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@@ -245,6 +245,8 @@ static bool build_hw_curve_configuration(
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uint32_t segments = 0;
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uint32_t max_number;
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+ int8_t num_regions = 0;
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+
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bool result = false;
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if (!number_of_points) {
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@@ -273,6 +275,7 @@ static bool build_hw_curve_configuration(
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ASSERT(curve_config->segments[i] >= 0);
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segments += (1 << curve_config->segments[i]);
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+ ++num_regions;
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++i;
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}
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@@ -284,12 +287,14 @@ static bool build_hw_curve_configuration(
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uint32_t offset = 0;
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int8_t begin = curve_config->begin;
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int32_t region_number = 0;
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+ struct fixed31_32 magic_number =
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+ dal_fixed31_32_from_fraction(249, 1000);
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i = begin;
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while ((index < max_number) &&
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(region_number < max_regions_number) &&
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- (i <= 1)) {
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+ (i < (begin + num_regions))) {
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int32_t j = 0;
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segments = curve_config->segments[region_number];
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@@ -345,8 +350,7 @@ static bool build_hw_curve_configuration(
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divisor);
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points[index].x = region1;
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-
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- round_custom_float_6_12(points + index);
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+ points[index].adjusted_x = region1;
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++index;
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++region_number;
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@@ -366,9 +370,10 @@ static bool build_hw_curve_configuration(
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++i;
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}
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- points[index].x = region1;
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-
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- round_custom_float_6_12(points + index);
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+ points[index].x =
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+ dal_fixed31_32_add(region1, magic_number);
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+ points[index].adjusted_x =
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+ dal_fixed31_32_add(region1, magic_number);
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*number_of_points = index;
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@@ -1215,15 +1220,11 @@ static void rebuild_curve_configuration_magic(
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const struct hw_x_point *coordinates_x,
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uint32_t hw_points_num)
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{
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- const struct fixed31_32 magic_number =
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- dal_fixed31_32_from_fraction(249, 1000);
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-
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struct fixed31_32 y_r;
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struct fixed31_32 y_g;
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struct fixed31_32 y_b;
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struct fixed31_32 y1_min;
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- struct fixed31_32 y2_max;
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struct fixed31_32 y3_max;
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y_r = rgb_resulted[0].red;
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@@ -1238,29 +1239,31 @@ static void rebuild_curve_configuration_magic(
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arr_points[0].y,
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arr_points[0].x);
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- arr_points[1].x = dal_fixed31_32_add(
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- coordinates_x[hw_points_num - 1].adjusted_x,
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- magic_number);
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-
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- arr_points[2].x = arr_points[1].x;
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-
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- y_r = rgb_resulted[hw_points_num - 1].red;
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- y_g = rgb_resulted[hw_points_num - 1].green;
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- y_b = rgb_resulted[hw_points_num - 1].blue;
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-
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- y2_max = dal_fixed31_32_max(y_r, dal_fixed31_32_max(y_g, y_b));
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-
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- arr_points[1].y = y2_max;
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+ /* this should be cleaned up as it's confusing my understanding (KK) is
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+ * that REGAMMA_CNTLA_EXP_REGION_END is the X value for the region end
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+ * REGAMMA_CNTLA_EXP_REGION_END_BASE is Y value for the above X
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+ * REGAMMA_CNTLA_EXP_REGION_END_SLOPE is the slope beyond (X,Y) above
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+ * currently when programming REGION_END = m_arrPoints[1].x,
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+ * REGION_END_BASE = m_arrPoints[1].y, REGION_END_SLOPE=1
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+ * we don't use m_arrPoints[2] at all after this function,
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+ * and its purpose isn't clear to me
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+ */
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+ arr_points[1].x = coordinates_x[hw_points_num].adjusted_x;
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+ arr_points[2].x = coordinates_x[hw_points_num].adjusted_x;
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y_r = rgb_resulted[hw_points_num].red;
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y_g = rgb_resulted[hw_points_num].green;
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y_b = rgb_resulted[hw_points_num].blue;
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+ /* see comment above, m_arrPoints[1].y should be the Y value for the
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+ * region end (m_numOfHwPoints), not last HW point(m_numOfHwPoints - 1)
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+ */
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y3_max = dal_fixed31_32_max(y_r, dal_fixed31_32_max(y_g, y_b));
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+ arr_points[1].y = y3_max;
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arr_points[2].y = y3_max;
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- arr_points[2].slope = dal_fixed31_32_one;
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+ arr_points[2].slope = dal_fixed31_32_zero;
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}
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static bool convert_to_custom_float_format(
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