mirror of https://github.com/thesofproject/sof.git
182 lines
5.7 KiB
Plaintext
182 lines
5.7 KiB
Plaintext
#
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# Topology for MT8195 board with mt6359/rt5682/rt1019
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#
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# Include topology builder
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include(`utils.m4')
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include(`dai.m4')
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include(`pipeline.m4')
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include(`afe.m4')
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include(`pcm.m4')
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include(`buffer.m4')
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include(`muxdemux.m4')
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# Include TLV library
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include(`common/tlv.m4')
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# Include Token library
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include(`sof/tokens.m4')
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# Include DSP configuration
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include(`platform/mediatek/mt8195.m4')
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#
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# Define the demux configure
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#
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dnl Configure demux
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dnl name, pipeline_id, routing_matrix_rows
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dnl Diagonal 1's in routing matrix mean that every input channel is
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dnl copied to corresponding output channels in all output streams.
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dnl I.e. row index is the input channel, 1 means it is copied to
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dnl corresponding output channel (column index), 0 means it is discarded.
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dnl There's a separate matrix for all outputs.
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define(matrix1, `ROUTE_MATRIX(1,
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`BITS_TO_BYTE(1, 0, 0 ,0 ,0 ,0 ,0 ,0)',
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`BITS_TO_BYTE(0, 1, 0 ,0 ,0 ,0 ,0 ,0)',
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`BITS_TO_BYTE(0, 0, 1 ,0 ,0 ,0 ,0 ,0)',
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`BITS_TO_BYTE(0, 0, 0 ,1 ,0 ,0 ,0 ,0)',
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`BITS_TO_BYTE(0, 0, 0 ,0 ,1 ,0 ,0 ,0)',
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`BITS_TO_BYTE(0, 0, 0 ,0 ,0 ,1 ,0 ,0)',
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`BITS_TO_BYTE(0, 0, 0 ,0 ,0 ,0 ,1 ,0)',
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`BITS_TO_BYTE(0, 0, 0 ,0 ,0 ,0 ,0 ,1)')')
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define(matrix2, `ROUTE_MATRIX(3,
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`BITS_TO_BYTE(1, 0, 0 ,0 ,0 ,0 ,0 ,0)',
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`BITS_TO_BYTE(0, 1, 0 ,0 ,0 ,0 ,0 ,0)',
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`BITS_TO_BYTE(0, 0, 1 ,0 ,0 ,0 ,0 ,0)',
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`BITS_TO_BYTE(0, 0, 0 ,1 ,0 ,0 ,0 ,0)',
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`BITS_TO_BYTE(0, 0, 0 ,0 ,1 ,0 ,0 ,0)',
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`BITS_TO_BYTE(0, 0, 0 ,0 ,0 ,1 ,0 ,0)',
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`BITS_TO_BYTE(0, 0, 0 ,0 ,0 ,0 ,1 ,0)',
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`BITS_TO_BYTE(0, 0, 0 ,0 ,0 ,0 ,0 ,1)')')
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ifdef(`GOOGLE_RTC_AUDIO_PROCESSING', `MUXDEMUX_CONFIG(demux_priv_1, 2, LIST_NONEWLINE(`', `matrix1,', `matrix2'))')
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ifdef(`GOOGLE_RTC_AUDIO_PROCESSING', `define(`SPK_PERIOD_US', 10000)', `define(`SPK_PERIOD_US', 1000)')
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ifdef(`GOOGLE_RTC_AUDIO_PROCESSING', `define(`MIC_PERIOD_US', 10000)', `define(`MIC_PERIOD_US', 2000)')
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#
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# Define the pipelines
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#
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# PCM16 ---> AFE (Speaker - rt1019)
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# PCM17 ---> AFE (Headset playback - rt5682)
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# PCM18 <--- AFE (DMIC - MT6365)
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# PCM19 <--- AFE (Headset record - rt5682)
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dnl PIPELINE_PCM_ADD(pipeline,
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dnl pipe id, pcm, max channels, format,
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dnl period, priority, core,
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dnl pcm_min_rate, pcm_max_rate, pipeline_rate,
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dnl time_domain, sched_comp)
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# Low Latency playback pipeline 1 on PCM 16 using max 2 channels of s16le
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# Set 10000us deadline with priority 0 on core 0
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PIPELINE_PCM_ADD(
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ifdef(`DTS', sof/pipe-eq-iir-dts-codec-playback.m4,
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ifdef(`GOOGLE_RTC_AUDIO_PROCESSING', sof/pipe-volume-demux-playback.m4, sof/pipe-passthrough-playback.m4)),
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1, 16, 2, s16le,
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SPK_PERIOD_US, 0, 0,
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48000, 48000, 48000)
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# Low Latency playback pipeline 2 on PCM 17 using max 2 channels of s16le
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# Set 10000us deadline with priority 0 on core 0
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PIPELINE_PCM_ADD(
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ifdef(`DTS', sof/pipe-eq-iir-dts-codec-playback.m4, sof/pipe-passthrough-playback.m4),
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2, 17, 2, s16le,
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1000, 0, 0,
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48000, 48000, 48000)
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# Low Latency capture pipeline 3 on PCM 18 using max 2 channels of s16le
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# Set 2000us deadline with priority 0 on core 0
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PIPELINE_PCM_ADD(
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ifdef(`RTNR',
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ifdef(`GOOGLE_RTC_AUDIO_PROCESSING',
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sof/pipe-google-rtc-audio-processing-rtnr-capture.m4,
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sof/pipe-rtnr-capture.m4),
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sof/pipe-passthrough-capture.m4),
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3, 18, 2, s16le,
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MIC_PERIOD_US, 0, 0,
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48000, 48000, 48000)
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# Low Latency capture pipeline 4 on PCM 19 using max 2 channels of s16le
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# Set 2000us deadline with priority 0 on core 0
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PIPELINE_PCM_ADD(sof/pipe-passthrough-capture.m4,
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4, 19, 2, s16le,
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2000, 0, 0,
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48000, 48000, 48000)
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#
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# DAIs configuration
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#
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dnl if using Google AEC
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ifdef(`GOOGLE_RTC_AUDIO_PROCESSING',
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`# Connect demux to capture'
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`SectionGraph."PIPE_GOOGLE_RTC_AUDIO_PROCESSING_REF_AEC" {'
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` index "0"'
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` lines ['
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` # mux to capture'
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` dapm(N_AEC_REF_BUF, PIPELINE_DEMUX_1)'
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` ]'
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`}'
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dnl else
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, `')
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dnl DAI_ADD(pipeline,
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dnl pipe id, dai type, dai_index, dai_be,
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dnl buffer, periods, format,
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dnl deadline, priority, core)
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# playback DAI is AFE using 2 periods
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# Buffers use s16le format, with 48 frame per 1000us on core 0 with priority 0
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DAI_ADD(sof/pipe-dai-playback.m4,
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1, AFE, 0, AFE_SOF_DL2,
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PIPELINE_SOURCE_1, 2, s16le,
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SPK_PERIOD_US, 0, 0, SCHEDULE_TIME_DOMAIN_TIMER)
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# playback DAI is AFE using 2 periods
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# Buffers use s16le format, with 48 frame per 1000us on core 0 with priority 0
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DAI_ADD(sof/pipe-dai-playback.m4,
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2, AFE, 1, AFE_SOF_DL3,
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PIPELINE_SOURCE_2, 2, s16le,
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1000, 0, 0, SCHEDULE_TIME_DOMAIN_TIMER)
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# capture DAI is AFE using 2 periods
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# Buffers use s16le format, with 48 frame per 2000us on core 0 with priority 0
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DAI_ADD(sof/pipe-dai-capture.m4,
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3, AFE, 2, AFE_SOF_UL4,
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PIPELINE_SINK_3, 2, s16le,
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MIC_PERIOD_US, 0, 0, SCHEDULE_TIME_DOMAIN_TIMER)
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# capture DAI is AFE using 2 periods
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# Buffers use s16le format, with 48 frame per 2000us on core 0 with priority 0
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DAI_ADD(sof/pipe-dai-capture.m4,
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4, AFE, 3, AFE_SOF_UL5,
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PIPELINE_SINK_4, 2, s16le,
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2000, 0, 0, SCHEDULE_TIME_DOMAIN_TIMER)
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#SCHEDULE_TIME_DOMAIN_DMA
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dnl PCM_PLAYBACK_ADD(name, pcm_id, playback)
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# PCM Low Latency, id 0
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PCM_PLAYBACK_ADD(SOF_DL2, 16, PIPELINE_PCM_1)
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PCM_PLAYBACK_ADD(SOF_DL3, 17, PIPELINE_PCM_2)
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PCM_CAPTURE_ADD(SOF_UL4, 18, PIPELINE_PCM_3)
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PCM_CAPTURE_ADD(SOF_UL5, 19, PIPELINE_PCM_4)
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dnl DAI_CONFIG(type, dai_index, link_id, name, afe_config)
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DAI_CONFIG(AFE, 0, 0, AFE_SOF_DL2,
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AFE_CONFIG(AFE_CONFIG_DATA(AFE, 0, 48000, 2, s16le)))
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DAI_CONFIG(AFE, 1, 0, AFE_SOF_DL3,
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AFE_CONFIG(AFE_CONFIG_DATA(AFE, 1, 48000, 2, s16le)))
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DAI_CONFIG(AFE, 2, 0, AFE_SOF_UL4,
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AFE_CONFIG(AFE_CONFIG_DATA(AFE, 2, 48000, 2, s16le)))
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DAI_CONFIG(AFE, 3, 0, AFE_SOF_UL5,
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AFE_CONFIG(AFE_CONFIG_DATA(AFE, 3, 48000, 2, s16le)))
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