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◆ test_median_robustness()

static void test_median_robustness ( void  )
static

Definition at line 1494 of file cu_algorithm.c.

1495 {
1496  /* A simple implementation of Weiszfeld's algorithm will fail if the median is equal
1497  * to any one of the inputs, during any iteration of the algorithm.
1498  *
1499  * Because the algorithm uses the centroid as a starting point, this situation will
1500  * occur in the test case below.
1501  */
1502  do_median_test("MULTIPOINT ((0 -1), (0 0), (0 1))", "POINT (0 0)", LW_TRUE, 1000);
1503 
1504  /* Same as above but 3D, and shifter */
1505  do_median_test("MULTIPOINT ((1 -1 3), (1 0 2), (2 1 1))", "POINT (1 0 2)", LW_TRUE, 1000);
1506 
1507  /* Starting point is duplicated */
1508  do_median_test("MULTIPOINT ((0 -1), (0 0), (0 0), (0 1))", "POINT (0 0)", LW_TRUE, 1000);
1509 
1510  /* Cube */
1511  do_median_test("MULTIPOINT ((10 10 10), (10 20 10), (20 10 10), (20 20 10), (10 10 20), (10 20 20), (20 10 20), (20 20 20))",
1512  "POINT (15 15 15)", LW_TRUE, 1000);
1513 
1514  /* Some edge cases */
1515  do_median_test("POINT (7 6)", "POINT (7 6)", LW_TRUE, 1000);
1516  do_median_test("POINT (7 6 2)", "POINT (7 6 2)", LW_TRUE, 1000);
1517  do_median_test("MULTIPOINT ((7 6 2), EMPTY)", "POINT (7 6 2)", LW_TRUE, 1000);
1518 
1519  /* Empty input */
1520  do_median_test("MULTIPOINT EMPTY", "POINT EMPTY", LW_FALSE, 1000);
1521  do_median_test("MULTIPOINT (EMPTY)", "POINT EMPTY", LW_FALSE, 1000);
1522  do_median_test("MULTIPOINT EMPTY", "POINT EMPTY", LW_TRUE, 1000);
1523  do_median_test("MULTIPOINT (EMPTY)", "POINT EMPTY", LW_TRUE, 1000);
1524  do_median_test("MULTIPOINT ZM (1 -1 3 1, 1 0 2 7, 2 1 1 1, EMPTY)", "POINT (1 0 2)", LW_TRUE, 1000);
1525 
1526  /* Weighted input */
1527  do_median_test("MULTIPOINT ZM (1 -1 3 1, 1 0 2 7, 2 1 1 1)", "POINT (1 0 2)", LW_TRUE, 1000);
1528  do_median_test("MULTIPOINT ZM (-1 1 -3 1, -1 0 -2 7, -2 -1 -1 1)", "POINT (-1 0 -2)", LW_TRUE, 1000);
1529  do_median_test("MULTIPOINT ZM (-1 1 -3 1, -1 0 -2 7, -2 -1 -1 0.5, -2 -1 -1 0.5)", "POINT (-1 0 -2)", LW_TRUE, 1000);
1530 
1531  /* Point that is replaced by two half-weighted */
1532  do_median_test("MULTIPOINT ZM ((0 -1 0 1), (0 0 0 1), (0 1 0 0.5), (0 1 0 0.5))", "POINT (0 0 0)", LW_TRUE, 1000);
1533  /* Point is doubled and then erased by negative weight */
1534  do_median_test("MULTIPOINT ZM ((1 -1 3 1), (1 0 2 7), (2 1 1 2), (2 1 1 -1))", NULL, LW_TRUE, 1000);
1535  do_median_test("MULTIPOINT ZM ((1 -1 3 1), (1 0 2 7), (2 1 1 2), (2 1 1 -1))", NULL, LW_FALSE, 1000);
1536  /* Weightless input won't converge */
1537  do_median_test("MULTIPOINT ZM ((0 -1 0 0), (0 0 0 0), (0 0 0 0), (0 1 0 0))", NULL, LW_FALSE, 1000);
1538  do_median_test("MULTIPOINT ZM ((0 -1 0 0), (0 0 0 0), (0 0 0 0), (0 1 0 0))", NULL, LW_TRUE, 1000);
1539  /* Negative weight won't converge */
1540  do_median_test("MULTIPOINT ZM ((0 -1 0 -1), (0 0 0 -1), (0 1 0 -1))", NULL, LW_FALSE, 1000);
1541  do_median_test("MULTIPOINT ZM ((0 -1 0 -1), (0 0 0 -1), (0 1 0 -1))", NULL, LW_TRUE, 1000);
1542 
1543  /* Bind convergence too tightly */
1544  do_median_test("MULTIPOINT ((0 0), (1 1), (0 1), (2 2))", "POINT(0.75 1.0)", LW_FALSE, 0);
1545  do_median_test("MULTIPOINT ((0 0), (1 1), (0 1), (2 2))", NULL, LW_TRUE, 1);
1546  /* Unsupported geometry type */
1547  do_median_test("POLYGON((1 0,0 1,1 2,2 1,1 0))", NULL, LW_TRUE, 1000);
1548  do_median_test("POLYGON((1 0,0 1,1 2,2 1,1 0))", NULL, LW_FALSE, 1000);
1549 
1550  /* Median point is included */
1551  do_median_test("MULTIPOINT ZM ("
1552  "(1480 0 200 100),"
1553  "(620 0 200 100),"
1554  "(1000 0 -200 100),"
1555  "(1000 0 -590 100),"
1556  "(1025 0 65 100),"
1557  "(1025 0 -65 100)"
1558  ")",
1559  "POINT (1025 0 -65)", LW_TRUE, 10000);
1560 
1561 #if 0
1562  /* Leads to invalid result (0 0 0) with 80bit (fmulp + faddp) precision. ok with 64 bit float ops */
1563  do_median_test("MULTIPOINT ZM ("
1564  "(0 0 20000 0.5),"
1565  "(0 0 59000 0.5),"
1566  "(0 -3000 -3472.22222222222262644208967685699462890625 1),"
1567  "(0 3000 3472.22222222222262644208967685699462890625 1),"
1568  "(0 0 -1644.736842105263121993630193173885345458984375 1),"
1569  "(0 0 1644.736842105263121993630193173885345458984375 1),"
1570  "(0 48000 -20000 1.3),"
1571  "(0 -48000 -20000 1.3)"
1572  ")",
1573  "POINT (0 0 0)", LW_TRUE, 10000);
1574 #endif
1575 
1576 #if 0
1577  /* Leads to invalid result (0 0 0) with 64bit (vfmadd231sd) precision. Ok with 80 bit float ops */
1578  do_median_test("MULTIPOINT ZM ("
1579  "(0 0 20000 0.5),"
1580  "(0 0 59000 0.5),"
1581  "(0 -3000 -3472.22222222222262644208967685699462890625 1),"
1582  "(0 3000 3472.22222222222262644208967685699462890625 1),"
1583  "(0 -0.00000000000028047739569477638384522295466033823196 -1644.736842105263121993630193173885345458984375 1),"
1584  "(0 0.00000000000028047739569477638384522295466033823196 1644.736842105263121993630193173885345458984375 1),"
1585  "(0 48000 -20000 1.3),"
1586  "(0 -48000 -20000 1.3)"
1587  ")",
1588  "POINT (0 0 0)", LW_TRUE, 10000);
1589 #endif
1590 }
static void do_median_test(char *input, char *expected, int fail_if_not_converged, int iter_count)
#define LW_FALSE
Definition: liblwgeom.h:94
#define LW_TRUE
Return types for functions with status returns.
Definition: liblwgeom.h:93

References do_median_test(), LW_FALSE, and LW_TRUE.

Referenced by algorithms_suite_setup().

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