Enhance xfb dumping to distinguish between the xfbs created from memory and the xfbs created from overlapping copies
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@ -1111,7 +1111,9 @@ TextureCacheBase::GetXFBTexture(u32 address, u32 width, u32 height, TextureForma
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return nullptr;
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}
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TCacheEntry* entry = GetXFBFromCache(tex_info.value());
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const TextureLookupInformation tex_info_value = tex_info.value();
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TCacheEntry* entry = GetXFBFromCache(tex_info_value);
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if (entry != nullptr)
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{
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return entry;
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@ -1128,15 +1130,29 @@ TextureCacheBase::GetXFBTexture(u32 address, u32 width, u32 height, TextureForma
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// this means the address is most likely not pointing at an xfb copy but instead
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// an area of memory. Let's attempt to stitch all entries in this memory space
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// together
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if (LoadTextureFromOverlappingTextures(entry, tex_info.value()))
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bool loaded_from_overlapping = LoadTextureFromOverlappingTextures(entry, tex_info_value);
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if (!loaded_from_overlapping)
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{
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return entry;
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// At this point, the xfb address is truly "bogus"
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// it likely is an area of memory defined by the CPU
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// so load it from memory
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LoadTextureFromMemory(entry, tex_info_value);
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}
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if (g_ActiveConfig.bDumpXFBTarget)
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{
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// While this isn't really an xfb copy, we can treat it as such
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// for dumping purposes
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static int xfb_count = 0;
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const std::string xfb_type = loaded_from_overlapping ? "combined" : "from_memory";
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entry->texture->Save(StringFromFormat("%sxfb_%s_%i.png",
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File::GetUserPath(D_DUMPTEXTURES_IDX).c_str(),
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xfb_type.c_str(),
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xfb_count++),
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0);
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}
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// At this point, the xfb address is truly "bogus"
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// it likely is an area of memory defined by the CPU
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// so load it from memory
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LoadTextureFromMemory(entry, tex_info.value());
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return entry;
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}
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@ -1213,14 +1229,6 @@ std::optional<TextureLookupInformation> TextureCacheBase::ComputeTextureInformat
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tex_info.full_hash = tex_info.base_hash;
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}
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if (g_ActiveConfig.bDumpTextures)
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{
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tex_info.dump_base_name = HiresTexture::GenBaseName(
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tex_info.src_data, tex_info.total_bytes, &texMem[tex_info.tlut_address],
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tex_info.palette_size, tex_info.native_width, tex_info.native_height,
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tex_info.full_format.texfmt, tex_info.use_mipmaps, true);
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}
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return tex_info;
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}
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@ -1447,11 +1455,6 @@ TextureCacheBase::CreateNormalTexture(const TextureLookupInformation& tex_info)
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INCSTAT(stats.numTexturesUploaded);
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SETSTAT(stats.numTexturesAlive, textures_by_address.size());
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if (g_ActiveConfig.bDumpTextures)
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{
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DumpTexture(entry, tex_info.dump_base_name, 0);
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}
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return entry;
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}
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@ -2015,7 +2018,7 @@ void TextureCacheBase::CopyRenderTargetToTexture(u32 dstAddr, EFBCopyFormat dstF
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if (g_ActiveConfig.bDumpXFBTarget && is_xfb_copy)
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{
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static int xfb_count = 0;
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entry->texture->Save(StringFromFormat("%sxfb_frame_%i.png",
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entry->texture->Save(StringFromFormat("%sxfb_copy_%i.png",
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File::GetUserPath(D_DUMPTEXTURES_IDX).c_str(),
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xfb_count++),
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0);
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@ -100,8 +100,6 @@ struct TextureLookupInformation
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int texture_cache_safety_color_sample_size = 0; // Default to safe hashing
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u8* src_data;
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std::string dump_base_name;
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};
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class TextureCacheBase
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