Vulkan: Rename screenshot buffer to frame dump buffer.
Name makes more sense given the methods it calls in the base class.
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9aed27cdcf
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c880c37244
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@ -64,7 +64,7 @@ Renderer::~Renderer()
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{
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g_Config.bRunning = false;
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UpdateActiveConfig();
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DestroyScreenshotResources();
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DestroyFrameDumpResources();
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DestroyShaders();
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DestroySemaphores();
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}
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@ -495,8 +495,8 @@ void Renderer::SwapImpl(u32 xfb_addr, u32 fb_width, u32 fb_stride, u32 fb_height
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// and the readback in one command buffer, wait for it, and then dump the frame. This allows us
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// to render to the screen and dump the frame in one command buffer instead of two.
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VkFence frame_dump_fence = g_command_buffer_mgr->GetCurrentCommandBufferFence();
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bool dump_this_frame = IsFrameDumping() && DrawScreenshot(rc, xfb_addr, xfb_sources, xfb_count,
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fb_width, fb_stride, fb_height);
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bool dump_this_frame = IsFrameDumping() && DrawFrameDump(rc, xfb_addr, xfb_sources, xfb_count,
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fb_width, fb_stride, fb_height);
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// If we're dumping frames, don't bother waking the worker thread, since we have to wait anyway.
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bool submit_on_background_thread = !dump_this_frame;
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@ -532,7 +532,7 @@ void Renderer::SwapImpl(u32 xfb_addr, u32 fb_width, u32 fb_stride, u32 fb_height
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if (dump_this_frame)
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{
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g_command_buffer_mgr->WaitForFence(frame_dump_fence);
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DumpScreenshot(ticks);
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DumpFrame(ticks);
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}
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// NOTE: It is important that no rendering calls are made to the EFB between submitting the
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@ -702,9 +702,9 @@ void Renderer::DrawScreen(const EFBRectangle& rc, u32 xfb_addr,
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VK_IMAGE_LAYOUT_PRESENT_SRC_KHR);
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}
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bool Renderer::DrawScreenshot(const EFBRectangle& rc, u32 xfb_addr,
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const XFBSourceBase* const* xfb_sources, u32 xfb_count, u32 fb_width,
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u32 fb_stride, u32 fb_height)
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bool Renderer::DrawFrameDump(const EFBRectangle& rc, u32 xfb_addr,
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const XFBSourceBase* const* xfb_sources, u32 xfb_count, u32 fb_width,
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u32 fb_stride, u32 fb_height)
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{
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// Draw the screenshot to an image containing only the active screen area, removing any
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// borders as a result of the game rendering in a different aspect ratio.
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@ -715,7 +715,7 @@ bool Renderer::DrawScreenshot(const EFBRectangle& rc, u32 xfb_addr,
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target_rect.top = 0;
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u32 width = std::max(1u, static_cast<u32>(target_rect.GetWidth()));
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u32 height = std::max(1u, static_cast<u32>(target_rect.GetHeight()));
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if (!ResizeScreenshotBuffer(width, height))
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if (!ResizeFrameDumpBuffer(width, height))
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return false;
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VkClearValue clear_value = {{{0.0f, 0.0f, 0.0f, 1.0f}}};
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@ -725,7 +725,7 @@ bool Renderer::DrawScreenshot(const EFBRectangle& rc, u32 xfb_addr,
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VK_STRUCTURE_TYPE_RENDER_PASS_BEGIN_INFO,
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nullptr,
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FramebufferManager::GetInstance()->GetColorCopyForReadbackRenderPass(),
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m_screenshot_framebuffer,
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m_frame_dump_framebuffer,
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{{0, 0}, {width, height}},
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1,
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&clear_value};
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@ -738,19 +738,19 @@ bool Renderer::DrawScreenshot(const EFBRectangle& rc, u32 xfb_addr,
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vkCmdEndRenderPass(g_command_buffer_mgr->GetCurrentCommandBuffer());
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// Copy to the readback texture.
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m_screenshot_readback_texture->CopyFromImage(
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g_command_buffer_mgr->GetCurrentCommandBuffer(), m_screenshot_render_texture->GetImage(),
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m_frame_dump_readback_texture->CopyFromImage(
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g_command_buffer_mgr->GetCurrentCommandBuffer(), m_frame_dump_render_texture->GetImage(),
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VK_IMAGE_ASPECT_COLOR_BIT, 0, 0, width, height, 0, 0);
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return true;
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}
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void Renderer::DumpScreenshot(u64 ticks)
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void Renderer::DumpFrame(u64 ticks)
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{
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DumpFrameData(reinterpret_cast<const u8*>(m_screenshot_readback_texture->GetMapPointer()),
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static_cast<int>(m_screenshot_render_texture->GetWidth()),
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static_cast<int>(m_screenshot_render_texture->GetHeight()),
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static_cast<int>(m_screenshot_readback_texture->GetRowStride()), ticks);
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DumpFrameData(reinterpret_cast<const u8*>(m_frame_dump_readback_texture->GetMapPointer()),
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static_cast<int>(m_frame_dump_render_texture->GetWidth()),
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static_cast<int>(m_frame_dump_render_texture->GetHeight()),
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static_cast<int>(m_frame_dump_readback_texture->GetRowStride()), ticks);
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FinishFrameData();
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}
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@ -792,37 +792,37 @@ void Renderer::BlitScreen(VkRenderPass render_pass, const TargetRectangle& dst_r
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}
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}
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bool Renderer::ResizeScreenshotBuffer(u32 new_width, u32 new_height)
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bool Renderer::ResizeFrameDumpBuffer(u32 new_width, u32 new_height)
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{
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if (m_screenshot_render_texture && m_screenshot_render_texture->GetWidth() == new_width &&
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m_screenshot_render_texture->GetHeight() == new_height)
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if (m_frame_dump_render_texture && m_frame_dump_render_texture->GetWidth() == new_width &&
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m_frame_dump_render_texture->GetHeight() == new_height)
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{
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return true;
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}
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if (m_screenshot_framebuffer != VK_NULL_HANDLE)
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if (m_frame_dump_framebuffer != VK_NULL_HANDLE)
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{
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vkDestroyFramebuffer(g_vulkan_context->GetDevice(), m_screenshot_framebuffer, nullptr);
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m_screenshot_framebuffer = VK_NULL_HANDLE;
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vkDestroyFramebuffer(g_vulkan_context->GetDevice(), m_frame_dump_framebuffer, nullptr);
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m_frame_dump_framebuffer = VK_NULL_HANDLE;
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}
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m_screenshot_render_texture =
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m_frame_dump_render_texture =
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Texture2D::Create(new_width, new_height, 1, 1, EFB_COLOR_TEXTURE_FORMAT,
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VK_SAMPLE_COUNT_1_BIT, VK_IMAGE_VIEW_TYPE_2D, VK_IMAGE_TILING_OPTIMAL,
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VK_IMAGE_USAGE_TRANSFER_SRC_BIT | VK_IMAGE_USAGE_COLOR_ATTACHMENT_BIT);
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m_screenshot_readback_texture = StagingTexture2D::Create(STAGING_BUFFER_TYPE_READBACK, new_width,
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m_frame_dump_readback_texture = StagingTexture2D::Create(STAGING_BUFFER_TYPE_READBACK, new_width,
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new_height, EFB_COLOR_TEXTURE_FORMAT);
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if (!m_screenshot_render_texture || !m_screenshot_readback_texture ||
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!m_screenshot_readback_texture->Map())
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if (!m_frame_dump_render_texture || !m_frame_dump_readback_texture ||
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!m_frame_dump_readback_texture->Map())
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{
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WARN_LOG(VIDEO, "Failed to resize screenshot render texture");
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m_screenshot_render_texture.reset();
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m_screenshot_readback_texture.reset();
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m_frame_dump_render_texture.reset();
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m_frame_dump_readback_texture.reset();
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return false;
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}
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VkImageView attachment = m_screenshot_render_texture->GetView();
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VkImageView attachment = m_frame_dump_render_texture->GetView();
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VkFramebufferCreateInfo info = {};
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info.sType = VK_STRUCTURE_TYPE_FRAMEBUFFER_CREATE_INFO;
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info.renderPass = FramebufferManager::GetInstance()->GetColorCopyForReadbackRenderPass();
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@ -833,32 +833,32 @@ bool Renderer::ResizeScreenshotBuffer(u32 new_width, u32 new_height)
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info.layers = 1;
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VkResult res =
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vkCreateFramebuffer(g_vulkan_context->GetDevice(), &info, nullptr, &m_screenshot_framebuffer);
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vkCreateFramebuffer(g_vulkan_context->GetDevice(), &info, nullptr, &m_frame_dump_framebuffer);
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if (res != VK_SUCCESS)
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{
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WARN_LOG(VIDEO, "Failed to resize screenshot framebuffer");
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m_screenshot_render_texture.reset();
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m_screenshot_readback_texture.reset();
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m_frame_dump_render_texture.reset();
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m_frame_dump_readback_texture.reset();
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return false;
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}
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// Render pass expects texture is in transfer src to start with.
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m_screenshot_render_texture->TransitionToLayout(g_command_buffer_mgr->GetCurrentCommandBuffer(),
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m_frame_dump_render_texture->TransitionToLayout(g_command_buffer_mgr->GetCurrentCommandBuffer(),
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VK_IMAGE_LAYOUT_TRANSFER_SRC_OPTIMAL);
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return true;
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}
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void Renderer::DestroyScreenshotResources()
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void Renderer::DestroyFrameDumpResources()
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{
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if (m_screenshot_framebuffer != VK_NULL_HANDLE)
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if (m_frame_dump_framebuffer != VK_NULL_HANDLE)
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{
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vkDestroyFramebuffer(g_vulkan_context->GetDevice(), m_screenshot_framebuffer, nullptr);
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m_screenshot_framebuffer = VK_NULL_HANDLE;
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vkDestroyFramebuffer(g_vulkan_context->GetDevice(), m_frame_dump_framebuffer, nullptr);
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m_frame_dump_framebuffer = VK_NULL_HANDLE;
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}
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m_screenshot_render_texture.reset();
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m_screenshot_readback_texture.reset();
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m_frame_dump_render_texture.reset();
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m_frame_dump_readback_texture.reset();
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}
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void Renderer::CheckForTargetResize(u32 fb_width, u32 fb_stride, u32 fb_height)
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@ -106,20 +106,20 @@ private:
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u32 xfb_count, u32 fb_width, u32 fb_stride, u32 fb_height);
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// Draw the frame only to the screenshot buffer.
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bool DrawScreenshot(const EFBRectangle& rc, u32 xfb_addr, const XFBSourceBase* const* xfb_sources,
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u32 xfb_count, u32 fb_width, u32 fb_stride, u32 fb_height);
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bool DrawFrameDump(const EFBRectangle& rc, u32 xfb_addr, const XFBSourceBase* const* xfb_sources,
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u32 xfb_count, u32 fb_width, u32 fb_stride, u32 fb_height);
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// Copies the screenshot readback texture to the frame dumping buffer.
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// NOTE: This assumes that DrawScreenshot has been called prior, and the fence associated
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// with the command buffer where the readback buffer was populated has been reached.
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void DumpScreenshot(u64 ticks);
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void DumpFrame(u64 ticks);
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// Copies/scales an image to the currently-bound framebuffer.
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void BlitScreen(VkRenderPass render_pass, const TargetRectangle& dst_rect,
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const TargetRectangle& src_rect, const Texture2D* src_tex, bool linear_filter);
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bool ResizeScreenshotBuffer(u32 new_width, u32 new_height);
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void DestroyScreenshotResources();
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bool ResizeFrameDumpBuffer(u32 new_width, u32 new_height);
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void DestroyFrameDumpResources();
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VkSemaphore m_image_available_semaphore = VK_NULL_HANDLE;
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VkSemaphore m_rendering_finished_semaphore = VK_NULL_HANDLE;
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@ -140,8 +140,8 @@ private:
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VkShaderModule m_blit_fragment_shader = VK_NULL_HANDLE;
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// Texture used for screenshot/frame dumping
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std::unique_ptr<Texture2D> m_screenshot_render_texture;
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std::unique_ptr<StagingTexture2D> m_screenshot_readback_texture;
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VkFramebuffer m_screenshot_framebuffer = VK_NULL_HANDLE;
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std::unique_ptr<Texture2D> m_frame_dump_render_texture;
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std::unique_ptr<StagingTexture2D> m_frame_dump_readback_texture;
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VkFramebuffer m_frame_dump_framebuffer = VK_NULL_HANDLE;
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};
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}
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