}
}
- if (self->statement != NULL) {
- /* There is an active statement */
- stmt_reset(self->statement);
- }
-
/* reset description */
Py_INCREF(Py_None);
Py_SETREF(self->description, Py_None);
if (self->statement) {
+ // Reset pending statements on this cursor.
(void)stmt_reset(self->statement);
}
}
}
+ assert(!sqlite3_stmt_busy(self->statement->st));
while (1) {
parameters = PyIter_Next(parameters_iter);
if (!parameters) {
PyErr_Clear();
}
}
- (void)stmt_reset(self->statement);
_pysqlite_seterror(state, self->connection->db);
goto error;
}
}
}
- if (rc == SQLITE_DONE && !multiple) {
+ if (rc == SQLITE_DONE) {
if (self->statement->is_dml) {
- self->rowcount = (long)sqlite3_changes(self->connection->db);
- }
- stmt_reset(self->statement);
- Py_CLEAR(self->statement);
- }
-
- if (multiple) {
- if (self->statement->is_dml && rc == SQLITE_DONE) {
self->rowcount += (long)sqlite3_changes(self->connection->db);
}
stmt_reset(self->statement);
self->locked = 0;
if (PyErr_Occurred()) {
+ if (self->statement) {
+ (void)stmt_reset(self->statement);
+ Py_CLEAR(self->statement);
+ }
self->rowcount = -1L;
return NULL;
- } else {
- return Py_NewRef((PyObject *)self);
}
+ if (self->statement && !sqlite3_stmt_busy(self->statement->st)) {
+ Py_CLEAR(self->statement);
+ }
+ return Py_NewRef((PyObject *)self);
}
/*[clinic input]
sqlite3_stmt *stmt = self->statement->st;
assert(stmt != NULL);
- if (sqlite3_data_count(stmt) == 0) {
- (void)stmt_reset(self->statement);
- Py_CLEAR(self->statement);
- return NULL;
- }
+ assert(sqlite3_data_count(stmt) != 0);
self->locked = 1; // GH-80254: Prevent recursive use of cursors.
PyObject *row = _pysqlite_fetch_one_row(self);