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nanosvg: Sync with upstream 3e403ec
Includes some loop condition fixes after fuzzing. The previously identified regression (#43641) is now fixed upstream.
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thirdparty/README.md
vendored
2
thirdparty/README.md
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@ -435,7 +435,7 @@ Collection of single-file libraries used in Godot components.
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## nanosvg
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- Upstream: https://github.com/memononen/nanosvg
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- Version: git (25241c5a8f8451d41ab1b02ab2d865b01600d949, 2019)
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- Version: git (3e403ec72a9145cbbcc6c63d94a4caf079aafec2, 2020)
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- License: zlib
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Files extracted from the upstream source:
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81
thirdparty/nanosvg/nanosvg.h
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81
thirdparty/nanosvg/nanosvg.h
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@ -225,11 +225,6 @@ static int nsvg__isdigit(char c)
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return c >= '0' && c <= '9';
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}
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static int nsvg__isnum(char c)
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{
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return strchr("0123456789+-.eE", c) != 0;
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}
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static NSVG_INLINE float nsvg__minf(float a, float b) { return a < b ? a : b; }
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static NSVG_INLINE float nsvg__maxf(float a, float b) { return a > b ? a : b; }
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@ -736,9 +731,11 @@ static void nsvg__lineTo(NSVGparser* p, float x, float y)
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static void nsvg__cubicBezTo(NSVGparser* p, float cpx1, float cpy1, float cpx2, float cpy2, float x, float y)
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{
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nsvg__addPoint(p, cpx1, cpy1);
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nsvg__addPoint(p, cpx2, cpy2);
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nsvg__addPoint(p, x, y);
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if (p->npts > 0) {
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nsvg__addPoint(p, cpx1, cpy1);
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nsvg__addPoint(p, cpx2, cpy2);
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nsvg__addPoint(p, x, y);
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}
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}
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static NSVGattrib* nsvg__getAttr(NSVGparser* p)
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@ -808,7 +805,9 @@ static float nsvg__convertToPixels(NSVGparser* p, NSVGcoordinate c, float orig,
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static NSVGgradientData* nsvg__findGradientData(NSVGparser* p, const char* id)
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{
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NSVGgradientData* grad = p->gradients;
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while (grad) {
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if (id == NULL || *id == '\0')
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return NULL;
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while (grad != NULL) {
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if (strcmp(grad->id, id) == 0)
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return grad;
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grad = grad->next;
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@ -825,19 +824,26 @@ static NSVGgradient* nsvg__createGradient(NSVGparser* p, const char* id, const f
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NSVGgradient* grad;
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float ox, oy, sw, sh, sl;
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int nstops = 0;
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int refIter;
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data = nsvg__findGradientData(p, id);
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if (data == NULL) return NULL;
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// TODO: use ref to fill in all unset values too.
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ref = data;
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refIter = 0;
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while (ref != NULL) {
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NSVGgradientData* nextRef = NULL;
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if (stops == NULL && ref->stops != NULL) {
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stops = ref->stops;
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nstops = ref->nstops;
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break;
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}
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ref = nsvg__findGradientData(p, ref->ref);
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nextRef = nsvg__findGradientData(p, ref->ref);
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if (nextRef == ref) break; // prevent infite loops on malformed data
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ref = nextRef;
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refIter++;
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if (refIter > 32) break; // prevent infite loops on malformed data
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}
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if (stops == NULL) return NULL;
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@ -1040,6 +1046,10 @@ static void nsvg__addPath(NSVGparser* p, char closed)
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if (closed)
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nsvg__lineTo(p, p->pts[0], p->pts[1]);
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// Expect 1 + N*3 points (N = number of cubic bezier segments).
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if ((p->npts % 3) != 1)
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return;
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path = (NSVGpath*)malloc(sizeof(NSVGpath));
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if (path == NULL) goto error;
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memset(path, 0, sizeof(NSVGpath));
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@ -1458,6 +1468,15 @@ static int nsvg__parseUnits(const char* units)
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return NSVG_UNITS_USER;
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}
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static int nsvg__isCoordinate(const char* s)
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{
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// optional sign
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if (*s == '-' || *s == '+')
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s++;
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// must have at least one digit, or start by a dot
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return (nsvg__isdigit(*s) || *s == '.');
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}
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static NSVGcoordinate nsvg__parseCoordinateRaw(const char* str)
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{
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NSVGcoordinate coord = {0, NSVG_UNITS_USER};
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@ -1597,25 +1616,32 @@ static int nsvg__parseRotate(float* xform, const char* str)
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static void nsvg__parseTransform(float* xform, const char* str)
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{
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float t[6];
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int len;
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nsvg__xformIdentity(xform);
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while (*str)
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{
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if (strncmp(str, "matrix", 6) == 0)
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str += nsvg__parseMatrix(t, str);
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len = nsvg__parseMatrix(t, str);
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else if (strncmp(str, "translate", 9) == 0)
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str += nsvg__parseTranslate(t, str);
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len = nsvg__parseTranslate(t, str);
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else if (strncmp(str, "scale", 5) == 0)
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str += nsvg__parseScale(t, str);
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len = nsvg__parseScale(t, str);
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else if (strncmp(str, "rotate", 6) == 0)
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str += nsvg__parseRotate(t, str);
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len = nsvg__parseRotate(t, str);
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else if (strncmp(str, "skewX", 5) == 0)
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str += nsvg__parseSkewX(t, str);
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len = nsvg__parseSkewX(t, str);
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else if (strncmp(str, "skewY", 5) == 0)
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str += nsvg__parseSkewY(t, str);
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len = nsvg__parseSkewY(t, str);
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else{
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++str;
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continue;
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}
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if (len != 0) {
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str += len;
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} else {
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++str;
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continue;
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}
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nsvg__xformPremultiply(xform, t);
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}
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@ -1876,8 +1902,11 @@ static int nsvg__getArgsPerElement(char cmd)
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case 'a':
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case 'A':
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return 7;
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case 'z':
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case 'Z':
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return 0;
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}
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return 0;
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return -1;
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}
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static void nsvg__pathMoveTo(NSVGparser* p, float* cpx, float* cpy, float* args, int rel)
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@ -2187,6 +2216,7 @@ static void nsvg__parsePath(NSVGparser* p, const char** attr)
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float args[10];
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int nargs;
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int rargs = 0;
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char initPoint;
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float cpx, cpy, cpx2, cpy2;
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const char* tmp[4];
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char closedFlag;
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@ -2209,13 +2239,14 @@ static void nsvg__parsePath(NSVGparser* p, const char** attr)
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nsvg__resetPath(p);
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cpx = 0; cpy = 0;
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cpx2 = 0; cpy2 = 0;
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initPoint = 0;
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closedFlag = 0;
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nargs = 0;
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while (*s) {
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s = nsvg__getNextPathItem(s, item);
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if (!*item) break;
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if (nsvg__isnum(item[0])) {
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if (cmd != '\0' && nsvg__isCoordinate(item)) {
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if (nargs < 10)
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args[nargs++] = (float)nsvg__atof(item);
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if (nargs >= rargs) {
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@ -2228,6 +2259,7 @@ static void nsvg__parsePath(NSVGparser* p, const char** attr)
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cmd = (cmd == 'm') ? 'l' : 'L';
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rargs = nsvg__getArgsPerElement(cmd);
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cpx2 = cpx; cpy2 = cpy;
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initPoint = 1;
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break;
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case 'l':
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case 'L':
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@ -2277,7 +2309,6 @@ static void nsvg__parsePath(NSVGparser* p, const char** attr)
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}
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} else {
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cmd = item[0];
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rargs = nsvg__getArgsPerElement(cmd);
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if (cmd == 'M' || cmd == 'm') {
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// Commit path.
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if (p->npts > 0)
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@ -2286,7 +2317,11 @@ static void nsvg__parsePath(NSVGparser* p, const char** attr)
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nsvg__resetPath(p);
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closedFlag = 0;
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nargs = 0;
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} else if (cmd == 'Z' || cmd == 'z') {
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} else if (initPoint == 0) {
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// Do not allow other commands until initial point has been set (moveTo called once).
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cmd = '\0';
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}
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if (cmd == 'Z' || cmd == 'z') {
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closedFlag = 1;
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// Commit path.
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if (p->npts > 0) {
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@ -2302,6 +2337,12 @@ static void nsvg__parsePath(NSVGparser* p, const char** attr)
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closedFlag = 0;
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nargs = 0;
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}
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rargs = nsvg__getArgsPerElement(cmd);
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if (rargs == -1) {
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// Command not recognized
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cmd = '\0';
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rargs = 0;
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}
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}
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}
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// Commit path.
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