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ASoC: PLL computation in TLV320AIC3x SoC driver
fix precision of PLL computation for TLV320AIC3x SoC driver, test results are at http://pmeerw.net/clk Signed-off-by: Peter Meerwald <pmeerw@pmeerw.net> Acked-by: Vladimir Barinov <vova.barinov@gmail.com> Acked-by: Liam Girdwood <lrg@slimlogic.co.uk> Signed-off-by: Mark Brown <broonie@opensource.wolfsonmicro.com>
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@ -765,9 +765,10 @@ static int aic3x_hw_params(struct snd_pcm_substream *substream,
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struct snd_soc_codec *codec = socdev->card->codec;
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struct aic3x_priv *aic3x = codec->private_data;
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int codec_clk = 0, bypass_pll = 0, fsref, last_clk = 0;
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u8 data, r, p, pll_q, pll_p = 1, pll_r = 1, pll_j = 1;
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u16 pll_d = 1;
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u8 data, j, r, p, pll_q, pll_p = 1, pll_r = 1, pll_j = 1;
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u16 d, pll_d = 1;
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u8 reg;
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int clk;
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/* select data word length */
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data =
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@ -833,48 +834,70 @@ static int aic3x_hw_params(struct snd_pcm_substream *substream,
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if (bypass_pll)
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return 0;
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/* Use PLL
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* find an apropriate setup for j, d, r and p by iterating over
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* p and r - j and d are calculated for each fraction.
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* Up to 128 values are probed, the closest one wins the game.
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/* Use PLL, compute apropriate setup for j, d, r and p, the closest
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* one wins the game. Try with d==0 first, next with d!=0.
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* Constraints for j are according to the datasheet.
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* The sysclk is divided by 1000 to prevent integer overflows.
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*/
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codec_clk = (2048 * fsref) / (aic3x->sysclk / 1000);
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for (r = 1; r <= 16; r++)
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for (p = 1; p <= 8; p++) {
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int clk, tmp = (codec_clk * pll_r * 10) / pll_p;
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u8 j = tmp / 10000;
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u16 d = tmp % 10000;
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for (j = 4; j <= 55; j++) {
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/* This is actually 1000*((j+(d/10000))*r)/p
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* The term had to be converted to get
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* rid of the division by 10000; d = 0 here
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*/
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int clk = (1000 * j * r) / p;
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if (j > 63)
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continue;
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/* Check whether this values get closer than
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* the best ones we had before
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*/
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if (abs(codec_clk - clk) <
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abs(codec_clk - last_clk)) {
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pll_j = j; pll_d = 0;
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pll_r = r; pll_p = p;
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last_clk = clk;
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}
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if (d != 0 && aic3x->sysclk < 10000000)
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continue;
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/* This is actually 1000 * ((j + (d/10000)) * r) / p
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* The term had to be converted to get rid of the
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* division by 10000 */
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clk = ((10000 * j * r) + (d * r)) / (10 * p);
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/* check whether this values get closer than the best
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* ones we had before */
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if (abs(codec_clk - clk) < abs(codec_clk - last_clk)) {
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pll_j = j; pll_d = d; pll_r = r; pll_p = p;
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last_clk = clk;
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/* Early exit for exact matches */
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if (clk == codec_clk)
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goto found;
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}
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/* Early exit for exact matches */
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if (clk == codec_clk)
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break;
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}
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/* try with d != 0 */
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for (p = 1; p <= 8; p++) {
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j = codec_clk * p / 1000;
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if (j < 4 || j > 11)
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continue;
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/* do not use codec_clk here since we'd loose precision */
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d = ((2048 * p * fsref) - j * aic3x->sysclk)
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* 100 / (aic3x->sysclk/100);
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clk = (10000 * j + d) / (10 * p);
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/* check whether this values get closer than the best
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* ones we had before */
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if (abs(codec_clk - clk) < abs(codec_clk - last_clk)) {
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pll_j = j; pll_d = d; pll_r = 1; pll_p = p;
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last_clk = clk;
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}
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/* Early exit for exact matches */
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if (clk == codec_clk)
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goto found;
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}
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if (last_clk == 0) {
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printk(KERN_ERR "%s(): unable to setup PLL\n", __func__);
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return -EINVAL;
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}
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found:
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data = aic3x_read_reg_cache(codec, AIC3X_PLL_PROGA_REG);
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aic3x_write(codec, AIC3X_PLL_PROGA_REG, data | (pll_p << PLLP_SHIFT));
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aic3x_write(codec, AIC3X_OVRF_STATUS_AND_PLLR_REG, pll_r << PLLR_SHIFT);
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