const struct tgsi_full_immediate *imm)
{
int c;
- unsigned n = ++ti->immd32_nr;
+ unsigned n = ti->immd32_nr++;
- if (n == (1 << (ffs(n) - 1)))
- ti->immd32 = REALLOC(ti->immd32, (n / 2) * 16, (n * 2) * 16);
+ assert(ti->immd32_nr <= ti->scan.immediate_count);
for (c = 0; c < 4; ++c)
- ti->immd32[(n - 1) * 4 + c] = imm->u[c].Uint;
+ ti->immd32[n * 4 + c] = imm->u[c].Uint;
+
+ ti->immd32_ty[n] = imm->Immediate.DataType;
}
static INLINE unsigned
tgsi_dump(p->pipe.tokens, 0);
#endif
+ ti->immd32 = (uint32_t *)MALLOC(ti->scan.immediate_count * 16);
+ ti->immd32_ty = (ubyte *)MALLOC(ti->scan.immediate_count * sizeof(ubyte));
+
tgsi_parse_init(&parse, p->pipe.tokens);
while (!tgsi_parse_end_of_tokens(&parse)) {
tgsi_parse_token(&parse);
out:
if (ti->immd32)
FREE(ti->immd32);
+ if (ti->immd32_ty)
+ FREE(ti->immd32_ty);
FREE(ti);
return ret ? FALSE : TRUE;
}
case TGSI_FILE_IMMEDIATE:
assert(idx < bld->ti->immd32_nr);
res = bld_load_imm_u32(bld, bld->ti->immd32[idx * 4 + swz]);
- res->reg.type = type;
+
+ switch (bld->ti->immd32_ty[idx]) {
+ case TGSI_IMM_FLOAT32: res->reg.type = NV_TYPE_F32; break;
+ case TGSI_IMM_UINT32: res->reg.type = NV_TYPE_U32; break;
+ case TGSI_IMM_INT32: res->reg.type = NV_TYPE_S32; break;
+ default:
+ res->reg.type = type;
+ break;
+ }
break;
case TGSI_FILE_INPUT:
res = bld_saved_input(bld, idx, swz);