First pass of syntax & indent nitpick
This commit is contained in:
parent
e8593ba7c7
commit
53879eb8a9
178
_pylibmcmodule.c
178
_pylibmcmodule.c
@ -419,15 +419,12 @@ static PyObject *_PylibMC_RunSetCommandSingle(PylibMC_Client *self,
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}
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}
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#endif
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#endif
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pylibmc_mset serialized = { NULL, 0,
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pylibmc_mset serialized = { NULL };
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NULL, 0,
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0, PYLIBMC_FLAG_NONE,
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NULL, NULL, NULL,
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false };
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success = _PylibMC_SerializeValue(key, NULL, value, time, &serialized);
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success = _PylibMC_SerializeValue(key, NULL, value, time, &serialized);
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if(!success) goto cleanup;
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if (!success)
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goto cleanup;
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success = _PylibMC_RunSetCommand(self, f, fname,
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success = _PylibMC_RunSetCommand(self, f, fname,
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&serialized, 1,
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&serialized, 1,
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@ -449,7 +446,6 @@ static PyObject *_PylibMC_RunSetCommandMulti(PylibMC_Client* self,
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_PylibMC_SetCommand f, char *fname, PyObject* args,
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_PylibMC_SetCommand f, char *fname, PyObject* args,
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PyObject* kwds) {
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PyObject* kwds) {
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/* function called by the set/add/incr/etc commands */
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/* function called by the set/add/incr/etc commands */
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static char *kws[] = { "keys", "key_prefix", "time", "min_compress_len", NULL };
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PyObject* keys = NULL;
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PyObject* keys = NULL;
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PyObject* key_prefix = NULL;
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PyObject* key_prefix = NULL;
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unsigned int time = 0;
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unsigned int time = 0;
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@ -457,6 +453,8 @@ static PyObject *_PylibMC_RunSetCommandMulti(PylibMC_Client* self,
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PyObject * retval = NULL;
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PyObject * retval = NULL;
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size_t idx = 0;
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size_t idx = 0;
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static char *kws[] = { "keys", "key_prefix", "time", "min_compress_len", NULL };
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if (!PyArg_ParseTupleAndKeywords(args, kwds, "O!|O!II", kws,
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if (!PyArg_ParseTupleAndKeywords(args, kwds, "O!|O!II", kws,
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&PyDict_Type, &keys,
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&PyDict_Type, &keys,
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&PyString_Type, &key_prefix,
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&PyString_Type, &key_prefix,
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@ -481,27 +479,28 @@ static PyObject *_PylibMC_RunSetCommandMulti(PylibMC_Client* self,
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memset((void *)serialized, 0x0, nkeys * sizeof(pylibmc_mset));
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memset((void *)serialized, 0x0, nkeys * sizeof(pylibmc_mset));
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/* we're pointing into existing Python memory with the 'key' members
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/**
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of pylibmc_mset (extracted using PyDict_Next) and during
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* We're pointing into existing Python memory with the 'key' members of
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_PylibMC_RunSetCommand (which uses those same 'key' params, and
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* pylibmc_mset (extracted using PyDict_Next) and during
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potentially points into value string objects too), so we don't
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* _PylibMC_RunSetCommand (which uses those same 'key' params, and
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want to go around decrementing any references that risk
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* potentially points into value string objects too), so we don't want to
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destroying the pointed objects until we're done, especially since
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* go around decrementing any references that risk destroying the pointed
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we're going to release the GIL while we do the I/O that accesses
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* objects until we're done, especially since we're going to release the
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that memory. We're assuming that this is safe because Python
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* GIL while we do the I/O that accesses that memory. We're assuming that
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strings are immutable */
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* this is safe because Python strings are immutable
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*/
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Py_ssize_t pos = 0; /* PyDict_Next's 'pos' isn't an incrementing index */
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Py_ssize_t pos = 0; /* PyDict_Next's 'pos' isn't an incrementing index */
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idx = 0;
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while(PyDict_Next(keys, &pos, &curr_key, &curr_value)) {
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for (idx = 0; PyDict_Next(keys, &pos, &curr_key, &curr_value); idx++) {
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int success = _PylibMC_SerializeValue(curr_key, key_prefix,
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int success = _PylibMC_SerializeValue(curr_key, key_prefix,
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curr_value, time,
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curr_value, time,
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&serialized[idx]);
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&serialized[idx]);
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if (!success || PyErr_Occurred() != NULL) {
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if (!success || PyErr_Occurred() != NULL) {
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/* exception should already be on the stack */
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/* exception should already be on the stack */
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goto cleanup;
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goto cleanup;
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}
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}
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idx++;
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}
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}
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if (PyErr_Occurred() != NULL) {
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if (PyErr_Occurred() != NULL) {
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@ -509,31 +508,30 @@ static PyObject *_PylibMC_RunSetCommandMulti(PylibMC_Client* self,
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goto cleanup;
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goto cleanup;
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}
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}
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bool allsuccess = _PylibMC_RunSetCommand(self, f, fname, serialized, nkeys, time);
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bool allsuccess = _PylibMC_RunSetCommand(self, f, fname,
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serialized, nkeys,
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time);
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if (PyErr_Occurred() != NULL) {
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if (PyErr_Occurred() != NULL) {
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goto cleanup;
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goto cleanup;
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}
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}
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/* We're building the return value for set_multi, which is the list
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/* Return value for set_multi, which is a list
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of keys that were not successfully set */
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of keys which failed to be set */
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retval = PyList_New(0);
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if ((retval = PyList_New(0)) == NULL)
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if(retval == NULL || PyErr_Occurred() != NULL) {
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return PyErr_NoMemory();
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goto cleanup;
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}
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for (idx = 0; !allsuccess && idx < nkeys; idx++) {
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if(!allsuccess) {
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if (serialized[idx].success)
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for(idx = 0; idx < nkeys; idx++) {
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continue;
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if(!serialized[idx].success) {
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if (PyList_Append(retval, serialized[idx].key_obj) != 0) {
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if (PyList_Append(retval, serialized[idx].key_obj) != 0) {
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/* Ugh */
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/* Ugh */
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Py_DECREF(retval);
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Py_DECREF(retval);
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retval = NULL;
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retval = PyErr_NoMemory();
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goto cleanup;
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goto cleanup;
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}
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}
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}
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}
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}
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}
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cleanup:
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cleanup:
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if (serialized != NULL) {
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if (serialized != NULL) {
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@ -547,22 +545,13 @@ cleanup:
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}
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}
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static void _PylibMC_FreeMset(pylibmc_mset *mset) {
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static void _PylibMC_FreeMset(pylibmc_mset *mset) {
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mset->key = NULL;
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mset->key_len = 0;
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mset->value = NULL;
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mset->value_len = 0;
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/* if this isn't NULL then we incred it */
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Py_XDECREF(mset->key_obj);
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Py_XDECREF(mset->key_obj);
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mset->key_obj = NULL;
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mset->key_obj = NULL;
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/* if this isn't NULL then we built it */
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Py_XDECREF(mset->prefixed_key_obj);
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Py_XDECREF(mset->prefixed_key_obj);
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mset->prefixed_key_obj = NULL;
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mset->prefixed_key_obj = NULL;
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/* this is either a string that we created, or a string that we
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/* Either a ref we own, or a ref passed to us which we borrowed. */
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passed to us. in the latter case, we incred it ourselves, so this
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should be safe */
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Py_XDECREF(mset->value_obj);
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Py_XDECREF(mset->value_obj);
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mset->value_obj = NULL;
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mset->value_obj = NULL;
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}
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}
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@ -572,7 +561,6 @@ static int _PylibMC_SerializeValue(PyObject* key_obj,
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PyObject* value_obj,
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PyObject* value_obj,
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time_t time,
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time_t time,
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pylibmc_mset* serialized) {
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pylibmc_mset* serialized) {
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/* do the easy bits first */
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serialized->time = time;
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serialized->time = time;
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serialized->success = false;
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serialized->success = false;
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serialized->flags = PYLIBMC_FLAG_NONE;
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serialized->flags = PYLIBMC_FLAG_NONE;
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@ -583,44 +571,53 @@ static int _PylibMC_SerializeValue(PyObject* key_obj,
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return false;
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return false;
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}
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}
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/* we need to incr our reference here so that it's guaranteed to
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/* We need to incr our reference here so that it's guaranteed to
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exist while we release the GIL. Even if we fail after this it
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exist while we release the GIL. Even if we fail after this it
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should be decremeneted by pylib_mset_free */
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should be decremeneted by pylib_mset_free */
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serialized->key_obj = key_obj;
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Py_INCREF(key_obj);
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Py_INCREF(key_obj);
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serialized->key_obj = key_obj;
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/* make the prefixed key if appropriate */
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/* Check the key_prefix */
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if (key_prefix != NULL) {
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if (key_prefix != NULL) {
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if (!_PylibMC_CheckKey(key_prefix)) {
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if (!_PylibMC_CheckKey(key_prefix)) {
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return false;
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return false;
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}
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}
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/* we can safely ignore an empty prefix */
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/* Ignore empty prefixes */
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if(PyString_Size(key_prefix) > 0) {
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if (!PyString_Size(key_prefix)) {
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key_prefix = NULL;
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}
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}
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/* Make the prefixed key if appropriate */
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if (key_prefix != NULL) {
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PyObject* prefixed_key_obj = NULL; /* freed by _PylibMC_FreeMset */
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PyObject* prefixed_key_obj = NULL; /* freed by _PylibMC_FreeMset */
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prefixed_key_obj = PyString_FromFormat("%s%s",
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prefixed_key_obj = PyString_FromFormat("%s%s",
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PyString_AS_STRING(key_prefix),
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PyString_AS_STRING(key_prefix),
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PyString_AS_STRING(key_obj));
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PyString_AS_STRING(key_obj));
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if(prefixed_key_obj == NULL) {
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if(prefixed_key_obj == NULL) {
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return false;
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return false;
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}
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}
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/* check the key and overwrite the C string */
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/* check the key and overwrite the C string */
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if(!_PylibMC_CheckKey(prefixed_key_obj)
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if(!_PylibMC_CheckKey(prefixed_key_obj)
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|| PyString_AsStringAndSize(prefixed_key_obj, &serialized->key,
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|| PyString_AsStringAndSize(prefixed_key_obj,
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&serialized->key,
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&serialized->key_len) == -1) {
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&serialized->key_len) == -1) {
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Py_DECREF(prefixed_key_obj);
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Py_DECREF(prefixed_key_obj);
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return false;
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return false;
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}
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}
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serialized->prefixed_key_obj = prefixed_key_obj;
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serialized->prefixed_key_obj = prefixed_key_obj;
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}
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}
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}
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/* key/key_size should be copasetic, now onto the value */
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/* Key/key_size should be harmonized, now onto the value */
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PyObject* store_val = NULL;
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PyObject* store_val = NULL;
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/* first, build store_val, a Python String object, out of the object
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/* First build store_val, a Python String object, out of the object
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we were passed */
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we were passed */
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if (PyString_Check(value_obj)) {
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if (PyString_Check(value_obj)) {
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store_val = value_obj;
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store_val = value_obj;
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@ -656,7 +653,7 @@ static int _PylibMC_SerializeValue(PyObject* key_obj,
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if(PyString_AsStringAndSize(store_val, &serialized->value,
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if(PyString_AsStringAndSize(store_val, &serialized->value,
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&serialized->value_len) == -1) {
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&serialized->value_len) == -1) {
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if(serialized->flags == PYLIBMC_FLAG_NONE) {
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if(serialized->flags == PYLIBMC_FLAG_NONE) {
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/* for some reason we weren't able to extract the value/size
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/* For some reason we weren't able to extract the value/size
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from a string that we were explicitly passed, that we
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from a string that we were explicitly passed, that we
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INCREF'd above */
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INCREF'd above */
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Py_DECREF(store_val);
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Py_DECREF(store_val);
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@ -664,7 +661,7 @@ static int _PylibMC_SerializeValue(PyObject* key_obj,
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return false;
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return false;
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}
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}
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/* so now we have a reference to a string that we may have
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/* So now we have a reference to a string that we may have
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created. we need that to keep existing while we release the HIL,
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created. we need that to keep existing while we release the HIL,
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so we need to hold the reference, but we need to free it up when
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so we need to hold the reference, but we need to free it up when
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we're done */
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we're done */
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@ -698,28 +695,27 @@ static bool _PylibMC_RunSetCommand(PylibMC_Client* self,
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size_t compressed_len = 0;
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size_t compressed_len = 0;
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if(min_compress && value_len >= min_compress) {
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if(min_compress && value_len >= min_compress) {
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_PylibMC_Deflate(value, value_len, &compressed_value, &compressed_len);
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_PylibMC_Deflate(value, value_len,
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&compressed_value, &compressed_len);
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}
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}
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if(compressed_value != NULL) {
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if(compressed_value != NULL) {
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/* will want to change this if this function needs to get back
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/* Will want to change this if this function
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at the old *value at some point */
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* needs to get back at the old *value at some point */
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value = compressed_value;
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value = compressed_value;
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value_len = compressed_len;
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value_len = compressed_len;
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flags |= PYLIBMC_FLAG_ZLIB;
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flags |= PYLIBMC_FLAG_ZLIB;
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}
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}
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#endif
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#endif
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/* finally go and call the actual libmemcached function */
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/* Finally go and call the actual libmemcached function */
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if(mset->key_len == 0) {
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if(mset->key_len == 0) {
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/* most other implementations ignore zero-length keys, so
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/* Most other implementations ignore zero-length keys, so
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we'll just do that */
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we'll just do that */
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rc = MEMCACHED_NOTSTORED;
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rc = MEMCACHED_NOTSTORED;
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} else {
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} else {
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rc = f(mc,
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rc = f(mc, mset->key, mset->key_len,
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mset->key, mset->key_len,
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value, value_len, mset->time, flags);
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value, value_len,
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mset->time, flags);
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}
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}
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#ifdef USE_ZLIB
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#ifdef USE_ZLIB
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@ -747,11 +743,11 @@ static bool _PylibMC_RunSetCommand(PylibMC_Client* self,
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error = true; /* will break the for loop */
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error = true; /* will break the for loop */
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} /* switch */
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} /* switch */
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} /* for */
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} /* end for each mset */
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Py_END_ALLOW_THREADS;
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Py_END_ALLOW_THREADS;
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/* we only return the last return value, even for a _multi
|
/* We only return the last return value, even for a _multi
|
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operation, but we do set the success on the mset */
|
operation, but we do set the success on the mset */
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if (error) {
|
if (error) {
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PylibMC_ErrFromMemcached(self, fname, rc);
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PylibMC_ErrFromMemcached(self, fname, rc);
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@ -857,10 +853,13 @@ static PyObject *_PylibMC_IncrSingle(PylibMC_Client *self,
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static PyObject *_PylibMC_IncrMulti(PylibMC_Client *self,
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static PyObject *_PylibMC_IncrMulti(PylibMC_Client *self,
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_PylibMC_IncrCommand incr_func,
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_PylibMC_IncrCommand incr_func,
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PyObject *args, PyObject *kwds) {
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PyObject *args, PyObject *kwds) {
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/* takes an iterable of keys and a single delta (that defaults to 1)
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/**
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to be applied to all of them. Consider the return value and
|
* Takes an iterable of keys and a single delta (that defaults to 1)
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exception behaviour to be undocumented: for now it returns None
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* to be applied to all keys. Consider the return value and exception
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and throws an exception on an error incrementing any key */
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* behaviour to be undocumented, for now it returns None and throws an
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* exception on an error incrementing any key
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*/
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PyObject *keys = NULL;
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PyObject *keys = NULL;
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PyObject *key_prefix = NULL;
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PyObject *key_prefix = NULL;
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PyObject *prefixed_keys = NULL;
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PyObject *prefixed_keys = NULL;
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@ -907,21 +906,24 @@ static PyObject *_PylibMC_IncrMulti(PylibMC_Client *self,
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PyObject *key = NULL;
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PyObject *key = NULL;
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size_t idx = 0;
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size_t idx = 0;
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/* build our list of keys, prefixed as appropriate, and turn that
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/**
|
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into a list of pylibmc_incr objects that can be incred in one
|
* Build our list of keys, prefixed as appropriate, and turn that
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go. We're not going to own references to the prefixed keys: so
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* into a list of pylibmc_incr objects that can be incred in one
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that we can free them all at once, we'll give ownership to a list
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* go. We're not going to own references to the prefixed keys: so
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of them (prefixed_keys) which we'll DECR once at the end */
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* that we can free them all at once, we'll give ownership to a list
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* of them (prefixed_keys) which we'll DECR once at the end
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*/
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while((key = PyIter_Next(iterator)) != NULL) {
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while((key = PyIter_Next(iterator)) != NULL) {
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if(!_PylibMC_CheckKey(key)) goto loopcleanup;
|
if(!_PylibMC_CheckKey(key)) goto loopcleanup;
|
||||||
|
|
||||||
if(key_prefix != NULL) {
|
if(key_prefix != NULL) {
|
||||||
|
|
||||||
PyObject* newkey = NULL;
|
PyObject* newkey = NULL;
|
||||||
|
|
||||||
newkey = PyString_FromFormat("%s%s",
|
newkey = PyString_FromFormat("%s%s",
|
||||||
PyString_AS_STRING(key_prefix),
|
PyString_AS_STRING(key_prefix),
|
||||||
PyString_AS_STRING(key));
|
PyString_AS_STRING(key));
|
||||||
|
|
||||||
if(!_PylibMC_CheckKey(newkey)) {
|
if(!_PylibMC_CheckKey(newkey)) {
|
||||||
Py_XDECREF(newkey);
|
Py_XDECREF(newkey);
|
||||||
goto loopcleanup;
|
goto loopcleanup;
|
||||||
@ -943,17 +945,16 @@ static PyObject *_PylibMC_IncrMulti(PylibMC_Client *self,
|
|||||||
key = newkey;
|
key = newkey;
|
||||||
}
|
}
|
||||||
|
|
||||||
if(PyString_AsStringAndSize(key, &incrs[idx].key, &incrs[idx].key_len) == -1)
|
if(PyString_AsStringAndSize(key, &incrs[idx].key,
|
||||||
|
&incrs[idx].key_len) == -1)
|
||||||
goto loopcleanup;
|
goto loopcleanup;
|
||||||
|
|
||||||
incrs[idx].delta = delta;
|
incrs[idx].delta = delta;
|
||||||
incrs[idx].incr_func = incr_func;
|
incrs[idx].incr_func = incr_func;
|
||||||
incrs[idx].result = 0; /* after incring we have no way of knowing
|
/* After incring we have no way of knowing whether the real result is 0
|
||||||
whether the real result is 0 or if the
|
* or if the incr wasn't successful (or if noreply is set), but since
|
||||||
incr wasn't successful (or if noreply is
|
* we're not actually returning the result that's okay for now */
|
||||||
set), but since we're not actually
|
incrs[idx].result = 0;
|
||||||
returning the result that's okay for
|
|
||||||
now */
|
|
||||||
|
|
||||||
loopcleanup:
|
loopcleanup:
|
||||||
Py_DECREF(key);
|
Py_DECREF(key);
|
||||||
@ -962,7 +963,7 @@ loopcleanup:
|
|||||||
break;
|
break;
|
||||||
|
|
||||||
idx++;
|
idx++;
|
||||||
}
|
} /* end each key */
|
||||||
|
|
||||||
/* iteration error */
|
/* iteration error */
|
||||||
if (PyErr_Occurred()) goto cleanup;
|
if (PyErr_Occurred()) goto cleanup;
|
||||||
@ -976,10 +977,7 @@ loopcleanup:
|
|||||||
Py_INCREF(retval);
|
Py_INCREF(retval);
|
||||||
|
|
||||||
cleanup:
|
cleanup:
|
||||||
if(incrs != NULL) {
|
|
||||||
PyMem_Free(incrs);
|
PyMem_Free(incrs);
|
||||||
}
|
|
||||||
|
|
||||||
Py_XDECREF(prefixed_keys);
|
Py_XDECREF(prefixed_keys);
|
||||||
Py_XDECREF(iterator);
|
Py_XDECREF(iterator);
|
||||||
|
|
||||||
@ -1001,9 +999,8 @@ static PyObject *PylibMC_Client_incr_multi(PylibMC_Client *self, PyObject *args,
|
|||||||
return _PylibMC_IncrMulti(self, memcached_increment, args, kwds);
|
return _PylibMC_IncrMulti(self, memcached_increment, args, kwds);
|
||||||
}
|
}
|
||||||
|
|
||||||
static bool _PylibMC_IncrDecr(PylibMC_Client *self, pylibmc_incr *incrs,
|
static bool _PylibMC_IncrDecr(PylibMC_Client *self,
|
||||||
size_t nkeys) {
|
pylibmc_incr *incrs, size_t nkeys) {
|
||||||
|
|
||||||
bool error = false;
|
bool error = false;
|
||||||
memcached_return rc = MEMCACHED_SUCCESS;
|
memcached_return rc = MEMCACHED_SUCCESS;
|
||||||
_PylibMC_IncrCommand f = NULL;
|
_PylibMC_IncrCommand f = NULL;
|
||||||
@ -1013,6 +1010,7 @@ static bool _PylibMC_IncrDecr(PylibMC_Client *self, pylibmc_incr *incrs,
|
|||||||
for (i = 0; i < nkeys && !error; i++) {
|
for (i = 0; i < nkeys && !error; i++) {
|
||||||
pylibmc_incr *incr = &incrs[i];
|
pylibmc_incr *incr = &incrs[i];
|
||||||
uint64_t result = 0;
|
uint64_t result = 0;
|
||||||
|
|
||||||
f = incr->incr_func;
|
f = incr->incr_func;
|
||||||
rc = f(self->mc, incr->key, incr->key_len, incr->delta, &result);
|
rc = f(self->mc, incr->key, incr->key_len, incr->delta, &result);
|
||||||
if (rc == MEMCACHED_SUCCESS) {
|
if (rc == MEMCACHED_SUCCESS) {
|
||||||
|
Reference in New Issue
Block a user