Added ImGui 2015-12-12
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The MIT License (MIT)
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Copyright (c) 2014-2015 Omar Cornut and ImGui contributors
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Permission is hereby granted, free of charge, to any person obtaining a copy
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of this software and associated documentation files (the "Software"), to deal
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in the Software without restriction, including without limitation the rights
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to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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copies of the Software, and to permit persons to whom the Software is
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furnished to do so, subject to the following conditions:
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The above copyright notice and this permission notice shall be included in all
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copies or substantial portions of the Software.
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THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
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SOFTWARE.
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//-----------------------------------------------------------------------------
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// USER IMPLEMENTATION
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// This file contains compile-time options for ImGui.
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// Other options (memory allocation overrides, callbacks, etc.) can be set at runtime via the ImGuiIO structure - ImGui::GetIO().
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//-----------------------------------------------------------------------------
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#pragma once
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//---- Define assertion handler. Defaults to calling assert().
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//#define IM_ASSERT(_EXPR) MyAssert(_EXPR)
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//---- Define attributes of all API symbols declarations, e.g. for DLL under Windows.
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//#define IMGUI_API __declspec( dllexport )
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//#define IMGUI_API __declspec( dllimport )
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//---- Include imgui_user.inl at the end of imgui.cpp so you can include code that extends ImGui using its private data/functions.
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//#define IMGUI_INCLUDE_IMGUI_USER_INL
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//---- Include imgui_user.h at the end of imgui.h
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//#define IMGUI_INCLUDE_IMGUI_USER_H
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//---- Don't implement default handlers for Windows (so as not to link with OpenClipboard() and others Win32 functions)
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//#define IMGUI_DISABLE_WIN32_DEFAULT_CLIPBOARD_FUNCS
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//#define IMGUI_DISABLE_WIN32_DEFAULT_IME_FUNCS
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//---- Don't implement help and test window functionality (ShowUserGuide()/ShowStyleEditor()/ShowTestWindow() methods will be empty)
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//#define IMGUI_DISABLE_TEST_WINDOWS
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//---- Don't define obsolete functions names
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//#define IMGUI_DISABLE_OBSOLETE_FUNCTIONS
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//---- Implement STB libraries in a namespace to avoid conflicts
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//#define IMGUI_STB_NAMESPACE ImGuiStb
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//---- Define constructor and implicit cast operators to convert back<>forth from your math types and ImVec2/ImVec4.
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/*
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#define IM_VEC2_CLASS_EXTRA \
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ImVec2(const MyVec2& f) { x = f.x; y = f.y; } \
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operator MyVec2() const { return MyVec2(x,y); }
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#define IM_VEC4_CLASS_EXTRA \
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ImVec4(const MyVec4& f) { x = f.x; y = f.y; z = f.z; w = f.w; } \
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operator MyVec4() const { return MyVec4(x,y,z,w); }
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*/
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//---- Freely implement extra functions within the ImGui:: namespace.
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//---- Declare helpers or widgets implemented in imgui_user.inl or elsewhere, so end-user doesn't need to include multiple files.
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//---- e.g. you can create variants of the ImGui::Value() helper for your low-level math types, or your own widgets/helpers.
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/*
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namespace ImGui
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{
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void Value(const char* prefix, const MyVec2& v, const char* float_format = NULL);
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void Value(const char* prefix, const MyVec4& v, const char* float_format = NULL);
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}
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*/
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// ImGui library v1.47 WIP
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// Internals
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// You may use this file to debug, understand or extend ImGui features but we don't provide any guarantee of forward compatibility!
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// Implement maths operators for ImVec2 (disabled by default to not collide with using IM_VEC2_CLASS_EXTRA along with your own math types+operators)
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// #define IMGUI_DEFINE_MATH_OPERATORS
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#pragma once
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#ifndef IMGUI_VERSION
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#error Must include imgui.h before imgui_internal.h
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#endif
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#include <stdio.h> // FILE*
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#include <math.h> // sqrtf()
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#ifdef _MSC_VER
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#pragma warning (push)
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#pragma warning (disable: 4251) // class 'xxx' needs to have dll-interface to be used by clients of struct 'xxx' // when IMGUI_API is set to__declspec(dllexport)
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#endif
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//-----------------------------------------------------------------------------
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// Forward Declarations
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//-----------------------------------------------------------------------------
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struct ImRect;
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struct ImGuiColMod;
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struct ImGuiStyleMod;
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struct ImGuiGroupData;
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struct ImGuiSimpleColumns;
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struct ImGuiDrawContext;
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struct ImGuiTextEditState;
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struct ImGuiIniData;
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struct ImGuiMouseCursorData;
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struct ImGuiPopupRef;
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struct ImGuiState;
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struct ImGuiWindow;
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typedef int ImGuiLayoutType; // enum ImGuiLayoutType_
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typedef int ImGuiButtonFlags; // enum ImGuiButtonFlags_
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typedef int ImGuiTreeNodeFlags; // enum ImGuiTreeNodeFlags_
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typedef int ImGuiSliderFlags; // enum ImGuiSliderFlags_
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//-------------------------------------------------------------------------
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// STB libraries
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//-------------------------------------------------------------------------
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namespace ImGuiStb
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{
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#ifdef __clang__
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#pragma clang diagnostic push
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#pragma clang diagnostic ignored "-Wunused-function"
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#pragma clang diagnostic ignored "-Wmissing-prototypes"
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#endif
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#undef STB_TEXTEDIT_STRING
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#undef STB_TEXTEDIT_CHARTYPE
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#define STB_TEXTEDIT_STRING ImGuiTextEditState
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#define STB_TEXTEDIT_CHARTYPE ImWchar
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#define STB_TEXTEDIT_GETWIDTH_NEWLINE -1.0f
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#include "stb_textedit.h"
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#ifdef __clang__
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#pragma clang diagnostic pop
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#endif
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} // namespace ImGuiStb
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//-----------------------------------------------------------------------------
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// Context
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//-----------------------------------------------------------------------------
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extern IMGUI_API ImGuiState* GImGui;
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//-----------------------------------------------------------------------------
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// Helpers
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//-----------------------------------------------------------------------------
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#define IM_ARRAYSIZE(_ARR) ((int)(sizeof(_ARR)/sizeof(*_ARR)))
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#define IM_PI 3.14159265358979323846f
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// Helpers: UTF-8 <> wchar
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IMGUI_API int ImTextStrToUtf8(char* buf, int buf_size, const ImWchar* in_text, const ImWchar* in_text_end); // return output UTF-8 bytes count
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IMGUI_API int ImTextCharFromUtf8(unsigned int* out_char, const char* in_text, const char* in_text_end); // return input UTF-8 bytes count
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IMGUI_API int ImTextStrFromUtf8(ImWchar* buf, int buf_size, const char* in_text, const char* in_text_end, const char** in_remaining = NULL); // return input UTF-8 bytes count
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IMGUI_API int ImTextCountCharsFromUtf8(const char* in_text, const char* in_text_end); // return number of UTF-8 code-points (NOT bytes count)
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IMGUI_API int ImTextCountUtf8BytesFromStr(const ImWchar* in_text, const ImWchar* in_text_end); // return number of bytes to express string as UTF-8 code-points
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// Helpers: Misc
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IMGUI_API ImU32 ImHash(const void* data, int data_size, ImU32 seed = 0); // Pass data_size==0 for zero-terminated strings
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IMGUI_API void* ImLoadFileToMemory(const char* filename, const char* file_open_mode, int* out_file_size = NULL, int padding_bytes = 0);
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IMGUI_API bool ImIsPointInTriangle(const ImVec2& p, const ImVec2& a, const ImVec2& b, const ImVec2& c);
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static inline bool ImCharIsSpace(int c) { return c == ' ' || c == '\t' || c == 0x3000; }
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static inline int ImUpperPowerOfTwo(int v) { v--; v |= v >> 1; v |= v >> 2; v |= v >> 4; v |= v >> 8; v |= v >> 16; v++; return v; }
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// Helpers: String
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IMGUI_API int ImStricmp(const char* str1, const char* str2);
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IMGUI_API int ImStrnicmp(const char* str1, const char* str2, int count);
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IMGUI_API char* ImStrdup(const char* str);
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IMGUI_API int ImStrlenW(const ImWchar* str);
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IMGUI_API const ImWchar*ImStrbolW(const ImWchar* buf_mid_line, const ImWchar* buf_begin); // Find beginning-of-line
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IMGUI_API const char* ImStristr(const char* haystack, const char* haystack_end, const char* needle, const char* needle_end);
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IMGUI_API int ImFormatString(char* buf, int buf_size, const char* fmt, ...) IM_PRINTFARGS(3);
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IMGUI_API int ImFormatStringV(char* buf, int buf_size, const char* fmt, va_list args);
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// Helpers: Math
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// We are keeping those not leaking to the user by default, in the case the user has implicit cast operators between ImVec2 and its own types (when IM_VEC2_CLASS_EXTRA is defined)
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#ifdef IMGUI_DEFINE_MATH_OPERATORS
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static inline ImVec2 operator*(const ImVec2& lhs, const float rhs) { return ImVec2(lhs.x*rhs, lhs.y*rhs); }
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static inline ImVec2 operator/(const ImVec2& lhs, const float rhs) { return ImVec2(lhs.x/rhs, lhs.y/rhs); }
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static inline ImVec2 operator+(const ImVec2& lhs, const ImVec2& rhs) { return ImVec2(lhs.x+rhs.x, lhs.y+rhs.y); }
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static inline ImVec2 operator-(const ImVec2& lhs, const ImVec2& rhs) { return ImVec2(lhs.x-rhs.x, lhs.y-rhs.y); }
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static inline ImVec2 operator*(const ImVec2& lhs, const ImVec2& rhs) { return ImVec2(lhs.x*rhs.x, lhs.y*rhs.y); }
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static inline ImVec2 operator/(const ImVec2& lhs, const ImVec2& rhs) { return ImVec2(lhs.x/rhs.x, lhs.y/rhs.y); }
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static inline ImVec2& operator+=(ImVec2& lhs, const ImVec2& rhs) { lhs.x += rhs.x; lhs.y += rhs.y; return lhs; }
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static inline ImVec2& operator-=(ImVec2& lhs, const ImVec2& rhs) { lhs.x -= rhs.x; lhs.y -= rhs.y; return lhs; }
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static inline ImVec2& operator*=(ImVec2& lhs, const float rhs) { lhs.x *= rhs; lhs.y *= rhs; return lhs; }
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static inline ImVec2& operator/=(ImVec2& lhs, const float rhs) { lhs.x /= rhs; lhs.y /= rhs; return lhs; }
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static inline ImVec4 operator-(const ImVec4& lhs, const ImVec4& rhs) { return ImVec4(lhs.x-rhs.x, lhs.y-rhs.y, lhs.z-rhs.z, lhs.w-rhs.w); }
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#endif
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static inline int ImMin(int lhs, int rhs) { return lhs < rhs ? lhs : rhs; }
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static inline int ImMax(int lhs, int rhs) { return lhs >= rhs ? lhs : rhs; }
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static inline float ImMin(float lhs, float rhs) { return lhs < rhs ? lhs : rhs; }
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static inline float ImMax(float lhs, float rhs) { return lhs >= rhs ? lhs : rhs; }
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static inline ImVec2 ImMin(const ImVec2& lhs, const ImVec2& rhs) { return ImVec2(ImMin(lhs.x,rhs.x), ImMin(lhs.y,rhs.y)); }
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static inline ImVec2 ImMax(const ImVec2& lhs, const ImVec2& rhs) { return ImVec2(ImMax(lhs.x,rhs.x), ImMax(lhs.y,rhs.y)); }
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static inline int ImClamp(int v, int mn, int mx) { return (v < mn) ? mn : (v > mx) ? mx : v; }
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static inline float ImClamp(float v, float mn, float mx) { return (v < mn) ? mn : (v > mx) ? mx : v; }
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static inline ImVec2 ImClamp(const ImVec2& f, const ImVec2& mn, ImVec2 mx) { return ImVec2(ImClamp(f.x,mn.x,mx.x), ImClamp(f.y,mn.y,mx.y)); }
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static inline float ImSaturate(float f) { return (f < 0.0f) ? 0.0f : (f > 1.0f) ? 1.0f : f; }
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static inline float ImLerp(float a, float b, float t) { return a + (b - a) * t; }
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static inline ImVec2 ImLerp(const ImVec2& a, const ImVec2& b, const ImVec2& t) { return ImVec2(a.x + (b.x - a.x) * t.x, a.y + (b.y - a.y) * t.y); }
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static inline float ImLengthSqr(const ImVec2& lhs) { return lhs.x*lhs.x + lhs.y*lhs.y; }
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static inline float ImLengthSqr(const ImVec4& lhs) { return lhs.x*lhs.x + lhs.y*lhs.y + lhs.z*lhs.z + lhs.w*lhs.w; }
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static inline float ImInvLength(const ImVec2& lhs, float fail_value) { float d = lhs.x*lhs.x + lhs.y*lhs.y; if (d > 0.0f) return 1.0f / sqrtf(d); return fail_value; }
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static inline ImVec2 ImRound(ImVec2 v) { return ImVec2((float)(int)v.x, (float)(int)v.y); }
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//-----------------------------------------------------------------------------
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// Types
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//-----------------------------------------------------------------------------
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enum ImGuiButtonFlags_
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{
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ImGuiButtonFlags_Repeat = 1 << 0,
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ImGuiButtonFlags_PressedOnClick = 1 << 1, // return pressed on click only (default requires click+release)
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ImGuiButtonFlags_PressedOnRelease = 1 << 2, // return pressed on release only (default requires click+release)
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ImGuiButtonFlags_FlattenChilds = 1 << 3,
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ImGuiButtonFlags_DontClosePopups = 1 << 4,
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ImGuiButtonFlags_Disabled = 1 << 5,
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ImGuiButtonFlags_AlignTextBaseLine = 1 << 6,
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ImGuiButtonFlags_NoKeyModifiers = 1 << 7
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};
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enum ImGuiTreeNodeFlags_
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{
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ImGuiTreeNodeFlags_DefaultOpen = 1 << 0,
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ImGuiTreeNodeFlags_NoAutoExpandOnLog = 1 << 1
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};
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enum ImGuiSliderFlags_
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{
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ImGuiSliderFlags_Vertical = 1 << 0,
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};
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enum ImGuiSelectableFlagsPrivate_
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{
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// NB: need to be in sync with last value of ImGuiSelectableFlags_
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ImGuiSelectableFlags_Menu = 1 << 2,
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ImGuiSelectableFlags_MenuItem = 1 << 3,
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ImGuiSelectableFlags_Disabled = 1 << 4,
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ImGuiSelectableFlags_DrawFillAvailWidth = 1 << 5
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};
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// FIXME: this is in development, not exposed/functional as a generic feature yet.
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enum ImGuiLayoutType_
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{
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ImGuiLayoutType_Vertical,
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ImGuiLayoutType_Horizontal
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};
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enum ImGuiPlotType
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{
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ImGuiPlotType_Lines,
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ImGuiPlotType_Histogram
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};
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enum ImGuiDataType
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{
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ImGuiDataType_Int,
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ImGuiDataType_Float
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};
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// 2D axis aligned bounding-box
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// NB: we can't rely on ImVec2 math operators being available here
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struct IMGUI_API ImRect
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{
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ImVec2 Min; // Upper-left
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ImVec2 Max; // Lower-right
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ImRect() : Min(FLT_MAX,FLT_MAX), Max(-FLT_MAX,-FLT_MAX) {}
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ImRect(const ImVec2& min, const ImVec2& max) : Min(min), Max(max) {}
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ImRect(const ImVec4& v) : Min(v.x, v.y), Max(v.z, v.w) {}
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ImRect(float x1, float y1, float x2, float y2) : Min(x1, y1), Max(x2, y2) {}
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ImVec2 GetCenter() const { return ImVec2((Min.x+Max.x)*0.5f, (Min.y+Max.y)*0.5f); }
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ImVec2 GetSize() const { return ImVec2(Max.x-Min.x, Max.y-Min.y); }
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float GetWidth() const { return Max.x-Min.x; }
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float GetHeight() const { return Max.y-Min.y; }
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ImVec2 GetTL() const { return Min; } // Top-left
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ImVec2 GetTR() const { return ImVec2(Max.x, Min.y); } // Top-right
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ImVec2 GetBL() const { return ImVec2(Min.x, Max.y); } // Bottom-left
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ImVec2 GetBR() const { return Max; } // Bottom-right
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bool Contains(const ImVec2& p) const { return p.x >= Min.x && p.y >= Min.y && p.x < Max.x && p.y < Max.y; }
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bool Contains(const ImRect& r) const { return r.Min.x >= Min.x && r.Min.y >= Min.y && r.Max.x < Max.x && r.Max.y < Max.y; }
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bool Overlaps(const ImRect& r) const { return r.Min.y < Max.y && r.Max.y > Min.y && r.Min.x < Max.x && r.Max.x > Min.x; }
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void Add(const ImVec2& rhs) { if (Min.x > rhs.x) Min.x = rhs.x; if (Min.y > rhs.y) Min.y = rhs.y; if (Max.x < rhs.x) Max.x = rhs.x; if (Max.y < rhs.y) Max.y = rhs.y; }
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void Add(const ImRect& rhs) { if (Min.x > rhs.Min.x) Min.x = rhs.Min.x; if (Min.y > rhs.Min.y) Min.y = rhs.Min.y; if (Max.x < rhs.Max.x) Max.x = rhs.Max.x; if (Max.y < rhs.Max.y) Max.y = rhs.Max.y; }
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void Expand(const float amount) { Min.x -= amount; Min.y -= amount; Max.x += amount; Max.y += amount; }
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void Expand(const ImVec2& amount) { Min.x -= amount.x; Min.y -= amount.y; Max.x += amount.x; Max.y += amount.y; }
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void Reduce(const ImVec2& amount) { Min.x += amount.x; Min.y += amount.y; Max.x -= amount.x; Max.y -= amount.y; }
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void Clip(const ImRect& clip) { if (Min.x < clip.Min.x) Min.x = clip.Min.x; if (Min.y < clip.Min.y) Min.y = clip.Min.y; if (Max.x > clip.Max.x) Max.x = clip.Max.x; if (Max.y > clip.Max.y) Max.y = clip.Max.y; }
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void Round() { Min.x = (float)(int)Min.x; Min.y = (float)(int)Min.y; Max.x = (float)(int)Max.x; Max.y = (float)(int)Max.y; }
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ImVec2 GetClosestPoint(ImVec2 p, bool on_edge) const
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{
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if (!on_edge && Contains(p))
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return p;
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if (p.x > Max.x) p.x = Max.x;
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else if (p.x < Min.x) p.x = Min.x;
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if (p.y > Max.y) p.y = Max.y;
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else if (p.y < Min.y) p.y = Min.y;
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return p;
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}
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};
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// Stacked color modifier, backup of modified data so we can restore it
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struct ImGuiColMod
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{
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ImGuiCol Col;
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ImVec4 PreviousValue;
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};
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// Stacked style modifier, backup of modified data so we can restore it
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struct ImGuiStyleMod
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{
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ImGuiStyleVar Var;
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ImVec2 PreviousValue;
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};
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// Stacked data for BeginGroup()/EndGroup()
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struct ImGuiGroupData
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{
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ImVec2 BackupCursorPos;
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ImVec2 BackupCursorMaxPos;
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float BackupIndentX;
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float BackupCurrentLineHeight;
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float BackupCurrentLineTextBaseOffset;
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float BackupLogLinePosY;
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bool AdvanceCursor;
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};
|
||||
|
||||
// Per column data for Columns()
|
||||
struct ImGuiColumnData
|
||||
{
|
||||
float OffsetNorm; // Column start offset, normalized 0.0 (far left) -> 1.0 (far right)
|
||||
//float IndentX;
|
||||
};
|
||||
|
||||
// Simple column measurement currently used for MenuItem() only. This is very short-sighted for now and NOT a generic helper.
|
||||
struct IMGUI_API ImGuiSimpleColumns
|
||||
{
|
||||
int Count;
|
||||
float Spacing;
|
||||
float Width, NextWidth;
|
||||
float Pos[8], NextWidths[8];
|
||||
|
||||
ImGuiSimpleColumns();
|
||||
void Update(int count, float spacing, bool clear);
|
||||
float DeclColumns(float w0, float w1, float w2);
|
||||
float CalcExtraSpace(float avail_w);
|
||||
};
|
||||
|
||||
// Internal state of the currently focused/edited text input box
|
||||
struct IMGUI_API ImGuiTextEditState
|
||||
{
|
||||
ImGuiID Id; // widget id owning the text state
|
||||
ImVector<ImWchar> Text; // edit buffer, we need to persist but can't guarantee the persistence of the user-provided buffer. so we copy into own buffer.
|
||||
ImVector<char> InitialText; // backup of end-user buffer at the time of focus (in UTF-8, unaltered)
|
||||
ImVector<char> TempTextBuffer;
|
||||
int CurLenA, CurLenW; // we need to maintain our buffer length in both UTF-8 and wchar format.
|
||||
int BufSizeA; // end-user buffer size
|
||||
float ScrollX;
|
||||
ImGuiStb::STB_TexteditState StbState;
|
||||
float CursorAnim;
|
||||
bool CursorFollow;
|
||||
bool SelectedAllMouseLock;
|
||||
|
||||
ImGuiTextEditState() { memset(this, 0, sizeof(*this)); }
|
||||
void CursorAnimReset() { CursorAnim = -0.30f; } // After a user-input the cursor stays on for a while without blinking
|
||||
void CursorClamp() { StbState.cursor = ImMin(StbState.cursor, CurLenW); StbState.select_start = ImMin(StbState.select_start, CurLenW); StbState.select_end = ImMin(StbState.select_end, CurLenW); }
|
||||
bool HasSelection() const { return StbState.select_start != StbState.select_end; }
|
||||
void ClearSelection() { StbState.select_start = StbState.select_end = StbState.cursor; }
|
||||
void SelectAll() { StbState.select_start = 0; StbState.select_end = CurLenW; StbState.cursor = StbState.select_end; StbState.has_preferred_x = false; }
|
||||
void OnKeyPressed(int key);
|
||||
};
|
||||
|
||||
// Data saved in imgui.ini file
|
||||
struct ImGuiIniData
|
||||
{
|
||||
char* Name;
|
||||
ImGuiID ID;
|
||||
ImVec2 Pos;
|
||||
ImVec2 Size;
|
||||
bool Collapsed;
|
||||
};
|
||||
|
||||
// Mouse cursor data (used when io.MouseDrawCursor is set)
|
||||
struct ImGuiMouseCursorData
|
||||
{
|
||||
ImGuiMouseCursor Type;
|
||||
ImVec2 HotOffset;
|
||||
ImVec2 Size;
|
||||
ImVec2 TexUvMin[2];
|
||||
ImVec2 TexUvMax[2];
|
||||
};
|
||||
|
||||
// Storage for current popup stack
|
||||
struct ImGuiPopupRef
|
||||
{
|
||||
ImGuiID PopupID; // Set on OpenPopup()
|
||||
ImGuiWindow* Window; // Resolved on BeginPopup() - may stay unresolved if user never calls OpenPopup()
|
||||
ImGuiWindow* ParentWindow; // Set on OpenPopup()
|
||||
ImGuiID ParentMenuSet; // Set on OpenPopup()
|
||||
ImVec2 MousePosOnOpen; // Copy of mouse position at the time of opening popup
|
||||
|
||||
ImGuiPopupRef(ImGuiID id, ImGuiWindow* parent_window, ImGuiID parent_menu_set, const ImVec2& mouse_pos) { PopupID = id; Window = NULL; ParentWindow = parent_window; ParentMenuSet = parent_menu_set; MousePosOnOpen = mouse_pos; }
|
||||
};
|
||||
|
||||
// Main state for ImGui
|
||||
struct ImGuiState
|
||||
{
|
||||
bool Initialized;
|
||||
ImGuiIO IO;
|
||||
ImGuiStyle Style;
|
||||
ImFont* Font; // (Shortcut) == FontStack.empty() ? IO.Font : FontStack.back()
|
||||
float FontSize; // (Shortcut) == FontBaseSize * g.CurrentWindow->FontWindowScale == window->FontSize()
|
||||
float FontBaseSize; // (Shortcut) == IO.FontGlobalScale * Font->Scale * Font->FontSize. Size of characters.
|
||||
ImVec2 FontTexUvWhitePixel; // (Shortcut) == Font->TexUvForWhite
|
||||
|
||||
float Time;
|
||||
int FrameCount;
|
||||
int FrameCountEnded;
|
||||
int FrameCountRendered;
|
||||
ImVector<ImGuiWindow*> Windows;
|
||||
ImVector<ImGuiWindow*> WindowsSortBuffer;
|
||||
ImGuiWindow* CurrentWindow; // Being drawn into
|
||||
ImVector<ImGuiWindow*> CurrentWindowStack;
|
||||
ImGuiWindow* FocusedWindow; // Will catch keyboard inputs
|
||||
ImGuiWindow* HoveredWindow; // Will catch mouse inputs
|
||||
ImGuiWindow* HoveredRootWindow; // Will catch mouse inputs (for focus/move only)
|
||||
ImGuiID HoveredId; // Hovered widget
|
||||
bool HoveredIdAllowOverlap;
|
||||
ImGuiID HoveredIdPreviousFrame;
|
||||
ImGuiID ActiveId; // Active widget
|
||||
ImGuiID ActiveIdPreviousFrame;
|
||||
bool ActiveIdIsAlive;
|
||||
bool ActiveIdIsJustActivated; // Set at the time of activation for one frame
|
||||
bool ActiveIdAllowOverlap; // Set only by active widget
|
||||
ImGuiWindow* ActiveIdWindow;
|
||||
ImGuiWindow* MovedWindow; // Track the child window we clicked on to move a window. Pointer is only valid if ActiveID is the "#MOVE" identifier of a window.
|
||||
ImVector<ImGuiIniData> Settings; // .ini Settings
|
||||
float SettingsDirtyTimer; // Save .ini settinngs on disk when time reaches zero
|
||||
int DisableHideTextAfterDoubleHash;
|
||||
ImVector<ImGuiColMod> ColorModifiers; // Stack for PushStyleColor()/PopStyleColor()
|
||||
ImVector<ImGuiStyleMod> StyleModifiers; // Stack for PushStyleVar()/PopStyleVar()
|
||||
ImVector<ImFont*> FontStack; // Stack for PushFont()/PopFont()
|
||||
ImVector<ImGuiPopupRef> OpenedPopupStack; // Which popups are open (persistent)
|
||||
ImVector<ImGuiPopupRef> CurrentPopupStack; // Which level of BeginPopup() we are in (reset every frame)
|
||||
|
||||
// Storage for SetNexWindow** and SetNextTreeNode*** functions
|
||||
ImVec2 SetNextWindowPosVal;
|
||||
ImVec2 SetNextWindowSizeVal;
|
||||
ImVec2 SetNextWindowContentSizeVal;
|
||||
bool SetNextWindowCollapsedVal;
|
||||
ImGuiSetCond SetNextWindowPosCond;
|
||||
ImGuiSetCond SetNextWindowSizeCond;
|
||||
ImGuiSetCond SetNextWindowContentSizeCond;
|
||||
ImGuiSetCond SetNextWindowCollapsedCond;
|
||||
bool SetNextWindowFocus;
|
||||
bool SetNextTreeNodeOpenedVal;
|
||||
ImGuiSetCond SetNextTreeNodeOpenedCond;
|
||||
|
||||
// Render
|
||||
ImDrawData RenderDrawData; // Main ImDrawData instance to pass render information to the user
|
||||
ImVector<ImDrawList*> RenderDrawLists[3];
|
||||
float ModalWindowDarkeningRatio;
|
||||
ImDrawList OverlayDrawList; // Optional software render of mouse cursors, if io.MouseDrawCursor is set + a few debug overlays
|
||||
ImGuiMouseCursor MouseCursor;
|
||||
ImGuiMouseCursorData MouseCursorData[ImGuiMouseCursor_Count_];
|
||||
|
||||
// Widget state
|
||||
ImGuiTextEditState InputTextState;
|
||||
ImFont InputTextPasswordFont;
|
||||
ImGuiID ScalarAsInputTextId; // Temporary text input when CTRL+clicking on a slider, etc.
|
||||
ImGuiStorage ColorEditModeStorage; // Store user selection of color edit mode
|
||||
ImVec2 ActiveClickDeltaToCenter;
|
||||
float DragCurrentValue; // Currently dragged value, always float, not rounded by end-user precision settings
|
||||
ImVec2 DragLastMouseDelta;
|
||||
float DragSpeedDefaultRatio; // If speed == 0.0f, uses (max-min) * DragSpeedDefaultRatio
|
||||
float DragSpeedScaleSlow;
|
||||
float DragSpeedScaleFast;
|
||||
ImVec2 ScrollbarClickDeltaToGrabCenter; // Distance between mouse and center of grab box, normalized in parent space. Use storage?
|
||||
char Tooltip[1024];
|
||||
char* PrivateClipboard; // If no custom clipboard handler is defined
|
||||
ImVec2 OsImePosRequest, OsImePosSet; // Cursor position request & last passed to the OS Input Method Editor
|
||||
|
||||
// Logging
|
||||
bool LogEnabled;
|
||||
FILE* LogFile; // If != NULL log to stdout/ file
|
||||
ImGuiTextBuffer* LogClipboard; // Else log to clipboard. This is pointer so our GImGui static constructor doesn't call heap allocators.
|
||||
int LogStartDepth;
|
||||
int LogAutoExpandMaxDepth;
|
||||
|
||||
// Misc
|
||||
float FramerateSecPerFrame[120]; // calculate estimate of framerate for user
|
||||
int FramerateSecPerFrameIdx;
|
||||
float FramerateSecPerFrameAccum;
|
||||
bool CaptureMouseNextFrame; // explicit capture via CaptureInputs() sets those flags
|
||||
bool CaptureKeyboardNextFrame;
|
||||
char TempBuffer[1024*3+1]; // temporary text buffer
|
||||
|
||||
ImGuiState()
|
||||
{
|
||||
Initialized = false;
|
||||
Font = NULL;
|
||||
FontSize = FontBaseSize = 0.0f;
|
||||
FontTexUvWhitePixel = ImVec2(0.0f, 0.0f);
|
||||
|
||||
Time = 0.0f;
|
||||
FrameCount = 0;
|
||||
FrameCountEnded = FrameCountRendered = -1;
|
||||
CurrentWindow = NULL;
|
||||
FocusedWindow = NULL;
|
||||
HoveredWindow = NULL;
|
||||
HoveredRootWindow = NULL;
|
||||
HoveredId = 0;
|
||||
HoveredIdAllowOverlap = false;
|
||||
HoveredIdPreviousFrame = 0;
|
||||
ActiveId = 0;
|
||||
ActiveIdPreviousFrame = 0;
|
||||
ActiveIdIsAlive = false;
|
||||
ActiveIdIsJustActivated = false;
|
||||
ActiveIdAllowOverlap = false;
|
||||
ActiveIdWindow = NULL;
|
||||
MovedWindow = NULL;
|
||||
SettingsDirtyTimer = 0.0f;
|
||||
DisableHideTextAfterDoubleHash = 0;
|
||||
|
||||
SetNextWindowPosVal = ImVec2(0.0f, 0.0f);
|
||||
SetNextWindowSizeVal = ImVec2(0.0f, 0.0f);
|
||||
SetNextWindowCollapsedVal = false;
|
||||
SetNextWindowPosCond = 0;
|
||||
SetNextWindowSizeCond = 0;
|
||||
SetNextWindowCollapsedCond = 0;
|
||||
SetNextWindowFocus = false;
|
||||
SetNextTreeNodeOpenedVal = false;
|
||||
SetNextTreeNodeOpenedCond = 0;
|
||||
|
||||
ScalarAsInputTextId = 0;
|
||||
ActiveClickDeltaToCenter = ImVec2(0.0f, 0.0f);
|
||||
DragCurrentValue = 0.0f;
|
||||
DragLastMouseDelta = ImVec2(0.0f, 0.0f);
|
||||
DragSpeedDefaultRatio = 0.01f;
|
||||
DragSpeedScaleSlow = 0.01f;
|
||||
DragSpeedScaleFast = 10.0f;
|
||||
ScrollbarClickDeltaToGrabCenter = ImVec2(0.0f, 0.0f);
|
||||
memset(Tooltip, 0, sizeof(Tooltip));
|
||||
PrivateClipboard = NULL;
|
||||
OsImePosRequest = OsImePosSet = ImVec2(-1.0f, -1.0f);
|
||||
|
||||
ModalWindowDarkeningRatio = 0.0f;
|
||||
OverlayDrawList._OwnerName = "##Overlay"; // Give it a name for debugging
|
||||
MouseCursor = ImGuiMouseCursor_Arrow;
|
||||
|
||||
LogEnabled = false;
|
||||
LogFile = NULL;
|
||||
LogClipboard = NULL;
|
||||
LogStartDepth = 0;
|
||||
LogAutoExpandMaxDepth = 2;
|
||||
|
||||
memset(FramerateSecPerFrame, 0, sizeof(FramerateSecPerFrame));
|
||||
FramerateSecPerFrameIdx = 0;
|
||||
FramerateSecPerFrameAccum = 0.0f;
|
||||
CaptureMouseNextFrame = CaptureKeyboardNextFrame = false;
|
||||
}
|
||||
};
|
||||
|
||||
// Transient per-window data, reset at the beginning of the frame
|
||||
// FIXME: That's theory, in practice the delimitation between ImGuiWindow and ImGuiDrawContext is quite tenuous and could be reconsidered.
|
||||
struct IMGUI_API ImGuiDrawContext
|
||||
{
|
||||
ImVec2 CursorPos;
|
||||
ImVec2 CursorPosPrevLine;
|
||||
ImVec2 CursorStartPos;
|
||||
ImVec2 CursorMaxPos; // Implicitly calculate the size of our contents, always extending. Saved into window->SizeContents at the end of the frame
|
||||
float CurrentLineHeight;
|
||||
float CurrentLineTextBaseOffset;
|
||||
float PrevLineHeight;
|
||||
float PrevLineTextBaseOffset;
|
||||
float LogLinePosY;
|
||||
int TreeDepth;
|
||||
ImGuiID LastItemID;
|
||||
ImRect LastItemRect;
|
||||
bool LastItemHoveredAndUsable;
|
||||
bool LastItemHoveredRect;
|
||||
bool MenuBarAppending;
|
||||
float MenuBarOffsetX;
|
||||
ImVector<ImGuiWindow*> ChildWindows;
|
||||
ImGuiStorage* StateStorage;
|
||||
ImGuiLayoutType LayoutType;
|
||||
|
||||
// We store the current settings outside of the vectors to increase memory locality (reduce cache misses). The vectors are rarely modified. Also it allows us to not heap allocate for short-lived windows which are not using those settings.
|
||||
float ItemWidth; // == ItemWidthStack.back(). 0.0: default, >0.0: width in pixels, <0.0: align xx pixels to the right of window
|
||||
float TextWrapPos; // == TextWrapPosStack.back() [empty == -1.0f]
|
||||
bool AllowKeyboardFocus; // == AllowKeyboardFocusStack.back() [empty == true]
|
||||
bool ButtonRepeat; // == ButtonRepeatStack.back() [empty == false]
|
||||
ImVector<float> ItemWidthStack;
|
||||
ImVector<float> TextWrapPosStack;
|
||||
ImVector<bool> AllowKeyboardFocusStack;
|
||||
ImVector<bool> ButtonRepeatStack;
|
||||
ImVector<ImGuiGroupData>GroupStack;
|
||||
ImGuiColorEditMode ColorEditMode;
|
||||
int StackSizesBackup[6]; // Store size of various stacks for asserting
|
||||
|
||||
float IndentX; // Indentation / start position from left of window (increased by TreePush/TreePop, etc.)
|
||||
float ColumnsOffsetX; // Offset to the current column (if ColumnsCurrent > 0). FIXME: This and the above should be a stack to allow use cases like Tree->Column->Tree. Need revamp columns API.
|
||||
int ColumnsCurrent;
|
||||
int ColumnsCount;
|
||||
float ColumnsMinX;
|
||||
float ColumnsMaxX;
|
||||
float ColumnsStartPosY;
|
||||
float ColumnsCellMinY;
|
||||
float ColumnsCellMaxY;
|
||||
bool ColumnsShowBorders;
|
||||
ImGuiID ColumnsSetID;
|
||||
ImVector<ImGuiColumnData> ColumnsData;
|
||||
|
||||
ImGuiDrawContext()
|
||||
{
|
||||
CursorPos = CursorPosPrevLine = CursorStartPos = CursorMaxPos = ImVec2(0.0f, 0.0f);
|
||||
CurrentLineHeight = PrevLineHeight = 0.0f;
|
||||
CurrentLineTextBaseOffset = PrevLineTextBaseOffset = 0.0f;
|
||||
LogLinePosY = -1.0f;
|
||||
TreeDepth = 0;
|
||||
LastItemID = 0;
|
||||
LastItemRect = ImRect(0.0f,0.0f,0.0f,0.0f);
|
||||
LastItemHoveredAndUsable = LastItemHoveredRect = false;
|
||||
MenuBarAppending = false;
|
||||
MenuBarOffsetX = 0.0f;
|
||||
StateStorage = NULL;
|
||||
LayoutType = ImGuiLayoutType_Vertical;
|
||||
ItemWidth = 0.0f;
|
||||
ButtonRepeat = false;
|
||||
AllowKeyboardFocus = true;
|
||||
TextWrapPos = -1.0f;
|
||||
ColorEditMode = ImGuiColorEditMode_RGB;
|
||||
memset(StackSizesBackup, 0, sizeof(StackSizesBackup));
|
||||
|
||||
IndentX = 0.0f;
|
||||
ColumnsOffsetX = 0.0f;
|
||||
ColumnsCurrent = 0;
|
||||
ColumnsCount = 1;
|
||||
ColumnsMinX = ColumnsMaxX = 0.0f;
|
||||
ColumnsStartPosY = 0.0f;
|
||||
ColumnsCellMinY = ColumnsCellMaxY = 0.0f;
|
||||
ColumnsShowBorders = true;
|
||||
ColumnsSetID = 0;
|
||||
}
|
||||
};
|
||||
|
||||
// Windows data
|
||||
struct IMGUI_API ImGuiWindow
|
||||
{
|
||||
char* Name;
|
||||
ImGuiID ID;
|
||||
ImGuiWindowFlags Flags;
|
||||
ImVec2 PosFloat;
|
||||
ImVec2 Pos; // Position rounded-up to nearest pixel
|
||||
ImVec2 Size; // Current size (==SizeFull or collapsed title bar size)
|
||||
ImVec2 SizeFull; // Size when non collapsed
|
||||
ImVec2 SizeContents; // Size of contents (== extents reach of the drawing cursor) from previous frame
|
||||
ImVec2 SizeContentsExplicit; // Size of contents explicitly set by the user via SetNextWindowContentSize()
|
||||
ImVec2 WindowPadding; // Window padding at the time of begin. We need to lock it, in particular manipulation of the ShowBorder would have an effect
|
||||
ImGuiID MoveID; // == window->GetID("#MOVE")
|
||||
ImVec2 Scroll;
|
||||
ImVec2 ScrollTarget; // target scroll position. stored as cursor position with scrolling canceled out, so the highest point is always 0.0f. (FLT_MAX for no change)
|
||||
ImVec2 ScrollTargetCenterRatio; // 0.0f = scroll so that target position is at top, 0.5f = scroll so that target position is centered
|
||||
bool ScrollbarX, ScrollbarY;
|
||||
ImVec2 ScrollbarSizes; //
|
||||
bool Active; // Set to true on Begin()
|
||||
bool WasActive;
|
||||
bool Accessed; // Set to true when any widget access the current window
|
||||
bool Collapsed; // Set when collapsing window to become only title-bar
|
||||
bool SkipItems; // == Visible && !Collapsed
|
||||
int BeginCount; // Number of Begin() during the current frame (generally 0 or 1, 1+ if appending via multiple Begin/End pairs)
|
||||
ImGuiID PopupID; // ID in the popup stack when this window is used as a popup/menu (because we use generic Name/ID for recycling)
|
||||
int AutoFitFramesX, AutoFitFramesY;
|
||||
bool AutoFitOnlyGrows;
|
||||
int AutoPosLastDirection;
|
||||
int HiddenFrames;
|
||||
int SetWindowPosAllowFlags; // bit ImGuiSetCond_*** specify if SetWindowPos() call will succeed with this particular flag.
|
||||
int SetWindowSizeAllowFlags; // bit ImGuiSetCond_*** specify if SetWindowSize() call will succeed with this particular flag.
|
||||
int SetWindowCollapsedAllowFlags; // bit ImGuiSetCond_*** specify if SetWindowCollapsed() call will succeed with this particular flag.
|
||||
bool SetWindowPosCenterWanted;
|
||||
|
||||
ImGuiDrawContext DC; // Temporary per-window data, reset at the beginning of the frame
|
||||
ImVector<ImGuiID> IDStack; // ID stack. ID are hashes seeded with the value at the top of the stack
|
||||
ImRect ClipRect; // = DrawList->clip_rect_stack.back(). Scissoring / clipping rectangle. x1, y1, x2, y2.
|
||||
ImRect ClippedWindowRect; // = ClipRect just after setup in Begin()
|
||||
int LastFrameActive;
|
||||
float ItemWidthDefault;
|
||||
ImGuiSimpleColumns MenuColumns; // Simplified columns storage for menu items
|
||||
ImGuiStorage StateStorage;
|
||||
float FontWindowScale; // Scale multiplier per-window
|
||||
ImDrawList* DrawList;
|
||||
ImGuiWindow* RootWindow;
|
||||
ImGuiWindow* RootNonPopupWindow;
|
||||
|
||||
// Focus
|
||||
int FocusIdxAllCounter; // Start at -1 and increase as assigned via FocusItemRegister()
|
||||
int FocusIdxTabCounter; // (same, but only count widgets which you can Tab through)
|
||||
int FocusIdxAllRequestCurrent; // Item being requested for focus
|
||||
int FocusIdxTabRequestCurrent; // Tab-able item being requested for focus
|
||||
int FocusIdxAllRequestNext; // Item being requested for focus, for next update (relies on layout to be stable between the frame pressing TAB and the next frame)
|
||||
int FocusIdxTabRequestNext; // "
|
||||
|
||||
public:
|
||||
ImGuiWindow(const char* name);
|
||||
~ImGuiWindow();
|
||||
|
||||
ImGuiID GetID(const char* str, const char* str_end = NULL);
|
||||
ImGuiID GetID(const void* ptr);
|
||||
|
||||
ImRect Rect() const { return ImRect(Pos.x, Pos.y, Pos.x+Size.x, Pos.y+Size.y); }
|
||||
float CalcFontSize() const { return GImGui->FontBaseSize * FontWindowScale; }
|
||||
float TitleBarHeight() const { return (Flags & ImGuiWindowFlags_NoTitleBar) ? 0.0f : CalcFontSize() + GImGui->Style.FramePadding.y * 2.0f; }
|
||||
ImRect TitleBarRect() const { return ImRect(Pos, ImVec2(Pos.x + SizeFull.x, Pos.y + TitleBarHeight())); }
|
||||
float MenuBarHeight() const { return (Flags & ImGuiWindowFlags_MenuBar) ? CalcFontSize() + GImGui->Style.FramePadding.y * 2.0f : 0.0f; }
|
||||
ImRect MenuBarRect() const { float y1 = Pos.y + TitleBarHeight(); return ImRect(Pos.x, y1, Pos.x + SizeFull.x, y1 + MenuBarHeight()); }
|
||||
ImU32 Color(ImGuiCol idx, float a=1.f) const { ImVec4 c = GImGui->Style.Colors[idx]; c.w *= GImGui->Style.Alpha * a; return ImGui::ColorConvertFloat4ToU32(c); }
|
||||
ImU32 Color(const ImVec4& col) const { ImVec4 c = col; c.w *= GImGui->Style.Alpha; return ImGui::ColorConvertFloat4ToU32(c); }
|
||||
};
|
||||
|
||||
//-----------------------------------------------------------------------------
|
||||
// Internal API
|
||||
// No guarantee of forward compatibility here.
|
||||
//-----------------------------------------------------------------------------
|
||||
|
||||
namespace ImGui
|
||||
{
|
||||
// We should always have a CurrentWindow in the stack (there is an implicit "Debug" window)
|
||||
// If this ever crash because g.CurrentWindow is NULL it means that either
|
||||
// - ImGui::NewFrame() has never been called, which is illegal.
|
||||
// - You are calling ImGui functions after ImGui::Render() and before the next ImGui::NewFrame(), which is also illegal.
|
||||
inline ImGuiWindow* GetCurrentWindowRead() { ImGuiState& g = *GImGui; return g.CurrentWindow; }
|
||||
inline ImGuiWindow* GetCurrentWindow() { ImGuiState& g = *GImGui; g.CurrentWindow->Accessed = true; return g.CurrentWindow; }
|
||||
IMGUI_API ImGuiWindow* GetParentWindow();
|
||||
IMGUI_API void FocusWindow(ImGuiWindow* window);
|
||||
|
||||
IMGUI_API void SetActiveID(ImGuiID id, ImGuiWindow* window);
|
||||
IMGUI_API void SetHoveredID(ImGuiID id);
|
||||
IMGUI_API void KeepAliveID(ImGuiID id);
|
||||
|
||||
IMGUI_API void EndFrame(); // This automatically called by Render()
|
||||
|
||||
IMGUI_API void ItemSize(const ImVec2& size, float text_offset_y = 0.0f);
|
||||
IMGUI_API void ItemSize(const ImRect& bb, float text_offset_y = 0.0f);
|
||||
IMGUI_API bool ItemAdd(const ImRect& bb, const ImGuiID* id);
|
||||
IMGUI_API bool IsClippedEx(const ImRect& bb, const ImGuiID* id, bool clip_even_when_logged);
|
||||
IMGUI_API bool IsHovered(const ImRect& bb, ImGuiID id, bool flatten_childs = false);
|
||||
IMGUI_API bool FocusableItemRegister(ImGuiWindow* window, bool is_active, bool tab_stop = true); // Return true if focus is requested
|
||||
IMGUI_API void FocusableItemUnregister(ImGuiWindow* window);
|
||||
IMGUI_API ImVec2 CalcItemSize(ImVec2 size, float default_x, float default_y);
|
||||
IMGUI_API float CalcWrapWidthForPos(const ImVec2& pos, float wrap_pos_x);
|
||||
IMGUI_API void SetItemAllowOverlap(); // Allow last item to be overlapped by a subsequent item
|
||||
|
||||
// NB: All position are in absolute pixels coordinates (not window coordinates)
|
||||
IMGUI_API void RenderText(ImVec2 pos, const char* text, const char* text_end = NULL, bool hide_text_after_hash = true);
|
||||
IMGUI_API void RenderTextWrapped(ImVec2 pos, const char* text, const char* text_end, float wrap_width);
|
||||
IMGUI_API void RenderTextClipped(const ImVec2& pos_min, const ImVec2& pos_max, const char* text, const char* text_end, const ImVec2* text_size_if_known, ImGuiAlign align = ImGuiAlign_Default, const ImVec2* clip_min = NULL, const ImVec2* clip_max = NULL);
|
||||
IMGUI_API void RenderFrame(ImVec2 p_min, ImVec2 p_max, ImU32 fill_col, bool border = true, float rounding = 0.0f);
|
||||
IMGUI_API void RenderCollapseTriangle(ImVec2 p_min, bool opened, float scale = 1.0f, bool shadow = false);
|
||||
IMGUI_API void RenderCheckMark(ImVec2 pos, ImU32 col);
|
||||
|
||||
IMGUI_API bool ButtonBehavior(const ImRect& bb, ImGuiID id, bool* out_hovered, bool* out_held, ImGuiButtonFlags flags = 0);
|
||||
IMGUI_API bool ButtonEx(const char* label, const ImVec2& size_arg = ImVec2(0,0), ImGuiButtonFlags flags = 0);
|
||||
|
||||
IMGUI_API bool SliderBehavior(const ImRect& frame_bb, ImGuiID id, float* v, float v_min, float v_max, float power, int decimal_precision, ImGuiSliderFlags flags = 0);
|
||||
IMGUI_API bool SliderFloatN(const char* label, float* v, int components, float v_min, float v_max, const char* display_format, float power);
|
||||
IMGUI_API bool SliderIntN(const char* label, int* v, int components, int v_min, int v_max, const char* display_format);
|
||||
|
||||
IMGUI_API bool DragBehavior(const ImRect& frame_bb, ImGuiID id, float* v, float v_speed, float v_min, float v_max, int decimal_precision, float power);
|
||||
IMGUI_API bool DragFloatN(const char* label, float* v, int components, float v_speed, float v_min, float v_max, const char* display_format, float power);
|
||||
IMGUI_API bool DragIntN(const char* label, int* v, int components, float v_speed, int v_min, int v_max, const char* display_format);
|
||||
|
||||
IMGUI_API bool InputTextEx(const char* label, char* buf, int buf_size, const ImVec2& size_arg, ImGuiInputTextFlags flags, ImGuiTextEditCallback callback = NULL, void* user_data = NULL);
|
||||
IMGUI_API bool InputFloatN(const char* label, float* v, int components, int decimal_precision, ImGuiInputTextFlags extra_flags);
|
||||
IMGUI_API bool InputIntN(const char* label, int* v, int components, ImGuiInputTextFlags extra_flags);
|
||||
IMGUI_API bool InputScalarEx(const char* label, ImGuiDataType data_type, void* data_ptr, void* step_ptr, void* step_fast_ptr, const char* scalar_format, ImGuiInputTextFlags extra_flags);
|
||||
IMGUI_API bool InputScalarAsWidgetReplacement(const ImRect& aabb, const char* label, ImGuiDataType data_type, void* data_ptr, ImGuiID id, int decimal_precision);
|
||||
|
||||
IMGUI_API bool TreeNodeBehaviorIsOpened(ImGuiID id, ImGuiTreeNodeFlags flags = 0); // Consume previous SetNextTreeNodeOpened() data, if any. May return true when logging
|
||||
|
||||
IMGUI_API void PlotEx(ImGuiPlotType plot_type, const char* label, float (*values_getter)(void* data, int idx), void* data, int values_count, int values_offset, const char* overlay_text, float scale_min, float scale_max, ImVec2 graph_size);
|
||||
|
||||
IMGUI_API int ParseFormatPrecision(const char* fmt, int default_value);
|
||||
IMGUI_API float RoundScalar(float value, int decimal_precision);
|
||||
|
||||
} // namespace ImGuiP
|
||||
|
||||
#ifdef _MSC_VER
|
||||
#pragma warning (pop)
|
||||
#endif
|
||||
Executable
+547
@@ -0,0 +1,547 @@
|
||||
// stb_rect_pack.h - v0.05 - public domain - rectangle packing
|
||||
// Sean Barrett 2014
|
||||
//
|
||||
// Useful for e.g. packing rectangular textures into an atlas.
|
||||
// Does not do rotation.
|
||||
//
|
||||
// Not necessarily the awesomest packing method, but better than
|
||||
// the totally naive one in stb_truetype (which is primarily what
|
||||
// this is meant to replace).
|
||||
//
|
||||
// Has only had a few tests run, may have issues.
|
||||
//
|
||||
// More docs to come.
|
||||
//
|
||||
// No memory allocations; uses qsort() and assert() from stdlib.
|
||||
//
|
||||
// This library currently uses the Skyline Bottom-Left algorithm.
|
||||
//
|
||||
// Please note: better rectangle packers are welcome! Please
|
||||
// implement them to the same API, but with a different init
|
||||
// function.
|
||||
//
|
||||
// Version history:
|
||||
//
|
||||
// 0.05: added STBRP_ASSERT to allow replacing assert
|
||||
// 0.04: fixed minor bug in STBRP_LARGE_RECTS support
|
||||
// 0.01: initial release
|
||||
|
||||
//////////////////////////////////////////////////////////////////////////////
|
||||
//
|
||||
// INCLUDE SECTION
|
||||
//
|
||||
|
||||
#ifndef STB_INCLUDE_STB_RECT_PACK_H
|
||||
#define STB_INCLUDE_STB_RECT_PACK_H
|
||||
|
||||
#define STB_RECT_PACK_VERSION 1
|
||||
|
||||
#ifdef STBRP_STATIC
|
||||
#define STBRP_DEF static
|
||||
#else
|
||||
#define STBRP_DEF extern
|
||||
#endif
|
||||
|
||||
#ifdef __cplusplus
|
||||
extern "C" {
|
||||
#endif
|
||||
|
||||
typedef struct stbrp_context stbrp_context;
|
||||
typedef struct stbrp_node stbrp_node;
|
||||
typedef struct stbrp_rect stbrp_rect;
|
||||
|
||||
#ifdef STBRP_LARGE_RECTS
|
||||
typedef int stbrp_coord;
|
||||
#else
|
||||
typedef unsigned short stbrp_coord;
|
||||
#endif
|
||||
|
||||
STBRP_DEF void stbrp_pack_rects (stbrp_context *context, stbrp_rect *rects, int num_rects);
|
||||
// Assign packed locations to rectangles. The rectangles are of type
|
||||
// 'stbrp_rect' defined below, stored in the array 'rects', and there
|
||||
// are 'num_rects' many of them.
|
||||
//
|
||||
// Rectangles which are successfully packed have the 'was_packed' flag
|
||||
// set to a non-zero value and 'x' and 'y' store the minimum location
|
||||
// on each axis (i.e. bottom-left in cartesian coordinates, top-left
|
||||
// if you imagine y increasing downwards). Rectangles which do not fit
|
||||
// have the 'was_packed' flag set to 0.
|
||||
//
|
||||
// You should not try to access the 'rects' array from another thread
|
||||
// while this function is running, as the function temporarily reorders
|
||||
// the array while it executes.
|
||||
//
|
||||
// To pack into another rectangle, you need to call stbrp_init_target
|
||||
// again. To continue packing into the same rectangle, you can call
|
||||
// this function again. Calling this multiple times with multiple rect
|
||||
// arrays will probably produce worse packing results than calling it
|
||||
// a single time with the full rectangle array, but the option is
|
||||
// available.
|
||||
|
||||
struct stbrp_rect
|
||||
{
|
||||
// reserved for your use:
|
||||
int id;
|
||||
|
||||
// input:
|
||||
stbrp_coord w, h;
|
||||
|
||||
// output:
|
||||
stbrp_coord x, y;
|
||||
int was_packed; // non-zero if valid packing
|
||||
|
||||
}; // 16 bytes, nominally
|
||||
|
||||
|
||||
STBRP_DEF void stbrp_init_target (stbrp_context *context, int width, int height, stbrp_node *nodes, int num_nodes);
|
||||
// Initialize a rectangle packer to:
|
||||
// pack a rectangle that is 'width' by 'height' in dimensions
|
||||
// using temporary storage provided by the array 'nodes', which is 'num_nodes' long
|
||||
//
|
||||
// You must call this function every time you start packing into a new target.
|
||||
//
|
||||
// There is no "shutdown" function. The 'nodes' memory must stay valid for
|
||||
// the following stbrp_pack_rects() call (or calls), but can be freed after
|
||||
// the call (or calls) finish.
|
||||
//
|
||||
// Note: to guarantee best results, either:
|
||||
// 1. make sure 'num_nodes' >= 'width'
|
||||
// or 2. call stbrp_allow_out_of_mem() defined below with 'allow_out_of_mem = 1'
|
||||
//
|
||||
// If you don't do either of the above things, widths will be quantized to multiples
|
||||
// of small integers to guarantee the algorithm doesn't run out of temporary storage.
|
||||
//
|
||||
// If you do #2, then the non-quantized algorithm will be used, but the algorithm
|
||||
// may run out of temporary storage and be unable to pack some rectangles.
|
||||
|
||||
STBRP_DEF void stbrp_setup_allow_out_of_mem (stbrp_context *context, int allow_out_of_mem);
|
||||
// Optionally call this function after init but before doing any packing to
|
||||
// change the handling of the out-of-temp-memory scenario, described above.
|
||||
// If you call init again, this will be reset to the default (false).
|
||||
|
||||
|
||||
STBRP_DEF void stbrp_setup_heuristic (stbrp_context *context, int heuristic);
|
||||
// Optionally select which packing heuristic the library should use. Different
|
||||
// heuristics will produce better/worse results for different data sets.
|
||||
// If you call init again, this will be reset to the default.
|
||||
|
||||
enum
|
||||
{
|
||||
STBRP_HEURISTIC_Skyline_default=0,
|
||||
STBRP_HEURISTIC_Skyline_BL_sortHeight = STBRP_HEURISTIC_Skyline_default,
|
||||
STBRP_HEURISTIC_Skyline_BF_sortHeight
|
||||
};
|
||||
|
||||
|
||||
//////////////////////////////////////////////////////////////////////////////
|
||||
//
|
||||
// the details of the following structures don't matter to you, but they must
|
||||
// be visible so you can handle the memory allocations for them
|
||||
|
||||
struct stbrp_node
|
||||
{
|
||||
stbrp_coord x,y;
|
||||
stbrp_node *next;
|
||||
};
|
||||
|
||||
struct stbrp_context
|
||||
{
|
||||
int width;
|
||||
int height;
|
||||
int align;
|
||||
int init_mode;
|
||||
int heuristic;
|
||||
int num_nodes;
|
||||
stbrp_node *active_head;
|
||||
stbrp_node *free_head;
|
||||
stbrp_node extra[2]; // we allocate two extra nodes so optimal user-node-count is 'width' not 'width+2'
|
||||
};
|
||||
|
||||
#ifdef __cplusplus
|
||||
}
|
||||
#endif
|
||||
|
||||
#endif
|
||||
|
||||
//////////////////////////////////////////////////////////////////////////////
|
||||
//
|
||||
// IMPLEMENTATION SECTION
|
||||
//
|
||||
|
||||
#ifdef STB_RECT_PACK_IMPLEMENTATION
|
||||
#include <stdlib.h>
|
||||
|
||||
#ifndef STBRP_ASSERT
|
||||
#include <assert.h>
|
||||
#define STBRP_ASSERT assert
|
||||
#endif
|
||||
|
||||
enum
|
||||
{
|
||||
STBRP__INIT_skyline = 1
|
||||
};
|
||||
|
||||
STBRP_DEF void stbrp_setup_heuristic(stbrp_context *context, int heuristic)
|
||||
{
|
||||
switch (context->init_mode) {
|
||||
case STBRP__INIT_skyline:
|
||||
STBRP_ASSERT(heuristic == STBRP_HEURISTIC_Skyline_BL_sortHeight || heuristic == STBRP_HEURISTIC_Skyline_BF_sortHeight);
|
||||
context->heuristic = heuristic;
|
||||
break;
|
||||
default:
|
||||
STBRP_ASSERT(0);
|
||||
}
|
||||
}
|
||||
|
||||
STBRP_DEF void stbrp_setup_allow_out_of_mem(stbrp_context *context, int allow_out_of_mem)
|
||||
{
|
||||
if (allow_out_of_mem)
|
||||
// if it's ok to run out of memory, then don't bother aligning them;
|
||||
// this gives better packing, but may fail due to OOM (even though
|
||||
// the rectangles easily fit). @TODO a smarter approach would be to only
|
||||
// quantize once we've hit OOM, then we could get rid of this parameter.
|
||||
context->align = 1;
|
||||
else {
|
||||
// if it's not ok to run out of memory, then quantize the widths
|
||||
// so that num_nodes is always enough nodes.
|
||||
//
|
||||
// I.e. num_nodes * align >= width
|
||||
// align >= width / num_nodes
|
||||
// align = ceil(width/num_nodes)
|
||||
|
||||
context->align = (context->width + context->num_nodes-1) / context->num_nodes;
|
||||
}
|
||||
}
|
||||
|
||||
STBRP_DEF void stbrp_init_target(stbrp_context *context, int width, int height, stbrp_node *nodes, int num_nodes)
|
||||
{
|
||||
int i;
|
||||
#ifndef STBRP_LARGE_RECTS
|
||||
STBRP_ASSERT(width <= 0xffff && height <= 0xffff);
|
||||
#endif
|
||||
|
||||
for (i=0; i < num_nodes-1; ++i)
|
||||
nodes[i].next = &nodes[i+1];
|
||||
nodes[i].next = NULL;
|
||||
context->init_mode = STBRP__INIT_skyline;
|
||||
context->heuristic = STBRP_HEURISTIC_Skyline_default;
|
||||
context->free_head = &nodes[0];
|
||||
context->active_head = &context->extra[0];
|
||||
context->width = width;
|
||||
context->height = height;
|
||||
context->num_nodes = num_nodes;
|
||||
stbrp_setup_allow_out_of_mem(context, 0);
|
||||
|
||||
// node 0 is the full width, node 1 is the sentinel (lets us not store width explicitly)
|
||||
context->extra[0].x = 0;
|
||||
context->extra[0].y = 0;
|
||||
context->extra[0].next = &context->extra[1];
|
||||
context->extra[1].x = (stbrp_coord) width;
|
||||
#ifdef STBRP_LARGE_RECTS
|
||||
context->extra[1].y = (1<<30);
|
||||
#else
|
||||
context->extra[1].y = 65535;
|
||||
#endif
|
||||
context->extra[1].next = NULL;
|
||||
}
|
||||
|
||||
// find minimum y position if it starts at x1
|
||||
static int stbrp__skyline_find_min_y(stbrp_context *c, stbrp_node *first, int x0, int width, int *pwaste)
|
||||
{
|
||||
(void)c;
|
||||
stbrp_node *node = first;
|
||||
int x1 = x0 + width;
|
||||
int min_y, visited_width, waste_area;
|
||||
STBRP_ASSERT(first->x <= x0);
|
||||
|
||||
#if 0
|
||||
// skip in case we're past the node
|
||||
while (node->next->x <= x0)
|
||||
++node;
|
||||
#else
|
||||
STBRP_ASSERT(node->next->x > x0); // we ended up handling this in the caller for efficiency
|
||||
#endif
|
||||
|
||||
STBRP_ASSERT(node->x <= x0);
|
||||
|
||||
min_y = 0;
|
||||
waste_area = 0;
|
||||
visited_width = 0;
|
||||
while (node->x < x1) {
|
||||
if (node->y > min_y) {
|
||||
// raise min_y higher.
|
||||
// we've accounted for all waste up to min_y,
|
||||
// but we'll now add more waste for everything we've visted
|
||||
waste_area += visited_width * (node->y - min_y);
|
||||
min_y = node->y;
|
||||
// the first time through, visited_width might be reduced
|
||||
if (node->x < x0)
|
||||
visited_width += node->next->x - x0;
|
||||
else
|
||||
visited_width += node->next->x - node->x;
|
||||
} else {
|
||||
// add waste area
|
||||
int under_width = node->next->x - node->x;
|
||||
if (under_width + visited_width > width)
|
||||
under_width = width - visited_width;
|
||||
waste_area += under_width * (min_y - node->y);
|
||||
visited_width += under_width;
|
||||
}
|
||||
node = node->next;
|
||||
}
|
||||
|
||||
*pwaste = waste_area;
|
||||
return min_y;
|
||||
}
|
||||
|
||||
typedef struct
|
||||
{
|
||||
int x,y;
|
||||
stbrp_node **prev_link;
|
||||
} stbrp__findresult;
|
||||
|
||||
static stbrp__findresult stbrp__skyline_find_best_pos(stbrp_context *c, int width, int height)
|
||||
{
|
||||
int best_waste = (1<<30), best_x, best_y = (1 << 30);
|
||||
stbrp__findresult fr;
|
||||
stbrp_node **prev, *node, *tail, **best = NULL;
|
||||
|
||||
// align to multiple of c->align
|
||||
width = (width + c->align - 1);
|
||||
width -= width % c->align;
|
||||
STBRP_ASSERT(width % c->align == 0);
|
||||
|
||||
node = c->active_head;
|
||||
prev = &c->active_head;
|
||||
while (node->x + width <= c->width) {
|
||||
int y,waste;
|
||||
y = stbrp__skyline_find_min_y(c, node, node->x, width, &waste);
|
||||
if (c->heuristic == STBRP_HEURISTIC_Skyline_BL_sortHeight) { // actually just want to test BL
|
||||
// bottom left
|
||||
if (y < best_y) {
|
||||
best_y = y;
|
||||
best = prev;
|
||||
}
|
||||
} else {
|
||||
// best-fit
|
||||
if (y + height <= c->height) {
|
||||
// can only use it if it first vertically
|
||||
if (y < best_y || (y == best_y && waste < best_waste)) {
|
||||
best_y = y;
|
||||
best_waste = waste;
|
||||
best = prev;
|
||||
}
|
||||
}
|
||||
}
|
||||
prev = &node->next;
|
||||
node = node->next;
|
||||
}
|
||||
|
||||
best_x = (best == NULL) ? 0 : (*best)->x;
|
||||
|
||||
// if doing best-fit (BF), we also have to try aligning right edge to each node position
|
||||
//
|
||||
// e.g, if fitting
|
||||
//
|
||||
// ____________________
|
||||
// |____________________|
|
||||
//
|
||||
// into
|
||||
//
|
||||
// | |
|
||||
// | ____________|
|
||||
// |____________|
|
||||
//
|
||||
// then right-aligned reduces waste, but bottom-left BL is always chooses left-aligned
|
||||
//
|
||||
// This makes BF take about 2x the time
|
||||
|
||||
if (c->heuristic == STBRP_HEURISTIC_Skyline_BF_sortHeight) {
|
||||
tail = c->active_head;
|
||||
node = c->active_head;
|
||||
prev = &c->active_head;
|
||||
// find first node that's admissible
|
||||
while (tail->x < width)
|
||||
tail = tail->next;
|
||||
while (tail) {
|
||||
int xpos = tail->x - width;
|
||||
int y,waste;
|
||||
STBRP_ASSERT(xpos >= 0);
|
||||
// find the left position that matches this
|
||||
while (node->next->x <= xpos) {
|
||||
prev = &node->next;
|
||||
node = node->next;
|
||||
}
|
||||
STBRP_ASSERT(node->next->x > xpos && node->x <= xpos);
|
||||
y = stbrp__skyline_find_min_y(c, node, xpos, width, &waste);
|
||||
if (y + height < c->height) {
|
||||
if (y <= best_y) {
|
||||
if (y < best_y || waste < best_waste || (waste==best_waste && xpos < best_x)) {
|
||||
best_x = xpos;
|
||||
STBRP_ASSERT(y <= best_y);
|
||||
best_y = y;
|
||||
best_waste = waste;
|
||||
best = prev;
|
||||
}
|
||||
}
|
||||
}
|
||||
tail = tail->next;
|
||||
}
|
||||
}
|
||||
|
||||
fr.prev_link = best;
|
||||
fr.x = best_x;
|
||||
fr.y = best_y;
|
||||
return fr;
|
||||
}
|
||||
|
||||
static stbrp__findresult stbrp__skyline_pack_rectangle(stbrp_context *context, int width, int height)
|
||||
{
|
||||
// find best position according to heuristic
|
||||
stbrp__findresult res = stbrp__skyline_find_best_pos(context, width, height);
|
||||
stbrp_node *node, *cur;
|
||||
|
||||
// bail if:
|
||||
// 1. it failed
|
||||
// 2. the best node doesn't fit (we don't always check this)
|
||||
// 3. we're out of memory
|
||||
if (res.prev_link == NULL || res.y + height > context->height || context->free_head == NULL) {
|
||||
res.prev_link = NULL;
|
||||
return res;
|
||||
}
|
||||
|
||||
// on success, create new node
|
||||
node = context->free_head;
|
||||
node->x = (stbrp_coord) res.x;
|
||||
node->y = (stbrp_coord) (res.y + height);
|
||||
|
||||
context->free_head = node->next;
|
||||
|
||||
// insert the new node into the right starting point, and
|
||||
// let 'cur' point to the remaining nodes needing to be
|
||||
// stiched back in
|
||||
|
||||
cur = *res.prev_link;
|
||||
if (cur->x < res.x) {
|
||||
// preserve the existing one, so start testing with the next one
|
||||
stbrp_node *next = cur->next;
|
||||
cur->next = node;
|
||||
cur = next;
|
||||
} else {
|
||||
*res.prev_link = node;
|
||||
}
|
||||
|
||||
// from here, traverse cur and free the nodes, until we get to one
|
||||
// that shouldn't be freed
|
||||
while (cur->next && cur->next->x <= res.x + width) {
|
||||
stbrp_node *next = cur->next;
|
||||
// move the current node to the free list
|
||||
cur->next = context->free_head;
|
||||
context->free_head = cur;
|
||||
cur = next;
|
||||
}
|
||||
|
||||
// stitch the list back in
|
||||
node->next = cur;
|
||||
|
||||
if (cur->x < res.x + width)
|
||||
cur->x = (stbrp_coord) (res.x + width);
|
||||
|
||||
#ifdef _DEBUG
|
||||
cur = context->active_head;
|
||||
while (cur->x < context->width) {
|
||||
STBRP_ASSERT(cur->x < cur->next->x);
|
||||
cur = cur->next;
|
||||
}
|
||||
STBRP_ASSERT(cur->next == NULL);
|
||||
|
||||
{
|
||||
stbrp_node *L1 = NULL, *L2 = NULL;
|
||||
int count=0;
|
||||
cur = context->active_head;
|
||||
while (cur) {
|
||||
L1 = cur;
|
||||
cur = cur->next;
|
||||
++count;
|
||||
}
|
||||
cur = context->free_head;
|
||||
while (cur) {
|
||||
L2 = cur;
|
||||
cur = cur->next;
|
||||
++count;
|
||||
}
|
||||
STBRP_ASSERT(count == context->num_nodes+2);
|
||||
}
|
||||
#endif
|
||||
|
||||
return res;
|
||||
}
|
||||
|
||||
static int rect_height_compare(const void *a, const void *b)
|
||||
{
|
||||
stbrp_rect *p = (stbrp_rect *) a;
|
||||
stbrp_rect *q = (stbrp_rect *) b;
|
||||
if (p->h > q->h)
|
||||
return -1;
|
||||
if (p->h < q->h)
|
||||
return 1;
|
||||
return (p->w > q->w) ? -1 : (p->w < q->w);
|
||||
}
|
||||
|
||||
static int rect_width_compare(const void *a, const void *b)
|
||||
{
|
||||
stbrp_rect *p = (stbrp_rect *) a;
|
||||
stbrp_rect *q = (stbrp_rect *) b;
|
||||
if (p->w > q->w)
|
||||
return -1;
|
||||
if (p->w < q->w)
|
||||
return 1;
|
||||
return (p->h > q->h) ? -1 : (p->h < q->h);
|
||||
}
|
||||
|
||||
static int rect_original_order(const void *a, const void *b)
|
||||
{
|
||||
stbrp_rect *p = (stbrp_rect *) a;
|
||||
stbrp_rect *q = (stbrp_rect *) b;
|
||||
return (p->was_packed < q->was_packed) ? -1 : (p->was_packed > q->was_packed);
|
||||
}
|
||||
|
||||
#ifdef STBRP_LARGE_RECTS
|
||||
#define STBRP__MAXVAL 0xffffffff
|
||||
#else
|
||||
#define STBRP__MAXVAL 0xffff
|
||||
#endif
|
||||
|
||||
STBRP_DEF void stbrp_pack_rects(stbrp_context *context, stbrp_rect *rects, int num_rects)
|
||||
{
|
||||
int i;
|
||||
|
||||
// we use the 'was_packed' field internally to allow sorting/unsorting
|
||||
for (i=0; i < num_rects; ++i) {
|
||||
rects[i].was_packed = i;
|
||||
#ifndef STBRP_LARGE_RECTS
|
||||
STBRP_ASSERT(rects[i].w <= 0xffff && rects[i].h <= 0xffff);
|
||||
#endif
|
||||
}
|
||||
|
||||
// sort according to heuristic
|
||||
qsort(rects, num_rects, sizeof(rects[0]), rect_height_compare);
|
||||
|
||||
for (i=0; i < num_rects; ++i) {
|
||||
stbrp__findresult fr = stbrp__skyline_pack_rectangle(context, rects[i].w, rects[i].h);
|
||||
if (fr.prev_link) {
|
||||
rects[i].x = (stbrp_coord) fr.x;
|
||||
rects[i].y = (stbrp_coord) fr.y;
|
||||
} else {
|
||||
rects[i].x = rects[i].y = STBRP__MAXVAL;
|
||||
}
|
||||
}
|
||||
|
||||
// unsort
|
||||
qsort(rects, num_rects, sizeof(rects[0]), rect_original_order);
|
||||
|
||||
// set was_packed flags
|
||||
for (i=0; i < num_rects; ++i)
|
||||
rects[i].was_packed = !(rects[i].x == STBRP__MAXVAL && rects[i].y == STBRP__MAXVAL);
|
||||
}
|
||||
#endif
|
||||
Executable
+1263
File diff suppressed because it is too large
Load Diff
Executable
+3236
File diff suppressed because it is too large
Load Diff
Reference in New Issue
Block a user