return result | fractional_part;
}
+static inline uint32_t clamp_ux_dy(
+ int64_t value,
+ uint32_t integer_bits,
+ uint32_t fractional_bits,
+ uint32_t min_clamp)
+{
+ uint32_t truncated_val = ux_dy(value, integer_bits, fractional_bits);
+
+ if (value >= (1LL << (integer_bits + FIXED31_32_BITS_PER_FRACTIONAL_PART)))
+ return (1 << (integer_bits + fractional_bits)) - 1;
+ else if (truncated_val > min_clamp)
+ return truncated_val;
+ else
+ return min_clamp;
+}
+
uint32_t dal_fixed31_32_u2d19(
struct fixed31_32 arg)
{
return ux_dy(arg.value, 0, 19);
}
-uint32_t dal_fixed31_32_u0d14(
+uint32_t dal_fixed31_32_clamp_u0d14(
struct fixed31_32 arg)
{
- return ux_dy(arg.value, 1, 14);
+ return clamp_ux_dy(arg.value, 0, 14, 1);
}
-uint32_t dal_fixed31_32_u0d10(
+uint32_t dal_fixed31_32_clamp_u0d10(
struct fixed31_32 arg)
{
- return ux_dy(arg.value, 1, 10);
+ return clamp_ux_dy(arg.value, 0, 10, 1);
}
}
if (fixpoint == true)
- arr_points[1].custom_float_y = dal_fixed31_32_u0d14(arr_points[1].y);
+ arr_points[1].custom_float_y = dal_fixed31_32_clamp_u0d14(arr_points[1].y);
else if (!convert_to_custom_float_format(arr_points[1].y, &fmt,
&arr_points[1].custom_float_y)) {
BREAK_TO_DEBUGGER();
rgb->delta_blue = dal_fixed31_32_sub(rgb_plus_1->blue, rgb->blue);
if (fixpoint == true) {
- rgb->delta_red_reg = dal_fixed31_32_u0d10(rgb->delta_red);
- rgb->delta_green_reg = dal_fixed31_32_u0d10(rgb->delta_green);
- rgb->delta_blue_reg = dal_fixed31_32_u0d10(rgb->delta_blue);
- rgb->red_reg = dal_fixed31_32_u0d14(rgb->red);
- rgb->green_reg = dal_fixed31_32_u0d14(rgb->green);
- rgb->blue_reg = dal_fixed31_32_u0d14(rgb->blue);
+ rgb->delta_red_reg = dal_fixed31_32_clamp_u0d10(rgb->delta_red);
+ rgb->delta_green_reg = dal_fixed31_32_clamp_u0d10(rgb->delta_green);
+ rgb->delta_blue_reg = dal_fixed31_32_clamp_u0d10(rgb->delta_blue);
+ rgb->red_reg = dal_fixed31_32_clamp_u0d14(rgb->red);
+ rgb->green_reg = dal_fixed31_32_clamp_u0d14(rgb->green);
+ rgb->blue_reg = dal_fixed31_32_clamp_u0d14(rgb->blue);
}
++rgb_plus_1;