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Support for textures smaller than 8*8
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@ -449,27 +449,18 @@ MathUtil::Rectangle<u32> SurfaceParams::GetScaledSubRect(const SurfaceParams& su
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bool SurfaceParams::ExactMatch(const SurfaceParams& other_surface) const {
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bool SurfaceParams::ExactMatch(const SurfaceParams& other_surface) const {
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return (other_surface.addr == addr && other_surface.width == width &&
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return (other_surface.addr == addr && other_surface.width == width &&
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other_surface.height == height && other_surface.stride == stride &&
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other_surface.height == height && other_surface.stride == stride &&
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other_surface.pixel_format == pixel_format && other_surface.is_tiled == is_tiled);
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other_surface.pixel_format == pixel_format && pixel_format != PixelFormat::Invalid &&
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other_surface.is_tiled == is_tiled);
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}
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}
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bool SurfaceParams::CanSubRect(const SurfaceParams& sub_surface) const {
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bool SurfaceParams::CanSubRect(const SurfaceParams& sub_surface) const {
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if (sub_surface.addr < addr || sub_surface.end > end || sub_surface.stride != stride ||
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return (sub_surface.addr >= addr && sub_surface.end <= end &&
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sub_surface.pixel_format != pixel_format || sub_surface.is_tiled != is_tiled ||
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sub_surface.pixel_format == pixel_format && pixel_format != PixelFormat::Invalid &&
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(sub_surface.addr - addr) * 8 % GetFormatBpp() != 0)
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sub_surface.is_tiled == is_tiled &&
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return false;
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(sub_surface.addr - addr) * 8 % GetFormatBpp() == 0 &&
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(!is_tiled || PixelsInBytes(sub_surface.addr - addr) % 64 == 0) &&
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auto rect = GetSubRect(sub_surface);
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(sub_surface.stride == stride || sub_surface.height <= (is_tiled ? 8u : 1u)) &&
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GetSubRect(sub_surface).left + sub_surface.width <= stride);
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if (rect.left + sub_surface.width > stride) {
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return false;
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}
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if (is_tiled) {
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return PixelsInBytes(sub_surface.addr - addr) % 64 == 0 && sub_surface.height % 8 == 0 &&
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sub_surface.width % 8 == 0;
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}
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return true;
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}
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}
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bool SurfaceParams::CanExpand(const SurfaceParams& expanded_surface) const {
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bool SurfaceParams::CanExpand(const SurfaceParams& expanded_surface) const {
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@ -1006,15 +997,6 @@ Surface RasterizerCacheOpenGL::GetSurface(const SurfaceParams& params, ScaleMatc
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if (expandable != nullptr && expandable->res_scale > target_res_scale) {
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if (expandable != nullptr && expandable->res_scale > target_res_scale) {
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target_res_scale = expandable->res_scale;
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target_res_scale = expandable->res_scale;
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}
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}
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// Keep res_scale when reinterpreting d24s8 -> rgba8
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if (params.pixel_format == PixelFormat::RGBA8) {
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find_params.pixel_format = PixelFormat::D24S8;
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expandable = FindMatch<MatchFlags::Expand | MatchFlags::Invalid>(
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surface_cache, find_params, match_res_scale);
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if (expandable != nullptr && expandable->res_scale > target_res_scale) {
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target_res_scale = expandable->res_scale;
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}
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}
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}
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}
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SurfaceParams new_params = params;
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SurfaceParams new_params = params;
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new_params.res_scale = target_res_scale;
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new_params.res_scale = target_res_scale;
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@ -1057,17 +1039,29 @@ SurfaceRect_Tuple RasterizerCacheOpenGL::GetSurfaceSubRect(const SurfaceParams&
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}
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}
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}
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}
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SurfaceParams aligned_params = params;
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if (params.is_tiled) {
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aligned_params.height = Common::AlignUp(params.height, 8);
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aligned_params.width = Common::AlignUp(params.width, 8);
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aligned_params.stride = Common::AlignUp(params.stride, 8);
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aligned_params.UpdateParams();
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}
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// Check for a surface we can expand before creating a new one
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// Check for a surface we can expand before creating a new one
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if (surface == nullptr) {
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if (surface == nullptr) {
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surface = FindMatch<MatchFlags::Expand | MatchFlags::Invalid>(surface_cache, params,
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surface = FindMatch<MatchFlags::Expand | MatchFlags::Invalid>(surface_cache, aligned_params,
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match_res_scale);
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match_res_scale);
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if (surface != nullptr) {
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if (surface != nullptr) {
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aligned_params.width = aligned_params.stride;
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aligned_params.UpdateParams();
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SurfaceParams new_params = *surface;
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SurfaceParams new_params = *surface;
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new_params.addr = std::min(params.addr, surface->addr);
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new_params.addr = std::min(aligned_params.addr, surface->addr);
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new_params.end = std::max(params.end, surface->end);
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new_params.end = std::max(aligned_params.end, surface->end);
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new_params.size = new_params.end - new_params.addr;
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new_params.size = new_params.end - new_params.addr;
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new_params.height = new_params.size / params.BytesInPixels(params.stride);
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new_params.height =
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ASSERT(new_params.size % params.BytesInPixels(params.stride) == 0);
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new_params.size / aligned_params.BytesInPixels(aligned_params.stride);
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ASSERT(new_params.size % aligned_params.BytesInPixels(aligned_params.stride) == 0);
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Surface new_surface = CreateSurface(new_params);
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Surface new_surface = CreateSurface(new_params);
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DuplicateSurface(surface, new_surface);
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DuplicateSurface(surface, new_surface);
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@ -1083,14 +1077,14 @@ SurfaceRect_Tuple RasterizerCacheOpenGL::GetSurfaceSubRect(const SurfaceParams&
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// No subrect found - create and return a new surface
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// No subrect found - create and return a new surface
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if (surface == nullptr) {
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if (surface == nullptr) {
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SurfaceParams new_params = params;
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SurfaceParams new_params = aligned_params;
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// Can't have gaps in a surface
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// Can't have gaps in a surface
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new_params.width = params.stride;
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new_params.width = aligned_params.stride;
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new_params.UpdateParams();
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new_params.UpdateParams();
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// GetSurface will create the new surface and possibly adjust res_scale if necessary
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// GetSurface will create the new surface and possibly adjust res_scale if necessary
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surface = GetSurface(new_params, match_res_scale, load_if_create);
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surface = GetSurface(new_params, match_res_scale, load_if_create);
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} else if (load_if_create) {
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} else if (load_if_create) {
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ValidateSurface(surface, params.addr, params.size);
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ValidateSurface(surface, aligned_params.addr, aligned_params.size);
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}
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}
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return std::make_tuple(surface, surface->GetScaledSubRect(params));
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return std::make_tuple(surface, surface->GetScaledSubRect(params));
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@ -1108,6 +1102,23 @@ Surface RasterizerCacheOpenGL::GetTextureSurface(
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params.is_tiled = true;
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params.is_tiled = true;
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params.pixel_format = SurfaceParams::PixelFormatFromTextureFormat(info.format);
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params.pixel_format = SurfaceParams::PixelFormatFromTextureFormat(info.format);
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params.UpdateParams();
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params.UpdateParams();
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if (info.width % 8 != 0 || info.height % 8 != 0) {
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Surface src_surface;
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MathUtil::Rectangle<u32> rect;
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std::tie(src_surface, rect) = GetSurfaceSubRect(params, ScaleMatch::Ignore, true);
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params.res_scale = src_surface->res_scale;
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Surface tmp_surface = CreateSurface(params);
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BlitTextures(src_surface->texture.handle, rect, tmp_surface->texture.handle,
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tmp_surface->GetScaledRect(),
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SurfaceParams::GetFormatType(params.pixel_format), read_framebuffer.handle,
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draw_framebuffer.handle);
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remove_surfaces.emplace(tmp_surface);
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return tmp_surface;
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}
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return GetSurface(params, ScaleMatch::Ignore, true);
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return GetSurface(params, ScaleMatch::Ignore, true);
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}
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}
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@ -1422,11 +1433,19 @@ Surface RasterizerCacheOpenGL::CreateSurface(const SurfaceParams& params) {
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}
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}
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void RasterizerCacheOpenGL::RegisterSurface(const Surface& surface) {
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void RasterizerCacheOpenGL::RegisterSurface(const Surface& surface) {
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if (surface->registered) {
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return;
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}
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surface->registered = true;
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surface_cache.add({surface->GetInterval(), SurfaceSet{surface}});
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surface_cache.add({surface->GetInterval(), SurfaceSet{surface}});
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UpdatePagesCachedCount(surface->addr, surface->size, 1);
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UpdatePagesCachedCount(surface->addr, surface->size, 1);
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}
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}
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void RasterizerCacheOpenGL::UnregisterSurface(const Surface& surface) {
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void RasterizerCacheOpenGL::UnregisterSurface(const Surface& surface) {
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if (!surface->registered) {
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return;
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}
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surface->registered = false;
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UpdatePagesCachedCount(surface->addr, surface->size, -1);
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UpdatePagesCachedCount(surface->addr, surface->size, -1);
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surface_cache.subtract({surface->GetInterval(), SurfaceSet{surface}});
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surface_cache.subtract({surface->GetInterval(), SurfaceSet{surface}});
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}
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}
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@ -265,6 +265,7 @@ struct CachedSurface : SurfaceParams {
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return (invalid_regions & GetInterval()) == SurfaceRegions(GetInterval());
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return (invalid_regions & GetInterval()) == SurfaceRegions(GetInterval());
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}
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}
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bool registered = false;
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SurfaceRegions invalid_regions;
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SurfaceRegions invalid_regions;
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u32 fill_size = 0; /// Number of bytes to read from fill_data
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u32 fill_size = 0; /// Number of bytes to read from fill_data
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