sseu->slice_mask = (fuse2 & GEN10_F2_S_ENA_MASK) >>
GEN10_F2_S_ENA_SHIFT;
- subslice_mask = (1 << 4) - 1;
- subslice_mask &= ~((fuse2 & GEN10_F2_SS_DIS_MASK) >>
- GEN10_F2_SS_DIS_SHIFT);
-
- /*
- * Slice0 can have up to 3 subslices, but there are only 2 in
- * slice1/2.
- */
- sseu->subslice_mask[0] = subslice_mask;
- for (s = 1; s < sseu->max_slices; s++)
- sseu->subslice_mask[s] = subslice_mask & 0x3;
-
/* Slice0 */
eu_en = ~I915_READ(GEN8_EU_DISABLE0);
for (ss = 0; ss < sseu->max_subslices; ss++)
eu_en = ~I915_READ(GEN10_EU_DISABLE3);
sseu_set_eus(sseu, 5, 1, eu_en & eu_mask);
- /* Do a second pass where we mark the subslices disabled if all their
- * eus are off.
- */
+ subslice_mask = (1 << 4) - 1;
+ subslice_mask &= ~((fuse2 & GEN10_F2_SS_DIS_MASK) >>
+ GEN10_F2_SS_DIS_SHIFT);
+
for (s = 0; s < sseu->max_slices; s++) {
+ u32 subslice_mask_with_eus = subslice_mask;
+
for (ss = 0; ss < sseu->max_subslices; ss++) {
if (sseu_get_eus(sseu, s, ss) == 0)
- sseu->subslice_mask[s] &= ~BIT(ss);
+ subslice_mask_with_eus &= ~BIT(ss);
}
+
+ /*
+ * Slice0 can have up to 3 subslices, but there are only 2 in
+ * slice1/2.
+ */
+ sseu->subslice_mask[s] = s == 0 ? subslice_mask_with_eus :
+ subslice_mask_with_eus & 0x3;
}
sseu->eu_total = compute_eu_total(sseu);
{
struct sseu_dev_info *sseu = &RUNTIME_INFO(dev_priv)->sseu;
u32 fuse;
+ u8 subslice_mask = 0;
fuse = I915_READ(CHV_FUSE_GT);
(((fuse & CHV_FGT_EU_DIS_SS0_R1_MASK) >>
CHV_FGT_EU_DIS_SS0_R1_SHIFT) << 4);
- sseu->subslice_mask[0] |= BIT(0);
+ subslice_mask |= BIT(0);
sseu_set_eus(sseu, 0, 0, ~disabled_mask);
}
(((fuse & CHV_FGT_EU_DIS_SS1_R1_MASK) >>
CHV_FGT_EU_DIS_SS1_R1_SHIFT) << 4);
- sseu->subslice_mask[0] |= BIT(1);
+ subslice_mask |= BIT(1);
sseu_set_eus(sseu, 0, 1, ~disabled_mask);
}
+ sseu->subslice_mask[0] = subslice_mask;
+
sseu->eu_total = compute_eu_total(sseu);
/*
{
struct sseu_dev_info *sseu = &RUNTIME_INFO(dev_priv)->sseu;
u32 fuse1;
+ u8 subslice_mask = 0;
int s, ss;
/*
/* fall through */
case 1:
sseu->slice_mask = BIT(0);
- sseu->subslice_mask[0] = BIT(0);
+ subslice_mask = BIT(0);
break;
case 2:
sseu->slice_mask = BIT(0);
- sseu->subslice_mask[0] = BIT(0) | BIT(1);
+ subslice_mask = BIT(0) | BIT(1);
break;
case 3:
sseu->slice_mask = BIT(0) | BIT(1);
- sseu->subslice_mask[0] = BIT(0) | BIT(1);
- sseu->subslice_mask[1] = BIT(0) | BIT(1);
+ subslice_mask = BIT(0) | BIT(1);
break;
}
}
intel_sseu_set_info(sseu, hweight8(sseu->slice_mask),
- hweight8(sseu->subslice_mask[0]),
+ hweight8(subslice_mask),
sseu->eu_per_subslice);
for (s = 0; s < sseu->max_slices; s++) {
+ sseu->subslice_mask[s] = subslice_mask;
+
for (ss = 0; ss < sseu->max_subslices; ss++) {
sseu_set_eus(sseu, s, ss,
(1UL << sseu->eu_per_subslice) - 1);