diff options
Diffstat (limited to 'sound/soc/codecs/madera.c')
-rw-r--r-- | sound/soc/codecs/madera.c | 531 |
1 files changed, 522 insertions, 9 deletions
diff --git a/sound/soc/codecs/madera.c b/sound/soc/codecs/madera.c index 1b1be19a2f99..52639811cc52 100644 --- a/sound/soc/codecs/madera.c +++ b/sound/soc/codecs/madera.c @@ -87,6 +87,16 @@ #define MADERA_FLLAO_MIN_N 4 #define MADERA_FLLAO_MAX_N 1023 #define MADERA_FLLAO_MAX_FBDIV 254 +#define MADERA_FLLHJ_INT_MAX_N 1023 +#define MADERA_FLLHJ_INT_MIN_N 1 +#define MADERA_FLLHJ_FRAC_MAX_N 255 +#define MADERA_FLLHJ_FRAC_MIN_N 4 +#define MADERA_FLLHJ_LOW_THRESH 192000 +#define MADERA_FLLHJ_MID_THRESH 1152000 +#define MADERA_FLLHJ_MAX_THRESH 13000000 +#define MADERA_FLLHJ_LOW_GAINS 0x23f0 +#define MADERA_FLLHJ_MID_GAINS 0x22f2 +#define MADERA_FLLHJ_HIGH_GAINS 0x21f0 #define MADERA_FLL_SYNCHRONISER_OFFS 0x10 #define CS47L35_FLL_SYNCHRONISER_OFFS 0xE @@ -96,6 +106,7 @@ #define MADERA_FLL_CONTROL_4_OFFS 0x4 #define MADERA_FLL_CONTROL_5_OFFS 0x5 #define MADERA_FLL_CONTROL_6_OFFS 0x6 +#define MADERA_FLL_GAIN_OFFS 0x8 #define MADERA_FLL_CONTROL_7_OFFS 0x9 #define MADERA_FLL_EFS_2_OFFS 0xA #define MADERA_FLL_SYNCHRONISER_1_OFFS 0x1 @@ -107,6 +118,9 @@ #define MADERA_FLL_SYNCHRONISER_7_OFFS 0x7 #define MADERA_FLL_SPREAD_SPECTRUM_OFFS 0x9 #define MADERA_FLL_GPIO_CLOCK_OFFS 0xA +#define MADERA_FLL_CONTROL_10_OFFS 0xA +#define MADERA_FLL_CONTROL_11_OFFS 0xB +#define MADERA_FLL1_DIGITAL_TEST_1_OFFS 0xD #define MADERA_FLLAO_CONTROL_1_OFFS 0x1 #define MADERA_FLLAO_CONTROL_2_OFFS 0x2 @@ -300,6 +314,100 @@ int madera_free_overheat(struct madera_priv *priv) } EXPORT_SYMBOL_GPL(madera_free_overheat); +static int madera_get_variable_u32_array(struct device *dev, + const char *propname, + u32 *dest, int n_max, + int multiple) +{ + int n, ret; + + n = device_property_count_u32(dev, propname); + if (n < 0) { + if (n == -EINVAL) + return 0; /* missing, ignore */ + + dev_warn(dev, "%s malformed (%d)\n", propname, n); + + return n; + } else if ((n % multiple) != 0) { + dev_warn(dev, "%s not a multiple of %d entries\n", + propname, multiple); + + return -EINVAL; + } + + if (n > n_max) + n = n_max; + + ret = device_property_read_u32_array(dev, propname, dest, n); + if (ret < 0) + return ret; + + return n; +} + +static void madera_prop_get_inmode(struct madera_priv *priv) +{ + struct madera *madera = priv->madera; + struct madera_codec_pdata *pdata = &madera->pdata.codec; + u32 tmp[MADERA_MAX_INPUT * MADERA_MAX_MUXED_CHANNELS]; + int n, i, in_idx, ch_idx; + + BUILD_BUG_ON(ARRAY_SIZE(pdata->inmode) != MADERA_MAX_INPUT); + BUILD_BUG_ON(ARRAY_SIZE(pdata->inmode[0]) != MADERA_MAX_MUXED_CHANNELS); + + n = madera_get_variable_u32_array(madera->dev, "cirrus,inmode", + tmp, ARRAY_SIZE(tmp), + MADERA_MAX_MUXED_CHANNELS); + if (n < 0) + return; + + in_idx = 0; + ch_idx = 0; + for (i = 0; i < n; ++i) { + pdata->inmode[in_idx][ch_idx] = tmp[i]; + + if (++ch_idx == MADERA_MAX_MUXED_CHANNELS) { + ch_idx = 0; + ++in_idx; + } + } +} + +static void madera_prop_get_pdata(struct madera_priv *priv) +{ + struct madera *madera = priv->madera; + struct madera_codec_pdata *pdata = &madera->pdata.codec; + u32 out_mono[ARRAY_SIZE(pdata->out_mono)]; + int i, n; + + madera_prop_get_inmode(priv); + + n = madera_get_variable_u32_array(madera->dev, "cirrus,out-mono", + out_mono, ARRAY_SIZE(out_mono), 1); + if (n > 0) + for (i = 0; i < n; ++i) + pdata->out_mono[i] = !!out_mono[i]; + + madera_get_variable_u32_array(madera->dev, + "cirrus,max-channels-clocked", + pdata->max_channels_clocked, + ARRAY_SIZE(pdata->max_channels_clocked), + 1); + + madera_get_variable_u32_array(madera->dev, "cirrus,pdm-fmt", + pdata->pdm_fmt, + ARRAY_SIZE(pdata->pdm_fmt), 1); + + madera_get_variable_u32_array(madera->dev, "cirrus,pdm-mute", + pdata->pdm_mute, + ARRAY_SIZE(pdata->pdm_mute), 1); + + madera_get_variable_u32_array(madera->dev, "cirrus,dmic-ref", + pdata->dmic_ref, + ARRAY_SIZE(pdata->dmic_ref), 1); +} + int madera_core_init(struct madera_priv *priv) { int i; @@ -308,6 +416,9 @@ int madera_core_init(struct madera_priv *priv) BUILD_BUG_ON(!madera_mixer_texts[MADERA_NUM_MIXER_INPUTS - 1]); BUILD_BUG_ON(!madera_mixer_values[MADERA_NUM_MIXER_INPUTS - 1]); + if (!dev_get_platdata(priv->madera->dev)) + madera_prop_get_pdata(priv); + mutex_init(&priv->rate_lock); for (i = 0; i < MADERA_MAX_HP_OUTPUT; i++) @@ -944,6 +1055,10 @@ static void madera_configure_input_mode(struct madera *madera) int max_analogue_inputs, max_dmic_sup, i; switch (madera->type) { + case CS47L15: + max_analogue_inputs = 1; + max_dmic_sup = 2; + break; case CS47L35: max_analogue_inputs = 2; max_dmic_sup = 2; @@ -1770,6 +1885,18 @@ const struct soc_enum madera_asrc1_rate[] = { }; EXPORT_SYMBOL_GPL(madera_asrc1_rate); +const struct soc_enum madera_asrc1_bidir_rate[] = { + SOC_VALUE_ENUM_SINGLE(MADERA_ASRC1_RATE1, + MADERA_ASRC1_RATE1_SHIFT, 0xf, + MADERA_RATE_ENUM_SIZE, + madera_rate_text, madera_rate_val), + SOC_VALUE_ENUM_SINGLE(MADERA_ASRC1_RATE2, + MADERA_ASRC1_RATE2_SHIFT, 0xf, + MADERA_RATE_ENUM_SIZE, + madera_rate_text, madera_rate_val), +}; +EXPORT_SYMBOL_GPL(madera_asrc1_bidir_rate); + const struct soc_enum madera_asrc2_rate[] = { SOC_VALUE_ENUM_SINGLE(MADERA_ASRC2_RATE1, MADERA_ASRC2_RATE1_SHIFT, 0xf, @@ -2149,6 +2276,9 @@ int madera_out_ev(struct snd_soc_dapm_widget *w, switch (madera->type) { case CS47L90: case CS47L91: + case CS42L92: + case CS47L92: + case CS47L93: out_up_delay = 6; break; default: @@ -2264,9 +2394,17 @@ int madera_hp_ev(struct snd_soc_dapm_widget *w, madera->hp_ena &= ~mask; madera->hp_ena |= val; - /* if OUT1 is routed to EPOUT, ignore HP clamp and impedance */ - regmap_read(madera->regmap, MADERA_OUTPUT_ENABLES_1, &ep_sel); - ep_sel &= MADERA_EP_SEL_MASK; + switch (madera->type) { + case CS42L92: + case CS47L92: + case CS47L93: + break; + default: + /* if OUT1 is routed to EPOUT, ignore HP clamp and impedance */ + regmap_read(madera->regmap, MADERA_OUTPUT_ENABLES_1, &ep_sel); + ep_sel &= MADERA_EP_SEL_MASK; + break; + } /* Force off if HPDET has disabled the clamp for this output */ if (!ep_sel && @@ -2442,6 +2580,58 @@ static int madera_get_dspclk_setting(struct madera *madera, } } +static int madera_set_outclk(struct snd_soc_component *component, + unsigned int source, unsigned int freq) +{ + int div, div_inc, rate; + + switch (source) { + case MADERA_OUTCLK_SYSCLK: + dev_dbg(component->dev, "Configured OUTCLK to SYSCLK\n"); + snd_soc_component_update_bits(component, MADERA_OUTPUT_RATE_1, + MADERA_OUT_CLK_SRC_MASK, source); + return 0; + case MADERA_OUTCLK_ASYNCCLK: + dev_dbg(component->dev, "Configured OUTCLK to ASYNCCLK\n"); + snd_soc_component_update_bits(component, MADERA_OUTPUT_RATE_1, + MADERA_OUT_CLK_SRC_MASK, source); + return 0; + case MADERA_OUTCLK_MCLK1: + case MADERA_OUTCLK_MCLK2: + case MADERA_OUTCLK_MCLK3: + break; + default: + return -EINVAL; + } + + if (freq % 4000) + rate = 5644800; + else + rate = 6144000; + + div = 1; + div_inc = 0; + while (div <= 8) { + if (freq / div == rate && !(freq % div)) { + dev_dbg(component->dev, "Configured %dHz OUTCLK\n", rate); + snd_soc_component_update_bits(component, + MADERA_OUTPUT_RATE_1, + MADERA_OUT_EXT_CLK_DIV_MASK | + MADERA_OUT_CLK_SRC_MASK, + (div_inc << MADERA_OUT_EXT_CLK_DIV_SHIFT) | + source); + return 0; + } + div_inc++; + div *= 2; + } + + dev_err(component->dev, + "Unable to generate %dHz OUTCLK from %dHz MCLK\n", + rate, freq); + return -EINVAL; +} + int madera_set_sysclk(struct snd_soc_component *component, int clk_id, int source, unsigned int freq, int dir) { @@ -2478,6 +2668,8 @@ int madera_set_sysclk(struct snd_soc_component *component, int clk_id, case MADERA_CLK_OPCLK: case MADERA_CLK_ASYNC_OPCLK: return madera_set_opclk(component, clk_id, freq); + case MADERA_CLK_OUTCLK: + return madera_set_outclk(component, source, freq); default: return -EINVAL; } @@ -2691,6 +2883,10 @@ static const unsigned int madera_sr_vals[] = { #define MADERA_192K_44K1_RATE_MASK 0x003E00 #define MADERA_192K_RATE_MASK (MADERA_192K_48K_RATE_MASK | \ MADERA_192K_44K1_RATE_MASK) +#define MADERA_384K_48K_RATE_MASK 0x0F007E +#define MADERA_384K_44K1_RATE_MASK 0x007E00 +#define MADERA_384K_RATE_MASK (MADERA_384K_48K_RATE_MASK | \ + MADERA_384K_44K1_RATE_MASK) static const struct snd_pcm_hw_constraint_list madera_constraint = { .count = ARRAY_SIZE(madera_sr_vals), @@ -2703,6 +2899,7 @@ static int madera_startup(struct snd_pcm_substream *substream, struct snd_soc_component *component = dai->component; struct madera_priv *priv = snd_soc_component_get_drvdata(component); struct madera_dai_priv *dai_priv = &priv->dai[dai->id - 1]; + struct madera *madera = priv->madera; unsigned int base_rate; if (!substream->runtime) @@ -2722,12 +2919,26 @@ static int madera_startup(struct snd_pcm_substream *substream, return 0; } - if (base_rate == 0) - dai_priv->constraint.mask = MADERA_192K_RATE_MASK; - else if (base_rate % 4000) - dai_priv->constraint.mask = MADERA_192K_44K1_RATE_MASK; - else - dai_priv->constraint.mask = MADERA_192K_48K_RATE_MASK; + switch (madera->type) { + case CS42L92: + case CS47L92: + case CS47L93: + if (base_rate == 0) + dai_priv->constraint.mask = MADERA_384K_RATE_MASK; + else if (base_rate % 4000) + dai_priv->constraint.mask = MADERA_384K_44K1_RATE_MASK; + else + dai_priv->constraint.mask = MADERA_384K_48K_RATE_MASK; + break; + default: + if (base_rate == 0) + dai_priv->constraint.mask = MADERA_192K_RATE_MASK; + else if (base_rate % 4000) + dai_priv->constraint.mask = MADERA_192K_44K1_RATE_MASK; + else + dai_priv->constraint.mask = MADERA_192K_48K_RATE_MASK; + break; + } return snd_pcm_hw_constraint_list(substream->runtime, 0, SNDRV_PCM_HW_PARAM_RATE, @@ -4048,6 +4259,308 @@ int madera_set_fll_ao_refclk(struct madera_fll *fll, int source, } EXPORT_SYMBOL_GPL(madera_set_fll_ao_refclk); +static int madera_fllhj_disable(struct madera_fll *fll) +{ + struct madera *madera = fll->madera; + bool change; + + madera_fll_dbg(fll, "Disabling FLL\n"); + + /* Disable lockdet, but don't set ctrl_upd update but. This allows the + * lock status bit to clear as normal, but should the FLL be enabled + * again due to a control clock being required, the lock won't re-assert + * as the FLL config registers are automatically applied when the FLL + * enables. + */ + regmap_update_bits(madera->regmap, + fll->base + MADERA_FLL_CONTROL_11_OFFS, + MADERA_FLL1_LOCKDET_MASK, 0); + regmap_update_bits(madera->regmap, + fll->base + MADERA_FLL_CONTROL_1_OFFS, + MADERA_FLL1_HOLD_MASK, MADERA_FLL1_HOLD_MASK); + regmap_update_bits_check(madera->regmap, + fll->base + MADERA_FLL_CONTROL_1_OFFS, + MADERA_FLL1_ENA_MASK, 0, &change); + + madera_wait_for_fll(fll, false); + + /* ctrl_up gates the writes to all the fll's registers, setting it to 0 + * here ensures that after a runtime suspend/resume cycle when one + * enables the fll then ctrl_up is the last bit that is configured + * by the fll enable code rather than the cache sync operation which + * would have updated it much earlier before writing out all fll + * registers + */ + regmap_update_bits(madera->regmap, + fll->base + MADERA_FLL_CONTROL_2_OFFS, + MADERA_FLL1_CTRL_UPD_MASK, 0); + + if (change) + pm_runtime_put_autosuspend(madera->dev); + + return 0; +} + +static int madera_fllhj_apply(struct madera_fll *fll, int fin) +{ + struct madera *madera = fll->madera; + int refdiv, fref, fout, lockdet_thr, fbdiv, hp, fast_clk, fllgcd; + bool frac = false; + unsigned int fll_n, min_n, max_n, ratio, theta, lambda; + unsigned int gains, val, num; + + madera_fll_dbg(fll, "fin=%d, fout=%d\n", fin, fll->fout); + + for (refdiv = 0; refdiv < 4; refdiv++) + if ((fin / (1 << refdiv)) <= MADERA_FLLHJ_MAX_THRESH) + break; + + fref = fin / (1 << refdiv); + + /* Use simple heuristic approach to find a configuration that + * should work for most input clocks. + */ + fast_clk = 0; + fout = fll->fout; + frac = fout % fref; + + if (fref < MADERA_FLLHJ_LOW_THRESH) { + lockdet_thr = 2; + gains = MADERA_FLLHJ_LOW_GAINS; + if (frac) + fbdiv = 256; + else + fbdiv = 4; + } else if (fref < MADERA_FLLHJ_MID_THRESH) { + lockdet_thr = 8; + gains = MADERA_FLLHJ_MID_GAINS; + fbdiv = 1; + } else { + lockdet_thr = 8; + gains = MADERA_FLLHJ_HIGH_GAINS; + fbdiv = 1; + /* For high speed input clocks, enable 300MHz fast oscillator + * when we're in fractional divider mode. + */ + if (frac) { + fast_clk = 0x3; + fout = fll->fout * 6; + } + } + /* Use high performance mode for fractional configurations. */ + if (frac) { + hp = 0x3; + min_n = MADERA_FLLHJ_FRAC_MIN_N; + max_n = MADERA_FLLHJ_FRAC_MAX_N; + } else { + hp = 0x0; + min_n = MADERA_FLLHJ_INT_MIN_N; + max_n = MADERA_FLLHJ_INT_MAX_N; + } + + ratio = fout / fref; + + madera_fll_dbg(fll, "refdiv=%d, fref=%d, frac:%d\n", + refdiv, fref, frac); + + while (ratio / fbdiv < min_n) { + fbdiv /= 2; + if (fbdiv < 1) { + madera_fll_err(fll, "FBDIV (%d) must be >= 1\n", fbdiv); + return -EINVAL; + } + } + while (frac && (ratio / fbdiv > max_n)) { + fbdiv *= 2; + if (fbdiv >= 1024) { + madera_fll_err(fll, "FBDIV (%u) >= 1024\n", fbdiv); + return -EINVAL; + } + } + + madera_fll_dbg(fll, "lockdet=%d, hp=0x%x, fbdiv:%d\n", + lockdet_thr, hp, fbdiv); + + /* Calculate N.K values */ + fllgcd = gcd(fout, fbdiv * fref); + num = fout / fllgcd; + lambda = (fref * fbdiv) / fllgcd; + fll_n = num / lambda; + theta = num % lambda; + + madera_fll_dbg(fll, "fll_n=%d, gcd=%d, theta=%d, lambda=%d\n", + fll_n, fllgcd, theta, lambda); + + /* Some sanity checks before any registers are written. */ + if (fll_n < min_n || fll_n > max_n) { + madera_fll_err(fll, "N not in valid %s mode range %d-%d: %d\n", + frac ? "fractional" : "integer", min_n, max_n, + fll_n); + return -EINVAL; + } + if (fbdiv < 1 || (frac && fbdiv >= 1024) || (!frac && fbdiv >= 256)) { + madera_fll_err(fll, "Invalid fbdiv for %s mode (%u)\n", + frac ? "fractional" : "integer", fbdiv); + return -EINVAL; + } + + /* clear the ctrl_upd bit to guarantee we write to it later. */ + regmap_write(madera->regmap, + fll->base + MADERA_FLL_CONTROL_2_OFFS, + fll_n << MADERA_FLL1_N_SHIFT); + regmap_update_bits(madera->regmap, + fll->base + MADERA_FLL_CONTROL_3_OFFS, + MADERA_FLL1_THETA_MASK, + theta << MADERA_FLL1_THETA_SHIFT); + regmap_update_bits(madera->regmap, + fll->base + MADERA_FLL_CONTROL_4_OFFS, + MADERA_FLL1_LAMBDA_MASK, + lambda << MADERA_FLL1_LAMBDA_SHIFT); + regmap_update_bits(madera->regmap, + fll->base + MADERA_FLL_CONTROL_5_OFFS, + MADERA_FLL1_FB_DIV_MASK, + fbdiv << MADERA_FLL1_FB_DIV_SHIFT); + regmap_update_bits(madera->regmap, + fll->base + MADERA_FLL_CONTROL_6_OFFS, + MADERA_FLL1_REFCLK_DIV_MASK, + refdiv << MADERA_FLL1_REFCLK_DIV_SHIFT); + regmap_update_bits(madera->regmap, + fll->base + MADERA_FLL_GAIN_OFFS, + 0xffff, + gains); + val = hp << MADERA_FLL1_HP_SHIFT; + val |= 1 << MADERA_FLL1_PHASEDET_ENA_SHIFT; + regmap_update_bits(madera->regmap, + fll->base + MADERA_FLL_CONTROL_10_OFFS, + MADERA_FLL1_HP_MASK | MADERA_FLL1_PHASEDET_ENA_MASK, + val); + regmap_update_bits(madera->regmap, + fll->base + MADERA_FLL_CONTROL_11_OFFS, + MADERA_FLL1_LOCKDET_THR_MASK, + lockdet_thr << MADERA_FLL1_LOCKDET_THR_SHIFT); + regmap_update_bits(madera->regmap, + fll->base + MADERA_FLL1_DIGITAL_TEST_1_OFFS, + MADERA_FLL1_SYNC_EFS_ENA_MASK | + MADERA_FLL1_CLK_VCO_FAST_SRC_MASK, + fast_clk); + + return 0; +} + +static int madera_fllhj_enable(struct madera_fll *fll) +{ + struct madera *madera = fll->madera; + int already_enabled = madera_is_enabled_fll(fll, fll->base); + int ret; + + if (already_enabled < 0) + return already_enabled; + + if (!already_enabled) + pm_runtime_get_sync(madera->dev); + + madera_fll_dbg(fll, "Enabling FLL, initially %s\n", + already_enabled ? "enabled" : "disabled"); + + /* FLLn_HOLD must be set before configuring any registers */ + regmap_update_bits(fll->madera->regmap, + fll->base + MADERA_FLL_CONTROL_1_OFFS, + MADERA_FLL1_HOLD_MASK, + MADERA_FLL1_HOLD_MASK); + + /* Apply refclk */ + ret = madera_fllhj_apply(fll, fll->ref_freq); + if (ret) { + madera_fll_err(fll, "Failed to set FLL: %d\n", ret); + goto out; + } + regmap_update_bits(madera->regmap, + fll->base + MADERA_FLL_CONTROL_1_OFFS, + CS47L92_FLL1_REFCLK_SRC_MASK, + fll->ref_src << CS47L92_FLL1_REFCLK_SRC_SHIFT); + + regmap_update_bits(madera->regmap, + fll->base + MADERA_FLL_CONTROL_1_OFFS, + MADERA_FLL1_ENA_MASK, + MADERA_FLL1_ENA_MASK); + +out: + regmap_update_bits(madera->regmap, + fll->base + MADERA_FLL_CONTROL_11_OFFS, + MADERA_FLL1_LOCKDET_MASK, + MADERA_FLL1_LOCKDET_MASK); + + regmap_update_bits(madera->regmap, + fll->base + MADERA_FLL_CONTROL_2_OFFS, + MADERA_FLL1_CTRL_UPD_MASK, + MADERA_FLL1_CTRL_UPD_MASK); + + /* Release the hold so that flln locks to external frequency */ + regmap_update_bits(madera->regmap, + fll->base + MADERA_FLL_CONTROL_1_OFFS, + MADERA_FLL1_HOLD_MASK, + 0); + + if (!already_enabled) + madera_wait_for_fll(fll, true); + + return 0; +} + +static int madera_fllhj_validate(struct madera_fll *fll, + unsigned int ref_in, + unsigned int fout) +{ + if (fout && !ref_in) { + madera_fll_err(fll, "fllout set without valid input clk\n"); + return -EINVAL; + } + + if (fll->fout && fout != fll->fout) { + madera_fll_err(fll, "Can't change output on active FLL\n"); + return -EINVAL; + } + + if (ref_in / MADERA_FLL_MAX_REFDIV > MADERA_FLLHJ_MAX_THRESH) { + madera_fll_err(fll, "Can't scale %dMHz to <=13MHz\n", ref_in); + return -EINVAL; + } + + return 0; +} + +int madera_fllhj_set_refclk(struct madera_fll *fll, int source, + unsigned int fin, unsigned int fout) +{ + int ret = 0; + + /* To remain consistent with previous FLLs, we expect fout to be + * provided in the form of the required sysclk rate, which is + * 2x the calculated fll out. + */ + if (fout) + fout /= 2; + + if (fll->ref_src == source && fll->ref_freq == fin && + fll->fout == fout) + return 0; + + if (fin && fout && madera_fllhj_validate(fll, fin, fout)) + return -EINVAL; + + fll->ref_src = source; + fll->ref_freq = fin; + fll->fout = fout; + + if (fout) + ret = madera_fllhj_enable(fll); + else + madera_fllhj_disable(fll); + + return ret; +} +EXPORT_SYMBOL_GPL(madera_fllhj_set_refclk); + /** * madera_set_output_mode - Set the mode of the specified output * |