#if defined(SQLITE_TEST) && defined(SQLITE_ENABLE_FTS5)
#include "fts5.h"
#include <string.h>
#include <assert.h>
typedef struct Fts5tokTable Fts5tokTable;
typedef struct Fts5tokCursor Fts5tokCursor;
typedef struct Fts5tokRow Fts5tokRow;
struct Fts5tokTable {
sqlite3_vtab base;
fts5_tokenizer tok;
Fts5Tokenizer *pTok;
};
struct Fts5tokRow {
char *zToken;
int iStart;
int iEnd;
int iPos;
};
struct Fts5tokCursor {
sqlite3_vtab_cursor base;
int iRowid;
char *zInput;
int nRow;
Fts5tokRow *aRow;
};
static void fts5tokDequote(char *z){
char q = z[0];
if( q=='[' || q=='\'' || q=='"' || q=='`' ){
int iIn = 1;
int iOut = 0;
if( q=='[' ) q = ']';
while( z[iIn] ){
if( z[iIn]==q ){
if( z[iIn+1]!=q ){
iIn++;
break;
}else{
iIn += 2;
z[iOut++] = q;
}
}else{
z[iOut++] = z[iIn++];
}
}
z[iOut] = '\0';
}
}
static int fts5tokDequoteArray(
int argc,
const char * const *argv,
char ***pazDequote
){
int rc = SQLITE_OK;
if( argc==0 ){
*pazDequote = 0;
}else{
int i;
int nByte = 0;
char **azDequote;
for(i=0; i<argc; i++){
nByte += (int)(strlen(argv[i]) + 1);
}
*pazDequote = azDequote = sqlite3_malloc64(sizeof(char *)*argc + nByte);
if( azDequote==0 ){
rc = SQLITE_NOMEM;
}else{
char *pSpace = (char *)&azDequote[argc];
for(i=0; i<argc; i++){
int n = (int)strlen(argv[i]);
azDequote[i] = pSpace;
memcpy(pSpace, argv[i], n+1);
fts5tokDequote(pSpace);
pSpace += (n+1);
}
}
}
return rc;
}
#define FTS3_TOK_SCHEMA "CREATE TABLE x(input HIDDEN, token, start, end, position)"
static int fts5tokConnectMethod(
sqlite3 *db,
void *pCtx,
int argc,
const char * const *argv,
sqlite3_vtab **ppVtab,
char **pzErr
){
fts5_api *pApi = (fts5_api*)pCtx;
Fts5tokTable *pTab = 0;
int rc;
char **azDequote = 0;
int nDequote = 0;
rc = sqlite3_declare_vtab(db,
"CREATE TABLE x(input HIDDEN, token, start, end, position)"
);
if( rc==SQLITE_OK ){
nDequote = argc-3;
rc = fts5tokDequoteArray(nDequote, &argv[3], &azDequote);
}
if( rc==SQLITE_OK ){
pTab = (Fts5tokTable*)sqlite3_malloc(sizeof(Fts5tokTable));
if( pTab==0 ){
rc = SQLITE_NOMEM;
}else{
memset(pTab, 0, sizeof(Fts5tokTable));
}
}
if( rc==SQLITE_OK ){
void *pTokCtx = 0;
const char *zModule = 0;
if( nDequote>0 ){
zModule = azDequote[0];
}
rc = pApi->xFindTokenizer(pApi, zModule, &pTokCtx, &pTab->tok);
if( rc==SQLITE_OK ){
const char **azArg = (nDequote>1 ? (const char **)&azDequote[1] : 0);
int nArg = nDequote>0 ? nDequote-1 : 0;
rc = pTab->tok.xCreate(pTokCtx, azArg, nArg, &pTab->pTok);
}
}
if( rc!=SQLITE_OK ){
sqlite3_free(pTab);
pTab = 0;
}
*ppVtab = (sqlite3_vtab*)pTab;
sqlite3_free(azDequote);
return rc;
}
static int fts5tokDisconnectMethod(sqlite3_vtab *pVtab){
Fts5tokTable *pTab = (Fts5tokTable *)pVtab;
if( pTab->pTok ){
pTab->tok.xDelete(pTab->pTok);
}
sqlite3_free(pTab);
return SQLITE_OK;
}
static int fts5tokBestIndexMethod(
sqlite3_vtab *pVTab,
sqlite3_index_info *pInfo
){
int i;
for(i=0; i<pInfo->nConstraint; i++){
if( pInfo->aConstraint[i].usable
&& pInfo->aConstraint[i].iColumn==0
&& pInfo->aConstraint[i].op==SQLITE_INDEX_CONSTRAINT_EQ
){
pInfo->idxNum = 1;
pInfo->aConstraintUsage[i].argvIndex = 1;
pInfo->aConstraintUsage[i].omit = 1;
pInfo->estimatedCost = 1;
return SQLITE_OK;
}
}
pInfo->idxNum = 0;
assert( pInfo->estimatedCost>1000000.0 );
return SQLITE_OK;
}
static int fts5tokOpenMethod(sqlite3_vtab *pVTab, sqlite3_vtab_cursor **ppCsr){
Fts5tokCursor *pCsr;
pCsr = (Fts5tokCursor *)sqlite3_malloc(sizeof(Fts5tokCursor));
if( pCsr==0 ){
return SQLITE_NOMEM;
}
memset(pCsr, 0, sizeof(Fts5tokCursor));
*ppCsr = (sqlite3_vtab_cursor *)pCsr;
return SQLITE_OK;
}
static void fts5tokResetCursor(Fts5tokCursor *pCsr){
int i;
for(i=0; i<pCsr->nRow; i++){
sqlite3_free(pCsr->aRow[i].zToken);
}
sqlite3_free(pCsr->zInput);
sqlite3_free(pCsr->aRow);
pCsr->zInput = 0;
pCsr->aRow = 0;
pCsr->nRow = 0;
pCsr->iRowid = 0;
}
static int fts5tokCloseMethod(sqlite3_vtab_cursor *pCursor){
Fts5tokCursor *pCsr = (Fts5tokCursor *)pCursor;
fts5tokResetCursor(pCsr);
sqlite3_free(pCsr);
return SQLITE_OK;
}
static int fts5tokNextMethod(sqlite3_vtab_cursor *pCursor){
Fts5tokCursor *pCsr = (Fts5tokCursor *)pCursor;
pCsr->iRowid++;
return SQLITE_OK;
}
static int fts5tokCb(
void *pCtx,
int tflags,
const char *pToken,
int nToken,
int iStart,
int iEnd
){
Fts5tokCursor *pCsr = (Fts5tokCursor*)pCtx;
Fts5tokRow *pRow;
if( (pCsr->nRow & (pCsr->nRow-1))==0 ){
int nNew = pCsr->nRow ? pCsr->nRow*2 : 32;
Fts5tokRow *aNew;
aNew = (Fts5tokRow*)sqlite3_realloc64(pCsr->aRow, nNew*sizeof(Fts5tokRow));
if( aNew==0 ) return SQLITE_NOMEM;
memset(&aNew[pCsr->nRow], 0, sizeof(Fts5tokRow)*(nNew-pCsr->nRow));
pCsr->aRow = aNew;
}
pRow = &pCsr->aRow[pCsr->nRow];
pRow->iStart = iStart;
pRow->iEnd = iEnd;
if( pCsr->nRow ){
pRow->iPos = pRow[-1].iPos + ((tflags & FTS5_TOKEN_COLOCATED) ? 0 : 1);
}
pRow->zToken = sqlite3_malloc(nToken+1);
if( pRow->zToken==0 ) return SQLITE_NOMEM;
memcpy(pRow->zToken, pToken, nToken);
pRow->zToken[nToken] = 0;
pCsr->nRow++;
return SQLITE_OK;
}
static int fts5tokFilterMethod(
sqlite3_vtab_cursor *pCursor,
int idxNum,
const char *idxStr,
int nVal,
sqlite3_value **apVal
){
int rc = SQLITE_ERROR;
Fts5tokCursor *pCsr = (Fts5tokCursor *)pCursor;
Fts5tokTable *pTab = (Fts5tokTable *)(pCursor->pVtab);
fts5tokResetCursor(pCsr);
if( idxNum==1 ){
const char *zByte = (const char *)sqlite3_value_text(apVal[0]);
int nByte = sqlite3_value_bytes(apVal[0]);
pCsr->zInput = sqlite3_malloc(nByte+1);
if( pCsr->zInput==0 ){
rc = SQLITE_NOMEM;
}else{
if( nByte>0 ) memcpy(pCsr->zInput, zByte, nByte);
pCsr->zInput[nByte] = 0;
rc = pTab->tok.xTokenize(
pTab->pTok, (void*)pCsr, 0, zByte, nByte, fts5tokCb
);
}
}
if( rc!=SQLITE_OK ) return rc;
return fts5tokNextMethod(pCursor);
}
static int fts5tokEofMethod(sqlite3_vtab_cursor *pCursor){
Fts5tokCursor *pCsr = (Fts5tokCursor *)pCursor;
return (pCsr->iRowid>pCsr->nRow);
}
static int fts5tokColumnMethod(
sqlite3_vtab_cursor *pCursor,
sqlite3_context *pCtx,
int iCol
){
Fts5tokCursor *pCsr = (Fts5tokCursor *)pCursor;
Fts5tokRow *pRow = &pCsr->aRow[pCsr->iRowid-1];
switch( iCol ){
case 0:
sqlite3_result_text(pCtx, pCsr->zInput, -1, SQLITE_TRANSIENT);
break;
case 1:
sqlite3_result_text(pCtx, pRow->zToken, -1, SQLITE_TRANSIENT);
break;
case 2:
sqlite3_result_int(pCtx, pRow->iStart);
break;
case 3:
sqlite3_result_int(pCtx, pRow->iEnd);
break;
default:
assert( iCol==4 );
sqlite3_result_int(pCtx, pRow->iPos);
break;
}
return SQLITE_OK;
}
static int fts5tokRowidMethod(
sqlite3_vtab_cursor *pCursor,
sqlite_int64 *pRowid
){
Fts5tokCursor *pCsr = (Fts5tokCursor *)pCursor;
*pRowid = (sqlite3_int64)pCsr->iRowid;
return SQLITE_OK;
}
int sqlite3Fts5TestRegisterTok(sqlite3 *db, fts5_api *pApi){
static const sqlite3_module fts5tok_module = {
0,
fts5tokConnectMethod,
fts5tokConnectMethod,
fts5tokBestIndexMethod,
fts5tokDisconnectMethod,
fts5tokDisconnectMethod,
fts5tokOpenMethod,
fts5tokCloseMethod,
fts5tokFilterMethod,
fts5tokNextMethod,
fts5tokEofMethod,
fts5tokColumnMethod,
fts5tokRowidMethod,
0,
0,
0,
0,
0,
0,
0,
0,
0,
0,
0
};
int rc;
rc = sqlite3_create_module(db, "fts5tokenize", &fts5tok_module, (void*)pApi);
return rc;
}
#endif