/*
* When using limited range, multiply the matrix given by userspace by
- * the matrix that we would use for the limited range. We do the
- * multiplication in U2.30 format.
+ * the matrix that we would use for the limited range.
*/
-static void ctm_mult_by_limited(uint64_t *result, int64_t *input)
+static void ctm_mult_by_limited(u64 *result, const u64 *input)
{
int i;
- for (i = 0; i < 9; i++)
- result[i] = 0;
+ for (i = 0; i < 9; i++) {
+ u64 user_coeff = input[i];
+ u32 limited_coeff = CTM_COEFF_LIMITED_RANGE;
+ u32 abs_coeff = clamp_val(CTM_COEFF_ABS(user_coeff), 0,
+ CTM_COEFF_4_0 - 1) >> 2;
- for (i = 0; i < 3; i++) {
- int64_t user_coeff = input[i * 3 + i];
- uint64_t limited_coeff = CTM_COEFF_LIMITED_RANGE >> 2;
- uint64_t abs_coeff = clamp_val(CTM_COEFF_ABS(user_coeff),
- 0,
- CTM_COEFF_4_0 - 1) >> 2;
-
- result[i * 3 + i] = (limited_coeff * abs_coeff) >> 27;
- if (CTM_COEFF_NEGATIVE(user_coeff))
- result[i * 3 + i] |= CTM_COEFF_SIGN;
+ /*
+ * By scaling every co-efficient with limited range (16-235)
+ * vs full range (0-255) the final o/p will be scaled down to
+ * fit in the limited range supported by the panel.
+ */
+ result[i] = mul_u32_u32(limited_coeff, abs_coeff) >> 30;
+ result[i] |= user_coeff & CTM_COEFF_SIGN;
}
}