bouquin-sqlcipher4/src/util.c

175 lines
4.9 KiB
C

/* util.c - various utility functions
*
* Copyright (C) 2005-2010 Gerhard Häring <gh@ghaering.de>
*
* This file is part of pysqlite.
*
* This software is provided 'as-is', without any express or implied
* warranty. In no event will the authors be held liable for any damages
* arising from the use of this software.
*
* Permission is granted to anyone to use this software for any purpose,
* including commercial applications, and to alter it and redistribute it
* freely, subject to the following restrictions:
*
* 1. The origin of this software must not be misrepresented; you must not
* claim that you wrote the original software. If you use this software
* in a product, an acknowledgment in the product documentation would be
* appreciated but is not required.
* 2. Altered source versions must be plainly marked as such, and must not be
* misrepresented as being the original software.
* 3. This notice may not be removed or altered from any source distribution.
*/
#include "module.h"
#include "connection.h"
int pysqlite_step(sqlite3_stmt* statement, pysqlite_Connection* connection)
{
int rc;
if (statement == NULL) {
/* this is a workaround for SQLite 3.5 and later. it now apparently
* returns NULL for "no-operation" statements */
rc = SQLITE_OK;
} else {
Py_BEGIN_ALLOW_THREADS
rc = sqlite3_step(statement);
Py_END_ALLOW_THREADS
}
return rc;
}
/**
* Checks the SQLite error code and sets the appropriate DB-API exception.
* Returns the error code (0 means no error occurred).
*/
int _pysqlite_seterror(sqlite3* db, sqlite3_stmt* st)
{
PyObject *exc_class;
int errorcode = sqlite3_errcode(db);
switch (errorcode)
{
case SQLITE_OK:
PyErr_Clear();
return errorcode;
case SQLITE_INTERNAL:
case SQLITE_NOTFOUND:
exc_class = pysqlite_InternalError;
break;
case SQLITE_NOMEM:
(void)PyErr_NoMemory();
return errorcode;
case SQLITE_ERROR:
case SQLITE_PERM:
case SQLITE_ABORT:
case SQLITE_BUSY:
case SQLITE_LOCKED:
case SQLITE_READONLY:
case SQLITE_INTERRUPT:
case SQLITE_IOERR:
case SQLITE_FULL:
case SQLITE_CANTOPEN:
case SQLITE_PROTOCOL:
case SQLITE_EMPTY:
case SQLITE_SCHEMA:
exc_class = pysqlite_OperationalError;
break;
case SQLITE_CORRUPT:
exc_class = pysqlite_DatabaseError;
break;
case SQLITE_TOOBIG:
exc_class = pysqlite_DataError;
break;
case SQLITE_CONSTRAINT:
case SQLITE_MISMATCH:
exc_class = pysqlite_IntegrityError;
break;
case SQLITE_MISUSE:
exc_class = pysqlite_ProgrammingError;;
break;
default:
exc_class = pysqlite_DatabaseError;
break;
}
/* Create and set the exception. */
{
const char *error_msg;
const char *error_name;
PyObject *exc = NULL;
PyObject *args = NULL;
PyObject *py_code = NULL;
PyObject *py_name = NULL;
error_name = sqlite3ErrName(errorcode);
error_msg = sqlite3_errmsg(db);
args = Py_BuildValue("(s)", error_msg);
if (!args)
goto error;
exc = PyObject_Call(exc_class, args, NULL);
if (!exc)
goto error;
py_code = Py_BuildValue("i", errorcode);
if (!py_code)
goto error;
if (PyObject_SetAttrString(exc, "sqlite_errorcode", py_code) < 0)
goto error;
py_name = Py_BuildValue("s", error_name);
if (!py_name)
goto error;
if (PyObject_SetAttrString(exc, "sqlite_errorname", py_name) < 0)
goto error;
PyErr_SetObject((PyObject *) Py_TYPE(exc), exc);
error:
Py_XDECREF(py_code);
Py_XDECREF(py_name);
Py_XDECREF(args);
Py_XDECREF(exc);
}
return errorcode;
}
#ifdef WORDS_BIGENDIAN
# define IS_LITTLE_ENDIAN 0
#else
# define IS_LITTLE_ENDIAN 1
#endif
sqlite_int64
_pysqlite_long_as_int64(PyObject * py_val)
{
int overflow;
long long value = PyLong_AsLongLongAndOverflow(py_val, &overflow);
if (value == -1 && PyErr_Occurred())
return -1;
if (!overflow) {
# if SIZEOF_LONG_LONG > 8
if (-0x8000000000000000LL <= value && value <= 0x7FFFFFFFFFFFFFFFLL)
# endif
return value;
}
else if (sizeof(value) < sizeof(sqlite_int64)) {
sqlite_int64 int64val;
if (_PyLong_AsByteArray((PyLongObject *)py_val,
(unsigned char *)&int64val, sizeof(int64val),
IS_LITTLE_ENDIAN, 1 /* signed */) >= 0) {
return int64val;
}
}
PyErr_SetString(PyExc_OverflowError,
"Python int too large to convert to SQLite INTEGER");
return -1;
}