forked from bartvdbraak/blender
code cleanup: double promotion warnings with new bevel code & wrong use of NULL in cycles.
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b537758192
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610d746c12
@ -287,7 +287,7 @@ public:
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bool is_used(const K& key)
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{
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T *data = find(key);
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return (data)? used_set.find(data) != used_set.end(): NULL;
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return (data) ? used_set.find(data) != used_set.end() : false;
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}
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void used(T *data)
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@ -430,7 +430,7 @@ static void slide_dist(EdgeHalf *e, BMVert *v, float d, float slideco[3])
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len = len_v3(dir);
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normalize_v3(dir);
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if (d > len)
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d = len - 50 * BEVEL_EPSILON;
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d = len - (float)(50 * BEVEL_EPSILON);
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copy_v3_v3(slideco, v->co);
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madd_v3_v3fl(slideco, dir, -d);
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}
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@ -481,17 +481,17 @@ static int find_intersection_point(float r[3], float a1[3], float a2[3], float b
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nx = b2[0] - b1[0];
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ny = b2[1] - b1[1];
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s = ((b1[1] - a1[1]) / my + (a1[0] - b1[0]) / mx) / (nx / mx - ny / my);
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t = (b1[0] - a1[0] + s * nx) / mx;
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s = ((double)(b1[1] - a1[1]) / my + (double)(a1[0] - b1[0]) / mx) / (nx / mx - ny / my);
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t = ((double)(b1[0] - a1[0]) + s * nx) / mx;
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z1 = a1[2] + t * (a2[2] - a1[2]);
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z2 = b1[2] + s * (b2[2] - b1[2]);
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z1 = (double)a1[2] + t * (double)(a2[2] - a1[2]);
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z2 = (double)b1[2] + s * (double)(b2[2] - b1[2]);
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if (fabs(z1 - z2) < BEVEL_EPSILON) {
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flag = 1;
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r[0] = a1[0] + t * mx;
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r[1] = a1[1] + t * my;
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r[0] = (double)a1[0] + t * mx;
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r[1] = (double)a1[1] + t * my;
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r[2] = z1;
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}
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else
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@ -510,11 +510,11 @@ static int find_intersection_point(float r[3], float a1[3], float a2[3], float b
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static void find_intersection_point_plane(float r[3], float p1[3], float p2[3], float p3[3],
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float a[3], float m[3])
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{
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const double null = 1e-20;
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float P[3], N[3], A[3], M[3];
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float vv1[3], vv2[3];
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double t;
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double C, D, E;
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float null = 1e-20;
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/* calculation of the normal to the surface */
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@ -549,9 +549,9 @@ static void find_intersection_point_plane(float r[3], float p1[3], float p2[3],
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else
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t = (C - D) / E;
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r[0] = m[0] + t * a[0];
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r[1] = m[1] + t * a[1];
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r[2] = m[2] + t * a[2];
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r[0] = (double)m[0] + t * (double)a[0];
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r[1] = (double)m[1] + t * (double)a[1];
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r[2] = (double)m[2] + t * (double)a[2];
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}
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}
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@ -579,7 +579,7 @@ static void get_point_on_round_profile(float r[3], float offset, int i, int coun
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add_v3_v3v3(center, vva, vvb);
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normalize_v3(center);
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mul_v3_fl(center, offset * (1.0 / cos(0.5 * angle)));
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mul_v3_fl(center, offset * (1.0f / cosf(0.5f * angle)));
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add_v3_v3(center, v); /* coordinates of the center of the inscribed circle */
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@ -622,7 +622,7 @@ static void get_point_on_round_edge(EdgeHalf *e, int i,
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else
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sub_v3_v3v3(dir, e->e->v2->co, e->e->v1->co);
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normalize_v3(dir);
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if (fabs(angle_v3v3(vva, vvb) - M_PI) > BEVEL_EPSILON) {
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if (fabsf(angle_v3v3(vva, vvb) - (float)M_PI) > (float)BEVEL_EPSILON) {
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copy_v3_v3(vaadj, va);
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madd_v3_v3fl(vaadj, dir, -len_v3(vva) * cosf(angle_v3v3(vva, dir)));
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copy_v3_v3(vbadj, vb);
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