FILL_SREG(-4,-4, 4, 4, 0, 0, 0, 0); /* S2 & S3 fields are not used by 2x MSAA */
static const uint64_t centroid_priority_2x = 0x1010101010101010ull;
-/* 4x MSAA */
-static const uint32_t sample_locs_4x =
- FILL_SREG(-2,-6, 2, 6, -6, 2, 6,-2);
-static const uint64_t centroid_priority_4x = 0x3210321032103210ull;
-
/* 8x MSAA */
static const uint32_t sample_locs_8x[] = {
FILL_SREG(-3,-5, 5, 1, -5, 5, 7,-7),
};
static const uint64_t centroid_priority_8x = 0x3542017635420176ull;
-/* 16x MSAA */
-static const uint32_t sample_locs_16x[] = {
+/* 4x and 16x MSAA
+ * (the first 4 locations happen to be optimal for 4x MSAA, better than
+ * the standard DX 4x locations)
+ */
+static const uint32_t sample_locs_4x_16x[] = {
FILL_SREG(-5,-2, 5, 3, -2, 6, 3,-5),
FILL_SREG(-7,-8, 1, 1, -6, 4, 7,-4),
FILL_SREG(-1,-3, 6, 7, -3, 2, 0,-7),
FILL_SREG(-4,-6, 2, 5, -8, 0, 4,-1),
};
+static const uint64_t centroid_priority_4x = 0x2310231023102310ull;
static const uint64_t centroid_priority_16x = 0x497ec6b231d0fa85ull;
static void si_get_sample_position(struct pipe_context *ctx, unsigned sample_count,
sample_locs = &sample_locs_2x;
break;
case 4:
- sample_locs = &sample_locs_4x;
+ sample_locs = sample_locs_4x_16x;
break;
case 8:
sample_locs = sample_locs_8x;
break;
case 16:
- sample_locs = sample_locs_16x;
+ sample_locs = sample_locs_4x_16x;
break;
}
si_emit_max_4_sample_locs(cs, centroid_priority_2x, sample_locs_2x);
break;
case 4:
- si_emit_max_4_sample_locs(cs, centroid_priority_4x, sample_locs_4x);
+ si_emit_max_4_sample_locs(cs, centroid_priority_4x, sample_locs_4x_16x[0]);
break;
case 8:
si_emit_max_16_sample_locs(cs, centroid_priority_8x, sample_locs_8x, 8);
break;
case 16:
- si_emit_max_16_sample_locs(cs, centroid_priority_16x, sample_locs_16x, 16);
+ si_emit_max_16_sample_locs(cs, centroid_priority_16x, sample_locs_4x_16x, 16);
break;
}
}