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20
CHANGELOG.md
20
CHANGELOG.md
@@ -1,4 +1,24 @@
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# TetGen: Release Notes
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## Version 1.6.0 (August 31, 2020)
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- Improved the speed of the Bowyer-Watson point insertion algorithm
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for creating Delaunay tetrahedralization.
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- Improved the robustness of the boundary recovery algorithm (-p -Y
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options) for creating constrained tetrahedralizations. Now the
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default algorithm for the \`\`-p\" option (boundary recobvery) is
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the constrained tetrahedralization algorithm. It is robust and it
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uses less Steiner points than the constrained Delaunay
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tetrahedralization (CDT) algorothm uses. The option to use the CDT
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algorithm is \`\`-p -D\".
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- A new implementation of the constrained Delaunay refinement
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algorithm (-q option). It uses new Steiner points insertion schemes
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to remove badly-shaped elements.
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- Implemented a new set of mesh smoothing and mesh improvement
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operations (-O -o) for optimizing the quality of the meshes. The
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overall mesh quality has been improved.
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- (Change of the -d option) To detect self-intersection in the input
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surface mesh is now directly done in the constrained
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tetrahedralization algorithm (the -p option).
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## Version 1.5.0 (November 4, 2013)
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3
README
3
README
@@ -1,4 +1,4 @@
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This is TetGen version 1.5.1 (released on August, 2018)
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This is TetGen version 1.6.0 (released on August 31, 2020)
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Please see the documentation of TetGen for compiling and using TetGen.
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It is available at the following link:
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@@ -13,7 +13,6 @@ For more information on this product, contact :
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Mohrenstr. 39
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10117 Berlin, Germany
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Phone: +49 (0) 30-20372-446 Fax: +49 (0) 30-2044975
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EMail: <si@wias-berlin.de>
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Web Site: http://www.wias-berlin.de/~si
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0
example.poly
Normal file → Executable file
0
example.poly
Normal file → Executable file
@@ -399,7 +399,7 @@ static REAL ispstaticfilter;
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// http://www.math.utah.edu/~beebe/software/ieee/
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// The original program was "fpinfo2.c".
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double fppow2(int n)
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static double fppow2(int n)
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{
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double x, power;
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x = (n < 0) ? ((double)1.0/(double)2.0) : (double)2.0;
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@@ -412,12 +412,12 @@ double fppow2(int n)
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#ifdef SINGLE
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float fstore(float x)
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static float fstore(float x)
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{
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return (x);
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}
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int test_float(int verbose)
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static int test_float(int verbose)
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{
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float x;
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int pass = 1;
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@@ -467,12 +467,12 @@ int test_float(int verbose)
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# else
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double dstore(double x)
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static double dstore(double x)
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{
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return (x);
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}
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int test_double(int verbose)
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static int test_double(int verbose)
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{
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double x;
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int pass = 1;
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@@ -881,7 +881,7 @@ int expansion_sum_zeroelim2(int elen, REAL *e, int flen, REAL *f, REAL *h)
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/* */
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/*****************************************************************************/
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int fast_expansion_sum(int elen, REAL *e, int flen, REAL *f, REAL *h)
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static int fast_expansion_sum(int elen, REAL *e, int flen, REAL *f, REAL *h)
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/* h cannot be e or f. */
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{
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REAL Q;
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@@ -953,7 +953,7 @@ int fast_expansion_sum(int elen, REAL *e, int flen, REAL *f, REAL *h)
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/* properties. */
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/* */
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/*****************************************************************************/
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static
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int fast_expansion_sum_zeroelim(int elen, REAL *e, int flen, REAL *f, REAL *h)
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/* h cannot be e or f. */
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{
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@@ -1165,7 +1165,7 @@ int linear_expansion_sum_zeroelim(int elen, REAL *e, int flen, REAL *f,
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/* will h.) */
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/* */
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/*****************************************************************************/
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static
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int scale_expansion(int elen, REAL *e, REAL b, REAL *h)
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/* e and h cannot be the same. */
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{
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@@ -1211,7 +1211,7 @@ int scale_expansion(int elen, REAL *e, REAL b, REAL *h)
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/* will h.) */
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/* */
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/*****************************************************************************/
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static
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int scale_expansion_zeroelim(int elen, REAL *e, REAL b, REAL *h)
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/* e and h cannot be the same. */
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{
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@@ -1263,7 +1263,7 @@ int scale_expansion_zeroelim(int elen, REAL *e, REAL b, REAL *h)
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/* nonadjacent expansion. */
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/* */
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/*****************************************************************************/
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static
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int compress(int elen, REAL *e, REAL *h)
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/* e and h may be the same. */
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{
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@@ -1306,7 +1306,7 @@ int compress(int elen, REAL *e, REAL *h)
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/* See either version of my paper for details. */
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/* */
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/*****************************************************************************/
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static
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REAL estimate(int elen, REAL *e)
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{
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REAL Q;
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@@ -1344,7 +1344,7 @@ REAL estimate(int elen, REAL *e)
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/* nearly so. */
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/* */
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/*****************************************************************************/
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static
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REAL orient2dfast(REAL *pa, REAL *pb, REAL *pc)
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{
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REAL acx, bcx, acy, bcy;
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@@ -1356,6 +1356,7 @@ REAL orient2dfast(REAL *pa, REAL *pb, REAL *pc)
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return acx * bcy - acy * bcx;
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}
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//static
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REAL orient2dexact(REAL *pa, REAL *pb, REAL *pc)
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{
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INEXACT REAL axby1, axcy1, bxcy1, bxay1, cxay1, cxby1;
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@@ -4181,7 +4182,7 @@ REAL insphere(REAL *pa, REAL *pb, REAL *pc, REAL *pd, REAL *pe)
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/* See my Robust Predicates paper for details. */
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/* */
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/*****************************************************************************/
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//static
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REAL orient4dexact(REAL* pa, REAL* pb, REAL* pc, REAL* pd, REAL* pe,
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REAL aheight, REAL bheight, REAL cheight, REAL dheight,
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REAL eheight)
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@@ -4397,6 +4398,7 @@ REAL orient4dexact(REAL* pa, REAL* pb, REAL* pc, REAL* pd, REAL* pe,
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return deter[deterlen - 1];
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}
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static
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REAL orient4dadapt(REAL* pa, REAL* pb, REAL* pc, REAL* pd, REAL* pe,
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REAL aheight, REAL bheight, REAL cheight, REAL dheight,
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REAL eheight, REAL permanent)
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@@ -4700,3 +4702,9 @@ REAL orient4d(REAL* pa, REAL* pb, REAL* pc, REAL* pd, REAL* pe,
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//==============================================================================
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17955
tetgen.cxx
17955
tetgen.cxx
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