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ImDrawList::AddCallback() allows for custom rendering (e.g. 3D scene inside a imgui widget))
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parent
82666cdc57
commit
2ecc285919
66
imgui.cpp
66
imgui.cpp
@ -6039,81 +6039,84 @@ void ImDrawList::Clear()
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texture_id_stack.resize(0);
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}
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// This is useful if you need to force-create a new draw call (to allow for depending rendering / blending).
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// Otherwise primitives are merged into the same draw-call as much as possible.
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void ImDrawList::SplitDrawCmd()
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void ImDrawList::AddDrawCmd()
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{
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ImDrawCmd draw_cmd;
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draw_cmd.vtx_count = 0;
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draw_cmd.clip_rect = clip_rect_stack.back();
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draw_cmd.texture_id = texture_id_stack.back();
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draw_cmd.clip_rect = clip_rect_stack.empty() ? GNullClipRect : clip_rect_stack.back();
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draw_cmd.texture_id = texture_id_stack.empty() ? NULL : texture_id_stack.back();
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draw_cmd.user_callback = NULL;
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draw_cmd.user_callback_data = NULL;
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commands.push_back(draw_cmd);
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}
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void ImDrawList::SetClipRect(const ImVec4& clip_rect)
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void ImDrawList::AddCallback(ImDrawCallback callback, void* callback_data)
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{
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ImDrawCmd* current_cmd = commands.empty() ? NULL : &commands.back();
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if (current_cmd && current_cmd->vtx_count == 0)
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if (!current_cmd || current_cmd->vtx_count != 0 || current_cmd->user_callback != NULL)
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{
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// Reuse existing command (high-level clipping may have discarded vertices submitted earlier)
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// FIXME-OPT: Possibly even reuse previous command.
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current_cmd->clip_rect = clip_rect;
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AddDrawCmd();
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current_cmd = &commands.back();
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}
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current_cmd->user_callback = callback;
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current_cmd->user_callback_data = callback_data;
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// Force a new command after us
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// We function this way so that the most common calls (AddLine, AddRect..) always have a command to add to without doing any check.
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AddDrawCmd();
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}
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void ImDrawList::UpdateClipRect()
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{
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ImDrawCmd* current_cmd = commands.empty() ? NULL : &commands.back();
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if (!current_cmd || (current_cmd->vtx_count != 0) || current_cmd->user_callback != NULL)
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{
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AddDrawCmd();
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}
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else
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{
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ImDrawCmd draw_cmd;
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draw_cmd.vtx_count = 0;
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draw_cmd.clip_rect = clip_rect;
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draw_cmd.texture_id = texture_id_stack.back();
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commands.push_back(draw_cmd);
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current_cmd->clip_rect = clip_rect_stack.empty() ? GNullClipRect : clip_rect_stack.back();
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}
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}
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void ImDrawList::PushClipRect(const ImVec4& clip_rect)
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{
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clip_rect_stack.push_back(clip_rect);
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SetClipRect(clip_rect);
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UpdateClipRect();
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}
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void ImDrawList::PopClipRect()
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{
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IM_ASSERT(clip_rect_stack.size() > 0);
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clip_rect_stack.pop_back();
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const ImVec4 clip_rect = clip_rect_stack.empty() ? GNullClipRect : clip_rect_stack.back();
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SetClipRect(clip_rect);
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UpdateClipRect();
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}
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void ImDrawList::SetTextureID(const ImTextureID& texture_id)
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void ImDrawList::UpdateTextureID()
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{
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ImDrawCmd* current_cmd = commands.empty() ? NULL : &commands.back();
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if (current_cmd && (current_cmd->vtx_count == 0 || current_cmd->texture_id == texture_id))
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const ImTextureID texture_id = texture_id_stack.empty() ? NULL : texture_id_stack.back();
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if (!current_cmd || (current_cmd->vtx_count != 0 && current_cmd->texture_id != texture_id) || current_cmd->user_callback != NULL)
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{
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// Reuse existing command
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// FIXME-OPT: Possibly even reuse previous command.
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current_cmd->texture_id = texture_id;
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AddDrawCmd();
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}
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else
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{
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ImDrawCmd draw_cmd;
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draw_cmd.vtx_count = 0;
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draw_cmd.clip_rect = clip_rect_stack.empty() ? GNullClipRect: clip_rect_stack.back();
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draw_cmd.texture_id = texture_id;
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commands.push_back(draw_cmd);
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current_cmd->texture_id = texture_id;
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}
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}
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void ImDrawList::PushTextureID(const ImTextureID& texture_id)
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{
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texture_id_stack.push_back(texture_id);
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SetTextureID(texture_id);
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UpdateTextureID();
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}
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void ImDrawList::PopTextureID()
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{
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IM_ASSERT(texture_id_stack.size() > 0);
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texture_id_stack.pop_back();
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const ImTextureID texture_id = texture_id_stack.empty() ? NULL : texture_id_stack.back();
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SetTextureID(texture_id);
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UpdateTextureID();
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}
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void ImDrawList::ReserveVertices(unsigned int vtx_count)
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@ -6143,6 +6146,7 @@ void ImDrawList::AddVtxUV(const ImVec2& pos, ImU32 col, const ImVec2& uv)
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vtx_write++;
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}
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// NB: memory should be reserved for 6 vertices by the caller.
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void ImDrawList::AddVtxLine(const ImVec2& a, const ImVec2& b, ImU32 col)
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{
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const float length = sqrtf(ImLengthSqr(b - a));
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54
imgui.h
54
imgui.h
@ -6,6 +6,7 @@
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#pragma once
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struct ImDrawCmd;
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struct ImDrawList;
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struct ImFont;
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struct ImFontAtlas;
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@ -693,19 +694,32 @@ struct ImGuiTextEditCallbackData
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//-----------------------------------------------------------------------------
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// Draw List
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// Hold a series of drawing commands. The user provides a renderer for ImDrawList
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// Hold a series of drawing commands. The user provides a renderer for ImDrawList.
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//-----------------------------------------------------------------------------
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// Typically, One ImDrawCmd = One GPU draw call
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// Draw callbacks for advanced uses.
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// NB- You most likely DO NOT need to care about draw callbacks just to create your own widget or customized UI rendering (you can poke into the draw list for that)
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// Draw callback are useful for example if you want to render a complex 3D scene inside a UI element.
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// The expected behavior from your rendering loop is:
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// if (cmd.user_callback != NULL)
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// cmd.user_callback(parent_list, cmd);
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// else
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// RenderTriangles()
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// It is up to you to decide if your rendering loop or the callback should be responsible for backup/restoring rendering state.
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typedef void (*ImDrawCallback)(const ImDrawList* parent_list, const ImDrawCmd* cmd);
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// Typically, 1 command = 1 gpu draw call
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struct ImDrawCmd
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{
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unsigned int vtx_count; // Number of vertices (multiple of 3) to be drawn. The vertices are stored in the callee ImDrawList's vtx_buffer[] array
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ImVec4 clip_rect; // Clipping rectangle (x1, y1, x2, y2)
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ImTextureID texture_id; // Copy of user-provided 'TexID' from ImFont or passed to Image*() functions. Ignore if not using images or multiple fonts
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unsigned int vtx_count; // Number of vertices (multiple of 3) to be drawn as triangles. The vertices are stored in the callee ImDrawList's vtx_buffer[] array.
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ImVec4 clip_rect; // Clipping rectangle (x1, y1, x2, y2)
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ImTextureID texture_id; // User-provided texture ID. Set by user in ImfontAtlas::SetTexID() for fonts or passed to Image*() functions. Ignore if never using images or multiple fonts atlas.
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ImDrawCallback user_callback; // If != NULL, call the function instead of rendering the vertices. vtx_count will be 0. clip_rect and texture_id will be set normally.
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void* user_callback_data; // The draw callback code can access this.
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};
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// Vertex layout
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#ifndef IMGUI_OVERRIDE_DRAWVERT_STRUCT_LAYOUT
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// Default vertex layout
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struct ImDrawVert
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{
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ImVec2 pos;
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@ -728,28 +742,20 @@ IMGUI_OVERRIDE_DRAWVERT_STRUCT_LAYOUT;
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struct ImDrawList
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{
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// This is what you have to render
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ImVector<ImDrawCmd> commands; // Commands. Typically 1 command = 1 draw call.
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ImVector<ImDrawCmd> commands; // Commands. Typically 1 command = 1 gpu draw call.
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ImVector<ImDrawVert> vtx_buffer; // Vertex buffer. Each command consume ImDrawCmd::vtx_count of those
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// [Internal to ImGui]
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ImVector<ImVec4> clip_rect_stack; // [internal]
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ImVector<ImTextureID> texture_id_stack; // [internal]
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ImDrawVert* vtx_write; // [internal] point within vtx_buffer after each add command (to avoid using the ImVector<> operators too much)
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ImVector<ImVec4> clip_rect_stack; // [Internal]
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ImVector<ImTextureID> texture_id_stack; // [Internal]
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ImDrawVert* vtx_write; // [Internal] point within vtx_buffer after each add command (to avoid using the ImVector<> operators too much)
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ImDrawList() { Clear(); }
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IMGUI_API void Clear();
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IMGUI_API void SetClipRect(const ImVec4& clip_rect);
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IMGUI_API void PushClipRect(const ImVec4& clip_rect);
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IMGUI_API void PopClipRect();
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IMGUI_API void SetTextureID(const ImTextureID& texture_id);
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IMGUI_API void PushTextureID(const ImTextureID& texture_id);
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IMGUI_API void PopTextureID();
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IMGUI_API void ReserveVertices(unsigned int vtx_count);
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IMGUI_API void AddVtx(const ImVec2& pos, ImU32 col);
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IMGUI_API void AddVtxUV(const ImVec2& pos, ImU32 col, const ImVec2& uv);
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IMGUI_API void AddVtxLine(const ImVec2& a, const ImVec2& b, ImU32 col);
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IMGUI_API void SplitDrawCmd(); // This is useful if you need to force-create a new draw call (to allow for depending rendering / blending). Otherwise primitives are merged into the same draw-call as much as possible
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// Primitives
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IMGUI_API void AddLine(const ImVec2& a, const ImVec2& b, ImU32 col);
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@ -761,6 +767,18 @@ struct ImDrawList
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IMGUI_API void AddArc(const ImVec2& center, float rad, ImU32 col, int a_min, int a_max, bool tris = false, const ImVec2& third_point_offset = ImVec2(0,0));
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IMGUI_API void AddText(ImFont* font, float font_size, const ImVec2& pos, ImU32 col, const char* text_begin, const char* text_end = NULL, float wrap_width = 0.0f);
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IMGUI_API void AddImage(ImTextureID user_texture_id, const ImVec2& a, const ImVec2& b, const ImVec2& uv0, const ImVec2& uv1, ImU32 col = 0xFFFFFFFF);
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// Advanced
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IMGUI_API void AddCallback(ImDrawCallback callback, void* callback_data); // Your rendering function must check for 'user_callback' in ImDrawCmd and call the function instead of rendering triangles.
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IMGUI_API void AddDrawCmd(); // This is useful if you need to forcefully create a new draw call (to allow for dependent rendering / blending). Otherwise primitives are merged into the same draw-call as much as possible
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// Internal helpers
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IMGUI_API void ReserveVertices(unsigned int vtx_count);
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IMGUI_API void AddVtx(const ImVec2& pos, ImU32 col);
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IMGUI_API void AddVtxUV(const ImVec2& pos, ImU32 col, const ImVec2& uv);
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IMGUI_API void AddVtxLine(const ImVec2& a, const ImVec2& b, ImU32 col);
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IMGUI_API void UpdateClipRect();
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IMGUI_API void UpdateTextureID();
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};
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// Load and rasterize multiple TTF fonts into a same texture.
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