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acl.h
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array.h
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ascii.h
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attoptcache.h
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builtins.h
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bytea.h
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cash.h
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catcache.h
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combocid.h
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date.h
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datetime.h
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datum.h
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dynahash.h
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dynamic_loader.h
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elog.h
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errcodes.h
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fmgroids.h
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fmgrtab.h
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formatting.h
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geo_decls.h
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guc.h
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guc_tables.h
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help_config.h
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hsearch.h
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inet.h
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int8.h
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inval.h
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json.h
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logtape.h
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lsyscache.h
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memutils.h
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nabstime.h
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numeric.h
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palloc.h
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pg_crc.h
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pg_crc_tables.h
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pg_locale.h
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pg_lzcompress.h
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pg_rusage.h
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plancache.h
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portal.h
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probes.h
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ps_status.h
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rangetypes.h
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rbtree.h
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rel.h
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relcache.h
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relmapper.h
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reltrigger.h
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resowner.h
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selfuncs.h
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snapmgr.h
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snapshot.h
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sortsupport.h
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spccache.h
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syscache.h
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timestamp.h
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tqual.h
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tuplesort.h
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tuplestore.h
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typcache.h
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tzparser.h
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uuid.h
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varbit.h
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xml.h
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Code Editor : memutils.h
/*------------------------------------------------------------------------- * * memutils.h * This file contains declarations for memory allocation utility * functions. These are functions that are not quite widely used * enough to justify going in utils/palloc.h, but are still part * of the API of the memory management subsystem. * * * Portions Copyright (c) 1996-2012, PostgreSQL Global Development Group * Portions Copyright (c) 1994, Regents of the University of California * * src/include/utils/memutils.h * *------------------------------------------------------------------------- */ #ifndef MEMUTILS_H #define MEMUTILS_H #include "nodes/memnodes.h" /* * MaxAllocSize * Quasi-arbitrary limit on size of allocations. * * Note: * There is no guarantee that allocations smaller than MaxAllocSize * will succeed. Allocation requests larger than MaxAllocSize will * be summarily denied. * * XXX This is deliberately chosen to correspond to the limiting size * of varlena objects under TOAST. See VARSIZE_4B() and related macros * in postgres.h. Many datatypes assume that any allocatable size can * be represented in a varlena header. * * XXX Also, various places in aset.c assume they can compute twice an * allocation's size without overflow, so beware of raising this. */ #define MaxAllocSize ((Size) 0x3fffffff) /* 1 gigabyte - 1 */ #define AllocSizeIsValid(size) ((Size) (size) <= MaxAllocSize) /* * All chunks allocated by any memory context manager are required to be * preceded by a StandardChunkHeader at a spacing of STANDARDCHUNKHEADERSIZE. * A currently-allocated chunk must contain a backpointer to its owning * context as well as the allocated size of the chunk. The backpointer is * used by pfree() and repalloc() to find the context to call. The allocated * size is not absolutely essential, but it's expected to be needed by any * reasonable implementation. */ typedef struct StandardChunkHeader { MemoryContext context; /* owning context */ Size size; /* size of data space allocated in chunk */ #ifdef MEMORY_CONTEXT_CHECKING /* when debugging memory usage, also store actual requested size */ Size requested_size; #endif } StandardChunkHeader; #define STANDARDCHUNKHEADERSIZE MAXALIGN(sizeof(StandardChunkHeader)) /* * Standard top-level memory contexts. * * Only TopMemoryContext and ErrorContext are initialized by * MemoryContextInit() itself. */ extern PGDLLIMPORT MemoryContext TopMemoryContext; extern PGDLLIMPORT MemoryContext ErrorContext; extern PGDLLIMPORT MemoryContext PostmasterContext; extern PGDLLIMPORT MemoryContext CacheMemoryContext; extern PGDLLIMPORT MemoryContext MessageContext; extern PGDLLIMPORT MemoryContext TopTransactionContext; extern PGDLLIMPORT MemoryContext CurTransactionContext; /* This is a transient link to the active portal's memory context: */ extern PGDLLIMPORT MemoryContext PortalContext; /* * Memory-context-type-independent functions in mcxt.c */ extern void MemoryContextInit(void); extern void MemoryContextReset(MemoryContext context); extern void MemoryContextDelete(MemoryContext context); extern void MemoryContextResetChildren(MemoryContext context); extern void MemoryContextDeleteChildren(MemoryContext context); extern void MemoryContextResetAndDeleteChildren(MemoryContext context); extern void MemoryContextSetParent(MemoryContext context, MemoryContext new_parent); extern Size GetMemoryChunkSpace(void *pointer); extern MemoryContext GetMemoryChunkContext(void *pointer); extern MemoryContext MemoryContextGetParent(MemoryContext context); extern bool MemoryContextIsEmpty(MemoryContext context); extern void MemoryContextStats(MemoryContext context); #ifdef MEMORY_CONTEXT_CHECKING extern void MemoryContextCheck(MemoryContext context); #endif extern bool MemoryContextContains(MemoryContext context, void *pointer); /* * This routine handles the context-type-independent part of memory * context creation. It's intended to be called from context-type- * specific creation routines, and noplace else. */ extern MemoryContext MemoryContextCreate(NodeTag tag, Size size, MemoryContextMethods *methods, MemoryContext parent, const char *name); /* * Memory-context-type-specific functions */ /* aset.c */ extern MemoryContext AllocSetContextCreate(MemoryContext parent, const char *name, Size minContextSize, Size initBlockSize, Size maxBlockSize); /* * Recommended default alloc parameters, suitable for "ordinary" contexts * that might hold quite a lot of data. */ #define ALLOCSET_DEFAULT_MINSIZE 0 #define ALLOCSET_DEFAULT_INITSIZE (8 * 1024) #define ALLOCSET_DEFAULT_MAXSIZE (8 * 1024 * 1024) /* * Recommended alloc parameters for "small" contexts that are not expected * to contain much data (for example, a context to contain a query plan). */ #define ALLOCSET_SMALL_MINSIZE 0 #define ALLOCSET_SMALL_INITSIZE (1 * 1024) #define ALLOCSET_SMALL_MAXSIZE (8 * 1024) /* * Threshold above which a request in an AllocSet context is certain to be * allocated separately (and thereby have constant allocation overhead). * Few callers should be interested in this, but tuplesort/tuplestore need * to know it. */ #define ALLOCSET_SEPARATE_THRESHOLD 8192 #endif /* MEMUTILS_H */
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