scaling_factor
uint32_t scaling_factor = 0;
scaling_factor = MAX_TG_COLOR_VALUE * (refresh_rate - min_refresh_rate) / (max_refresh_rate - min_refresh_rate);
pipe_ctx->visual_confirm_color.color_g_y = (uint16_t)scaling_factor;
struct fixed31_32 scaling_factor =
*out_y = dc_fixpt_mul(x, scaling_factor);
struct fixed31_32 scaling_factor =
x = dc_fixpt_mul(in_x, scaling_factor);
struct fixed31_32 scaling_factor = dc_fixpt_from_int(125);
de_pq_table[i] = dc_fixpt_mul(y, scaling_factor);
struct fixed31_32 scaling_factor =
x = dc_fixpt_mul(coord_x->x, scaling_factor);
struct fixed31_32 scaling_factor = dc_fixpt_from_int(125);
else if (dc_fixpt_lt(scaling_factor, output))
output = scaling_factor;
static u32 si_scale_power_for_smc(u32 power_in_watts, u32 scaling_factor)
u32 scaling_factor = si_get_smc_power_scaling_factor(adev);
if (scaling_factor == 0)
cpu_to_be32(si_scale_power_for_smc(tdp_limit, scaling_factor) * 1000);
cpu_to_be32(si_scale_power_for_smc(near_tdp_limit, scaling_factor) * 1000);
cpu_to_be32(si_scale_power_for_smc((near_tdp_limit * SISLANDS_DPM2_TDP_SAFE_LIMIT_PERCENT) / 100, scaling_factor) * 1000);
u32 scaling_factor;
scaling_factor = si_get_smc_power_scaling_factor(adev);
smc_leakage = si_scale_power_for_smc(leakage, scaling_factor) / 4;
u32 scaling_factor;
scaling_factor = si_get_smc_power_scaling_factor(adev);
smc_leakage = si_scale_power_for_smc(leakage, scaling_factor) / 4;
unsigned int scaling_factor)
0xe0, 0x80 | (scaling_factor << 5));
static u32 ni_scale_power_for_smc(u32 power_in_watts, u32 scaling_factor)
return (power_in_watts * scaling_factor) << 2;
u32 scaling_factor = ni_get_smc_power_scaling_factor(rdev);
if (scaling_factor == 0)
cpu_to_be32(ni_scale_power_for_smc(tdp_limit, scaling_factor));
cpu_to_be32(ni_scale_power_for_smc(near_tdp_limit, scaling_factor));
scaling_factor));
cpu_to_be32(ni_scale_power_for_smc(power_boost_limit, scaling_factor));
u32 scaling_factor;
scaling_factor = ni_get_smc_power_scaling_factor(rdev);
smc_leakage = ni_scale_power_for_smc(leakage, scaling_factor) / 1000;
u32 scaling_factor;
scaling_factor = ni_get_smc_power_scaling_factor(rdev);
cpu_to_be32(ni_scale_power_for_smc(smc_leakage, scaling_factor));
cpu_to_be32(ni_scale_power_for_smc(max_leakage, scaling_factor));
static u32 si_scale_power_for_smc(u32 power_in_watts, u32 scaling_factor)
u32 scaling_factor = si_get_smc_power_scaling_factor(rdev);
if (scaling_factor == 0)
cpu_to_be32(si_scale_power_for_smc(tdp_limit, scaling_factor) * 1000);
cpu_to_be32(si_scale_power_for_smc(near_tdp_limit, scaling_factor) * 1000);
cpu_to_be32(si_scale_power_for_smc((near_tdp_limit * SISLANDS_DPM2_TDP_SAFE_LIMIT_PERCENT) / 100, scaling_factor) * 1000);
u32 scaling_factor = si_get_smc_power_scaling_factor(rdev);
cpu_to_be32(si_scale_power_for_smc(rdev->pm.dpm.near_tdp_limit_adjusted, scaling_factor) * 1000);
cpu_to_be32(si_scale_power_for_smc((rdev->pm.dpm.near_tdp_limit_adjusted * SISLANDS_DPM2_TDP_SAFE_LIMIT_PERCENT) / 100, scaling_factor) * 1000);
u32 scaling_factor;
scaling_factor = si_get_smc_power_scaling_factor(rdev);
smc_leakage = si_scale_power_for_smc(leakage, scaling_factor) / 4;
u32 scaling_factor;
scaling_factor = si_get_smc_power_scaling_factor(rdev);
smc_leakage = si_scale_power_for_smc(leakage, scaling_factor) / 4;
int scaling_factor = INT_MIN;
scaling_factor = drm_rect_calc_hscale(¶ms->src, ¶ms->dst,
KUNIT_EXPECT_EQ(test, scaling_factor, params->expected_scaling_factor);
int scaling_factor = INT_MIN;
scaling_factor = drm_rect_calc_vscale(¶ms->src, ¶ms->dst,
KUNIT_EXPECT_EQ(test, scaling_factor, params->expected_scaling_factor);
u16 scaling_factor;
param->scaling_factor =
w *= param->scaling_factor;
static void translate_scaling_list(struct rkvdec_ctx *ctx, struct scaling_factor *output,
struct scaling_factor *scaling_factor,
translate_scaling_list(ctx, scaling_factor, scaling);
struct scaling_factor *scaling_factor,
struct scaling_factor scaling_list;
struct scaling_factor scaling_list;
struct scaling_factor scaling_list;
unsigned int cast_sum_bw, scaling_factor = 1, iw_gcd = 0;
scaling_factor = weightiness * bw[nid];
if (bw[nid] && sum_bw < scaling_factor) {
new_iw[nid] = scaling_factor / cast_sum_bw;