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@@ -69,7 +69,7 @@ static int rockchip_mmc_get_phase(struct clk_hw *hw)
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delay_num = (raw_value & ROCKCHIP_MMC_DELAYNUM_MASK);
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delay_num = (raw_value & ROCKCHIP_MMC_DELAYNUM_MASK);
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delay_num >>= ROCKCHIP_MMC_DELAYNUM_OFFSET;
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delay_num >>= ROCKCHIP_MMC_DELAYNUM_OFFSET;
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- degrees += delay_num * factor / 10000;
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+ degrees += DIV_ROUND_CLOSEST(delay_num * factor, 10000);
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}
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}
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return degrees % 360;
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return degrees % 360;
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@@ -82,7 +82,7 @@ static int rockchip_mmc_set_phase(struct clk_hw *hw, int degrees)
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u8 nineties, remainder;
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u8 nineties, remainder;
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u8 delay_num;
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u8 delay_num;
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u32 raw_value;
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u32 raw_value;
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- u64 delay;
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+ u32 delay;
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nineties = degrees / 90;
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nineties = degrees / 90;
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remainder = (degrees % 90);
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remainder = (degrees % 90);
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@@ -110,12 +110,13 @@ static int rockchip_mmc_set_phase(struct clk_hw *hw, int degrees)
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* Convert to delay; do a little extra work to make sure we
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* Convert to delay; do a little extra work to make sure we
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* don't overflow 32-bit / 64-bit numbers.
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* don't overflow 32-bit / 64-bit numbers.
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*/
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*/
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- delay = PSECS_PER_SEC;
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+ delay = 10000000; /* PSECS_PER_SEC / 10000 / 10 */
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delay *= remainder;
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delay *= remainder;
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- do_div(delay, 10000);
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- do_div(delay, (rate / 1000) * 36 * ROCKCHIP_MMC_DELAY_ELEMENT_PSEC);
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+ delay = DIV_ROUND_CLOSEST(delay,
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+ (rate / 1000) * 36 *
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+ (ROCKCHIP_MMC_DELAY_ELEMENT_PSEC / 10));
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- delay_num = (u8) min(delay, 255ULL);
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+ delay_num = (u8) min_t(u32, delay, 255);
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raw_value = delay_num ? ROCKCHIP_MMC_DELAY_SEL : 0;
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raw_value = delay_num ? ROCKCHIP_MMC_DELAY_SEL : 0;
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raw_value |= delay_num << ROCKCHIP_MMC_DELAYNUM_OFFSET;
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raw_value |= delay_num << ROCKCHIP_MMC_DELAYNUM_OFFSET;
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