feat: Integrate imgui library
Version 1.91.7 of the imgui library with the cimgui wrapper. imgui allows us to easily create minimal and powerful UI for use-cases like in-game overlays or separate tooling. The additional wrappers cimgui_impl_dx9 and cimgui_impl_win32 were added to provide a full C linkage integration for the rest of the code base. Tweaks to the makefile were kept to a minimum but enable compilation of C++ since imgui is C++ based. Remark: At this point bemanitools itself is still to be kept a pure C codebase. Due to the lack of proper module/library management with the current build system in bemanitools 5, proper separation of concerns and clean integration with external libraries isn’t possible with reasonable effort.
This commit was merged in pull request #314.
This commit is contained in:
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// dear imgui: Renderer Backend for DirectX9
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// This needs to be used along with a Platform Backend (e.g. Win32)
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// Implemented features:
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// [X] Renderer: User texture binding. Use 'LPDIRECT3DTEXTURE9' as ImTextureID. Read the FAQ about ImTextureID!
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// [X] Renderer: Large meshes support (64k+ vertices) even with 16-bit indices (ImGuiBackendFlags_RendererHasVtxOffset).
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// [X] Renderer: IMGUI_USE_BGRA_PACKED_COLOR support, as this is the optimal color encoding for DirectX9.
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// You can use unmodified imgui_impl_* files in your project. See examples/ folder for examples of using this.
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// Prefer including the entire imgui/ repository into your project (either as a copy or as a submodule), and only build the backends you need.
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// Learn about Dear ImGui:
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// - FAQ https://dearimgui.com/faq
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// - Getting Started https://dearimgui.com/getting-started
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// - Documentation https://dearimgui.com/docs (same as your local docs/ folder).
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// - Introduction, links and more at the top of imgui.cpp
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// CHANGELOG
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// (minor and older changes stripped away, please see git history for details)
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// 2024-10-07: DirectX9: Changed default texture sampler to Clamp instead of Repeat/Wrap.
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// 2024-02-12: DirectX9: Using RGBA format when supported by the driver to avoid CPU side conversion. (#6575)
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// 2022-10-11: Using 'nullptr' instead of 'NULL' as per our switch to C++11.
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// 2021-06-29: Reorganized backend to pull data from a single structure to facilitate usage with multiple-contexts (all g_XXXX access changed to bd->XXXX).
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// 2021-06-25: DirectX9: Explicitly disable texture state stages after >= 1.
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// 2021-05-19: DirectX9: Replaced direct access to ImDrawCmd::TextureId with a call to ImDrawCmd::GetTexID(). (will become a requirement)
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// 2021-04-23: DirectX9: Explicitly setting up more graphics states to increase compatibility with unusual non-default states.
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// 2021-03-18: DirectX9: Calling IDirect3DStateBlock9::Capture() after CreateStateBlock() as a workaround for state restoring issues (see #3857).
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// 2021-03-03: DirectX9: Added support for IMGUI_USE_BGRA_PACKED_COLOR in user's imconfig file.
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// 2021-02-18: DirectX9: Change blending equation to preserve alpha in output buffer.
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// 2019-05-29: DirectX9: Added support for large mesh (64K+ vertices), enable ImGuiBackendFlags_RendererHasVtxOffset flag.
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// 2019-04-30: DirectX9: Added support for special ImDrawCallback_ResetRenderState callback to reset render state.
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// 2019-03-29: Misc: Fixed erroneous assert in ImGui_ImplDX9_InvalidateDeviceObjects().
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// 2019-01-16: Misc: Disabled fog before drawing UI's. Fixes issue #2288.
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// 2018-11-30: Misc: Setting up io.BackendRendererName so it can be displayed in the About Window.
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// 2018-06-08: Misc: Extracted imgui_impl_dx9.cpp/.h away from the old combined DX9+Win32 example.
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// 2018-06-08: DirectX9: Use draw_data->DisplayPos and draw_data->DisplaySize to setup projection matrix and clipping rectangle.
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// 2018-05-07: Render: Saving/restoring Transform because they don't seem to be included in the StateBlock. Setting shading mode to Gouraud.
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// 2018-02-16: Misc: Obsoleted the io.RenderDrawListsFn callback and exposed ImGui_ImplDX9_RenderDrawData() in the .h file so you can call it yourself.
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// 2018-02-06: Misc: Removed call to ImGui::Shutdown() which is not available from 1.60 WIP, user needs to call CreateContext/DestroyContext themselves.
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#include "imgui.h"
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#ifndef IMGUI_DISABLE
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#include "imgui_impl_dx9.h"
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// DirectX
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#include <d3d9.h>
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// DirectX data
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struct ImGui_ImplDX9_Data
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{
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LPDIRECT3DDEVICE9 pd3dDevice;
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LPDIRECT3DVERTEXBUFFER9 pVB;
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LPDIRECT3DINDEXBUFFER9 pIB;
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LPDIRECT3DTEXTURE9 FontTexture;
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int VertexBufferSize;
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int IndexBufferSize;
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bool HasRgbaSupport;
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ImGui_ImplDX9_Data() { memset((void*)this, 0, sizeof(*this)); VertexBufferSize = 5000; IndexBufferSize = 10000; }
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};
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struct CUSTOMVERTEX
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{
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float pos[3];
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D3DCOLOR col;
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float uv[2];
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};
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#define D3DFVF_CUSTOMVERTEX (D3DFVF_XYZ|D3DFVF_DIFFUSE|D3DFVF_TEX1)
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#ifdef IMGUI_USE_BGRA_PACKED_COLOR
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#define IMGUI_COL_TO_DX9_ARGB(_COL) (_COL)
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#else
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#define IMGUI_COL_TO_DX9_ARGB(_COL) (((_COL) & 0xFF00FF00) | (((_COL) & 0xFF0000) >> 16) | (((_COL) & 0xFF) << 16))
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#endif
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// Backend data stored in io.BackendRendererUserData to allow support for multiple Dear ImGui contexts
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// It is STRONGLY preferred that you use docking branch with multi-viewports (== single Dear ImGui context + multiple windows) instead of multiple Dear ImGui contexts.
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static ImGui_ImplDX9_Data* ImGui_ImplDX9_GetBackendData()
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{
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return ImGui::GetCurrentContext() ? (ImGui_ImplDX9_Data*)ImGui::GetIO().BackendRendererUserData : nullptr;
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}
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// Functions
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static void ImGui_ImplDX9_SetupRenderState(ImDrawData* draw_data)
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{
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ImGui_ImplDX9_Data* bd = ImGui_ImplDX9_GetBackendData();
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// Setup viewport
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D3DVIEWPORT9 vp;
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vp.X = vp.Y = 0;
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vp.Width = (DWORD)draw_data->DisplaySize.x;
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vp.Height = (DWORD)draw_data->DisplaySize.y;
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vp.MinZ = 0.0f;
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vp.MaxZ = 1.0f;
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LPDIRECT3DDEVICE9 device = bd->pd3dDevice;
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device->SetViewport(&vp);
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// Setup render state: fixed-pipeline, alpha-blending, no face culling, no depth testing, shade mode (for gradient), bilinear sampling.
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device->SetPixelShader(nullptr);
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device->SetVertexShader(nullptr);
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device->SetRenderState(D3DRS_FILLMODE, D3DFILL_SOLID);
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device->SetRenderState(D3DRS_SHADEMODE, D3DSHADE_GOURAUD);
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device->SetRenderState(D3DRS_ZWRITEENABLE, FALSE);
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device->SetRenderState(D3DRS_ALPHATESTENABLE, FALSE);
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device->SetRenderState(D3DRS_CULLMODE, D3DCULL_NONE);
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device->SetRenderState(D3DRS_ZENABLE, FALSE);
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device->SetRenderState(D3DRS_ALPHABLENDENABLE, TRUE);
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device->SetRenderState(D3DRS_BLENDOP, D3DBLENDOP_ADD);
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device->SetRenderState(D3DRS_SRCBLEND, D3DBLEND_SRCALPHA);
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device->SetRenderState(D3DRS_DESTBLEND, D3DBLEND_INVSRCALPHA);
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device->SetRenderState(D3DRS_SEPARATEALPHABLENDENABLE, TRUE);
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device->SetRenderState(D3DRS_SRCBLENDALPHA, D3DBLEND_ONE);
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device->SetRenderState(D3DRS_DESTBLENDALPHA, D3DBLEND_INVSRCALPHA);
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device->SetRenderState(D3DRS_SCISSORTESTENABLE, TRUE);
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device->SetRenderState(D3DRS_FOGENABLE, FALSE);
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device->SetRenderState(D3DRS_RANGEFOGENABLE, FALSE);
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device->SetRenderState(D3DRS_SPECULARENABLE, FALSE);
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device->SetRenderState(D3DRS_STENCILENABLE, FALSE);
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device->SetRenderState(D3DRS_CLIPPING, TRUE);
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device->SetRenderState(D3DRS_LIGHTING, FALSE);
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device->SetTextureStageState(0, D3DTSS_COLOROP, D3DTOP_MODULATE);
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device->SetTextureStageState(0, D3DTSS_COLORARG1, D3DTA_TEXTURE);
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device->SetTextureStageState(0, D3DTSS_COLORARG2, D3DTA_DIFFUSE);
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device->SetTextureStageState(0, D3DTSS_ALPHAOP, D3DTOP_MODULATE);
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device->SetTextureStageState(0, D3DTSS_ALPHAARG1, D3DTA_TEXTURE);
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device->SetTextureStageState(0, D3DTSS_ALPHAARG2, D3DTA_DIFFUSE);
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device->SetTextureStageState(1, D3DTSS_COLOROP, D3DTOP_DISABLE);
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device->SetTextureStageState(1, D3DTSS_ALPHAOP, D3DTOP_DISABLE);
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device->SetSamplerState(0, D3DSAMP_MINFILTER, D3DTEXF_LINEAR);
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device->SetSamplerState(0, D3DSAMP_MAGFILTER, D3DTEXF_LINEAR);
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device->SetSamplerState(0, D3DSAMP_ADDRESSU, D3DTADDRESS_CLAMP);
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device->SetSamplerState(0, D3DSAMP_ADDRESSV, D3DTADDRESS_CLAMP);
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// Setup orthographic projection matrix
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// Our visible imgui space lies from draw_data->DisplayPos (top left) to draw_data->DisplayPos+data_data->DisplaySize (bottom right). DisplayPos is (0,0) for single viewport apps.
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// Being agnostic of whether <d3dx9.h> or <DirectXMath.h> can be used, we aren't relying on D3DXMatrixIdentity()/D3DXMatrixOrthoOffCenterLH() or DirectX::XMMatrixIdentity()/DirectX::XMMatrixOrthographicOffCenterLH()
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{
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float L = draw_data->DisplayPos.x + 0.5f;
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float R = draw_data->DisplayPos.x + draw_data->DisplaySize.x + 0.5f;
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float T = draw_data->DisplayPos.y + 0.5f;
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float B = draw_data->DisplayPos.y + draw_data->DisplaySize.y + 0.5f;
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D3DMATRIX mat_identity = { { { 1.0f, 0.0f, 0.0f, 0.0f, 0.0f, 1.0f, 0.0f, 0.0f, 0.0f, 0.0f, 1.0f, 0.0f, 0.0f, 0.0f, 0.0f, 1.0f } } };
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D3DMATRIX mat_projection =
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{ { {
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2.0f/(R-L), 0.0f, 0.0f, 0.0f,
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0.0f, 2.0f/(T-B), 0.0f, 0.0f,
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0.0f, 0.0f, 0.5f, 0.0f,
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(L+R)/(L-R), (T+B)/(B-T), 0.5f, 1.0f
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} } };
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device->SetTransform(D3DTS_WORLD, &mat_identity);
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device->SetTransform(D3DTS_VIEW, &mat_identity);
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device->SetTransform(D3DTS_PROJECTION, &mat_projection);
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}
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}
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// Render function.
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void ImGui_ImplDX9_RenderDrawData(ImDrawData* draw_data)
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{
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// Avoid rendering when minimized
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if (draw_data->DisplaySize.x <= 0.0f || draw_data->DisplaySize.y <= 0.0f)
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return;
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ImGui_ImplDX9_Data* bd = ImGui_ImplDX9_GetBackendData();
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LPDIRECT3DDEVICE9 device = bd->pd3dDevice;
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// Create and grow buffers if needed
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if (!bd->pVB || bd->VertexBufferSize < draw_data->TotalVtxCount)
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{
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if (bd->pVB) { bd->pVB->Release(); bd->pVB = nullptr; }
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bd->VertexBufferSize = draw_data->TotalVtxCount + 5000;
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if (device->CreateVertexBuffer(bd->VertexBufferSize * sizeof(CUSTOMVERTEX), D3DUSAGE_DYNAMIC | D3DUSAGE_WRITEONLY, D3DFVF_CUSTOMVERTEX, D3DPOOL_DEFAULT, &bd->pVB, nullptr) < 0)
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return;
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}
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if (!bd->pIB || bd->IndexBufferSize < draw_data->TotalIdxCount)
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{
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if (bd->pIB) { bd->pIB->Release(); bd->pIB = nullptr; }
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bd->IndexBufferSize = draw_data->TotalIdxCount + 10000;
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if (device->CreateIndexBuffer(bd->IndexBufferSize * sizeof(ImDrawIdx), D3DUSAGE_DYNAMIC | D3DUSAGE_WRITEONLY, sizeof(ImDrawIdx) == 2 ? D3DFMT_INDEX16 : D3DFMT_INDEX32, D3DPOOL_DEFAULT, &bd->pIB, nullptr) < 0)
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return;
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}
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// Backup the DX9 state
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IDirect3DStateBlock9* state_block = nullptr;
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if (device->CreateStateBlock(D3DSBT_ALL, &state_block) < 0)
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return;
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if (state_block->Capture() < 0)
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{
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state_block->Release();
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return;
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}
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// Backup the DX9 transform (DX9 documentation suggests that it is included in the StateBlock but it doesn't appear to)
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D3DMATRIX last_world, last_view, last_projection;
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device->GetTransform(D3DTS_WORLD, &last_world);
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device->GetTransform(D3DTS_VIEW, &last_view);
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device->GetTransform(D3DTS_PROJECTION, &last_projection);
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// Allocate buffers
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CUSTOMVERTEX* vtx_dst;
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ImDrawIdx* idx_dst;
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if (bd->pVB->Lock(0, (UINT)(draw_data->TotalVtxCount * sizeof(CUSTOMVERTEX)), (void**)&vtx_dst, D3DLOCK_DISCARD) < 0)
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{
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state_block->Release();
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return;
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}
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if (bd->pIB->Lock(0, (UINT)(draw_data->TotalIdxCount * sizeof(ImDrawIdx)), (void**)&idx_dst, D3DLOCK_DISCARD) < 0)
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{
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bd->pVB->Unlock();
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state_block->Release();
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return;
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}
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// Copy and convert all vertices into a single contiguous buffer, convert colors to DX9 default format.
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// FIXME-OPT: This is a minor waste of resource, the ideal is to use imconfig.h and
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// 1) to avoid repacking colors: #define IMGUI_USE_BGRA_PACKED_COLOR
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// 2) to avoid repacking vertices: #define IMGUI_OVERRIDE_DRAWVERT_STRUCT_LAYOUT struct ImDrawVert { ImVec2 pos; float z; ImU32 col; ImVec2 uv; }
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for (int n = 0; n < draw_data->CmdListsCount; n++)
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{
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const ImDrawList* draw_list = draw_data->CmdLists[n];
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const ImDrawVert* vtx_src = draw_list->VtxBuffer.Data;
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for (int i = 0; i < draw_list->VtxBuffer.Size; i++)
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{
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vtx_dst->pos[0] = vtx_src->pos.x;
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vtx_dst->pos[1] = vtx_src->pos.y;
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vtx_dst->pos[2] = 0.0f;
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vtx_dst->col = IMGUI_COL_TO_DX9_ARGB(vtx_src->col);
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vtx_dst->uv[0] = vtx_src->uv.x;
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vtx_dst->uv[1] = vtx_src->uv.y;
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vtx_dst++;
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vtx_src++;
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}
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memcpy(idx_dst, draw_list->IdxBuffer.Data, draw_list->IdxBuffer.Size * sizeof(ImDrawIdx));
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idx_dst += draw_list->IdxBuffer.Size;
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}
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bd->pVB->Unlock();
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bd->pIB->Unlock();
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device->SetStreamSource(0, bd->pVB, 0, sizeof(CUSTOMVERTEX));
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device->SetIndices(bd->pIB);
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device->SetFVF(D3DFVF_CUSTOMVERTEX);
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// Setup desired DX state
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ImGui_ImplDX9_SetupRenderState(draw_data);
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// Render command lists
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// (Because we merged all buffers into a single one, we maintain our own offset into them)
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int global_vtx_offset = 0;
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int global_idx_offset = 0;
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ImVec2 clip_off = draw_data->DisplayPos;
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for (int n = 0; n < draw_data->CmdListsCount; n++)
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{
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const ImDrawList* draw_list = draw_data->CmdLists[n];
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for (int cmd_i = 0; cmd_i < draw_list->CmdBuffer.Size; cmd_i++)
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{
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const ImDrawCmd* pcmd = &draw_list->CmdBuffer[cmd_i];
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if (pcmd->UserCallback != nullptr)
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{
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// User callback, registered via ImDrawList::AddCallback()
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// (ImDrawCallback_ResetRenderState is a special callback value used by the user to request the renderer to reset render state.)
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if (pcmd->UserCallback == ImDrawCallback_ResetRenderState)
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ImGui_ImplDX9_SetupRenderState(draw_data);
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else
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pcmd->UserCallback(draw_list, pcmd);
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}
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else
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{
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// Project scissor/clipping rectangles into framebuffer space
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ImVec2 clip_min(pcmd->ClipRect.x - clip_off.x, pcmd->ClipRect.y - clip_off.y);
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ImVec2 clip_max(pcmd->ClipRect.z - clip_off.x, pcmd->ClipRect.w - clip_off.y);
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if (clip_max.x <= clip_min.x || clip_max.y <= clip_min.y)
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continue;
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// Apply scissor/clipping rectangle
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const RECT r = { (LONG)clip_min.x, (LONG)clip_min.y, (LONG)clip_max.x, (LONG)clip_max.y };
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device->SetScissorRect(&r);
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// Bind texture, Draw
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const LPDIRECT3DTEXTURE9 texture = (LPDIRECT3DTEXTURE9)pcmd->GetTexID();
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device->SetTexture(0, texture);
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device->DrawIndexedPrimitive(D3DPT_TRIANGLELIST, pcmd->VtxOffset + global_vtx_offset, 0, (UINT)draw_list->VtxBuffer.Size, pcmd->IdxOffset + global_idx_offset, pcmd->ElemCount / 3);
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}
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}
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global_idx_offset += draw_list->IdxBuffer.Size;
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global_vtx_offset += draw_list->VtxBuffer.Size;
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}
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// Restore the DX9 transform
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device->SetTransform(D3DTS_WORLD, &last_world);
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device->SetTransform(D3DTS_VIEW, &last_view);
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device->SetTransform(D3DTS_PROJECTION, &last_projection);
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// Restore the DX9 state
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state_block->Apply();
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state_block->Release();
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}
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static bool ImGui_ImplDX9_CheckFormatSupport(LPDIRECT3DDEVICE9 pDevice, D3DFORMAT format)
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{
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LPDIRECT3D9 pd3d = nullptr;
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if (pDevice->GetDirect3D(&pd3d) != D3D_OK)
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return false;
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D3DDEVICE_CREATION_PARAMETERS param = {};
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D3DDISPLAYMODE mode = {};
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if (pDevice->GetCreationParameters(¶m) != D3D_OK || pDevice->GetDisplayMode(0, &mode) != D3D_OK)
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{
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pd3d->Release();
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return false;
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}
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// Font texture should support linear filter, color blend and write to render-target
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bool support = (pd3d->CheckDeviceFormat(param.AdapterOrdinal, param.DeviceType, mode.Format, D3DUSAGE_DYNAMIC | D3DUSAGE_QUERY_FILTER | D3DUSAGE_QUERY_POSTPIXELSHADER_BLENDING, D3DRTYPE_TEXTURE, format)) == D3D_OK;
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pd3d->Release();
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return support;
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}
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bool ImGui_ImplDX9_Init(IDirect3DDevice9* device)
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{
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ImGuiIO& io = ImGui::GetIO();
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IMGUI_CHECKVERSION();
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IM_ASSERT(io.BackendRendererUserData == nullptr && "Already initialized a renderer backend!");
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// Setup backend capabilities flags
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ImGui_ImplDX9_Data* bd = IM_NEW(ImGui_ImplDX9_Data)();
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io.BackendRendererUserData = (void*)bd;
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io.BackendRendererName = "imgui_impl_dx9";
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io.BackendFlags |= ImGuiBackendFlags_RendererHasVtxOffset; // We can honor the ImDrawCmd::VtxOffset field, allowing for large meshes.
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bd->pd3dDevice = device;
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bd->pd3dDevice->AddRef();
|
||||
bd->HasRgbaSupport = ImGui_ImplDX9_CheckFormatSupport(bd->pd3dDevice, D3DFMT_A8B8G8R8);
|
||||
|
||||
return true;
|
||||
}
|
||||
|
||||
void ImGui_ImplDX9_Shutdown()
|
||||
{
|
||||
ImGui_ImplDX9_Data* bd = ImGui_ImplDX9_GetBackendData();
|
||||
IM_ASSERT(bd != nullptr && "No renderer backend to shutdown, or already shutdown?");
|
||||
ImGuiIO& io = ImGui::GetIO();
|
||||
|
||||
ImGui_ImplDX9_InvalidateDeviceObjects();
|
||||
if (bd->pd3dDevice) { bd->pd3dDevice->Release(); }
|
||||
io.BackendRendererName = nullptr;
|
||||
io.BackendRendererUserData = nullptr;
|
||||
io.BackendFlags &= ~ImGuiBackendFlags_RendererHasVtxOffset;
|
||||
IM_DELETE(bd);
|
||||
}
|
||||
|
||||
// Convert RGBA32 to BGRA32 (because RGBA32 is not well supported by DX9 devices)
|
||||
static void ImGui_ImplDX9_CopyTextureRegion(bool tex_use_colors, ImU32* src, int src_pitch, ImU32* dst, int dst_pitch, int w, int h)
|
||||
{
|
||||
#ifndef IMGUI_USE_BGRA_PACKED_COLOR
|
||||
ImGui_ImplDX9_Data* bd = ImGui_ImplDX9_GetBackendData();
|
||||
const bool convert_rgba_to_bgra = (!bd->HasRgbaSupport && tex_use_colors);
|
||||
#else
|
||||
const bool convert_rgba_to_bgra = false;
|
||||
IM_UNUSED(tex_use_colors);
|
||||
#endif
|
||||
for (int y = 0; y < h; y++)
|
||||
{
|
||||
ImU32* src_p = (ImU32*)((unsigned char*)src + src_pitch * y);
|
||||
ImU32* dst_p = (ImU32*)((unsigned char*)dst + dst_pitch * y);
|
||||
if (convert_rgba_to_bgra)
|
||||
for (int x = w; x > 0; x--, src_p++, dst_p++) // Convert copy
|
||||
*dst_p = IMGUI_COL_TO_DX9_ARGB(*src_p);
|
||||
else
|
||||
memcpy(dst_p, src_p, w * 4); // Raw copy
|
||||
}
|
||||
}
|
||||
|
||||
static bool ImGui_ImplDX9_CreateFontsTexture()
|
||||
{
|
||||
// Build texture atlas
|
||||
ImGuiIO& io = ImGui::GetIO();
|
||||
ImGui_ImplDX9_Data* bd = ImGui_ImplDX9_GetBackendData();
|
||||
unsigned char* pixels;
|
||||
int width, height, bytes_per_pixel;
|
||||
io.Fonts->GetTexDataAsRGBA32(&pixels, &width, &height, &bytes_per_pixel);
|
||||
|
||||
// Upload texture to graphics system
|
||||
bd->FontTexture = nullptr;
|
||||
if (bd->pd3dDevice->CreateTexture(width, height, 1, D3DUSAGE_DYNAMIC, bd->HasRgbaSupport ? D3DFMT_A8B8G8R8 : D3DFMT_A8R8G8B8, D3DPOOL_DEFAULT, &bd->FontTexture, nullptr) < 0)
|
||||
return false;
|
||||
D3DLOCKED_RECT tex_locked_rect;
|
||||
if (bd->FontTexture->LockRect(0, &tex_locked_rect, nullptr, 0) != D3D_OK)
|
||||
return false;
|
||||
ImGui_ImplDX9_CopyTextureRegion(io.Fonts->TexPixelsUseColors, (ImU32*)pixels, width * bytes_per_pixel, (ImU32*)tex_locked_rect.pBits, (int)tex_locked_rect.Pitch, width, height);
|
||||
bd->FontTexture->UnlockRect(0);
|
||||
|
||||
// Store our identifier
|
||||
io.Fonts->SetTexID((ImTextureID)bd->FontTexture);
|
||||
return true;
|
||||
}
|
||||
|
||||
bool ImGui_ImplDX9_CreateDeviceObjects()
|
||||
{
|
||||
ImGui_ImplDX9_Data* bd = ImGui_ImplDX9_GetBackendData();
|
||||
if (!bd || !bd->pd3dDevice)
|
||||
return false;
|
||||
if (!ImGui_ImplDX9_CreateFontsTexture())
|
||||
return false;
|
||||
return true;
|
||||
}
|
||||
|
||||
void ImGui_ImplDX9_InvalidateDeviceObjects()
|
||||
{
|
||||
ImGui_ImplDX9_Data* bd = ImGui_ImplDX9_GetBackendData();
|
||||
if (!bd || !bd->pd3dDevice)
|
||||
return;
|
||||
if (bd->pVB) { bd->pVB->Release(); bd->pVB = nullptr; }
|
||||
if (bd->pIB) { bd->pIB->Release(); bd->pIB = nullptr; }
|
||||
if (bd->FontTexture) { bd->FontTexture->Release(); bd->FontTexture = nullptr; ImGui::GetIO().Fonts->SetTexID(0); } // We copied bd->pFontTextureView to io.Fonts->TexID so let's clear that as well.
|
||||
}
|
||||
|
||||
void ImGui_ImplDX9_NewFrame()
|
||||
{
|
||||
ImGui_ImplDX9_Data* bd = ImGui_ImplDX9_GetBackendData();
|
||||
IM_ASSERT(bd != nullptr && "Context or backend not initialized! Did you call ImGui_ImplDX9_Init()?");
|
||||
|
||||
if (!bd->FontTexture)
|
||||
ImGui_ImplDX9_CreateDeviceObjects();
|
||||
}
|
||||
|
||||
//-----------------------------------------------------------------------------
|
||||
|
||||
#endif // #ifndef IMGUI_DISABLE
|
||||
Reference in New Issue
Block a user