4 ** The author disclaims copyright to this source code. In place of
5 ** a legal notice, here is a blessing:
7 ** May you do good and not evil.
8 ** May you find forgiveness for yourself and forgive others.
9 ** May you share freely, never taking more than you give.
11 ******************************************************************************
13 ** This file contains code implements a VFS shim that writes diagnostic
14 ** output for each VFS call, similar to "strace".
18 ** This source file exports a single symbol which is the name of a
21 ** int vfstrace_register(
22 ** const char *zTraceName, // Name of the newly constructed VFS
23 ** const char *zOldVfsName, // Name of the underlying VFS
24 ** int (*xOut)(const char*,void*), // Output routine. ex: fputs
25 ** void *pOutArg, // 2nd argument to xOut. ex: stderr
26 ** int makeDefault // Make the new VFS the default
29 ** Applications that want to trace their VFS usage must provide a callback
30 ** function with this prototype:
32 ** int traceOutput(const char *zMessage, void *pAppData);
34 ** This function will "output" the trace messages, where "output" can
35 ** mean different things to different applications. The traceOutput function
36 ** for the command-line shell (see shell.c) is "fputs" from the standard
37 ** library, which means that all trace output is written on the stream
38 ** specified by the second argument. In the case of the command-line shell
39 ** the second argument is stderr. Other applications might choose to output
40 ** trace information to a file, over a socket, or write it into a buffer.
42 ** The vfstrace_register() function creates a new "shim" VFS named by
43 ** the zTraceName parameter. A "shim" VFS is an SQLite backend that does
44 ** not really perform the duties of a true backend, but simply filters or
45 ** interprets VFS calls before passing them off to another VFS which does
46 ** the actual work. In this case the other VFS - the one that does the
47 ** real work - is identified by the second parameter, zOldVfsName. If
48 ** the 2nd parameter is NULL then the default VFS is used. The common
49 ** case is for the 2nd parameter to be NULL.
51 ** The third and fourth parameters are the pointer to the output function
52 ** and the second argument to the output function. For the SQLite
53 ** command-line shell, when the -vfstrace option is used, these parameters
54 ** are fputs and stderr, respectively.
56 ** The fifth argument is true (non-zero) to cause the newly created VFS
57 ** to become the default VFS. The common case is for the fifth parameter
60 ** The call to vfstrace_register() simply creates the shim VFS that does
61 ** tracing. The application must also arrange to use the new VFS for
62 ** all database connections that are created and for which tracing is
63 ** desired. This can be done by specifying the trace VFS using URI filename
64 ** notation, or by specifying the trace VFS as the 4th parameter to
65 ** sqlite3_open_v2() or by making the trace VFS be the default (by setting
66 ** the 5th parameter of vfstrace_register() to 1).
69 ** ENABLING VFSTRACE IN A COMMAND-LINE SHELL
71 ** The SQLite command line shell implemented by the shell.c source file
72 ** can be used with this module. To compile in -vfstrace support, first
73 ** gather this file (test_vfstrace.c), the shell source file (shell.c),
74 ** and the SQLite amalgamation source files (sqlite3.c, sqlite3.h) into
75 ** the working directory. Then compile using a command like the following:
77 ** gcc -o sqlite3 -Os -I. -DSQLITE_ENABLE_VFSTRACE \
78 ** -DSQLITE_THREADSAFE=0 -DSQLITE_ENABLE_FTS3 -DSQLITE_ENABLE_RTREE \
79 ** -DHAVE_READLINE -DHAVE_USLEEP=1 \
80 ** shell.c test_vfstrace.c sqlite3.c -ldl -lreadline -lncurses
82 ** The gcc command above works on Linux and provides (in addition to the
83 ** -vfstrace option) support for FTS3 and FTS4, RTREE, and command-line
84 ** editing using the readline library. The command-line shell does not
85 ** use threads so we added -DSQLITE_THREADSAFE=0 just to make the code
86 ** run a little faster. For compiling on a Mac, you'll probably need
87 ** to omit the -DHAVE_READLINE, the -lreadline, and the -lncurses options.
88 ** The compilation could be simplified to just this:
90 ** gcc -DSQLITE_ENABLE_VFSTRACE \
91 ** shell.c test_vfstrace.c sqlite3.c -ldl -lpthread
93 ** In this second example, all unnecessary options have been removed
94 ** Note that since the code is now threadsafe, we had to add the -lpthread
95 ** option to pull in the pthreads library.
97 ** To cross-compile for windows using MinGW, a command like this might
100 ** /opt/mingw/bin/i386-mingw32msvc-gcc -o sqlite3.exe -Os -I \
101 ** -DSQLITE_THREADSAFE=0 -DSQLITE_ENABLE_VFSTRACE \
102 ** shell.c test_vfstrace.c sqlite3.c
104 ** Similar compiler commands will work on different systems. The key
105 ** invariants are (1) you must have -DSQLITE_ENABLE_VFSTRACE so that
106 ** the shell.c source file will know to include the -vfstrace command-line
107 ** option and (2) you must compile and link the three source files
108 ** shell,c, test_vfstrace.c, and sqlite3.c.
115 ** An instance of this structure is attached to the each trace VFS to
116 ** provide auxiliary information.
118 typedef struct vfstrace_info vfstrace_info
;
119 struct vfstrace_info
{
120 sqlite3_vfs
*pRootVfs
; /* The underlying real VFS */
121 int (*xOut
)(const char*, void*); /* Send output here */
122 void *pOutArg
; /* First argument to xOut */
123 const char *zVfsName
; /* Name of this trace-VFS */
124 sqlite3_vfs
*pTraceVfs
; /* Pointer back to the trace VFS */
128 ** The sqlite3_file object for the trace VFS
130 typedef struct vfstrace_file vfstrace_file
;
131 struct vfstrace_file
{
132 sqlite3_file base
; /* Base class. Must be first */
133 vfstrace_info
*pInfo
; /* The trace-VFS to which this file belongs */
134 const char *zFName
; /* Base name of the file */
135 sqlite3_file
*pReal
; /* The real underlying file */
139 ** Method declarations for vfstrace_file.
141 static int vfstraceClose(sqlite3_file
*);
142 static int vfstraceRead(sqlite3_file
*, void*, int iAmt
, sqlite3_int64 iOfst
);
143 static int vfstraceWrite(sqlite3_file
*,const void*,int iAmt
, sqlite3_int64
);
144 static int vfstraceTruncate(sqlite3_file
*, sqlite3_int64 size
);
145 static int vfstraceSync(sqlite3_file
*, int flags
);
146 static int vfstraceFileSize(sqlite3_file
*, sqlite3_int64
*pSize
);
147 static int vfstraceLock(sqlite3_file
*, int);
148 static int vfstraceUnlock(sqlite3_file
*, int);
149 static int vfstraceCheckReservedLock(sqlite3_file
*, int *);
150 static int vfstraceFileControl(sqlite3_file
*, int op
, void *pArg
);
151 static int vfstraceSectorSize(sqlite3_file
*);
152 static int vfstraceDeviceCharacteristics(sqlite3_file
*);
153 static int vfstraceShmLock(sqlite3_file
*,int,int,int);
154 static int vfstraceShmMap(sqlite3_file
*,int,int,int, void volatile **);
155 static void vfstraceShmBarrier(sqlite3_file
*);
156 static int vfstraceShmUnmap(sqlite3_file
*,int);
159 ** Method declarations for vfstrace_vfs.
161 static int vfstraceOpen(sqlite3_vfs
*, const char *, sqlite3_file
*, int , int *);
162 static int vfstraceDelete(sqlite3_vfs
*, const char *zName
, int syncDir
);
163 static int vfstraceAccess(sqlite3_vfs
*, const char *zName
, int flags
, int *);
164 static int vfstraceFullPathname(sqlite3_vfs
*, const char *zName
, int, char *);
165 static void *vfstraceDlOpen(sqlite3_vfs
*, const char *zFilename
);
166 static void vfstraceDlError(sqlite3_vfs
*, int nByte
, char *zErrMsg
);
167 static void (*vfstraceDlSym(sqlite3_vfs
*,void*, const char *zSymbol
))(void);
168 static void vfstraceDlClose(sqlite3_vfs
*, void*);
169 static int vfstraceRandomness(sqlite3_vfs
*, int nByte
, char *zOut
);
170 static int vfstraceSleep(sqlite3_vfs
*, int microseconds
);
171 static int vfstraceCurrentTime(sqlite3_vfs
*, double*);
172 static int vfstraceGetLastError(sqlite3_vfs
*, int, char*);
173 static int vfstraceCurrentTimeInt64(sqlite3_vfs
*, sqlite3_int64
*);
174 static int vfstraceSetSystemCall(sqlite3_vfs
*,const char*, sqlite3_syscall_ptr
);
175 static sqlite3_syscall_ptr
vfstraceGetSystemCall(sqlite3_vfs
*, const char *);
176 static const char *vfstraceNextSystemCall(sqlite3_vfs
*, const char *zName
);
179 ** Return a pointer to the tail of the pathname. Examples:
181 ** /home/drh/xyzzy.txt -> xyzzy.txt
182 ** xyzzy.txt -> xyzzy.txt
184 static const char *fileTail(const char *z
){
188 while( i
>0 && z
[i
-1]!='/' ){ i
--; }
193 ** Send trace output defined by zFormat and subsequent arguments.
195 static void vfstrace_printf(
196 vfstrace_info
*pInfo
,
202 va_start(ap
, zFormat
);
203 zMsg
= sqlite3_vmprintf(zFormat
, ap
);
205 pInfo
->xOut(zMsg
, pInfo
->pOutArg
);
210 ** Convert value rc into a string and print it using zFormat. zFormat
211 ** should have exactly one %s
213 static void vfstrace_print_errcode(
214 vfstrace_info
*pInfo
,
221 case SQLITE_OK
: zVal
= "SQLITE_OK"; break;
222 case SQLITE_ERROR
: zVal
= "SQLITE_ERROR"; break;
223 case SQLITE_PERM
: zVal
= "SQLITE_PERM"; break;
224 case SQLITE_ABORT
: zVal
= "SQLITE_ABORT"; break;
225 case SQLITE_BUSY
: zVal
= "SQLITE_BUSY"; break;
226 case SQLITE_NOMEM
: zVal
= "SQLITE_NOMEM"; break;
227 case SQLITE_READONLY
: zVal
= "SQLITE_READONLY"; break;
228 case SQLITE_INTERRUPT
: zVal
= "SQLITE_INTERRUPT"; break;
229 case SQLITE_IOERR
: zVal
= "SQLITE_IOERR"; break;
230 case SQLITE_CORRUPT
: zVal
= "SQLITE_CORRUPT"; break;
231 case SQLITE_FULL
: zVal
= "SQLITE_FULL"; break;
232 case SQLITE_CANTOPEN
: zVal
= "SQLITE_CANTOPEN"; break;
233 case SQLITE_PROTOCOL
: zVal
= "SQLITE_PROTOCOL"; break;
234 case SQLITE_EMPTY
: zVal
= "SQLITE_EMPTY"; break;
235 case SQLITE_SCHEMA
: zVal
= "SQLITE_SCHEMA"; break;
236 case SQLITE_CONSTRAINT
: zVal
= "SQLITE_CONSTRAINT"; break;
237 case SQLITE_MISMATCH
: zVal
= "SQLITE_MISMATCH"; break;
238 case SQLITE_MISUSE
: zVal
= "SQLITE_MISUSE"; break;
239 case SQLITE_NOLFS
: zVal
= "SQLITE_NOLFS"; break;
240 case SQLITE_IOERR_READ
: zVal
= "SQLITE_IOERR_READ"; break;
241 case SQLITE_IOERR_SHORT_READ
: zVal
= "SQLITE_IOERR_SHORT_READ"; break;
242 case SQLITE_IOERR_WRITE
: zVal
= "SQLITE_IOERR_WRITE"; break;
243 case SQLITE_IOERR_FSYNC
: zVal
= "SQLITE_IOERR_FSYNC"; break;
244 case SQLITE_IOERR_DIR_FSYNC
: zVal
= "SQLITE_IOERR_DIR_FSYNC"; break;
245 case SQLITE_IOERR_TRUNCATE
: zVal
= "SQLITE_IOERR_TRUNCATE"; break;
246 case SQLITE_IOERR_FSTAT
: zVal
= "SQLITE_IOERR_FSTAT"; break;
247 case SQLITE_IOERR_UNLOCK
: zVal
= "SQLITE_IOERR_UNLOCK"; break;
248 case SQLITE_IOERR_RDLOCK
: zVal
= "SQLITE_IOERR_RDLOCK"; break;
249 case SQLITE_IOERR_DELETE
: zVal
= "SQLITE_IOERR_DELETE"; break;
250 case SQLITE_IOERR_BLOCKED
: zVal
= "SQLITE_IOERR_BLOCKED"; break;
251 case SQLITE_IOERR_NOMEM
: zVal
= "SQLITE_IOERR_NOMEM"; break;
252 case SQLITE_IOERR_ACCESS
: zVal
= "SQLITE_IOERR_ACCESS"; break;
253 case SQLITE_IOERR_CHECKRESERVEDLOCK
:
254 zVal
= "SQLITE_IOERR_CHECKRESERVEDLOCK"; break;
255 case SQLITE_IOERR_LOCK
: zVal
= "SQLITE_IOERR_LOCK"; break;
256 case SQLITE_IOERR_CLOSE
: zVal
= "SQLITE_IOERR_CLOSE"; break;
257 case SQLITE_IOERR_DIR_CLOSE
: zVal
= "SQLITE_IOERR_DIR_CLOSE"; break;
258 case SQLITE_IOERR_SHMOPEN
: zVal
= "SQLITE_IOERR_SHMOPEN"; break;
259 case SQLITE_IOERR_SHMSIZE
: zVal
= "SQLITE_IOERR_SHMSIZE"; break;
260 case SQLITE_IOERR_SHMLOCK
: zVal
= "SQLITE_IOERR_SHMLOCK"; break;
261 case SQLITE_LOCKED_SHAREDCACHE
: zVal
= "SQLITE_LOCKED_SHAREDCACHE"; break;
262 case SQLITE_BUSY_RECOVERY
: zVal
= "SQLITE_BUSY_RECOVERY"; break;
263 case SQLITE_CANTOPEN_NOTEMPDIR
: zVal
= "SQLITE_CANTOPEN_NOTEMPDIR"; break;
265 sqlite3_snprintf(sizeof(zBuf
), zBuf
, "%d", rc
);
270 vfstrace_printf(pInfo
, zFormat
, zVal
);
274 ** Append to a buffer.
276 static void strappend(char *z
, int *pI
, const char *zAppend
){
278 while( zAppend
[0] ){ z
[i
++] = *(zAppend
++); }
284 ** Close an vfstrace-file.
286 static int vfstraceClose(sqlite3_file
*pFile
){
287 vfstrace_file
*p
= (vfstrace_file
*)pFile
;
288 vfstrace_info
*pInfo
= p
->pInfo
;
290 vfstrace_printf(pInfo
, "%s.xClose(%s)", pInfo
->zVfsName
, p
->zFName
);
291 rc
= p
->pReal
->pMethods
->xClose(p
->pReal
);
292 vfstrace_print_errcode(pInfo
, " -> %s\n", rc
);
294 sqlite3_free((void*)p
->base
.pMethods
);
295 p
->base
.pMethods
= 0;
301 ** Read data from an vfstrace-file.
303 static int vfstraceRead(
309 vfstrace_file
*p
= (vfstrace_file
*)pFile
;
310 vfstrace_info
*pInfo
= p
->pInfo
;
312 vfstrace_printf(pInfo
, "%s.xRead(%s,n=%d,ofst=%lld)",
313 pInfo
->zVfsName
, p
->zFName
, iAmt
, iOfst
);
314 rc
= p
->pReal
->pMethods
->xRead(p
->pReal
, zBuf
, iAmt
, iOfst
);
315 vfstrace_print_errcode(pInfo
, " -> %s\n", rc
);
320 ** Write data to an vfstrace-file.
322 static int vfstraceWrite(
328 vfstrace_file
*p
= (vfstrace_file
*)pFile
;
329 vfstrace_info
*pInfo
= p
->pInfo
;
331 vfstrace_printf(pInfo
, "%s.xWrite(%s,n=%d,ofst=%lld)",
332 pInfo
->zVfsName
, p
->zFName
, iAmt
, iOfst
);
333 rc
= p
->pReal
->pMethods
->xWrite(p
->pReal
, zBuf
, iAmt
, iOfst
);
334 vfstrace_print_errcode(pInfo
, " -> %s\n", rc
);
339 ** Truncate an vfstrace-file.
341 static int vfstraceTruncate(sqlite3_file
*pFile
, sqlite_int64 size
){
342 vfstrace_file
*p
= (vfstrace_file
*)pFile
;
343 vfstrace_info
*pInfo
= p
->pInfo
;
345 vfstrace_printf(pInfo
, "%s.xTruncate(%s,%lld)", pInfo
->zVfsName
, p
->zFName
,
347 rc
= p
->pReal
->pMethods
->xTruncate(p
->pReal
, size
);
348 vfstrace_printf(pInfo
, " -> %d\n", rc
);
353 ** Sync an vfstrace-file.
355 static int vfstraceSync(sqlite3_file
*pFile
, int flags
){
356 vfstrace_file
*p
= (vfstrace_file
*)pFile
;
357 vfstrace_info
*pInfo
= p
->pInfo
;
361 memcpy(zBuf
, "|0", 3);
363 if( flags
& SQLITE_SYNC_FULL
) strappend(zBuf
, &i
, "|FULL");
364 else if( flags
& SQLITE_SYNC_NORMAL
) strappend(zBuf
, &i
, "|NORMAL");
365 if( flags
& SQLITE_SYNC_DATAONLY
) strappend(zBuf
, &i
, "|DATAONLY");
366 if( flags
& ~(SQLITE_SYNC_FULL
|SQLITE_SYNC_DATAONLY
) ){
367 sqlite3_snprintf(sizeof(zBuf
)-i
, &zBuf
[i
], "|0x%x", flags
);
369 vfstrace_printf(pInfo
, "%s.xSync(%s,%s)", pInfo
->zVfsName
, p
->zFName
,
371 rc
= p
->pReal
->pMethods
->xSync(p
->pReal
, flags
);
372 vfstrace_printf(pInfo
, " -> %d\n", rc
);
377 ** Return the current file-size of an vfstrace-file.
379 static int vfstraceFileSize(sqlite3_file
*pFile
, sqlite_int64
*pSize
){
380 vfstrace_file
*p
= (vfstrace_file
*)pFile
;
381 vfstrace_info
*pInfo
= p
->pInfo
;
383 vfstrace_printf(pInfo
, "%s.xFileSize(%s)", pInfo
->zVfsName
, p
->zFName
);
384 rc
= p
->pReal
->pMethods
->xFileSize(p
->pReal
, pSize
);
385 vfstrace_print_errcode(pInfo
, " -> %s,", rc
);
386 vfstrace_printf(pInfo
, " size=%lld\n", *pSize
);
391 ** Return the name of a lock.
393 static const char *lockName(int eLock
){
394 const char *azLockNames
[] = {
395 "NONE", "SHARED", "RESERVED", "PENDING", "EXCLUSIVE"
397 if( eLock
<0 || eLock
>=sizeof(azLockNames
)/sizeof(azLockNames
[0]) ){
400 return azLockNames
[eLock
];
405 ** Lock an vfstrace-file.
407 static int vfstraceLock(sqlite3_file
*pFile
, int eLock
){
408 vfstrace_file
*p
= (vfstrace_file
*)pFile
;
409 vfstrace_info
*pInfo
= p
->pInfo
;
411 vfstrace_printf(pInfo
, "%s.xLock(%s,%s)", pInfo
->zVfsName
, p
->zFName
,
413 rc
= p
->pReal
->pMethods
->xLock(p
->pReal
, eLock
);
414 vfstrace_print_errcode(pInfo
, " -> %s\n", rc
);
419 ** Unlock an vfstrace-file.
421 static int vfstraceUnlock(sqlite3_file
*pFile
, int eLock
){
422 vfstrace_file
*p
= (vfstrace_file
*)pFile
;
423 vfstrace_info
*pInfo
= p
->pInfo
;
425 vfstrace_printf(pInfo
, "%s.xUnlock(%s,%s)", pInfo
->zVfsName
, p
->zFName
,
427 rc
= p
->pReal
->pMethods
->xUnlock(p
->pReal
, eLock
);
428 vfstrace_print_errcode(pInfo
, " -> %s\n", rc
);
433 ** Check if another file-handle holds a RESERVED lock on an vfstrace-file.
435 static int vfstraceCheckReservedLock(sqlite3_file
*pFile
, int *pResOut
){
436 vfstrace_file
*p
= (vfstrace_file
*)pFile
;
437 vfstrace_info
*pInfo
= p
->pInfo
;
439 vfstrace_printf(pInfo
, "%s.xCheckReservedLock(%s,%d)",
440 pInfo
->zVfsName
, p
->zFName
);
441 rc
= p
->pReal
->pMethods
->xCheckReservedLock(p
->pReal
, pResOut
);
442 vfstrace_print_errcode(pInfo
, " -> %s", rc
);
443 vfstrace_printf(pInfo
, ", out=%d\n", *pResOut
);
448 ** File control method. For custom operations on an vfstrace-file.
450 static int vfstraceFileControl(sqlite3_file
*pFile
, int op
, void *pArg
){
451 vfstrace_file
*p
= (vfstrace_file
*)pFile
;
452 vfstrace_info
*pInfo
= p
->pInfo
;
457 case SQLITE_FCNTL_LOCKSTATE
: zOp
= "LOCKSTATE"; break;
458 case SQLITE_GET_LOCKPROXYFILE
: zOp
= "GET_LOCKPROXYFILE"; break;
459 case SQLITE_SET_LOCKPROXYFILE
: zOp
= "SET_LOCKPROXYFILE"; break;
460 case SQLITE_LAST_ERRNO
: zOp
= "LAST_ERRNO"; break;
461 case SQLITE_FCNTL_SIZE_HINT
: {
462 sqlite3_snprintf(sizeof(zBuf
), zBuf
, "SIZE_HINT,%lld",
463 *(sqlite3_int64
*)pArg
);
467 case SQLITE_FCNTL_CHUNK_SIZE
: {
468 sqlite3_snprintf(sizeof(zBuf
), zBuf
, "CHUNK_SIZE,%d", *(int*)pArg
);
472 case SQLITE_FCNTL_FILE_POINTER
: zOp
= "FILE_POINTER"; break;
473 case SQLITE_FCNTL_SYNC_OMITTED
: zOp
= "SYNC_OMITTED"; break;
474 case SQLITE_FCNTL_WIN32_AV_RETRY
: zOp
= "WIN32_AV_RETRY"; break;
475 case SQLITE_FCNTL_PERSIST_WAL
: zOp
= "PERSIST_WAL"; break;
476 case SQLITE_FCNTL_OVERWRITE
: zOp
= "OVERWRITE"; break;
477 case SQLITE_FCNTL_VFSNAME
: zOp
= "VFSNAME"; break;
478 case SQLITE_FCNTL_TEMPFILENAME
: zOp
= "TEMPFILENAME"; break;
479 case 0xca093fa0: zOp
= "DB_UNCHANGED"; break;
480 case SQLITE_FCNTL_PRAGMA
: {
481 const char *const* a
= (const char*const*)pArg
;
482 sqlite3_snprintf(sizeof(zBuf
), zBuf
, "PRAGMA,[%s,%s]",a
[1],a
[2]);
487 sqlite3_snprintf(sizeof zBuf
, zBuf
, "%d", op
);
492 vfstrace_printf(pInfo
, "%s.xFileControl(%s,%s)",
493 pInfo
->zVfsName
, p
->zFName
, zOp
);
494 rc
= p
->pReal
->pMethods
->xFileControl(p
->pReal
, op
, pArg
);
495 vfstrace_print_errcode(pInfo
, " -> %s\n", rc
);
496 if( op
==SQLITE_FCNTL_VFSNAME
&& rc
==SQLITE_OK
){
497 *(char**)pArg
= sqlite3_mprintf("vfstrace.%s/%z",
498 pInfo
->zVfsName
, *(char**)pArg
);
500 if( (op
==SQLITE_FCNTL_PRAGMA
|| op
==SQLITE_FCNTL_TEMPFILENAME
)
501 && rc
==SQLITE_OK
&& *(char**)pArg
){
502 vfstrace_printf(pInfo
, "%s.xFileControl(%s,%s) returns %s",
503 pInfo
->zVfsName
, p
->zFName
, zOp
, *(char**)pArg
);
509 ** Return the sector-size in bytes for an vfstrace-file.
511 static int vfstraceSectorSize(sqlite3_file
*pFile
){
512 vfstrace_file
*p
= (vfstrace_file
*)pFile
;
513 vfstrace_info
*pInfo
= p
->pInfo
;
515 vfstrace_printf(pInfo
, "%s.xSectorSize(%s)", pInfo
->zVfsName
, p
->zFName
);
516 rc
= p
->pReal
->pMethods
->xSectorSize(p
->pReal
);
517 vfstrace_printf(pInfo
, " -> %d\n", rc
);
522 ** Return the device characteristic flags supported by an vfstrace-file.
524 static int vfstraceDeviceCharacteristics(sqlite3_file
*pFile
){
525 vfstrace_file
*p
= (vfstrace_file
*)pFile
;
526 vfstrace_info
*pInfo
= p
->pInfo
;
528 vfstrace_printf(pInfo
, "%s.xDeviceCharacteristics(%s)",
529 pInfo
->zVfsName
, p
->zFName
);
530 rc
= p
->pReal
->pMethods
->xDeviceCharacteristics(p
->pReal
);
531 vfstrace_printf(pInfo
, " -> 0x%08x\n", rc
);
536 ** Shared-memory operations.
538 static int vfstraceShmLock(sqlite3_file
*pFile
, int ofst
, int n
, int flags
){
539 vfstrace_file
*p
= (vfstrace_file
*)pFile
;
540 vfstrace_info
*pInfo
= p
->pInfo
;
544 memcpy(zLck
, "|0", 3);
545 if( flags
& SQLITE_SHM_UNLOCK
) strappend(zLck
, &i
, "|UNLOCK");
546 if( flags
& SQLITE_SHM_LOCK
) strappend(zLck
, &i
, "|LOCK");
547 if( flags
& SQLITE_SHM_SHARED
) strappend(zLck
, &i
, "|SHARED");
548 if( flags
& SQLITE_SHM_EXCLUSIVE
) strappend(zLck
, &i
, "|EXCLUSIVE");
549 if( flags
& ~(0xf) ){
550 sqlite3_snprintf(sizeof(zLck
)-i
, &zLck
[i
], "|0x%x", flags
);
552 vfstrace_printf(pInfo
, "%s.xShmLock(%s,ofst=%d,n=%d,%s)",
553 pInfo
->zVfsName
, p
->zFName
, ofst
, n
, &zLck
[1]);
554 rc
= p
->pReal
->pMethods
->xShmLock(p
->pReal
, ofst
, n
, flags
);
555 vfstrace_print_errcode(pInfo
, " -> %s\n", rc
);
558 static int vfstraceShmMap(
565 vfstrace_file
*p
= (vfstrace_file
*)pFile
;
566 vfstrace_info
*pInfo
= p
->pInfo
;
568 vfstrace_printf(pInfo
, "%s.xShmMap(%s,iRegion=%d,szRegion=%d,isWrite=%d,*)",
569 pInfo
->zVfsName
, p
->zFName
, iRegion
, szRegion
, isWrite
);
570 rc
= p
->pReal
->pMethods
->xShmMap(p
->pReal
, iRegion
, szRegion
, isWrite
, pp
);
571 vfstrace_print_errcode(pInfo
, " -> %s\n", rc
);
574 static void vfstraceShmBarrier(sqlite3_file
*pFile
){
575 vfstrace_file
*p
= (vfstrace_file
*)pFile
;
576 vfstrace_info
*pInfo
= p
->pInfo
;
577 vfstrace_printf(pInfo
, "%s.xShmBarrier(%s)\n", pInfo
->zVfsName
, p
->zFName
);
578 p
->pReal
->pMethods
->xShmBarrier(p
->pReal
);
580 static int vfstraceShmUnmap(sqlite3_file
*pFile
, int delFlag
){
581 vfstrace_file
*p
= (vfstrace_file
*)pFile
;
582 vfstrace_info
*pInfo
= p
->pInfo
;
584 vfstrace_printf(pInfo
, "%s.xShmUnmap(%s,delFlag=%d)",
585 pInfo
->zVfsName
, p
->zFName
, delFlag
);
586 rc
= p
->pReal
->pMethods
->xShmUnmap(p
->pReal
, delFlag
);
587 vfstrace_print_errcode(pInfo
, " -> %s\n", rc
);
594 ** Open an vfstrace file handle.
596 static int vfstraceOpen(
604 vfstrace_file
*p
= (vfstrace_file
*)pFile
;
605 vfstrace_info
*pInfo
= (vfstrace_info
*)pVfs
->pAppData
;
606 sqlite3_vfs
*pRoot
= pInfo
->pRootVfs
;
608 p
->zFName
= zName
? fileTail(zName
) : "<temp>";
609 p
->pReal
= (sqlite3_file
*)&p
[1];
610 rc
= pRoot
->xOpen(pRoot
, zName
, p
->pReal
, flags
, pOutFlags
);
611 vfstrace_printf(pInfo
, "%s.xOpen(%s,flags=0x%x)",
612 pInfo
->zVfsName
, p
->zFName
, flags
);
613 if( p
->pReal
->pMethods
){
614 sqlite3_io_methods
*pNew
= sqlite3_malloc( sizeof(*pNew
) );
615 const sqlite3_io_methods
*pSub
= p
->pReal
->pMethods
;
616 memset(pNew
, 0, sizeof(*pNew
));
617 pNew
->iVersion
= pSub
->iVersion
;
618 pNew
->xClose
= vfstraceClose
;
619 pNew
->xRead
= vfstraceRead
;
620 pNew
->xWrite
= vfstraceWrite
;
621 pNew
->xTruncate
= vfstraceTruncate
;
622 pNew
->xSync
= vfstraceSync
;
623 pNew
->xFileSize
= vfstraceFileSize
;
624 pNew
->xLock
= vfstraceLock
;
625 pNew
->xUnlock
= vfstraceUnlock
;
626 pNew
->xCheckReservedLock
= vfstraceCheckReservedLock
;
627 pNew
->xFileControl
= vfstraceFileControl
;
628 pNew
->xSectorSize
= vfstraceSectorSize
;
629 pNew
->xDeviceCharacteristics
= vfstraceDeviceCharacteristics
;
630 if( pNew
->iVersion
>=2 ){
631 pNew
->xShmMap
= pSub
->xShmMap
? vfstraceShmMap
: 0;
632 pNew
->xShmLock
= pSub
->xShmLock
? vfstraceShmLock
: 0;
633 pNew
->xShmBarrier
= pSub
->xShmBarrier
? vfstraceShmBarrier
: 0;
634 pNew
->xShmUnmap
= pSub
->xShmUnmap
? vfstraceShmUnmap
: 0;
636 pFile
->pMethods
= pNew
;
638 vfstrace_print_errcode(pInfo
, " -> %s", rc
);
640 vfstrace_printf(pInfo
, ", outFlags=0x%x\n", *pOutFlags
);
642 vfstrace_printf(pInfo
, "\n");
648 ** Delete the file located at zPath. If the dirSync argument is true,
649 ** ensure the file-system modifications are synced to disk before
652 static int vfstraceDelete(sqlite3_vfs
*pVfs
, const char *zPath
, int dirSync
){
653 vfstrace_info
*pInfo
= (vfstrace_info
*)pVfs
->pAppData
;
654 sqlite3_vfs
*pRoot
= pInfo
->pRootVfs
;
656 vfstrace_printf(pInfo
, "%s.xDelete(\"%s\",%d)",
657 pInfo
->zVfsName
, zPath
, dirSync
);
658 rc
= pRoot
->xDelete(pRoot
, zPath
, dirSync
);
659 vfstrace_print_errcode(pInfo
, " -> %s\n", rc
);
664 ** Test for access permissions. Return true if the requested permission
665 ** is available, or false otherwise.
667 static int vfstraceAccess(
673 vfstrace_info
*pInfo
= (vfstrace_info
*)pVfs
->pAppData
;
674 sqlite3_vfs
*pRoot
= pInfo
->pRootVfs
;
676 vfstrace_printf(pInfo
, "%s.xDelete(\"%s\",%d)",
677 pInfo
->zVfsName
, zPath
, flags
);
678 rc
= pRoot
->xAccess(pRoot
, zPath
, flags
, pResOut
);
679 vfstrace_print_errcode(pInfo
, " -> %s", rc
);
680 vfstrace_printf(pInfo
, ", out=%d\n", *pResOut
);
685 ** Populate buffer zOut with the full canonical pathname corresponding
686 ** to the pathname in zPath. zOut is guaranteed to point to a buffer
687 ** of at least (DEVSYM_MAX_PATHNAME+1) bytes.
689 static int vfstraceFullPathname(
695 vfstrace_info
*pInfo
= (vfstrace_info
*)pVfs
->pAppData
;
696 sqlite3_vfs
*pRoot
= pInfo
->pRootVfs
;
698 vfstrace_printf(pInfo
, "%s.xFullPathname(\"%s\")",
699 pInfo
->zVfsName
, zPath
);
700 rc
= pRoot
->xFullPathname(pRoot
, zPath
, nOut
, zOut
);
701 vfstrace_print_errcode(pInfo
, " -> %s", rc
);
702 vfstrace_printf(pInfo
, ", out=\"%.*s\"\n", nOut
, zOut
);
707 ** Open the dynamic library located at zPath and return a handle.
709 static void *vfstraceDlOpen(sqlite3_vfs
*pVfs
, const char *zPath
){
710 vfstrace_info
*pInfo
= (vfstrace_info
*)pVfs
->pAppData
;
711 sqlite3_vfs
*pRoot
= pInfo
->pRootVfs
;
712 vfstrace_printf(pInfo
, "%s.xDlOpen(\"%s\")\n", pInfo
->zVfsName
, zPath
);
713 return pRoot
->xDlOpen(pRoot
, zPath
);
717 ** Populate the buffer zErrMsg (size nByte bytes) with a human readable
718 ** utf-8 string describing the most recent error encountered associated
719 ** with dynamic libraries.
721 static void vfstraceDlError(sqlite3_vfs
*pVfs
, int nByte
, char *zErrMsg
){
722 vfstrace_info
*pInfo
= (vfstrace_info
*)pVfs
->pAppData
;
723 sqlite3_vfs
*pRoot
= pInfo
->pRootVfs
;
724 vfstrace_printf(pInfo
, "%s.xDlError(%d)", pInfo
->zVfsName
, nByte
);
725 pRoot
->xDlError(pRoot
, nByte
, zErrMsg
);
726 vfstrace_printf(pInfo
, " -> \"%s\"", zErrMsg
);
730 ** Return a pointer to the symbol zSymbol in the dynamic library pHandle.
732 static void (*vfstraceDlSym(sqlite3_vfs
*pVfs
,void *p
,const char *zSym
))(void){
733 vfstrace_info
*pInfo
= (vfstrace_info
*)pVfs
->pAppData
;
734 sqlite3_vfs
*pRoot
= pInfo
->pRootVfs
;
735 vfstrace_printf(pInfo
, "%s.xDlSym(\"%s\")\n", pInfo
->zVfsName
, zSym
);
736 return pRoot
->xDlSym(pRoot
, p
, zSym
);
740 ** Close the dynamic library handle pHandle.
742 static void vfstraceDlClose(sqlite3_vfs
*pVfs
, void *pHandle
){
743 vfstrace_info
*pInfo
= (vfstrace_info
*)pVfs
->pAppData
;
744 sqlite3_vfs
*pRoot
= pInfo
->pRootVfs
;
745 vfstrace_printf(pInfo
, "%s.xDlOpen()\n", pInfo
->zVfsName
);
746 pRoot
->xDlClose(pRoot
, pHandle
);
750 ** Populate the buffer pointed to by zBufOut with nByte bytes of
753 static int vfstraceRandomness(sqlite3_vfs
*pVfs
, int nByte
, char *zBufOut
){
754 vfstrace_info
*pInfo
= (vfstrace_info
*)pVfs
->pAppData
;
755 sqlite3_vfs
*pRoot
= pInfo
->pRootVfs
;
756 vfstrace_printf(pInfo
, "%s.xRandomness(%d)\n", pInfo
->zVfsName
, nByte
);
757 return pRoot
->xRandomness(pRoot
, nByte
, zBufOut
);
761 ** Sleep for nMicro microseconds. Return the number of microseconds
764 static int vfstraceSleep(sqlite3_vfs
*pVfs
, int nMicro
){
765 vfstrace_info
*pInfo
= (vfstrace_info
*)pVfs
->pAppData
;
766 sqlite3_vfs
*pRoot
= pInfo
->pRootVfs
;
767 return pRoot
->xSleep(pRoot
, nMicro
);
771 ** Return the current time as a Julian Day number in *pTimeOut.
773 static int vfstraceCurrentTime(sqlite3_vfs
*pVfs
, double *pTimeOut
){
774 vfstrace_info
*pInfo
= (vfstrace_info
*)pVfs
->pAppData
;
775 sqlite3_vfs
*pRoot
= pInfo
->pRootVfs
;
776 return pRoot
->xCurrentTime(pRoot
, pTimeOut
);
778 static int vfstraceCurrentTimeInt64(sqlite3_vfs
*pVfs
, sqlite3_int64
*pTimeOut
){
779 vfstrace_info
*pInfo
= (vfstrace_info
*)pVfs
->pAppData
;
780 sqlite3_vfs
*pRoot
= pInfo
->pRootVfs
;
781 return pRoot
->xCurrentTimeInt64(pRoot
, pTimeOut
);
785 ** Return th3 emost recent error code and message
787 static int vfstraceGetLastError(sqlite3_vfs
*pVfs
, int iErr
, char *zErr
){
788 vfstrace_info
*pInfo
= (vfstrace_info
*)pVfs
->pAppData
;
789 sqlite3_vfs
*pRoot
= pInfo
->pRootVfs
;
790 return pRoot
->xGetLastError(pRoot
, iErr
, zErr
);
794 ** Override system calls.
796 static int vfstraceSetSystemCall(
799 sqlite3_syscall_ptr pFunc
801 vfstrace_info
*pInfo
= (vfstrace_info
*)pVfs
->pAppData
;
802 sqlite3_vfs
*pRoot
= pInfo
->pRootVfs
;
803 return pRoot
->xSetSystemCall(pRoot
, zName
, pFunc
);
805 static sqlite3_syscall_ptr
vfstraceGetSystemCall(
809 vfstrace_info
*pInfo
= (vfstrace_info
*)pVfs
->pAppData
;
810 sqlite3_vfs
*pRoot
= pInfo
->pRootVfs
;
811 return pRoot
->xGetSystemCall(pRoot
, zName
);
813 static const char *vfstraceNextSystemCall(sqlite3_vfs
*pVfs
, const char *zName
){
814 vfstrace_info
*pInfo
= (vfstrace_info
*)pVfs
->pAppData
;
815 sqlite3_vfs
*pRoot
= pInfo
->pRootVfs
;
816 return pRoot
->xNextSystemCall(pRoot
, zName
);
821 ** Clients invoke this routine to construct a new trace-vfs shim.
823 ** Return SQLITE_OK on success.
825 ** SQLITE_NOMEM is returned in the case of a memory allocation error.
826 ** SQLITE_NOTFOUND is returned if zOldVfsName does not exist.
828 int vfstrace_register(
829 const char *zTraceName
, /* Name of the newly constructed VFS */
830 const char *zOldVfsName
, /* Name of the underlying VFS */
831 int (*xOut
)(const char*,void*), /* Output routine. ex: fputs */
832 void *pOutArg
, /* 2nd argument to xOut. ex: stderr */
833 int makeDefault
/* True to make the new VFS the default */
837 vfstrace_info
*pInfo
;
841 pRoot
= sqlite3_vfs_find(zOldVfsName
);
842 if( pRoot
==0 ) return SQLITE_NOTFOUND
;
843 nName
= strlen(zTraceName
);
844 nByte
= sizeof(*pNew
) + sizeof(*pInfo
) + nName
+ 1;
845 pNew
= sqlite3_malloc( nByte
);
846 if( pNew
==0 ) return SQLITE_NOMEM
;
847 memset(pNew
, 0, nByte
);
848 pInfo
= (vfstrace_info
*)&pNew
[1];
849 pNew
->iVersion
= pRoot
->iVersion
;
850 pNew
->szOsFile
= pRoot
->szOsFile
+ sizeof(vfstrace_file
);
851 pNew
->mxPathname
= pRoot
->mxPathname
;
852 pNew
->zName
= (char*)&pInfo
[1];
853 memcpy((char*)&pInfo
[1], zTraceName
, nName
+1);
854 pNew
->pAppData
= pInfo
;
855 pNew
->xOpen
= vfstraceOpen
;
856 pNew
->xDelete
= vfstraceDelete
;
857 pNew
->xAccess
= vfstraceAccess
;
858 pNew
->xFullPathname
= vfstraceFullPathname
;
859 pNew
->xDlOpen
= pRoot
->xDlOpen
==0 ? 0 : vfstraceDlOpen
;
860 pNew
->xDlError
= pRoot
->xDlError
==0 ? 0 : vfstraceDlError
;
861 pNew
->xDlSym
= pRoot
->xDlSym
==0 ? 0 : vfstraceDlSym
;
862 pNew
->xDlClose
= pRoot
->xDlClose
==0 ? 0 : vfstraceDlClose
;
863 pNew
->xRandomness
= vfstraceRandomness
;
864 pNew
->xSleep
= vfstraceSleep
;
865 pNew
->xCurrentTime
= vfstraceCurrentTime
;
866 pNew
->xGetLastError
= pRoot
->xGetLastError
==0 ? 0 : vfstraceGetLastError
;
867 if( pNew
->iVersion
>=2 ){
868 pNew
->xCurrentTimeInt64
= pRoot
->xCurrentTimeInt64
==0 ? 0 :
869 vfstraceCurrentTimeInt64
;
870 if( pNew
->iVersion
>=3 ){
871 pNew
->xSetSystemCall
= pRoot
->xSetSystemCall
==0 ? 0 :
872 vfstraceSetSystemCall
;
873 pNew
->xGetSystemCall
= pRoot
->xGetSystemCall
==0 ? 0 :
874 vfstraceGetSystemCall
;
875 pNew
->xNextSystemCall
= pRoot
->xNextSystemCall
==0 ? 0 :
876 vfstraceNextSystemCall
;
879 pInfo
->pRootVfs
= pRoot
;
881 pInfo
->pOutArg
= pOutArg
;
882 pInfo
->zVfsName
= pNew
->zName
;
883 pInfo
->pTraceVfs
= pNew
;
884 vfstrace_printf(pInfo
, "%s.enabled_for(\"%s\")\n",
885 pInfo
->zVfsName
, pRoot
->zName
);
886 return sqlite3_vfs_register(pNew
, makeDefault
);