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Make utf8 work with raylib renderer
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389a044cd2
commit
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@ -1,3 +1,4 @@
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#include "limits.h"
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#include "raylib.h"
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#include "raylib.h"
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#include "raymath.h"
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#include "raymath.h"
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#include "stdint.h"
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#include "stdint.h"
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@ -7,6 +8,8 @@
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#define CLAY_RECTANGLE_TO_RAYLIB_RECTANGLE(rectangle) (Rectangle) { .x = rectangle.x, .y = rectangle.y, .width = rectangle.width, .height = rectangle.height }
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#define CLAY_RECTANGLE_TO_RAYLIB_RECTANGLE(rectangle) (Rectangle) { .x = rectangle.x, .y = rectangle.y, .width = rectangle.width, .height = rectangle.height }
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#define CLAY_COLOR_TO_RAYLIB_COLOR(color) (Color) { .r = (unsigned char)roundf(color.r), .g = (unsigned char)roundf(color.g), .b = (unsigned char)roundf(color.b), .a = (unsigned char)roundf(color.a) }
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#define CLAY_COLOR_TO_RAYLIB_COLOR(color) (Color) { .r = (unsigned char)roundf(color.r), .g = (unsigned char)roundf(color.g), .b = (unsigned char)roundf(color.b), .a = (unsigned char)roundf(color.a) }
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#define CONTROL_CHAR_AMOUNT 32
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Camera Raylib_camera;
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Camera Raylib_camera;
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@ -80,8 +83,49 @@ Ray GetScreenToWorldPointWithZDistance(Vector2 position, Camera camera, int scre
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return ray;
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return ray;
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}
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}
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typedef int Clay_Raylib_GlyphCodename;
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static inline Clay_Dimensions Raylib_MeasureText(Clay_StringSlice text, Clay_TextElementConfig *config, void *userData) {
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static inline Clay_Raylib_GlyphCodename Raylib_MeasureUtf8Glyph (Clay_StringSlice text, int* index) {
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const unsigned char TOP_CHAR_BIT = UCHAR_MAX - (UCHAR_MAX >> 1);
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const unsigned char CONTINUATION_MASK = UCHAR_MAX - (UCHAR_MAX >> 2);
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const unsigned char UTF8_STEP = 6;
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// is utf8
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const int32_t start_index = *index;
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const char signed_start_char = text.chars[start_index];
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if (signed_start_char >= 0) {
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*index = start_index + 1;
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return CONTROL_CHAR_AMOUNT; // not utf8
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}
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// amount of bytes
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const unsigned char start_char = (unsigned char)signed_start_char;
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int16_t amount_of_bytes = 2;
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if (start_char & (TOP_CHAR_BIT >> 2)) {
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amount_of_bytes = 3;
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if (start_char & (TOP_CHAR_BIT >> 3)) {
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amount_of_bytes = 4;
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}
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}
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if (text.length - start_index < amount_of_bytes) {
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*index = text.length - 1;
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return CONTROL_CHAR_AMOUNT; // not enough bytes
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}
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const int32_t end_index = start_index + amount_of_bytes - 1;
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*index = end_index;
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// decode
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const unsigned char first_byte_mask = UCHAR_MAX - (UCHAR_MAX >> (amount_of_bytes + 1));
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int glyph_codename = (start_char & ~first_byte_mask);
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for (int i = start_index + 1; i <= end_index; ++i) {
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glyph_codename <<= UTF8_STEP;
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glyph_codename |= ((unsigned char)text.chars[i]) & ~CONTINUATION_MASK;
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}
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return glyph_codename;
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}
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Clay_Dimensions Raylib_MeasureText(Clay_StringSlice text, Clay_TextElementConfig *config, void *userData) {
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// Measure string size for Font
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// Measure string size for Font
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Clay_Dimensions textSize = { 0 };
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Clay_Dimensions textSize = { 0 };
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@ -110,7 +154,19 @@ static inline Clay_Dimensions Raylib_MeasureText(Clay_StringSlice text, Clay_Tex
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lineCharCount = 0;
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lineCharCount = 0;
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continue;
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continue;
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}
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}
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int index = text.chars[i] - 32;
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int index;
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if (text.chars[i] >= 0) {
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index = text.chars[i]; // ascii
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} else {
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index = Raylib_MeasureUtf8Glyph(text, &i); // utf8 (reads several chars)
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}
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index -= CONTROL_CHAR_AMOUNT;
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if (index < 0 || index >= fontToUse.glyphCount) {
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continue; // skip characters not in the font
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}
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if (fontToUse.glyphs[index].advanceX != 0) lineTextWidth += fontToUse.glyphs[index].advanceX;
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if (fontToUse.glyphs[index].advanceX != 0) lineTextWidth += fontToUse.glyphs[index].advanceX;
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else lineTextWidth += (fontToUse.recs[index].width + fontToUse.glyphs[index].offsetX);
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else lineTextWidth += (fontToUse.recs[index].width + fontToUse.glyphs[index].offsetX);
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}
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}
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