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	drm: Add drm_fixp_from_fraction and drm_fixp2int_ceil
drm_fixp_from_fraction allows us to create a fixed point directly from a fraction, rather than creating fixed point values and dividing later. This avoids overflow of our 64 bit value for large numbers. drm_fixp2int_ceil allows us to return the ceiling of our fixed point value. [airlied: squash Jordan's fix] 32-bit-build-fix: Jordan Lazare <Jordan.Lazare@amd.com> Signed-off-by: Harry Wentland <harry.wentland@amd.com> Cc: stable@vger.kernel.org Reviewed-by: Alex Deucher <alexander.deucher@amd.com> Signed-off-by: Dave Airlie <airlied@redhat.com>
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					 1 changed files with 51 additions and 2 deletions
				
			
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					@ -73,18 +73,28 @@ static inline u32 dfixed_div(fixed20_12 A, fixed20_12 B)
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#define DRM_FIXED_ONE		(1ULL << DRM_FIXED_POINT)
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					#define DRM_FIXED_ONE		(1ULL << DRM_FIXED_POINT)
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#define DRM_FIXED_DECIMAL_MASK	(DRM_FIXED_ONE - 1)
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					#define DRM_FIXED_DECIMAL_MASK	(DRM_FIXED_ONE - 1)
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#define DRM_FIXED_DIGITS_MASK	(~DRM_FIXED_DECIMAL_MASK)
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					#define DRM_FIXED_DIGITS_MASK	(~DRM_FIXED_DECIMAL_MASK)
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					#define DRM_FIXED_EPSILON	1LL
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					#define DRM_FIXED_ALMOST_ONE	(DRM_FIXED_ONE - DRM_FIXED_EPSILON)
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static inline s64 drm_int2fixp(int a)
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					static inline s64 drm_int2fixp(int a)
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{
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					{
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	return ((s64)a) << DRM_FIXED_POINT;
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						return ((s64)a) << DRM_FIXED_POINT;
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}
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					}
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static inline int drm_fixp2int(int64_t a)
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					static inline int drm_fixp2int(s64 a)
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{
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					{
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	return ((s64)a) >> DRM_FIXED_POINT;
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						return ((s64)a) >> DRM_FIXED_POINT;
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}
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					}
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static inline unsigned drm_fixp_msbset(int64_t a)
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					static inline int drm_fixp2int_ceil(s64 a)
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					{
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						if (a > 0)
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							return drm_fixp2int(a + DRM_FIXED_ALMOST_ONE);
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						else
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							return drm_fixp2int(a - DRM_FIXED_ALMOST_ONE);
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					}
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					static inline unsigned drm_fixp_msbset(s64 a)
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{
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					{
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	unsigned shift, sign = (a >> 63) & 1;
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						unsigned shift, sign = (a >> 63) & 1;
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					@ -136,6 +146,45 @@ static inline s64 drm_fixp_div(s64 a, s64 b)
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	return result;
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						return result;
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}
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					}
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					static inline s64 drm_fixp_from_fraction(s64 a, s64 b)
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					{
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						s64 res;
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						bool a_neg = a < 0;
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						bool b_neg = b < 0;
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						u64 a_abs = a_neg ? -a : a;
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						u64 b_abs = b_neg ? -b : b;
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						u64 rem;
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						/* determine integer part */
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						u64 res_abs  = div64_u64_rem(a_abs, b_abs, &rem);
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						/* determine fractional part */
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						{
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							u32 i = DRM_FIXED_POINT;
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							do {
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								rem <<= 1;
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								res_abs <<= 1;
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								if (rem >= b_abs) {
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									res_abs |= 1;
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									rem -= b_abs;
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								}
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							} while (--i != 0);
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						}
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						/* round up LSB */
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						{
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							u64 summand = (rem << 1) >= b_abs;
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							res_abs += summand;
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						}
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						res = (s64) res_abs;
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						if (a_neg ^ b_neg)
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							res = -res;
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						return res;
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					}
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static inline s64 drm_fixp_exp(s64 x)
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					static inline s64 drm_fixp_exp(s64 x)
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{
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					{
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	s64 tolerance = div64_s64(DRM_FIXED_ONE, 1000000);
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						s64 tolerance = div64_s64(DRM_FIXED_ONE, 1000000);
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