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@@ -4547,6 +4547,9 @@ STBTT_DEF unsigned char * stbtt_GetGlyphSDF(const stbtt_fontinfo *info, float sc
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// invert for y-downwards bitmaps
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scale_y = -scale_y;
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+ // distance from singular values (in the same units as the pixel grid)
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+ const float eps = 1./128, eps2 = eps*eps;
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+
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{
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int x,y,i,j;
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float *precompute;
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@@ -4560,15 +4563,15 @@ STBTT_DEF unsigned char * stbtt_GetGlyphSDF(const stbtt_fontinfo *info, float sc
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float x0 = verts[i].x*scale_x, y0 = verts[i].y*scale_y;
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float x1 = verts[j].x*scale_x, y1 = verts[j].y*scale_y;
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float dist = (float) STBTT_sqrt((x1-x0)*(x1-x0) + (y1-y0)*(y1-y0));
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- precompute[i] = (dist == 0) ? 0.0f : 1.0f / dist;
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+ precompute[i] = (dist < eps) ? 0.0f : 1.0f / dist;
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} else if (verts[i].type == STBTT_vcurve) {
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float x2 = verts[j].x *scale_x, y2 = verts[j].y *scale_y;
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float x1 = verts[i].cx*scale_x, y1 = verts[i].cy*scale_y;
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float x0 = verts[i].x *scale_x, y0 = verts[i].y *scale_y;
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float bx = x0 - 2*x1 + x2, by = y0 - 2*y1 + y2;
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float len2 = bx*bx + by*by;
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- if (len2 != 0.0f)
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- precompute[i] = 1.0f / (bx*bx + by*by);
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+ if (len2 >= eps2)
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+ precompute[i] = 1.0f / len2;
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else
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precompute[i] = 0.0f;
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} else
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@@ -4633,8 +4636,8 @@ STBTT_DEF unsigned char * stbtt_GetGlyphSDF(const stbtt_fontinfo *info, float sc
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float a = 3*(ax*bx + ay*by);
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float b = 2*(ax*ax + ay*ay) + (mx*bx+my*by);
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float c = mx*ax+my*ay;
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- if (a == 0.0) { // if a is 0, it's linear
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- if (b != 0.0) {
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+ if (fabs(a) < eps2) { // if a is 0, it's linear
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+ if (fabs(b) >= eps2) {
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res[num++] = -c/b;
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}
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} else {
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