pcm_substream *substream,
	struct vm_area_struct *vma)
{
	vma->vm_page_prot = pgprot_noncached(vma->vm_page_prot);
	return remap_pfn_range(vma, vma->vm_start,
			substream->dma_buffer.addr >> PAGE_SHIFT,
			vma->vm_end - vma->vm_start, vma->vm_page_prot);
}

1356
static int hdmi_audio_mode_change(struct snd_intelhad *intelhaddata)
1357
{
1358
	struct snd_pcm_substream *substream;
1359 1360
	int retval = 0;
	u32 disp_samp_freq, n_param;
1361
	u32 link_rate = 0;
1362

1363 1364 1365
	substream = intelhaddata->stream_info.had_substream;
	if (!substream || !substream->runtime)
		return 0;
1366 1367

	/* Disable Audio */
1368
	snd_intelhad_enable_audio(intelhaddata, false);
1369 1370

	/* Update CTS value */
1371
	disp_samp_freq = intelhaddata->tmds_clock_speed;
1372

1373 1374
	retval = snd_intelhad_prog_n(substream->runtime->rate, &n_param,
				     intelhaddata);
1375
	if (retval) {
1376 1377
		dev_err(intelhaddata->dev,
			"programming N value failed %#x\n", retval);
1378 1379
		goto out;
	}
1380 1381

	if (intelhaddata->dp_output)
1382
		link_rate = intelhaddata->link_rate;
1383

1384 1385 1386
	snd_intelhad_prog_cts(substream->runtime->rate,
			      disp_samp_freq, link_rate,
			      n_param, intelhaddata);
1387 1388

	/* Enable Audio */
1389
	snd_intelhad_enable_audio(intelhaddata, true);
1390 1391 1392 1393 1394

out:
	return retval;
}

1395 1396 1397 1398
/*
 * hdmi_lpe_audio_suspend - power management suspend function
 * @pdev: platform device
 *
T
Takashi Iwai 已提交
1399
 * This function is called to suspend the hdmi audio.
1400 1401 1402 1403 1404 1405 1406 1407 1408 1409 1410 1411
 */
static int hdmi_lpe_audio_suspend(struct platform_device *pdev,
				  pm_message_t state)
{
	struct had_stream_data *had_stream;
	unsigned long flag_irqs;
	struct snd_pcm_substream *substream;
	struct snd_intelhad *intelhaddata = platform_get_drvdata(pdev);

	had_stream = &intelhaddata->stream_data;
	substream = intelhaddata->stream_info.had_substream;

T
Takashi Iwai 已提交
1412
	if (!pm_runtime_status_suspended(intelhaddata->dev)) {
1413
		dev_err(intelhaddata->dev, "audio stream is active\n");
1414 1415 1416 1417 1418 1419
		return -EAGAIN;
	}

	spin_lock_irqsave(&intelhaddata->had_spinlock, flag_irqs);
	if (intelhaddata->drv_status == HAD_DRV_DISCONNECTED) {
		spin_unlock_irqrestore(&intelhaddata->had_spinlock, flag_irqs);
1420
		dev_dbg(intelhaddata->dev, "had not connected\n");
1421 1422 1423 1424 1425
		return 0;
	}

	if (intelhaddata->drv_status == HAD_DRV_SUSPENDED) {
		spin_unlock_irqrestore(&intelhaddata->had_spinlock, flag_irqs);
1426
		dev_dbg(intelhaddata->dev, "had already suspended\n");
1427 1428 1429 1430
		return 0;
	}

	intelhaddata->drv_status = HAD_DRV_SUSPENDED;
1431 1432
	dev_dbg(intelhaddata->dev,
		"%s @ %d:DEBUG PLUG/UNPLUG : HAD_DRV_SUSPENDED\n",
1433 1434 1435 1436 1437 1438 1439 1440 1441
			__func__, __LINE__);

	spin_unlock_irqrestore(&intelhaddata->had_spinlock, flag_irqs);
	snd_intelhad_enable_audio_int(intelhaddata, false);
	return 0;
}

/*
 * hdmi_lpe_audio_resume - power management resume function
T
Takashi Iwai 已提交
1442
 * @pdev: platform device
1443
 *
T
Takashi Iwai 已提交
1444
 * This function is called to resume the hdmi audio.
1445 1446 1447 1448 1449 1450 1451 1452 1453
 */
static int hdmi_lpe_audio_resume(struct platform_device *pdev)
{
	struct snd_intelhad *intelhaddata = platform_get_drvdata(pdev);
	unsigned long flag_irqs;

	spin_lock_irqsave(&intelhaddata->had_spinlock, flag_irqs);
	if (intelhaddata->drv_status == HAD_DRV_DISCONNECTED) {
		spin_unlock_irqrestore(&intelhaddata->had_spinlock, flag_irqs);
1454
		dev_dbg(intelhaddata->dev, "had not connected\n");
1455 1456 1457 1458 1459
		return 0;
	}

	if (intelhaddata->drv_status != HAD_DRV_SUSPENDED) {
		spin_unlock_irqrestore(&intelhaddata->had_spinlock, flag_irqs);
1460
		dev_dbg(intelhaddata->dev, "had is not in suspended state\n");
1461 1462 1463 1464
		return 0;
	}

	intelhaddata->drv_status = HAD_DRV_CONNECTED;
1465 1466
	dev_dbg(intelhaddata->dev,
		"%s @ %d:DEBUG PLUG/UNPLUG : HAD_DRV_DISCONNECTED\n",
1467 1468 1469 1470 1471 1472 1473 1474 1475 1476 1477 1478 1479 1480 1481 1482 1483 1484 1485 1486 1487 1488
			__func__, __LINE__);
	spin_unlock_irqrestore(&intelhaddata->had_spinlock, flag_irqs);
	snd_intelhad_enable_audio_int(intelhaddata, true);
	return 0;
}

static inline int had_chk_intrmiss(struct snd_intelhad *intelhaddata,
		enum intel_had_aud_buf_type buf_id)
{
	int i, intr_count = 0;
	enum intel_had_aud_buf_type buff_done;
	u32 buf_size, buf_addr;
	struct had_stream_data *had_stream;
	unsigned long flag_irqs;

	had_stream = &intelhaddata->stream_data;

	buff_done = buf_id;

	intr_count = snd_intelhad_read_len(intelhaddata);
	if (intr_count > 1) {
		/* In case of active playback */
1489 1490 1491
		dev_err(intelhaddata->dev,
			"Driver detected %d missed buffer done interrupt(s)\n",
			(intr_count - 1));
1492 1493 1494 1495 1496 1497 1498 1499 1500 1501 1502 1503 1504 1505 1506 1507 1508 1509 1510 1511 1512 1513 1514 1515 1516 1517 1518 1519 1520 1521 1522 1523 1524 1525 1526 1527 1528 1529 1530 1531 1532 1533 1534 1535 1536
		if (intr_count > 3)
			return intr_count;

		buf_id += (intr_count - 1);
		/* Reprogram registers*/
		for (i = buff_done; i < buf_id; i++) {
			int j = i % 4;

			buf_size = intelhaddata->buf_info[j].buf_size;
			buf_addr = intelhaddata->buf_info[j].buf_addr;
			had_write_register(intelhaddata,
					   AUD_BUF_A_LENGTH +
					   (j * HAD_REG_WIDTH), buf_size);
			had_write_register(intelhaddata,
					   AUD_BUF_A_ADDR+(j * HAD_REG_WIDTH),
					   (buf_addr | BIT(0) | BIT(1)));
		}
		buf_id = buf_id % 4;
		spin_lock_irqsave(&intelhaddata->had_spinlock, flag_irqs);
		intelhaddata->buff_done = buf_id;
		spin_unlock_irqrestore(&intelhaddata->had_spinlock, flag_irqs);
	}

	return intr_count;
}

static int had_process_buffer_done(struct snd_intelhad *intelhaddata)
{
	u32 len = 1;
	enum intel_had_aud_buf_type buf_id;
	enum intel_had_aud_buf_type buff_done;
	struct pcm_stream_info *stream;
	u32 buf_size;
	struct had_stream_data *had_stream;
	int intr_count;
	enum had_status_stream		stream_type;
	unsigned long flag_irqs;

	had_stream = &intelhaddata->stream_data;
	stream = &intelhaddata->stream_info;
	intr_count = 1;

	spin_lock_irqsave(&intelhaddata->had_spinlock, flag_irqs);
	if (intelhaddata->drv_status == HAD_DRV_DISCONNECTED) {
		spin_unlock_irqrestore(&intelhaddata->had_spinlock, flag_irqs);
1537 1538
		dev_dbg(intelhaddata->dev,
			"%s:Device already disconnected\n", __func__);
1539 1540 1541 1542 1543 1544 1545 1546 1547 1548 1549 1550 1551 1552 1553 1554 1555 1556
		return 0;
	}
	buf_id = intelhaddata->curr_buf;
	intelhaddata->buff_done = buf_id;
	buff_done = intelhaddata->buff_done;
	buf_size = intelhaddata->buf_info[buf_id].buf_size;
	stream_type = had_stream->stream_type;

	/* Every debug statement has an implication
	 * of ~5msec. Thus, avoid having >3 debug statements
	 * for each buffer_done handling.
	 */

	/* Check for any intr_miss in case of active playback */
	if (had_stream->stream_type == HAD_RUNNING_STREAM) {
		spin_unlock_irqrestore(&intelhaddata->had_spinlock, flag_irqs);
		intr_count = had_chk_intrmiss(intelhaddata, buf_id);
		if (!intr_count || (intr_count > 3)) {
1557 1558
			dev_err(intelhaddata->dev,
				"HAD SW state in non-recoverable mode\n");
1559 1560 1561 1562 1563 1564 1565 1566 1567 1568 1569 1570 1571 1572 1573 1574
			return 0;
		}
		buf_id += (intr_count - 1);
		buf_id = buf_id % 4;
		spin_lock_irqsave(&intelhaddata->had_spinlock, flag_irqs);
	}

	intelhaddata->buf_info[buf_id].is_valid = true;
	if (intelhaddata->valid_buf_cnt-1 == buf_id) {
		if (had_stream->stream_type >= HAD_RUNNING_STREAM)
			intelhaddata->curr_buf = HAD_BUF_TYPE_A;
	} else
		intelhaddata->curr_buf = buf_id + 1;

	spin_unlock_irqrestore(&intelhaddata->had_spinlock, flag_irqs);

T
Takashi Iwai 已提交
1575
	if (intelhaddata->drv_status == HAD_DRV_DISCONNECTED) {
1576
		dev_dbg(intelhaddata->dev, "HDMI cable plugged-out\n");
1577 1578 1579
		return 0;
	}

T
Takashi Iwai 已提交
1580
	/* Reprogram the registers with addr and length */
1581 1582 1583 1584 1585 1586 1587 1588 1589 1590 1591
	had_write_register(intelhaddata,
			   AUD_BUF_A_LENGTH + (buf_id * HAD_REG_WIDTH),
			   buf_size);
	had_write_register(intelhaddata,
			   AUD_BUF_A_ADDR + (buf_id * HAD_REG_WIDTH),
			   intelhaddata->buf_info[buf_id].buf_addr |
			   BIT(0) | BIT(1));

	had_read_register(intelhaddata,
			  AUD_BUF_A_LENGTH + (buf_id * HAD_REG_WIDTH),
			  &len);
1592
	dev_dbg(intelhaddata->dev, "%s:Enabled buf[%d]\n", __func__, buf_id);
1593 1594 1595 1596

	/* In case of actual data,
	 * report buffer_done to above ALSA layer
	 */
1597
	buf_size = intelhaddata->buf_info[buf_id].buf_size;
1598 1599 1600
	if (stream_type >= HAD_RUNNING_STREAM) {
		intelhaddata->stream_info.buffer_rendered +=
			(intr_count * buf_size);
1601
		had_period_elapsed(stream->had_substream);
1602 1603 1604 1605 1606 1607 1608 1609 1610 1611 1612 1613 1614 1615 1616 1617 1618 1619 1620 1621 1622 1623 1624 1625 1626 1627 1628
	}

	return 0;
}

static int had_process_buffer_underrun(struct snd_intelhad *intelhaddata)
{
	enum intel_had_aud_buf_type buf_id;
	struct pcm_stream_info *stream;
	struct had_stream_data *had_stream;
	enum had_status_stream stream_type;
	unsigned long flag_irqs;
	int drv_status;

	had_stream = &intelhaddata->stream_data;
	stream = &intelhaddata->stream_info;

	spin_lock_irqsave(&intelhaddata->had_spinlock, flag_irqs);
	buf_id = intelhaddata->curr_buf;
	stream_type = had_stream->stream_type;
	intelhaddata->buff_done = buf_id;
	drv_status = intelhaddata->drv_status;
	if (stream_type == HAD_RUNNING_STREAM)
		intelhaddata->curr_buf = HAD_BUF_TYPE_A;

	spin_unlock_irqrestore(&intelhaddata->had_spinlock, flag_irqs);

1629
	dev_dbg(intelhaddata->dev, "Enter:%s buf_id=%d, stream_type=%d\n",
1630 1631 1632 1633 1634
			__func__, buf_id, stream_type);

	snd_intelhad_handle_underrun(intelhaddata);

	if (drv_status == HAD_DRV_DISCONNECTED) {
1635 1636
		dev_dbg(intelhaddata->dev,
			"%s:Device already disconnected\n", __func__);
1637 1638 1639 1640 1641
		return 0;
	}

	if (stream_type == HAD_RUNNING_STREAM) {
		/* Report UNDERRUN error to above layers */
1642
		intelhaddata->flag_underrun = true;
1643
		had_period_elapsed(stream->had_substream);
1644 1645 1646 1647 1648 1649 1650 1651 1652 1653 1654 1655 1656 1657 1658 1659 1660
	}

	return 0;
}

static int had_process_hot_plug(struct snd_intelhad *intelhaddata)
{
	enum intel_had_aud_buf_type buf_id;
	struct snd_pcm_substream *substream;
	struct had_stream_data *had_stream;
	unsigned long flag_irqs;

	substream = intelhaddata->stream_info.had_substream;
	had_stream = &intelhaddata->stream_data;

	spin_lock_irqsave(&intelhaddata->had_spinlock, flag_irqs);
	if (intelhaddata->drv_status == HAD_DRV_CONNECTED) {
1661
		dev_dbg(intelhaddata->dev, "Device already connected\n");
1662 1663 1664 1665 1666 1667
		spin_unlock_irqrestore(&intelhaddata->had_spinlock, flag_irqs);
		return 0;
	}
	buf_id = intelhaddata->curr_buf;
	intelhaddata->buff_done = buf_id;
	intelhaddata->drv_status = HAD_DRV_CONNECTED;
1668 1669
	dev_dbg(intelhaddata->dev,
		"%s @ %d:DEBUG PLUG/UNPLUG : HAD_DRV_CONNECTED\n",
1670 1671 1672
			__func__, __LINE__);
	spin_unlock_irqrestore(&intelhaddata->had_spinlock, flag_irqs);

1673 1674
	dev_dbg(intelhaddata->dev, "Processing HOT_PLUG, buf_id = %d\n",
		buf_id);
1675 1676 1677

	/* Safety check */
	if (substream) {
1678 1679
		dev_dbg(intelhaddata->dev,
			"Force to stop the active stream by disconnection\n");
1680 1681 1682 1683 1684 1685 1686 1687 1688 1689 1690 1691 1692 1693 1694 1695 1696 1697 1698 1699 1700
		/* Set runtime->state to hw_params done */
		snd_pcm_stop(substream, SNDRV_PCM_STATE_SETUP);
	}

	had_build_channel_allocation_map(intelhaddata);

	return 0;
}

static int had_process_hot_unplug(struct snd_intelhad *intelhaddata)
{
	enum intel_had_aud_buf_type buf_id;
	struct had_stream_data *had_stream;
	unsigned long flag_irqs;

	had_stream = &intelhaddata->stream_data;
	buf_id = intelhaddata->curr_buf;

	spin_lock_irqsave(&intelhaddata->had_spinlock, flag_irqs);

	if (intelhaddata->drv_status == HAD_DRV_DISCONNECTED) {
1701
		dev_dbg(intelhaddata->dev, "Device already disconnected\n");
1702 1703 1704 1705 1706 1707 1708 1709 1710 1711
		spin_unlock_irqrestore(&intelhaddata->had_spinlock, flag_irqs);
		return 0;

	} else {
		/* Disable Audio */
		snd_intelhad_enable_audio_int(intelhaddata, false);
		snd_intelhad_enable_audio(intelhaddata, false);
	}

	intelhaddata->drv_status = HAD_DRV_DISCONNECTED;
1712 1713
	dev_dbg(intelhaddata->dev,
		"%s @ %d:DEBUG PLUG/UNPLUG : HAD_DRV_DISCONNECTED\n",
1714 1715 1716 1717 1718 1719 1720 1721 1722 1723 1724 1725 1726 1727 1728 1729 1730 1731 1732 1733
			__func__, __LINE__);

	/* Report to above ALSA layer */
	if (intelhaddata->stream_info.had_substream != NULL) {
		spin_unlock_irqrestore(&intelhaddata->had_spinlock, flag_irqs);
		snd_pcm_stop(intelhaddata->stream_info.had_substream,
				SNDRV_PCM_STATE_SETUP);
		spin_lock_irqsave(&intelhaddata->had_spinlock, flag_irqs);
	}

	had_stream->stream_type = HAD_INIT;
	spin_unlock_irqrestore(&intelhaddata->had_spinlock, flag_irqs);
	kfree(intelhaddata->chmap->chmap);
	intelhaddata->chmap->chmap = NULL;

	return 0;
}

/* PCM operations structure and the calls back for the same */
static struct snd_pcm_ops snd_intelhad_playback_ops = {
1734 1735 1736 1737 1738 1739 1740 1741 1742 1743 1744 1745 1746 1747 1748 1749 1750 1751 1752 1753 1754 1755 1756 1757 1758 1759 1760 1761 1762 1763 1764 1765
	.open =		snd_intelhad_open,
	.close =	snd_intelhad_close,
	.ioctl =	snd_pcm_lib_ioctl,
	.hw_params =	snd_intelhad_hw_params,
	.hw_free =	snd_intelhad_hw_free,
	.prepare =	snd_intelhad_pcm_prepare,
	.trigger =	snd_intelhad_pcm_trigger,
	.pointer =	snd_intelhad_pcm_pointer,
	.mmap =	snd_intelhad_pcm_mmap,
};

static int had_iec958_info(struct snd_kcontrol *kcontrol,
				struct snd_ctl_elem_info *uinfo)
{
	uinfo->type = SNDRV_CTL_ELEM_TYPE_IEC958;
	uinfo->count = 1;
	return 0;
}

static int had_iec958_get(struct snd_kcontrol *kcontrol,
				struct snd_ctl_elem_value *ucontrol)
{
	struct snd_intelhad *intelhaddata = snd_kcontrol_chip(kcontrol);

	ucontrol->value.iec958.status[0] = (intelhaddata->aes_bits >> 0) & 0xff;
	ucontrol->value.iec958.status[1] = (intelhaddata->aes_bits >> 8) & 0xff;
	ucontrol->value.iec958.status[2] =
					(intelhaddata->aes_bits >> 16) & 0xff;
	ucontrol->value.iec958.status[3] =
					(intelhaddata->aes_bits >> 24) & 0xff;
	return 0;
}
1766

1767 1768 1769 1770 1771 1772 1773 1774 1775
static int had_iec958_mask_get(struct snd_kcontrol *kcontrol,
				struct snd_ctl_elem_value *ucontrol)
{
	ucontrol->value.iec958.status[0] = 0xff;
	ucontrol->value.iec958.status[1] = 0xff;
	ucontrol->value.iec958.status[2] = 0xff;
	ucontrol->value.iec958.status[3] = 0xff;
	return 0;
}
1776

1777 1778 1779 1780 1781 1782 1783 1784 1785 1786 1787 1788 1789 1790 1791 1792 1793 1794 1795 1796 1797 1798 1799 1800 1801 1802 1803 1804 1805 1806 1807 1808 1809
static int had_iec958_put(struct snd_kcontrol *kcontrol,
				struct snd_ctl_elem_value *ucontrol)
{
	unsigned int val;
	struct snd_intelhad *intelhaddata = snd_kcontrol_chip(kcontrol);

	val = (ucontrol->value.iec958.status[0] << 0) |
		(ucontrol->value.iec958.status[1] << 8) |
		(ucontrol->value.iec958.status[2] << 16) |
		(ucontrol->value.iec958.status[3] << 24);
	if (intelhaddata->aes_bits != val) {
		intelhaddata->aes_bits = val;
		return 1;
	}
	return 1;
}

static struct snd_kcontrol_new had_control_iec958_mask = {
	.access =   SNDRV_CTL_ELEM_ACCESS_READ,
	.iface =    SNDRV_CTL_ELEM_IFACE_PCM,
	.name =     SNDRV_CTL_NAME_IEC958("", PLAYBACK, MASK),
	.info =     had_iec958_info, /* shared */
	.get =      had_iec958_mask_get,
};

static struct snd_kcontrol_new had_control_iec958 = {
	.iface =    SNDRV_CTL_ELEM_IFACE_PCM,
	.name =         SNDRV_CTL_NAME_IEC958("", PLAYBACK, DEFAULT),
	.info =         had_iec958_info,
	.get =          had_iec958_get,
	.put =          had_iec958_put
};

1810 1811 1812 1813 1814 1815 1816 1817 1818 1819 1820 1821 1822 1823 1824 1825 1826 1827 1828 1829 1830 1831 1832 1833 1834
static irqreturn_t display_pipe_interrupt_handler(int irq, void *dev_id)
{
	struct snd_intelhad *ctx = dev_id;
	u32 audio_stat, audio_reg;

	audio_reg = AUD_HDMI_STATUS_v2;
	mid_hdmi_audio_read(ctx, audio_reg, &audio_stat);

	if (audio_stat & HDMI_AUDIO_UNDERRUN) {
		mid_hdmi_audio_write(ctx, audio_reg, HDMI_AUDIO_UNDERRUN);
		had_process_buffer_underrun(ctx);
	}

	if (audio_stat & HDMI_AUDIO_BUFFER_DONE) {
		mid_hdmi_audio_write(ctx, audio_reg, HDMI_AUDIO_BUFFER_DONE);
		had_process_buffer_done(ctx);
	}

	return IRQ_HANDLED;
}

static void notify_audio_lpe(struct platform_device *pdev)
{
	struct snd_intelhad *ctx = platform_get_drvdata(pdev);

1835 1836
	schedule_work(&ctx->hdmi_audio_wq);
}
1837

1838 1839 1840 1841 1842
static void had_audio_wq(struct work_struct *work)
{
	struct snd_intelhad *ctx =
		container_of(work, struct snd_intelhad, hdmi_audio_wq);
	struct intel_hdmi_lpe_audio_pdata *pdata = ctx->dev->platform_data;
1843

1844 1845 1846
	if (!pdata->hdmi_connected) {
		dev_dbg(ctx->dev, "%s: Event: HAD_NOTIFY_HOT_UNPLUG\n",
			__func__);
1847

1848 1849
		if (ctx->state != hdmi_connector_status_connected) {
			dev_dbg(ctx->dev, "%s: Already Unplugged!\n",
1850
				__func__);
1851 1852 1853 1854 1855
			return;
		}

		ctx->state = hdmi_connector_status_disconnected;
		had_process_hot_unplug(ctx);
1856 1857 1858 1859 1860 1861 1862 1863 1864 1865 1866 1867 1868 1869 1870

	} else {
		struct intel_hdmi_lpe_audio_eld *eld = &pdata->eld;

		switch (eld->pipe_id) {
		case 0:
			ctx->had_config_offset = AUDIO_HDMI_CONFIG_A;
			break;
		case 1:
			ctx->had_config_offset = AUDIO_HDMI_CONFIG_B;
			break;
		case 2:
			ctx->had_config_offset = AUDIO_HDMI_CONFIG_C;
			break;
		default:
1871
			dev_dbg(ctx->dev, "Invalid pipe %d\n",
1872 1873 1874 1875 1876 1877 1878 1879 1880 1881
				eld->pipe_id);
			break;
		}

		memcpy(&ctx->eld, eld->eld_data, sizeof(ctx->eld));

		had_process_hot_plug(ctx);

		ctx->state = hdmi_connector_status_connected;

1882
		dev_dbg(ctx->dev, "%s: HAD_NOTIFY_ELD : port = %d, tmds = %d\n",
1883 1884 1885 1886 1887 1888 1889 1890 1891 1892 1893 1894 1895 1896 1897 1898 1899 1900 1901
			__func__, eld->port_id,	pdata->tmds_clock_speed);

		if (pdata->tmds_clock_speed) {
			ctx->tmds_clock_speed = pdata->tmds_clock_speed;
			ctx->dp_output = pdata->dp_output;
			ctx->link_rate = pdata->link_rate;

			/* Process mode change if stream is active */
			if (ctx->stream_data.stream_type == HAD_RUNNING_STREAM)
				hdmi_audio_mode_change(ctx);
		}
	}
}

/* release resources */
static void hdmi_lpe_audio_free(struct snd_card *card)
{
	struct snd_intelhad *ctx = card->private_data;

1902 1903
	cancel_work_sync(&ctx->hdmi_audio_wq);

1904 1905 1906 1907 1908 1909
	if (ctx->mmio_start)
		iounmap(ctx->mmio_start);
	if (ctx->irq >= 0)
		free_irq(ctx->irq, ctx);
}

1910
/*
1911
 * hdmi_lpe_audio_probe - start bridge with i915
1912
 *
1913
 * This function is called when the i915 driver creates the
T
Takashi Iwai 已提交
1914
 * hdmi-lpe-audio platform device.
1915
 */
1916
static int hdmi_lpe_audio_probe(struct platform_device *pdev)
1917 1918
{
	struct snd_card *card;
1919 1920 1921 1922 1923 1924 1925 1926 1927 1928 1929 1930 1931 1932 1933
	struct snd_intelhad *ctx;
	struct snd_pcm *pcm;
	struct intel_hdmi_lpe_audio_pdata *pdata;
	int irq;
	struct resource *res_mmio;
	int ret;
	unsigned long flags;

	dev_dbg(&pdev->dev, "dma_mask: %p\n", pdev->dev.dma_mask);

	pdata = pdev->dev.platform_data;
	if (!pdata) {
		dev_err(&pdev->dev, "%s: quit: pdata not allocated by i915!!\n", __func__);
		return -EINVAL;
	}
1934

1935 1936 1937 1938 1939 1940 1941 1942 1943 1944 1945 1946
	/* get resources */
	irq = platform_get_irq(pdev, 0);
	if (irq < 0) {
		dev_err(&pdev->dev, "Could not get irq resource\n");
		return -ENODEV;
	}

	res_mmio = platform_get_resource(pdev, IORESOURCE_MEM, 0);
	if (!res_mmio) {
		dev_err(&pdev->dev, "Could not get IO_MEM resources\n");
		return -ENXIO;
	}
1947

1948
	/* create a card instance with ALSA framework */
1949 1950 1951 1952 1953 1954 1955 1956 1957 1958
	ret = snd_card_new(&pdev->dev, hdmi_card_index, hdmi_card_id,
			   THIS_MODULE, sizeof(*ctx), &card);
	if (ret)
		return ret;

	ctx = card->private_data;
	spin_lock_init(&ctx->had_spinlock);
	ctx->drv_status = HAD_DRV_DISCONNECTED;
	ctx->dev = &pdev->dev;
	ctx->card = card;
1959
	ctx->flag_underrun = false;
1960 1961 1962 1963 1964 1965
	ctx->aes_bits = SNDRV_PCM_DEFAULT_CON_SPDIF;
	strcpy(card->driver, INTEL_HAD);
	strcpy(card->shortname, INTEL_HAD);

	ctx->irq = -1;
	ctx->tmds_clock_speed = DIS_SAMPLE_RATE_148_5;
1966
	INIT_WORK(&ctx->hdmi_audio_wq, had_audio_wq);
1967 1968 1969 1970 1971 1972 1973 1974 1975 1976 1977 1978 1979 1980 1981 1982 1983 1984 1985 1986
	ctx->state = hdmi_connector_status_disconnected;

	card->private_free = hdmi_lpe_audio_free;

	/* assume pipe A as default */
	ctx->had_config_offset = AUDIO_HDMI_CONFIG_A;

	platform_set_drvdata(pdev, ctx);

	dev_dbg(&pdev->dev, "%s: mmio_start = 0x%x, mmio_end = 0x%x\n",
		__func__, (unsigned int)res_mmio->start,
		(unsigned int)res_mmio->end);

	ctx->mmio_start = ioremap_nocache(res_mmio->start,
					  (size_t)(resource_size(res_mmio)));
	if (!ctx->mmio_start) {
		dev_err(&pdev->dev, "Could not get ioremap\n");
		ret = -EACCES;
		goto err;
	}
1987

1988 1989 1990 1991 1992 1993 1994
	/* setup interrupt handler */
	ret = request_irq(irq, display_pipe_interrupt_handler, 0,
			  pdev->name, ctx);
	if (ret < 0) {
		dev_err(&pdev->dev, "request_irq failed\n");
		goto err;
	}
1995

1996 1997 1998 1999 2000
	ctx->irq = irq;

	ret = snd_pcm_new(card, INTEL_HAD, PCM_INDEX, MAX_PB_STREAMS,
			  MAX_CAP_STREAMS, &pcm);
	if (ret)
2001 2002 2003
		goto err;

	/* setup private data which can be retrieved when required */
2004
	pcm->private_data = ctx;
2005 2006
	pcm->info_flags = 0;
	strncpy(pcm->name, card->shortname, strlen(card->shortname));
2007
	/* setup the ops for playabck */
2008 2009 2010 2011 2012 2013
	snd_pcm_set_ops(pcm, SNDRV_PCM_STREAM_PLAYBACK,
			    &snd_intelhad_playback_ops);
	/* allocate dma pages for ALSA stream operations
	 * memory allocated is based on size, not max value
	 * thus using same argument for max & size
	 */
2014
	snd_pcm_lib_preallocate_pages_for_all(pcm,
2015 2016 2017 2018
			SNDRV_DMA_TYPE_DEV, NULL,
			HAD_MAX_BUFFER, HAD_MAX_BUFFER);

	/* IEC958 controls */
2019 2020
	ret = snd_ctl_add(card, snd_ctl_new1(&had_control_iec958_mask, ctx));
	if (ret < 0)
2021
		goto err;
2022 2023
	ret = snd_ctl_add(card, snd_ctl_new1(&had_control_iec958, ctx));
	if (ret < 0)
2024 2025 2026 2027 2028
		goto err;

	init_channel_allocations();

	/* Register channel map controls */
2029 2030
	ret = had_register_chmap_ctls(ctx, pcm);
	if (ret < 0)
2031 2032
		goto err;

2033 2034
	ret = snd_card_register(card);
	if (ret)
2035 2036
		goto err;

2037 2038
	spin_lock_irqsave(&pdata->lpe_audio_slock, flags);
	pdata->notify_audio_lpe = notify_audio_lpe;
2039
	pdata->notify_pending = false;
2040 2041 2042 2043 2044
	spin_unlock_irqrestore(&pdata->lpe_audio_slock, flags);

	pm_runtime_set_active(&pdev->dev);
	pm_runtime_enable(&pdev->dev);

2045
	dev_dbg(&pdev->dev, "%s: handle pending notification\n", __func__);
2046
	schedule_work(&ctx->hdmi_audio_wq);
2047

2048
	return 0;
2049

2050 2051
err:
	snd_card_free(card);
2052
	return ret;
2053 2054
}

2055
/*
2056
 * hdmi_lpe_audio_remove - stop bridge with i915
2057
 *
T
Takashi Iwai 已提交
2058
 * This function is called when the platform device is destroyed.
2059
 */
2060
static int hdmi_lpe_audio_remove(struct platform_device *pdev)
2061
{
2062
	struct snd_intelhad *ctx = platform_get_drvdata(pdev);
2063

2064 2065 2066
	if (ctx->drv_status != HAD_DRV_DISCONNECTED)
		snd_intelhad_enable_audio_int(ctx, false);
	snd_card_free(ctx->card);
2067 2068 2069
	return 0;
}

2070 2071 2072 2073 2074 2075 2076 2077 2078 2079 2080 2081 2082
static struct platform_driver hdmi_lpe_audio_driver = {
	.driver		= {
		.name  = "hdmi-lpe-audio",
	},
	.probe          = hdmi_lpe_audio_probe,
	.remove		= hdmi_lpe_audio_remove,
	.suspend	= hdmi_lpe_audio_suspend,
	.resume		= hdmi_lpe_audio_resume
};

module_platform_driver(hdmi_lpe_audio_driver);
MODULE_ALIAS("platform:hdmi_lpe_audio");

2083 2084 2085 2086 2087 2088 2089
MODULE_AUTHOR("Sailaja Bandarupalli <sailaja.bandarupalli@intel.com>");
MODULE_AUTHOR("Ramesh Babu K V <ramesh.babu@intel.com>");
MODULE_AUTHOR("Vaibhav Agarwal <vaibhav.agarwal@intel.com>");
MODULE_AUTHOR("Jerome Anand <jerome.anand@intel.com>");
MODULE_DESCRIPTION("Intel HDMI Audio driver");
MODULE_LICENSE("GPL v2");
MODULE_SUPPORTED_DEVICE("{Intel,Intel_HAD}");