// lod bias
// depth compare
// offsets (same as fermi, except txd which takes it with array)
+ //
+ // Maxwell (tex):
+ // array
+ // coords
+ // indirect handle
+ // sample
+ // lod bias
+ // depth compare
+ // offsets
+ //
+ // Maxwell (txd):
+ // indirect handle
+ // coords
+ // array + offsets
+ // derivatives
if (chipset >= NVISA_GK104_CHIPSET) {
if (i->tex.rIndirectSrc >= 0 || i->tex.sIndirectSrc >= 0) {
const int sat = (i->op == OP_TXF) ? 1 : 0;
DataType sTy = (i->op == OP_TXF) ? TYPE_U32 : TYPE_F32;
bld.mkCvt(OP_CVT, TYPE_U16, layer, sTy, src)->saturate = sat;
- for (int s = dim; s >= 1; --s)
- i->setSrc(s, i->getSrc(s - 1));
- i->setSrc(0, layer);
+ if (i->op != OP_TXD || chipset < NVISA_GM107_CHIPSET) {
+ for (int s = dim; s >= 1; --s)
+ i->setSrc(s, i->getSrc(s - 1));
+ i->setSrc(0, layer);
+ } else {
+ i->setSrc(dim, layer);
+ }
}
// Move the indirect reference to the first place
- if (i->tex.rIndirectSrc >= 0) {
+ if (i->tex.rIndirectSrc >= 0 && (
+ i->op == OP_TXD || chipset < NVISA_GM107_CHIPSET)) {
Value *hnd = i->getIndirectR();
i->setIndirectR(NULL);
// create it if it's not already there, and INSBF it if it already
// is.
s = (i->tex.rIndirectSrc >= 0) ? 1 : 0;
+ if (chipset >= NVISA_GM107_CHIPSET)
+ s += dim;
if (i->tex.target.isArray()) {
- bld.mkOp3(OP_INSBF, TYPE_U32, i->getSrc(0),
+ bld.mkOp3(OP_INSBF, TYPE_U32, i->getSrc(s),
bld.loadImm(NULL, imm), bld.mkImm(0xc10),
i->getSrc(s));
} else {
if (isTextureOp(tex->op)) {
if (tex->op != OP_TXQ) {
s = tex->tex.target.getArgCount() - tex->tex.target.isMS();
+ if (tex->op == OP_TXD) {
+ // Indirect handle belongs in the first arg
+ if (tex->tex.rIndirectSrc >= 0)
+ s++;
+ if (!tex->tex.target.isArray() && tex->tex.useOffsets)
+ s++;
+ }
n = tex->srcCount(0xff) - s;
} else {
s = tex->srcCount(0xff);