mirror of
https://github.com/sqlite/sqlite.git
synced 2025-11-12 13:01:09 +03:00
918 lines
24 KiB
C
918 lines
24 KiB
C
/*
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** 2013 Jan 11
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**
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** The author disclaims copyright to this source code. In place of
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** a legal notice, here is a blessing:
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**
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** May you do good and not evil.
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** May you find forgiveness for yourself and forgive others.
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** May you share freely, never taking more than you give.
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**
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*************************************************************************
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** Code for testing the virtual table interfaces. This code
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** is not included in the SQLite library. It is used for automated
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** testing of the SQLite library.
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**
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** The FS virtual table is created as follows:
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**
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** CREATE VIRTUAL TABLE tbl USING fs(idx);
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**
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** where idx is the name of a table in the db with 2 columns. The virtual
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** table also has two columns - file path and file contents.
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**
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** The first column of table idx must be an IPK, and the second contains file
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** paths. For example:
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**
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** CREATE TABLE idx(id INTEGER PRIMARY KEY, path TEXT);
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** INSERT INTO idx VALUES(4, '/etc/passwd');
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**
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** Adding the row to the idx table automatically creates a row in the
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** virtual table with rowid=4, path=/etc/passwd and a text field that
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** contains data read from file /etc/passwd on disk.
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**
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*************************************************************************
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** Virtual table module "fsdir"
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**
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** This module is designed to be used as a read-only eponymous virtual table.
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** Its schema is as follows:
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**
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** CREATE TABLE fsdir(dir TEXT, name TEXT);
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**
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** When queried, a WHERE term of the form "dir = $dir" must be provided. The
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** virtual table then appears to have one row for each entry in file-system
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** directory $dir. Column dir contains a copy of $dir, and column "name"
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** contains the name of the directory entry.
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**
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** If the specified $dir cannot be opened or is not a directory, it is not
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** an error. The virtual table appears to be empty in this case.
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**
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*************************************************************************
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** Virtual table module "fstree"
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**
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** This module is also a read-only eponymous virtual table with the
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** following schema:
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**
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** CREATE TABLE fstree(path TEXT, size INT, data BLOB);
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**
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** Running a "SELECT * FROM fstree" query on this table returns the entire
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** contents of the file-system, starting at "/". To restrict the search
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** space, the virtual table supports LIKE and GLOB constraints on the
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** 'path' column. For example:
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**
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** SELECT * FROM fstree WHERE path LIKE '/home/dan/sqlite/%'
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*/
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#include "sqliteInt.h"
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#if defined(INCLUDE_SQLITE_TCL_H)
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# include "sqlite_tcl.h"
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#else
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# include "tcl.h"
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#endif
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#include <stdlib.h>
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#include <string.h>
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#include <sys/types.h>
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#include <sys/stat.h>
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#include <fcntl.h>
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#if SQLITE_OS_UNIX || defined(__MINGW_H)
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# include <unistd.h>
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# include <dirent.h>
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# ifndef DIRENT
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# define DIRENT dirent
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# endif
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#endif
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#if SQLITE_OS_WIN
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# include <io.h>
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# if !defined(__MINGW_H)
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# include "test_windirent.h"
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# endif
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# ifndef S_ISREG
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# define S_ISREG(mode) (((mode) & S_IFMT) == S_IFREG)
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# endif
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#endif
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#ifndef SQLITE_OMIT_VIRTUALTABLE
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typedef struct fs_vtab fs_vtab;
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typedef struct fs_cursor fs_cursor;
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/*
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** A fs virtual-table object
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*/
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struct fs_vtab {
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sqlite3_vtab base;
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sqlite3 *db;
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char *zDb; /* Name of db containing zTbl */
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char *zTbl; /* Name of docid->file map table */
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};
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/* A fs cursor object */
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struct fs_cursor {
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sqlite3_vtab_cursor base;
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sqlite3_stmt *pStmt;
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char *zBuf;
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int nBuf;
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int nAlloc;
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};
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/*************************************************************************
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** Start of fsdir implementation.
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*/
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typedef struct FsdirVtab FsdirVtab;
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typedef struct FsdirCsr FsdirCsr;
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struct FsdirVtab {
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sqlite3_vtab base;
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};
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struct FsdirCsr {
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sqlite3_vtab_cursor base;
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char *zDir; /* Buffer containing directory scanned */
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DIR *pDir; /* Open directory */
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sqlite3_int64 iRowid;
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struct DIRENT *pEntry;
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};
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/*
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** This function is the implementation of both the xConnect and xCreate
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** methods of the fsdir virtual table.
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**
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** The argv[] array contains the following:
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**
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** argv[0] -> module name ("fs")
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** argv[1] -> database name
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** argv[2] -> table name
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** argv[...] -> other module argument fields.
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*/
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static int fsdirConnect(
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sqlite3 *db,
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void *pAux,
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int argc, const char *const*argv,
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sqlite3_vtab **ppVtab,
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char **pzErr
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){
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FsdirVtab *pTab;
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if( argc!=3 ){
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*pzErr = sqlite3_mprintf("wrong number of arguments");
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return SQLITE_ERROR;
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}
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pTab = (FsdirVtab *)sqlite3_malloc(sizeof(FsdirVtab));
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if( !pTab ) return SQLITE_NOMEM;
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memset(pTab, 0, sizeof(FsdirVtab));
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*ppVtab = &pTab->base;
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sqlite3_declare_vtab(db, "CREATE TABLE xyz(dir, name);");
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return SQLITE_OK;
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}
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/*
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** xDestroy/xDisconnect implementation.
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*/
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static int fsdirDisconnect(sqlite3_vtab *pVtab){
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sqlite3_free(pVtab);
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return SQLITE_OK;
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}
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/*
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** xBestIndex implementation. The only constraint supported is:
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**
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** (dir = ?)
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*/
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static int fsdirBestIndex(sqlite3_vtab *tab, sqlite3_index_info *pIdxInfo){
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int ii;
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pIdxInfo->estimatedCost = 1000000000.0;
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for(ii=0; ii<pIdxInfo->nConstraint; ii++){
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struct sqlite3_index_constraint const *p = &pIdxInfo->aConstraint[ii];
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if( p->iColumn==0 && p->usable && p->op==SQLITE_INDEX_CONSTRAINT_EQ ){
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struct sqlite3_index_constraint_usage *pUsage;
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pUsage = &pIdxInfo->aConstraintUsage[ii];
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pUsage->omit = 1;
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pUsage->argvIndex = 1;
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pIdxInfo->idxNum = 1;
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pIdxInfo->estimatedCost = 1.0;
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break;
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}
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}
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return SQLITE_OK;
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}
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/*
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** xOpen implementation.
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**
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** Open a new fsdir cursor.
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*/
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static int fsdirOpen(sqlite3_vtab *pVTab, sqlite3_vtab_cursor **ppCursor){
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FsdirCsr *pCur;
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/* Allocate an extra 256 bytes because it is undefined how big dirent.d_name
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** is and we need enough space. Linux provides plenty already, but
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** Solaris only provides one byte. */
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pCur = (FsdirCsr*)sqlite3_malloc(sizeof(FsdirCsr)+256);
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if( pCur==0 ) return SQLITE_NOMEM;
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memset(pCur, 0, sizeof(FsdirCsr));
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*ppCursor = &pCur->base;
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return SQLITE_OK;
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}
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/*
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** Close a fsdir cursor.
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*/
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static int fsdirClose(sqlite3_vtab_cursor *cur){
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FsdirCsr *pCur = (FsdirCsr*)cur;
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if( pCur->pDir ) closedir(pCur->pDir);
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sqlite3_free(pCur->zDir);
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sqlite3_free(pCur);
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return SQLITE_OK;
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}
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/*
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** Skip the cursor to the next entry.
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*/
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static int fsdirNext(sqlite3_vtab_cursor *cur){
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FsdirCsr *pCsr = (FsdirCsr*)cur;
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if( pCsr->pDir ){
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pCsr->pEntry = readdir(pCsr->pDir);
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if( pCsr->pEntry==0 ){
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closedir(pCsr->pDir);
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pCsr->pDir = 0;
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}
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pCsr->iRowid++;
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}
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return SQLITE_OK;
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}
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/*
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** xFilter method implementation.
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*/
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static int fsdirFilter(
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sqlite3_vtab_cursor *pVtabCursor,
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int idxNum, const char *idxStr,
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int argc, sqlite3_value **argv
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){
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FsdirCsr *pCsr = (FsdirCsr*)pVtabCursor;
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const char *zDir;
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int nDir;
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if( idxNum!=1 || argc!=1 ){
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return SQLITE_ERROR;
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}
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pCsr->iRowid = 0;
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sqlite3_free(pCsr->zDir);
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if( pCsr->pDir ){
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closedir(pCsr->pDir);
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pCsr->pDir = 0;
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}
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zDir = (const char*)sqlite3_value_text(argv[0]);
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nDir = sqlite3_value_bytes(argv[0]);
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pCsr->zDir = sqlite3_malloc(nDir+1);
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if( pCsr->zDir==0 ) return SQLITE_NOMEM;
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memcpy(pCsr->zDir, zDir, nDir+1);
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pCsr->pDir = opendir(pCsr->zDir);
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return fsdirNext(pVtabCursor);
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}
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/*
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** xEof method implementation.
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*/
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static int fsdirEof(sqlite3_vtab_cursor *cur){
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FsdirCsr *pCsr = (FsdirCsr*)cur;
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return pCsr->pDir==0;
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}
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/*
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** xColumn method implementation.
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*/
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static int fsdirColumn(sqlite3_vtab_cursor *cur, sqlite3_context *ctx, int i){
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FsdirCsr *pCsr = (FsdirCsr*)cur;
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switch( i ){
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case 0: /* dir */
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sqlite3_result_text(ctx, pCsr->zDir, -1, SQLITE_STATIC);
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break;
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case 1: /* name */
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sqlite3_result_text(ctx, pCsr->pEntry->d_name, -1, SQLITE_TRANSIENT);
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break;
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default:
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assert( 0 );
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}
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return SQLITE_OK;
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}
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/*
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** xRowid method implementation.
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*/
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static int fsdirRowid(sqlite3_vtab_cursor *cur, sqlite_int64 *pRowid){
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FsdirCsr *pCsr = (FsdirCsr*)cur;
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*pRowid = pCsr->iRowid;
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return SQLITE_OK;
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}
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/*
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** End of fsdir implementation.
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*************************************************************************/
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/*************************************************************************
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** Start of fstree implementation.
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*/
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typedef struct FstreeVtab FstreeVtab;
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typedef struct FstreeCsr FstreeCsr;
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struct FstreeVtab {
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sqlite3_vtab base;
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sqlite3 *db;
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};
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struct FstreeCsr {
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sqlite3_vtab_cursor base;
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sqlite3_stmt *pStmt; /* Statement to list paths */
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int fd; /* File descriptor open on current path */
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};
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/*
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** This function is the implementation of both the xConnect and xCreate
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** methods of the fstree virtual table.
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**
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** The argv[] array contains the following:
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**
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** argv[0] -> module name ("fs")
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** argv[1] -> database name
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** argv[2] -> table name
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** argv[...] -> other module argument fields.
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*/
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static int fstreeConnect(
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sqlite3 *db,
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void *pAux,
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int argc, const char *const*argv,
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sqlite3_vtab **ppVtab,
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char **pzErr
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){
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FstreeVtab *pTab;
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if( argc!=3 ){
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*pzErr = sqlite3_mprintf("wrong number of arguments");
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return SQLITE_ERROR;
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}
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pTab = (FstreeVtab *)sqlite3_malloc(sizeof(FstreeVtab));
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if( !pTab ) return SQLITE_NOMEM;
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memset(pTab, 0, sizeof(FstreeVtab));
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pTab->db = db;
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*ppVtab = &pTab->base;
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sqlite3_declare_vtab(db, "CREATE TABLE xyz(path, size, data);");
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return SQLITE_OK;
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}
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/*
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** xDestroy/xDisconnect implementation.
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*/
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static int fstreeDisconnect(sqlite3_vtab *pVtab){
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sqlite3_free(pVtab);
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return SQLITE_OK;
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}
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/*
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** xBestIndex implementation. The only constraint supported is:
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**
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** (dir = ?)
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*/
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static int fstreeBestIndex(sqlite3_vtab *tab, sqlite3_index_info *pIdxInfo){
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int ii;
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for(ii=0; ii<pIdxInfo->nConstraint; ii++){
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struct sqlite3_index_constraint const *p = &pIdxInfo->aConstraint[ii];
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if( p->iColumn==0 && p->usable && (
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p->op==SQLITE_INDEX_CONSTRAINT_GLOB
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|| p->op==SQLITE_INDEX_CONSTRAINT_LIKE
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|| p->op==SQLITE_INDEX_CONSTRAINT_EQ
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)){
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struct sqlite3_index_constraint_usage *pUsage;
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pUsage = &pIdxInfo->aConstraintUsage[ii];
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pIdxInfo->idxNum = p->op;
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pUsage->argvIndex = 1;
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pIdxInfo->estimatedCost = 100000.0;
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return SQLITE_OK;
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}
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}
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pIdxInfo->estimatedCost = 1000000000.0;
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return SQLITE_OK;
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}
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/*
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** xOpen implementation.
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**
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** Open a new fstree cursor.
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*/
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static int fstreeOpen(sqlite3_vtab *pVTab, sqlite3_vtab_cursor **ppCursor){
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FstreeCsr *pCur;
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pCur = (FstreeCsr*)sqlite3_malloc(sizeof(FstreeCsr));
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if( pCur==0 ) return SQLITE_NOMEM;
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memset(pCur, 0, sizeof(FstreeCsr));
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pCur->fd = -1;
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*ppCursor = &pCur->base;
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return SQLITE_OK;
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}
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static void fstreeCloseFd(FstreeCsr *pCsr){
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if( pCsr->fd>=0 ){
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close(pCsr->fd);
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pCsr->fd = -1;
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}
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}
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|
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/*
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** Close a fstree cursor.
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*/
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static int fstreeClose(sqlite3_vtab_cursor *cur){
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FstreeCsr *pCsr = (FstreeCsr*)cur;
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sqlite3_finalize(pCsr->pStmt);
|
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fstreeCloseFd(pCsr);
|
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sqlite3_free(pCsr);
|
|
return SQLITE_OK;
|
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}
|
|
|
|
/*
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** Skip the cursor to the next entry.
|
|
*/
|
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static int fstreeNext(sqlite3_vtab_cursor *cur){
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FstreeCsr *pCsr = (FstreeCsr*)cur;
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int rc;
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fstreeCloseFd(pCsr);
|
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rc = sqlite3_step(pCsr->pStmt);
|
|
if( rc!=SQLITE_ROW ){
|
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rc = sqlite3_finalize(pCsr->pStmt);
|
|
pCsr->pStmt = 0;
|
|
}else{
|
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rc = SQLITE_OK;
|
|
pCsr->fd = open((const char*)sqlite3_column_text(pCsr->pStmt, 0), O_RDONLY);
|
|
}
|
|
|
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return rc;
|
|
}
|
|
|
|
/*
|
|
** xFilter method implementation.
|
|
*/
|
|
static int fstreeFilter(
|
|
sqlite3_vtab_cursor *pVtabCursor,
|
|
int idxNum, const char *idxStr,
|
|
int argc, sqlite3_value **argv
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|
){
|
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FstreeCsr *pCsr = (FstreeCsr*)pVtabCursor;
|
|
FstreeVtab *pTab = (FstreeVtab*)(pCsr->base.pVtab);
|
|
int rc;
|
|
const char *zSql =
|
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"WITH r(d) AS ("
|
|
" SELECT CASE WHEN dir=?2 THEN ?3 ELSE dir END || '/' || name "
|
|
" FROM fsdir WHERE dir=?1 AND name NOT LIKE '.%'"
|
|
" UNION ALL"
|
|
" SELECT dir || '/' || name FROM r, fsdir WHERE dir=d AND name NOT LIKE '.%'"
|
|
") SELECT d FROM r;";
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|
|
|
char *zRoot;
|
|
int nRoot;
|
|
char *zPrefix;
|
|
int nPrefix;
|
|
const char *zDir;
|
|
int nDir;
|
|
char aWild[2] = { '\0', '\0' };
|
|
|
|
#if SQLITE_OS_WIN
|
|
const char *zDrive = windirent_getenv("fstreeDrive");
|
|
if( zDrive==0 ){
|
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zDrive = windirent_getenv("SystemDrive");
|
|
}
|
|
zRoot = sqlite3_mprintf("%s%c", zDrive, '/');
|
|
nRoot = sqlite3Strlen30(zRoot);
|
|
zPrefix = sqlite3_mprintf("%s", zDrive);
|
|
nPrefix = sqlite3Strlen30(zPrefix);
|
|
#else
|
|
zRoot = "/";
|
|
nRoot = 1;
|
|
zPrefix = "";
|
|
nPrefix = 0;
|
|
#endif
|
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|
|
zDir = zRoot;
|
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nDir = nRoot;
|
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|
|
fstreeCloseFd(pCsr);
|
|
sqlite3_finalize(pCsr->pStmt);
|
|
pCsr->pStmt = 0;
|
|
rc = sqlite3_prepare_v2(pTab->db, zSql, -1, &pCsr->pStmt, 0);
|
|
if( rc!=SQLITE_OK ) return rc;
|
|
|
|
if( idxNum ){
|
|
const char *zQuery = (const char*)sqlite3_value_text(argv[0]);
|
|
switch( idxNum ){
|
|
case SQLITE_INDEX_CONSTRAINT_GLOB:
|
|
aWild[0] = '*';
|
|
aWild[1] = '?';
|
|
break;
|
|
case SQLITE_INDEX_CONSTRAINT_LIKE:
|
|
aWild[0] = '_';
|
|
aWild[1] = '%';
|
|
break;
|
|
}
|
|
|
|
if( sqlite3_strnicmp(zQuery, zPrefix, nPrefix)==0 ){
|
|
int i;
|
|
for(i=nPrefix; zQuery[i]; i++){
|
|
if( zQuery[i]==aWild[0] || zQuery[i]==aWild[1] ) break;
|
|
if( zQuery[i]=='/' ) nDir = i;
|
|
}
|
|
zDir = zQuery;
|
|
}
|
|
}
|
|
if( nDir==0 ) nDir = 1;
|
|
|
|
sqlite3_bind_text(pCsr->pStmt, 1, zDir, nDir, SQLITE_TRANSIENT);
|
|
sqlite3_bind_text(pCsr->pStmt, 2, zRoot, nRoot, SQLITE_TRANSIENT);
|
|
sqlite3_bind_text(pCsr->pStmt, 3, zPrefix, nPrefix, SQLITE_TRANSIENT);
|
|
|
|
#if SQLITE_OS_WIN
|
|
sqlite3_free(zPrefix);
|
|
sqlite3_free(zRoot);
|
|
#endif
|
|
|
|
return fstreeNext(pVtabCursor);
|
|
}
|
|
|
|
/*
|
|
** xEof method implementation.
|
|
*/
|
|
static int fstreeEof(sqlite3_vtab_cursor *cur){
|
|
FstreeCsr *pCsr = (FstreeCsr*)cur;
|
|
return pCsr->pStmt==0;
|
|
}
|
|
|
|
/*
|
|
** xColumn method implementation.
|
|
*/
|
|
static int fstreeColumn(sqlite3_vtab_cursor *cur, sqlite3_context *ctx, int i){
|
|
FstreeCsr *pCsr = (FstreeCsr*)cur;
|
|
if( i==0 ){ /* path */
|
|
sqlite3_result_value(ctx, sqlite3_column_value(pCsr->pStmt, 0));
|
|
}else{
|
|
struct stat sBuf;
|
|
fstat(pCsr->fd, &sBuf);
|
|
|
|
if( S_ISREG(sBuf.st_mode) ){
|
|
if( i==1 ){
|
|
sqlite3_result_int64(ctx, sBuf.st_size);
|
|
}else{
|
|
int nRead;
|
|
char *aBuf = sqlite3_malloc(sBuf.st_mode+1);
|
|
if( !aBuf ) return SQLITE_NOMEM;
|
|
nRead = read(pCsr->fd, aBuf, sBuf.st_mode);
|
|
if( nRead!=sBuf.st_mode ){
|
|
return SQLITE_IOERR;
|
|
}
|
|
sqlite3_result_blob(ctx, aBuf, nRead, SQLITE_TRANSIENT);
|
|
sqlite3_free(aBuf);
|
|
}
|
|
}
|
|
}
|
|
|
|
return SQLITE_OK;
|
|
}
|
|
|
|
/*
|
|
** xRowid method implementation.
|
|
*/
|
|
static int fstreeRowid(sqlite3_vtab_cursor *cur, sqlite_int64 *pRowid){
|
|
*pRowid = 0;
|
|
return SQLITE_OK;
|
|
}
|
|
/*
|
|
** End of fstree implementation.
|
|
*************************************************************************/
|
|
|
|
|
|
|
|
|
|
/*
|
|
** This function is the implementation of both the xConnect and xCreate
|
|
** methods of the fs virtual table.
|
|
**
|
|
** The argv[] array contains the following:
|
|
**
|
|
** argv[0] -> module name ("fs")
|
|
** argv[1] -> database name
|
|
** argv[2] -> table name
|
|
** argv[...] -> other module argument fields.
|
|
*/
|
|
static int fsConnect(
|
|
sqlite3 *db,
|
|
void *pAux,
|
|
int argc, const char *const*argv,
|
|
sqlite3_vtab **ppVtab,
|
|
char **pzErr
|
|
){
|
|
fs_vtab *pVtab;
|
|
int nByte;
|
|
const char *zTbl;
|
|
const char *zDb = argv[1];
|
|
|
|
if( argc!=4 ){
|
|
*pzErr = sqlite3_mprintf("wrong number of arguments");
|
|
return SQLITE_ERROR;
|
|
}
|
|
zTbl = argv[3];
|
|
|
|
nByte = sizeof(fs_vtab) + (int)strlen(zTbl) + 1 + (int)strlen(zDb) + 1;
|
|
pVtab = (fs_vtab *)sqlite3MallocZero( nByte );
|
|
if( !pVtab ) return SQLITE_NOMEM;
|
|
|
|
pVtab->zTbl = (char *)&pVtab[1];
|
|
pVtab->zDb = &pVtab->zTbl[strlen(zTbl)+1];
|
|
pVtab->db = db;
|
|
memcpy(pVtab->zTbl, zTbl, strlen(zTbl));
|
|
memcpy(pVtab->zDb, zDb, strlen(zDb));
|
|
*ppVtab = &pVtab->base;
|
|
sqlite3_declare_vtab(db, "CREATE TABLE x(path TEXT, data TEXT)");
|
|
|
|
return SQLITE_OK;
|
|
}
|
|
/* Note that for this virtual table, the xCreate and xConnect
|
|
** methods are identical. */
|
|
|
|
static int fsDisconnect(sqlite3_vtab *pVtab){
|
|
sqlite3_free(pVtab);
|
|
return SQLITE_OK;
|
|
}
|
|
/* The xDisconnect and xDestroy methods are also the same */
|
|
|
|
/*
|
|
** Open a new fs cursor.
|
|
*/
|
|
static int fsOpen(sqlite3_vtab *pVTab, sqlite3_vtab_cursor **ppCursor){
|
|
fs_cursor *pCur;
|
|
pCur = sqlite3MallocZero(sizeof(fs_cursor));
|
|
*ppCursor = &pCur->base;
|
|
return SQLITE_OK;
|
|
}
|
|
|
|
/*
|
|
** Close a fs cursor.
|
|
*/
|
|
static int fsClose(sqlite3_vtab_cursor *cur){
|
|
fs_cursor *pCur = (fs_cursor *)cur;
|
|
sqlite3_finalize(pCur->pStmt);
|
|
sqlite3_free(pCur->zBuf);
|
|
sqlite3_free(pCur);
|
|
return SQLITE_OK;
|
|
}
|
|
|
|
static int fsNext(sqlite3_vtab_cursor *cur){
|
|
fs_cursor *pCur = (fs_cursor *)cur;
|
|
int rc;
|
|
|
|
rc = sqlite3_step(pCur->pStmt);
|
|
if( rc==SQLITE_ROW || rc==SQLITE_DONE ) rc = SQLITE_OK;
|
|
|
|
return rc;
|
|
}
|
|
|
|
static int fsFilter(
|
|
sqlite3_vtab_cursor *pVtabCursor,
|
|
int idxNum, const char *idxStr,
|
|
int argc, sqlite3_value **argv
|
|
){
|
|
int rc;
|
|
fs_cursor *pCur = (fs_cursor *)pVtabCursor;
|
|
fs_vtab *p = (fs_vtab *)(pVtabCursor->pVtab);
|
|
|
|
assert( (idxNum==0 && argc==0) || (idxNum==1 && argc==1) );
|
|
if( idxNum==1 ){
|
|
char *zStmt = sqlite3_mprintf(
|
|
"SELECT * FROM %Q.%Q WHERE rowid=?", p->zDb, p->zTbl);
|
|
if( !zStmt ) return SQLITE_NOMEM;
|
|
rc = sqlite3_prepare_v2(p->db, zStmt, -1, &pCur->pStmt, 0);
|
|
sqlite3_free(zStmt);
|
|
if( rc==SQLITE_OK ){
|
|
sqlite3_bind_value(pCur->pStmt, 1, argv[0]);
|
|
}
|
|
}else{
|
|
char *zStmt = sqlite3_mprintf("SELECT * FROM %Q.%Q", p->zDb, p->zTbl);
|
|
if( !zStmt ) return SQLITE_NOMEM;
|
|
rc = sqlite3_prepare_v2(p->db, zStmt, -1, &pCur->pStmt, 0);
|
|
sqlite3_free(zStmt);
|
|
}
|
|
|
|
if( rc==SQLITE_OK ){
|
|
rc = fsNext(pVtabCursor);
|
|
}
|
|
return rc;
|
|
}
|
|
|
|
static int fsColumn(sqlite3_vtab_cursor *cur, sqlite3_context *ctx, int i){
|
|
fs_cursor *pCur = (fs_cursor*)cur;
|
|
|
|
assert( i==0 || i==1 || i==2 );
|
|
if( i==0 ){
|
|
sqlite3_result_value(ctx, sqlite3_column_value(pCur->pStmt, 0));
|
|
}else{
|
|
const char *zFile = (const char *)sqlite3_column_text(pCur->pStmt, 1);
|
|
struct stat sbuf;
|
|
int fd;
|
|
|
|
int n;
|
|
fd = open(zFile, O_RDONLY);
|
|
if( fd<0 ) return SQLITE_IOERR;
|
|
fstat(fd, &sbuf);
|
|
|
|
if( sbuf.st_size>=pCur->nAlloc ){
|
|
sqlite3_int64 nNew = sbuf.st_size*2;
|
|
char *zNew;
|
|
if( nNew<1024 ) nNew = 1024;
|
|
|
|
zNew = sqlite3Realloc(pCur->zBuf, nNew);
|
|
if( zNew==0 ){
|
|
close(fd);
|
|
return SQLITE_NOMEM;
|
|
}
|
|
pCur->zBuf = zNew;
|
|
pCur->nAlloc = nNew;
|
|
}
|
|
|
|
n = (int)read(fd, pCur->zBuf, sbuf.st_size);
|
|
close(fd);
|
|
if( n!=sbuf.st_size ) return SQLITE_ERROR;
|
|
pCur->nBuf = sbuf.st_size;
|
|
pCur->zBuf[pCur->nBuf] = '\0';
|
|
|
|
sqlite3_result_text(ctx, pCur->zBuf, -1, SQLITE_TRANSIENT);
|
|
}
|
|
return SQLITE_OK;
|
|
}
|
|
|
|
static int fsRowid(sqlite3_vtab_cursor *cur, sqlite_int64 *pRowid){
|
|
fs_cursor *pCur = (fs_cursor*)cur;
|
|
*pRowid = sqlite3_column_int64(pCur->pStmt, 0);
|
|
return SQLITE_OK;
|
|
}
|
|
|
|
static int fsEof(sqlite3_vtab_cursor *cur){
|
|
fs_cursor *pCur = (fs_cursor*)cur;
|
|
return (sqlite3_data_count(pCur->pStmt)==0);
|
|
}
|
|
|
|
static int fsBestIndex(sqlite3_vtab *tab, sqlite3_index_info *pIdxInfo){
|
|
int ii;
|
|
|
|
for(ii=0; ii<pIdxInfo->nConstraint; ii++){
|
|
struct sqlite3_index_constraint const *pCons = &pIdxInfo->aConstraint[ii];
|
|
if( pCons->iColumn<0 && pCons->usable
|
|
&& pCons->op==SQLITE_INDEX_CONSTRAINT_EQ ){
|
|
struct sqlite3_index_constraint_usage *pUsage;
|
|
pUsage = &pIdxInfo->aConstraintUsage[ii];
|
|
pUsage->omit = 0;
|
|
pUsage->argvIndex = 1;
|
|
pIdxInfo->idxNum = 1;
|
|
pIdxInfo->estimatedCost = 1.0;
|
|
break;
|
|
}
|
|
}
|
|
|
|
return SQLITE_OK;
|
|
}
|
|
|
|
/*
|
|
** A virtual table module that provides read-only access to a
|
|
** Tcl global variable namespace.
|
|
*/
|
|
static sqlite3_module fsModule = {
|
|
0, /* iVersion */
|
|
fsConnect,
|
|
fsConnect,
|
|
fsBestIndex,
|
|
fsDisconnect,
|
|
fsDisconnect,
|
|
fsOpen, /* xOpen - open a cursor */
|
|
fsClose, /* xClose - close a cursor */
|
|
fsFilter, /* xFilter - configure scan constraints */
|
|
fsNext, /* xNext - advance a cursor */
|
|
fsEof, /* xEof - check for end of scan */
|
|
fsColumn, /* xColumn - read data */
|
|
fsRowid, /* xRowid - read data */
|
|
0, /* xUpdate */
|
|
0, /* xBegin */
|
|
0, /* xSync */
|
|
0, /* xCommit */
|
|
0, /* xRollback */
|
|
0, /* xFindMethod */
|
|
0, /* xRename */
|
|
};
|
|
|
|
static sqlite3_module fsdirModule = {
|
|
0, /* iVersion */
|
|
fsdirConnect, /* xCreate */
|
|
fsdirConnect, /* xConnect */
|
|
fsdirBestIndex, /* xBestIndex */
|
|
fsdirDisconnect, /* xDisconnect */
|
|
fsdirDisconnect, /* xDestroy */
|
|
fsdirOpen, /* xOpen - open a cursor */
|
|
fsdirClose, /* xClose - close a cursor */
|
|
fsdirFilter, /* xFilter - configure scan constraints */
|
|
fsdirNext, /* xNext - advance a cursor */
|
|
fsdirEof, /* xEof - check for end of scan */
|
|
fsdirColumn, /* xColumn - read data */
|
|
fsdirRowid, /* xRowid - read data */
|
|
0, /* xUpdate */
|
|
0, /* xBegin */
|
|
0, /* xSync */
|
|
0, /* xCommit */
|
|
0, /* xRollback */
|
|
0, /* xFindMethod */
|
|
0, /* xRename */
|
|
};
|
|
|
|
static sqlite3_module fstreeModule = {
|
|
0, /* iVersion */
|
|
fstreeConnect, /* xCreate */
|
|
fstreeConnect, /* xConnect */
|
|
fstreeBestIndex, /* xBestIndex */
|
|
fstreeDisconnect, /* xDisconnect */
|
|
fstreeDisconnect, /* xDestroy */
|
|
fstreeOpen, /* xOpen - open a cursor */
|
|
fstreeClose, /* xClose - close a cursor */
|
|
fstreeFilter, /* xFilter - configure scan constraints */
|
|
fstreeNext, /* xNext - advance a cursor */
|
|
fstreeEof, /* xEof - check for end of scan */
|
|
fstreeColumn, /* xColumn - read data */
|
|
fstreeRowid, /* xRowid - read data */
|
|
0, /* xUpdate */
|
|
0, /* xBegin */
|
|
0, /* xSync */
|
|
0, /* xCommit */
|
|
0, /* xRollback */
|
|
0, /* xFindMethod */
|
|
0, /* xRename */
|
|
};
|
|
|
|
/*
|
|
** Decode a pointer to an sqlite3 object.
|
|
*/
|
|
extern int getDbPointer(Tcl_Interp *interp, const char *zA, sqlite3 **ppDb);
|
|
|
|
/*
|
|
** Register the echo virtual table module.
|
|
*/
|
|
static int SQLITE_TCLAPI register_fs_module(
|
|
ClientData clientData, /* Pointer to sqlite3_enable_XXX function */
|
|
Tcl_Interp *interp, /* The TCL interpreter that invoked this command */
|
|
int objc, /* Number of arguments */
|
|
Tcl_Obj *CONST objv[] /* Command arguments */
|
|
){
|
|
sqlite3 *db;
|
|
if( objc!=2 ){
|
|
Tcl_WrongNumArgs(interp, 1, objv, "DB");
|
|
return TCL_ERROR;
|
|
}
|
|
if( getDbPointer(interp, Tcl_GetString(objv[1]), &db) ) return TCL_ERROR;
|
|
#ifndef SQLITE_OMIT_VIRTUALTABLE
|
|
sqlite3_create_module(db, "fs", &fsModule, (void *)interp);
|
|
sqlite3_create_module(db, "fsdir", &fsdirModule, 0);
|
|
sqlite3_create_module(db, "fstree", &fstreeModule, 0);
|
|
#endif
|
|
return TCL_OK;
|
|
}
|
|
|
|
#endif
|
|
|
|
|
|
/*
|
|
** Register commands with the TCL interpreter.
|
|
*/
|
|
int Sqlitetestfs_Init(Tcl_Interp *interp){
|
|
#ifndef SQLITE_OMIT_VIRTUALTABLE
|
|
static struct {
|
|
char *zName;
|
|
Tcl_ObjCmdProc *xProc;
|
|
void *clientData;
|
|
} aObjCmd[] = {
|
|
{ "register_fs_module", register_fs_module, 0 },
|
|
};
|
|
int i;
|
|
for(i=0; i<sizeof(aObjCmd)/sizeof(aObjCmd[0]); i++){
|
|
Tcl_CreateObjCommand(interp, aObjCmd[i].zName,
|
|
aObjCmd[i].xProc, aObjCmd[i].clientData, 0);
|
|
}
|
|
#endif
|
|
return TCL_OK;
|
|
}
|