PostgreSQL Source Code git master
extension.c
Go to the documentation of this file.
1/*-------------------------------------------------------------------------
2 *
3 * extension.c
4 * Commands to manipulate extensions
5 *
6 * Extensions in PostgreSQL allow management of collections of SQL objects.
7 *
8 * All we need internally to manage an extension is an OID so that the
9 * dependent objects can be associated with it. An extension is created by
10 * populating the pg_extension catalog from a "control" file.
11 * The extension control file is parsed with the same parser we use for
12 * postgresql.conf. An extension also has an installation script file,
13 * containing SQL commands to create the extension's objects.
14 *
15 * Portions Copyright (c) 1996-2025, PostgreSQL Global Development Group
16 * Portions Copyright (c) 1994, Regents of the University of California
17 *
18 *
19 * IDENTIFICATION
20 * src/backend/commands/extension.c
21 *
22 *-------------------------------------------------------------------------
23 */
24#include "postgres.h"
25
26#include <dirent.h>
27#include <limits.h>
28#include <sys/file.h>
29#include <sys/stat.h>
30#include <unistd.h>
31
32#include "access/genam.h"
33#include "access/htup_details.h"
34#include "access/relation.h"
35#include "access/table.h"
36#include "access/xact.h"
37#include "catalog/catalog.h"
38#include "catalog/dependency.h"
39#include "catalog/indexing.h"
40#include "catalog/namespace.h"
42#include "catalog/pg_authid.h"
44#include "catalog/pg_database.h"
45#include "catalog/pg_depend.h"
48#include "catalog/pg_type.h"
49#include "commands/alter.h"
50#include "commands/comment.h"
51#include "commands/defrem.h"
52#include "commands/extension.h"
53#include "commands/schemacmds.h"
54#include "funcapi.h"
55#include "mb/pg_wchar.h"
56#include "miscadmin.h"
57#include "nodes/pg_list.h"
58#include "nodes/queryjumble.h"
59#include "storage/fd.h"
60#include "tcop/utility.h"
61#include "utils/acl.h"
62#include "utils/builtins.h"
63#include "utils/conffiles.h"
64#include "utils/fmgroids.h"
65#include "utils/lsyscache.h"
66#include "utils/memutils.h"
67#include "utils/rel.h"
68#include "utils/snapmgr.h"
69#include "utils/syscache.h"
70#include "utils/varlena.h"
71
72
73/* GUC */
75
76/* Globally visible state variables */
77bool creating_extension = false;
79
80/*
81 * Internal data structure to hold the results of parsing a control file
82 */
84{
85 char *name; /* name of the extension */
86 char *basedir; /* base directory where control and script
87 * files are located */
88 char *control_dir; /* directory where control file was found */
89 char *directory; /* directory for script files */
90 char *default_version; /* default install target version, if any */
91 char *module_pathname; /* string to substitute for
92 * MODULE_PATHNAME */
93 char *comment; /* comment, if any */
94 char *schema; /* target schema (allowed if !relocatable) */
95 bool relocatable; /* is ALTER EXTENSION SET SCHEMA supported? */
96 bool superuser; /* must be superuser to install? */
97 bool trusted; /* allow becoming superuser on the fly? */
98 int encoding; /* encoding of the script file, or -1 */
99 List *requires; /* names of prerequisite extensions */
100 List *no_relocate; /* names of prerequisite extensions that
101 * should not be relocated */
103
104/*
105 * Internal data structure for update path information
106 */
108{
109 char *name; /* name of the starting version */
110 List *reachable; /* List of ExtensionVersionInfo's */
111 bool installable; /* does this version have an install script? */
112 /* working state for Dijkstra's algorithm: */
113 bool distance_known; /* is distance from start known yet? */
114 int distance; /* current worst-case distance estimate */
115 struct ExtensionVersionInfo *previous; /* current best predecessor */
117
118/*
119 * Information for script_error_callback()
120 */
121typedef struct
122{
123 const char *sql; /* entire script file contents */
124 const char *filename; /* script file pathname */
125 ParseLoc stmt_location; /* current stmt start loc, or -1 if unknown */
126 ParseLoc stmt_len; /* length in bytes; 0 means "rest of string" */
128
129/* Local functions */
130static List *find_update_path(List *evi_list,
131 ExtensionVersionInfo *evi_start,
132 ExtensionVersionInfo *evi_target,
133 bool reject_indirect,
134 bool reinitialize);
135static Oid get_required_extension(char *reqExtensionName,
136 char *extensionName,
137 char *origSchemaName,
138 bool cascade,
139 List *parents,
140 bool is_create);
142 Tuplestorestate *tupstore,
143 TupleDesc tupdesc);
144static Datum convert_requires_to_datum(List *requires);
145static void ApplyExtensionUpdates(Oid extensionOid,
146 ExtensionControlFile *pcontrol,
147 const char *initialVersion,
148 List *updateVersions,
149 char *origSchemaName,
150 bool cascade,
151 bool is_create);
153 ObjectAddress extension,
154 ObjectAddress object);
155static char *read_whole_file(const char *filename, int *length);
156static ExtensionControlFile *new_ExtensionControlFile(const char *extname);
157
158char *find_in_paths(const char *basename, List *paths);
159
160/*
161 * get_extension_oid - given an extension name, look up the OID
162 *
163 * If missing_ok is false, throw an error if extension name not found. If
164 * true, just return InvalidOid.
165 */
166Oid
167get_extension_oid(const char *extname, bool missing_ok)
168{
169 Oid result;
170
171 result = GetSysCacheOid1(EXTENSIONNAME, Anum_pg_extension_oid,
172 CStringGetDatum(extname));
173
174 if (!OidIsValid(result) && !missing_ok)
176 (errcode(ERRCODE_UNDEFINED_OBJECT),
177 errmsg("extension \"%s\" does not exist",
178 extname)));
179
180 return result;
181}
182
183/*
184 * get_extension_name - given an extension OID, look up the name
185 *
186 * Returns a palloc'd string, or NULL if no such extension.
187 */
188char *
190{
191 char *result;
192 HeapTuple tuple;
193
194 tuple = SearchSysCache1(EXTENSIONOID, ObjectIdGetDatum(ext_oid));
195
196 if (!HeapTupleIsValid(tuple))
197 return NULL;
198
199 result = pstrdup(NameStr(((Form_pg_extension) GETSTRUCT(tuple))->extname));
200 ReleaseSysCache(tuple);
201
202 return result;
203}
204
205/*
206 * get_extension_schema - given an extension OID, fetch its extnamespace
207 *
208 * Returns InvalidOid if no such extension.
209 */
210Oid
212{
213 Oid result;
214 HeapTuple tuple;
215
216 tuple = SearchSysCache1(EXTENSIONOID, ObjectIdGetDatum(ext_oid));
217
218 if (!HeapTupleIsValid(tuple))
219 return InvalidOid;
220
221 result = ((Form_pg_extension) GETSTRUCT(tuple))->extnamespace;
222 ReleaseSysCache(tuple);
223
224 return result;
225}
226
227/*
228 * Utility functions to check validity of extension and version names
229 */
230static void
231check_valid_extension_name(const char *extensionname)
232{
233 int namelen = strlen(extensionname);
234
235 /*
236 * Disallow empty names (the parser rejects empty identifiers anyway, but
237 * let's check).
238 */
239 if (namelen == 0)
241 (errcode(ERRCODE_INVALID_PARAMETER_VALUE),
242 errmsg("invalid extension name: \"%s\"", extensionname),
243 errdetail("Extension names must not be empty.")));
244
245 /*
246 * No double dashes, since that would make script filenames ambiguous.
247 */
248 if (strstr(extensionname, "--"))
250 (errcode(ERRCODE_INVALID_PARAMETER_VALUE),
251 errmsg("invalid extension name: \"%s\"", extensionname),
252 errdetail("Extension names must not contain \"--\".")));
253
254 /*
255 * No leading or trailing dash either. (We could probably allow this, but
256 * it would require much care in filename parsing and would make filenames
257 * visually if not formally ambiguous. Since there's no real-world use
258 * case, let's just forbid it.)
259 */
260 if (extensionname[0] == '-' || extensionname[namelen - 1] == '-')
262 (errcode(ERRCODE_INVALID_PARAMETER_VALUE),
263 errmsg("invalid extension name: \"%s\"", extensionname),
264 errdetail("Extension names must not begin or end with \"-\".")));
265
266 /*
267 * No directory separators either (this is sufficient to prevent ".."
268 * style attacks).
269 */
270 if (first_dir_separator(extensionname) != NULL)
272 (errcode(ERRCODE_INVALID_PARAMETER_VALUE),
273 errmsg("invalid extension name: \"%s\"", extensionname),
274 errdetail("Extension names must not contain directory separator characters.")));
275}
276
277static void
278check_valid_version_name(const char *versionname)
279{
280 int namelen = strlen(versionname);
281
282 /*
283 * Disallow empty names (we could possibly allow this, but there seems
284 * little point).
285 */
286 if (namelen == 0)
288 (errcode(ERRCODE_INVALID_PARAMETER_VALUE),
289 errmsg("invalid extension version name: \"%s\"", versionname),
290 errdetail("Version names must not be empty.")));
291
292 /*
293 * No double dashes, since that would make script filenames ambiguous.
294 */
295 if (strstr(versionname, "--"))
297 (errcode(ERRCODE_INVALID_PARAMETER_VALUE),
298 errmsg("invalid extension version name: \"%s\"", versionname),
299 errdetail("Version names must not contain \"--\".")));
300
301 /*
302 * No leading or trailing dash either.
303 */
304 if (versionname[0] == '-' || versionname[namelen - 1] == '-')
306 (errcode(ERRCODE_INVALID_PARAMETER_VALUE),
307 errmsg("invalid extension version name: \"%s\"", versionname),
308 errdetail("Version names must not begin or end with \"-\".")));
309
310 /*
311 * No directory separators either (this is sufficient to prevent ".."
312 * style attacks).
313 */
314 if (first_dir_separator(versionname) != NULL)
316 (errcode(ERRCODE_INVALID_PARAMETER_VALUE),
317 errmsg("invalid extension version name: \"%s\"", versionname),
318 errdetail("Version names must not contain directory separator characters.")));
319}
320
321/*
322 * Utility functions to handle extension-related path names
323 */
324static bool
326{
327 const char *extension = strrchr(filename, '.');
328
329 return (extension != NULL) && (strcmp(extension, ".control") == 0);
330}
331
332static bool
334{
335 const char *extension = strrchr(filename, '.');
336
337 return (extension != NULL) && (strcmp(extension, ".sql") == 0);
338}
339
340/*
341 * Return a list of directories declared on extension_control_path GUC.
342 */
343static List *
345{
346 char sharepath[MAXPGPATH];
347 char *system_dir;
348 char *ecp;
349 List *paths = NIL;
350
351 get_share_path(my_exec_path, sharepath);
352
353 system_dir = psprintf("%s/extension", sharepath);
354
355 if (strlen(Extension_control_path) == 0)
356 {
357 paths = lappend(paths, system_dir);
358 }
359 else
360 {
361 /* Duplicate the string so we can modify it */
363
364 for (;;)
365 {
366 int len;
367 char *mangled;
368 char *piece = first_path_var_separator(ecp);
369
370 /* Get the length of the next path on ecp */
371 if (piece == NULL)
372 len = strlen(ecp);
373 else
374 len = piece - ecp;
375
376 /* Copy the next path found on ecp */
377 piece = palloc(len + 1);
378 strlcpy(piece, ecp, len + 1);
379
380 /*
381 * Substitute the path macro if needed or append "extension"
382 * suffix if it is a custom extension control path.
383 */
384 if (strcmp(piece, "$system") == 0)
385 mangled = substitute_path_macro(piece, "$system", system_dir);
386 else
387 mangled = psprintf("%s/extension", piece);
388
389 pfree(piece);
390
391 /* Canonicalize the path based on the OS and add to the list */
392 canonicalize_path(mangled);
393 paths = lappend(paths, mangled);
394
395 /* Break if ecp is empty or move to the next path on ecp */
396 if (ecp[len] == '\0')
397 break;
398 else
399 ecp += len + 1;
400 }
401 }
402
403 return paths;
404}
405
406/*
407 * Find control file for extension with name in control->name, looking in the
408 * path. Return the full file name, or NULL if not found. If found, the
409 * directory is recorded in control->control_dir.
410 */
411static char *
413{
414 char *basename;
415 char *result;
416 List *paths;
417
418 Assert(control->name);
419
420 basename = psprintf("%s.control", control->name);
421
423 result = find_in_paths(basename, paths);
424
425 if (result)
426 {
427 const char *p;
428
429 p = strrchr(result, '/');
430 Assert(p);
431 control->control_dir = pnstrdup(result, p - result);
432 }
433
434 return result;
435}
436
437static char *
439{
440 /*
441 * The directory parameter can be omitted, absolute, or relative to the
442 * installation's base directory, which can be the sharedir or a custom
443 * path that it was set extension_control_path. It depends where the
444 * .control file was found.
445 */
446 if (!control->directory)
447 return pstrdup(control->control_dir);
448
449 if (is_absolute_path(control->directory))
450 return pstrdup(control->directory);
451
452 Assert(control->basedir != NULL);
453 return psprintf("%s/%s", control->basedir, control->directory);
454}
455
456static char *
458 const char *version)
459{
460 char *result;
461 char *scriptdir;
462
463 scriptdir = get_extension_script_directory(control);
464
465 result = (char *) palloc(MAXPGPATH);
466 snprintf(result, MAXPGPATH, "%s/%s--%s.control",
467 scriptdir, control->name, version);
468
469 pfree(scriptdir);
470
471 return result;
472}
473
474static char *
476 const char *from_version, const char *version)
477{
478 char *result;
479 char *scriptdir;
480
481 scriptdir = get_extension_script_directory(control);
482
483 result = (char *) palloc(MAXPGPATH);
484 if (from_version)
485 snprintf(result, MAXPGPATH, "%s/%s--%s--%s.sql",
486 scriptdir, control->name, from_version, version);
487 else
488 snprintf(result, MAXPGPATH, "%s/%s--%s.sql",
489 scriptdir, control->name, version);
490
491 pfree(scriptdir);
492
493 return result;
494}
495
496
497/*
498 * Parse contents of primary or auxiliary control file, and fill in
499 * fields of *control. We parse primary file if version == NULL,
500 * else the optional auxiliary file for that version.
501 *
502 * The control file will be search on Extension_control_path paths if
503 * control->control_dir is NULL, otherwise it will use the value of control_dir
504 * to read and parse the .control file, so it assume that the control_dir is a
505 * valid path for the control file being parsed.
506 *
507 * Control files are supposed to be very short, half a dozen lines,
508 * so we don't worry about memory allocation risks here. Also we don't
509 * worry about what encoding it's in; all values are expected to be ASCII.
510 */
511static void
513 const char *version)
514{
515 char *filename;
516 FILE *file;
517 ConfigVariable *item,
518 *head = NULL,
519 *tail = NULL;
520
521 /*
522 * Locate the file to read. Auxiliary files are optional.
523 */
524 if (version)
526 else
527 {
528 /*
529 * If control_dir is already set, use it, else do a path search.
530 */
531 if (control->control_dir)
532 {
533 filename = psprintf("%s/%s.control", control->control_dir, control->name);
534 }
535 else
537 }
538
539 if (!filename)
540 {
542 (errcode(ERRCODE_FEATURE_NOT_SUPPORTED),
543 errmsg("extension \"%s\" is not available", control->name),
544 errhint("The extension must first be installed on the system where PostgreSQL is running.")));
545 }
546
547 /* Assert that the control_dir ends with /extension */
548 Assert(control->control_dir != NULL);
549 Assert(strcmp(control->control_dir + strlen(control->control_dir) - strlen("/extension"), "/extension") == 0);
550
551 control->basedir = pnstrdup(
552 control->control_dir,
553 strlen(control->control_dir) - strlen("/extension"));
554
555 if ((file = AllocateFile(filename, "r")) == NULL)
556 {
557 /* no complaint for missing auxiliary file */
558 if (errno == ENOENT && version)
559 {
561 return;
562 }
563
566 errmsg("could not open extension control file \"%s\": %m",
567 filename)));
568 }
569
570 /*
571 * Parse the file content, using GUC's file parsing code. We need not
572 * check the return value since any errors will be thrown at ERROR level.
573 */
575 &head, &tail);
576
577 FreeFile(file);
578
579 /*
580 * Convert the ConfigVariable list into ExtensionControlFile entries.
581 */
582 for (item = head; item != NULL; item = item->next)
583 {
584 if (strcmp(item->name, "directory") == 0)
585 {
586 if (version)
588 (errcode(ERRCODE_SYNTAX_ERROR),
589 errmsg("parameter \"%s\" cannot be set in a secondary extension control file",
590 item->name)));
591
592 control->directory = pstrdup(item->value);
593 }
594 else if (strcmp(item->name, "default_version") == 0)
595 {
596 if (version)
598 (errcode(ERRCODE_SYNTAX_ERROR),
599 errmsg("parameter \"%s\" cannot be set in a secondary extension control file",
600 item->name)));
601
602 control->default_version = pstrdup(item->value);
603 }
604 else if (strcmp(item->name, "module_pathname") == 0)
605 {
606 control->module_pathname = pstrdup(item->value);
607 }
608 else if (strcmp(item->name, "comment") == 0)
609 {
610 control->comment = pstrdup(item->value);
611 }
612 else if (strcmp(item->name, "schema") == 0)
613 {
614 control->schema = pstrdup(item->value);
615 }
616 else if (strcmp(item->name, "relocatable") == 0)
617 {
618 if (!parse_bool(item->value, &control->relocatable))
620 (errcode(ERRCODE_INVALID_PARAMETER_VALUE),
621 errmsg("parameter \"%s\" requires a Boolean value",
622 item->name)));
623 }
624 else if (strcmp(item->name, "superuser") == 0)
625 {
626 if (!parse_bool(item->value, &control->superuser))
628 (errcode(ERRCODE_INVALID_PARAMETER_VALUE),
629 errmsg("parameter \"%s\" requires a Boolean value",
630 item->name)));
631 }
632 else if (strcmp(item->name, "trusted") == 0)
633 {
634 if (!parse_bool(item->value, &control->trusted))
636 (errcode(ERRCODE_INVALID_PARAMETER_VALUE),
637 errmsg("parameter \"%s\" requires a Boolean value",
638 item->name)));
639 }
640 else if (strcmp(item->name, "encoding") == 0)
641 {
642 control->encoding = pg_valid_server_encoding(item->value);
643 if (control->encoding < 0)
645 (errcode(ERRCODE_UNDEFINED_OBJECT),
646 errmsg("\"%s\" is not a valid encoding name",
647 item->value)));
648 }
649 else if (strcmp(item->name, "requires") == 0)
650 {
651 /* Need a modifiable copy of string */
652 char *rawnames = pstrdup(item->value);
653
654 /* Parse string into list of identifiers */
655 if (!SplitIdentifierString(rawnames, ',', &control->requires))
656 {
657 /* syntax error in name list */
659 (errcode(ERRCODE_INVALID_PARAMETER_VALUE),
660 errmsg("parameter \"%s\" must be a list of extension names",
661 item->name)));
662 }
663 }
664 else if (strcmp(item->name, "no_relocate") == 0)
665 {
666 /* Need a modifiable copy of string */
667 char *rawnames = pstrdup(item->value);
668
669 /* Parse string into list of identifiers */
670 if (!SplitIdentifierString(rawnames, ',', &control->no_relocate))
671 {
672 /* syntax error in name list */
674 (errcode(ERRCODE_INVALID_PARAMETER_VALUE),
675 errmsg("parameter \"%s\" must be a list of extension names",
676 item->name)));
677 }
678 }
679 else
681 (errcode(ERRCODE_SYNTAX_ERROR),
682 errmsg("unrecognized parameter \"%s\" in file \"%s\"",
683 item->name, filename)));
684 }
685
687
688 if (control->relocatable && control->schema != NULL)
690 (errcode(ERRCODE_SYNTAX_ERROR),
691 errmsg("parameter \"schema\" cannot be specified when \"relocatable\" is true")));
692
694}
695
696/*
697 * Read the primary control file for the specified extension.
698 */
700read_extension_control_file(const char *extname)
701{
703
704 /*
705 * Parse the primary control file.
706 */
707 parse_extension_control_file(control, NULL);
708
709 return control;
710}
711
712/*
713 * Read the auxiliary control file for the specified extension and version.
714 *
715 * Returns a new modified ExtensionControlFile struct; the original struct
716 * (reflecting just the primary control file) is not modified.
717 */
720 const char *version)
721{
722 ExtensionControlFile *acontrol;
723
724 /*
725 * Flat-copy the struct. Pointer fields share values with original.
726 */
727 acontrol = (ExtensionControlFile *) palloc(sizeof(ExtensionControlFile));
728 memcpy(acontrol, pcontrol, sizeof(ExtensionControlFile));
729
730 /*
731 * Parse the auxiliary control file, overwriting struct fields
732 */
733 parse_extension_control_file(acontrol, version);
734
735 return acontrol;
736}
737
738/*
739 * Read an SQL script file into a string, and convert to database encoding
740 */
741static char *
743 const char *filename)
744{
745 int src_encoding;
746 char *src_str;
747 char *dest_str;
748 int len;
749
750 src_str = read_whole_file(filename, &len);
751
752 /* use database encoding if not given */
753 if (control->encoding < 0)
754 src_encoding = GetDatabaseEncoding();
755 else
756 src_encoding = control->encoding;
757
758 /* make sure that source string is valid in the expected encoding */
759 (void) pg_verify_mbstr(src_encoding, src_str, len, false);
760
761 /*
762 * Convert the encoding to the database encoding. read_whole_file
763 * null-terminated the string, so if no conversion happens the string is
764 * valid as is.
765 */
766 dest_str = pg_any_to_server(src_str, len, src_encoding);
767
768 return dest_str;
769}
770
771/*
772 * error context callback for failures in script-file execution
773 */
774static void
776{
778 const char *query = callback_arg->sql;
779 int location = callback_arg->stmt_location;
780 int len = callback_arg->stmt_len;
781 int syntaxerrposition;
782 const char *lastslash;
783
784 /*
785 * If there is a syntax error position, convert to internal syntax error;
786 * otherwise report the current query as an item of context stack.
787 *
788 * Note: we'll provide no context except the filename if there's neither
789 * an error position nor any known current query. That shouldn't happen
790 * though: all errors reported during raw parsing should come with an
791 * error position.
792 */
793 syntaxerrposition = geterrposition();
794 if (syntaxerrposition > 0)
795 {
796 /*
797 * If we do not know the bounds of the current statement (as would
798 * happen for an error occurring during initial raw parsing), we have
799 * to use a heuristic to decide how much of the script to show. We'll
800 * also use the heuristic in the unlikely case that syntaxerrposition
801 * is outside what we think the statement bounds are.
802 */
803 if (location < 0 || syntaxerrposition < location ||
804 (len > 0 && syntaxerrposition > location + len))
805 {
806 /*
807 * Our heuristic is pretty simple: look for semicolon-newline
808 * sequences, and break at the last one strictly before
809 * syntaxerrposition and the first one strictly after. It's
810 * certainly possible to fool this with semicolon-newline embedded
811 * in a string literal, but it seems better to do this than to
812 * show the entire extension script.
813 *
814 * Notice we cope with Windows-style newlines (\r\n) regardless of
815 * platform. This is because there might be such newlines in
816 * script files on other platforms.
817 */
818 int slen = strlen(query);
819
820 location = len = 0;
821 for (int loc = 0; loc < slen; loc++)
822 {
823 if (query[loc] != ';')
824 continue;
825 if (query[loc + 1] == '\r')
826 loc++;
827 if (query[loc + 1] == '\n')
828 {
829 int bkpt = loc + 2;
830
831 if (bkpt < syntaxerrposition)
832 location = bkpt;
833 else if (bkpt > syntaxerrposition)
834 {
835 len = bkpt - location;
836 break; /* no need to keep searching */
837 }
838 }
839 }
840 }
841
842 /* Trim leading/trailing whitespace, for consistency */
843 query = CleanQuerytext(query, &location, &len);
844
845 /*
846 * Adjust syntaxerrposition. It shouldn't be pointing into the
847 * whitespace we just trimmed, but cope if it is.
848 */
849 syntaxerrposition -= location;
850 if (syntaxerrposition < 0)
851 syntaxerrposition = 0;
852 else if (syntaxerrposition > len)
853 syntaxerrposition = len;
854
855 /* And report. */
856 errposition(0);
857 internalerrposition(syntaxerrposition);
859 }
860 else if (location >= 0)
861 {
862 /*
863 * Since no syntax cursor will be shown, it's okay and helpful to trim
864 * the reported query string to just the current statement.
865 */
866 query = CleanQuerytext(query, &location, &len);
867 errcontext("SQL statement \"%.*s\"", len, query);
868 }
869
870 /*
871 * Trim the reported file name to remove the path. We know that
872 * get_extension_script_filename() inserted a '/', regardless of whether
873 * we're on Windows.
874 */
875 lastslash = strrchr(callback_arg->filename, '/');
876 if (lastslash)
877 lastslash++;
878 else
879 lastslash = callback_arg->filename; /* shouldn't happen, but cope */
880
881 /*
882 * If we have a location (which, as said above, we really always should)
883 * then report a line number to aid in localizing problems in big scripts.
884 */
885 if (location >= 0)
886 {
887 int linenumber = 1;
888
889 for (query = callback_arg->sql; *query; query++)
890 {
891 if (--location < 0)
892 break;
893 if (*query == '\n')
894 linenumber++;
895 }
896 errcontext("extension script file \"%s\", near line %d",
897 lastslash, linenumber);
898 }
899 else
900 errcontext("extension script file \"%s\"", lastslash);
901}
902
903/*
904 * Execute given SQL string.
905 *
906 * The filename the string came from is also provided, for error reporting.
907 *
908 * Note: it's tempting to just use SPI to execute the string, but that does
909 * not work very well. The really serious problem is that SPI will parse,
910 * analyze, and plan the whole string before executing any of it; of course
911 * this fails if there are any plannable statements referring to objects
912 * created earlier in the script. A lesser annoyance is that SPI insists
913 * on printing the whole string as errcontext in case of any error, and that
914 * could be very long.
915 */
916static void
917execute_sql_string(const char *sql, const char *filename)
918{
919 script_error_callback_arg callback_arg;
920 ErrorContextCallback scripterrcontext;
921 List *raw_parsetree_list;
923 ListCell *lc1;
924
925 /*
926 * Setup error traceback support for ereport().
927 */
928 callback_arg.sql = sql;
929 callback_arg.filename = filename;
930 callback_arg.stmt_location = -1;
931 callback_arg.stmt_len = -1;
932
933 scripterrcontext.callback = script_error_callback;
934 scripterrcontext.arg = (void *) &callback_arg;
935 scripterrcontext.previous = error_context_stack;
936 error_context_stack = &scripterrcontext;
937
938 /*
939 * Parse the SQL string into a list of raw parse trees.
940 */
941 raw_parsetree_list = pg_parse_query(sql);
942
943 /* All output from SELECTs goes to the bit bucket */
945
946 /*
947 * Do parse analysis, rule rewrite, planning, and execution for each raw
948 * parsetree. We must fully execute each query before beginning parse
949 * analysis on the next one, since there may be interdependencies.
950 */
951 foreach(lc1, raw_parsetree_list)
952 {
953 RawStmt *parsetree = lfirst_node(RawStmt, lc1);
954 MemoryContext per_parsetree_context,
955 oldcontext;
956 List *stmt_list;
957 ListCell *lc2;
958
959 /* Report location of this query for error context callback */
960 callback_arg.stmt_location = parsetree->stmt_location;
961 callback_arg.stmt_len = parsetree->stmt_len;
962
963 /*
964 * We do the work for each parsetree in a short-lived context, to
965 * limit the memory used when there are many commands in the string.
966 */
967 per_parsetree_context =
969 "execute_sql_string per-statement context",
971 oldcontext = MemoryContextSwitchTo(per_parsetree_context);
972
973 /* Be sure parser can see any DDL done so far */
975
976 stmt_list = pg_analyze_and_rewrite_fixedparams(parsetree,
977 sql,
978 NULL,
979 0,
980 NULL);
981 stmt_list = pg_plan_queries(stmt_list, sql, CURSOR_OPT_PARALLEL_OK, NULL);
982
983 foreach(lc2, stmt_list)
984 {
986
988
990
991 if (stmt->utilityStmt == NULL)
992 {
993 QueryDesc *qdesc;
994
995 qdesc = CreateQueryDesc(stmt,
996 sql,
997 GetActiveSnapshot(), NULL,
998 dest, NULL, NULL, 0);
999
1000 ExecutorStart(qdesc, 0);
1002 ExecutorFinish(qdesc);
1003 ExecutorEnd(qdesc);
1004
1005 FreeQueryDesc(qdesc);
1006 }
1007 else
1008 {
1009 if (IsA(stmt->utilityStmt, TransactionStmt))
1010 ereport(ERROR,
1011 (errcode(ERRCODE_FEATURE_NOT_SUPPORTED),
1012 errmsg("transaction control statements are not allowed within an extension script")));
1013
1015 sql,
1016 false,
1018 NULL,
1019 NULL,
1020 dest,
1021 NULL);
1022 }
1023
1025 }
1026
1027 /* Clean up per-parsetree context. */
1028 MemoryContextSwitchTo(oldcontext);
1029 MemoryContextDelete(per_parsetree_context);
1030 }
1031
1032 error_context_stack = scripterrcontext.previous;
1033
1034 /* Be sure to advance the command counter after the last script command */
1036}
1037
1038/*
1039 * Policy function: is the given extension trusted for installation by a
1040 * non-superuser?
1041 *
1042 * (Update the errhint logic below if you change this.)
1043 */
1044static bool
1046{
1047 AclResult aclresult;
1048
1049 /* Never trust unless extension's control file says it's okay */
1050 if (!control->trusted)
1051 return false;
1052 /* Allow if user has CREATE privilege on current database */
1053 aclresult = object_aclcheck(DatabaseRelationId, MyDatabaseId, GetUserId(), ACL_CREATE);
1054 if (aclresult == ACLCHECK_OK)
1055 return true;
1056 return false;
1057}
1058
1059/*
1060 * Execute the appropriate script file for installing or updating the extension
1061 *
1062 * If from_version isn't NULL, it's an update
1063 *
1064 * Note: requiredSchemas must be one-for-one with the control->requires list
1065 */
1066static void
1068 const char *from_version,
1069 const char *version,
1070 List *requiredSchemas,
1071 const char *schemaName)
1072{
1073 bool switch_to_superuser = false;
1074 char *filename;
1075 Oid save_userid = 0;
1076 int save_sec_context = 0;
1077 int save_nestlevel;
1078 StringInfoData pathbuf;
1079 ListCell *lc;
1080 ListCell *lc2;
1081
1082 /*
1083 * Enforce superuser-ness if appropriate. We postpone these checks until
1084 * here so that the control flags are correctly associated with the right
1085 * script(s) if they happen to be set in secondary control files.
1086 */
1087 if (control->superuser && !superuser())
1088 {
1089 if (extension_is_trusted(control))
1090 switch_to_superuser = true;
1091 else if (from_version == NULL)
1092 ereport(ERROR,
1093 (errcode(ERRCODE_INSUFFICIENT_PRIVILEGE),
1094 errmsg("permission denied to create extension \"%s\"",
1095 control->name),
1096 control->trusted
1097 ? errhint("Must have CREATE privilege on current database to create this extension.")
1098 : errhint("Must be superuser to create this extension.")));
1099 else
1100 ereport(ERROR,
1101 (errcode(ERRCODE_INSUFFICIENT_PRIVILEGE),
1102 errmsg("permission denied to update extension \"%s\"",
1103 control->name),
1104 control->trusted
1105 ? errhint("Must have CREATE privilege on current database to update this extension.")
1106 : errhint("Must be superuser to update this extension.")));
1107 }
1108
1109 filename = get_extension_script_filename(control, from_version, version);
1110
1111 if (from_version == NULL)
1112 elog(DEBUG1, "executing extension script for \"%s\" version '%s'", control->name, version);
1113 else
1114 elog(DEBUG1, "executing extension script for \"%s\" update from version '%s' to '%s'", control->name, from_version, version);
1115
1116 /*
1117 * If installing a trusted extension on behalf of a non-superuser, become
1118 * the bootstrap superuser. (This switch will be cleaned up automatically
1119 * if the transaction aborts, as will the GUC changes below.)
1120 */
1121 if (switch_to_superuser)
1122 {
1123 GetUserIdAndSecContext(&save_userid, &save_sec_context);
1124 SetUserIdAndSecContext(BOOTSTRAP_SUPERUSERID,
1125 save_sec_context | SECURITY_LOCAL_USERID_CHANGE);
1126 }
1127
1128 /*
1129 * Force client_min_messages and log_min_messages to be at least WARNING,
1130 * so that we won't spam the user with useless NOTICE messages from common
1131 * script actions like creating shell types.
1132 *
1133 * We use the equivalent of a function SET option to allow the setting to
1134 * persist for exactly the duration of the script execution. guc.c also
1135 * takes care of undoing the setting on error.
1136 *
1137 * log_min_messages can't be set by ordinary users, so for that one we
1138 * pretend to be superuser.
1139 */
1140 save_nestlevel = NewGUCNestLevel();
1141
1143 (void) set_config_option("client_min_messages", "warning",
1145 GUC_ACTION_SAVE, true, 0, false);
1147 (void) set_config_option_ext("log_min_messages", "warning",
1149 BOOTSTRAP_SUPERUSERID,
1150 GUC_ACTION_SAVE, true, 0, false);
1151
1152 /*
1153 * Similarly disable check_function_bodies, to ensure that SQL functions
1154 * won't be parsed during creation.
1155 */
1157 (void) set_config_option("check_function_bodies", "off",
1159 GUC_ACTION_SAVE, true, 0, false);
1160
1161 /*
1162 * Set up the search path to have the target schema first, making it be
1163 * the default creation target namespace. Then add the schemas of any
1164 * prerequisite extensions, unless they are in pg_catalog which would be
1165 * searched anyway. (Listing pg_catalog explicitly in a non-first
1166 * position would be bad for security.) Finally add pg_temp to ensure
1167 * that temp objects can't take precedence over others.
1168 */
1169 initStringInfo(&pathbuf);
1170 appendStringInfoString(&pathbuf, quote_identifier(schemaName));
1171 foreach(lc, requiredSchemas)
1172 {
1173 Oid reqschema = lfirst_oid(lc);
1174 char *reqname = get_namespace_name(reqschema);
1175
1176 if (reqname && strcmp(reqname, "pg_catalog") != 0)
1177 appendStringInfo(&pathbuf, ", %s", quote_identifier(reqname));
1178 }
1179 appendStringInfoString(&pathbuf, ", pg_temp");
1180
1181 (void) set_config_option("search_path", pathbuf.data,
1183 GUC_ACTION_SAVE, true, 0, false);
1184
1185 /*
1186 * Set creating_extension and related variables so that
1187 * recordDependencyOnCurrentExtension and other functions do the right
1188 * things. On failure, ensure we reset these variables.
1189 */
1190 creating_extension = true;
1191 CurrentExtensionObject = extensionOid;
1192 PG_TRY();
1193 {
1194 char *c_sql = read_extension_script_file(control, filename);
1195 Datum t_sql;
1196
1197 /*
1198 * We filter each substitution through quote_identifier(). When the
1199 * arg contains one of the following characters, no one collection of
1200 * quoting can work inside $$dollar-quoted string literals$$,
1201 * 'single-quoted string literals', and outside of any literal. To
1202 * avoid a security snare for extension authors, error on substitution
1203 * for arguments containing these.
1204 */
1205 const char *quoting_relevant_chars = "\"$'\\";
1206
1207 /* We use various functions that want to operate on text datums */
1208 t_sql = CStringGetTextDatum(c_sql);
1209
1210 /*
1211 * Reduce any lines beginning with "\echo" to empty. This allows
1212 * scripts to contain messages telling people not to run them via
1213 * psql, which has been found to be necessary due to old habits.
1214 */
1216 C_COLLATION_OID,
1217 t_sql,
1218 CStringGetTextDatum("^\\\\echo.*$"),
1220 CStringGetTextDatum("ng"));
1221
1222 /*
1223 * If the script uses @extowner@, substitute the calling username.
1224 */
1225 if (strstr(c_sql, "@extowner@"))
1226 {
1227 Oid uid = switch_to_superuser ? save_userid : GetUserId();
1228 const char *userName = GetUserNameFromId(uid, false);
1229 const char *qUserName = quote_identifier(userName);
1230
1232 C_COLLATION_OID,
1233 t_sql,
1234 CStringGetTextDatum("@extowner@"),
1235 CStringGetTextDatum(qUserName));
1236 if (strpbrk(userName, quoting_relevant_chars))
1237 ereport(ERROR,
1238 (errcode(ERRCODE_INVALID_TEXT_REPRESENTATION),
1239 errmsg("invalid character in extension owner: must not contain any of \"%s\"",
1240 quoting_relevant_chars)));
1241 }
1242
1243 /*
1244 * If it's not relocatable, substitute the target schema name for
1245 * occurrences of @extschema@.
1246 *
1247 * For a relocatable extension, we needn't do this. There cannot be
1248 * any need for @extschema@, else it wouldn't be relocatable.
1249 */
1250 if (!control->relocatable)
1251 {
1252 Datum old = t_sql;
1253 const char *qSchemaName = quote_identifier(schemaName);
1254
1256 C_COLLATION_OID,
1257 t_sql,
1258 CStringGetTextDatum("@extschema@"),
1259 CStringGetTextDatum(qSchemaName));
1260 if (t_sql != old && strpbrk(schemaName, quoting_relevant_chars))
1261 ereport(ERROR,
1262 (errcode(ERRCODE_INVALID_TEXT_REPRESENTATION),
1263 errmsg("invalid character in extension \"%s\" schema: must not contain any of \"%s\"",
1264 control->name, quoting_relevant_chars)));
1265 }
1266
1267 /*
1268 * Likewise, substitute required extensions' schema names for
1269 * occurrences of @extschema:extension_name@.
1270 */
1271 Assert(list_length(control->requires) == list_length(requiredSchemas));
1272 forboth(lc, control->requires, lc2, requiredSchemas)
1273 {
1274 Datum old = t_sql;
1275 char *reqextname = (char *) lfirst(lc);
1276 Oid reqschema = lfirst_oid(lc2);
1277 char *schemaName = get_namespace_name(reqschema);
1278 const char *qSchemaName = quote_identifier(schemaName);
1279 char *repltoken;
1280
1281 repltoken = psprintf("@extschema:%s@", reqextname);
1283 C_COLLATION_OID,
1284 t_sql,
1285 CStringGetTextDatum(repltoken),
1286 CStringGetTextDatum(qSchemaName));
1287 if (t_sql != old && strpbrk(schemaName, quoting_relevant_chars))
1288 ereport(ERROR,
1289 (errcode(ERRCODE_INVALID_TEXT_REPRESENTATION),
1290 errmsg("invalid character in extension \"%s\" schema: must not contain any of \"%s\"",
1291 reqextname, quoting_relevant_chars)));
1292 }
1293
1294 /*
1295 * If module_pathname was set in the control file, substitute its
1296 * value for occurrences of MODULE_PATHNAME.
1297 */
1298 if (control->module_pathname)
1299 {
1301 C_COLLATION_OID,
1302 t_sql,
1303 CStringGetTextDatum("MODULE_PATHNAME"),
1305 }
1306
1307 /* And now back to C string */
1308 c_sql = text_to_cstring(DatumGetTextPP(t_sql));
1309
1311 }
1312 PG_FINALLY();
1313 {
1314 creating_extension = false;
1316 }
1317 PG_END_TRY();
1318
1319 /*
1320 * Restore the GUC variables we set above.
1321 */
1322 AtEOXact_GUC(true, save_nestlevel);
1323
1324 /*
1325 * Restore authentication state if needed.
1326 */
1327 if (switch_to_superuser)
1328 SetUserIdAndSecContext(save_userid, save_sec_context);
1329}
1330
1331/*
1332 * Find or create an ExtensionVersionInfo for the specified version name
1333 *
1334 * Currently, we just use a List of the ExtensionVersionInfo's. Searching
1335 * for them therefore uses about O(N^2) time when there are N versions of
1336 * the extension. We could change the data structure to a hash table if
1337 * this ever becomes a bottleneck.
1338 */
1339static ExtensionVersionInfo *
1340get_ext_ver_info(const char *versionname, List **evi_list)
1341{
1343 ListCell *lc;
1344
1345 foreach(lc, *evi_list)
1346 {
1347 evi = (ExtensionVersionInfo *) lfirst(lc);
1348 if (strcmp(evi->name, versionname) == 0)
1349 return evi;
1350 }
1351
1353 evi->name = pstrdup(versionname);
1354 evi->reachable = NIL;
1355 evi->installable = false;
1356 /* initialize for later application of Dijkstra's algorithm */
1357 evi->distance_known = false;
1358 evi->distance = INT_MAX;
1359 evi->previous = NULL;
1360
1361 *evi_list = lappend(*evi_list, evi);
1362
1363 return evi;
1364}
1365
1366/*
1367 * Locate the nearest unprocessed ExtensionVersionInfo
1368 *
1369 * This part of the algorithm is also about O(N^2). A priority queue would
1370 * make it much faster, but for now there's no need.
1371 */
1372static ExtensionVersionInfo *
1374{
1375 ExtensionVersionInfo *evi = NULL;
1376 ListCell *lc;
1377
1378 foreach(lc, evi_list)
1379 {
1381
1382 /* only vertices whose distance is still uncertain are candidates */
1383 if (evi2->distance_known)
1384 continue;
1385 /* remember the closest such vertex */
1386 if (evi == NULL ||
1387 evi->distance > evi2->distance)
1388 evi = evi2;
1389 }
1390
1391 return evi;
1392}
1393
1394/*
1395 * Obtain information about the set of update scripts available for the
1396 * specified extension. The result is a List of ExtensionVersionInfo
1397 * structs, each with a subsidiary list of the ExtensionVersionInfos for
1398 * the versions that can be reached in one step from that version.
1399 */
1400static List *
1402{
1403 List *evi_list = NIL;
1404 int extnamelen = strlen(control->name);
1405 char *location;
1406 DIR *dir;
1407 struct dirent *de;
1408
1409 location = get_extension_script_directory(control);
1410 dir = AllocateDir(location);
1411 while ((de = ReadDir(dir, location)) != NULL)
1412 {
1413 char *vername;
1414 char *vername2;
1417
1418 /* must be a .sql file ... */
1420 continue;
1421
1422 /* ... matching extension name followed by separator */
1423 if (strncmp(de->d_name, control->name, extnamelen) != 0 ||
1424 de->d_name[extnamelen] != '-' ||
1425 de->d_name[extnamelen + 1] != '-')
1426 continue;
1427
1428 /* extract version name(s) from 'extname--something.sql' filename */
1429 vername = pstrdup(de->d_name + extnamelen + 2);
1430 *strrchr(vername, '.') = '\0';
1431 vername2 = strstr(vername, "--");
1432 if (!vername2)
1433 {
1434 /* It's an install, not update, script; record its version name */
1435 evi = get_ext_ver_info(vername, &evi_list);
1436 evi->installable = true;
1437 continue;
1438 }
1439 *vername2 = '\0'; /* terminate first version */
1440 vername2 += 2; /* and point to second */
1441
1442 /* if there's a third --, it's bogus, ignore it */
1443 if (strstr(vername2, "--"))
1444 continue;
1445
1446 /* Create ExtensionVersionInfos and link them together */
1447 evi = get_ext_ver_info(vername, &evi_list);
1448 evi2 = get_ext_ver_info(vername2, &evi_list);
1449 evi->reachable = lappend(evi->reachable, evi2);
1450 }
1451 FreeDir(dir);
1452
1453 return evi_list;
1454}
1455
1456/*
1457 * Given an initial and final version name, identify the sequence of update
1458 * scripts that have to be applied to perform that update.
1459 *
1460 * Result is a List of names of versions to transition through (the initial
1461 * version is *not* included).
1462 */
1463static List *
1465 const char *oldVersion, const char *newVersion)
1466{
1467 List *result;
1468 List *evi_list;
1469 ExtensionVersionInfo *evi_start;
1470 ExtensionVersionInfo *evi_target;
1471
1472 /* Extract the version update graph from the script directory */
1473 evi_list = get_ext_ver_list(control);
1474
1475 /* Initialize start and end vertices */
1476 evi_start = get_ext_ver_info(oldVersion, &evi_list);
1477 evi_target = get_ext_ver_info(newVersion, &evi_list);
1478
1479 /* Find shortest path */
1480 result = find_update_path(evi_list, evi_start, evi_target, false, false);
1481
1482 if (result == NIL)
1483 ereport(ERROR,
1484 (errcode(ERRCODE_INVALID_PARAMETER_VALUE),
1485 errmsg("extension \"%s\" has no update path from version \"%s\" to version \"%s\"",
1486 control->name, oldVersion, newVersion)));
1487
1488 return result;
1489}
1490
1491/*
1492 * Apply Dijkstra's algorithm to find the shortest path from evi_start to
1493 * evi_target.
1494 *
1495 * If reject_indirect is true, ignore paths that go through installable
1496 * versions. This saves work when the caller will consider starting from
1497 * all installable versions anyway.
1498 *
1499 * If reinitialize is false, assume the ExtensionVersionInfo list has not
1500 * been used for this before, and the initialization done by get_ext_ver_info
1501 * is still good. Otherwise, reinitialize all transient fields used here.
1502 *
1503 * Result is a List of names of versions to transition through (the initial
1504 * version is *not* included). Returns NIL if no such path.
1505 */
1506static List *
1508 ExtensionVersionInfo *evi_start,
1509 ExtensionVersionInfo *evi_target,
1510 bool reject_indirect,
1511 bool reinitialize)
1512{
1513 List *result;
1515 ListCell *lc;
1516
1517 /* Caller error if start == target */
1518 Assert(evi_start != evi_target);
1519 /* Caller error if reject_indirect and target is installable */
1520 Assert(!(reject_indirect && evi_target->installable));
1521
1522 if (reinitialize)
1523 {
1524 foreach(lc, evi_list)
1525 {
1526 evi = (ExtensionVersionInfo *) lfirst(lc);
1527 evi->distance_known = false;
1528 evi->distance = INT_MAX;
1529 evi->previous = NULL;
1530 }
1531 }
1532
1533 evi_start->distance = 0;
1534
1535 while ((evi = get_nearest_unprocessed_vertex(evi_list)) != NULL)
1536 {
1537 if (evi->distance == INT_MAX)
1538 break; /* all remaining vertices are unreachable */
1539 evi->distance_known = true;
1540 if (evi == evi_target)
1541 break; /* found shortest path to target */
1542 foreach(lc, evi->reachable)
1543 {
1545 int newdist;
1546
1547 /* if reject_indirect, treat installable versions as unreachable */
1548 if (reject_indirect && evi2->installable)
1549 continue;
1550 newdist = evi->distance + 1;
1551 if (newdist < evi2->distance)
1552 {
1553 evi2->distance = newdist;
1554 evi2->previous = evi;
1555 }
1556 else if (newdist == evi2->distance &&
1557 evi2->previous != NULL &&
1558 strcmp(evi->name, evi2->previous->name) < 0)
1559 {
1560 /*
1561 * Break ties in favor of the version name that comes first
1562 * according to strcmp(). This behavior is undocumented and
1563 * users shouldn't rely on it. We do it just to ensure that
1564 * if there is a tie, the update path that is chosen does not
1565 * depend on random factors like the order in which directory
1566 * entries get visited.
1567 */
1568 evi2->previous = evi;
1569 }
1570 }
1571 }
1572
1573 /* Return NIL if target is not reachable from start */
1574 if (!evi_target->distance_known)
1575 return NIL;
1576
1577 /* Build and return list of version names representing the update path */
1578 result = NIL;
1579 for (evi = evi_target; evi != evi_start; evi = evi->previous)
1580 result = lcons(evi->name, result);
1581
1582 return result;
1583}
1584
1585/*
1586 * Given a target version that is not directly installable, find the
1587 * best installation sequence starting from a directly-installable version.
1588 *
1589 * evi_list: previously-collected version update graph
1590 * evi_target: member of that list that we want to reach
1591 *
1592 * Returns the best starting-point version, or NULL if there is none.
1593 * On success, *best_path is set to the path from the start point.
1594 *
1595 * If there's more than one possible start point, prefer shorter update paths,
1596 * and break any ties arbitrarily on the basis of strcmp'ing the starting
1597 * versions' names.
1598 */
1599static ExtensionVersionInfo *
1601 List **best_path)
1602{
1603 ExtensionVersionInfo *evi_start = NULL;
1604 ListCell *lc;
1605
1606 *best_path = NIL;
1607
1608 /*
1609 * We don't expect to be called for an installable target, but if we are,
1610 * the answer is easy: just start from there, with an empty update path.
1611 */
1612 if (evi_target->installable)
1613 return evi_target;
1614
1615 /* Consider all installable versions as start points */
1616 foreach(lc, evi_list)
1617 {
1619 List *path;
1620
1621 if (!evi1->installable)
1622 continue;
1623
1624 /*
1625 * Find shortest path from evi1 to evi_target; but no need to consider
1626 * paths going through other installable versions.
1627 */
1628 path = find_update_path(evi_list, evi1, evi_target, true, true);
1629 if (path == NIL)
1630 continue;
1631
1632 /* Remember best path */
1633 if (evi_start == NULL ||
1634 list_length(path) < list_length(*best_path) ||
1635 (list_length(path) == list_length(*best_path) &&
1636 strcmp(evi_start->name, evi1->name) < 0))
1637 {
1638 evi_start = evi1;
1639 *best_path = path;
1640 }
1641 }
1642
1643 return evi_start;
1644}
1645
1646/*
1647 * CREATE EXTENSION worker
1648 *
1649 * When CASCADE is specified, CreateExtensionInternal() recurses if required
1650 * extensions need to be installed. To sanely handle cyclic dependencies,
1651 * the "parents" list contains a list of names of extensions already being
1652 * installed, allowing us to error out if we recurse to one of those.
1653 */
1654static ObjectAddress
1655CreateExtensionInternal(char *extensionName,
1656 char *schemaName,
1657 const char *versionName,
1658 bool cascade,
1659 List *parents,
1660 bool is_create)
1661{
1662 char *origSchemaName = schemaName;
1663 Oid schemaOid = InvalidOid;
1664 Oid extowner = GetUserId();
1665 ExtensionControlFile *pcontrol;
1666 ExtensionControlFile *control;
1667 char *filename;
1668 struct stat fst;
1669 List *updateVersions;
1670 List *requiredExtensions;
1671 List *requiredSchemas;
1672 Oid extensionOid;
1673 ObjectAddress address;
1674 ListCell *lc;
1675
1676 /*
1677 * Read the primary control file. Note we assume that it does not contain
1678 * any non-ASCII data, so there is no need to worry about encoding at this
1679 * point.
1680 */
1681 pcontrol = read_extension_control_file(extensionName);
1682
1683 /*
1684 * Determine the version to install
1685 */
1686 if (versionName == NULL)
1687 {
1688 if (pcontrol->default_version)
1689 versionName = pcontrol->default_version;
1690 else
1691 ereport(ERROR,
1692 (errcode(ERRCODE_INVALID_PARAMETER_VALUE),
1693 errmsg("version to install must be specified")));
1694 }
1695 check_valid_version_name(versionName);
1696
1697 /*
1698 * Figure out which script(s) we need to run to install the desired
1699 * version of the extension. If we do not have a script that directly
1700 * does what is needed, we try to find a sequence of update scripts that
1701 * will get us there.
1702 */
1703 filename = get_extension_script_filename(pcontrol, NULL, versionName);
1704 if (stat(filename, &fst) == 0)
1705 {
1706 /* Easy, no extra scripts */
1707 updateVersions = NIL;
1708 }
1709 else
1710 {
1711 /* Look for best way to install this version */
1712 List *evi_list;
1713 ExtensionVersionInfo *evi_start;
1714 ExtensionVersionInfo *evi_target;
1715
1716 /* Extract the version update graph from the script directory */
1717 evi_list = get_ext_ver_list(pcontrol);
1718
1719 /* Identify the target version */
1720 evi_target = get_ext_ver_info(versionName, &evi_list);
1721
1722 /* Identify best path to reach target */
1723 evi_start = find_install_path(evi_list, evi_target,
1724 &updateVersions);
1725
1726 /* Fail if no path ... */
1727 if (evi_start == NULL)
1728 ereport(ERROR,
1729 (errcode(ERRCODE_INVALID_PARAMETER_VALUE),
1730 errmsg("extension \"%s\" has no installation script nor update path for version \"%s\"",
1731 pcontrol->name, versionName)));
1732
1733 /* Otherwise, install best starting point and then upgrade */
1734 versionName = evi_start->name;
1735 }
1736
1737 /*
1738 * Fetch control parameters for installation target version
1739 */
1740 control = read_extension_aux_control_file(pcontrol, versionName);
1741
1742 /*
1743 * Determine the target schema to install the extension into
1744 */
1745 if (schemaName)
1746 {
1747 /* If the user is giving us the schema name, it must exist already. */
1748 schemaOid = get_namespace_oid(schemaName, false);
1749 }
1750
1751 if (control->schema != NULL)
1752 {
1753 /*
1754 * The extension is not relocatable and the author gave us a schema
1755 * for it.
1756 *
1757 * Unless CASCADE parameter was given, it's an error to give a schema
1758 * different from control->schema if control->schema is specified.
1759 */
1760 if (schemaName && strcmp(control->schema, schemaName) != 0 &&
1761 !cascade)
1762 ereport(ERROR,
1763 (errcode(ERRCODE_FEATURE_NOT_SUPPORTED),
1764 errmsg("extension \"%s\" must be installed in schema \"%s\"",
1765 control->name,
1766 control->schema)));
1767
1768 /* Always use the schema from control file for current extension. */
1769 schemaName = control->schema;
1770
1771 /* Find or create the schema in case it does not exist. */
1772 schemaOid = get_namespace_oid(schemaName, true);
1773
1774 if (!OidIsValid(schemaOid))
1775 {
1777
1778 csstmt->schemaname = schemaName;
1779 csstmt->authrole = NULL; /* will be created by current user */
1780 csstmt->schemaElts = NIL;
1781 csstmt->if_not_exists = false;
1782 CreateSchemaCommand(csstmt, "(generated CREATE SCHEMA command)",
1783 -1, -1);
1784
1785 /*
1786 * CreateSchemaCommand includes CommandCounterIncrement, so new
1787 * schema is now visible.
1788 */
1789 schemaOid = get_namespace_oid(schemaName, false);
1790 }
1791 }
1792 else if (!OidIsValid(schemaOid))
1793 {
1794 /*
1795 * Neither user nor author of the extension specified schema; use the
1796 * current default creation namespace, which is the first explicit
1797 * entry in the search_path.
1798 */
1799 List *search_path = fetch_search_path(false);
1800
1801 if (search_path == NIL) /* nothing valid in search_path? */
1802 ereport(ERROR,
1803 (errcode(ERRCODE_UNDEFINED_SCHEMA),
1804 errmsg("no schema has been selected to create in")));
1805 schemaOid = linitial_oid(search_path);
1806 schemaName = get_namespace_name(schemaOid);
1807 if (schemaName == NULL) /* recently-deleted namespace? */
1808 ereport(ERROR,
1809 (errcode(ERRCODE_UNDEFINED_SCHEMA),
1810 errmsg("no schema has been selected to create in")));
1811
1812 list_free(search_path);
1813 }
1814
1815 /*
1816 * Make note if a temporary namespace has been accessed in this
1817 * transaction.
1818 */
1819 if (isTempNamespace(schemaOid))
1821
1822 /*
1823 * We don't check creation rights on the target namespace here. If the
1824 * extension script actually creates any objects there, it will fail if
1825 * the user doesn't have such permissions. But there are cases such as
1826 * procedural languages where it's convenient to set schema = pg_catalog
1827 * yet we don't want to restrict the command to users with ACL_CREATE for
1828 * pg_catalog.
1829 */
1830
1831 /*
1832 * Look up the prerequisite extensions, install them if necessary, and
1833 * build lists of their OIDs and the OIDs of their target schemas.
1834 */
1835 requiredExtensions = NIL;
1836 requiredSchemas = NIL;
1837 foreach(lc, control->requires)
1838 {
1839 char *curreq = (char *) lfirst(lc);
1840 Oid reqext;
1841 Oid reqschema;
1842
1843 reqext = get_required_extension(curreq,
1844 extensionName,
1845 origSchemaName,
1846 cascade,
1847 parents,
1848 is_create);
1849 reqschema = get_extension_schema(reqext);
1850 requiredExtensions = lappend_oid(requiredExtensions, reqext);
1851 requiredSchemas = lappend_oid(requiredSchemas, reqschema);
1852 }
1853
1854 /*
1855 * Insert new tuple into pg_extension, and create dependency entries.
1856 */
1857 address = InsertExtensionTuple(control->name, extowner,
1858 schemaOid, control->relocatable,
1859 versionName,
1860 PointerGetDatum(NULL),
1861 PointerGetDatum(NULL),
1862 requiredExtensions);
1863 extensionOid = address.objectId;
1864
1865 /*
1866 * Apply any control-file comment on extension
1867 */
1868 if (control->comment != NULL)
1869 CreateComments(extensionOid, ExtensionRelationId, 0, control->comment);
1870
1871 /*
1872 * Execute the installation script file
1873 */
1874 execute_extension_script(extensionOid, control,
1875 NULL, versionName,
1876 requiredSchemas,
1877 schemaName);
1878
1879 /*
1880 * If additional update scripts have to be executed, apply the updates as
1881 * though a series of ALTER EXTENSION UPDATE commands were given
1882 */
1883 ApplyExtensionUpdates(extensionOid, pcontrol,
1884 versionName, updateVersions,
1885 origSchemaName, cascade, is_create);
1886
1887 return address;
1888}
1889
1890/*
1891 * Get the OID of an extension listed in "requires", possibly creating it.
1892 */
1893static Oid
1894get_required_extension(char *reqExtensionName,
1895 char *extensionName,
1896 char *origSchemaName,
1897 bool cascade,
1898 List *parents,
1899 bool is_create)
1900{
1901 Oid reqExtensionOid;
1902
1903 reqExtensionOid = get_extension_oid(reqExtensionName, true);
1904 if (!OidIsValid(reqExtensionOid))
1905 {
1906 if (cascade)
1907 {
1908 /* Must install it. */
1909 ObjectAddress addr;
1910 List *cascade_parents;
1911 ListCell *lc;
1912
1913 /* Check extension name validity before trying to cascade. */
1914 check_valid_extension_name(reqExtensionName);
1915
1916 /* Check for cyclic dependency between extensions. */
1917 foreach(lc, parents)
1918 {
1919 char *pname = (char *) lfirst(lc);
1920
1921 if (strcmp(pname, reqExtensionName) == 0)
1922 ereport(ERROR,
1923 (errcode(ERRCODE_INVALID_RECURSION),
1924 errmsg("cyclic dependency detected between extensions \"%s\" and \"%s\"",
1925 reqExtensionName, extensionName)));
1926 }
1927
1929 (errmsg("installing required extension \"%s\"",
1930 reqExtensionName)));
1931
1932 /* Add current extension to list of parents to pass down. */
1933 cascade_parents = lappend(list_copy(parents), extensionName);
1934
1935 /*
1936 * Create the required extension. We propagate the SCHEMA option
1937 * if any, and CASCADE, but no other options.
1938 */
1939 addr = CreateExtensionInternal(reqExtensionName,
1940 origSchemaName,
1941 NULL,
1942 cascade,
1943 cascade_parents,
1944 is_create);
1945
1946 /* Get its newly-assigned OID. */
1947 reqExtensionOid = addr.objectId;
1948 }
1949 else
1950 ereport(ERROR,
1951 (errcode(ERRCODE_UNDEFINED_OBJECT),
1952 errmsg("required extension \"%s\" is not installed",
1953 reqExtensionName),
1954 is_create ?
1955 errhint("Use CREATE EXTENSION ... CASCADE to install required extensions too.") : 0));
1956 }
1957
1958 return reqExtensionOid;
1959}
1960
1961/*
1962 * CREATE EXTENSION
1963 */
1966{
1967 DefElem *d_schema = NULL;
1968 DefElem *d_new_version = NULL;
1969 DefElem *d_cascade = NULL;
1970 char *schemaName = NULL;
1971 char *versionName = NULL;
1972 bool cascade = false;
1973 ListCell *lc;
1974
1975 /* Check extension name validity before any filesystem access */
1977
1978 /*
1979 * Check for duplicate extension name. The unique index on
1980 * pg_extension.extname would catch this anyway, and serves as a backstop
1981 * in case of race conditions; but this is a friendlier error message, and
1982 * besides we need a check to support IF NOT EXISTS.
1983 */
1984 if (get_extension_oid(stmt->extname, true) != InvalidOid)
1985 {
1986 if (stmt->if_not_exists)
1987 {
1990 errmsg("extension \"%s\" already exists, skipping",
1991 stmt->extname)));
1992 return InvalidObjectAddress;
1993 }
1994 else
1995 ereport(ERROR,
1997 errmsg("extension \"%s\" already exists",
1998 stmt->extname)));
1999 }
2000
2001 /*
2002 * We use global variables to track the extension being created, so we can
2003 * create only one extension at the same time.
2004 */
2006 ereport(ERROR,
2007 (errcode(ERRCODE_FEATURE_NOT_SUPPORTED),
2008 errmsg("nested CREATE EXTENSION is not supported")));
2009
2010 /* Deconstruct the statement option list */
2011 foreach(lc, stmt->options)
2012 {
2013 DefElem *defel = (DefElem *) lfirst(lc);
2014
2015 if (strcmp(defel->defname, "schema") == 0)
2016 {
2017 if (d_schema)
2018 errorConflictingDefElem(defel, pstate);
2019 d_schema = defel;
2020 schemaName = defGetString(d_schema);
2021 }
2022 else if (strcmp(defel->defname, "new_version") == 0)
2023 {
2024 if (d_new_version)
2025 errorConflictingDefElem(defel, pstate);
2026 d_new_version = defel;
2027 versionName = defGetString(d_new_version);
2028 }
2029 else if (strcmp(defel->defname, "cascade") == 0)
2030 {
2031 if (d_cascade)
2032 errorConflictingDefElem(defel, pstate);
2033 d_cascade = defel;
2034 cascade = defGetBoolean(d_cascade);
2035 }
2036 else
2037 elog(ERROR, "unrecognized option: %s", defel->defname);
2038 }
2039
2040 /* Call CreateExtensionInternal to do the real work. */
2041 return CreateExtensionInternal(stmt->extname,
2042 schemaName,
2043 versionName,
2044 cascade,
2045 NIL,
2046 true);
2047}
2048
2049/*
2050 * InsertExtensionTuple
2051 *
2052 * Insert the new pg_extension row, and create extension's dependency entries.
2053 * Return the OID assigned to the new row.
2054 *
2055 * This is exported for the benefit of pg_upgrade, which has to create a
2056 * pg_extension entry (and the extension-level dependencies) without
2057 * actually running the extension's script.
2058 *
2059 * extConfig and extCondition should be arrays or PointerGetDatum(NULL).
2060 * We declare them as plain Datum to avoid needing array.h in extension.h.
2061 */
2063InsertExtensionTuple(const char *extName, Oid extOwner,
2064 Oid schemaOid, bool relocatable, const char *extVersion,
2065 Datum extConfig, Datum extCondition,
2066 List *requiredExtensions)
2067{
2068 Oid extensionOid;
2069 Relation rel;
2070 Datum values[Natts_pg_extension];
2071 bool nulls[Natts_pg_extension];
2072 HeapTuple tuple;
2073 ObjectAddress myself;
2074 ObjectAddress nsp;
2075 ObjectAddresses *refobjs;
2076 ListCell *lc;
2077
2078 /*
2079 * Build and insert the pg_extension tuple
2080 */
2081 rel = table_open(ExtensionRelationId, RowExclusiveLock);
2082
2083 memset(values, 0, sizeof(values));
2084 memset(nulls, 0, sizeof(nulls));
2085
2086 extensionOid = GetNewOidWithIndex(rel, ExtensionOidIndexId,
2087 Anum_pg_extension_oid);
2088 values[Anum_pg_extension_oid - 1] = ObjectIdGetDatum(extensionOid);
2089 values[Anum_pg_extension_extname - 1] =
2091 values[Anum_pg_extension_extowner - 1] = ObjectIdGetDatum(extOwner);
2092 values[Anum_pg_extension_extnamespace - 1] = ObjectIdGetDatum(schemaOid);
2093 values[Anum_pg_extension_extrelocatable - 1] = BoolGetDatum(relocatable);
2094 values[Anum_pg_extension_extversion - 1] = CStringGetTextDatum(extVersion);
2095
2096 if (extConfig == PointerGetDatum(NULL))
2097 nulls[Anum_pg_extension_extconfig - 1] = true;
2098 else
2099 values[Anum_pg_extension_extconfig - 1] = extConfig;
2100
2101 if (extCondition == PointerGetDatum(NULL))
2102 nulls[Anum_pg_extension_extcondition - 1] = true;
2103 else
2104 values[Anum_pg_extension_extcondition - 1] = extCondition;
2105
2106 tuple = heap_form_tuple(rel->rd_att, values, nulls);
2107
2108 CatalogTupleInsert(rel, tuple);
2109
2110 heap_freetuple(tuple);
2112
2113 /*
2114 * Record dependencies on owner, schema, and prerequisite extensions
2115 */
2116 recordDependencyOnOwner(ExtensionRelationId, extensionOid, extOwner);
2117
2118 refobjs = new_object_addresses();
2119
2120 ObjectAddressSet(myself, ExtensionRelationId, extensionOid);
2121
2122 ObjectAddressSet(nsp, NamespaceRelationId, schemaOid);
2123 add_exact_object_address(&nsp, refobjs);
2124
2125 foreach(lc, requiredExtensions)
2126 {
2127 Oid reqext = lfirst_oid(lc);
2128 ObjectAddress otherext;
2129
2130 ObjectAddressSet(otherext, ExtensionRelationId, reqext);
2131 add_exact_object_address(&otherext, refobjs);
2132 }
2133
2134 /* Record all of them (this includes duplicate elimination) */
2136 free_object_addresses(refobjs);
2137
2138 /* Post creation hook for new extension */
2139 InvokeObjectPostCreateHook(ExtensionRelationId, extensionOid, 0);
2140
2141 return myself;
2142}
2143
2144/*
2145 * Guts of extension deletion.
2146 *
2147 * All we need do here is remove the pg_extension tuple itself. Everything
2148 * else is taken care of by the dependency infrastructure.
2149 */
2150void
2152{
2153 Relation rel;
2154 SysScanDesc scandesc;
2155 HeapTuple tuple;
2156 ScanKeyData entry[1];
2157
2158 /*
2159 * Disallow deletion of any extension that's currently open for insertion;
2160 * else subsequent executions of recordDependencyOnCurrentExtension()
2161 * could create dangling pg_depend records that refer to a no-longer-valid
2162 * pg_extension OID. This is needed not so much because we think people
2163 * might write "DROP EXTENSION foo" in foo's own script files, as because
2164 * errors in dependency management in extension script files could give
2165 * rise to cases where an extension is dropped as a result of recursing
2166 * from some contained object. Because of that, we must test for the case
2167 * here, not at some higher level of the DROP EXTENSION command.
2168 */
2169 if (extId == CurrentExtensionObject)
2170 ereport(ERROR,
2171 (errcode(ERRCODE_OBJECT_NOT_IN_PREREQUISITE_STATE),
2172 errmsg("cannot drop extension \"%s\" because it is being modified",
2173 get_extension_name(extId))));
2174
2175 rel = table_open(ExtensionRelationId, RowExclusiveLock);
2176
2177 ScanKeyInit(&entry[0],
2178 Anum_pg_extension_oid,
2179 BTEqualStrategyNumber, F_OIDEQ,
2180 ObjectIdGetDatum(extId));
2181 scandesc = systable_beginscan(rel, ExtensionOidIndexId, true,
2182 NULL, 1, entry);
2183
2184 tuple = systable_getnext(scandesc);
2185
2186 /* We assume that there can be at most one matching tuple */
2187 if (HeapTupleIsValid(tuple))
2188 CatalogTupleDelete(rel, &tuple->t_self);
2189
2190 systable_endscan(scandesc);
2191
2193}
2194
2195/*
2196 * This function lists the available extensions (one row per primary control
2197 * file in the control directory). We parse each control file and report the
2198 * interesting fields.
2199 *
2200 * The system view pg_available_extensions provides a user interface to this
2201 * SRF, adding information about whether the extensions are installed in the
2202 * current DB.
2203 */
2204Datum
2206{
2207 ReturnSetInfo *rsinfo = (ReturnSetInfo *) fcinfo->resultinfo;
2208 List *locations;
2209 DIR *dir;
2210 struct dirent *de;
2211
2212 /* Build tuplestore to hold the result rows */
2213 InitMaterializedSRF(fcinfo, 0);
2214
2216
2217 foreach_ptr(char, location, locations)
2218 {
2219 dir = AllocateDir(location);
2220
2221 /*
2222 * If the control directory doesn't exist, we want to silently return
2223 * an empty set. Any other error will be reported by ReadDir.
2224 */
2225 if (dir == NULL && errno == ENOENT)
2226 {
2227 /* do nothing */
2228 }
2229 else
2230 {
2231 while ((de = ReadDir(dir, location)) != NULL)
2232 {
2233 ExtensionControlFile *control;
2234 char *extname;
2235 Datum values[3];
2236 bool nulls[3];
2237
2238 if (!is_extension_control_filename(de->d_name))
2239 continue;
2240
2241 /* extract extension name from 'name.control' filename */
2242 extname = pstrdup(de->d_name);
2243 *strrchr(extname, '.') = '\0';
2244
2245 /* ignore it if it's an auxiliary control file */
2246 if (strstr(extname, "--"))
2247 continue;
2248
2249 control = new_ExtensionControlFile(extname);
2250 control->control_dir = pstrdup(location);
2251 parse_extension_control_file(control, NULL);
2252
2253 memset(values, 0, sizeof(values));
2254 memset(nulls, 0, sizeof(nulls));
2255
2256 /* name */
2258 CStringGetDatum(control->name));
2259 /* default_version */
2260 if (control->default_version == NULL)
2261 nulls[1] = true;
2262 else
2264 /* comment */
2265 if (control->comment == NULL)
2266 nulls[2] = true;
2267 else
2268 values[2] = CStringGetTextDatum(control->comment);
2269
2270 tuplestore_putvalues(rsinfo->setResult, rsinfo->setDesc,
2271 values, nulls);
2272 }
2273
2274 FreeDir(dir);
2275 }
2276 }
2277
2278 return (Datum) 0;
2279}
2280
2281/*
2282 * This function lists the available extension versions (one row per
2283 * extension installation script). For each version, we parse the related
2284 * control file(s) and report the interesting fields.
2285 *
2286 * The system view pg_available_extension_versions provides a user interface
2287 * to this SRF, adding information about which versions are installed in the
2288 * current DB.
2289 */
2290Datum
2292{
2293 ReturnSetInfo *rsinfo = (ReturnSetInfo *) fcinfo->resultinfo;
2294 List *locations;
2295 DIR *dir;
2296 struct dirent *de;
2297
2298 /* Build tuplestore to hold the result rows */
2299 InitMaterializedSRF(fcinfo, 0);
2300
2302
2303 foreach_ptr(char, location, locations)
2304 {
2305 dir = AllocateDir(location);
2306
2307 /*
2308 * If the control directory doesn't exist, we want to silently return
2309 * an empty set. Any other error will be reported by ReadDir.
2310 */
2311 if (dir == NULL && errno == ENOENT)
2312 {
2313 /* do nothing */
2314 }
2315 else
2316 {
2317 while ((de = ReadDir(dir, location)) != NULL)
2318 {
2319 ExtensionControlFile *control;
2320 char *extname;
2321
2322 if (!is_extension_control_filename(de->d_name))
2323 continue;
2324
2325 /* extract extension name from 'name.control' filename */
2326 extname = pstrdup(de->d_name);
2327 *strrchr(extname, '.') = '\0';
2328
2329 /* ignore it if it's an auxiliary control file */
2330 if (strstr(extname, "--"))
2331 continue;
2332
2333 /* read the control file */
2334 control = new_ExtensionControlFile(extname);
2335 control->control_dir = pstrdup(location);
2336 parse_extension_control_file(control, NULL);
2337
2338 /* scan extension's script directory for install scripts */
2340 rsinfo->setDesc);
2341 }
2342
2343 FreeDir(dir);
2344 }
2345 }
2346
2347 return (Datum) 0;
2348}
2349
2350/*
2351 * Inner loop for pg_available_extension_versions:
2352 * read versions of one extension, add rows to tupstore
2353 */
2354static void
2356 Tuplestorestate *tupstore,
2357 TupleDesc tupdesc)
2358{
2359 List *evi_list;
2360 ListCell *lc;
2361
2362 /* Extract the version update graph from the script directory */
2363 evi_list = get_ext_ver_list(pcontrol);
2364
2365 /* For each installable version ... */
2366 foreach(lc, evi_list)
2367 {
2369 ExtensionControlFile *control;
2370 Datum values[8];
2371 bool nulls[8];
2372 ListCell *lc2;
2373
2374 if (!evi->installable)
2375 continue;
2376
2377 /*
2378 * Fetch parameters for specific version (pcontrol is not changed)
2379 */
2380 control = read_extension_aux_control_file(pcontrol, evi->name);
2381
2382 memset(values, 0, sizeof(values));
2383 memset(nulls, 0, sizeof(nulls));
2384
2385 /* name */
2387 CStringGetDatum(control->name));
2388 /* version */
2389 values[1] = CStringGetTextDatum(evi->name);
2390 /* superuser */
2391 values[2] = BoolGetDatum(control->superuser);
2392 /* trusted */
2393 values[3] = BoolGetDatum(control->trusted);
2394 /* relocatable */
2395 values[4] = BoolGetDatum(control->relocatable);
2396 /* schema */
2397 if (control->schema == NULL)
2398 nulls[5] = true;
2399 else
2401 CStringGetDatum(control->schema));
2402 /* requires */
2403 if (control->requires == NIL)
2404 nulls[6] = true;
2405 else
2406 values[6] = convert_requires_to_datum(control->requires);
2407 /* comment */
2408 if (control->comment == NULL)
2409 nulls[7] = true;
2410 else
2411 values[7] = CStringGetTextDatum(control->comment);
2412
2413 tuplestore_putvalues(tupstore, tupdesc, values, nulls);
2414
2415 /*
2416 * Find all non-directly-installable versions that would be installed
2417 * starting from this version, and report them, inheriting the
2418 * parameters that aren't changed in updates from this version.
2419 */
2420 foreach(lc2, evi_list)
2421 {
2423 List *best_path;
2424
2425 if (evi2->installable)
2426 continue;
2427 if (find_install_path(evi_list, evi2, &best_path) == evi)
2428 {
2429 /*
2430 * Fetch parameters for this version (pcontrol is not changed)
2431 */
2432 control = read_extension_aux_control_file(pcontrol, evi2->name);
2433
2434 /* name stays the same */
2435 /* version */
2436 values[1] = CStringGetTextDatum(evi2->name);
2437 /* superuser */
2438 values[2] = BoolGetDatum(control->superuser);
2439 /* trusted */
2440 values[3] = BoolGetDatum(control->trusted);
2441 /* relocatable */
2442 values[4] = BoolGetDatum(control->relocatable);
2443 /* schema stays the same */
2444 /* requires */
2445 if (control->requires == NIL)
2446 nulls[6] = true;
2447 else
2448 {
2449 values[6] = convert_requires_to_datum(control->requires);
2450 nulls[6] = false;
2451 }
2452 /* comment stays the same */
2453
2454 tuplestore_putvalues(tupstore, tupdesc, values, nulls);
2455 }
2456 }
2457 }
2458}
2459
2460/*
2461 * Test whether the given extension exists (not whether it's installed)
2462 *
2463 * This checks for the existence of a matching control file in the extension
2464 * directory. That's not a bulletproof check, since the file might be
2465 * invalid, but this is only used for hints so it doesn't have to be 100%
2466 * right.
2467 */
2468bool
2469extension_file_exists(const char *extensionName)
2470{
2471 bool result = false;
2472 List *locations;
2473 DIR *dir;
2474 struct dirent *de;
2475
2477
2478 foreach_ptr(char, location, locations)
2479 {
2480 dir = AllocateDir(location);
2481
2482 /*
2483 * If the control directory doesn't exist, we want to silently return
2484 * false. Any other error will be reported by ReadDir.
2485 */
2486 if (dir == NULL && errno == ENOENT)
2487 {
2488 /* do nothing */
2489 }
2490 else
2491 {
2492 while ((de = ReadDir(dir, location)) != NULL)
2493 {
2494 char *extname;
2495
2497 continue;
2498
2499 /* extract extension name from 'name.control' filename */
2500 extname = pstrdup(de->d_name);
2501 *strrchr(extname, '.') = '\0';
2502
2503 /* ignore it if it's an auxiliary control file */
2504 if (strstr(extname, "--"))
2505 continue;
2506
2507 /* done if it matches request */
2508 if (strcmp(extname, extensionName) == 0)
2509 {
2510 result = true;
2511 break;
2512 }
2513 }
2514
2515 FreeDir(dir);
2516 }
2517 if (result)
2518 break;
2519 }
2520
2521 return result;
2522}
2523
2524/*
2525 * Convert a list of extension names to a name[] Datum
2526 */
2527static Datum
2529{
2530 Datum *datums;
2531 int ndatums;
2532 ArrayType *a;
2533 ListCell *lc;
2534
2535 ndatums = list_length(requires);
2536 datums = (Datum *) palloc(ndatums * sizeof(Datum));
2537 ndatums = 0;
2538 foreach(lc, requires)
2539 {
2540 char *curreq = (char *) lfirst(lc);
2541
2542 datums[ndatums++] =
2544 }
2545 a = construct_array_builtin(datums, ndatums, NAMEOID);
2546 return PointerGetDatum(a);
2547}
2548
2549/*
2550 * This function reports the version update paths that exist for the
2551 * specified extension.
2552 */
2553Datum
2555{
2556 Name extname = PG_GETARG_NAME(0);
2557 ReturnSetInfo *rsinfo = (ReturnSetInfo *) fcinfo->resultinfo;
2558 List *evi_list;
2559 ExtensionControlFile *control;
2560 ListCell *lc1;
2561
2562 /* Check extension name validity before any filesystem access */
2564
2565 /* Build tuplestore to hold the result rows */
2566 InitMaterializedSRF(fcinfo, 0);
2567
2568 /* Read the extension's control file */
2569 control = read_extension_control_file(NameStr(*extname));
2570
2571 /* Extract the version update graph from the script directory */
2572 evi_list = get_ext_ver_list(control);
2573
2574 /* Iterate over all pairs of versions */
2575 foreach(lc1, evi_list)
2576 {
2578 ListCell *lc2;
2579
2580 foreach(lc2, evi_list)
2581 {
2583 List *path;
2584 Datum values[3];
2585 bool nulls[3];
2586
2587 if (evi1 == evi2)
2588 continue;
2589
2590 /* Find shortest path from evi1 to evi2 */
2591 path = find_update_path(evi_list, evi1, evi2, false, true);
2592
2593 /* Emit result row */
2594 memset(values, 0, sizeof(values));
2595 memset(nulls, 0, sizeof(nulls));
2596
2597 /* source */
2598 values[0] = CStringGetTextDatum(evi1->name);
2599 /* target */
2600 values[1] = CStringGetTextDatum(evi2->name);
2601 /* path */
2602 if (path == NIL)
2603 nulls[2] = true;
2604 else
2605 {
2606 StringInfoData pathbuf;
2607 ListCell *lcv;
2608
2609 initStringInfo(&pathbuf);
2610 /* The path doesn't include start vertex, but show it */
2611 appendStringInfoString(&pathbuf, evi1->name);
2612 foreach(lcv, path)
2613 {
2614 char *versionName = (char *) lfirst(lcv);
2615
2616 appendStringInfoString(&pathbuf, "--");
2617 appendStringInfoString(&pathbuf, versionName);
2618 }
2619 values[2] = CStringGetTextDatum(pathbuf.data);
2620 pfree(pathbuf.data);
2621 }
2622
2623 tuplestore_putvalues(rsinfo->setResult, rsinfo->setDesc,
2624 values, nulls);
2625 }
2626 }
2627
2628 return (Datum) 0;
2629}
2630
2631/*
2632 * pg_extension_config_dump
2633 *
2634 * Record information about a configuration table that belongs to an
2635 * extension being created, but whose contents should be dumped in whole
2636 * or in part during pg_dump.
2637 */
2638Datum
2640{
2641 Oid tableoid = PG_GETARG_OID(0);
2642 text *wherecond = PG_GETARG_TEXT_PP(1);
2643 char *tablename;
2644 Relation extRel;
2645 ScanKeyData key[1];
2646 SysScanDesc extScan;
2647 HeapTuple extTup;
2648 Datum arrayDatum;
2649 Datum elementDatum;
2650 int arrayLength;
2651 int arrayIndex;
2652 bool isnull;
2653 Datum repl_val[Natts_pg_extension];
2654 bool repl_null[Natts_pg_extension];
2655 bool repl_repl[Natts_pg_extension];
2656 ArrayType *a;
2657
2658 /*
2659 * We only allow this to be called from an extension's SQL script. We
2660 * shouldn't need any permissions check beyond that.
2661 */
2662 if (!creating_extension)
2663 ereport(ERROR,
2664 (errcode(ERRCODE_FEATURE_NOT_SUPPORTED),
2665 errmsg("%s can only be called from an SQL script executed by CREATE EXTENSION",
2666 "pg_extension_config_dump()")));
2667
2668 /*
2669 * Check that the table exists and is a member of the extension being
2670 * created. This ensures that we don't need to register an additional
2671 * dependency to protect the extconfig entry.
2672 */
2673 tablename = get_rel_name(tableoid);
2674 if (tablename == NULL)
2675 ereport(ERROR,
2677 errmsg("OID %u does not refer to a table", tableoid)));
2678 if (getExtensionOfObject(RelationRelationId, tableoid) !=
2680 ereport(ERROR,
2681 (errcode(ERRCODE_OBJECT_NOT_IN_PREREQUISITE_STATE),
2682 errmsg("table \"%s\" is not a member of the extension being created",
2683 tablename)));
2684
2685 /*
2686 * Add the table OID and WHERE condition to the extension's extconfig and
2687 * extcondition arrays.
2688 *
2689 * If the table is already in extconfig, treat this as an update of the
2690 * WHERE condition.
2691 */
2692
2693 /* Find the pg_extension tuple */
2694 extRel = table_open(ExtensionRelationId, RowExclusiveLock);
2695
2696 ScanKeyInit(&key[0],
2697 Anum_pg_extension_oid,
2698 BTEqualStrategyNumber, F_OIDEQ,
2700
2701 extScan = systable_beginscan(extRel, ExtensionOidIndexId, true,
2702 NULL, 1, key);
2703
2704 extTup = systable_getnext(extScan);
2705
2706 if (!HeapTupleIsValid(extTup)) /* should not happen */
2707 elog(ERROR, "could not find tuple for extension %u",
2709
2710 memset(repl_val, 0, sizeof(repl_val));
2711 memset(repl_null, false, sizeof(repl_null));
2712 memset(repl_repl, false, sizeof(repl_repl));
2713
2714 /* Build or modify the extconfig value */
2715 elementDatum = ObjectIdGetDatum(tableoid);
2716
2717 arrayDatum = heap_getattr(extTup, Anum_pg_extension_extconfig,
2718 RelationGetDescr(extRel), &isnull);
2719 if (isnull)
2720 {
2721 /* Previously empty extconfig, so build 1-element array */
2722 arrayLength = 0;
2723 arrayIndex = 1;
2724
2725 a = construct_array_builtin(&elementDatum, 1, OIDOID);
2726 }
2727 else
2728 {
2729 /* Modify or extend existing extconfig array */
2730 Oid *arrayData;
2731 int i;
2732
2733 a = DatumGetArrayTypeP(arrayDatum);
2734
2735 arrayLength = ARR_DIMS(a)[0];
2736 if (ARR_NDIM(a) != 1 ||
2737 ARR_LBOUND(a)[0] != 1 ||
2738 arrayLength < 0 ||
2739 ARR_HASNULL(a) ||
2740 ARR_ELEMTYPE(a) != OIDOID)
2741 elog(ERROR, "extconfig is not a 1-D Oid array");
2742 arrayData = (Oid *) ARR_DATA_PTR(a);
2743
2744 arrayIndex = arrayLength + 1; /* set up to add after end */
2745
2746 for (i = 0; i < arrayLength; i++)
2747 {
2748 if (arrayData[i] == tableoid)
2749 {
2750 arrayIndex = i + 1; /* replace this element instead */
2751 break;
2752 }
2753 }
2754
2755 a = array_set(a, 1, &arrayIndex,
2756 elementDatum,
2757 false,
2758 -1 /* varlena array */ ,
2759 sizeof(Oid) /* OID's typlen */ ,
2760 true /* OID's typbyval */ ,
2761 TYPALIGN_INT /* OID's typalign */ );
2762 }
2763 repl_val[Anum_pg_extension_extconfig - 1] = PointerGetDatum(a);
2764 repl_repl[Anum_pg_extension_extconfig - 1] = true;
2765
2766 /* Build or modify the extcondition value */
2767 elementDatum = PointerGetDatum(wherecond);
2768
2769 arrayDatum = heap_getattr(extTup, Anum_pg_extension_extcondition,
2770 RelationGetDescr(extRel), &isnull);
2771 if (isnull)
2772 {
2773 if (arrayLength != 0)
2774 elog(ERROR, "extconfig and extcondition arrays do not match");
2775
2776 a = construct_array_builtin(&elementDatum, 1, TEXTOID);
2777 }
2778 else
2779 {
2780 a = DatumGetArrayTypeP(arrayDatum);
2781
2782 if (ARR_NDIM(a) != 1 ||
2783 ARR_LBOUND(a)[0] != 1 ||
2784 ARR_HASNULL(a) ||
2785 ARR_ELEMTYPE(a) != TEXTOID)
2786 elog(ERROR, "extcondition is not a 1-D text array");
2787 if (ARR_DIMS(a)[0] != arrayLength)
2788 elog(ERROR, "extconfig and extcondition arrays do not match");
2789
2790 /* Add or replace at same index as in extconfig */
2791 a = array_set(a, 1, &arrayIndex,
2792 elementDatum,
2793 false,
2794 -1 /* varlena array */ ,
2795 -1 /* TEXT's typlen */ ,
2796 false /* TEXT's typbyval */ ,
2797 TYPALIGN_INT /* TEXT's typalign */ );
2798 }
2799 repl_val[Anum_pg_extension_extcondition - 1] = PointerGetDatum(a);
2800 repl_repl[Anum_pg_extension_extcondition - 1] = true;
2801
2802 extTup = heap_modify_tuple(extTup, RelationGetDescr(extRel),
2803 repl_val, repl_null, repl_repl);
2804
2805 CatalogTupleUpdate(extRel, &extTup->t_self, extTup);
2806
2807 systable_endscan(extScan);
2808
2810
2812}
2813
2814/*
2815 * pg_get_loaded_modules
2816 *
2817 * SQL-callable function to get per-loaded-module information. Modules
2818 * (shared libraries) aren't necessarily one-to-one with extensions, but
2819 * they're sufficiently closely related to make this file a good home.
2820 */
2821Datum
2823{
2824 ReturnSetInfo *rsinfo = (ReturnSetInfo *) fcinfo->resultinfo;
2825 DynamicFileList *file_scanner;
2826
2827 /* Build tuplestore to hold the result rows */
2828 InitMaterializedSRF(fcinfo, 0);
2829
2830 for (file_scanner = get_first_loaded_module(); file_scanner != NULL;
2831 file_scanner = get_next_loaded_module(file_scanner))
2832 {
2833 const char *library_path,
2834 *module_name,
2835 *module_version;
2836 const char *sep;
2837 Datum values[3] = {0};
2838 bool nulls[3] = {0};
2839
2840 get_loaded_module_details(file_scanner,
2841 &library_path,
2842 &module_name,
2843 &module_version);
2844
2845 if (module_name == NULL)
2846 nulls[0] = true;
2847 else
2848 values[0] = CStringGetTextDatum(module_name);
2849 if (module_version == NULL)
2850 nulls[1] = true;
2851 else
2852 values[1] = CStringGetTextDatum(module_version);
2853
2854 /* For security reasons, we don't show the directory path */
2855 sep = last_dir_separator(library_path);
2856 if (sep)
2857 library_path = sep + 1;
2858 values[2] = CStringGetTextDatum(library_path);
2859
2860 tuplestore_putvalues(rsinfo->setResult, rsinfo->setDesc,
2861 values, nulls);
2862 }
2863
2864 return (Datum) 0;
2865}
2866
2867/*
2868 * extension_config_remove
2869 *
2870 * Remove the specified table OID from extension's extconfig, if present.
2871 * This is not currently exposed as a function, but it could be;
2872 * for now, we just invoke it from ALTER EXTENSION DROP.
2873 */
2874static void
2875extension_config_remove(Oid extensionoid, Oid tableoid)
2876{
2877 Relation extRel;
2878 ScanKeyData key[1];
2879 SysScanDesc extScan;
2880 HeapTuple extTup;
2881 Datum arrayDatum;
2882 int arrayLength;
2883 int arrayIndex;
2884 bool isnull;
2885 Datum repl_val[Natts_pg_extension];
2886 bool repl_null[Natts_pg_extension];
2887 bool repl_repl[Natts_pg_extension];
2888 ArrayType *a;
2889
2890 /* Find the pg_extension tuple */
2891 extRel = table_open(ExtensionRelationId, RowExclusiveLock);
2892
2893 ScanKeyInit(&key[0],
2894 Anum_pg_extension_oid,
2895 BTEqualStrategyNumber, F_OIDEQ,
2896 ObjectIdGetDatum(extensionoid));
2897
2898 extScan = systable_beginscan(extRel, ExtensionOidIndexId, true,
2899 NULL, 1, key);
2900
2901 extTup = systable_getnext(extScan);
2902
2903 if (!HeapTupleIsValid(extTup)) /* should not happen */
2904 elog(ERROR, "could not find tuple for extension %u",
2905 extensionoid);
2906
2907 /* Search extconfig for the tableoid */
2908 arrayDatum = heap_getattr(extTup, Anum_pg_extension_extconfig,
2909 RelationGetDescr(extRel), &isnull);
2910 if (isnull)
2911 {
2912 /* nothing to do */
2913 a = NULL;
2914 arrayLength = 0;
2915 arrayIndex = -1;
2916 }
2917 else
2918 {
2919 Oid *arrayData;
2920 int i;
2921
2922 a = DatumGetArrayTypeP(arrayDatum);
2923
2924 arrayLength = ARR_DIMS(a)[0];
2925 if (ARR_NDIM(a) != 1 ||
2926 ARR_LBOUND(a)[0] != 1 ||
2927 arrayLength < 0 ||
2928 ARR_HASNULL(a) ||
2929 ARR_ELEMTYPE(a) != OIDOID)
2930 elog(ERROR, "extconfig is not a 1-D Oid array");
2931 arrayData = (Oid *) ARR_DATA_PTR(a);
2932
2933 arrayIndex = -1; /* flag for no deletion needed */
2934
2935 for (i = 0; i < arrayLength; i++)
2936 {
2937 if (arrayData[i] == tableoid)
2938 {
2939 arrayIndex = i; /* index to remove */
2940 break;
2941 }
2942 }
2943 }
2944
2945 /* If tableoid is not in extconfig, nothing to do */
2946 if (arrayIndex < 0)
2947 {
2948 systable_endscan(extScan);
2950 return;
2951 }
2952
2953 /* Modify or delete the extconfig value */
2954 memset(repl_val, 0, sizeof(repl_val));
2955 memset(repl_null, false, sizeof(repl_null));
2956 memset(repl_repl, false, sizeof(repl_repl));
2957
2958 if (arrayLength <= 1)
2959 {
2960 /* removing only element, just set array to null */
2961 repl_null[Anum_pg_extension_extconfig - 1] = true;
2962 }
2963 else
2964 {
2965 /* squeeze out the target element */
2966 Datum *dvalues;
2967 int nelems;
2968 int i;
2969
2970 /* We already checked there are no nulls */
2971 deconstruct_array_builtin(a, OIDOID, &dvalues, NULL, &nelems);
2972
2973 for (i = arrayIndex; i < arrayLength - 1; i++)
2974 dvalues[i] = dvalues[i + 1];
2975
2976 a = construct_array_builtin(dvalues, arrayLength - 1, OIDOID);
2977
2978 repl_val[Anum_pg_extension_extconfig - 1] = PointerGetDatum(a);
2979 }
2980 repl_repl[Anum_pg_extension_extconfig - 1] = true;
2981
2982 /* Modify or delete the extcondition value */
2983 arrayDatum = heap_getattr(extTup, Anum_pg_extension_extcondition,
2984 RelationGetDescr(extRel), &isnull);
2985 if (isnull)
2986 {
2987 elog(ERROR, "extconfig and extcondition arrays do not match");
2988 }
2989 else
2990 {
2991 a = DatumGetArrayTypeP(arrayDatum);
2992
2993 if (ARR_NDIM(a) != 1 ||
2994 ARR_LBOUND(a)[0] != 1 ||
2995 ARR_HASNULL(a) ||
2996 ARR_ELEMTYPE(a) != TEXTOID)
2997 elog(ERROR, "extcondition is not a 1-D text array");
2998 if (ARR_DIMS(a)[0] != arrayLength)
2999 elog(ERROR, "extconfig and extcondition arrays do not match");
3000 }
3001
3002 if (arrayLength <= 1)
3003 {
3004 /* removing only element, just set array to null */
3005 repl_null[Anum_pg_extension_extcondition - 1] = true;
3006 }
3007 else
3008 {
3009 /* squeeze out the target element */
3010 Datum *dvalues;
3011 int nelems;
3012 int i;
3013
3014 /* We already checked there are no nulls */
3015 deconstruct_array_builtin(a, TEXTOID, &dvalues, NULL, &nelems);
3016
3017 for (i = arrayIndex; i < arrayLength - 1; i++)
3018 dvalues[i] = dvalues[i + 1];
3019
3020 a = construct_array_builtin(dvalues, arrayLength - 1, TEXTOID);
3021
3022 repl_val[Anum_pg_extension_extcondition - 1] = PointerGetDatum(a);
3023 }
3024 repl_repl[Anum_pg_extension_extcondition - 1] = true;
3025
3026 extTup = heap_modify_tuple(extTup, RelationGetDescr(extRel),
3027 repl_val, repl_null, repl_repl);
3028
3029 CatalogTupleUpdate(extRel, &extTup->t_self, extTup);
3030
3031 systable_endscan(extScan);
3032
3034}
3035
3036/*
3037 * Execute ALTER EXTENSION SET SCHEMA
3038 */
3040AlterExtensionNamespace(const char *extensionName, const char *newschema, Oid *oldschema)
3041{
3042 Oid extensionOid;
3043 Oid nspOid;
3044 Oid oldNspOid;
3045 AclResult aclresult;
3046 Relation extRel;
3047 ScanKeyData key[2];
3048 SysScanDesc extScan;
3049 HeapTuple extTup;
3050 Form_pg_extension extForm;
3051 Relation depRel;
3052 SysScanDesc depScan;
3053 HeapTuple depTup;
3054 ObjectAddresses *objsMoved;
3055 ObjectAddress extAddr;
3056
3057 extensionOid = get_extension_oid(extensionName, false);
3058
3059 nspOid = LookupCreationNamespace(newschema);
3060
3061 /*
3062 * Permission check: must own extension. Note that we don't bother to
3063 * check ownership of the individual member objects ...
3064 */
3065 if (!object_ownercheck(ExtensionRelationId, extensionOid, GetUserId()))
3067 extensionName);
3068
3069 /* Permission check: must have creation rights in target namespace */
3070 aclresult = object_aclcheck(NamespaceRelationId, nspOid, GetUserId(), ACL_CREATE);
3071 if (aclresult != ACLCHECK_OK)
3072 aclcheck_error(aclresult, OBJECT_SCHEMA, newschema);
3073
3074 /*
3075 * If the schema is currently a member of the extension, disallow moving
3076 * the extension into the schema. That would create a dependency loop.
3077 */
3078 if (getExtensionOfObject(NamespaceRelationId, nspOid) == extensionOid)
3079 ereport(ERROR,
3080 (errcode(ERRCODE_OBJECT_NOT_IN_PREREQUISITE_STATE),
3081 errmsg("cannot move extension \"%s\" into schema \"%s\" "
3082 "because the extension contains the schema",
3083 extensionName, newschema)));
3084
3085 /* Locate the pg_extension tuple */
3086 extRel = table_open(ExtensionRelationId, RowExclusiveLock);
3087
3088 ScanKeyInit(&key[0],
3089 Anum_pg_extension_oid,
3090 BTEqualStrategyNumber, F_OIDEQ,
3091 ObjectIdGetDatum(extensionOid));
3092
3093 extScan = systable_beginscan(extRel, ExtensionOidIndexId, true,
3094 NULL, 1, key);
3095
3096 extTup = systable_getnext(extScan);
3097
3098 if (!HeapTupleIsValid(extTup)) /* should not happen */
3099 elog(ERROR, "could not find tuple for extension %u",
3100 extensionOid);
3101
3102 /* Copy tuple so we can modify it below */
3103 extTup = heap_copytuple(extTup);
3104 extForm = (Form_pg_extension) GETSTRUCT(extTup);
3105
3106 systable_endscan(extScan);
3107
3108 /*
3109 * If the extension is already in the target schema, just silently do
3110 * nothing.
3111 */
3112 if (extForm->extnamespace == nspOid)
3113 {
3115 return InvalidObjectAddress;
3116 }
3117
3118 /* Check extension is supposed to be relocatable */
3119 if (!extForm->extrelocatable)
3120 ereport(ERROR,
3121 (errcode(ERRCODE_FEATURE_NOT_SUPPORTED),
3122 errmsg("extension \"%s\" does not support SET SCHEMA",
3123 NameStr(extForm->extname))));
3124
3125 objsMoved = new_object_addresses();
3126
3127 /* store the OID of the namespace to-be-changed */
3128 oldNspOid = extForm->extnamespace;
3129
3130 /*
3131 * Scan pg_depend to find objects that depend directly on the extension,
3132 * and alter each one's schema.
3133 */
3134 depRel = table_open(DependRelationId, AccessShareLock);
3135
3136 ScanKeyInit(&key[0],
3137 Anum_pg_depend_refclassid,
3138 BTEqualStrategyNumber, F_OIDEQ,
3139 ObjectIdGetDatum(ExtensionRelationId));
3140 ScanKeyInit(&key[1],
3141 Anum_pg_depend_refobjid,
3142 BTEqualStrategyNumber, F_OIDEQ,
3143 ObjectIdGetDatum(extensionOid));
3144
3145 depScan = systable_beginscan(depRel, DependReferenceIndexId, true,
3146 NULL, 2, key);
3147
3148 while (HeapTupleIsValid(depTup = systable_getnext(depScan)))
3149 {
3150 Form_pg_depend pg_depend = (Form_pg_depend) GETSTRUCT(depTup);
3151 ObjectAddress dep;
3152 Oid dep_oldNspOid;
3153
3154 /*
3155 * If a dependent extension has a no_relocate request for this
3156 * extension, disallow SET SCHEMA. (XXX it's a bit ugly to do this in
3157 * the same loop that's actually executing the renames: we may detect
3158 * the error condition only after having expended a fair amount of
3159 * work. However, the alternative is to do two scans of pg_depend,
3160 * which seems like optimizing for failure cases. The rename work
3161 * will all roll back cleanly enough if we do fail here.)
3162 */
3163 if (pg_depend->deptype == DEPENDENCY_NORMAL &&
3164 pg_depend->classid == ExtensionRelationId)
3165 {
3166 char *depextname = get_extension_name(pg_depend->objid);
3167 ExtensionControlFile *dcontrol;
3168 ListCell *lc;
3169
3170 dcontrol = read_extension_control_file(depextname);
3171 foreach(lc, dcontrol->no_relocate)
3172 {
3173 char *nrextname = (char *) lfirst(lc);
3174
3175 if (strcmp(nrextname, NameStr(extForm->extname)) == 0)
3176 {
3177 ereport(ERROR,
3178 (errcode(ERRCODE_FEATURE_NOT_SUPPORTED),
3179 errmsg("cannot SET SCHEMA of extension \"%s\" because other extensions prevent it",
3180 NameStr(extForm->extname)),
3181 errdetail("Extension \"%s\" requests no relocation of extension \"%s\".",
3182 depextname,
3183 NameStr(extForm->extname))));
3184 }
3185 }
3186 }
3187
3188 /*
3189 * Otherwise, ignore non-membership dependencies. (Currently, the
3190 * only other case we could see here is a normal dependency from
3191 * another extension.)
3192 */
3193 if (pg_depend->deptype != DEPENDENCY_EXTENSION)
3194 continue;
3195
3196 dep.classId = pg_depend->classid;
3197 dep.objectId = pg_depend->objid;
3198 dep.objectSubId = pg_depend->objsubid;
3199
3200 if (dep.objectSubId != 0) /* should not happen */
3201 elog(ERROR, "extension should not have a sub-object dependency");
3202
3203 /* Relocate the object */
3204 dep_oldNspOid = AlterObjectNamespace_oid(dep.classId,
3205 dep.objectId,
3206 nspOid,
3207 objsMoved);
3208
3209 /*
3210 * If not all the objects had the same old namespace (ignoring any
3211 * that are not in namespaces or are dependent types), complain.
3212 */
3213 if (dep_oldNspOid != InvalidOid && dep_oldNspOid != oldNspOid)
3214 ereport(ERROR,
3215 (errcode(ERRCODE_FEATURE_NOT_SUPPORTED),
3216 errmsg("extension \"%s\" does not support SET SCHEMA",
3217 NameStr(extForm->extname)),
3218 errdetail("%s is not in the extension's schema \"%s\"",
3219 getObjectDescription(&dep, false),
3220 get_namespace_name(oldNspOid))));
3221 }
3222
3223 /* report old schema, if caller wants it */
3224 if (oldschema)
3225 *oldschema = oldNspOid;
3226
3227 systable_endscan(depScan);
3228
3230
3231 /* Now adjust pg_extension.extnamespace */
3232 extForm->extnamespace = nspOid;
3233
3234 CatalogTupleUpdate(extRel, &extTup->t_self, extTup);
3235
3237
3238 /* update dependency to point to the new schema */
3239 if (changeDependencyFor(ExtensionRelationId, extensionOid,
3240 NamespaceRelationId, oldNspOid, nspOid) != 1)
3241 elog(ERROR, "could not change schema dependency for extension %s",
3242 NameStr(extForm->extname));
3243
3244 InvokeObjectPostAlterHook(ExtensionRelationId, extensionOid, 0);
3245
3246 ObjectAddressSet(extAddr, ExtensionRelationId, extensionOid);
3247
3248 return extAddr;
3249}
3250
3251/*
3252 * Execute ALTER EXTENSION UPDATE
3253 */
3256{
3257 DefElem *d_new_version = NULL;
3258 char *versionName;
3259 char *oldVersionName;
3260 ExtensionControlFile *control;
3261 Oid extensionOid;
3262 Relation extRel;
3263 ScanKeyData key[1];
3264 SysScanDesc extScan;
3265 HeapTuple extTup;
3266 List *updateVersions;
3267 Datum datum;
3268 bool isnull;
3269 ListCell *lc;
3270 ObjectAddress address;
3271
3272 /*
3273 * We use global variables to track the extension being created, so we can
3274 * create/update only one extension at the same time.
3275 */
3277 ereport(ERROR,
3278 (errcode(ERRCODE_FEATURE_NOT_SUPPORTED),
3279 errmsg("nested ALTER EXTENSION is not supported")));
3280
3281 /*
3282 * Look up the extension --- it must already exist in pg_extension
3283 */
3284 extRel = table_open(ExtensionRelationId, AccessShareLock);
3285
3286 ScanKeyInit(&key[0],
3287 Anum_pg_extension_extname,
3288 BTEqualStrategyNumber, F_NAMEEQ,
3289 CStringGetDatum(stmt->extname));
3290
3291 extScan = systable_beginscan(extRel, ExtensionNameIndexId, true,
3292 NULL, 1, key);
3293
3294 extTup = systable_getnext(extScan);
3295
3296 if (!HeapTupleIsValid(extTup))
3297 ereport(ERROR,
3298 (errcode(ERRCODE_UNDEFINED_OBJECT),
3299 errmsg("extension \"%s\" does not exist",
3300 stmt->extname)));
3301
3302 extensionOid = ((Form_pg_extension) GETSTRUCT(extTup))->oid;
3303
3304 /*
3305 * Determine the existing version we are updating from
3306 */
3307 datum = heap_getattr(extTup, Anum_pg_extension_extversion,
3308 RelationGetDescr(extRel), &isnull);
3309 if (isnull)
3310 elog(ERROR, "extversion is null");
3311 oldVersionName = text_to_cstring(DatumGetTextPP(datum));
3312
3313 systable_endscan(extScan);
3314
3316
3317 /* Permission check: must own extension */
3318 if (!object_ownercheck(ExtensionRelationId, extensionOid, GetUserId()))
3320 stmt->extname);
3321
3322 /*
3323 * Read the primary control file. Note we assume that it does not contain
3324 * any non-ASCII data, so there is no need to worry about encoding at this
3325 * point.
3326 */
3327 control = read_extension_control_file(stmt->extname);
3328
3329 /*
3330 * Read the statement option list
3331 */
3332 foreach(lc, stmt->options)
3333 {
3334 DefElem *defel = (DefElem *) lfirst(lc);
3335
3336 if (strcmp(defel->defname, "new_version") == 0)
3337 {
3338 if (d_new_version)
3339 errorConflictingDefElem(defel, pstate);
3340 d_new_version = defel;
3341 }
3342 else
3343 elog(ERROR, "unrecognized option: %s", defel->defname);
3344 }
3345
3346 /*
3347 * Determine the version to update to
3348 */
3349 if (d_new_version && d_new_version->arg)
3350 versionName = strVal(d_new_version->arg);
3351 else if (control->default_version)
3352 versionName = control->default_version;
3353 else
3354 {
3355 ereport(ERROR,
3356 (errcode(ERRCODE_INVALID_PARAMETER_VALUE),
3357 errmsg("version to install must be specified")));
3358 versionName = NULL; /* keep compiler quiet */
3359 }
3360 check_valid_version_name(versionName);
3361
3362 /*
3363 * If we're already at that version, just say so
3364 */
3365 if (strcmp(oldVersionName, versionName) == 0)
3366 {
3368 (errmsg("version \"%s\" of extension \"%s\" is already installed",
3369 versionName, stmt->extname)));
3370 return InvalidObjectAddress;
3371 }
3372
3373 /*
3374 * Identify the series of update script files we need to execute
3375 */
3376 updateVersions = identify_update_path(control,
3377 oldVersionName,
3378 versionName);
3379
3380 /*
3381 * Update the pg_extension row and execute the update scripts, one at a
3382 * time
3383 */
3384 ApplyExtensionUpdates(extensionOid, control,
3385 oldVersionName, updateVersions,
3386 NULL, false, false);
3387
3388 ObjectAddressSet(address, ExtensionRelationId, extensionOid);
3389
3390 return address;
3391}
3392
3393/*
3394 * Apply a series of update scripts as though individual ALTER EXTENSION
3395 * UPDATE commands had been given, including altering the pg_extension row
3396 * and dependencies each time.
3397 *
3398 * This might be more work than necessary, but it ensures that old update
3399 * scripts don't break if newer versions have different control parameters.
3400 */
3401static void
3403 ExtensionControlFile *pcontrol,
3404 const char *initialVersion,
3405 List *updateVersions,
3406 char *origSchemaName,
3407 bool cascade,
3408 bool is_create)
3409{
3410 const char *oldVersionName = initialVersion;
3411 ListCell *lcv;
3412
3413 foreach(lcv, updateVersions)
3414 {
3415 char *versionName = (char *) lfirst(lcv);
3416 ExtensionControlFile *control;
3417 char *schemaName;
3418 Oid schemaOid;
3419 List *requiredExtensions;
3420 List *requiredSchemas;
3421 Relation extRel;
3422 ScanKeyData key[1];
3423 SysScanDesc extScan;
3424 HeapTuple extTup;
3425 Form_pg_extension extForm;
3426 Datum values[Natts_pg_extension];
3427 bool nulls[Natts_pg_extension];
3428 bool repl[Natts_pg_extension];
3429 ObjectAddress myself;
3430 ListCell *lc;
3431
3432 /*
3433 * Fetch parameters for specific version (pcontrol is not changed)
3434 */
3435 control = read_extension_aux_control_file(pcontrol, versionName);
3436
3437 /* Find the pg_extension tuple */
3438 extRel = table_open(ExtensionRelationId, RowExclusiveLock);
3439
3440 ScanKeyInit(&key[0],
3441 Anum_pg_extension_oid,
3442 BTEqualStrategyNumber, F_OIDEQ,
3443 ObjectIdGetDatum(extensionOid));
3444
3445 extScan = systable_beginscan(extRel, ExtensionOidIndexId, true,
3446 NULL, 1, key);
3447
3448 extTup = systable_getnext(extScan);
3449
3450 if (!HeapTupleIsValid(extTup)) /* should not happen */
3451 elog(ERROR, "could not find tuple for extension %u",
3452 extensionOid);
3453
3454 extForm = (Form_pg_extension) GETSTRUCT(extTup);
3455
3456 /*
3457 * Determine the target schema (set by original install)
3458 */
3459 schemaOid = extForm->extnamespace;
3460 schemaName = get_namespace_name(schemaOid);
3461
3462 /*
3463 * Modify extrelocatable and extversion in the pg_extension tuple
3464 */
3465 memset(values, 0, sizeof(values));
3466 memset(nulls, 0, sizeof(nulls));
3467 memset(repl, 0, sizeof(repl));
3468
3469 values[Anum_pg_extension_extrelocatable - 1] =
3470 BoolGetDatum(control->relocatable);
3471 repl[Anum_pg_extension_extrelocatable - 1] = true;
3472 values[Anum_pg_extension_extversion - 1] =
3473 CStringGetTextDatum(versionName);
3474 repl[Anum_pg_extension_extversion - 1] = true;
3475
3476 extTup = heap_modify_tuple(extTup, RelationGetDescr(extRel),
3477 values, nulls, repl);
3478
3479 CatalogTupleUpdate(extRel, &extTup->t_self, extTup);
3480
3481 systable_endscan(extScan);
3482
3484
3485 /*
3486 * Look up the prerequisite extensions for this version, install them
3487 * if necessary, and build lists of their OIDs and the OIDs of their
3488 * target schemas.
3489 */
3490 requiredExtensions = NIL;
3491 requiredSchemas = NIL;
3492 foreach(lc, control->requires)
3493 {
3494 char *curreq = (char *) lfirst(lc);
3495 Oid reqext;
3496 Oid reqschema;
3497
3498 reqext = get_required_extension(curreq,
3499 control->name,
3500 origSchemaName,
3501 cascade,
3502 NIL,
3503 is_create);
3504 reqschema = get_extension_schema(reqext);
3505 requiredExtensions = lappend_oid(requiredExtensions, reqext);
3506 requiredSchemas = lappend_oid(requiredSchemas, reqschema);
3507 }
3508
3509 /*
3510 * Remove and recreate dependencies on prerequisite extensions
3511 */
3512 deleteDependencyRecordsForClass(ExtensionRelationId, extensionOid,
3513 ExtensionRelationId,
3515
3516 myself.classId = ExtensionRelationId;
3517 myself.objectId = extensionOid;
3518 myself.objectSubId = 0;
3519
3520 foreach(lc, requiredExtensions)
3521 {
3522 Oid reqext = lfirst_oid(lc);
3523 ObjectAddress otherext;
3524
3525 otherext.classId = ExtensionRelationId;
3526 otherext.objectId = reqext;
3527 otherext.objectSubId = 0;
3528
3529 recordDependencyOn(&myself, &otherext, DEPENDENCY_NORMAL);
3530 }
3531
3532 InvokeObjectPostAlterHook(ExtensionRelationId, extensionOid, 0);
3533
3534 /*
3535 * Finally, execute the update script file
3536 */
3537 execute_extension_script(extensionOid, control,
3538 oldVersionName, versionName,
3539 requiredSchemas,
3540 schemaName);
3541
3542 /*
3543 * Update prior-version name and loop around. Since
3544 * execute_sql_string did a final CommandCounterIncrement, we can
3545 * update the pg_extension row again.
3546 */
3547 oldVersionName = versionName;
3548 }
3549}
3550
3551/*
3552 * Execute ALTER EXTENSION ADD/DROP
3553 *
3554 * Return value is the address of the altered extension.
3555 *
3556 * objAddr is an output argument which, if not NULL, is set to the address of
3557 * the added/dropped object.
3558 */
3561 ObjectAddress *objAddr)
3562{
3563 ObjectAddress extension;
3564 ObjectAddress object;
3565 Relation relation;
3566
3567 switch (stmt->objtype)
3568 {
3569 case OBJECT_DATABASE:
3570 case OBJECT_EXTENSION:
3571 case OBJECT_INDEX:
3572 case OBJECT_PUBLICATION:
3573 case OBJECT_ROLE:
3576 case OBJECT_TABLESPACE:
3577 ereport(ERROR,
3578 (errcode(ERRCODE_INVALID_OBJECT_DEFINITION),
3579 errmsg("cannot add an object of this type to an extension")));
3580 break;
3581 default:
3582 /* OK */
3583 break;
3584 }
3585
3586 /*
3587 * Find the extension and acquire a lock on it, to ensure it doesn't get
3588 * dropped concurrently. A sharable lock seems sufficient: there's no
3589 * reason not to allow other sorts of manipulations, such as add/drop of
3590 * other objects, to occur concurrently. Concurrently adding/dropping the
3591 * *same* object would be bad, but we prevent that by using a non-sharable
3592 * lock on the individual object, below.
3593 */
3595 (Node *) makeString(stmt->extname),
3596 &relation, AccessShareLock, false);
3597
3598 /* Permission check: must own extension */
3599 if (!object_ownercheck(ExtensionRelationId, extension.objectId, GetUserId()))
3601 stmt->extname);
3602
3603 /*
3604 * Translate the parser representation that identifies the object into an
3605 * ObjectAddress. get_object_address() will throw an error if the object
3606 * does not exist, and will also acquire a lock on the object to guard
3607 * against concurrent DROP and ALTER EXTENSION ADD/DROP operations.
3608 */
3609 object = get_object_address(stmt->objtype, stmt->object,
3610 &relation, ShareUpdateExclusiveLock, false);
3611
3612 Assert(object.objectSubId == 0);
3613 if (objAddr)
3614 *objAddr = object;
3615
3616 /* Permission check: must own target object, too */
3617 check_object_ownership(GetUserId(), stmt->objtype, object,
3618 stmt->object, relation);
3619
3620 /* Do the update, recursing to any dependent objects */
3621 ExecAlterExtensionContentsRecurse(stmt, extension, object);
3622
3623 /* Finish up */
3624 InvokeObjectPostAlterHook(ExtensionRelationId, extension.objectId, 0);
3625
3626 /*
3627 * If get_object_address() opened the relation for us, we close it to keep
3628 * the reference count correct - but we retain any locks acquired by
3629 * get_object_address() until commit time, to guard against concurrent
3630 * activity.
3631 */
3632 if (relation != NULL)
3633 relation_close(relation, NoLock);
3634
3635 return extension;
3636}
3637
3638/*
3639 * ExecAlterExtensionContentsRecurse
3640 * Subroutine for ExecAlterExtensionContentsStmt
3641 *
3642 * Do the bare alteration of object's membership in extension,
3643 * without permission checks. Recurse to dependent objects, if any.
3644 */
3645static void
3647 ObjectAddress extension,
3648 ObjectAddress object)
3649{
3650 Oid oldExtension;
3651
3652 /*
3653 * Check existing extension membership.
3654 */
3655 oldExtension = getExtensionOfObject(object.classId, object.objectId);
3656
3657 if (stmt->action > 0)
3658 {
3659 /*
3660 * ADD, so complain if object is already attached to some extension.
3661 */
3662 if (OidIsValid(oldExtension))
3663 ereport(ERROR,
3664 (errcode(ERRCODE_OBJECT_NOT_IN_PREREQUISITE_STATE),
3665 errmsg("%s is already a member of extension \"%s\"",
3666 getObjectDescription(&object, false),
3667 get_extension_name(oldExtension))));
3668
3669 /*
3670 * Prevent a schema from being added to an extension if the schema
3671 * contains the extension. That would create a dependency loop.
3672 */
3673 if (object.classId == NamespaceRelationId &&
3674 object.objectId == get_extension_schema(extension.objectId))
3675 ereport(ERROR,
3676 (errcode(ERRCODE_OBJECT_NOT_IN_PREREQUISITE_STATE),
3677 errmsg("cannot add schema \"%s\" to extension \"%s\" "
3678 "because the schema contains the extension",
3679 get_namespace_name(object.objectId),
3680 stmt->extname)));
3681
3682 /*
3683 * OK, add the dependency.
3684 */
3685 recordDependencyOn(&object, &extension, DEPENDENCY_EXTENSION);
3686
3687 /*
3688 * Also record the initial ACL on the object, if any.
3689 *
3690 * Note that this will handle the object's ACLs, as well as any ACLs
3691 * on object subIds. (In other words, when the object is a table,
3692 * this will record the table's ACL and the ACLs for the columns on
3693 * the table, if any).
3694 */
3695 recordExtObjInitPriv(object.objectId, object.classId);
3696 }
3697 else
3698 {
3699 /*
3700 * DROP, so complain if it's not a member.
3701 */
3702 if (oldExtension != extension.objectId)
3703 ereport(ERROR,
3704 (errcode(ERRCODE_OBJECT_NOT_IN_PREREQUISITE_STATE),
3705 errmsg("%s is not a member of extension \"%s\"",
3706 getObjectDescription(&object, false),
3707 stmt->extname)));
3708
3709 /*
3710 * OK, drop the dependency.
3711 */
3712 if (deleteDependencyRecordsForClass(object.classId, object.objectId,
3713 ExtensionRelationId,
3715 elog(ERROR, "unexpected number of extension dependency records");
3716
3717 /*
3718 * If it's a relation, it might have an entry in the extension's
3719 * extconfig array, which we must remove.
3720 */
3721 if (object.classId == RelationRelationId)
3722 extension_config_remove(extension.objectId, object.objectId);
3723
3724 /*
3725 * Remove all the initial ACLs, if any.
3726 *
3727 * Note that this will remove the object's ACLs, as well as any ACLs
3728 * on object subIds. (In other words, when the object is a table,
3729 * this will remove the table's ACL and the ACLs for the columns on
3730 * the table, if any).
3731 */
3732 removeExtObjInitPriv(object.objectId, object.classId);
3733 }
3734
3735 /*
3736 * Recurse to any dependent objects; currently, this includes the array
3737 * type of a base type, the multirange type associated with a range type,
3738 * and the rowtype of a table.
3739 */
3740 if (object.classId == TypeRelationId)
3741 {
3742 ObjectAddress depobject;
3743
3744 depobject.classId = TypeRelationId;
3745 depobject.objectSubId = 0;
3746
3747 /* If it has an array type, update that too */
3748 depobject.objectId = get_array_type(object.objectId);
3749 if (OidIsValid(depobject.objectId))
3750 ExecAlterExtensionContentsRecurse(stmt, extension, depobject);
3751
3752 /* If it is a range type, update the associated multirange too */
3753 if (type_is_range(object.objectId))
3754 {
3755 depobject.objectId = get_range_multirange(object.objectId);
3756 if (!OidIsValid(depobject.objectId))
3757 ereport(ERROR,
3758 (errcode(ERRCODE_UNDEFINED_OBJECT),
3759 errmsg("could not find multirange type for data type %s",
3760 format_type_be(object.objectId))));
3761 ExecAlterExtensionContentsRecurse(stmt, extension, depobject);
3762 }
3763 }
3764 if (object.classId == RelationRelationId)
3765 {
3766 ObjectAddress depobject;
3767
3768 depobject.classId = TypeRelationId;
3769 depobject.objectSubId = 0;
3770
3771 /* It might not have a rowtype, but if it does, update that */
3772 depobject.objectId = get_rel_type_id(object.objectId);
3773 if (OidIsValid(depobject.objectId))
3774 ExecAlterExtensionContentsRecurse(stmt, extension, depobject);
3775 }
3776}
3777
3778/*
3779 * Read the whole of file into memory.
3780 *
3781 * The file contents are returned as a single palloc'd chunk. For convenience
3782 * of the callers, an extra \0 byte is added to the end. That is not counted
3783 * in the length returned into *length.
3784 */
3785static char *
3786read_whole_file(const char *filename, int *length)
3787{
3788 char *buf;
3789 FILE *file;
3790 size_t bytes_to_read;
3791 struct stat fst;
3792
3793 if (stat(filename, &fst) < 0)
3794 ereport(ERROR,
3796 errmsg("could not stat file \"%s\": %m", filename)));
3797
3798 if (fst.st_size > (MaxAllocSize - 1))
3799 ereport(ERROR,
3800 (errcode(ERRCODE_PROGRAM_LIMIT_EXCEEDED),
3801 errmsg("file \"%s\" is too large", filename)));
3802 bytes_to_read = (size_t) fst.st_size;
3803
3804 if ((file = AllocateFile(filename, PG_BINARY_R)) == NULL)
3805 ereport(ERROR,
3807 errmsg("could not open file \"%s\" for reading: %m",
3808 filename)));
3809
3810 buf = (char *) palloc(bytes_to_read + 1);
3811
3812 bytes_to_read = fread(buf, 1, bytes_to_read, file);
3813
3814 if (ferror(file))
3815 ereport(ERROR,
3817 errmsg("could not read file \"%s\": %m", filename)));
3818
3819 FreeFile(file);
3820
3821 buf[bytes_to_read] = '\0';
3822
3823 /*
3824 * On Windows, manually convert Windows-style newlines (\r\n) to the Unix
3825 * convention of \n only. This avoids gotchas due to script files
3826 * possibly getting converted when being transferred between platforms.
3827 * Ideally we'd do this by using text mode to read the file, but that also
3828 * causes control-Z to be treated as end-of-file. Historically we've
3829 * allowed control-Z in script files, so breaking that seems unwise.
3830 */
3831#ifdef WIN32
3832 {
3833 char *s,
3834 *d;
3835
3836 for (s = d = buf; *s; s++)
3837 {
3838 if (!(*s == '\r' && s[1] == '\n'))
3839 *d++ = *s;
3840 }
3841 *d = '\0';
3842 bytes_to_read = d - buf;
3843 }
3844#endif
3845
3846 *length = bytes_to_read;
3847 return buf;
3848}
3849
3850static ExtensionControlFile *
3851new_ExtensionControlFile(const char *extname)
3852{
3853 /*
3854 * Set up default values. Pointer fields are initially null.
3855 */
3857
3858 control->name = pstrdup(extname);
3859 control->relocatable = false;
3860 control->superuser = true;
3861 control->trusted = false;
3862 control->encoding = -1;
3863
3864 return control;
3865}
3866
3867/*
3868 * Work in a very similar way with find_in_path but it receives an already
3869 * parsed List of paths to search the basename and it do not support macro
3870 * replacement or custom error messages (for simplicity).
3871 *
3872 * By "already parsed List of paths" this function expected that paths already
3873 * have all macros replaced.
3874 */
3875char *
3876find_in_paths(const char *basename, List *paths)
3877{
3878 ListCell *cell;
3879
3880 foreach(cell, paths)
3881 {
3882 char *path = lfirst(cell);
3883 char *full;
3884
3885 Assert(path != NULL);
3886
3887 path = pstrdup(path);
3888 canonicalize_path(path);
3889
3890 /* only absolute paths */
3891 if (!is_absolute_path(path))
3892 ereport(ERROR,
3893 errcode(ERRCODE_INVALID_NAME),
3894 errmsg("component in parameter \"%s\" is not an absolute path", "extension_control_path"));
3895
3896 full = psprintf("%s/%s", path, basename);
3897
3898 if (pg_file_exists(full))
3899 return full;
3900
3901 pfree(path);
3902 pfree(full);
3903 }
3904
3905 return NULL;
3906}
AclResult
Definition: acl.h:182
@ ACLCHECK_OK
Definition: acl.h:183
@ ACLCHECK_NOT_OWNER
Definition: acl.h:185
void recordExtObjInitPriv(Oid objoid, Oid classoid)
Definition: aclchk.c:4339
void aclcheck_error(AclResult aclerr, ObjectType objtype, const char *objectname)
Definition: aclchk.c:2639
AclResult object_aclcheck(Oid classid, Oid objectid, Oid roleid, AclMode mode)
Definition: aclchk.c:3821
bool object_ownercheck(Oid classid, Oid objectid, Oid roleid)
Definition: aclchk.c:4075
void removeExtObjInitPriv(Oid objoid, Oid classoid)
Definition: aclchk.c:4503
Oid AlterObjectNamespace_oid(Oid classId, Oid objid, Oid nspOid, ObjectAddresses *objsMoved)
Definition: alter.c:625
#define ARR_NDIM(a)
Definition: array.h:290
#define ARR_DATA_PTR(a)
Definition: array.h:322
#define DatumGetArrayTypeP(X)
Definition: array.h:261
#define ARR_ELEMTYPE(a)
Definition: array.h:292
#define ARR_DIMS(a)
Definition: array.h:294
#define ARR_HASNULL(a)
Definition: array.h:291
#define ARR_LBOUND(a)
Definition: array.h:296
ArrayType * array_set(ArrayType *array, int nSubscripts, int *indx, Datum dataValue, bool isNull, int arraytyplen, int elmlen, bool elmbyval, char elmalign)
Definition: arrayfuncs.c:3163
void deconstruct_array_builtin(ArrayType *array, Oid elmtype, Datum **elemsp, bool **nullsp, int *nelemsp)
Definition: arrayfuncs.c:3697
ArrayType * construct_array_builtin(Datum *elems, int nelems, Oid elmtype)
Definition: arrayfuncs.c:3381
bool parse_bool(const char *value, bool *result)
Definition: bool.c:31
static Datum values[MAXATTR]
Definition: bootstrap.c:151
#define CStringGetTextDatum(s)
Definition: builtins.h:97
#define NameStr(name)
Definition: c.h:717
#define PG_BINARY_R
Definition: c.h:1246
#define OidIsValid(objectId)
Definition: c.h:746
Oid GetNewOidWithIndex(Relation relation, Oid indexId, AttrNumber oidcolumn)
Definition: catalog.c:448
void CreateComments(Oid oid, Oid classoid, int32 subid, const char *comment)
Definition: comment.c:143
#define CONF_FILE_START_DEPTH
Definition: conffiles.h:17
char * defGetString(DefElem *def)
Definition: define.c:35
bool defGetBoolean(DefElem *def)
Definition: define.c:94
void errorConflictingDefElem(DefElem *defel, ParseState *pstate)
Definition: define.c:371
void record_object_address_dependencies(const ObjectAddress *depender, ObjectAddresses *referenced, DependencyType behavior)
Definition: dependency.c:2757
void add_exact_object_address(const ObjectAddress *object, ObjectAddresses *addrs)
Definition: dependency.c:2548
ObjectAddresses * new_object_addresses(void)
Definition: dependency.c:2502
void free_object_addresses(ObjectAddresses *addrs)
Definition: dependency.c:2788
@ DEPENDENCY_EXTENSION
Definition: dependency.h:38
@ DEPENDENCY_NORMAL
Definition: dependency.h:33
DestReceiver * CreateDestReceiver(CommandDest dest)
Definition: dest.c:113
@ DestNone
Definition: dest.h:87
DynamicFileList * get_next_loaded_module(DynamicFileList *dfptr)
Definition: dfmgr.c:416
DynamicFileList * get_first_loaded_module(void)
Definition: dfmgr.c:410
void get_loaded_module_details(DynamicFileList *dfptr, const char **library_path, const char **module_name, const char **module_version)
Definition: dfmgr.c:430
char * substitute_path_macro(const char *str, const char *macro, const char *value)
Definition: dfmgr.c:529
int internalerrquery(const char *query)
Definition: elog.c:1504
int internalerrposition(int cursorpos)
Definition: elog.c:1484
int errcode_for_file_access(void)
Definition: elog.c:877
int errdetail(const char *fmt,...)
Definition: elog.c:1204
ErrorContextCallback * error_context_stack
Definition: elog.c:95
int errhint(const char *fmt,...)
Definition: elog.c:1318
int geterrposition(void)
Definition: elog.c:1600
int errcode(int sqlerrcode)
Definition: elog.c:854
int errmsg(const char *fmt,...)
Definition: elog.c:1071
int errposition(int cursorpos)
Definition: elog.c:1468
#define errcontext
Definition: elog.h:197
#define PG_TRY(...)
Definition: elog.h:371
#define WARNING
Definition: elog.h:36
#define PG_END_TRY(...)
Definition: elog.h:396
#define DEBUG1
Definition: elog.h:30
#define ERROR
Definition: elog.h:39
#define elog(elevel,...)
Definition: elog.h:225
#define NOTICE
Definition: elog.h:35
#define PG_FINALLY(...)
Definition: elog.h:388
#define ereport(elevel,...)
Definition: elog.h:149
void ExecutorEnd(QueryDesc *queryDesc)
Definition: execMain.c:467
void ExecutorFinish(QueryDesc *queryDesc)
Definition: execMain.c:407
void ExecutorStart(QueryDesc *queryDesc, int eflags)
Definition: execMain.c:123
void ExecutorRun(QueryDesc *queryDesc, ScanDirection direction, uint64 count)
Definition: execMain.c:298
static char * get_extension_aux_control_filename(ExtensionControlFile *control, const char *version)
Definition: extension.c:457
Oid get_extension_schema(Oid ext_oid)
Definition: extension.c:211
static bool is_extension_script_filename(const char *filename)
Definition: extension.c:333
static char * read_whole_file(const char *filename, int *length)
Definition: extension.c:3786
ObjectAddress InsertExtensionTuple(const char *extName, Oid extOwner, Oid schemaOid, bool relocatable, const char *extVersion, Datum extConfig, Datum extCondition, List *requiredExtensions)
Definition: extension.c:2063
static void check_valid_extension_name(const char *extensionname)
Definition: extension.c:231
static ExtensionVersionInfo * get_nearest_unprocessed_vertex(List *evi_list)
Definition: extension.c:1373
struct ExtensionVersionInfo ExtensionVersionInfo
ObjectAddress CreateExtension(ParseState *pstate, CreateExtensionStmt *stmt)
Definition: extension.c:1965
static void check_valid_version_name(const char *versionname)
Definition: extension.c:278
static bool is_extension_control_filename(const char *filename)
Definition: extension.c:325
Datum pg_get_loaded_modules(PG_FUNCTION_ARGS)
Definition: extension.c:2822
static Oid get_required_extension(char *reqExtensionName, char *extensionName, char *origSchemaName, bool cascade, List *parents, bool is_create)
Definition: extension.c:1894
static void script_error_callback(void *arg)
Definition: extension.c:775
static ExtensionControlFile * read_extension_aux_control_file(const ExtensionControlFile *pcontrol, const char *version)
Definition: extension.c:719
char * Extension_control_path
Definition: extension.c:74
static void parse_extension_control_file(ExtensionControlFile *control, const char *version)
Definition: extension.c:512
bool creating_extension
Definition: extension.c:77
static List * get_extension_control_directories(void)
Definition: extension.c:344
Datum pg_available_extension_versions(PG_FUNCTION_ARGS)
Definition: extension.c:2291
static void extension_config_remove(Oid extensionoid, Oid tableoid)
Definition: extension.c:2875
static void execute_sql_string(const char *sql, const char *filename)
Definition: extension.c:917
static char * get_extension_script_directory(ExtensionControlFile *control)
Definition: extension.c:438
static char * find_extension_control_filename(ExtensionControlFile *control)
Definition: extension.c:412
ObjectAddress AlterExtensionNamespace(const char *extensionName, const char *newschema, Oid *oldschema)
Definition: extension.c:3040
static ExtensionVersionInfo * find_install_path(List *evi_list, ExtensionVersionInfo *evi_target, List **best_path)
Definition: extension.c:1600
static ExtensionControlFile * read_extension_control_file(const char *extname)
Definition: extension.c:700
ObjectAddress ExecAlterExtensionStmt(ParseState *pstate, AlterExtensionStmt *stmt)
Definition: extension.c:3255
Oid CurrentExtensionObject
Definition: extension.c:78
ObjectAddress ExecAlterExtensionContentsStmt(AlterExtensionContentsStmt *stmt, ObjectAddress *objAddr)
Definition: extension.c:3560
Datum pg_extension_update_paths(PG_FUNCTION_ARGS)
Definition: extension.c:2554
static char * read_extension_script_file(const ExtensionControlFile *control, const char *filename)
Definition: extension.c:742
static void ExecAlterExtensionContentsRecurse(AlterExtensionContentsStmt *stmt, ObjectAddress extension, ObjectAddress object)
Definition: extension.c:3646
Oid get_extension_oid(const char *extname, bool missing_ok)
Definition: extension.c:167
Datum pg_available_extensions(PG_FUNCTION_ARGS)
Definition: extension.c:2205
static ExtensionControlFile * new_ExtensionControlFile(const char *extname)
Definition: extension.c:3851
Datum pg_extension_config_dump(PG_FUNCTION_ARGS)
Definition: extension.c:2639
char * find_in_paths(const char *basename, List *paths)
Definition: extension.c:3876
static Datum convert_requires_to_datum(List *requires)
Definition: extension.c:2528
static List * identify_update_path(ExtensionControlFile *control, const char *oldVersion, const char *newVersion)
Definition: extension.c:1464
static ExtensionVersionInfo * get_ext_ver_info(const char *versionname, List **evi_list)
Definition: extension.c:1340
struct ExtensionControlFile ExtensionControlFile
char * get_extension_name(Oid ext_oid)
Definition: extension.c:189
void RemoveExtensionById(Oid extId)
Definition: extension.c:2151
static void get_available_versions_for_extension(ExtensionControlFile *pcontrol, Tuplestorestate *tupstore, TupleDesc tupdesc)
Definition: extension.c:2355
static List * get_ext_ver_list(ExtensionControlFile *control)
Definition: extension.c:1401
static List * find_update_path(List *evi_list, ExtensionVersionInfo *evi_start, ExtensionVersionInfo *evi_target, bool reject_indirect, bool reinitialize)
Definition: extension.c:1507
static char * get_extension_script_filename(ExtensionControlFile *control, const char *from_version, const char *version)
Definition: extension.c:475
static void execute_extension_script(Oid extensionOid, ExtensionControlFile *control, const char *from_version, const char *version, List *requiredSchemas, const char *schemaName)
Definition: extension.c:1067
bool extension_file_exists(const char *extensionName)
Definition: extension.c:2469
static bool extension_is_trusted(ExtensionControlFile *control)
Definition: extension.c:1045
static void ApplyExtensionUpdates(Oid extensionOid, ExtensionControlFile *pcontrol, const char *initialVersion, List *updateVersions, char *origSchemaName, bool cascade, bool is_create)
Definition: extension.c:3402
static ObjectAddress CreateExtensionInternal(char *extensionName, char *schemaName, const char *versionName, bool cascade, List *parents, bool is_create)
Definition: extension.c:1655
int FreeDir(DIR *dir)
Definition: fd.c:3025
int FreeFile(FILE *file)
Definition: fd.c:2843
bool pg_file_exists(const char *name)
Definition: fd.c:503
DIR * AllocateDir(const char *dirname)
Definition: fd.c:2907
struct dirent * ReadDir(DIR *dir, const char *dirname)
Definition: fd.c:2973
FILE * AllocateFile(const char *name, const char *mode)
Definition: fd.c:2644
#define MaxAllocSize
Definition: fe_memutils.h:22
#define palloc0_object(type)
Definition: fe_memutils.h:75
Datum DirectFunctionCall4Coll(PGFunction func, Oid collation, Datum arg1, Datum arg2, Datum arg3, Datum arg4)
Definition: fmgr.c:859
Datum DirectFunctionCall3Coll(PGFunction func, Oid collation, Datum arg1, Datum arg2, Datum arg3)
Definition: fmgr.c:834
#define PG_RETURN_VOID()
Definition: fmgr.h:349
#define PG_GETARG_OID(n)
Definition: fmgr.h:275
#define PG_GETARG_TEXT_PP(n)
Definition: fmgr.h:309
#define DatumGetTextPP(X)
Definition: fmgr.h:292
#define DirectFunctionCall1(func, arg1)
Definition: fmgr.h:682
#define PG_GETARG_NAME(n)
Definition: fmgr.h:278
#define PG_FUNCTION_ARGS
Definition: fmgr.h:193
char * format_type_be(Oid type_oid)
Definition: format_type.c:343
void InitMaterializedSRF(FunctionCallInfo fcinfo, bits32 flags)
Definition: funcapi.c:76
void systable_endscan(SysScanDesc sysscan)
Definition: genam.c:603
HeapTuple systable_getnext(SysScanDesc sysscan)
Definition: genam.c:514
SysScanDesc systable_beginscan(Relation heapRelation, Oid indexId, bool indexOK, Snapshot snapshot, int nkeys, ScanKey key)
Definition: genam.c:388
char my_exec_path[MAXPGPATH]
Definition: globals.c:81
Oid MyDatabaseId
Definition: globals.c:94
void FreeConfigVariables(ConfigVariable *list)
Definition: guc-file.l:617
bool ParseConfigFp(FILE *fp, const char *config_file, int depth, int elevel, ConfigVariable **head_p, ConfigVariable **tail_p)
Definition: guc-file.l:350
int set_config_option_ext(const char *name, const char *value, GucContext context, GucSource source, Oid srole, GucAction action, bool changeVal, int elevel, bool is_reload)
Definition: guc.c:3382
int NewGUCNestLevel(void)
Definition: guc.c:2235
void AtEOXact_GUC(bool isCommit, int nestLevel)
Definition: guc.c:2262
int set_config_option(const char *name, const char *value, GucContext context, GucSource source, GucAction action, bool changeVal, int elevel, bool is_reload)
Definition: guc.c:3342
@ GUC_ACTION_SAVE
Definition: guc.h:205
@ PGC_S_SESSION
Definition: guc.h:126
@ PGC_SUSET
Definition: guc.h:78
@ PGC_USERSET
Definition: guc.h:79
bool check_function_bodies
Definition: guc_tables.c:528
int client_min_messages
Definition: guc_tables.c:540
int log_min_messages
Definition: guc_tables.c:539
Assert(PointerIsAligned(start, uint64))
HeapTuple heap_modify_tuple(HeapTuple tuple, TupleDesc tupleDesc, const Datum *replValues, const bool *replIsnull, const bool *doReplace)
Definition: heaptuple.c:1210
HeapTuple heap_copytuple(HeapTuple tuple)
Definition: heaptuple.c:778
HeapTuple heap_form_tuple(TupleDesc tupleDescriptor, const Datum *values, const bool *isnull)
Definition: heaptuple.c:1117
void heap_freetuple(HeapTuple htup)
Definition: heaptuple.c:1435
#define HeapTupleIsValid(tuple)
Definition: htup.h:78
static Datum heap_getattr(HeapTuple tup, int attnum, TupleDesc tupleDesc, bool *isnull)
Definition: htup_details.h:904
static void * GETSTRUCT(const HeapTupleData *tuple)
Definition: htup_details.h:728
#define stmt
Definition: indent_codes.h:59
void CatalogTupleUpdate(Relation heapRel, ItemPointer otid, HeapTuple tup)
Definition: indexing.c:313
void CatalogTupleInsert(Relation heapRel, HeapTuple tup)
Definition: indexing.c:233
void CatalogTupleDelete(Relation heapRel, ItemPointer tid)
Definition: indexing.c:365
int a
Definition: isn.c:73
int i
Definition: isn.c:77
if(TABLE==NULL||TABLE_index==NULL)
Definition: isn.c:81
List * lappend(List *list, void *datum)
Definition: list.c:339
List * list_copy(const List *oldlist)
Definition: list.c:1573
List * lappend_oid(List *list, Oid datum)
Definition: list.c:375
List * lcons(void *datum, List *list)
Definition: list.c:495
void list_free(List *list)
Definition: list.c:1546
#define NoLock
Definition: lockdefs.h:34
#define AccessShareLock
Definition: lockdefs.h:36
#define ShareUpdateExclusiveLock
Definition: lockdefs.h:39
#define RowExclusiveLock
Definition: lockdefs.h:38
char * get_rel_name(Oid relid)
Definition: lsyscache.c:2068
bool type_is_range(Oid typid)
Definition: lsyscache.c:2828
Oid get_rel_type_id(Oid relid)
Definition: lsyscache.c:2119
Oid get_range_multirange(Oid rangeOid)
Definition: lsyscache.c:3598
char * get_namespace_name(Oid nspid)
Definition: lsyscache.c:3506
Oid get_array_type(Oid typid)
Definition: lsyscache.c:2927
int GetDatabaseEncoding(void)
Definition: mbutils.c:1262
char * pg_any_to_server(const char *s, int len, int encoding)
Definition: mbutils.c:677
bool pg_verify_mbstr(int encoding, const char *mbstr, int len, bool noError)
Definition: mbutils.c:1567
char * pstrdup(const char *in)
Definition: mcxt.c:1703
void pfree(void *pointer)
Definition: mcxt.c:1528
void * palloc(Size size)
Definition: mcxt.c:1321
MemoryContext CurrentMemoryContext
Definition: mcxt.c:143
char * pnstrdup(const char *in, Size len)
Definition: mcxt.c:1714
void MemoryContextDelete(MemoryContext context)
Definition: mcxt.c:454
#define AllocSetContextCreate
Definition: memutils.h:129
#define ALLOCSET_DEFAULT_SIZES
Definition: memutils.h:160
#define SECURITY_LOCAL_USERID_CHANGE
Definition: miscadmin.h:317
void GetUserIdAndSecContext(Oid *userid, int *sec_context)
Definition: miscinit.c:663
Oid GetUserId(void)
Definition: miscinit.c:520
char * GetUserNameFromId(Oid roleid, bool noerr)
Definition: miscinit.c:1039
void SetUserIdAndSecContext(Oid userid, int sec_context)
Definition: miscinit.c:670
Datum namein(PG_FUNCTION_ARGS)
Definition: name.c:48
bool isTempNamespace(Oid namespaceId)
Definition: namespace.c:3649
Oid LookupCreationNamespace(const char *nspname)
Definition: namespace.c:3428
List * fetch_search_path(bool includeImplicit)
Definition: namespace.c:4819
Oid get_namespace_oid(const char *nspname, bool missing_ok)
Definition: namespace.c:3535
#define IsA(nodeptr, _type_)
Definition: nodes.h:164
#define makeNode(_type_)
Definition: nodes.h:161
int ParseLoc
Definition: nodes.h:246
#define InvokeObjectPostCreateHook(classId, objectId, subId)
Definition: objectaccess.h:173
#define InvokeObjectPostAlterHook(classId, objectId, subId)
Definition: objectaccess.h:197
void check_object_ownership(Oid roleid, ObjectType objtype, ObjectAddress address, Node *object, Relation relation)
char * getObjectDescription(const ObjectAddress *object, bool missing_ok)
const ObjectAddress InvalidObjectAddress
ObjectAddress get_object_address(ObjectType objtype, Node *object, Relation *relp, LOCKMODE lockmode, bool missing_ok)
#define ObjectAddressSet(addr, class_id, object_id)
Definition: objectaddress.h:40
static MemoryContext MemoryContextSwitchTo(MemoryContext context)
Definition: palloc.h:124
@ OBJECT_SCHEMA
Definition: parsenodes.h:2353
@ OBJECT_TABLESPACE
Definition: parsenodes.h:2359
@ OBJECT_ROLE
Definition: parsenodes.h:2350
@ OBJECT_EXTENSION
Definition: parsenodes.h:2332
@ OBJECT_INDEX
Definition: parsenodes.h:2337
@ OBJECT_DATABASE
Definition: parsenodes.h:2326
@ OBJECT_PUBLICATION
Definition: parsenodes.h:2347
@ OBJECT_SUBSCRIPTION
Definition: parsenodes.h:2355
@ OBJECT_STATISTIC_EXT
Definition: parsenodes.h:2356
#define CURSOR_OPT_PARALLEL_OK
Definition: parsenodes.h:3385
#define ACL_CREATE
Definition: parsenodes.h:85
void * arg
#define MAXPGPATH
const void size_t len
void recordDependencyOn(const ObjectAddress *depender, const ObjectAddress *referenced, DependencyType behavior)
Definition: pg_depend.c:45
long changeDependencyFor(Oid classId, Oid objectId, Oid refClassId, Oid oldRefObjectId, Oid newRefObjectId)
Definition: pg_depend.c:457
long deleteDependencyRecordsForClass(Oid classId, Oid objectId, Oid refclassId, char deptype)
Definition: pg_depend.c:351
Oid getExtensionOfObject(Oid classId, Oid objectId)
Definition: pg_depend.c:732
FormData_pg_depend * Form_pg_depend
Definition: pg_depend.h:72
static char * filename
Definition: pg_dumpall.c:124
FormData_pg_extension * Form_pg_extension
Definition: pg_extension.h:52
#define lfirst(lc)
Definition: pg_list.h:172
#define lfirst_node(type, lc)
Definition: pg_list.h:176
static int list_length(const List *l)
Definition: pg_list.h:152
#define NIL
Definition: pg_list.h:68
#define forboth(cell1, list1, cell2, list2)
Definition: pg_list.h:518
#define foreach_ptr(type, var, lst)
Definition: pg_list.h:469
#define linitial_oid(l)
Definition: pg_list.h:180
#define lfirst_oid(lc)
Definition: pg_list.h:174
void recordDependencyOnOwner(Oid classId, Oid objectId, Oid owner)
Definition: pg_shdepend.c:168
static char * buf
Definition: pg_test_fsync.c:72
#define pg_valid_server_encoding
Definition: pg_wchar.h:631
#define ERRCODE_UNDEFINED_TABLE
Definition: pgbench.c:79
void get_share_path(const char *my_exec_path, char *ret_path)
Definition: path.c:902
#define is_absolute_path(filename)
Definition: port.h:104
char * last_dir_separator(const char *filename)
Definition: path.c:145
char * first_path_var_separator(const char *pathlist)
Definition: path.c:127
void canonicalize_path(char *path)
Definition: path.c:337
#define snprintf
Definition: port.h:239
char * first_dir_separator(const char *filename)
Definition: path.c:110
size_t strlcpy(char *dst, const char *src, size_t siz)
Definition: strlcpy.c:45
List * pg_parse_query(const char *query_string)
Definition: postgres.c:603
List * pg_plan_queries(List *querytrees, const char *query_string, int cursorOptions, ParamListInfo boundParams)
Definition: postgres.c:970
List * pg_analyze_and_rewrite_fixedparams(RawStmt *parsetree, const char *query_string, const Oid *paramTypes, int numParams, QueryEnvironment *queryEnv)
Definition: postgres.c:665
static Datum PointerGetDatum(const void *X)
Definition: postgres.h:327
uintptr_t Datum
Definition: postgres.h:69
static Datum BoolGetDatum(bool X)
Definition: postgres.h:107
static Datum ObjectIdGetDatum(Oid X)
Definition: postgres.h:257
static Datum CStringGetDatum(const char *X)
Definition: postgres.h:355
#define InvalidOid
Definition: postgres_ext.h:35
unsigned int Oid
Definition: postgres_ext.h:30
void FreeQueryDesc(QueryDesc *qdesc)
Definition: pquery.c:106
QueryDesc * CreateQueryDesc(PlannedStmt *plannedstmt, const char *sourceText, Snapshot snapshot, Snapshot crosscheck_snapshot, DestReceiver *dest, ParamListInfo params, QueryEnvironment *queryEnv, int instrument_options)
Definition: pquery.c:68
char * psprintf(const char *fmt,...)
Definition: psprintf.c:43
const char * CleanQuerytext(const char *query, int *location, int *len)
Datum textregexreplace(PG_FUNCTION_ARGS)
Definition: regexp.c:658
#define RelationGetDescr(relation)
Definition: rel.h:542
const char * quote_identifier(const char *ident)
Definition: ruleutils.c:13029
void ScanKeyInit(ScanKey entry, AttrNumber attributeNumber, StrategyNumber strategy, RegProcedure procedure, Datum argument)
Definition: scankey.c:76
Oid CreateSchemaCommand(CreateSchemaStmt *stmt, const char *queryString, int stmt_location, int stmt_len)
Definition: schemacmds.c:52
@ ForwardScanDirection
Definition: sdir.h:28
Snapshot GetTransactionSnapshot(void)
Definition: snapmgr.c:271
void PushActiveSnapshot(Snapshot snapshot)
Definition: snapmgr.c:669
void PopActiveSnapshot(void)
Definition: snapmgr.c:762
Snapshot GetActiveSnapshot(void)
Definition: snapmgr.c:787
void relation_close(Relation relation, LOCKMODE lockmode)
Definition: relation.c:205
#define BTEqualStrategyNumber
Definition: stratnum.h:31
#define ERRCODE_DUPLICATE_OBJECT
Definition: streamutil.c:30
void appendStringInfo(StringInfo str, const char *fmt,...)
Definition: stringinfo.c:145
void appendStringInfoString(StringInfo str, const char *s)
Definition: stringinfo.c:230
void initStringInfo(StringInfo str)
Definition: stringinfo.c:97
char * name
Definition: guc.h:141
struct ConfigVariable * next
Definition: guc.h:148
char * value
Definition: guc.h:142
RoleSpec * authrole
Definition: parsenodes.h:2383
Definition: dirent.c:26
char * defname
Definition: parsenodes.h:826
Node * arg
Definition: parsenodes.h:827
struct ErrorContextCallback * previous
Definition: elog.h:296
void(* callback)(void *arg)
Definition: elog.h:297
List *List * no_relocate
Definition: extension.c:100
char * default_version
Definition: extension.c:90
char * module_pathname
Definition: extension.c:91
struct ExtensionVersionInfo * previous
Definition: extension.c:115
ItemPointerData t_self
Definition: htup.h:65
Definition: pg_list.h:54
Definition: nodes.h:135
ParseLoc stmt_location
Definition: parsenodes.h:2072
ParseLoc stmt_len
Definition: parsenodes.h:2073
TupleDesc rd_att
Definition: rel.h:112
TupleDesc setDesc
Definition: execnodes.h:358
Tuplestorestate * setResult
Definition: execnodes.h:357
Definition: dirent.h:10
char d_name[MAX_PATH]
Definition: dirent.h:15
Definition: c.h:712
__int64 st_size
Definition: win32_port.h:263
Definition: c.h:658
bool superuser(void)
Definition: superuser.c:46
void ReleaseSysCache(HeapTuple tuple)
Definition: syscache.c:269
HeapTuple SearchSysCache1(int cacheId, Datum key1)
Definition: syscache.c:221
#define GetSysCacheOid1(cacheId, oidcol, key1)
Definition: syscache.h:109
void table_close(Relation relation, LOCKMODE lockmode)
Definition: table.c:126
Relation table_open(Oid relationId, LOCKMODE lockmode)
Definition: table.c:40
void tuplestore_putvalues(Tuplestorestate *state, TupleDesc tdesc, const Datum *values, const bool *isnull)
Definition: tuplestore.c:784
void ProcessUtility(PlannedStmt *pstmt, const char *queryString, bool readOnlyTree, ProcessUtilityContext context, ParamListInfo params, QueryEnvironment *queryEnv, DestReceiver *dest, QueryCompletion *qc)
Definition: utility.c:499
@ PROCESS_UTILITY_QUERY
Definition: utility.h:23
String * makeString(char *str)
Definition: value.c:63
#define strVal(v)
Definition: value.h:82
bool SplitIdentifierString(char *rawstring, char separator, List **namelist)
Definition: varlena.c:3525
char * text_to_cstring(const text *t)
Definition: varlena.c:225
Datum replace_text(PG_FUNCTION_ARGS)
Definition: varlena.c:4198
#define stat
Definition: win32_port.h:274
void CommandCounterIncrement(void)
Definition: xact.c:1100
int MyXactFlags
Definition: xact.c:136
#define XACT_FLAGS_ACCESSEDTEMPNAMESPACE
Definition: xact.h:102