forked from bit/DotRecastNetSim
remove new int[] in GetPolyMergeValue
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1d46fe20f1
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@ -461,16 +461,16 @@ namespace DotRecast.Recast
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- (verts[c + 0] - verts[a + 0]) * (verts[b + 2] - verts[a + 2]) < 0;
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- (verts[c + 0] - verts[a + 0]) * (verts[b + 2] - verts[a + 2]) < 0;
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}
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}
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private static int[] GetPolyMergeValue(int[] polys, int pa, int pb, int[] verts, int nvp)
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private static int GetPolyMergeValue(int[] polys, int pa, int pb, int[] verts, out int ea, out int eb, int nvp)
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{
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{
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int ea = -1;
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ea = -1;
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int eb = -1;
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eb = -1;
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int na = CountPolyVerts(polys, pa, nvp);
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int na = CountPolyVerts(polys, pa, nvp);
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int nb = CountPolyVerts(polys, pb, nvp);
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int nb = CountPolyVerts(polys, pb, nvp);
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// If the merged polygon would be too big, do not merge.
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// If the merged polygon would be too big, do not merge.
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if (na + nb - 2 > nvp)
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if (na + nb - 2 > nvp)
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return new int[] { -1, ea, eb };
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return -1;
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// Check if the polygons share an edge.
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// Check if the polygons share an edge.
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@ -480,9 +480,7 @@ namespace DotRecast.Recast
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int va1 = polys[pa + (i + 1) % na];
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int va1 = polys[pa + (i + 1) % na];
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if (va0 > va1)
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if (va0 > va1)
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{
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{
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int temp = va0;
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(va0, va1) = (va1, va0);
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va0 = va1;
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va1 = temp;
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}
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}
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for (int j = 0; j < nb; ++j)
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for (int j = 0; j < nb; ++j)
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@ -491,9 +489,7 @@ namespace DotRecast.Recast
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int vb1 = polys[pb + (j + 1) % nb];
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int vb1 = polys[pb + (j + 1) % nb];
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if (vb0 > vb1)
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if (vb0 > vb1)
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{
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{
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int temp = vb0;
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(vb0, vb1) = (vb1, vb0);
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vb0 = vb1;
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vb1 = temp;
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}
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}
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if (va0 == vb0 && va1 == vb1)
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if (va0 == vb0 && va1 == vb1)
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@ -507,7 +503,7 @@ namespace DotRecast.Recast
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// No common edge, cannot merge.
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// No common edge, cannot merge.
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if (ea == -1 || eb == -1)
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if (ea == -1 || eb == -1)
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return new int[] { -1, ea, eb };
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return -1;
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// Check to see if the merged polygon would be convex.
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// Check to see if the merged polygon would be convex.
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int va, vb, vc;
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int va, vb, vc;
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@ -516,13 +512,13 @@ namespace DotRecast.Recast
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vb = polys[pa + ea];
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vb = polys[pa + ea];
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vc = polys[pb + (eb + 2) % nb];
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vc = polys[pb + (eb + 2) % nb];
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if (!Uleft(verts, va * 3, vb * 3, vc * 3))
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if (!Uleft(verts, va * 3, vb * 3, vc * 3))
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return new int[] { -1, ea, eb };
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return -1;
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va = polys[pb + (eb + nb - 1) % nb];
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va = polys[pb + (eb + nb - 1) % nb];
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vb = polys[pb + eb];
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vb = polys[pb + eb];
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vc = polys[pa + (ea + 2) % na];
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vc = polys[pa + (ea + 2) % na];
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if (!Uleft(verts, va * 3, vb * 3, vc * 3))
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if (!Uleft(verts, va * 3, vb * 3, vc * 3))
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return new int[] { -1, ea, eb };
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return -1;
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va = polys[pa + ea];
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va = polys[pa + ea];
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vb = polys[pa + (ea + 1) % na];
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vb = polys[pa + (ea + 1) % na];
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@ -530,7 +526,7 @@ namespace DotRecast.Recast
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int dx = verts[va * 3 + 0] - verts[vb * 3 + 0];
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int dx = verts[va * 3 + 0] - verts[vb * 3 + 0];
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int dy = verts[va * 3 + 2] - verts[vb * 3 + 2];
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int dy = verts[va * 3 + 2] - verts[vb * 3 + 2];
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return new int[] { dx * dx + dy * dy, ea, eb };
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return (dx * dx) + (dy * dy);
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}
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}
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private static void MergePolyVerts(int[] polys, int pa, int pb, int ea, int eb, int tmp, int nvp)
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private static void MergePolyVerts(int[] polys, int pa, int pb, int ea, int eb, int tmp, int nvp)
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@ -901,10 +897,7 @@ namespace DotRecast.Recast
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for (int k = j + 1; k < npolys; ++k)
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for (int k = j + 1; k < npolys; ++k)
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{
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{
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int pk = k * nvp;
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int pk = k * nvp;
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int[] veaeb = GetPolyMergeValue(polys, pj, pk, mesh.verts, nvp);
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var v = GetPolyMergeValue(polys, pj, pk, mesh.verts, out var ea, out var eb, nvp);
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int v = veaeb[0];
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int ea = veaeb[1];
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int eb = veaeb[2];
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if (v > bestMergeVal)
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if (v > bestMergeVal)
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{
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{
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bestMergeVal = v;
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bestMergeVal = v;
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@ -1087,10 +1080,7 @@ namespace DotRecast.Recast
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for (int k = j + 1; k < npolys; ++k)
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for (int k = j + 1; k < npolys; ++k)
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{
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{
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int pk = k * nvp;
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int pk = k * nvp;
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int[] veaeb = GetPolyMergeValue(polys, pj, pk, mesh.verts, nvp);
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var v = GetPolyMergeValue(polys, pj, pk, mesh.verts, out var ea, out var eb, nvp);
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int v = veaeb[0];
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int ea = veaeb[1];
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int eb = veaeb[2];
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if (v > bestMergeVal)
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if (v > bestMergeVal)
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{
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{
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bestMergeVal = v;
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bestMergeVal = v;
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