582 lines
16 KiB
C
582 lines
16 KiB
C
// SPDX-License-Identifier: GPL-2.0-only
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/*
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* Copyright (c) 2016-2020, The Linux Foundation. All rights reserved.
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*/
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#define pr_fmt(fmt) "[drm-dp] %s: " fmt, __func__
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#include <linux/platform_device.h>
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#include <drm/display/drm_dp_helper.h>
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#include <drm/drm_edid.h>
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#include "dp_catalog.h"
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#include "dp_audio.h"
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#include "dp_panel.h"
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#include "dp_display.h"
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#include "dp_utils.h"
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struct msm_dp_audio_private {
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struct platform_device *audio_pdev;
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struct platform_device *pdev;
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struct drm_device *drm_dev;
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struct msm_dp_catalog *catalog;
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u32 channels;
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struct msm_dp_audio msm_dp_audio;
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};
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static u32 msm_dp_audio_get_header(struct msm_dp_catalog *catalog,
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enum msm_dp_catalog_audio_sdp_type sdp,
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enum msm_dp_catalog_audio_header_type header)
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{
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return msm_dp_catalog_audio_get_header(catalog, sdp, header);
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}
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static void msm_dp_audio_set_header(struct msm_dp_catalog *catalog,
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u32 data,
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enum msm_dp_catalog_audio_sdp_type sdp,
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enum msm_dp_catalog_audio_header_type header)
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{
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msm_dp_catalog_audio_set_header(catalog, sdp, header, data);
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}
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static void msm_dp_audio_stream_sdp(struct msm_dp_audio_private *audio)
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{
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struct msm_dp_catalog *catalog = audio->catalog;
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u32 value, new_value;
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u8 parity_byte;
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/* Config header and parity byte 1 */
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value = msm_dp_audio_get_header(catalog,
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DP_AUDIO_SDP_STREAM, DP_AUDIO_SDP_HEADER_1);
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new_value = 0x02;
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parity_byte = msm_dp_utils_calculate_parity(new_value);
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value |= ((new_value << HEADER_BYTE_1_BIT)
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| (parity_byte << PARITY_BYTE_1_BIT));
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drm_dbg_dp(audio->drm_dev,
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"Header Byte 1: value = 0x%x, parity_byte = 0x%x\n",
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value, parity_byte);
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msm_dp_audio_set_header(catalog, value,
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DP_AUDIO_SDP_STREAM, DP_AUDIO_SDP_HEADER_1);
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/* Config header and parity byte 2 */
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value = msm_dp_audio_get_header(catalog,
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DP_AUDIO_SDP_STREAM, DP_AUDIO_SDP_HEADER_2);
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new_value = value;
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parity_byte = msm_dp_utils_calculate_parity(new_value);
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value |= ((new_value << HEADER_BYTE_2_BIT)
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| (parity_byte << PARITY_BYTE_2_BIT));
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drm_dbg_dp(audio->drm_dev,
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"Header Byte 2: value = 0x%x, parity_byte = 0x%x\n",
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value, parity_byte);
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msm_dp_audio_set_header(catalog, value,
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DP_AUDIO_SDP_STREAM, DP_AUDIO_SDP_HEADER_2);
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/* Config header and parity byte 3 */
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value = msm_dp_audio_get_header(catalog,
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DP_AUDIO_SDP_STREAM, DP_AUDIO_SDP_HEADER_3);
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new_value = audio->channels - 1;
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parity_byte = msm_dp_utils_calculate_parity(new_value);
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value |= ((new_value << HEADER_BYTE_3_BIT)
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| (parity_byte << PARITY_BYTE_3_BIT));
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drm_dbg_dp(audio->drm_dev,
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"Header Byte 3: value = 0x%x, parity_byte = 0x%x\n",
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value, parity_byte);
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msm_dp_audio_set_header(catalog, value,
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DP_AUDIO_SDP_STREAM, DP_AUDIO_SDP_HEADER_3);
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}
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static void msm_dp_audio_timestamp_sdp(struct msm_dp_audio_private *audio)
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{
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struct msm_dp_catalog *catalog = audio->catalog;
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u32 value, new_value;
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u8 parity_byte;
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/* Config header and parity byte 1 */
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value = msm_dp_audio_get_header(catalog,
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DP_AUDIO_SDP_TIMESTAMP, DP_AUDIO_SDP_HEADER_1);
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new_value = 0x1;
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parity_byte = msm_dp_utils_calculate_parity(new_value);
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value |= ((new_value << HEADER_BYTE_1_BIT)
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| (parity_byte << PARITY_BYTE_1_BIT));
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drm_dbg_dp(audio->drm_dev,
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"Header Byte 1: value = 0x%x, parity_byte = 0x%x\n",
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value, parity_byte);
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msm_dp_audio_set_header(catalog, value,
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DP_AUDIO_SDP_TIMESTAMP, DP_AUDIO_SDP_HEADER_1);
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/* Config header and parity byte 2 */
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value = msm_dp_audio_get_header(catalog,
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DP_AUDIO_SDP_TIMESTAMP, DP_AUDIO_SDP_HEADER_2);
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new_value = 0x17;
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parity_byte = msm_dp_utils_calculate_parity(new_value);
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value |= ((new_value << HEADER_BYTE_2_BIT)
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| (parity_byte << PARITY_BYTE_2_BIT));
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drm_dbg_dp(audio->drm_dev,
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"Header Byte 2: value = 0x%x, parity_byte = 0x%x\n",
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value, parity_byte);
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msm_dp_audio_set_header(catalog, value,
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DP_AUDIO_SDP_TIMESTAMP, DP_AUDIO_SDP_HEADER_2);
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/* Config header and parity byte 3 */
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value = msm_dp_audio_get_header(catalog,
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DP_AUDIO_SDP_TIMESTAMP, DP_AUDIO_SDP_HEADER_3);
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new_value = (0x0 | (0x11 << 2));
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parity_byte = msm_dp_utils_calculate_parity(new_value);
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value |= ((new_value << HEADER_BYTE_3_BIT)
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| (parity_byte << PARITY_BYTE_3_BIT));
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drm_dbg_dp(audio->drm_dev,
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"Header Byte 3: value = 0x%x, parity_byte = 0x%x\n",
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value, parity_byte);
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msm_dp_audio_set_header(catalog, value,
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DP_AUDIO_SDP_TIMESTAMP, DP_AUDIO_SDP_HEADER_3);
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}
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static void msm_dp_audio_infoframe_sdp(struct msm_dp_audio_private *audio)
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{
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struct msm_dp_catalog *catalog = audio->catalog;
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u32 value, new_value;
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u8 parity_byte;
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/* Config header and parity byte 1 */
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value = msm_dp_audio_get_header(catalog,
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DP_AUDIO_SDP_INFOFRAME, DP_AUDIO_SDP_HEADER_1);
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new_value = 0x84;
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parity_byte = msm_dp_utils_calculate_parity(new_value);
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value |= ((new_value << HEADER_BYTE_1_BIT)
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| (parity_byte << PARITY_BYTE_1_BIT));
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drm_dbg_dp(audio->drm_dev,
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"Header Byte 1: value = 0x%x, parity_byte = 0x%x\n",
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value, parity_byte);
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msm_dp_audio_set_header(catalog, value,
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DP_AUDIO_SDP_INFOFRAME, DP_AUDIO_SDP_HEADER_1);
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/* Config header and parity byte 2 */
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value = msm_dp_audio_get_header(catalog,
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DP_AUDIO_SDP_INFOFRAME, DP_AUDIO_SDP_HEADER_2);
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new_value = 0x1b;
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parity_byte = msm_dp_utils_calculate_parity(new_value);
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value |= ((new_value << HEADER_BYTE_2_BIT)
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| (parity_byte << PARITY_BYTE_2_BIT));
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drm_dbg_dp(audio->drm_dev,
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"Header Byte 2: value = 0x%x, parity_byte = 0x%x\n",
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value, parity_byte);
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msm_dp_audio_set_header(catalog, value,
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DP_AUDIO_SDP_INFOFRAME, DP_AUDIO_SDP_HEADER_2);
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/* Config header and parity byte 3 */
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value = msm_dp_audio_get_header(catalog,
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DP_AUDIO_SDP_INFOFRAME, DP_AUDIO_SDP_HEADER_3);
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new_value = (0x0 | (0x11 << 2));
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parity_byte = msm_dp_utils_calculate_parity(new_value);
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value |= ((new_value << HEADER_BYTE_3_BIT)
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| (parity_byte << PARITY_BYTE_3_BIT));
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drm_dbg_dp(audio->drm_dev,
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"Header Byte 3: value = 0x%x, parity_byte = 0x%x\n",
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new_value, parity_byte);
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msm_dp_audio_set_header(catalog, value,
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DP_AUDIO_SDP_INFOFRAME, DP_AUDIO_SDP_HEADER_3);
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}
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static void msm_dp_audio_copy_management_sdp(struct msm_dp_audio_private *audio)
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{
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struct msm_dp_catalog *catalog = audio->catalog;
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u32 value, new_value;
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u8 parity_byte;
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/* Config header and parity byte 1 */
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value = msm_dp_audio_get_header(catalog,
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DP_AUDIO_SDP_COPYMANAGEMENT, DP_AUDIO_SDP_HEADER_1);
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new_value = 0x05;
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parity_byte = msm_dp_utils_calculate_parity(new_value);
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value |= ((new_value << HEADER_BYTE_1_BIT)
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| (parity_byte << PARITY_BYTE_1_BIT));
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drm_dbg_dp(audio->drm_dev,
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"Header Byte 1: value = 0x%x, parity_byte = 0x%x\n",
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value, parity_byte);
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msm_dp_audio_set_header(catalog, value,
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DP_AUDIO_SDP_COPYMANAGEMENT, DP_AUDIO_SDP_HEADER_1);
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/* Config header and parity byte 2 */
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value = msm_dp_audio_get_header(catalog,
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DP_AUDIO_SDP_COPYMANAGEMENT, DP_AUDIO_SDP_HEADER_2);
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new_value = 0x0F;
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parity_byte = msm_dp_utils_calculate_parity(new_value);
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value |= ((new_value << HEADER_BYTE_2_BIT)
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| (parity_byte << PARITY_BYTE_2_BIT));
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drm_dbg_dp(audio->drm_dev,
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"Header Byte 2: value = 0x%x, parity_byte = 0x%x\n",
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value, parity_byte);
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msm_dp_audio_set_header(catalog, value,
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DP_AUDIO_SDP_COPYMANAGEMENT, DP_AUDIO_SDP_HEADER_2);
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/* Config header and parity byte 3 */
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value = msm_dp_audio_get_header(catalog,
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DP_AUDIO_SDP_COPYMANAGEMENT, DP_AUDIO_SDP_HEADER_3);
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new_value = 0x0;
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parity_byte = msm_dp_utils_calculate_parity(new_value);
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value |= ((new_value << HEADER_BYTE_3_BIT)
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| (parity_byte << PARITY_BYTE_3_BIT));
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drm_dbg_dp(audio->drm_dev,
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"Header Byte 3: value = 0x%x, parity_byte = 0x%x\n",
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value, parity_byte);
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msm_dp_audio_set_header(catalog, value,
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DP_AUDIO_SDP_COPYMANAGEMENT, DP_AUDIO_SDP_HEADER_3);
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}
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static void msm_dp_audio_isrc_sdp(struct msm_dp_audio_private *audio)
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{
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struct msm_dp_catalog *catalog = audio->catalog;
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u32 value, new_value;
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u8 parity_byte;
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/* Config header and parity byte 1 */
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value = msm_dp_audio_get_header(catalog,
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DP_AUDIO_SDP_ISRC, DP_AUDIO_SDP_HEADER_1);
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new_value = 0x06;
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parity_byte = msm_dp_utils_calculate_parity(new_value);
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value |= ((new_value << HEADER_BYTE_1_BIT)
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| (parity_byte << PARITY_BYTE_1_BIT));
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drm_dbg_dp(audio->drm_dev,
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"Header Byte 1: value = 0x%x, parity_byte = 0x%x\n",
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value, parity_byte);
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msm_dp_audio_set_header(catalog, value,
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DP_AUDIO_SDP_ISRC, DP_AUDIO_SDP_HEADER_1);
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/* Config header and parity byte 2 */
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value = msm_dp_audio_get_header(catalog,
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DP_AUDIO_SDP_ISRC, DP_AUDIO_SDP_HEADER_2);
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new_value = 0x0F;
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parity_byte = msm_dp_utils_calculate_parity(new_value);
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value |= ((new_value << HEADER_BYTE_2_BIT)
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| (parity_byte << PARITY_BYTE_2_BIT));
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drm_dbg_dp(audio->drm_dev,
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"Header Byte 2: value = 0x%x, parity_byte = 0x%x\n",
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value, parity_byte);
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msm_dp_audio_set_header(catalog, value,
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DP_AUDIO_SDP_ISRC, DP_AUDIO_SDP_HEADER_2);
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}
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static void msm_dp_audio_setup_sdp(struct msm_dp_audio_private *audio)
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{
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msm_dp_catalog_audio_config_sdp(audio->catalog);
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msm_dp_audio_stream_sdp(audio);
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msm_dp_audio_timestamp_sdp(audio);
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msm_dp_audio_infoframe_sdp(audio);
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msm_dp_audio_copy_management_sdp(audio);
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msm_dp_audio_isrc_sdp(audio);
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}
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static void msm_dp_audio_setup_acr(struct msm_dp_audio_private *audio)
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{
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u32 select = 0;
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struct msm_dp_catalog *catalog = audio->catalog;
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switch (audio->msm_dp_audio.bw_code) {
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case DP_LINK_BW_1_62:
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select = 0;
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break;
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case DP_LINK_BW_2_7:
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select = 1;
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break;
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case DP_LINK_BW_5_4:
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select = 2;
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break;
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case DP_LINK_BW_8_1:
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select = 3;
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break;
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default:
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drm_dbg_dp(audio->drm_dev, "Unknown link rate\n");
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select = 0;
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break;
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}
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msm_dp_catalog_audio_config_acr(catalog, select);
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}
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static void msm_dp_audio_safe_to_exit_level(struct msm_dp_audio_private *audio)
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{
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struct msm_dp_catalog *catalog = audio->catalog;
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u32 safe_to_exit_level = 0;
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switch (audio->msm_dp_audio.lane_count) {
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case 1:
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safe_to_exit_level = 14;
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break;
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case 2:
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safe_to_exit_level = 8;
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break;
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case 4:
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safe_to_exit_level = 5;
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break;
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default:
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drm_dbg_dp(audio->drm_dev,
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"setting the default safe_to_exit_level = %u\n",
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safe_to_exit_level);
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safe_to_exit_level = 14;
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break;
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}
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msm_dp_catalog_audio_sfe_level(catalog, safe_to_exit_level);
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}
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static void msm_dp_audio_enable(struct msm_dp_audio_private *audio, bool enable)
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{
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struct msm_dp_catalog *catalog = audio->catalog;
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msm_dp_catalog_audio_enable(catalog, enable);
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}
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static struct msm_dp_audio_private *msm_dp_audio_get_data(struct platform_device *pdev)
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{
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struct msm_dp_audio *msm_dp_audio;
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struct msm_dp *msm_dp_display;
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if (!pdev) {
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DRM_ERROR("invalid input\n");
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return ERR_PTR(-ENODEV);
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}
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msm_dp_display = platform_get_drvdata(pdev);
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if (!msm_dp_display) {
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DRM_ERROR("invalid input\n");
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return ERR_PTR(-ENODEV);
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}
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msm_dp_audio = msm_dp_display->msm_dp_audio;
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if (!msm_dp_audio) {
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DRM_ERROR("invalid msm_dp_audio data\n");
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return ERR_PTR(-EINVAL);
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}
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return container_of(msm_dp_audio, struct msm_dp_audio_private, msm_dp_audio);
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}
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static int msm_dp_audio_hook_plugged_cb(struct device *dev, void *data,
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hdmi_codec_plugged_cb fn,
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struct device *codec_dev)
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{
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struct platform_device *pdev;
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struct msm_dp *msm_dp_display;
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pdev = to_platform_device(dev);
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if (!pdev) {
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pr_err("invalid input\n");
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return -ENODEV;
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}
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msm_dp_display = platform_get_drvdata(pdev);
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if (!msm_dp_display) {
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pr_err("invalid input\n");
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return -ENODEV;
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}
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return msm_dp_display_set_plugged_cb(msm_dp_display, fn, codec_dev);
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}
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static int msm_dp_audio_get_eld(struct device *dev,
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void *data, uint8_t *buf, size_t len)
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{
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struct platform_device *pdev;
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struct msm_dp *msm_dp_display;
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pdev = to_platform_device(dev);
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if (!pdev) {
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DRM_ERROR("invalid input\n");
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return -ENODEV;
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}
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msm_dp_display = platform_get_drvdata(pdev);
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if (!msm_dp_display) {
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DRM_ERROR("invalid input\n");
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return -ENODEV;
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}
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memcpy(buf, msm_dp_display->connector->eld,
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min(sizeof(msm_dp_display->connector->eld), len));
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return 0;
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}
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int msm_dp_audio_hw_params(struct device *dev,
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void *data,
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struct hdmi_codec_daifmt *daifmt,
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struct hdmi_codec_params *params)
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{
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int rc = 0;
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struct msm_dp_audio_private *audio;
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struct platform_device *pdev;
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struct msm_dp *msm_dp_display;
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pdev = to_platform_device(dev);
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msm_dp_display = platform_get_drvdata(pdev);
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/*
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* there could be cases where sound card can be opened even
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* before OR even when DP is not connected . This can cause
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* unclocked access as the audio subsystem relies on the DP
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* driver to maintain the correct state of clocks. To protect
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* such cases check for connection status and bail out if not
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* connected.
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*/
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if (!msm_dp_display->power_on) {
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rc = -EINVAL;
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goto end;
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}
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audio = msm_dp_audio_get_data(pdev);
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if (IS_ERR(audio)) {
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rc = PTR_ERR(audio);
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goto end;
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}
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audio->channels = params->channels;
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msm_dp_audio_setup_sdp(audio);
|
|
msm_dp_audio_setup_acr(audio);
|
|
msm_dp_audio_safe_to_exit_level(audio);
|
|
msm_dp_audio_enable(audio, true);
|
|
msm_dp_display_signal_audio_start(msm_dp_display);
|
|
msm_dp_display->audio_enabled = true;
|
|
|
|
end:
|
|
return rc;
|
|
}
|
|
|
|
static void msm_dp_audio_shutdown(struct device *dev, void *data)
|
|
{
|
|
struct msm_dp_audio_private *audio;
|
|
struct platform_device *pdev;
|
|
struct msm_dp *msm_dp_display;
|
|
|
|
pdev = to_platform_device(dev);
|
|
msm_dp_display = platform_get_drvdata(pdev);
|
|
audio = msm_dp_audio_get_data(pdev);
|
|
if (IS_ERR(audio)) {
|
|
DRM_ERROR("failed to get audio data\n");
|
|
return;
|
|
}
|
|
|
|
/*
|
|
* if audio was not enabled there is no need
|
|
* to execute the shutdown and we can bail out early.
|
|
* This also makes sure that we dont cause an unclocked
|
|
* access when audio subsystem calls this without DP being
|
|
* connected. is_connected cannot be used here as its set
|
|
* to false earlier than this call
|
|
*/
|
|
if (!msm_dp_display->audio_enabled)
|
|
return;
|
|
|
|
msm_dp_audio_enable(audio, false);
|
|
/* signal the dp display to safely shutdown clocks */
|
|
msm_dp_display_signal_audio_complete(msm_dp_display);
|
|
}
|
|
|
|
static const struct hdmi_codec_ops msm_dp_audio_codec_ops = {
|
|
.hw_params = msm_dp_audio_hw_params,
|
|
.audio_shutdown = msm_dp_audio_shutdown,
|
|
.get_eld = msm_dp_audio_get_eld,
|
|
.hook_plugged_cb = msm_dp_audio_hook_plugged_cb,
|
|
};
|
|
|
|
static struct hdmi_codec_pdata codec_data = {
|
|
.ops = &msm_dp_audio_codec_ops,
|
|
.max_i2s_channels = 8,
|
|
.i2s = 1,
|
|
};
|
|
|
|
void msm_dp_unregister_audio_driver(struct device *dev, struct msm_dp_audio *msm_dp_audio)
|
|
{
|
|
struct msm_dp_audio_private *audio_priv;
|
|
|
|
audio_priv = container_of(msm_dp_audio, struct msm_dp_audio_private, msm_dp_audio);
|
|
|
|
if (audio_priv->audio_pdev) {
|
|
platform_device_unregister(audio_priv->audio_pdev);
|
|
audio_priv->audio_pdev = NULL;
|
|
}
|
|
}
|
|
|
|
int msm_dp_register_audio_driver(struct device *dev,
|
|
struct msm_dp_audio *msm_dp_audio)
|
|
{
|
|
struct msm_dp_audio_private *audio_priv;
|
|
|
|
audio_priv = container_of(msm_dp_audio,
|
|
struct msm_dp_audio_private, msm_dp_audio);
|
|
|
|
audio_priv->audio_pdev = platform_device_register_data(dev,
|
|
HDMI_CODEC_DRV_NAME,
|
|
PLATFORM_DEVID_AUTO,
|
|
&codec_data,
|
|
sizeof(codec_data));
|
|
return PTR_ERR_OR_ZERO(audio_priv->audio_pdev);
|
|
}
|
|
|
|
struct msm_dp_audio *msm_dp_audio_get(struct platform_device *pdev,
|
|
struct msm_dp_panel *panel,
|
|
struct msm_dp_catalog *catalog)
|
|
{
|
|
int rc = 0;
|
|
struct msm_dp_audio_private *audio;
|
|
struct msm_dp_audio *msm_dp_audio;
|
|
|
|
if (!pdev || !panel || !catalog) {
|
|
DRM_ERROR("invalid input\n");
|
|
rc = -EINVAL;
|
|
goto error;
|
|
}
|
|
|
|
audio = devm_kzalloc(&pdev->dev, sizeof(*audio), GFP_KERNEL);
|
|
if (!audio) {
|
|
rc = -ENOMEM;
|
|
goto error;
|
|
}
|
|
|
|
audio->pdev = pdev;
|
|
audio->catalog = catalog;
|
|
|
|
msm_dp_audio = &audio->msm_dp_audio;
|
|
|
|
msm_dp_catalog_audio_init(catalog);
|
|
|
|
return msm_dp_audio;
|
|
error:
|
|
return ERR_PTR(rc);
|
|
}
|
|
|
|
void msm_dp_audio_put(struct msm_dp_audio *msm_dp_audio)
|
|
{
|
|
struct msm_dp_audio_private *audio;
|
|
|
|
if (!msm_dp_audio)
|
|
return;
|
|
|
|
audio = container_of(msm_dp_audio, struct msm_dp_audio_private, msm_dp_audio);
|
|
|
|
devm_kfree(&audio->pdev->dev, audio);
|
|
}
|