unsigned sqrti(unsigned);
unsigned find_distance_to_edge(const Image *, int, int, unsigned);
int create_distance_field(const FT_Bitmap *, Image *, unsigned, unsigned);
-int render_grid(Font *, unsigned, unsigned, unsigned, bool, bool);
-int render_packed(Font *, unsigned, unsigned, bool);
+int render_grid(Font *, unsigned, unsigned, unsigned, bool);
+int render_packed(Font *, unsigned, unsigned);
int save_defs(const char *, const Font *);
-int save_png(const char *, const Image *, char);
+int save_png(const char *, const Image *, bool, bool, bool);
char verbose = 0;
}
if(pack)
- err = render_packed(&font, margin, padding, npot);
+ err = render_packed(&font, margin, padding);
else
- err = render_grid(&font, cellw, cellh, cpl, seq, npot);
+ err = render_grid(&font, cellw, cellh, cpl, seq);
if(err)
return 1;
- if(invert || distfield)
- {
- for(i=0; (unsigned)i<font.image.w*font.image.h; ++i)
- font.image.data[i] = 255-font.image.data[i];
- }
- err = save_png(out_fn, &font.image, (alpha && !distfield));
+ err = save_png(out_fn, &font.image, (alpha && !distfield), (invert || distfield), npot);
if(err)
return 1;
return 0;
}
-int render_grid(Font *font, unsigned cellw, unsigned cellh, unsigned cpl, bool seq, bool npot)
+int render_grid(Font *font, unsigned cellw, unsigned cellh, unsigned cpl, bool seq)
{
unsigned i;
int top = 0, bot = 0;
last = font->glyphs[font->n_glyphs-1].code;
font->image.w = cpl*cellw;
- if(!npot)
- font->image.w = round_to_pot(font->image.w);
if(seq)
font->image.h = (font->n_glyphs+cpl-1)/cpl*cellh;
else
font->image.h = (last-first+cpl)/cpl*cellh;
- if(!npot)
- font->image.h = round_to_pot(font->image.h);
font->image.data = (unsigned char *)alloc_image_data(font->image.w, font->image.h);
if(!font->image.data)
return -1;
- memset(font->image.data, 255, font->image.w*font->image.h);
+ memset(font->image.data, 0, font->image.w*font->image.h);
for(i=0; i<font->n_glyphs; ++i)
{
{
if(cx+x>=font->image.w || cy+y>=font->image.h)
continue;
- font->image.data[cx+x+(cy+y)*font->image.w] = 255-glyph->image.data[x+y*glyph->image.w];
+ font->image.data[cx+x+(cy+y)*font->image.w] = glyph->image.data[x+y*glyph->image.w];
}
}
return 0;
}
-int render_packed(Font *font, unsigned margin, unsigned padding, bool npot)
+int render_packed(Font *font, unsigned margin, unsigned padding)
{
unsigned i;
size_t area = 0;
font->image.data = (unsigned char *)alloc_image_data(font->image.w, font->image.h);
if(!font->image.data)
return -1;
- memset(font->image.data, 255, font->image.w*font->image.h);
+ memset(font->image.data, 0, font->image.w*font->image.h);
used_pixels = (unsigned *)malloc(font->image.w*sizeof(unsigned));
memset(used_pixels, 0, font->image.w*sizeof(unsigned));
used_glyphs = (char *)malloc(font->n_glyphs);
{
if(cx+x>=font->image.w || cy+y>=font->image.h)
continue;
- font->image.data[cx+x+(cy+y)*font->image.w] = 255-glyph->image.data[x+y*glyph->image.w];
+ font->image.data[cx+x+(cy+y)*font->image.w] = glyph->image.data[x+y*glyph->image.w];
}
for(x=0; x<glyph->image.w+2*padding; ++x)
{
/* Trim the image to the actually used size, in case the original estimate
was too pessimistic. */
font->image.h = used_h;
- if(!npot)
- font->image.h = round_to_pot(font->image.h);
free(used_glyphs);
free(used_pixels);
return 0;
}
-int save_png(const char *fn, const Image *image, char alpha)
+int save_png(const char *fn, const Image *image, bool alpha, bool invert, bool npot)
{
FILE *out;
png_struct *pngs;
png_info *pngi;
- png_byte **rows;
- unsigned i;
- png_byte *data2 = NULL;
+ unsigned w, h;
+ png_byte *row;
+ unsigned x, y;
int color;
+ unsigned flip_bits = (invert==alpha ? 0xFF : 0x00);
+ unsigned char *src = image->data;
if(!strcmp(fn, "-"))
out = stdout;
return -1;
}
+ w = (npot ? image->w : round_to_pot(image->w));
+ h = (npot ? image->h : round_to_pot(image->h));
+ color = (alpha ? PNG_COLOR_TYPE_GRAY_ALPHA : PNG_COLOR_TYPE_GRAY);
+ png_set_IHDR(pngs, pngi, w, h, 8, color, PNG_INTERLACE_NONE, PNG_COMPRESSION_TYPE_DEFAULT, PNG_FILTER_TYPE_DEFAULT);
+
png_init_io(pngs, out);
- rows = (png_byte **)malloc(image->h*sizeof(png_byte *));
+ png_write_info(pngs, pngi);
+ row = (png_byte *)malloc(w*(1+alpha));
if(alpha)
{
- data2 = (png_byte *)alloc_image_data(image->w*2, image->h);
- if(!data2)
- return -1;
- for(i=0; i<image->w*image->h; ++i)
+ for(x=0; x<w; ++x)
+ {
+ row[x*2] = 255;
+ row[x*2+1] = flip_bits;
+ }
+ for(y=0; y<image->h; ++y)
{
- data2[i*2] = 255;
- data2[i*2+1] = 255-image->data[i];
+ for(x=0; x<image->w; ++x)
+ row[x*2+1] = *src++^flip_bits;
+ png_write_row(pngs, row);
}
- for(i=0; i<image->h; ++i)
- rows[i] = (png_byte *)(data2+i*image->w*2);
- color = PNG_COLOR_TYPE_GRAY_ALPHA;
+
+ for(x=0; x<w; ++x)
+ row[x*2+1] = 0;
}
else
{
- for(i=0; i<image->h; ++i)
- rows[i] = (png_byte *)(image->data+i*image->w);
- color = PNG_COLOR_TYPE_GRAY;
+ memset(row+image->w, flip_bits, w-image->w);
+ for(y=0; y<image->h; ++y)
+ {
+ for(x=0; x<image->w; ++x)
+ row[x] = *src++^flip_bits;
+ png_write_row(pngs, row);
+ }
+
+ memset(row, flip_bits, w);
}
- png_set_IHDR(pngs, pngi, image->w, image->h, 8, color, PNG_INTERLACE_NONE, PNG_COMPRESSION_TYPE_DEFAULT, PNG_FILTER_TYPE_DEFAULT);
- png_set_rows(pngs, pngi, rows);
- png_write_png(pngs, pngi, PNG_TRANSFORM_IDENTITY, NULL);
+
+ for(; y<h; ++y)
+ png_write_row(pngs, row);
+
+ png_write_end(pngs, pngi);
png_destroy_write_struct(&pngs, &pngi);
- free(rows);
- if(alpha)
- free(data2);
+ free(row);
if(verbose)
- printf("Saved %dx%d PNG image to %s\n", image->w, image->h, fn);
+ printf("Saved %dx%d PNG image to %s\n", w, h, fn);
fclose(out);