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1 /* |
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2 ** 2003 April 6 |
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3 ** |
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4 ** The author disclaims copyright to this source code. In place of |
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5 ** a legal notice, here is a blessing: |
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6 ** |
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7 ** May you do good and not evil. |
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8 ** May you find forgiveness for yourself and forgive others. |
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9 ** May you share freely, never taking more than you give. |
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10 ** |
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11 ************************************************************************* |
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12 ** This file contains code used to implement the ATTACH and DETACH commands. |
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13 ** |
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14 ** $Id: attach.cpp 1282 2008-11-13 09:31:33Z LarsPson $ |
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15 */ |
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16 #include "sqliteInt.h" |
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17 |
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18 #ifndef SQLITE_OMIT_ATTACH |
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19 /* |
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20 ** Resolve an expression that was part of an ATTACH or DETACH statement. This |
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21 ** is slightly different from resolving a normal SQL expression, because simple |
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22 ** identifiers are treated as strings, not possible column names or aliases. |
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23 ** |
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24 ** i.e. if the parser sees: |
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25 ** |
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26 ** ATTACH DATABASE abc AS def |
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27 ** |
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28 ** it treats the two expressions as literal strings 'abc' and 'def' instead of |
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29 ** looking for columns of the same name. |
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30 ** |
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31 ** This only applies to the root node of pExpr, so the statement: |
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32 ** |
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33 ** ATTACH DATABASE abc||def AS 'db2' |
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34 ** |
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35 ** will fail because neither abc or def can be resolved. |
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36 */ |
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37 static int resolveAttachExpr(NameContext *pName, Expr *pExpr) |
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38 { |
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39 int rc = SQLITE_OK; |
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40 if( pExpr ){ |
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41 if( pExpr->op!=TK_ID ){ |
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42 rc = sqlite3ExprResolveNames(pName, pExpr); |
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43 if( rc==SQLITE_OK && !sqlite3ExprIsConstant(pExpr) ){ |
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44 sqlite3ErrorMsg(pName->pParse, "invalid name: \"%T\"", &pExpr->span); |
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45 return SQLITE_ERROR; |
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46 } |
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47 }else{ |
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48 pExpr->op = TK_STRING; |
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49 } |
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50 } |
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51 return rc; |
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52 } |
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53 |
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54 /* |
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55 ** An SQL user-function registered to do the work of an ATTACH statement. The |
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56 ** three arguments to the function come directly from an attach statement: |
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57 ** |
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58 ** ATTACH DATABASE x AS y KEY z |
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59 ** |
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60 ** SELECT sqlite_attach(x, y, z) |
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61 ** |
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62 ** If the optional "KEY z" syntax is omitted, an SQL NULL is passed as the |
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63 ** third argument. |
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64 */ |
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65 static void attachFunc( |
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66 sqlite3_context *context, |
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67 int argc, |
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68 sqlite3_value **argv |
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69 ){ |
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70 int i; |
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71 int rc = 0; |
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72 sqlite3 *db = (sqlite3 *)sqlite3_user_data(context); |
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73 const char *zName; |
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74 const char *zFile; |
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75 Db *aNew; |
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76 char *zErrDyn = 0; |
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77 char zErr[128]; |
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78 |
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79 zFile = (const char *)sqlite3_value_text(argv[0]); |
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80 zName = (const char *)sqlite3_value_text(argv[1]); |
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81 if( zFile==0 ) zFile = ""; |
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82 if( zName==0 ) zName = ""; |
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83 |
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84 /* Check for the following errors: |
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85 ** |
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86 ** * Too many attached databases, |
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87 ** * Transaction currently open |
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88 ** * Specified database name already being used. |
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89 */ |
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90 if( db->nDb>=SQLITE_MAX_ATTACHED+2 ){ |
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91 sqlite3_snprintf( |
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92 sizeof(zErr), zErr, "too many attached databases - max %d", |
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93 SQLITE_MAX_ATTACHED |
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94 ); |
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95 goto attach_error; |
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96 } |
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97 if( !db->autoCommit ){ |
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98 sqlite3_snprintf(sizeof(zErr), zErr, |
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99 "cannot ATTACH database within transaction"); |
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100 goto attach_error; |
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101 } |
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102 for(i=0; i<db->nDb; i++){ |
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103 char *z = db->aDb[i].zName; |
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104 if( z && zName && sqlite3StrICmp(z, zName)==0 ){ |
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105 sqlite3_snprintf(sizeof(zErr), zErr, |
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106 "database %s is already in use", zName); |
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107 goto attach_error; |
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108 } |
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109 } |
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110 |
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111 /* Allocate the new entry in the db->aDb[] array and initialise the schema |
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112 ** hash tables. |
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113 */ |
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114 if( db->aDb==db->aDbStatic ){ |
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115 aNew = (Db*)sqlite3_malloc( sizeof(db->aDb[0])*3 ); |
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116 if( aNew==0 ){ |
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117 db->mallocFailed = 1; |
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118 return; |
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119 } |
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120 memcpy(aNew, db->aDb, sizeof(db->aDb[0])*2); |
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121 }else{ |
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122 aNew = (Db*)sqlite3_realloc(db->aDb, sizeof(db->aDb[0])*(db->nDb+1) ); |
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123 if( aNew==0 ){ |
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124 db->mallocFailed = 1; |
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125 return; |
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126 } |
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127 } |
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128 db->aDb = aNew; |
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129 aNew = &db->aDb[db->nDb++]; |
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130 memset(aNew, 0, sizeof(*aNew)); |
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131 |
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132 /* Open the database file. If the btree is successfully opened, use |
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133 ** it to obtain the database schema. At this point the schema may |
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134 ** or may not be initialised. |
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135 */ |
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136 rc = sqlite3BtreeFactory(db, zFile, 0, SQLITE_DEFAULT_CACHE_SIZE, |
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137 db->openFlags | SQLITE_OPEN_MAIN_DB, |
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138 &aNew->pBt); |
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139 if( rc==SQLITE_OK ){ |
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140 aNew->pSchema = sqlite3SchemaGet(db, aNew->pBt); |
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141 if( !aNew->pSchema ){ |
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142 rc = SQLITE_NOMEM; |
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143 }else if( aNew->pSchema->file_format && aNew->pSchema->enc!=ENC(db) ){ |
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144 sqlite3_snprintf(sizeof(zErr), zErr, |
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145 "attached databases must use the same text encoding as main database"); |
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146 goto attach_error; |
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147 } |
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148 sqlite3PagerLockingMode(sqlite3BtreePager(aNew->pBt), db->dfltLockMode); |
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149 } |
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150 aNew->zName = sqlite3DbStrDup(db, zName); |
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151 aNew->safety_level = 3; |
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152 |
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153 #if SQLITE_HAS_CODEC |
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154 { |
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155 extern int sqlite3CodecAttach(sqlite3*, int, const void*, int); |
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156 extern void sqlite3CodecGetKey(sqlite3*, int, void**, int*); |
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157 int nKey; |
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158 char *zKey; |
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159 int t = sqlite3_value_type(argv[2]); |
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160 switch( t ){ |
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161 case SQLITE_INTEGER: |
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162 case SQLITE_FLOAT: |
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163 zErrDyn = sqlite3DbStrDup(db, "Invalid key value"); |
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164 rc = SQLITE_ERROR; |
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165 break; |
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166 |
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167 case SQLITE_TEXT: |
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168 case SQLITE_BLOB: |
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169 nKey = sqlite3_value_bytes(argv[2]); |
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170 zKey = (char *)sqlite3_value_blob(argv[2]); |
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171 sqlite3CodecAttach(db, db->nDb-1, zKey, nKey); |
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172 break; |
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173 |
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174 case SQLITE_NULL: |
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175 /* No key specified. Use the key from the main database */ |
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176 sqlite3CodecGetKey(db, 0, (void**)&zKey, &nKey); |
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177 sqlite3CodecAttach(db, db->nDb-1, zKey, nKey); |
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178 break; |
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179 } |
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180 } |
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181 #endif |
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182 |
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183 /* If the file was opened successfully, read the schema for the new database. |
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184 ** If this fails, or if opening the file failed, then close the file and |
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185 ** remove the entry from the db->aDb[] array. i.e. put everything back the way |
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186 ** we found it. |
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187 */ |
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188 if( rc==SQLITE_OK ){ |
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189 sqlite3SafetyOn(db); |
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190 rc = sqlite3Init(db, &zErrDyn); |
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191 sqlite3SafetyOff(db); |
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192 } |
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193 if( rc ){ |
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194 int iDb = db->nDb - 1; |
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195 assert( iDb>=2 ); |
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196 if( db->aDb[iDb].pBt ){ |
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197 sqlite3BtreeClose(db->aDb[iDb].pBt); |
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198 db->aDb[iDb].pBt = 0; |
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199 db->aDb[iDb].pSchema = 0; |
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200 } |
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201 sqlite3ResetInternalSchema(db, 0); |
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202 db->nDb = iDb; |
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203 if( rc==SQLITE_NOMEM || rc==SQLITE_IOERR_NOMEM ){ |
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204 db->mallocFailed = 1; |
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205 sqlite3_snprintf(sizeof(zErr),zErr, "out of memory"); |
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206 }else{ |
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207 sqlite3_snprintf(sizeof(zErr),zErr, "unable to open database: %s", zFile); |
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208 } |
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209 goto attach_error; |
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210 } |
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211 |
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212 return; |
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213 |
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214 attach_error: |
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215 /* Return an error if we get here */ |
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216 if( zErrDyn ){ |
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217 sqlite3_result_error(context, zErrDyn, -1); |
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218 sqlite3_free(zErrDyn); |
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219 }else{ |
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220 zErr[sizeof(zErr)-1] = 0; |
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221 sqlite3_result_error(context, zErr, -1); |
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222 } |
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223 } |
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224 |
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225 /* |
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226 ** An SQL user-function registered to do the work of an DETACH statement. The |
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227 ** three arguments to the function come directly from a detach statement: |
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228 ** |
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229 ** DETACH DATABASE x |
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230 ** |
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231 ** SELECT sqlite_detach(x) |
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232 */ |
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233 static void detachFunc( |
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234 sqlite3_context *context, |
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235 int argc, |
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236 sqlite3_value **argv |
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237 ){ |
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238 const char *zName = (const char *)sqlite3_value_text(argv[0]); |
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239 sqlite3 *db = (sqlite3 *)sqlite3_user_data(context); |
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240 int i; |
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241 Db *pDb = 0; |
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242 char zErr[128]; |
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243 |
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244 if( zName==0 ) zName = ""; |
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245 for(i=0; i<db->nDb; i++){ |
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246 pDb = &db->aDb[i]; |
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247 if( pDb->pBt==0 ) continue; |
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248 if( sqlite3StrICmp(pDb->zName, zName)==0 ) break; |
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249 } |
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250 |
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251 if( i>=db->nDb ){ |
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252 sqlite3_snprintf(sizeof(zErr),zErr, "no such database: %s", zName); |
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253 goto detach_error; |
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254 } |
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255 if( i<2 ){ |
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256 sqlite3_snprintf(sizeof(zErr),zErr, "cannot detach database %s", zName); |
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257 goto detach_error; |
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258 } |
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259 if( !db->autoCommit ){ |
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260 sqlite3_snprintf(sizeof(zErr), zErr, |
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261 "cannot DETACH database within transaction"); |
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262 goto detach_error; |
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263 } |
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264 if( sqlite3BtreeIsInReadTrans(pDb->pBt) ){ |
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265 sqlite3_snprintf(sizeof(zErr),zErr, "database %s is locked", zName); |
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266 goto detach_error; |
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267 } |
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268 |
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269 sqlite3BtreeClose(pDb->pBt); |
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270 pDb->pBt = 0; |
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271 pDb->pSchema = 0; |
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272 sqlite3ResetInternalSchema(db, 0); |
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273 return; |
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274 |
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275 detach_error: |
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276 sqlite3_result_error(context, zErr, -1); |
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277 } |
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278 |
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279 /* |
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280 ** This procedure generates VDBE code for a single invocation of either the |
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281 ** sqlite_detach() or sqlite_attach() SQL user functions. |
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282 */ |
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283 static void codeAttach( |
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284 Parse *pParse, /* The parser context */ |
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285 int type, /* Either SQLITE_ATTACH or SQLITE_DETACH */ |
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286 const char *zFunc, /* Either "sqlite_attach" or "sqlite_detach */ |
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287 int nFunc, /* Number of args to pass to zFunc */ |
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288 Expr *pAuthArg, /* Expression to pass to authorization callback */ |
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289 Expr *pFilename, /* Name of database file */ |
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290 Expr *pDbname, /* Name of the database to use internally */ |
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291 Expr *pKey /* Database key for encryption extension */ |
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292 ){ |
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293 int rc; |
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294 NameContext sName; |
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295 Vdbe *v; |
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296 FuncDef *pFunc; |
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297 sqlite3* db = pParse->db; |
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298 |
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299 #ifndef SQLITE_OMIT_AUTHORIZATION |
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300 assert( db->mallocFailed || pAuthArg ); |
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301 if( pAuthArg ){ |
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302 char *zAuthArg = sqlite3NameFromToken(db, &pAuthArg->span); |
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303 if( !zAuthArg ){ |
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304 goto attach_end; |
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305 } |
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306 rc = sqlite3AuthCheck(pParse, type, zAuthArg, 0, 0); |
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307 sqlite3_free(zAuthArg); |
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308 if(rc!=SQLITE_OK ){ |
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309 goto attach_end; |
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310 } |
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311 } |
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312 #endif /* SQLITE_OMIT_AUTHORIZATION */ |
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313 |
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314 memset(&sName, 0, sizeof(NameContext)); |
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315 sName.pParse = pParse; |
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316 |
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317 if( |
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318 SQLITE_OK!=(rc = resolveAttachExpr(&sName, pFilename)) || |
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319 SQLITE_OK!=(rc = resolveAttachExpr(&sName, pDbname)) || |
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320 SQLITE_OK!=(rc = resolveAttachExpr(&sName, pKey)) |
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321 ){ |
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322 pParse->nErr++; |
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323 goto attach_end; |
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324 } |
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325 |
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326 v = sqlite3GetVdbe(pParse); |
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327 sqlite3ExprCode(pParse, pFilename); |
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328 sqlite3ExprCode(pParse, pDbname); |
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329 sqlite3ExprCode(pParse, pKey); |
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330 |
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331 assert( v || db->mallocFailed ); |
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332 if( v ){ |
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333 sqlite3VdbeAddOp(v, OP_Function, 0, nFunc); |
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334 pFunc = sqlite3FindFunction(db, zFunc, strlen(zFunc), nFunc, SQLITE_UTF8,0); |
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335 sqlite3VdbeChangeP3(v, -1, (char *)pFunc, P3_FUNCDEF); |
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336 |
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337 /* Code an OP_Expire. For an ATTACH statement, set P1 to true (expire this |
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338 ** statement only). For DETACH, set it to false (expire all existing |
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339 ** statements). |
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340 */ |
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341 sqlite3VdbeAddOp(v, OP_Expire, (type==SQLITE_ATTACH), 0); |
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342 } |
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343 |
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344 attach_end: |
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345 sqlite3ExprDelete(pFilename); |
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346 sqlite3ExprDelete(pDbname); |
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347 sqlite3ExprDelete(pKey); |
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348 } |
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349 |
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350 /* |
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351 ** Called by the parser to compile a DETACH statement. |
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352 ** |
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353 ** DETACH pDbname |
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354 */ |
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355 void sqlite3Detach(Parse *pParse, Expr *pDbname){ |
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356 codeAttach(pParse, SQLITE_DETACH, "sqlite_detach", 1, pDbname, 0, 0, pDbname); |
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357 } |
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358 |
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359 /* |
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360 ** Called by the parser to compile an ATTACH statement. |
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361 ** |
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362 ** ATTACH p AS pDbname KEY pKey |
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363 */ |
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364 void sqlite3Attach(Parse *pParse, Expr *p, Expr *pDbname, Expr *pKey){ |
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365 codeAttach(pParse, SQLITE_ATTACH, "sqlite_attach", 3, p, p, pDbname, pKey); |
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366 } |
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367 #endif /* SQLITE_OMIT_ATTACH */ |
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368 |
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369 /* |
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370 ** Register the functions sqlite_attach and sqlite_detach. |
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371 */ |
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372 void sqlite3AttachFunctions(sqlite3 *db){ |
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373 #ifndef SQLITE_OMIT_ATTACH |
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374 static const int enc = SQLITE_UTF8; |
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375 sqlite3CreateFunc(db, "sqlite_attach", 3, enc, db, attachFunc, 0, 0); |
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376 sqlite3CreateFunc(db, "sqlite_detach", 1, enc, db, detachFunc, 0, 0); |
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377 #endif |
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378 } |
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379 |
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380 /* |
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381 ** Initialize a DbFixer structure. This routine must be called prior |
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382 ** to passing the structure to one of the sqliteFixAAAA() routines below. |
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383 ** |
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384 ** The return value indicates whether or not fixation is required. TRUE |
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385 ** means we do need to fix the database references, FALSE means we do not. |
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386 */ |
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387 int sqlite3FixInit( |
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388 DbFixer *pFix, /* The fixer to be initialized */ |
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389 Parse *pParse, /* Error messages will be written here */ |
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390 int iDb, /* This is the database that must be used */ |
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391 const char *zType, /* "view", "trigger", or "index" */ |
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392 const Token *pName /* Name of the view, trigger, or index */ |
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393 ){ |
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394 sqlite3 *db; |
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395 |
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396 if( iDb<0 || iDb==1 ) return 0; |
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397 db = pParse->db; |
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398 assert( db->nDb>iDb ); |
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399 pFix->pParse = pParse; |
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400 pFix->zDb = db->aDb[iDb].zName; |
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401 pFix->zType = zType; |
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402 pFix->pName = pName; |
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403 return 1; |
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404 } |
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405 |
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406 /* |
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407 ** The following set of routines walk through the parse tree and assign |
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408 ** a specific database to all table references where the database name |
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409 ** was left unspecified in the original SQL statement. The pFix structure |
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410 ** must have been initialized by a prior call to sqlite3FixInit(). |
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411 ** |
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412 ** These routines are used to make sure that an index, trigger, or |
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413 ** view in one database does not refer to objects in a different database. |
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414 ** (Exception: indices, triggers, and views in the TEMP database are |
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415 ** allowed to refer to anything.) If a reference is explicitly made |
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416 ** to an object in a different database, an error message is added to |
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417 ** pParse->zErrMsg and these routines return non-zero. If everything |
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418 ** checks out, these routines return 0. |
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419 */ |
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420 int sqlite3FixSrcList( |
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421 DbFixer *pFix, /* Context of the fixation */ |
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422 SrcList *pList /* The Source list to check and modify */ |
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423 ){ |
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424 int i; |
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425 const char *zDb; |
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426 SrcList::SrcList_item *pItem; |
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427 |
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428 if( pList==0 ) return 0; |
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429 zDb = pFix->zDb; |
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430 for(i=0, pItem=pList->a; i<pList->nSrc; i++, pItem++){ |
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431 if( pItem->zDatabase==0 ){ |
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432 pItem->zDatabase = sqlite3DbStrDup(pFix->pParse->db, zDb); |
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433 }else if( sqlite3StrICmp(pItem->zDatabase,zDb)!=0 ){ |
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434 sqlite3ErrorMsg(pFix->pParse, |
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435 "%s %T cannot reference objects in database %s", |
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436 pFix->zType, pFix->pName, pItem->zDatabase); |
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437 return 1; |
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438 } |
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439 #if !defined(SQLITE_OMIT_VIEW) || !defined(SQLITE_OMIT_TRIGGER) |
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440 if( sqlite3FixSelect(pFix, pItem->pSelect) ) return 1; |
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441 if( sqlite3FixExpr(pFix, pItem->pOn) ) return 1; |
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442 #endif |
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443 } |
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444 return 0; |
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445 } |
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446 #if !defined(SQLITE_OMIT_VIEW) || !defined(SQLITE_OMIT_TRIGGER) |
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447 int sqlite3FixSelect( |
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448 DbFixer *pFix, /* Context of the fixation */ |
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449 Select *pSelect /* The SELECT statement to be fixed to one database */ |
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450 ){ |
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451 while( pSelect ){ |
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452 if( sqlite3FixExprList(pFix, pSelect->pEList) ){ |
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453 return 1; |
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454 } |
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455 if( sqlite3FixSrcList(pFix, pSelect->pSrc) ){ |
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456 return 1; |
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457 } |
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458 if( sqlite3FixExpr(pFix, pSelect->pWhere) ){ |
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459 return 1; |
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460 } |
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461 if( sqlite3FixExpr(pFix, pSelect->pHaving) ){ |
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462 return 1; |
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463 } |
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464 pSelect = pSelect->pPrior; |
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465 } |
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466 return 0; |
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467 } |
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468 int sqlite3FixExpr( |
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469 DbFixer *pFix, /* Context of the fixation */ |
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470 Expr *pExpr /* The expression to be fixed to one database */ |
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471 ){ |
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472 while( pExpr ){ |
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473 if( sqlite3FixSelect(pFix, pExpr->pSelect) ){ |
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474 return 1; |
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475 } |
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476 if( sqlite3FixExprList(pFix, pExpr->pList) ){ |
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477 return 1; |
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478 } |
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479 if( sqlite3FixExpr(pFix, pExpr->pRight) ){ |
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480 return 1; |
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481 } |
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482 pExpr = pExpr->pLeft; |
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483 } |
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484 return 0; |
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485 } |
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486 int sqlite3FixExprList( |
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487 DbFixer *pFix, /* Context of the fixation */ |
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488 ExprList *pList /* The expression to be fixed to one database */ |
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489 ){ |
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490 int i; |
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491 ExprList::ExprList_item *pItem; |
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492 if( pList==0 ) return 0; |
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493 for(i=0, pItem=pList->a; i<pList->nExpr; i++, pItem++){ |
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494 if( sqlite3FixExpr(pFix, pItem->pExpr) ){ |
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495 return 1; |
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496 } |
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497 } |
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498 return 0; |
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499 } |
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500 #endif |
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501 |
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502 #ifndef SQLITE_OMIT_TRIGGER |
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503 int sqlite3FixTriggerStep( |
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504 DbFixer *pFix, /* Context of the fixation */ |
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505 TriggerStep *pStep /* The trigger step be fixed to one database */ |
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506 ){ |
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507 while( pStep ){ |
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508 if( sqlite3FixSelect(pFix, pStep->pSelect) ){ |
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509 return 1; |
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510 } |
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511 if( sqlite3FixExpr(pFix, pStep->pWhere) ){ |
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512 return 1; |
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513 } |
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514 if( sqlite3FixExprList(pFix, pStep->pExprList) ){ |
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515 return 1; |
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516 } |
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517 pStep = pStep->pNext; |
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518 } |
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519 return 0; |
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520 } |
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521 #endif |