lovr/src/graphics/font.c

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#include "graphics/font.h"
#include "graphics/graphics.h"
#include "graphics/texture.h"
#include "loaders/font.h"
#include "loaders/texture.h"
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#include "util.h"
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#include <string.h>
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#include <stdlib.h>
#include <stdio.h>
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static int lovrFontAlignLine(vec_float_t* vertices, int index, float width, HorizontalAlign halign) {
while (index < vertices->length) {
if (halign == ALIGN_CENTER) {
vertices->data[index] -= width / 2.f;
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} else if (halign == ALIGN_RIGHT) {
vertices->data[index] -= width;
}
index += 5;
}
return index;
}
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Font* lovrFontCreate(FontData* fontData) {
Font* font = lovrAlloc(sizeof(Font), lovrFontDestroy);
if (!font) return NULL;
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font->fontData = fontData;
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font->texture = NULL;
font->lineHeight = 1.f;
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font->pixelDensity = font->fontData->height;
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vec_init(&font->vertices);
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map_init(&font->kerning);
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// Atlas
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int padding = 1;
font->atlas.x = padding;
font->atlas.y = padding;
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font->atlas.width = 128;
font->atlas.height = 128;
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font->atlas.padding = padding;
map_init(&font->atlas.glyphs);
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// Set initial atlas size
while (font->atlas.height < 4 * fontData->size) {
lovrFontExpandTexture(font);
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}
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// Texture
TextureData* textureData = lovrTextureDataGetBlank(font->atlas.width, font->atlas.height, 0x0, FORMAT_RG);
font->texture = lovrTextureCreate(textureData);
lovrTextureSetWrap(font->texture, WRAP_CLAMP, WRAP_CLAMP);
int swizzle[4] = { GL_RED, GL_RED, GL_RED, GL_GREEN };
glTexParameteriv(GL_TEXTURE_2D, GL_TEXTURE_SWIZZLE_RGBA, swizzle);
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return font;
}
void lovrFontDestroy(const Ref* ref) {
Font* font = containerof(ref, Font);
lovrFontDataDestroy(font->fontData);
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lovrRelease(&font->texture->ref);
map_deinit(&font->atlas.glyphs);
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map_deinit(&font->kerning);
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vec_deinit(&font->vertices);
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free(font);
}
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void lovrFontPrint(Font* font, const char* str, mat4 transform, float wrap, HorizontalAlign halign, VerticalAlign valign) {
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FontAtlas* atlas = &font->atlas;
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float cx = 0;
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float cy = -font->fontData->height * .8;
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float u = atlas->width;
float v = atlas->height;
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float scale = 1 / font->pixelDensity;
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int len = strlen(str);
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const char* start = str;
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const char* end = str + len;
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unsigned int previous = '\0';
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unsigned int codepoint;
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size_t bytes;
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int linePtr = 0;
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int lineCount = 1;
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vec_reserve(&font->vertices, len * 30);
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vec_clear(&font->vertices);
while ((bytes = utf8_decode(str, end, &codepoint)) > 0) {
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// Newlines
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if (codepoint == '\n' || (wrap && cx * scale > wrap && codepoint == ' ')) {
linePtr = lovrFontAlignLine(&font->vertices, linePtr, cx, halign);
lineCount++;
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cx = 0;
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cy -= font->fontData->height * font->lineHeight;
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previous = '\0';
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str += bytes;
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continue;
}
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// Kerning
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cx += lovrFontGetKerning(font, previous, codepoint);
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previous = codepoint;
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// Get glyph
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Glyph* glyph = lovrFontGetGlyph(font, codepoint);
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// Start over if texture was repacked
if (u != atlas->width || v != atlas->height) {
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lovrFontPrint(font, start, transform, wrap, halign, valign);
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return;
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}
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// Triangles
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if (glyph->w > 0 && glyph->h > 0) {
float x1 = cx + glyph->dx;
float y1 = cy + glyph->dy;
float x2 = x1 + glyph->w;
float y2 = y1 - glyph->h;
float s1 = glyph->x / u;
float t1 = glyph->y / v;
float s2 = (glyph->x + glyph->w) / u;
float t2 = (glyph->y + glyph->h) / v;
float vertices[30] = {
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x1, y1, 0, s1, t1,
x1, y2, 0, s1, t2,
x2, y1, 0, s2, t1,
x2, y1, 0, s2, t1,
x1, y2, 0, s1, t2,
x2, y2, 0, s2, t2
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};
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vec_pusharr(&font->vertices, vertices, 30);
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}
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// Advance cursor
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cx += glyph->advance;
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str += bytes;
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}
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// Align the last line
lovrFontAlignLine(&font->vertices, linePtr, cx, halign);
// Calculate vertical offset
float offsety = 0;
if (valign == ALIGN_MIDDLE) {
offsety = lineCount * font->fontData->height * font->lineHeight * .5f;
} else if (valign == ALIGN_BOTTOM) {
offsety = lineCount * font->fontData->height * font->lineHeight;
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}
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// Render!
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lovrGraphicsPush();
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lovrGraphicsMatrixTransform(transform);
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lovrGraphicsScale(scale, scale, scale);
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lovrGraphicsTranslate(0, offsety, 0);
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lovrGraphicsBindTexture(font->texture);
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lovrGraphicsSetShapeData(font->vertices.data, font->vertices.length);
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lovrGraphicsDrawPrimitive(GL_TRIANGLES, 0, 1, 0);
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lovrGraphicsPop();
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}
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float lovrFontGetWidth(Font* font, const char* str, float wrap) {
float width = 0;
float x = 0;
const char* end = str + strlen(str);
size_t bytes;
unsigned int previous = '\0';
unsigned int codepoint;
float scale = 1 / font->pixelDensity;
while ((bytes = utf8_decode(str, end, &codepoint)) > 0) {
if (codepoint == '\n' || (wrap && x * scale > wrap && codepoint == ' ')) {
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width = MAX(width, x * scale);
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x = 0;
previous = '\0';
str += bytes;
continue;
}
Glyph* glyph = lovrFontGetGlyph(font, codepoint);
x += glyph->advance + lovrFontGetKerning(font, previous, codepoint);
previous = codepoint;
str += bytes;
}
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return MAX(width, x * scale);
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}
float lovrFontGetHeight(Font* font) {
return font->fontData->height / font->pixelDensity;
}
float lovrFontGetAscent(Font* font) {
return font->fontData->ascent / font->pixelDensity;
}
float lovrFontGetDescent(Font* font) {
return font->fontData->descent / font->pixelDensity;
}
float lovrFontGetBaseline(Font* font) {
return font->fontData->height * .8 / font->pixelDensity;
}
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float lovrFontGetLineHeight(Font* font) {
return font->lineHeight;
}
void lovrFontSetLineHeight(Font* font, float lineHeight) {
font->lineHeight = lineHeight;
}
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int lovrFontGetKerning(Font* font, unsigned int left, unsigned int right) {
char key[12];
snprintf(key, 12, "%d,%d", left, right);
int* entry = map_get(&font->kerning, key);
if (entry) {
return *entry;
}
int kerning = lovrFontDataGetKerning(font->fontData, left, right);
map_set(&font->kerning, key, kerning);
return kerning;
}
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float lovrFontGetPixelDensity(Font* font) {
return font->pixelDensity;
}
void lovrFontSetPixelDensity(Font* font, float pixelDensity) {
if (pixelDensity <= 0) {
pixelDensity = font->fontData->height;
}
font->pixelDensity = pixelDensity;
}
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Glyph* lovrFontGetGlyph(Font* font, uint32_t codepoint) {
char key[6];
snprintf(key, 6, "%d", codepoint);
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FontAtlas* atlas = &font->atlas;
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map_glyph_t* glyphs = &atlas->glyphs;
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Glyph* glyph = map_get(glyphs, key);
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// Add the glyph to the atlas if it isn't there
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if (!glyph) {
Glyph g;
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lovrFontDataLoadGlyph(font->fontData, codepoint, &g);
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map_set(glyphs, key, g);
glyph = map_get(glyphs, key);
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lovrFontAddGlyph(font, glyph);
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}
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return glyph;
}
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void lovrFontAddGlyph(Font* font, Glyph* glyph) {
FontAtlas* atlas = &font->atlas;
// Don't waste space on empty glyphs
if (glyph->w == 0 && glyph->h == 0) {
return;
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}
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// If the glyph does not fit, you must acquit (new row)
if (atlas->x + glyph->w > atlas->width - 2 * atlas->padding) {
atlas->x = atlas->padding;
atlas->y += atlas->rowHeight + atlas->padding;
atlas->rowHeight = 0;
}
// Expand the texture if needed. Expanding the texture re-adds all the glyphs, so we can return.
if (atlas->y + glyph->h > atlas->height - 2 * atlas->padding) {
lovrFontExpandTexture(font);
return;
}
// Keep track of glyph's position in the atlas
glyph->x = atlas->x;
glyph->y = atlas->y;
// Paste glyph into texture
lovrGraphicsBindTexture(font->texture);
glTexSubImage2D(GL_TEXTURE_2D, 0, atlas->x, atlas->y, glyph->w, glyph->h, GL_RG, GL_UNSIGNED_BYTE, glyph->data);
// Advance atlas cursor
atlas->x += glyph->w + atlas->padding;
atlas->rowHeight = MAX(atlas->rowHeight, glyph->h);
}
void lovrFontExpandTexture(Font* font) {
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FontAtlas* atlas = &font->atlas;
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if (atlas->width == atlas->height) {
atlas->width *= 2;
} else {
atlas->height *= 2;
}
if (!font->texture) {
return;
}
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// Resize the texture storage
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while (glGetError());
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lovrTextureDataResize(font->texture->textureData, atlas->width, atlas->height, 0x0);
lovrTextureRefresh(font->texture);
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if (glGetError()) {
error("Problem expanding font texture (out of space?)");
}
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// Reset the cursor
atlas->x = atlas->padding;
atlas->y = atlas->padding;
atlas->rowHeight = 0;
// Re-pack all the glyphs
const char* key;
map_iter_t iter = map_iter(&atlas->glyphs);
while ((key = map_next(&atlas->glyphs, &iter)) != NULL) {
Glyph* glyph = map_get(&atlas->glyphs, key);
lovrFontAddGlyph(font, glyph);
}
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}