nv50/ir: allow gl_ViewportIndex to work on non-provoking vertices
Previously, if we had something like: gl_ViewportIndex = idx; for(int i = 0; i < gl_in.length(); i++) { gl_Position = gl_in[i].gl_Position; EmitVertex(); } EndPrimitive(); The right viewport index would not be set on the primitive because the last vertex is the provoking one. However blob drivers appear to move the gl_ViewportIndex write into the for loop, allowing the application to be ignorant of this detail. While the application is technically wrong here, because the blob does it and other drivers appear to implicitly work this way as well, we add a buffer register that viewport index writes go into, which is then exported before every EmitVertex() call. This fixes the remaining piglit tests in ARB_viewport_array for nv50/nvc0. Signed-off-by: Tobias Klausmann <tobias.johannes.klausmann@mni.thm.de> Cc: "10.2" <mesa-stable@lists.freedesktop.org> Reviewed-by: Ilia Mirkin <imirkin@alum.mit.edu>
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@ -177,6 +177,7 @@ struct nv50_ir_prog_info
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uint8_t vertexId; /* system value index of VertexID */
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uint8_t edgeFlagIn;
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uint8_t edgeFlagOut;
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int8_t viewportId; /* output index of ViewportIndex */
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uint8_t fragDepth; /* output index of FragDepth */
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uint8_t sampleMask; /* output index of SampleMask */
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boolean sampleInterp; /* perform sample interp on all fp inputs */
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@ -790,6 +790,8 @@ bool Source::scanSource()
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info->prop.gp.instanceCount = 1; // default value
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}
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info->io.viewportId = -1;
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info->immd.data = (uint32_t *)MALLOC(scan.immediate_count * 16);
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info->immd.type = (ubyte *)MALLOC(scan.immediate_count * sizeof(ubyte));
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@ -982,6 +984,9 @@ bool Source::scanDeclaration(const struct tgsi_full_declaration *decl)
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case TGSI_SEMANTIC_SAMPLEMASK:
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info->io.sampleMask = i;
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break;
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case TGSI_SEMANTIC_VIEWPORT_INDEX:
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info->io.viewportId = i;
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break;
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default:
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break;
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}
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@ -1258,6 +1263,8 @@ private:
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Stack joinBBs; // fork BB, for inserting join ops on ENDIF
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Stack loopBBs; // loop headers
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Stack breakBBs; // end of / after loop
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Value *viewport;
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};
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Symbol *
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@ -1555,8 +1562,16 @@ Converter::storeDst(const tgsi::Instruction::DstRegister dst, int c,
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mkOp2(OP_WRSV, TYPE_U32, NULL, dstToSym(dst, c), val);
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} else
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if (f == TGSI_FILE_OUTPUT && prog->getType() != Program::TYPE_FRAGMENT) {
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if (ptr || (info->out[idx].mask & (1 << c)))
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if (ptr || (info->out[idx].mask & (1 << c))) {
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/* Save the viewport index into a scratch register so that it can be
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exported at EMIT time */
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if (info->out[idx].sn == TGSI_SEMANTIC_VIEWPORT_INDEX &&
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viewport != NULL)
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mkOp1(OP_MOV, TYPE_U32, viewport, val);
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else
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mkStore(OP_EXPORT, TYPE_U32, dstToSym(dst, c), ptr, val);
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}
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} else
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if (f == TGSI_FILE_TEMPORARY ||
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f == TGSI_FILE_PREDICATE ||
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@ -2523,6 +2538,13 @@ Converter::handleInstruction(const struct tgsi_full_instruction *insn)
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mkCvt(OP_CVT, dstTy, dst0[c], srcTy, fetchSrc(0, c));
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break;
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case TGSI_OPCODE_EMIT:
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/* export the saved viewport index */
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if (viewport != NULL) {
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Symbol *vpSym = mkSymbol(FILE_SHADER_OUTPUT, 0, TYPE_U32,
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info->out[info->io.viewportId].slot[0] * 4);
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mkStore(OP_EXPORT, TYPE_U32, vpSym, NULL, viewport);
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}
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/* fallthrough */
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case TGSI_OPCODE_ENDPRIM:
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// get vertex stream if specified (must be immediate)
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src0 = tgsi.srcCount() ?
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@ -2952,6 +2974,11 @@ Converter::run()
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mkOp1(OP_RCP, TYPE_F32, fragCoord[3], fragCoord[3]);
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}
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if (info->io.viewportId >= 0)
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viewport = getScratch();
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else
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viewport = NULL;
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for (ip = 0; ip < code->scan.num_instructions; ++ip) {
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if (!handleInstruction(&code->insns[ip]))
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return false;
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