PostGIS 3.6.2dev-r@@SVN_REVISION@@
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librtcore.h
Go to the documentation of this file.
1/*
2 *
3 * WKTRaster - Raster Types for PostGIS
4 * http://trac.osgeo.org/postgis/wiki/WKTRaster
5 *
6 * Copyright (C) 2011-2013 Regents of the University of California
7 * <bkpark@ucdavis.edu>
8 * Copyright (C) 2010-2011 Jorge Arevalo <jorge.arevalo@deimos-space.com>
9 * Copyright (C) 2010-2011 David Zwarg <dzwarg@azavea.com>
10 * Copyright (C) 2009-2011 Pierre Racine <pierre.racine@sbf.ulaval.ca>
11 * Copyright (C) 2009-2011 Mateusz Loskot <mateusz@loskot.net>
12 * Copyright (C) 2008-2009 Sandro Santilli <strk@kbt.io>
13 * Copyright (C) 2013 Nathaneil Hunter Clay <clay.nathaniel@gmail.com
14 *
15 * This program is free software; you can redistribute it and/or
16 * modify it under the terms of the GNU General Public License
17 * as published by the Free Software Foundation; either version 2
18 * of the License, or (at your option) any later version.
19 *
20 * This program is distributed in the hope that it will be useful,
21 * but WITHOUT ANY WARRANTY; without even the implied warranty of
22 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
23 * GNU General Public License for more details.
24 *
25 * You should have received a copy of the GNU General Public License
26 * along with this program; if not, write to the Free Software Foundation,
27 * Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
28 *
29 */
30
48/******************************************************************************
49* Some rules for *.(c|h) files in rt_core
50*
51* All functions in rt_core that receive a band index parameter
52* must be 0-based
53*
54* Variables and functions internal for a public function should be prefixed
55* with _rti_, e.g. _rti_iterator_arg.
56******************************************************************************/
57
58#ifndef LIBRTCORE_H_INCLUDED
59#define LIBRTCORE_H_INCLUDED
60
61/* define the systems */
62#if defined(__linux__) /* (predefined) */
63#if !defined(LINUX)
64#define LINUX
65#endif
66#if !defined(UNIX)
67#define UNIX /* make sure this is defined */
68#endif
69#endif
70
71#if defined(__FreeBSD__) || defined(__FreeBSD_kernel__) || defined(__OpenBSD__) /* seems to work like Linux... */
72#if !defined(LINUX)
73#define LINUX
74#endif
75#if !defined(UNIX)
76#define UNIX /* make sure this is defined */
77#endif
78#endif
79
80#if defined(__GNU__) /* GNU/Hurd is also like Linux */
81#if !defined(LINUX)
82#define LINUX
83#endif
84#if !defined(UNIX)
85#define UNIX /* make sure this is defined */
86#endif
87#endif
88
89#if defined(__MSDOS__)
90#if !defined(MSDOS)
91#define MSDOS /* make sure this is defined */
92#endif
93#endif
94
95#if defined(__WIN32__) || defined(__NT__) || defined(_WIN32)
96#if !defined(WIN32)
97#define WIN32
98#endif
99#if defined(__BORLANDC__) && defined(MSDOS) /* Borland always defines MSDOS */
100#undef MSDOS
101#endif
102#endif
103
104#if defined(__APPLE__)
105#if !defined(UNIX)
106#define UNIX
107#endif
108#endif
109
110#if defined(sun) || defined(__sun)
111#if !defined(UNIX)
112#define UNIX
113#endif
114#endif
115
116#include <stdio.h> /* for printf, sprintf */
117#include <stdlib.h> /* For size_t, srand and rand */
118#include <stdint.h> /* For C99 int types */
119#include <string.h> /* for memcpy, strlen, etc */
120#include <float.h> /* for FLT_EPSILON, DBL_EPSILON and float type limits */
121#include <limits.h> /* for integer type limits */
122
123#include "liblwgeom_internal.h"
124
125#include "gdal.h"
126#include "gdalgrid.h" /* for ParseAlgorithmAndOptions */
127#include "gdal_frmts.h"
128#include "gdalwarper.h"
129#include "cpl_vsi.h"
130#include "cpl_conv.h"
131#include "cpl_string.h"
132#include "cpl_minixml.h"
133#include "ogr_api.h"
134#include "ogr_srs_api.h"
135
136#include "postgis_config.h"
137#include "raster_config.h"
138
139#ifndef __GNUC__
140# define __attribute__ (x)
141#endif
142
146typedef struct rt_raster_t* rt_raster;
147typedef struct rt_band_t* rt_band;
148typedef struct rt_pixel_t* rt_pixel;
149typedef struct rt_mask_t* rt_mask;
150typedef struct rt_geomval_t* rt_geomval;
158
161
164
165/* envelope information */
166typedef struct {
167 double MinX;
168 double MaxX;
169 double MinY;
170 double MaxY;
171
175
180/* function return error states */
181typedef enum {
182 ES_NONE = 0, /* no error */
183 ES_ERROR = 1 /* generic error */
185
186/* Pixel types */
187typedef enum {
188 PT_1BB=0, /* 1-bit boolean */
189 PT_2BUI=1, /* 2-bit unsigned integer */
190 PT_4BUI=2, /* 4-bit unsigned integer */
191 PT_8BSI=3, /* 8-bit signed integer */
192 PT_8BUI=4, /* 8-bit unsigned integer */
193 PT_16BSI=5, /* 16-bit signed integer */
194 PT_16BUI=6, /* 16-bit unsigned integer */
195 PT_32BSI=7, /* 32-bit signed integer */
196 PT_32BUI=8, /* 32-bit unsigned integer */
197 PT_32BF=10, /* 32-bit float */
198 PT_64BF=11, /* 64-bit float */
199 PT_END=13
201
210
227
231typedef char* (*rt_options)(const char* varname);
232typedef void* (*rt_allocator)(size_t size);
233typedef void* (*rt_reallocator)(void *mem, size_t size);
234typedef void (*rt_deallocator)(void *mem);
235typedef void (*rt_message_handler)(const char* string, va_list ap)
236 __attribute__ (( format(printf,1,0) ));
237
238/*******************************************************************
239 * Functions that may be used by the raster core function's caller
240 * (for example: rt_pg functions, test functions, future loader/exporter)
241 *******************************************************************/
245extern void rt_install_default_allocators(void);
246
251extern void* rtalloc(size_t size);
252extern void* rtrealloc(void* mem, size_t size);
253extern void rtdealloc(void* mem);
254
255/******************************************************************/
256
257
261void rterror(const char *fmt, ...) __attribute__ ((format (printf, 1, 2)));
262void rtinfo(const char *fmt, ...) __attribute__ ((format (printf, 1, 2)));
263void rtwarn(const char *fmt, ...) __attribute__ ((format (printf, 1, 2)));
264
268char* rtoptions(const char* varname);
269char* rtstrdup(const char *str);
270
274void * default_rt_allocator(size_t size);
275void * default_rt_reallocator(void * mem, size_t size);
276void default_rt_deallocator(void * mem);
277void default_rt_error_handler(const char * fmt, va_list ap) __attribute__ ((format (printf, 1, 0)));
278void default_rt_warning_handler(const char * fmt, va_list ap) __attribute__ ((format (printf, 1, 0)));
279void default_rt_info_handler(const char * fmt, va_list ap) __attribute__ ((format (printf, 1, 0)));
280char * default_rt_options(const char* varname);
281
282/* Debugging macros */
283#if POSTGIS_DEBUG_LEVEL > 0
284
285/* Display a simple message at NOTICE level */
286#define RASTER_DEBUG(level, msg) \
287 do { \
288 if (POSTGIS_DEBUG_LEVEL >= level) \
289 rtinfo("[%s:%s:%d] " msg, __FILE__, __func__, __LINE__); \
290 } while (0);
291
292/* Display a formatted message at NOTICE level (like printf, with variadic arguments) */
293#define RASTER_DEBUGF(level, msg, ...) \
294 do { \
295 if (POSTGIS_DEBUG_LEVEL >= level) \
296 rtinfo("[%s:%s:%d] " msg, __FILE__, __func__, __LINE__, __VA_ARGS__); \
297 } while (0);
298
299#else
300
301/* Empty prototype that can be optimised away by the compiler for non-debug builds */
302#define RASTER_DEBUG(level, msg) \
303 ((void) 0)
304
305/* Empty prototype that can be optimised away by the compiler for non-debug builds */
306#define RASTER_DEBUGF(level, msg, ...) \
307 ((void) 0)
308
309#endif
310
311/*- memory context -------------------------------------------------------*/
312
313void rt_set_handlers(rt_allocator allocator, rt_reallocator reallocator,
314 rt_deallocator deallocator, rt_message_handler error_handler,
315 rt_message_handler info_handler, rt_message_handler warning_handler);
316
317void rt_set_handlers_options(rt_allocator allocator, rt_reallocator reallocator,
318 rt_deallocator deallocator, rt_message_handler error_handler,
319 rt_message_handler info_handler, rt_message_handler warning_handler,
320 rt_options options_handler);
321
322
323
324/*- rt_pixtype --------------------------------------------------------*/
325
333int rt_pixtype_size(rt_pixtype pixtype);
334
345
346/* Return human-readable name of pixel type */
347const char* rt_pixtype_name(rt_pixtype pixtype);
348
349/* Return pixel type index from human-readable name */
350rt_pixtype rt_pixtype_index_from_name(const char* pixname);
351
360
372 rt_pixtype pixtype,
373 double val, double refval,
374 int *isequal
375);
376
377/*- rt_pixel ----------------------------------------------------------*/
378
379/*
380 * Convert an array of rt_pixel objects to two 2D arrays of value and NODATA.
381 * The dimensions of the returned 2D array are [Y][X], going by row Y and
382 * then column X.
383 *
384 * @param npixel : array of rt_pixel objects
385 * @param count : number of elements in npixel
386 * @param mask : mask to be respected when returning array
387 * @param x : the column of the center pixel (0-based)
388 * @param y : the line of the center pixel (0-based)
389 * @param distancex : the number of pixels around the specified pixel
390 * along the X axis
391 * @param distancey : the number of pixels around the specified pixel
392 * along the Y axis
393 * @param value : pointer to pointer for 2D value array
394 * @param nodata : pointer to pointer for 2D NODATA array
395 * @param dimx : size of value and nodata along the X axis
396 * @param dimy : size of value and nodata along the Y axis
397 *
398 * @return ES_NONE on success, ES_ERROR on error
399 */
401 rt_pixel npixel,uint32_t count,
402 rt_mask mask,
403 int x, int y,
404 uint16_t distancex, uint16_t distancey,
405 double ***value,
406 int ***nodata,
407 int *dimx, int *dimy
408);
409
410/*- rt_band ----------------------------------------------------------*/
411
433 uint16_t width, uint16_t height,
434 rt_pixtype pixtype,
435 uint32_t hasnodata, double nodataval,
436 uint8_t* data
437);
438
447 rt_band band,
448 double initval
449);
450
471 uint16_t width, uint16_t height,
472 rt_pixtype pixtype,
473 uint32_t hasnodata, double nodataval,
474 uint8_t bandNum, const char* path
475);
476
497 uint16_t width,
498 uint16_t height,
499 int hasnodata,
500 double nodataval,
501 uint8_t bandNum,
502 const char* path,
503 int force
504);
505
517
528
537const char* rt_band_get_ext_path(rt_band band);
538
547uint64_t rt_band_get_file_size(rt_band band);
548
558
568rt_errorstate rt_band_get_ext_band_num(rt_band band, uint8_t *bandnum);
569
578
586uint16_t rt_band_get_width(rt_band band);
587
595uint16_t rt_band_get_height(rt_band band);
596
607
608/* set ownsdata flag */
609void rt_band_set_ownsdata_flag(rt_band band, int flag);
610
618void* rt_band_get_data(rt_band band);
619
630
636void rt_band_destroy(rt_band band);
637
646
652void rt_band_set_hasnodata_flag(rt_band band, int flag);
653
663
672
683rt_errorstate rt_band_set_nodata(rt_band band, double val, int *converted);
684
693rt_errorstate rt_band_get_nodata(rt_band band, double *nodata);
694
715 rt_band band,
716 int x, int y,
717 void *vals, uint32_t len
718);
719
732 rt_band band,
733 int x, int y,
734 double val,
735 int *converted
736);
737
759 rt_band band,
760 int x, int y,
761 uint16_t len,
762 void **vals, uint16_t *nvals
763);
764
778 rt_band band,
779 int x, int y,
780 double *value,
781 int *nodata
782);
783
802 rt_band band,
803 int x, int y,
804 uint16_t distancex, uint16_t distancey,
805 int exclude_nodata_value,
806 rt_pixel *npixels
807);
808
821 rt_band band, int exclude_nodata_value,
822 double *searchset, int searchcount,
823 rt_pixel *pixels
824);
825
833double rt_band_get_min_value(rt_band band);
834
843
854int rt_band_clamped_value_is_nodata(rt_band band, double val);
855
870 rt_band band,
871 double val,
872 double *newval, int *corrected
873);
874
889 rt_band band,
890 int exclude_nodata_value, double sample, int inc_vals,
891 uint64_t *cK, double *cM, double *cQ
892);
893
913 rt_bandstats stats,
914 uint32_t bin_count, double *bin_widths, uint32_t bin_widths_count,
915 int right, double min, double max,
916 uint32_t *rtn_count
917);
918
931 double *quantiles, int quantiles_count, uint32_t *rtn_count);
932
933struct quantile_llist;
935 struct quantile_llist **list,
936 uint32_t list_count
937);
938
967 rt_band band,
968 int exclude_nodata_value, double sample,
969 uint64_t cov_count,
970 struct quantile_llist **qlls, uint32_t *qlls_count,
971 double *quantiles, uint32_t quantiles_count,
972 uint32_t *rtn_count
973);
974
990 rt_band band, int exclude_nodata_value,
991 double *search_values, uint32_t search_values_count, double roundto,
992 uint32_t *rtn_total, uint32_t *rtn_count
993);
994
1008 rt_band srcband, rt_pixtype pixtype,
1009 uint32_t hasnodata, double nodataval,
1010 rt_reclassexpr *exprset, int exprcount
1011);
1012
1023 rt_band srcband, rt_reclassmap map,
1024 uint32_t hasnodata, double nodataval
1025);
1026
1027/*- rt_raster --------------------------------------------------------*/
1028
1040rt_raster rt_raster_new(uint32_t width, uint32_t height);
1041
1052rt_raster rt_raster_from_wkb(const uint8_t* wkb, uint32_t wkbsize);
1053
1064rt_raster rt_raster_from_hexwkb(const char* hexwkb, uint32_t hexwkbsize);
1065
1075uint8_t *rt_raster_to_wkb(rt_raster raster, int outasin, uint32_t *wkbsize);
1076
1087char *rt_raster_to_hexwkb(rt_raster raster, int outasin, uint32_t *hexwkbsize);
1088
1099void rt_raster_destroy(rt_raster raster);
1100
1101/* Get number of bands */
1102uint16_t rt_raster_get_num_bands(rt_raster raster);
1103
1112rt_band rt_raster_get_band(rt_raster raster, int bandNum);
1113
1114/* Get number of rows */
1115uint16_t rt_raster_get_width(rt_raster raster);
1116
1117/* Get number of columns */
1118uint16_t rt_raster_get_height(rt_raster raster);
1119
1130int rt_raster_add_band(rt_raster raster, rt_band band, int index);
1131
1145 rt_raster raster,
1146 rt_pixtype pixtype,
1147 double initialvalue,
1148 uint32_t hasnodata, double nodatavalue,
1149 int index
1150);
1151
1161void rt_raster_set_scale(rt_raster raster,
1162 double scaleX, double scaleY);
1163
1171double rt_raster_get_x_scale(rt_raster raster);
1172
1180double rt_raster_get_y_scale(rt_raster raster);
1181
1192 double x, double y);
1193
1202double rt_raster_get_x_offset(rt_raster raster);
1203
1212double rt_raster_get_y_offset(rt_raster raster);
1213
1221void rt_raster_set_skews(rt_raster raster,
1222 double skewX, double skewY);
1223
1230double rt_raster_get_x_skew(rt_raster raster);
1231
1238double rt_raster_get_y_skew(rt_raster raster);
1239
1253 double *i_mag, double *j_mag, double *theta_i, double *theta_ij) ;
1254
1271 double i_mag, double j_mag, double theta_i, double theta_ij) ;
1272
1273
1289void rt_raster_calc_phys_params(double xscale,
1290 double xskew, double yskew, double yscale,
1291 double *i_mag, double *j_mag, double *theta_i, double *theta_ij) ;
1292
1293
1310int rt_raster_calc_gt_coeff(double i_mag,
1311 double j_mag, double theta_i, double theta_ij,
1312 double *xscale, double *xskew, double *yskew, double *yscale) ;
1313
1320void rt_raster_set_srid(rt_raster raster, int32_t srid);
1321
1328int32_t rt_raster_get_srid(rt_raster raster);
1329
1340 rt_raster raster,
1341 double *gt, double *igt
1342);
1343
1351 double *gt);
1352
1361 double *gt);
1362
1376 rt_raster raster,
1377 double xr, double yr,
1378 double* xw, double* yw,
1379 double *gt
1380);
1381
1395 rt_raster raster,
1396 double xw, double yw,
1397 double *xr, double *yr,
1398 double *igt
1399);
1400
1401
1415 rt_raster raster,
1416 double xw, double yw,
1417 double *xr, double *yr,
1418 double *igt
1419);
1420
1421
1435
1447
1457
1471 rt_band band,
1472 double xr, double yr,
1473 double *r_value, int *r_nodata
1474);
1475
1480
1495 rt_band band,
1496 double xr, double yr,
1497 rt_resample_type resample,
1498 double *r_value, int *r_nodata
1499);
1500
1516 rt_raster raster,
1517 uint32_t bandnum,
1518 char dim, /* 'Z' or 'M' */
1519 rt_resample_type resample,
1520 const LWGEOM *lwgeom_in,
1521 LWGEOM **lwgeom_out
1522);
1523
1538 rt_raster raster, int nband,
1539 LWGEOM **perimeter
1540);
1541
1542/*
1543 * Compute skewed extent that covers unskewed extent.
1544 *
1545 * @param envelope : unskewed extent of type rt_envelope
1546 * @param skew : pointer to 2-element array (x, y) of skew
1547 * @param scale : pointer to 2-element array (x, y) of scale
1548 * @param tolerance : value between 0 and 1 where the smaller the tolerance
1549 * results in an extent approaching the "minimum" skewed extent.
1550 * If value <= 0, tolerance = 0.1. If value > 1, tolerance = 1.
1551 *
1552 * @return skewed raster who's extent covers unskewed extent, NULL on error
1553 */
1556 rt_envelope extent,
1557 double *skew,
1558 double *scale,
1559 double tolerance
1560);
1561
1576LWPOLY* rt_raster_pixel_as_polygon(rt_raster raster, int x, int y);
1577
1588
1602rt_errorstate rt_raster_surface(rt_raster raster, int nband, LWMPOLY **surface);
1603
1623 rt_raster raster, int nband,
1624 int exclude_nodata_value,
1625 int * pnElements
1626);
1627
1634void* rt_raster_serialize(rt_raster raster);
1635
1644rt_raster rt_raster_deserialize(void* serialized, int header_only);
1645
1653int rt_raster_is_empty(rt_raster raster);
1654
1663int rt_raster_has_band(rt_raster raster, int nband);
1664
1680 rt_raster torast, rt_raster fromrast,
1681 int fromindex, int toindex
1682);
1683
1695rt_raster rt_raster_from_band(rt_raster raster, uint32_t *bandNums,
1696 int count);
1697
1708 int index);
1709
1718rt_raster rt_raster_clone(rt_raster raster, uint8_t deep);
1719
1732uint8_t *rt_raster_to_gdal(rt_raster raster, const char *srs,
1733 char *format, char **options, uint64_t *gdalsize);
1734
1744rt_gdaldriver rt_raster_gdal_drivers(uint32_t *drv_count, uint8_t cancc);
1745
1762GDALDatasetH rt_raster_to_gdal_mem(
1763 rt_raster raster,
1764 const char *srs,
1765 uint32_t *bandNums,
1766 int *excludeNodataValues,
1767 int count,
1768 GDALDriverH *rtn_drv, int *destroy_rtn_drv
1769);
1770
1771/*
1772* Generate contour vectors from a raster input
1773*/
1779
1790 /* input parameters */
1791 rt_raster src_raster,
1792 int src_band,
1793 int src_srid,
1794 const char* src_srs,
1795 double contour_interval,
1796 double contour_base,
1797 int fixed_level_count,
1798 double *fixed_levels,
1799 int polygonize,
1800 /* output parameters */
1801 size_t *ncontours,
1802 struct rt_contour_t **contours
1803 );
1804
1812rt_raster rt_raster_from_gdal_dataset(GDALDatasetH ds);
1813
1845 rt_raster raster,
1846 const char *src_srs, const char *dst_srs,
1847 double *scale_x, double *scale_y,
1848 int *width, int *height,
1849 double *ul_xw, double *ul_yw,
1850 double *grid_xw, double *grid_yw,
1851 double *skew_x, double *skew_y,
1852 GDALResampleAlg resample_alg, double max_err);
1853
1880rt_raster rt_raster_gdal_rasterize(const unsigned char *wkb,
1881 uint32_t wkb_len, const char *srs,
1882 uint32_t num_bands, rt_pixtype *pixtype,
1883 double *init, double *value,
1884 double *nodata, uint8_t *hasnodata,
1885 int *width, int *height,
1886 double *scale_x, double *scale_y,
1887 double *ul_xw, double *ul_yw,
1888 double *grid_xw, double *grid_yw,
1889 double *skew_x, double *skew_y,
1890 char **options
1891);
1892
1910 rt_raster rast1, int nband1,
1911 rt_raster rast2, int nband2,
1912 int *intersects
1913);
1914
1932 rt_raster rast1, int nband1,
1933 rt_raster rast2, int nband2,
1934 int *overlaps
1935);
1936
1954 rt_raster rast1, int nband1,
1955 rt_raster rast2, int nband2,
1956 int *contains
1957);
1958
1976 rt_raster rast1, int nband1,
1977 rt_raster rast2, int nband2,
1978 int *contains
1979);
1980
1998 rt_raster rast1, int nband1,
1999 rt_raster rast2, int nband2,
2000 int *touches
2001);
2002
2020 rt_raster rast1, int nband1,
2021 rt_raster rast2, int nband2,
2022 int *covers
2023);
2024
2042 rt_raster rast1, int nband1,
2043 rt_raster rast2, int nband2,
2044 int *coveredby
2045);
2046
2066 rt_raster rast1, int nband1,
2067 rt_raster rast2, int nband2,
2068 double distance,
2069 int *dwithin
2070);
2071
2091 rt_raster rast1, int nband1,
2092 rt_raster rast2, int nband2,
2093 double distance,
2094 int *dfwithin
2095);
2096
2097/*
2098 * Return ES_ERROR if error occurred in function.
2099 * Parameter aligned returns non-zero if two rasters are aligned
2100 *
2101 * @param rast1 : the first raster for alignment test
2102 * @param rast2 : the second raster for alignment test
2103 * @param *aligned : non-zero value if the two rasters are aligned
2104 * @param *reason : reason why rasters are not aligned
2105 *
2106 * @return ES_NONE if success, ES_ERROR if error
2107 */
2109 rt_raster rast1,
2110 rt_raster rast2,
2111 int *aligned, char **reason
2112);
2113
2114/*
2115 * Return raster of computed extent specified extenttype applied
2116 * on two input rasters. The raster returned should be freed by
2117 * the caller
2118 *
2119 * @param rast1 : the first raster
2120 * @param rast2 : the second raster
2121 * @param extenttype : type of extent for the output raster
2122 * @param *rtnraster : raster of computed extent
2123 * @param *offset : 4-element array indicating the X,Y offsets
2124 * for each raster. 0,1 for rast1 X,Y. 2,3 for rast2 X,Y.
2125 *
2126 * @return ES_NONE if success, ES_ERROR if error
2127 */
2130 rt_raster rast1, rt_raster rast2,
2131 rt_extenttype extenttype,
2132 rt_raster *rtnraster, double *offset
2133);
2134
2173 rt_iterator itrset, uint16_t itrcount,
2174 rt_extenttype extenttype, rt_raster customextent,
2175 rt_pixtype pixtype,
2176 uint8_t hasnodata, double nodataval,
2177 uint16_t distancex, uint16_t distancey,
2178 rt_mask mask,
2179 void *userarg,
2180 int (*callback)(
2181 rt_iterator_arg arg,
2182 void *userarg,
2183 double *value,
2184 int *nodata
2185 ),
2186 rt_raster *rtnraster
2187);
2188
2201 rt_raster raster, int nband,
2202 rt_colormap colormap
2203);
2204
2205#if POSTGIS_GEOS_VERSION >= 31400
2218rt_raster rt_raster_intersection_fractions(
2219 const rt_raster rast_in,
2220 const LWGEOM *geom
2221);
2222#endif
2223
2224/*- utilities -------------------------------------------------------*/
2225
2226/*
2227 * rt_core memory functions
2228 */
2229extern void *rtalloc(size_t size);
2230extern void *rtrealloc(void *mem, size_t size);
2231extern void rtdealloc(void *mem);
2232
2233/*
2234 * GDAL driver flags
2235 */
2236
2237#define GDAL_ENABLE_ALL "ENABLE_ALL"
2238#define GDAL_DISABLE_ALL "DISABLE_ALL"
2239#define GDAL_VSICURL "VSICURL"
2240
2241/*
2242 * Set of functions to clamp double to int of different size
2243 */
2244
2245#if !defined(POSTGIS_RASTER_WARN_ON_TRUNCATION)
2246#define POSTGIS_RASTER_WARN_ON_TRUNCATION 0
2247#endif
2248
2249#define POSTGIS_RT_1BBMAX 1
2250#define POSTGIS_RT_2BUIMAX 3
2251#define POSTGIS_RT_4BUIMAX 15
2252
2253uint8_t
2254rt_util_clamp_to_1BB(double value);
2255
2256uint8_t
2257rt_util_clamp_to_2BUI(double value);
2258
2259uint8_t
2260rt_util_clamp_to_4BUI(double value);
2261
2262int8_t
2263rt_util_clamp_to_8BSI(double value);
2264
2265uint8_t
2266rt_util_clamp_to_8BUI(double value);
2267
2268int16_t
2269rt_util_clamp_to_16BSI(double value);
2270
2271uint16_t
2272rt_util_clamp_to_16BUI(double value);
2273
2274int32_t
2275rt_util_clamp_to_32BSI(double value);
2276
2277uint32_t
2278rt_util_clamp_to_32BUI(double value);
2279
2280float
2281rt_util_clamp_to_32F(double value);
2282
2283int
2285 double initialvalue,
2286 int32_t checkvalint, uint32_t checkvaluint,
2287 float checkvalfloat, double checkvaldouble,
2288 rt_pixtype pixtype
2289);
2290
2298GDALResampleAlg
2299rt_util_gdal_resample_alg(const char *algname);
2300
2308GDALDataType
2310
2319rt_util_gdal_datatype_to_pixtype(GDALDataType gdt);
2320
2321/*
2322 get GDAL runtime version information
2323*/
2324const char*
2325rt_util_gdal_version(const char *request);
2326
2327/*
2328 computed extent type from c string
2329*/
2331rt_util_extent_type(const char *name);
2332
2333/*
2334 convert the spatial reference string from a GDAL recognized format to either WKT or Proj4
2335*/
2336char*
2337rt_util_gdal_convert_sr(const char *srs, int proj4);
2338
2339/*
2340 is the spatial reference string supported by GDAL
2341*/
2342int
2343rt_util_gdal_supported_sr(const char *srs);
2344
2356rt_util_gdal_sr_auth_info(GDALDatasetH hds, char **authname, char **authcode);
2357
2358/*
2359 is GDAL configured correctly?
2360*/
2361int
2363
2364/*
2365 register all GDAL drivers
2366*/
2367int
2368rt_util_gdal_register_all(int force_register_all);
2369
2370/*
2371 is the driver registered?
2372*/
2373int
2374rt_util_gdal_driver_registered(const char *drv);
2375
2376/*
2377 wrapper for GDALOpen and GDALOpenShared
2378*/
2379GDALDatasetH
2380rt_util_gdal_open(const char *fn, GDALAccess fn_access, int shared);
2381
2382void
2384 OGREnvelope env,
2385 rt_envelope *ext
2386);
2387
2388void
2390 rt_envelope ext,
2391 OGREnvelope *env
2392);
2393
2394LWPOLY *
2396 rt_envelope ext
2397);
2398
2399int
2401 double *gt1,
2402 double *gt2
2403);
2404
2405/* coordinates in RGB and HSV are floating point values between 0 and 1 */
2408 double rgb[3],
2409 double hsv[3]
2410);
2411
2412/* coordinates in RGB and HSV are floating point values between 0 and 1 */
2415 double hsv[3],
2416 double rgb[3]
2417);
2418
2419/*
2420 helper macros for consistent floating point equality checks.
2421 NaN equals NaN for NODATA support.
2422*/
2423#define FLT_NEQ(x, y) ((x != y) && !(isnan(x) && isnan(y)) && (fabs(x - y) > FLT_EPSILON))
2424#define FLT_EQ(x, y) ((x == y) || (isnan(x) && isnan(y)) || (fabs(x - y) <= FLT_EPSILON))
2425#define DBL_NEQ(x, y) ((x != y) && !(isnan(x) && isnan(y)) && (fabs(x - y) > DBL_EPSILON))
2426#define DBL_EQ(x, y) ((x == y) || (isnan(x) && isnan(y)) || (fabs(x - y) <= DBL_EPSILON))
2427
2428/*
2429 helper macro for symmetrical rounding
2430*/
2431#define ROUND(x, y) (((x > 0.0) ? floor((x * pow(10, y) + 0.5)) : ceil((x * pow(10, y) - 0.5))) / pow(10, y))
2432
2441 /*---[ 8 byte boundary ]---{ */
2442 uint32_t size; /* required by postgresql: 4 bytes */
2443 uint16_t version; /* format version (this is version 0): 2 bytes */
2444 uint16_t numBands; /* Number of bands: 2 bytes */
2445
2446 /* }---[ 8 byte boundary ]---{ */
2447 double scaleX; /* pixel width: 8 bytes */
2448
2449 /* }---[ 8 byte boundary ]---{ */
2450 double scaleY; /* pixel height: 8 bytes */
2451
2452 /* }---[ 8 byte boundary ]---{ */
2453 double ipX; /* insertion point X: 8 bytes */
2454
2455 /* }---[ 8 byte boundary ]---{ */
2456 double ipY; /* insertion point Y: 8 bytes */
2457
2458 /* }---[ 8 byte boundary ]---{ */
2459 double skewX; /* skew about the X axis: 8 bytes */
2460
2461 /* }---[ 8 byte boundary ]---{ */
2462 double skewY; /* skew about the Y axis: 8 bytes */
2463
2464 /* }---[ 8 byte boundary ]--- */
2465 int32_t srid; /* Spatial reference id: 4 bytes */
2466 uint16_t width; /* pixel columns: 2 bytes */
2467 uint16_t height; /* pixel rows: 2 bytes */
2468};
2469
2470/* NOTE: the initial part of this structure matches the layout
2471 * of data in the serialized form version 0, starting
2472 * from the numBands element
2473 */
2475 uint32_t size;
2476 uint16_t version;
2477
2478 /* Number of bands, all share the same dimension
2479 * and georeference */
2480 uint16_t numBands;
2481
2482 /* Georeference (in projection units) */
2483 double scaleX; /* pixel width */
2484 double scaleY; /* pixel height */
2485 double ipX; /* geo x ordinate of the corner of upper-left pixel */
2486 double ipY; /* geo y ordinate of the corner of bottom-right pixel */
2487 double skewX; /* skew about the X axis*/
2488 double skewY; /* skew about the Y axis */
2489
2490 int32_t srid; /* spatial reference id */
2491 uint16_t width; /* pixel columns - max 65535 */
2492 uint16_t height; /* pixel rows - max 65535 */
2493 rt_band *bands; /* actual bands */
2494
2495};
2496
2498 uint8_t bandNum; /* 0-based */
2499 char* path; /* internally owned */
2500 void *mem; /* loaded external band data, internally owned */
2501};
2502
2505 int32_t offline;
2506 uint16_t width;
2507 uint16_t height;
2508 int32_t hasnodata; /* a flag indicating if this band contains nodata values */
2509 int32_t isnodata; /* a flag indicating if this band is filled only with
2510 nodata values. flag CANNOT be TRUE if hasnodata is FALSE */
2511 double nodataval; /* int will be converted ... */
2512 int8_t ownsdata; /* 0, externally owned. 1, internally owned. only applies to data.mem */
2513
2514 rt_raster raster; /* reference to parent raster */
2515
2516 union {
2517 void* mem; /* actual data, externally owned */
2520
2521};
2522
2524 int x; /* column */
2525 int y; /* line */
2526
2527 uint8_t nodata;
2528 double value;
2529
2531};
2532
2534 uint16_t dimx;
2535 uint16_t dimy;
2536 double **values;
2537 int **nodata;
2538 int weighted; /* 0 if not weighted values 1 if weighted values */
2539};
2540
2541/* polygon as LWPOLY with associated value */
2544 double val;
2545};
2546
2547/* summary stats of specified band */
2549 double sample;
2550 uint32_t count;
2551
2552 double min;
2553 double max;
2554 double sum;
2555 double mean;
2556 double stddev;
2557
2558 double *values;
2559 int sorted; /* flag indicating that values is sorted ascending by value */
2560};
2561
2562/* histogram bin(s) of specified band */
2564 uint32_t count;
2565 double percent;
2566
2567 double min;
2568 double max;
2569
2572};
2573
2574/* quantile(s) of the specified band */
2576 double quantile;
2577 double value;
2578 uint32_t has_value;
2579};
2580
2581/* listed-list structures for rt_band_get_quantiles_stream */
2583 uint8_t algeq; /* AL-GEQ (1) or AL-GT (0) */
2584 double quantile;
2585 uint64_t tau; /* position in sequence */
2586
2587 struct quantile_llist_element *head; /* H index 0 */
2588 struct quantile_llist_element *tail; /* H index last */
2589 uint32_t count; /* # of elements in H */
2590
2591 /* faster access to elements at specific intervals */
2593 uint32_t index_max; /* max # of elements in index */
2594
2595 uint64_t sum1; /* N1H */
2596 uint64_t sum2; /* N2H */
2597};
2598
2606
2611
2612/* number of times a value occurs */
2614 double value;
2615 uint32_t count;
2616 double percent;
2617};
2618
2619/* reclassification expression */
2622 double min;
2623 double max;
2624 int inc_min; /* include min */
2625 int inc_max; /* include max */
2626 int exc_min; /* exceed min */
2627 int exc_max; /* exceed max */
2629};
2630
2631/* src/dst mapping for rt_classmap */
2633 double src;
2634 double dst;
2635};
2636
2637/* exact reclassification expression */
2644
2645/* raster iterator */
2648 uint16_t nband; /* 0-based */
2649 uint8_t nbnodata; /* no band = treat as NODATA */
2650};
2651
2652/* callback argument from raster iterator */
2654 /* # of rasters, Z-axis */
2655 uint16_t rasters;
2656 /* # of rows, Y-axis */
2657 uint32_t rows;
2658 /* # of columns, X-axis */
2659 uint32_t columns;
2660
2661 /* axis order: Z,X,Y */
2662 /* individual pixel values */
2663 double ***values;
2664 /* 0,1 value of nodata flag */
2665 int ***nodata;
2666
2667 /* X,Y of pixel from each input raster */
2669
2670 /* X,Y of pixel from output raster */
2672};
2673
2674/* gdal driver information */
2683
2684/* raster colormap entry */
2687 double value;
2688 uint8_t color[4]; /* RGBA */
2689};
2690
2702
2703#endif /* LIBRTCORE_H_INCLUDED */
void rt_band_init_value(rt_band band, double initval)
Fill in the cells of a band with a starting value frequently used to init with nodata value.
Definition rt_band.c:112
rt_errorstate rt_raster_contains(rt_raster rast1, int nband1, rt_raster rast2, int nband2, int *contains)
Return ES_ERROR if error occurred in function.
rt_band rt_band_new_inline(uint16_t width, uint16_t height, rt_pixtype pixtype, uint32_t hasnodata, double nodataval, uint8_t *data)
Create an in-db rt_band with no data.
Definition rt_band.c:63
void rt_band_set_ownsdata_flag(rt_band band, int flag)
Definition rt_band.c:818
void(* rt_message_handler)(const char *string, va_list ap) __attribute__((format(printf
Definition librtcore.h:235
rt_band rt_band_reclass(rt_band srcband, rt_pixtype pixtype, uint32_t hasnodata, double nodataval, rt_reclassexpr *exprset, int exprcount)
Returns new band with values reclassified.
int rt_band_get_pixel_of_value(rt_band band, int exclude_nodata_value, double *searchset, int searchcount, rt_pixel *pixels)
Search band for pixel(s) with search values.
Definition rt_band.c:1960
void rterror(const char *fmt,...) __attribute__((format(printf
Wrappers used for reporting errors and info.
void * rtalloc(size_t size)
Wrappers used for managing memory.
Definition rt_context.c:191
rt_pixtype rt_util_gdal_datatype_to_pixtype(GDALDataType gdt)
Convert GDALDataType to rt_pixtype.
Definition rt_util.c:162
rt_band rt_band_duplicate(rt_band band)
Create a new band duplicated from source band.
Definition rt_band.c:438
uint16_t rt_band_get_width(rt_band band)
Return width of this band.
Definition rt_band.c:791
rt_errorstate rt_raster_fully_within_distance(rt_raster rast1, int nband1, rt_raster rast2, int nband2, double distance, int *dfwithin)
Return ES_ERROR if error occurred in function.
void rt_band_set_hasnodata_flag(rt_band band, int flag)
Set hasnodata flag value.
Definition rt_band.c:832
rt_errorstate rt_band_set_isnodata_flag(rt_band band, int flag)
Set isnodata flag value.
Definition rt_band.c:846
LWPOLY * rt_util_envelope_to_lwpoly(rt_envelope ext)
Definition rt_util.c:491
rt_errorstate rt_raster_cell_to_geopoint(rt_raster raster, double xr, double yr, double *xw, double *yw, double *gt)
Convert an xr, yr raster point to an xw, yw point on map.
Definition rt_raster.c:637
int32_t rt_raster_get_srid(rt_raster raster)
Get raster's SRID.
Definition rt_raster.c:360
void * default_rt_allocator(size_t size)
The default memory/logging handlers installed by lwgeom_install_default_allocators()
Definition rt_context.c:47
rt_errorstate rt_util_rgb_to_hsv(double rgb[3], double hsv[3])
Definition rt_util.c:559
int rt_util_gdal_register_all(int force_register_all)
Definition rt_util.c:347
double rt_raster_get_x_skew(rt_raster raster)
Get skew about the X axis.
Definition rt_raster.c:185
double rt_raster_get_x_offset(rt_raster raster)
Get raster x offset, in projection units.
Definition rt_raster.c:217
int rt_raster_calc_gt_coeff(double i_mag, double j_mag, double theta_i, double theta_ij, double *xscale, double *xskew, double *yskew, double *yscale)
Calculates the coefficients of a geotransform given the physically significant parameters describing ...
Definition rt_raster.c:318
int rt_raster_generate_new_band(rt_raster raster, rt_pixtype pixtype, double initialvalue, uint32_t hasnodata, double nodatavalue, int index)
Generate a new inline band and add it to a raster.
Definition rt_raster.c:489
int rt_util_gdal_configured(void)
Definition rt_util.c:328
rt_raster rt_raster_from_wkb(const uint8_t *wkb, uint32_t wkbsize)
Construct an rt_raster from a binary WKB representation.
Definition rt_wkb.c:278
LWPOLY * rt_raster_pixel_as_polygon(rt_raster raster, int x, int y)
Get a raster pixel as a polygon.
void rt_raster_set_geotransform_matrix(rt_raster raster, double *gt)
Set raster's geotransform using 6-element array.
Definition rt_raster.c:609
int8_t rt_util_clamp_to_8BSI(double value)
Definition rt_util.c:50
struct rt_quantile_t * rt_quantile
Definition librtcore.h:153
uint8_t rt_util_clamp_to_1BB(double value)
Definition rt_util.c:35
void void rtinfo(const char *fmt,...) __attribute__((format(printf
rt_raster rt_raster_colormap(rt_raster raster, int nband, rt_colormap colormap)
Returns a new raster with up to four 8BUI bands (RGBA) from applying a colormap to the user-specified...
rt_errorstate rt_band_load_offline_data(rt_band band)
Load offline band's data.
Definition rt_band.c:580
void void void rtwarn(const char *fmt,...) __attribute__((format(printf
rt_errorstate rt_raster_contains_properly(rt_raster rast1, int nband1, rt_raster rast2, int nband2, int *contains)
Return ES_ERROR if error occurred in function.
rt_gdaldriver rt_raster_gdal_drivers(uint32_t *drv_count, uint8_t cancc)
Returns a set of available GDAL drivers.
Definition rt_raster.c:1716
int32_t rt_util_clamp_to_32BSI(double value)
Definition rt_util.c:70
struct rt_reclassexpr_t * rt_reclassexpr
Definition librtcore.h:156
void rt_raster_set_scale(rt_raster raster, double scaleX, double scaleY)
Set scale in projection units.
Definition rt_raster.c:141
int rt_raster_add_band(rt_raster raster, rt_band band, int index)
Add band data to a raster.
Definition rt_raster.c:409
rt_errorstate rt_raster_get_inverse_geotransform_matrix(rt_raster raster, double *gt, double *igt)
Get 6-element array of raster inverse geotransform matrix.
Definition rt_raster.c:558
void(* rt_deallocator)(void *mem)
Definition librtcore.h:234
int rt_band_get_hasnodata_flag(rt_band band)
Get hasnodata flag value.
Definition rt_band.c:825
rt_pixtype rt_pixtype_index_from_name(const char *pixname)
Definition rt_pixel.c:80
uint8_t * rt_raster_to_gdal(rt_raster raster, const char *srs, char *format, char **options, uint64_t *gdalsize)
Return formatted GDAL raster from raster.
Definition rt_raster.c:1598
void * rt_band_get_data(rt_band band)
Get pointer to raster band data.
Definition rt_band.c:551
rt_errorstate rt_raster_geopoint_to_cell(rt_raster raster, double xw, double yw, double *xr, double *yr, double *igt)
Convert an xw, yw map point to a xr, yr raster point.
Definition rt_raster.c:686
rt_errorstate rt_band_get_pixel(rt_band band, int x, int y, double *value, int *nodata)
Get pixel value.
Definition rt_band.c:1527
struct rt_mask_t * rt_mask
Definition librtcore.h:149
void rt_raster_destroy(rt_raster raster)
Release memory associated to a raster.
Definition rt_raster.c:86
rt_pixtype
Definition librtcore.h:187
@ PT_32BUI
Definition librtcore.h:196
@ PT_2BUI
Definition librtcore.h:189
@ PT_32BSI
Definition librtcore.h:195
@ PT_END
Definition librtcore.h:199
@ PT_4BUI
Definition librtcore.h:190
@ PT_32BF
Definition librtcore.h:197
@ PT_1BB
Definition librtcore.h:188
@ PT_16BUI
Definition librtcore.h:194
@ PT_8BSI
Definition librtcore.h:191
@ PT_16BSI
Definition librtcore.h:193
@ PT_64BF
Definition librtcore.h:198
@ PT_8BUI
Definition librtcore.h:192
void rt_raster_set_skews(rt_raster raster, double skewX, double skewY)
Set skews about the X and Y axis.
Definition rt_raster.c:172
int rt_band_get_isnodata_flag(rt_band band)
Get isnodata flag value.
Definition rt_band.c:865
rt_errorstate rt_raster_surface(rt_raster raster, int nband, LWMPOLY **surface)
Get a raster as a surface (multipolygon).
rt_errorstate rt_raster_geopoint_to_rasterpoint(rt_raster raster, double xw, double yw, double *xr, double *yr, double *igt)
Convert an xw,yw map point to a xr,yr raster point.
Definition rt_raster.c:730
rt_raster rt_raster_new(uint32_t width, uint32_t height)
Construct a raster with given dimensions.
Definition rt_raster.c:52
char * rt_util_gdal_convert_sr(const char *srs, int proj4)
Definition rt_util.c:225
rt_extenttype rt_util_extent_type(const char *name)
Definition rt_util.c:204
int rt_util_dbl_trunc_warning(double initialvalue, int32_t checkvalint, uint32_t checkvaluint, float checkvalfloat, double checkvaldouble, rt_pixtype pixtype)
Definition rt_util.c:681
GDALDataType rt_util_pixtype_to_gdal_datatype(rt_pixtype pt)
Convert rt_pixtype to GDALDataType.
Definition rt_util.c:124
rt_errorstate rt_raster_intersects(rt_raster rast1, int nband1, rt_raster rast2, int nband2, int *intersects)
Return ES_ERROR if error occurred in function.
rt_errorstate rt_raster_coveredby(rt_raster rast1, int nband1, rt_raster rast2, int nband2, int *coveredby)
Return ES_ERROR if error occurred in function.
double rt_pixtype_get_min_value(rt_pixtype pixtype)
Return minimum value possible for pixel type.
Definition rt_pixel.c:150
int rt_raster_has_band(rt_raster raster, int nband)
Return TRUE if the raster has a band of this number.
Definition rt_raster.c:1253
rt_raster rt_raster_compute_skewed_raster(rt_envelope extent, double *skew, double *scale, double tolerance)
Definition rt_raster.c:869
struct rt_pixel_t * rt_pixel
Definition librtcore.h:148
void void void char * default_rt_options(const char *varname)
Definition rt_context.c:105
rt_errorstate rt_raster_touches(rt_raster rast1, int nband1, rt_raster rast2, int nband2, int *touches)
Return ES_ERROR if error occurred in function.
rt_raster rt_raster_from_gdal_dataset(GDALDatasetH ds)
Return a raster from a GDAL dataset.
Definition rt_raster.c:2175
rt_resample_type
Definition librtcore.h:1476
@ RT_BILINEAR
Definition librtcore.h:1478
@ RT_NEAREST
Definition librtcore.h:1477
rt_quantile rt_band_get_quantiles_stream(rt_band band, int exclude_nodata_value, double sample, uint64_t cov_count, struct quantile_llist **qlls, uint32_t *qlls_count, double *quantiles, uint32_t quantiles_count, uint32_t *rtn_count)
Compute the default set of or requested quantiles for a coverage.
struct rt_colormap_entry_t * rt_colormap_entry
Definition librtcore.h:162
rt_geomval rt_raster_gdal_polygonize(rt_raster raster, int nband, int exclude_nodata_value, int *pnElements)
Returns a set of "geomval" value, one for each group of pixel sharing the same value for the provided...
double rt_raster_get_x_scale(rt_raster raster)
Get scale X in projection units.
Definition rt_raster.c:154
rt_band rt_raster_replace_band(rt_raster raster, rt_band band, int index)
Replace band at provided index with new band.
Definition rt_raster.c:1404
uint8_t rt_util_clamp_to_2BUI(double value)
Definition rt_util.c:40
void default_rt_deallocator(void *mem)
Definition rt_context.c:61
const char * rt_pixtype_name(rt_pixtype pixtype)
Definition rt_pixel.c:110
int rt_pixtype_alignment(rt_pixtype pixtype)
Return alignment requirements for data in the given pixel type.
Definition rt_pixel.c:75
void * default_rt_reallocator(void *mem, size_t size)
Definition rt_context.c:54
rt_errorstate rt_pixtype_compare_clamped_values(rt_pixtype pixtype, double val, double refval, int *isequal)
Test to see if two values are equal when clamped.
Definition rt_pixel.c:202
const char * rt_util_gdal_version(const char *request)
Definition rt_util.c:193
uint8_t rt_util_clamp_to_8BUI(double value)
Definition rt_util.c:55
double rt_band_get_min_value(rt_band band)
Returns the minimal possible value for the band according to the pixel type.
Definition rt_band.c:2053
uint64_t rt_band_get_file_size(rt_band band)
Return file size in bytes.
Definition rt_band.c:737
struct rt_bandstats_t * rt_bandstats
Definition librtcore.h:151
GDALDatasetH rt_util_gdal_open(const char *fn, GDALAccess fn_access, int shared)
Definition rt_util.c:394
int quantile_llist_destroy(struct quantile_llist **list, uint32_t list_count)
int rt_band_check_is_nodata(rt_band band)
Returns TRUE if the band is only nodata values.
Definition rt_band.c:2060
void void void char * rtoptions(const char *varname)
Wrappers used for options.
Definition rt_context.c:256
rt_errorstate rt_band_set_nodata(rt_band band, double val, int *converted)
Set nodata value.
Definition rt_band.c:884
char * rt_raster_to_hexwkb(rt_raster raster, int outasin, uint32_t *hexwkbsize)
Return this raster in HEXWKB form (null-terminated hex)
Definition rt_wkb.c:682
rt_errorstate rt_band_set_pixel(rt_band band, int x, int y, double val, int *converted)
Set single pixel's value.
Definition rt_band.c:1125
rt_errorstate
Enum definitions.
Definition librtcore.h:181
@ ES_NONE
Definition librtcore.h:182
@ ES_ERROR
Definition librtcore.h:183
rt_errorstate rt_band_set_pixel_line(rt_band band, int x, int y, void *vals, uint32_t len)
Set values of multiple pixels.
Definition rt_band.c:1004
rt_raster rt_raster_from_hexwkb(const char *hexwkb, uint32_t hexwkbsize)
Construct an rt_raster from a text HEXWKB representation.
Definition rt_wkb.c:409
rt_raster rt_raster_gdal_rasterize(const unsigned char *wkb, uint32_t wkb_len, const char *srs, uint32_t num_bands, rt_pixtype *pixtype, double *init, double *value, double *nodata, uint8_t *hasnodata, int *width, int *height, double *scale_x, double *scale_y, double *ul_xw, double *ul_yw, double *grid_xw, double *grid_yw, double *skew_x, double *skew_y, char **options)
Return a raster of the provided geometry.
Definition rt_raster.c:2502
void rt_band_destroy(rt_band band)
Destroy a raster band.
Definition rt_band.c:491
rt_errorstate rt_raster_overlaps(rt_raster rast1, int nband1, rt_raster rast2, int nband2, int *overlaps)
Return ES_ERROR if error occurred in function.
int rt_util_gdal_supported_sr(const char *srs)
Definition rt_util.c:256
void rt_raster_get_phys_params(rt_raster rast, double *i_mag, double *j_mag, double *theta_i, double *theta_ij)
Calculates and returns the physically significant descriptors embodied in the geotransform attached t...
Definition rt_raster.c:235
int16_t rt_util_clamp_to_16BSI(double value)
Definition rt_util.c:60
rt_errorstate rt_band_corrected_clamped_value(rt_band band, double val, double *newval, int *corrected)
Correct value when clamped value is equal to clamped NODATA value.
Definition rt_band.c:2142
void * rtrealloc(void *mem, size_t size)
Definition rt_context.c:199
GDALResampleAlg rt_util_gdal_resample_alg(const char *algname)
Convert cstring name to GDAL Resample Algorithm.
Definition rt_util.c:94
uint16_t rt_raster_get_num_bands(rt_raster raster)
Definition rt_raster.c:376
struct rt_valuecount_t * rt_valuecount
Definition librtcore.h:154
struct rt_gdaldriver_t * rt_gdaldriver
Definition librtcore.h:155
rt_raster rt_raster_clone(rt_raster raster, uint8_t deep)
Clone an existing raster.
Definition rt_raster.c:1446
rt_errorstate rt_raster_get_convex_hull(rt_raster raster, LWGEOM **hull)
Get raster's convex hull.
uint16_t rt_raster_get_height(rt_raster raster)
Definition rt_raster.c:133
struct rt_reclassmap_t * rt_reclassmap
Definition librtcore.h:157
void *(* rt_reallocator)(void *mem, size_t size)
Definition librtcore.h:233
int rt_util_gdal_driver_registered(const char *drv)
Definition rt_util.c:366
rt_band rt_band_new_offline(uint16_t width, uint16_t height, rt_pixtype pixtype, uint32_t hasnodata, double nodataval, uint8_t bandNum, const char *path)
Create an out-db rt_band.
Definition rt_band.c:275
rt_errorstate rt_band_get_ext_band_num(rt_band band, uint8_t *bandnum)
Return bands' external band number (only valid when rt_band_is_offline returns non-zero).
Definition rt_band.c:527
rt_errorstate rt_raster_iterator(rt_iterator itrset, uint16_t itrcount, rt_extenttype extenttype, rt_raster customextent, rt_pixtype pixtype, uint8_t hasnodata, double nodataval, uint16_t distancex, uint16_t distancey, rt_mask mask, void *userarg, int(*callback)(rt_iterator_arg arg, void *userarg, double *value, int *nodata), rt_raster *rtnraster)
n-raster iterator.
uint64_t rt_band_get_file_timestamp(rt_band band)
Return file timestamp.
Definition rt_band.c:759
struct rt_iterator_arg_t * rt_iterator_arg
Definition librtcore.h:160
void rt_raster_set_srid(rt_raster raster, int32_t srid)
Set raster's SRID.
Definition rt_raster.c:367
rt_band rt_band_reclass_exact(rt_band srcband, rt_reclassmap map, uint32_t hasnodata, double nodataval)
Returns new band with values reclassified.
void rt_raster_set_phys_params(rt_raster rast, double i_mag, double j_mag, double theta_i, double theta_ij)
Calculates the geotransform coefficients and applies them to the supplied raster.
Definition rt_raster.c:301
rt_extenttype
Definition librtcore.h:202
@ ET_CUSTOM
Definition librtcore.h:208
@ ET_LAST
Definition librtcore.h:207
@ ET_INTERSECTION
Definition librtcore.h:203
@ ET_UNION
Definition librtcore.h:204
@ ET_SECOND
Definition librtcore.h:206
@ ET_FIRST
Definition librtcore.h:205
rt_errorstate rt_band_get_pixel_resample(rt_band band, double xr, double yr, rt_resample_type resample, double *r_value, int *r_nodata)
Retrieve a point value from the raster using a world coordinate and selected resampling method.
Definition rt_band.c:1372
uint8_t * rt_raster_to_wkb(rt_raster raster, int outasin, uint32_t *wkbsize)
Return this raster in WKB form.
Definition rt_wkb.c:497
rt_raster rt_raster_from_band(rt_raster raster, uint32_t *bandNums, int count)
Construct a new rt_raster from an existing rt_raster and an array of band numbers.
Definition rt_raster.c:1341
struct rt_geomval_t * rt_geomval
Definition librtcore.h:150
rt_errorstate rt_band_get_nodata(rt_band band, double *nodata)
Get NODATA value.
Definition rt_band.c:2038
uint8_t rt_util_clamp_to_4BUI(double value)
Definition rt_util.c:45
rt_errorstate rt_util_hsv_to_rgb(double hsv[3], double rgb[3])
Definition rt_util.c:613
void rt_util_to_ogr_envelope(rt_envelope ext, OGREnvelope *env)
Definition rt_util.c:478
rt_pixtype rt_band_get_pixtype(rt_band band)
Return pixeltype of this band.
Definition rt_band.c:782
char * rtstrdup(const char *str)
Definition rt_context.c:263
rt_errorstate rt_pixel_set_to_array(rt_pixel npixel, uint32_t count, rt_mask mask, int x, int y, uint16_t distancex, uint16_t distancey, double ***value, int ***nodata, int *dimx, int *dimy)
Definition rt_pixel.c:288
char *(* rt_options)(const char *varname)
Global functions for memory/logging handlers.
Definition librtcore.h:231
void *(* rt_allocator)(size_t size)
Definition librtcore.h:232
LWPOINT * rt_raster_pixel_as_centroid_point(rt_raster rast, int x, int y)
Get a raster pixel centroid point.
const char * rt_band_get_ext_path(rt_band band)
Return band's external path (only valid when rt_band_is_offline returns non-zero).
Definition rt_band.c:514
rt_band rt_band_new_offline_from_path(uint16_t width, uint16_t height, int hasnodata, double nodataval, uint8_t bandNum, const char *path, int force)
Create an out-db rt_band from path.
Definition rt_band.c:350
rt_histogram rt_band_get_histogram(rt_bandstats stats, uint32_t bin_count, double *bin_widths, uint32_t bin_widths_count, int right, double min, double max, uint32_t *rtn_count)
Count the distribution of data.
uint16_t rt_raster_get_width(rt_raster raster)
Definition rt_raster.c:125
uint32_t rt_band_get_nearest_pixel(rt_band band, int x, int y, uint16_t distancex, uint16_t distancey, int exclude_nodata_value, rt_pixel *npixels)
Get nearest pixel(s) with value (not NODATA) to specified pixel.
Definition rt_band.c:1680
void default_rt_error_handler(const char *fmt, va_list ap) __attribute__((format(printf
void rtdealloc(void *mem)
Definition rt_context.c:206
rt_errorstate rt_band_get_pixel_bilinear(rt_band band, double xr, double yr, double *r_value, int *r_nodata)
Retrieve a point value from the raster using a world coordinate and bilinear interpolation.
Definition rt_band.c:1411
rt_errorstate rt_util_gdal_sr_auth_info(GDALDatasetH hds, char **authname, char **authcode)
Get auth name and code.
Definition rt_util.c:283
uint16_t rt_util_clamp_to_16BUI(double value)
Definition rt_util.c:65
rt_errorstate rt_raster_get_envelope_geom(rt_raster raster, LWGEOM **env)
Get raster's envelope as a geometry.
struct rt_colormap_t * rt_colormap
Definition librtcore.h:163
struct rt_iterator_t * rt_iterator
Definition librtcore.h:159
int rt_band_clamped_value_is_nodata(rt_band band, double val)
Compare clamped value to band's clamped NODATA value.
Definition rt_band.c:2106
void * rt_raster_serialize(rt_raster raster)
Return this raster in serialized form.
uint32_t rt_util_clamp_to_32BUI(double value)
Definition rt_util.c:75
rt_raster rt_raster_gdal_warp(rt_raster raster, const char *src_srs, const char *dst_srs, double *scale_x, double *scale_y, int *width, int *height, double *ul_xw, double *ul_yw, double *grid_xw, double *grid_yw, double *skew_x, double *skew_y, GDALResampleAlg resample_alg, double max_err)
Return a warped raster using GDAL Warp API.
Definition rt_warp.c:177
int rt_band_get_ownsdata_flag(rt_band band)
Return 0 (FALSE) or non-zero (TRUE) indicating if rt_band is responsible for managing the memory for ...
Definition rt_band.c:810
GDALDatasetH rt_raster_to_gdal_mem(rt_raster raster, const char *srs, uint32_t *bandNums, int *excludeNodataValues, int count, GDALDriverH *rtn_drv, int *destroy_rtn_drv)
Return GDAL dataset using GDAL MEM driver from raster.
Definition rt_raster.c:1813
void rt_set_handlers_options(rt_allocator allocator, rt_reallocator reallocator, rt_deallocator deallocator, rt_message_handler error_handler, rt_message_handler info_handler, rt_message_handler warning_handler, rt_options options_handler)
Definition rt_context.c:169
rt_errorstate rt_raster_get_perimeter(rt_raster raster, int nband, LWGEOM **perimeter)
Get raster perimeter.
int rt_band_is_offline(rt_band band)
Return non-zero if the given band data is on the filesystem.
Definition rt_band.c:480
rt_errorstate rt_raster_within_distance(rt_raster rast1, int nband1, rt_raster rast2, int nband2, double distance, int *dwithin)
Return ES_ERROR if error occurred in function.
rt_valuecount rt_band_get_value_count(rt_band band, int exclude_nodata_value, double *search_values, uint32_t search_values_count, double roundto, uint32_t *rtn_total, uint32_t *rtn_count)
Count the number of times provided value(s) occur in the band.
rt_errorstate rt_raster_from_two_rasters(rt_raster rast1, rt_raster rast2, rt_extenttype extenttype, rt_raster *rtnraster, double *offset)
Definition rt_raster.c:3348
void(*) voi rt_install_default_allocators)(void)
Apply the default memory management (malloc() and free()) and error handlers.
rt_geos_spatial_test
GEOS spatial relationship tests available.
Definition librtcore.h:219
@ GSR_TOUCHES
Definition librtcore.h:221
@ GSR_COVERS
Definition librtcore.h:224
@ GSR_COVEREDBY
Definition librtcore.h:225
@ GSR_CONTAINSPROPERLY
Definition librtcore.h:223
@ GSR_OVERLAPS
Definition librtcore.h:220
@ GSR_CONTAINS
Definition librtcore.h:222
struct rt_raster_t * rt_raster
Types definitions.
Definition librtcore.h:146
int rt_util_same_geotransform_matrix(double *gt1, double *gt2)
Definition rt_util.c:543
#define __attribute__
Definition librtcore.h:140
int rt_raster_gdal_contour(rt_raster src_raster, int src_band, int src_srid, const char *src_srs, double contour_interval, double contour_base, int fixed_level_count, double *fixed_levels, int polygonize, size_t *ncontours, struct rt_contour_t **contours)
Return palloc'ed list of contours.
Definition rt_gdal.c:114
int rt_raster_copy_band(rt_raster torast, rt_raster fromrast, int fromindex, int toindex)
Copy one band from one raster to another.
Definition rt_raster.c:1276
double rt_raster_get_y_scale(rt_raster raster)
Get scale Y in projection units.
Definition rt_raster.c:163
float rt_util_clamp_to_32F(double value)
Definition rt_util.c:80
rt_errorstate rt_raster_get_envelope(rt_raster raster, rt_envelope *env)
Get raster's envelope.
Definition rt_raster.c:782
rt_errorstate rt_raster_same_alignment(rt_raster rast1, rt_raster rast2, int *aligned, char **reason)
rt_errorstate rt_raster_covers(rt_raster rast1, int nband1, rt_raster rast2, int nband2, int *covers)
Return ES_ERROR if error occurred in function.
double rt_raster_get_y_skew(rt_raster raster)
Get skew about the Y axis.
Definition rt_raster.c:194
void rt_raster_get_geotransform_matrix(rt_raster raster, double *gt)
Get 6-element array of raster geotransform matrix.
Definition rt_raster.c:588
rt_quantile rt_band_get_quantiles(rt_bandstats stats, double *quantiles, int quantiles_count, uint32_t *rtn_count)
Compute the default set of or requested quantiles for a set of data the quantile formula used is same...
void void void default_rt_info_handler(const char *fmt, va_list ap) __attribute__((format(printf
rt_errorstate rt_raster_copy_to_geometry(rt_raster raster, uint32_t bandnum, char dim, rt_resample_type resample, const LWGEOM *lwgeom_in, LWGEOM **lwgeom_out)
Copy values from a raster to the points on a geometry using the requested interpolation type.
Definition rt_raster.c:1492
void rt_raster_set_offsets(rt_raster raster, double x, double y)
Set insertion points in projection units.
Definition rt_raster.c:203
rt_bandstats rt_band_get_summary_stats(rt_band band, int exclude_nodata_value, double sample, int inc_vals, uint64_t *cK, double *cM, double *cQ)
Compute summary statistics for a band.
void rt_set_handlers(rt_allocator allocator, rt_reallocator reallocator, rt_deallocator deallocator, rt_message_handler error_handler, rt_message_handler info_handler, rt_message_handler warning_handler)
This function is called when the PostgreSQL backend is taking care of the memory and we want to use p...
Definition rt_context.c:159
void rt_util_from_ogr_envelope(OGREnvelope env, rt_envelope *ext)
Definition rt_util.c:462
struct rt_histogram_t * rt_histogram
Definition librtcore.h:152
uint16_t rt_band_get_height(rt_band band)
Return height of this band.
Definition rt_band.c:800
struct rt_band_t * rt_band
Definition librtcore.h:147
rt_raster rt_raster_deserialize(void *serialized, int header_only)
Return a raster from a serialized form.
int rt_pixtype_size(rt_pixtype pixtype)
Return size in bytes of a value in the given pixtype.
Definition rt_pixel.c:39
void rt_raster_calc_phys_params(double xscale, double xskew, double yskew, double yscale, double *i_mag, double *j_mag, double *theta_i, double *theta_ij)
Calculates the physically significant descriptors embodied in an arbitrary geotransform.
Definition rt_raster.c:254
rt_errorstate rt_band_get_pixel_line(rt_band band, int x, int y, uint16_t len, void **vals, uint16_t *nvals)
Get values of multiple pixels.
Definition rt_band.c:1288
double rt_raster_get_y_offset(rt_raster raster)
Get raster y offset, in projection units.
Definition rt_raster.c:226
int rt_raster_is_empty(rt_raster raster)
Return TRUE if the raster is empty.
Definition rt_raster.c:1240
rt_band rt_raster_get_band(rt_raster raster, int bandNum)
Return Nth band, or NULL if unavailable.
Definition rt_raster.c:385
void void default_rt_warning_handler(const char *fmt, va_list ap) __attribute__((format(printf
#define str(s)
Datum contains(PG_FUNCTION_ARGS)
Datum coveredby(PG_FUNCTION_ARGS)
Datum covers(PG_FUNCTION_ARGS)
Datum touches(PG_FUNCTION_ARGS)
Datum overlaps(PG_FUNCTION_ARGS)
static double distance(double x1, double y1, double x2, double y2)
Definition lwtree.c:1032
struct quantile_llist_element * prev
Definition librtcore.h:2603
struct quantile_llist_element * next
Definition librtcore.h:2604
struct quantile_llist_element * element
Definition librtcore.h:2608
uint32_t count
Definition librtcore.h:2589
uint64_t sum1
Definition librtcore.h:2595
uint64_t sum2
Definition librtcore.h:2596
uint32_t index_max
Definition librtcore.h:2593
struct quantile_llist_element * head
Definition librtcore.h:2587
struct quantile_llist_element * tail
Definition librtcore.h:2588
struct quantile_llist_index * index
Definition librtcore.h:2592
rt_pixtype pixtype
Definition librtcore.h:2504
int32_t hasnodata
Definition librtcore.h:2508
int32_t offline
Definition librtcore.h:2505
uint16_t height
Definition librtcore.h:2507
rt_raster raster
Definition librtcore.h:2514
double nodataval
Definition librtcore.h:2511
union rt_band_t::@12 data
uint16_t width
Definition librtcore.h:2506
void * mem
Definition librtcore.h:2517
int32_t isnodata
Definition librtcore.h:2509
int8_t ownsdata
Definition librtcore.h:2512
uint32_t count
Definition librtcore.h:2550
double * values
Definition librtcore.h:2558
uint8_t color[4]
Definition librtcore.h:2688
double value
Definition librtcore.h:2687
int isnodata
Definition librtcore.h:2686
Definition librtcore.h:2685
rt_colormap_entry entry
Definition librtcore.h:2700
uint16_t nentry
Definition librtcore.h:2699
enum rt_colormap_t::@13 method
GSERIALIZED * geom
Definition librtcore.h:1775
double elevation
Definition librtcore.h:1776
double MinX
Definition librtcore.h:167
double UpperLeftY
Definition librtcore.h:173
double UpperLeftX
Definition librtcore.h:172
double MaxX
Definition librtcore.h:168
double MinY
Definition librtcore.h:169
double MaxY
Definition librtcore.h:170
uint8_t bandNum
Definition librtcore.h:2498
uint8_t can_write
Definition librtcore.h:2681
char * create_options
Definition librtcore.h:2679
LWPOLY * geom
Definition librtcore.h:2543
uint32_t count
Definition librtcore.h:2564
double *** values
Definition librtcore.h:2663
rt_raster raster
Definition librtcore.h:2647
uint16_t nband
Definition librtcore.h:2648
uint8_t nbnodata
Definition librtcore.h:2649
double ** values
Definition librtcore.h:2536
uint16_t dimy
Definition librtcore.h:2535
uint16_t dimx
Definition librtcore.h:2534
int ** nodata
Definition librtcore.h:2537
LWGEOM * geom
Definition librtcore.h:2530
double value
Definition librtcore.h:2528
uint8_t nodata
Definition librtcore.h:2527
double quantile
Definition librtcore.h:2576
uint32_t has_value
Definition librtcore.h:2578
Struct definitions.
Definition librtcore.h:2440
double scaleX
Definition librtcore.h:2483
rt_band * bands
Definition librtcore.h:2493
uint16_t width
Definition librtcore.h:2491
uint16_t version
Definition librtcore.h:2476
double skewY
Definition librtcore.h:2488
uint16_t numBands
Definition librtcore.h:2480
int32_t srid
Definition librtcore.h:2490
uint16_t height
Definition librtcore.h:2492
uint32_t size
Definition librtcore.h:2475
double scaleY
Definition librtcore.h:2484
double skewX
Definition librtcore.h:2487
struct rt_reclassexpr_t::rt_reclassrange src
struct rt_reclassexpr_t::rt_reclassrange dst
rt_pixtype dsttype
Definition librtcore.h:2641
struct rt_classpair_t * pairs
Definition librtcore.h:2642
rt_pixtype srctype
Definition librtcore.h:2640