2019-09-19 14:43:19 +00:00
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From 3e62c56daa1c799bb2a1d954ecfb88e8d37421bb Mon Sep 17 00:00:00 2001
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2019-07-09 18:32:28 +00:00
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From: Annaliese McDermond <nh6z@nh6z.net>
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Date: Thu, 21 Mar 2019 17:58:51 -0700
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2019-09-19 14:43:19 +00:00
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Subject: [PATCH 405/806] ASoC: tlv320aic32x4: Dynamically Determine Clocking
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2019-07-09 18:32:28 +00:00
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commit 96c3bb00239de4fb5f4ddca42c1f90d6d9b3c697 upstream.
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The existing code uses a static lookup table to determine the
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settings of the various clock devices on board the chip. This is
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limiting in a couple of ways. First, this doesn't allow for any
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master clock rates other than the three that have been
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precalculated. Additionally, new sample rates are difficult to
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add to the table. Witness that the chip is capable of 192000 Hz
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sampling, but it is not provided by this driver. Last, if the
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driver is clocked by something that isn't a crystal, the
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upstream clock may not be able to achieve exactly the rate
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requested in the driver. This will mean that clocking will be
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slightly off for the sampling clock or that it won't work at all.
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This patch determines the settings for all of the clocks at
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runtime considering the real conditions of the clocks in the
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system. The rules for the clocks are in TI's SLAA557 application
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guide on pages 37, 51 and 77.
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Signed-off-by: Annaliese McDermond <nh6z@nh6z.net>
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Signed-off-by: Mark Brown <broonie@kernel.org>
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---
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sound/soc/codecs/tlv320aic32x4.c | 190 ++++++++++++++-----------------
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sound/soc/codecs/tlv320aic32x4.h | 4 +-
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2 files changed, 90 insertions(+), 104 deletions(-)
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--- a/sound/soc/codecs/tlv320aic32x4.c
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+++ b/sound/soc/codecs/tlv320aic32x4.c
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@@ -47,21 +47,6 @@
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#include "tlv320aic32x4.h"
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-struct aic32x4_rate_divs {
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- u32 mclk;
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- u32 rate;
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- unsigned long pll_rate;
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- u16 dosr;
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- unsigned long ndac_rate;
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- unsigned long mdac_rate;
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- u8 aosr;
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- unsigned long nadc_rate;
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- unsigned long madc_rate;
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- unsigned long bdiv_rate;
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- u8 r_block;
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- u8 p_block;
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-};
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-
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struct aic32x4_priv {
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struct regmap *regmap;
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u32 sysclk;
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@@ -307,58 +292,6 @@ static const struct snd_kcontrol_new aic
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0, 0x0F, 0),
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};
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-static const struct aic32x4_rate_divs aic32x4_divs[] = {
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- /* 8k rate */
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- { 12000000, 8000, 57120000, 768, 18432000, 6144000, 128, 18432000,
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- 1024000, 256000, 1, 1 },
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- { 24000000, 8000, 57120000, 768, 6144000, 6144000, 64, 2048000,
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- 512000, 256000, 1, 1 },
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- { 25000000, 8000, 32620000, 768, 6144000, 6144000, 64, 2048000,
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- 512000, 256000, 1, 1 },
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- /* 11.025k rate */
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- { 12000000, 11025, 44217600, 512, 11289600, 5644800, 128, 11289600,
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- 1411200, 352800, 1, 1 },
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- { 24000000, 11025, 44217600, 512, 5644800, 5644800, 64, 2822400,
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- 705600, 352800, 1, 1 },
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- /* 16k rate */
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- { 12000000, 16000, 57120000, 384, 18432000, 6144000, 128, 18432000,
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- 2048000, 512000, 1, 1 },
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- { 24000000, 16000, 57120000, 384, 6144000, 6144000, 64, 5120000,
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- 1024000, 512000, 1, 1 },
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- { 25000000, 16000, 32620000, 384, 6144000, 6144000, 64, 5120000,
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- 1024000, 512000, 1, 1 },
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- /* 22.05k rate */
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- { 12000000, 22050, 44217600, 256, 22579200, 5644800, 128, 22579200,
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- 2822400, 705600, 1, 1 },
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- { 24000000, 22050, 44217600, 256, 5644800, 5644800, 64, 5644800,
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- 1411200, 705600, 1, 1 },
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- { 25000000, 22050, 19713750, 256, 5644800, 5644800, 64, 5644800,
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- 1411200, 705600, 1, 1 },
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- /* 32k rate */
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- { 12000000, 32000, 14112000, 192, 43008000, 6144000, 64, 43008000,
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- 2048000, 1024000, 1, 1 },
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- { 24000000, 32000, 14112000, 192, 12288000, 6144000, 64, 12288000,
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- 2048000, 1024000, 1, 1 },
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- /* 44.1k rate */
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- { 12000000, 44100, 44217600, 128, 45158400, 5644800, 128, 45158400,
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- 5644800, 1411200, 1, 1 },
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- { 24000000, 44100, 44217600, 128, 11289600, 5644800, 64, 11289600,
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- 2822400, 1411200, 1, 1 },
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- { 25000000, 44100, 19713750, 128, 11289600, 5644800, 64, 11289600,
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- 2822400, 1411200, 1, 1 },
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- /* 48k rate */
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- { 12000000, 48000, 18432000, 128, 49152000, 6144000, 128, 49152000,
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- 6144000, 1536000, 1, 1 },
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- { 24000000, 48000, 18432000, 128, 12288000, 6144000, 64, 12288000,
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- 3072000, 1536000, 1, 1 },
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- { 25000000, 48000, 75626250, 128, 12288000, 6144000, 64, 12288000,
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- 3072000, 1536000, 1, 1 },
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-
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- /* 96k rate */
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- { 25000000, 96000, 75626250, 64, 24576000, 6144000, 64, 24576000,
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- 6144000, 3072000, 1, 9 },
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-};
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-
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static const struct snd_kcontrol_new hpl_output_mixer_controls[] = {
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SOC_DAPM_SINGLE("L_DAC Switch", AIC32X4_HPLROUTE, 3, 1, 0),
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SOC_DAPM_SINGLE("IN1_L Switch", AIC32X4_HPLROUTE, 2, 1, 0),
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@@ -632,20 +565,6 @@ const struct regmap_config aic32x4_regma
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};
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EXPORT_SYMBOL(aic32x4_regmap_config);
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-static inline int aic32x4_get_divs(int mclk, int rate)
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-{
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- int i;
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-
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- for (i = 0; i < ARRAY_SIZE(aic32x4_divs); i++) {
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- if ((aic32x4_divs[i].rate == rate)
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- && (aic32x4_divs[i].mclk == mclk)) {
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- return i;
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- }
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- }
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- printk(KERN_ERR "aic32x4: master clock and sample rate is not supported\n");
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- return -EINVAL;
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-}
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-
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static int aic32x4_set_dai_sysclk(struct snd_soc_dai *codec_dai,
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int clk_id, unsigned int freq, int dir)
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{
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@@ -747,11 +666,17 @@ static int aic32x4_set_processing_blocks
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}
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static int aic32x4_setup_clocks(struct snd_soc_component *component,
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- unsigned int sample_rate,
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- unsigned int parent_rate)
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+ unsigned int sample_rate)
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{
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- int i;
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+ u8 aosr;
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+ u16 dosr;
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+ u8 adc_resource_class, dac_resource_class;
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+ u8 madc, nadc, mdac, ndac, max_nadc, min_mdac, max_ndac;
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+ u8 dosr_increment;
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+ u16 max_dosr, min_dosr;
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+ unsigned long mclk_rate, adc_clock_rate, dac_clock_rate;
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int ret;
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+ struct clk *mclk;
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struct clk_bulk_data clocks[] = {
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{ .id = "pll" },
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@@ -761,30 +686,89 @@ static int aic32x4_setup_clocks(struct s
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{ .id = "mdac" },
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{ .id = "bdiv" },
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};
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-
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- i = aic32x4_get_divs(parent_rate, sample_rate);
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- if (i < 0) {
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- printk(KERN_ERR "aic32x4: sampling rate not supported\n");
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- return i;
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- }
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-
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ret = devm_clk_bulk_get(component->dev, ARRAY_SIZE(clocks), clocks);
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if (ret)
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return ret;
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- clk_set_rate(clocks[0].clk, aic32x4_divs[i].pll_rate);
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- clk_set_rate(clocks[1].clk, aic32x4_divs[i].nadc_rate);
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- clk_set_rate(clocks[2].clk, aic32x4_divs[i].madc_rate);
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- clk_set_rate(clocks[3].clk, aic32x4_divs[i].ndac_rate);
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- clk_set_rate(clocks[4].clk, aic32x4_divs[i].mdac_rate);
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- clk_set_rate(clocks[5].clk, aic32x4_divs[i].bdiv_rate);
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+ mclk = clk_get_parent(clocks[1].clk);
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+ mclk_rate = clk_get_rate(mclk);
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- aic32x4_set_aosr(component, aic32x4_divs[i].aosr);
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- aic32x4_set_dosr(component, aic32x4_divs[i].dosr);
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+ if (sample_rate <= 48000) {
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+ aosr = 128;
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+ adc_resource_class = 6;
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+ dac_resource_class = 8;
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+ dosr_increment = 8;
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+ aic32x4_set_processing_blocks(component, 1, 1);
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+ } else if (sample_rate <= 96000) {
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+ aosr = 64;
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+ adc_resource_class = 6;
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+ dac_resource_class = 8;
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+ dosr_increment = 4;
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+ aic32x4_set_processing_blocks(component, 1, 9);
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+ } else if (sample_rate == 192000) {
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+ aosr = 32;
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+ adc_resource_class = 3;
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+ dac_resource_class = 4;
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+ dosr_increment = 2;
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+ aic32x4_set_processing_blocks(component, 13, 19);
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+ } else {
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+ dev_err(component->dev, "Sampling rate not supported\n");
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+ return -EINVAL;
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+ }
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- aic32x4_set_processing_blocks(component, aic32x4_divs[i].r_block, aic32x4_divs[i].p_block);
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+ madc = DIV_ROUND_UP((32 * adc_resource_class), aosr);
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+ max_dosr = (AIC32X4_MAX_DOSR_FREQ / sample_rate / dosr_increment) *
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+ dosr_increment;
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+ min_dosr = (AIC32X4_MIN_DOSR_FREQ / sample_rate / dosr_increment) *
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+ dosr_increment;
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+ max_nadc = AIC32X4_MAX_CODEC_CLKIN_FREQ / (madc * aosr * sample_rate);
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+
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+ for (nadc = max_nadc; nadc > 0; --nadc) {
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+ adc_clock_rate = nadc * madc * aosr * sample_rate;
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+ for (dosr = max_dosr; dosr >= min_dosr;
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+ dosr -= dosr_increment) {
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+ min_mdac = DIV_ROUND_UP((32 * dac_resource_class), dosr);
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+ max_ndac = AIC32X4_MAX_CODEC_CLKIN_FREQ /
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+ (min_mdac * dosr * sample_rate);
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+ for (mdac = min_mdac; mdac <= 128; ++mdac) {
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+ for (ndac = max_ndac; ndac > 0; --ndac) {
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+ dac_clock_rate = ndac * mdac * dosr *
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+ sample_rate;
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+ if (dac_clock_rate == adc_clock_rate) {
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+ if (clk_round_rate(clocks[0].clk, dac_clock_rate) == 0)
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+ continue;
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+
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+ clk_set_rate(clocks[0].clk,
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+ dac_clock_rate);
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+
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+ clk_set_rate(clocks[1].clk,
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+ sample_rate * aosr *
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+ madc);
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+ clk_set_rate(clocks[2].clk,
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+ sample_rate * aosr);
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+ aic32x4_set_aosr(component,
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+ aosr);
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+
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+ clk_set_rate(clocks[3].clk,
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+ sample_rate * dosr *
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+ mdac);
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+ clk_set_rate(clocks[4].clk,
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+ sample_rate * dosr);
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+ aic32x4_set_dosr(component,
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+ dosr);
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+
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+ clk_set_rate(clocks[5].clk,
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+ sample_rate * 32);
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+ return 0;
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+ }
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+ }
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+ }
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+ }
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+ }
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- return 0;
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+ dev_err(component->dev,
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+ "Could not set clocks to support sample rate.\n");
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+ return -EINVAL;
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}
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static int aic32x4_hw_params(struct snd_pcm_substream *substream,
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@@ -796,7 +780,7 @@ static int aic32x4_hw_params(struct snd_
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u8 iface1_reg = 0;
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u8 dacsetup_reg = 0;
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- aic32x4_setup_clocks(component, params_rate(params), aic32x4->sysclk);
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+ aic32x4_setup_clocks(component, params_rate(params));
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switch (params_width(params)) {
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case 16:
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--- a/sound/soc/codecs/tlv320aic32x4.h
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+++ b/sound/soc/codecs/tlv320aic32x4.h
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@@ -211,7 +211,9 @@ int aic32x4_register_clocks(struct devic
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#define AIC32X4_DIV_MASK GENMASK(6, 0)
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/* Clock Limits */
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+#define AIC32X4_MAX_DOSR_FREQ 6200000
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+#define AIC32X4_MIN_DOSR_FREQ 2800000
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+#define AIC32X4_MAX_CODEC_CLKIN_FREQ 110000000
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#define AIC32X4_MAX_PLL_CLKIN 20000000
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-
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#endif /* _TLV320AIC32X4_H */
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