CGraphicText, CGraphicFontTexture and CGraphicDib are the 40250 bodies verbatim; CGraphicTextInstance is verbatim except that its D3D draws become UI render commands (one image quad per glyph, Bar for cursor/underline). - platform/Win32Gdi.cpp: the GDI subset those files call, over vendored FreeType 2.13.3, following GDI's LOGFONT cell height, win metrics and gasp rules; system font lookup with substitute and CJK fallback faces - Win32Crt: MultiByteToWideChar / WideCharToMultiByte (UTF-8 and 1252 by hand, other code pages through iconv) - CGraphicImageTexture memory textures: glyph pages reach Godot as "mem:<id>@<revision>"; Metin2PythonHost.memory_texture + Canvas cache - Util.cpp code page / font face table, SetDefaultCodePage at boot, DefaultFont_* block, fnt resource type, GetMaxTextureWidth/Height - TextTag, StringCodec, Arabic, Vietnamese copied from 40250 - tests: port.text (Tahoma 12 metrics, alignment, CP949), port.app_loop and python_host_test.gd now check glyph quads instead of text commands Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com>
458 lines
13 KiB
C++
458 lines
13 KiB
C++
// The <wingdi.h> subset the 40250 font path calls (common/shim/win32/wingdi.h), over FreeType.
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// CGraphicDib / CGraphicFontTexture run unchanged on top of it: a memory DC owns a 32-bit DIB,
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// CreateFontIndirect maps the LOGFONT onto a TrueType face the way GDI sizes it, and TextOutW
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// rasterises into the DIB with the DC's text/background colours.
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//
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// GDI sizing that the glyph atlas depends on:
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// - lfHeight > 0 is the cell height (ascent + descent), lfHeight < 0 the em height; the em is
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// lfHeight * unitsPerEm / (usWinAscent + usWinDescent), rounded to whole pixels.
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// - tmAscent / tmDescent are usWinAscent / usWinDescent scaled to that em and rounded;
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// GetTextExtentPoint32W reports tmHeight = tmAscent + tmDescent as the height.
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// - ANTIALIASED_QUALITY follows the face's gasp table: grayscale only in the ppem ranges it
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// flags GASP_DO_GRAY, otherwise bilevel (Tahoma at 10/12 ppem is bilevel).
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// - The glyph origin is (x + A, y + tmAscent - top); advance = A + B + C.
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// Missing glyphs fall back to the first installed face that has them, like GDI font linking.
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#include "EterLib/StdAfx.h"
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#include <ft2build.h>
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#include FT_FREETYPE_H
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#include FT_TRUETYPE_TABLES_H
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#include FT_GASP_H
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#include FT_SYNTHESIS_H
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#include FT_DRIVER_H
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#include FT_MODULE_H
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#include <algorithm>
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#include <cctype>
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#include <cmath>
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#include <cstdint>
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#include <cstring>
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#include <mutex>
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#include <string>
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#include <unordered_map>
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#include <vector>
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#include <dirent.h>
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namespace {
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enum class GdiKind { Bitmap, Font };
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struct GdiObject
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{
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GdiKind kind;
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};
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} // namespace
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struct HBITMAP__ : GdiObject
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{
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int width = 0;
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int height = 0;
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bool top_down = true;
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std::vector<uint32_t> bits;
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};
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struct HFONT__ : GdiObject
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{
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FT_Face face = nullptr;
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std::vector<FT_Face> fallbacks;
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int ppem = 0;
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int ascent = 0;
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int descent = 0;
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bool italic = false;
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bool antialiased = false;
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};
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struct HDC__
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{
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HBITMAP bitmap = nullptr;
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HFONT font = nullptr;
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COLORREF text = 0;
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COLORREF bk = 0x00FFFFFF;
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int bk_mode = OPAQUE;
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};
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namespace {
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std::mutex g_mutex;
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FT_Library g_library = nullptr;
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std::unordered_map<std::string, FT_Face> g_faces; // loaded face per file path
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FT_Library library()
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{
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if (!g_library) {
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FT_Init_FreeType(&g_library);
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// GDI runs the full TrueType bytecode, which is FreeType's v35 interpreter; v40 drops the
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// horizontal hints and gives different advances at small sizes.
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FT_UInt version = TT_INTERPRETER_VERSION_35;
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FT_Property_Set(g_library, "truetype", "interpreter-version", &version);
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}
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return g_library;
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}
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std::string lower(std::string s)
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{
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for (char& c : s) c = char(std::tolower(static_cast<unsigned char>(c)));
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return s;
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}
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const std::vector<std::string>& font_dirs()
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{
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static const std::vector<std::string> dirs = {
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#if defined(__ANDROID__)
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"/system/fonts",
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#else
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"/System/Library/Fonts/Supplemental",
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"/System/Library/Fonts",
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"/Library/Fonts",
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#endif
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};
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return dirs;
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}
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// Face name -> font file: the file stem matched case-insensitively ("Tahoma" -> Tahoma.ttf).
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std::string find_font_file(const std::string& face)
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{
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const std::string want = lower(face);
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for (const std::string& dir : font_dirs()) {
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DIR* d = opendir(dir.c_str());
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if (!d) continue;
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std::string hit;
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while (dirent* e = readdir(d)) {
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std::string name = e->d_name;
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const size_t dot = name.rfind('.');
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if (dot == std::string::npos) continue;
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const std::string ext = lower(name.substr(dot + 1));
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if (ext != "ttf" && ext != "ttc" && ext != "otf") continue;
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if (lower(name.substr(0, dot)) == want) { hit = dir + "/" + name; break; }
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}
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closedir(d);
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if (!hit.empty()) return hit;
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}
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return {};
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}
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FT_Face open_face(const std::string& path)
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{
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auto it = g_faces.find(path);
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if (it != g_faces.end()) return it->second;
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FT_Face face = nullptr;
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if (FT_New_Face(library(), path.c_str(), 0, &face) != 0) face = nullptr;
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if (face) FT_Select_Charmap(face, FT_ENCODING_UNICODE);
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g_faces[path] = face;
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return face;
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}
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FT_Face open_named(const char* name)
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{
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const std::string path = find_font_file(name);
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return path.empty() ? nullptr : open_face(path);
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}
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// PORT: the faces GDI would substitute when the requested one is not installed (the 40250 locale
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// asks for Tahoma / Arial on code page 1252), then the font-linking faces for CJK/Hangul glyphs.
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const char* const kSubstitutes[] = {"Arial", "Helvetica", "Roboto-Regular", "DroidSans", "NotoSans-Regular"};
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const char* const kLinked[] = {"Arial Unicode", "AppleSDGothicNeo", "NotoSansCJK-Regular", "NotoSansCJKkr-Regular",
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"DroidSansFallback"};
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bool gray_at(FT_Face face, int ppem)
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{
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const FT_Int flags = FT_Get_Gasp(face, FT_UInt(ppem));
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if (flags == FT_GASP_NO_TABLE) return true;
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return (flags & FT_GASP_DO_GRAY) != 0;
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}
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void set_size(FT_Face face, int ppem)
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{
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FT_Set_Pixel_Sizes(face, 0, FT_UInt(ppem));
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}
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struct Glyph
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{
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int left = 0; // A
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int top = 0; // rows above the baseline
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int advance = 0; // A + B + C
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int width = 0; // B
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int rows = 0;
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int pitch = 0;
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bool mono = true;
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std::vector<unsigned char> bitmap;
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};
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bool load_glyph(HFONT font, wchar_t ch, bool render, Glyph* out)
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{
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FT_Face face = font->face;
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FT_UInt index = FT_Get_Char_Index(face, FT_ULong(ch));
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if (index == 0) {
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for (FT_Face fallback : font->fallbacks) {
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FT_UInt i = FT_Get_Char_Index(fallback, FT_ULong(ch));
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if (i) { face = fallback; index = i; break; }
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}
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}
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set_size(face, font->ppem);
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const bool gray = font->antialiased && gray_at(face, font->ppem);
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const FT_Int32 target = gray ? FT_LOAD_TARGET_NORMAL : FT_LOAD_TARGET_MONO;
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if (FT_Load_Glyph(face, index, FT_LOAD_DEFAULT | target) != 0) return false;
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FT_GlyphSlot slot = face->glyph;
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if (font->italic) FT_GlyphSlot_Oblique(slot);
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out->advance = int((slot->advance.x + 32) >> 6);
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if (slot->format == FT_GLYPH_FORMAT_OUTLINE) {
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if (FT_Render_Glyph(slot, gray ? FT_RENDER_MODE_NORMAL : FT_RENDER_MODE_MONO) != 0) return false;
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}
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const FT_Bitmap& bm = slot->bitmap;
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out->left = slot->bitmap_left;
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out->top = slot->bitmap_top;
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out->width = int(bm.width);
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out->rows = int(bm.rows);
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out->mono = bm.pixel_mode == FT_PIXEL_MODE_MONO;
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if (render && bm.buffer && bm.rows) {
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out->pitch = std::abs(bm.pitch);
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out->bitmap.assign(bm.buffer, bm.buffer + size_t(out->pitch) * bm.rows);
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}
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return true;
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}
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HFONT default_font()
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{
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static HFONT font = [] {
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LOGFONT lf{};
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lf.lfHeight = 12;
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std::strcpy(lf.lfFaceName, "Arial");
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return CreateFontIndirect(&lf);
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}();
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return font;
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}
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HFONT dc_font(HDC hdc)
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{
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return hdc->font ? hdc->font : default_font();
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}
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// COLORREF is 0x00BBGGRR; a 32-bit DIB pixel is 0x00RRGGBB.
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uint32_t dib_pixel(COLORREF c)
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{
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return ((c & 0xFF) << 16) | (c & 0xFF00) | ((c >> 16) & 0xFF);
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}
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uint32_t* dib_row(HBITMAP bmp, int y)
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{
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const int row = bmp->top_down ? y : bmp->height - 1 - y;
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return bmp->bits.data() + size_t(row) * size_t(bmp->width);
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}
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} // namespace
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HDC CreateCompatibleDC(HDC)
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{
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return new HDC__();
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}
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BOOL DeleteDC(HDC hdc)
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{
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delete hdc;
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return TRUE;
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}
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HBITMAP CreateDIBSection(HDC, const BITMAPINFO* pbmi, UINT, void** ppvBits, HANDLE, DWORD)
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{
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if (!pbmi || pbmi->bmiHeader.biBitCount != 32 || pbmi->bmiHeader.biCompression != BI_RGB) return nullptr;
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const LONG w = pbmi->bmiHeader.biWidth;
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const LONG h = pbmi->bmiHeader.biHeight;
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if (w <= 0 || h == 0) return nullptr;
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auto* bmp = new HBITMAP__();
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bmp->kind = GdiKind::Bitmap;
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bmp->width = int(w);
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bmp->height = int(h < 0 ? -h : h);
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bmp->top_down = h < 0;
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bmp->bits.assign(size_t(bmp->width) * size_t(bmp->height), 0);
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if (ppvBits) *ppvBits = bmp->bits.data();
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return bmp;
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}
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// The only caller is CGraphicDib::Put onto a window DC, which this platform does not have.
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int SetDIBitsToDevice(HDC, int, int, DWORD, DWORD h, int, int, UINT, UINT, const void*, const BITMAPINFO*, UINT)
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{
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return int(h);
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}
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HFONT CreateFontIndirect(const LOGFONT* lplf)
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{
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if (!lplf) return nullptr;
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std::lock_guard<std::mutex> lock(g_mutex);
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FT_Face face = open_named(lplf->lfFaceName);
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for (const char* name : kSubstitutes) {
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if (face) break;
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face = open_named(name);
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}
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if (!face) return nullptr;
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auto* font = new HFONT__();
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font->kind = GdiKind::Font;
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font->face = face;
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for (const char* name : kLinked)
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if (FT_Face linked = open_named(name); linked && linked != face) font->fallbacks.push_back(linked);
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font->italic = lplf->lfItalic != 0;
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font->antialiased = lplf->lfQuality == ANTIALIASED_QUALITY;
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const TT_OS2* os2 = static_cast<const TT_OS2*>(FT_Get_Sfnt_Table(face, FT_SFNT_OS2));
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const double upem = face->units_per_EM ? face->units_per_EM : 2048;
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const double win_ascent = os2 && os2->usWinAscent ? os2->usWinAscent : face->ascender;
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const double win_descent = os2 && os2->usWinAscent ? os2->usWinDescent : -face->descender;
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LONG height = lplf->lfHeight ? lplf->lfHeight : 12;
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int ppem = height > 0 ? int(std::lround(height * upem / (win_ascent + win_descent))) : int(-height);
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font->ppem = std::max(ppem, 1);
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font->ascent = int(std::lround(win_ascent * font->ppem / upem));
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font->descent = int(std::lround(win_descent * font->ppem / upem));
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return font;
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}
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BOOL DeleteObject(HGDIOBJ ho)
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{
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if (!ho) return FALSE;
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auto* object = static_cast<GdiObject*>(ho);
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if (object->kind == GdiKind::Bitmap) delete static_cast<HBITMAP__*>(object);
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else delete static_cast<HFONT__*>(object); // faces stay cached for the process
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return TRUE;
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}
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HGDIOBJ SelectObject(HDC hdc, HGDIOBJ h)
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{
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if (!hdc || !h) return nullptr;
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auto* object = static_cast<GdiObject*>(h);
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if (object->kind == GdiKind::Bitmap) {
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HGDIOBJ old = hdc->bitmap;
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hdc->bitmap = static_cast<HBITMAP__*>(object);
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return old;
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}
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HGDIOBJ old = hdc->font;
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hdc->font = static_cast<HFONT__*>(object);
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return old;
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}
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COLORREF SetTextColor(HDC hdc, COLORREF color)
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{
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const COLORREF old = hdc->text;
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hdc->text = color;
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return old;
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}
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COLORREF SetBkColor(HDC hdc, COLORREF color)
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{
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const COLORREF old = hdc->bk;
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hdc->bk = color;
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return old;
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}
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int SetBkMode(HDC hdc, int mode)
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{
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const int old = hdc->bk_mode;
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hdc->bk_mode = mode;
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return old;
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}
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BOOL GetTextExtentPoint32W(HDC hdc, LPCWSTR lpString, int c, LPSIZE psizl)
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{
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if (!hdc || !psizl) return FALSE;
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std::lock_guard<std::mutex> lock(g_mutex);
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HFONT font = dc_font(hdc);
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if (!font) return FALSE;
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LONG cx = 0;
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for (int i = 0; i < c; ++i) {
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Glyph glyph;
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if (load_glyph(font, lpString[i], false, &glyph)) cx += glyph.advance;
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}
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psizl->cx = cx;
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psizl->cy = font->ascent + font->descent;
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return TRUE;
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}
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BOOL GetCharABCWidthsFloatW(HDC hdc, UINT iFirst, UINT iLast, LPABCFLOAT lpABC)
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{
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if (!hdc || !lpABC || iLast < iFirst) return FALSE;
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std::lock_guard<std::mutex> lock(g_mutex);
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HFONT font = dc_font(hdc);
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if (!font) return FALSE;
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for (UINT ch = iFirst; ch <= iLast; ++ch) {
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Glyph glyph;
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if (!load_glyph(font, wchar_t(ch), false, &glyph)) return FALSE;
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ABCFLOAT& abc = lpABC[ch - iFirst];
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if (glyph.width == 0) {
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// A blank glyph (space) is all advance, like GDI reports it.
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abc.abcfA = 0;
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abc.abcfB = float(glyph.advance);
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abc.abcfC = 0;
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} else {
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abc.abcfA = float(glyph.left);
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abc.abcfB = float(glyph.width);
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abc.abcfC = float(glyph.advance - glyph.left - glyph.width);
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}
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}
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return TRUE;
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}
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BOOL TextOutW(HDC hdc, int x, int y, LPCWSTR lpString, int c)
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{
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if (!hdc || !hdc->bitmap) return FALSE;
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std::lock_guard<std::mutex> lock(g_mutex);
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HFONT font = dc_font(hdc);
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if (!font) return FALSE;
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HBITMAP bmp = hdc->bitmap;
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const int height = font->ascent + font->descent;
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std::vector<Glyph> glyphs(size_t(std::max(c, 0)));
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int extent = 0;
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for (int i = 0; i < c; ++i) {
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load_glyph(font, lpString[i], true, &glyphs[size_t(i)]);
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extent += glyphs[size_t(i)].advance;
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}
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if (hdc->bk_mode == OPAQUE) {
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const uint32_t bk = dib_pixel(hdc->bk);
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for (int py = std::max(y, 0); py < std::min(y + height, bmp->height); ++py) {
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uint32_t* row = dib_row(bmp, py);
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for (int px = std::max(x, 0); px < std::min(x + extent, bmp->width); ++px) row[px] = bk;
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}
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}
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const uint32_t fg = dib_pixel(hdc->text);
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const uint32_t bg = dib_pixel(hdc->bk);
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int pen = x;
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for (const Glyph& glyph : glyphs) {
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const int ox = pen + glyph.left;
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const int oy = y + font->ascent - glyph.top;
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for (int gy = 0; gy < glyph.rows && !glyph.bitmap.empty(); ++gy) {
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const int py = oy + gy;
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if (py < 0 || py >= bmp->height) continue;
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uint32_t* row = dib_row(bmp, py);
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const unsigned char* src = glyph.bitmap.data() + size_t(gy) * size_t(glyph.pitch);
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for (int gx = 0; gx < glyph.width; ++gx) {
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const int px = ox + gx;
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if (px < 0 || px >= bmp->width) continue;
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unsigned coverage = glyph.mono ? ((src[gx >> 3] >> (7 - (gx & 7))) & 1) * 255 : src[gx];
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if (!coverage) continue;
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if (coverage == 255) { row[px] = fg; continue; }
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// Grayscale GDI text blends the text colour over the background colour.
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const uint32_t under = hdc->bk_mode == OPAQUE ? bg : row[px];
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uint32_t out = 0;
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for (int shift = 0; shift < 24; shift += 8) {
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const unsigned a = (fg >> shift) & 0xFF, b = (under >> shift) & 0xFF;
|
|
out |= ((a * coverage + b * (255 - coverage) + 127) / 255) << shift;
|
|
}
|
|
row[px] = out;
|
|
}
|
|
}
|
|
pen += glyph.advance;
|
|
}
|
|
return TRUE;
|
|
}
|
|
|
|
BOOL TextOutA(HDC hdc, int x, int y, LPCSTR lpString, int c)
|
|
{
|
|
const int n = MultiByteToWideChar(CP_ACP, 0, lpString, c, nullptr, 0);
|
|
if (n <= 0) return c == 0;
|
|
std::vector<WCHAR> wide(static_cast<size_t>(n));
|
|
MultiByteToWideChar(CP_ACP, 0, lpString, c, wide.data(), n);
|
|
return TextOutW(hdc, x, y, wide.data(), n);
|
|
}
|