mirror of https://github.com/aap/librw.git
ps2 test: upload material's raster (32bit)
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c6589f55de
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@ -33,6 +33,58 @@ extern uint32 skinPipe[];
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rw::Clump *clump;
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rw::Clump *clump;
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GIF_DECLARE_PACKET(gifDmaBuf2, 256)
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uint32
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uploadRaster(rw::Raster *ras)
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{
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GsState *g = gsCurState;
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uint32 destAddr = g->currentMemPtr;
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uint32 size = ras->width*ras->height*4;
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g->currentMemPtr += size;
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GIF_BEGIN_PACKET(gifDmaBuf2);
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GIF_TAG(gifDmaBuf2, 4, 1, 0, 0, 0, 1, 0x0e);
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GIF_DATA_AD(gifDmaBuf2, GS_BITBLTBUF,
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MAKE_GS_BITBLTBUF(0, 0, 0,
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destAddr/4/64, ras->width/64, PSMCT32));
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GIF_DATA_AD(gifDmaBuf2, GS_TRXPOS,
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MAKE_GS_TRXPOS(0, 0, 0, 0, 0));
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GIF_DATA_AD(gifDmaBuf2, GS_TRXREG,
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MAKE_GS_TRXREG(ras->width, ras->height));
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GIF_DATA_AD(gifDmaBuf2, GS_TRXDIR, 0);
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GIF_SEND_PACKET(gifDmaBuf2);
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GIF_BEGIN_PACKET(gifDmaBuf2);
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GIF_TAG(gifDmaBuf2, size/0x10, 1, 0, 0, 2, 0, 0);
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GIF_SEND_PACKET(gifDmaBuf2);
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FlushCache(0);
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SET_REG32(D2_QWC, MAKE_DN_QWC(size/0x10));
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SET_REG32(D2_MADR, MAKE_DN_MADR(ras->texels, 0));
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SET_REG32(D2_CHCR, MAKE_DN_CHCR(1, 0, 0, 0, 0, 1));
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DMA_WAIT(D2_CHCR);
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int logw = 0, logh = 0;
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int s;
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for(s = 1; s < ras->width; s *= 2)
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logw++;
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for(s = 1; s < ras->height; s *= 2)
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logh++;
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GIF_BEGIN_PACKET(gifDmaBuf2);
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GIF_TAG(gifDmaBuf2, 3, 1, 0, 0, 0, 1, 0x0e);
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GIF_DATA_AD(gifDmaBuf2, GS_TEXFLUSH, 1);
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GIF_DATA_AD(gifDmaBuf2, GS_TEX0_1,
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MAKE_GS_TEX0(destAddr/4/64, ras->width/64, PSMCT32,
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logw, logh, 0, 0, 0, 0, 0, 0, 0));
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GIF_DATA_AD(gifDmaBuf2, GS_TEX1_1,
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MAKE_GS_TEX1(0, 0, 1, 1, 0, 0, 0));
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GIF_SEND_PACKET(gifDmaBuf2);
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return destAddr;
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}
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void
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void
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drawAtomic(rw::Atomic *atomic)
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drawAtomic(rw::Atomic *atomic)
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{
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{
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@ -55,16 +107,21 @@ drawAtomic(rw::Atomic *atomic)
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mesh = &meshHeader->mesh[i];
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mesh = &meshHeader->mesh[i];
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color = mesh->material->color;
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color = mesh->material->color;
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vuGIFtag[0] = MAKE_GIF_TAG(0,1,1,0xC|0x10,0,3);
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uint32 oldPtr = gsCurState->currentMemPtr;
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vuGIFtag[1] = 0x412;
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vuMatcolor[0] = color[0]/255.0f;
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vuMatcolor[0] = color[0]/255.0f;
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vuMatcolor[1] = color[1]/255.0f;
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vuMatcolor[1] = color[1]/255.0f;
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vuMatcolor[2] = color[2]/255.0f;
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vuMatcolor[2] = color[2]/255.0f;
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vuMatcolor[3] = color[3]/2.0f/255.0f;
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vuMatcolor[3] = color[3]/2.0f/255.0f;
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// only when modulating textures actually
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uint32 tex = 0;
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vuMatcolor[0] /= 2.0f;
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if(mesh->material->texture && mesh->material->texture->raster){
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vuMatcolor[1] /= 2.0f;
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vuMatcolor[0] /= 2.0f;
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vuMatcolor[2] /= 2.0f;
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vuMatcolor[1] /= 2.0f;
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vuMatcolor[2] /= 2.0f;
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tex = 0x10;
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uploadRaster(mesh->material->texture->raster);
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}
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vuGIFtag[0] = MAKE_GIF_TAG(0,1,1,0xC|tex,0,3);
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vuGIFtag[1] = 0x412;
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if(rw::skinGlobals.offset && skin){
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if(rw::skinGlobals.offset && skin){
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geometryCall[3] = 0x020000DC;
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geometryCall[3] = 0x020000DC;
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mpgCall[1] = (uint32)skinPipe;
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mpgCall[1] = (uint32)skinPipe;
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@ -78,8 +135,8 @@ drawAtomic(rw::Atomic *atomic)
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FlushCache(0);
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FlushCache(0);
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SET_REG32(D1_CHCR, MAKE_DN_CHCR(1, 1, 0, 1, 0, 1));
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SET_REG32(D1_CHCR, MAKE_DN_CHCR(1, 1, 0, 1, 0, 1));
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DMA_WAIT(D1_CHCR);
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DMA_WAIT(D1_CHCR);
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gsCurState->currentMemPtr = oldPtr;
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}
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}
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}
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}
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void
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void
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@ -91,9 +148,9 @@ draw(void)
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gsClear();
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gsClear();
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matMakeIdentity(viewMat);
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matMakeIdentity(viewMat);
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// matTranslate(viewMat, 0.0f, 0.0f, -34.0f);
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matTranslate(viewMat, 0.0f, 0.0f, -34.0f);
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// matTranslate(viewMat, 0.0f, 0.0f, -10.0f);
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// matTranslate(viewMat, 0.0f, 0.0f, -10.0f);
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matTranslate(viewMat, 0.0f, 0.0f, -8.0f);
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// matTranslate(viewMat, 0.0f, 0.0f, -8.0f);
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matRotateX(viewMat, rot);
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matRotateX(viewMat, rot);
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matRotateY(viewMat, rot);
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matRotateY(viewMat, rot);
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matRotateZ(viewMat, rot);
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matRotateZ(viewMat, rot);
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@ -116,60 +173,6 @@ draw(void)
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rot -= 2*M_PI;
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rot -= 2*M_PI;
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}
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}
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GIF_DECLARE_PACKET(gifDmaBuf2, 256)
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uint32
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uploadTGA(rw::Image *tga)
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{
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GsState *g = gsCurState;
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uint32 destAddr = g->currentMemPtr;
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uint32 size = tga->width*tga->height*4;
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g->currentMemPtr += size;
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printf("image @ %x\n", destAddr);
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GIF_BEGIN_PACKET(gifDmaBuf2);
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GIF_TAG(gifDmaBuf2, 4, 1, 0, 0, 0, 1, 0x0e);
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GIF_DATA_AD(gifDmaBuf2, GS_BITBLTBUF,
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MAKE_GS_BITBLTBUF(0, 0, 0,
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destAddr/4/64, tga->width/64, PSMCT32));
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GIF_DATA_AD(gifDmaBuf2, GS_TRXPOS,
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MAKE_GS_TRXPOS(0, 0, 0, 0, 0));
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GIF_DATA_AD(gifDmaBuf2, GS_TRXREG,
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MAKE_GS_TRXREG(tga->width, tga->height));
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GIF_DATA_AD(gifDmaBuf2, GS_TRXDIR, 0);
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GIF_SEND_PACKET(gifDmaBuf2);
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GIF_BEGIN_PACKET(gifDmaBuf2);
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GIF_TAG(gifDmaBuf2, size/0x10, 1, 0, 0, 2, 0, 0);
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GIF_SEND_PACKET(gifDmaBuf2);
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FlushCache(0);
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SET_REG32(D2_QWC, MAKE_DN_QWC(size/0x10));
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SET_REG32(D2_MADR, MAKE_DN_MADR(tga->pixels, 0));
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SET_REG32(D2_CHCR, MAKE_DN_CHCR(1, 0, 0, 0, 0, 1));
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DMA_WAIT(D2_CHCR);
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int logw = 0, logh = 0;
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int s;
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for(s = 1; s < tga->width; s *= 2)
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logw++;
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for(s = 1; s < tga->height; s *= 2)
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logh++;
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GIF_BEGIN_PACKET(gifDmaBuf2);
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GIF_TAG(gifDmaBuf2, 3, 1, 0, 0, 0, 1, 0x0e);
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GIF_DATA_AD(gifDmaBuf2, GS_TEXFLUSH, 1);
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GIF_DATA_AD(gifDmaBuf2, GS_TEX0_1,
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MAKE_GS_TEX0(destAddr/4/64, tga->width/64, PSMCT32,
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logw, logh, 0, 0, 0, 0, 0, 0, 0));
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GIF_DATA_AD(gifDmaBuf2, GS_TEX1_1,
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MAKE_GS_TEX1(0, 0, 1, 1, 0, 0, 0));
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GIF_SEND_PACKET(gifDmaBuf2);
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return destAddr;
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}
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int
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int
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main()
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main()
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{
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{
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@ -200,8 +203,8 @@ main()
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rw::registerMeshPlugin();
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rw::registerMeshPlugin();
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rw::uint32 len;
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rw::uint32 len;
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rw::uint8 *data = rw::getFileContents("host:player-vc-ps2.dff", &len);
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// rw::uint8 *data = rw::getFileContents("host:player-vc-ps2.dff", &len);
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// rw::uint8 *data = rw::getFileContents("host:od_newscafe_dy-ps2.dff", &len);
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rw::uint8 *data = rw::getFileContents("host:od_newscafe_dy-ps2.dff", &len);
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// rw::uint8 *data = rw::getFileContents("host:admiral-ps2.dff", &len);
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// rw::uint8 *data = rw::getFileContents("host:admiral-ps2.dff", &len);
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rw::StreamMemory in;
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rw::StreamMemory in;
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in.open(data, len);
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in.open(data, len);
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@ -221,15 +224,6 @@ main()
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out.close();
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out.close();
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delete[] data;
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delete[] data;
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rw::Image *tga = rw::readTGA("host:player_.tga");
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printf("read tga\n");
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uint32 destAddr = uploadTGA(tga);
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/*
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rw::writeTGA(tga, "host:out.tga");
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printf("wrote tga\n");
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*/
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vuOffset[0] = 2048.0f;
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vuOffset[0] = 2048.0f;
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vuOffset[1] = 2048.0f;
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vuOffset[1] = 2048.0f;
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