Found a working condition but some details needs attention
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2e2db2d690
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@ -123,24 +123,56 @@ static void glyph_trim_rect(agg::rendering_buffer& ren_buf, GlyphBitmapInfo& gli
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gli.y1 = y1;
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gli.y1 = y1;
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}
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}
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static void glyph_lut_convolution(agg::rendering_buffer ren_buf, agg::lcd_distribution_lut& lcd_lut, GlyphBitmapInfo& gli) {
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static void debug_print_covers(const char *msg, agg::int8u *b, int n_pre, int n, int n_post) {
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fprintf(stderr, "%s", msg);
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for (int i = 0; i < n_pre; i++) {
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if (i % 3 == 0) fprintf(stderr, "|");
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fprintf(stderr, " ");
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}
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for (int i = 0; i < n; i++) {
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if (i % 3 == 0) fprintf(stderr, "|");
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fprintf(stderr, " %02x", b[i]);
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}
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for (int i = 0; i < n_post; i++) {
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if (i % 3 == 0) fprintf(stderr, "|");
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fprintf(stderr, " ");
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}
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fprintf(stderr, "\n");
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}
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static void glyph_lut_convolution(agg::rendering_buffer ren_buf, agg::lcd_distribution_lut& lcd_lut, agg::int8u *covers_buf, GlyphBitmapInfo& gli) {
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const int subpixel = 3;
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const int subpixel = 3;
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const int x0 = gli.x0, y0 = gli.y0, x1 = gli.x1, y1 = gli.y1;
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const int x0 = gli.x0, y0 = gli.y0, x1 = gli.x1, y1 = gli.y1;
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const int len = (x1 - x0) * subpixel;
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const int len = (x1 - x0) * subpixel;
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const int height = ren_buf.height();
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const int height = ren_buf.height();
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agg::int8u *covers_buf = new agg::int8u[len + 2 * subpixel];
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memset(covers_buf, 0, len + 2 * subpixel);
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memset(covers_buf, 0, len + 2 * subpixel);
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for (int y = y0; y < y1; y++) {
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for (int y = y0; y < y1; y++) {
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agg::int8u *covers = ren_buf.row_ptr(height - 1 - y) + x0 * subpixel;
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// FIXME: clarify why we do not use height - 1 below.
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agg::int8u *covers = ren_buf.row_ptr(height - y) + x0 * subpixel;
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memcpy(covers_buf + subpixel, covers, len);
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memcpy(covers_buf + subpixel, covers, len);
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#if 0
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if (len >= 24) {
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debug_print_covers("BUF ", covers_buf, 0, len + 2 * subpixel, 0);
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debug_print_covers("BEFORE", covers - subpixel, 0, len + 2 * subpixel, 0);
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}
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#endif
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for (int x = x0 - 1; x < x1 + 1; x++) {
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for (int x = x0 - 1; x < x1 + 1; x++) {
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for (int i = 0; i < subpixel; i++) {
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for (int i = 0; i < subpixel; i++) {
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const int cx = (x - x0) * subpixel + i;
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const int cx = (x - x0) * subpixel + i;
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covers[cx] = lcd_lut.convolution(covers_buf + subpixel, cx, -2, len + 2 - 1);
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covers[cx] = lcd_lut.convolution(covers_buf + subpixel, cx, 0, len - 1);
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}
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}
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}
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}
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#if 0
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if (len >= 24) {
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debug_print_covers("AFTER ", covers - subpixel, 0, len + 2 * subpixel, 0);
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char c;
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scanf("%c", &c);
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}
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}
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delete [] covers_buf;
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#endif
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}
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gli.x0 -= 1;
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gli.x1 += 1;
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gli.xoff -= 1;
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}
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}
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static int ceil_to_multiple(int n, int p) {
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static int ceil_to_multiple(int n, int p) {
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@ -197,20 +229,22 @@ int FontRendererBakeFontBitmap(FontRenderer *font_renderer, int font_height,
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// Below x and x_next_i will always be integer multiples of subpixel_scale.
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// Below x and x_next_i will always be integer multiples of subpixel_scale.
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GlyphBitmapInfo& glyph_info = glyphs[i];
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GlyphBitmapInfo& glyph_info = glyphs[i];
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glyph_info.x0 = x / subpixel_scale;
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glyph_info.x0 = x / subpixel_scale;
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glyph_info.y0 = pixels_height - 1 - (y_baseline + ascender_px + pad_y); // FIXME: add -1 ?
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glyph_info.y0 = pixels_height - (y_baseline + ascender_px + pad_y); // FIXME: add -1 ?
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glyph_info.x1 = x_next_i / subpixel_scale;
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glyph_info.x1 = x_next_i / subpixel_scale;
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glyph_info.y1 = pixels_height - 1 - (y_baseline + descender_px - pad_y); // FIXME: add -1 ?
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glyph_info.y1 = pixels_height - (y_baseline + descender_px - pad_y); // FIXME: add -1 ?
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glyph_info.xoff = 0;
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glyph_info.xoff = 0;
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glyph_info.yoff = -pad_y;
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glyph_info.yoff = -pad_y;
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glyph_info.xadvance = (x_next - x) / subpixel_scale;
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glyph_info.xadvance = (x_next - x) / subpixel_scale;
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glyph_lut_convolution(ren_buf, lcd_lut, glyph_info);
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if (glyph_info.x1 > glyph_info.x0) {
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agg::int8u *covers_buf = ren_buf.row_ptr(0);
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glyph_lut_convolution(ren_buf, lcd_lut, covers_buf, glyph_info);
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}
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glyph_trim_rect(ren_buf, glyph_info, subpixel_scale);
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glyph_trim_rect(ren_buf, glyph_info, subpixel_scale);
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// FIXME: check if we don't need to add to x.
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// When subpixel is activated we need at least two more subpixels on the right.
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// When subpixel is activated we need at least two more subpixels on the right.
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x = x_next_i;
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x = x_next_i + 2 * subpixel_scale;
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}
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}
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return res;
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return res;
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}
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}
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@ -246,14 +280,7 @@ void blend_solid_hspan(agg::rendering_buffer& rbuf, blender_gamma_type& blender,
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while(--len);
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while(--len);
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}
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}
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}
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}
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#if 0
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static int floor_div(int a, int b) {
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if (a < 0) {
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return -((-a + b - 1) / b);
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}
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return a / b;
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}
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#endif
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void blend_solid_hspan_rgb_subpixel(agg::rendering_buffer& rbuf, agg::gamma_lut<>& gamma, agg::lcd_distribution_lut& lcd_lut,
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void blend_solid_hspan_rgb_subpixel(agg::rendering_buffer& rbuf, agg::gamma_lut<>& gamma, agg::lcd_distribution_lut& lcd_lut,
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int x, int y, unsigned len,
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int x, int y, unsigned len,
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const agg::rgba8& c,
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const agg::rgba8& c,
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@ -272,7 +299,6 @@ void blend_solid_hspan_rgb_subpixel(agg::rendering_buffer& rbuf, agg::gamma_lut<
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{
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{
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for (int i = 0; i < 3; i++) {
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for (int i = 0; i < 3; i++) {
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int cx = xp * 3 - x + i;
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int cx = xp * 3 - x + i;
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// unsigned c_conv = lcd_lut.convolution(covers, new_cx, 0, len - 1);
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unsigned cover_value = covers[cx];
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unsigned cover_value = covers[cx];
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unsigned alpha = (cover_value + 1) * (c.a + 1);
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unsigned alpha = (cover_value + 1) * (c.a + 1);
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unsigned dst_col = gamma.dir(rgb[i]);
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unsigned dst_col = gamma.dir(rgb[i]);
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