bpo-20182: AC convert remaining functions/methods in _hashopenssl.c (GH-9213)
This commit is contained in:
parent
34ae04f74d
commit
c6c7237272
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@ -26,12 +26,6 @@
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#include <openssl/objects.h>
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#include "openssl/err.h"
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#include "clinic/_hashopenssl.c.h"
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/*[clinic input]
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module _hashlib
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[clinic start generated code]*/
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/*[clinic end generated code: output=da39a3ee5e6b4b0d input=c2b4ff081bac4be1]*/
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#define MUNCH_SIZE INT_MAX
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#ifndef HASH_OBJ_CONSTRUCTOR
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@ -72,6 +66,13 @@ DEFINE_CONSTS_FOR_NEW(sha256)
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DEFINE_CONSTS_FOR_NEW(sha384)
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DEFINE_CONSTS_FOR_NEW(sha512)
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#include "clinic/_hashopenssl.c.h"
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/*[clinic input]
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module _hashlib
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class _hashlib.HASH "EVPobject *" "&EVPtype"
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[clinic start generated code]*/
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/*[clinic end generated code: output=da39a3ee5e6b4b0d input=a881a5092eecad28]*/
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/* LCOV_EXCL_START */
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static PyObject *
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@ -169,11 +170,15 @@ locked_EVP_MD_CTX_copy(EVP_MD_CTX *new_ctx_p, EVPobject *self)
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/* External methods for a hash object */
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PyDoc_STRVAR(EVP_copy__doc__, "Return a copy of the hash object.");
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/*[clinic input]
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_hashlib.HASH.copy as EVP_copy
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Return a copy of the hash object.
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[clinic start generated code]*/
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static PyObject *
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EVP_copy(EVPobject *self, PyObject *unused)
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EVP_copy_impl(EVPobject *self)
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/*[clinic end generated code: output=b370c21cdb8ca0b4 input=31455b6a3e638069]*/
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{
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EVPobject *newobj;
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@ -186,11 +191,15 @@ EVP_copy(EVPobject *self, PyObject *unused)
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return (PyObject *)newobj;
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}
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PyDoc_STRVAR(EVP_digest__doc__,
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"Return the digest value as a bytes object.");
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/*[clinic input]
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_hashlib.HASH.digest as EVP_digest
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Return the digest value as a bytes object.
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[clinic start generated code]*/
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static PyObject *
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EVP_digest(EVPobject *self, PyObject *unused)
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EVP_digest_impl(EVPobject *self)
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/*[clinic end generated code: output=0f6a3a0da46dc12d input=03561809a419bf00]*/
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{
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unsigned char digest[EVP_MAX_MD_SIZE];
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EVP_MD_CTX *temp_ctx;
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@ -217,11 +226,15 @@ EVP_digest(EVPobject *self, PyObject *unused)
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return retval;
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}
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PyDoc_STRVAR(EVP_hexdigest__doc__,
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"Return the digest value as a string of hexadecimal digits.");
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/*[clinic input]
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_hashlib.HASH.hexdigest as EVP_hexdigest
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Return the digest value as a string of hexadecimal digits.
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[clinic start generated code]*/
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static PyObject *
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EVP_hexdigest(EVPobject *self, PyObject *unused)
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EVP_hexdigest_impl(EVPobject *self)
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/*[clinic end generated code: output=18e6decbaf197296 input=aff9cf0e4c741a9a]*/
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{
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unsigned char digest[EVP_MAX_MD_SIZE];
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EVP_MD_CTX *temp_ctx;
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@ -248,18 +261,21 @@ EVP_hexdigest(EVPobject *self, PyObject *unused)
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return _Py_strhex((const char *)digest, (Py_ssize_t)digest_size);
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}
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PyDoc_STRVAR(EVP_update__doc__,
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"Update this hash object's state with the provided string.");
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/*[clinic input]
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_hashlib.HASH.update as EVP_update
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obj: object
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/
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Update this hash object's state with the provided string.
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[clinic start generated code]*/
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static PyObject *
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EVP_update(EVPobject *self, PyObject *args)
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EVP_update(EVPobject *self, PyObject *obj)
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/*[clinic end generated code: output=ec1d55ed2432e966 input=9b30ec848f015501]*/
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{
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PyObject *obj;
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Py_buffer view;
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if (!PyArg_ParseTuple(args, "O:update", &obj))
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return NULL;
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GET_BUFFER_VIEW_OR_ERROUT(obj, &view);
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if (self->lock == NULL && view.len >= HASHLIB_GIL_MINSIZE) {
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@ -282,10 +298,10 @@ EVP_update(EVPobject *self, PyObject *args)
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}
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static PyMethodDef EVP_methods[] = {
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{"update", (PyCFunction)EVP_update, METH_VARARGS, EVP_update__doc__},
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{"digest", (PyCFunction)EVP_digest, METH_NOARGS, EVP_digest__doc__},
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{"hexdigest", (PyCFunction)EVP_hexdigest, METH_NOARGS, EVP_hexdigest__doc__},
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{"copy", (PyCFunction)EVP_copy, METH_NOARGS, EVP_copy__doc__},
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EVP_UPDATE_METHODDEF
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EVP_DIGEST_METHODDEF
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EVP_HEXDIGEST_METHODDEF
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EVP_COPY_METHODDEF
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{NULL, NULL} /* sentinel */
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};
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@ -329,24 +345,37 @@ EVP_repr(EVPobject *self)
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return PyUnicode_FromFormat("<%U HASH object @ %p>", self->name, self);
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}
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#if HASH_OBJ_CONSTRUCTOR
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/*[clinic input]
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_hashlib.HASH.__init__ as EVP_tp_init
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name as name_obj: object
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string as data_obj: object(py_default="b''") = NULL
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A hash is an object used to calculate a checksum of a string of information.
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Methods:
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update() -- updates the current digest with an additional string
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digest() -- return the current digest value
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hexdigest() -- return the current digest as a string of hexadecimal digits
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copy() -- return a copy of the current hash object
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Attributes:
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name -- the hash algorithm being used by this object
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digest_size -- number of bytes in this hashes output
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[clinic start generated code]*/
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static int
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EVP_tp_init(EVPobject *self, PyObject *args, PyObject *kwds)
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EVP_tp_init_impl(EVPobject *self, PyObject *name_obj, PyObject *data_obj)
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/*[clinic end generated code: output=44766d27757cf851 input=dac22658387f9b5d]*/
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{
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static char *kwlist[] = {"name", "string", NULL};
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PyObject *name_obj = NULL;
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PyObject *data_obj = NULL;
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Py_buffer view;
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char *nameStr;
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const EVP_MD *digest;
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if (!PyArg_ParseTupleAndKeywords(args, kwds, "O|O:HASH", kwlist,
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&name_obj, &data_obj)) {
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return -1;
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}
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if (data_obj)
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GET_BUFFER_VIEW_OR_ERROUT(data_obj, &view);
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GET_BUFFER_VIEW_OR_ERROR(data_obj, &view, return -1);
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if (!PyArg_Parse(name_obj, "s", &nameStr)) {
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PyErr_SetString(PyExc_TypeError, "name must be a string");
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@ -385,25 +414,8 @@ EVP_tp_init(EVPobject *self, PyObject *args, PyObject *kwds)
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return 0;
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}
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#endif
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PyDoc_STRVAR(hashtype_doc,
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"A hash represents the object used to calculate a checksum of a\n\
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string of information.\n\
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\n\
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Methods:\n\
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\n\
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update() -- updates the current digest with an additional string\n\
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digest() -- return the current digest value\n\
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hexdigest() -- return the current digest as a string of hexadecimal digits\n\
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copy() -- return a copy of the current hash object\n\
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\n\
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Attributes:\n\
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\n\
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name -- the hash algorithm being used by this object\n\
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digest_size -- number of bytes in this hashes output\n");
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static PyTypeObject EVPtype = {
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PyVarObject_HEAD_INIT(NULL, 0)
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"_hashlib.HASH", /*tp_name*/
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@ -426,7 +438,7 @@ static PyTypeObject EVPtype = {
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0, /*tp_setattro*/
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0, /*tp_as_buffer*/
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Py_TPFLAGS_DEFAULT | Py_TPFLAGS_BASETYPE, /*tp_flags*/
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hashtype_doc, /*tp_doc*/
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EVP_tp_init__doc__, /*tp_doc*/
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0, /*tp_traverse*/
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0, /*tp_clear*/
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0, /*tp_richcompare*/
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@ -489,29 +501,29 @@ EVPnew(PyObject *name_obj,
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/* The module-level function: new() */
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PyDoc_STRVAR(EVP_new__doc__,
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"Return a new hash object using the named algorithm.\n\
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An optional string argument may be provided and will be\n\
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automatically hashed.\n\
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\n\
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The MD5 and SHA1 algorithms are always supported.\n");
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/*[clinic input]
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_hashlib.new as EVP_new
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name as name_obj: object
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string as data_obj: object(py_default="b''") = NULL
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Return a new hash object using the named algorithm.
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An optional string argument may be provided and will be
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automatically hashed.
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The MD5 and SHA1 algorithms are always supported.
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[clinic start generated code]*/
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static PyObject *
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EVP_new(PyObject *self, PyObject *args, PyObject *kwdict)
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EVP_new_impl(PyObject *module, PyObject *name_obj, PyObject *data_obj)
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/*[clinic end generated code: output=9e7cf664e04b0226 input=1c46e40e0fec91f3]*/
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{
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static char *kwlist[] = {"name", "string", NULL};
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PyObject *name_obj = NULL;
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PyObject *data_obj = NULL;
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Py_buffer view = { 0 };
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PyObject *ret_obj;
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char *name;
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const EVP_MD *digest;
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if (!PyArg_ParseTupleAndKeywords(args, kwdict, "O|O:new", kwlist,
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&name_obj, &data_obj)) {
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return NULL;
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}
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if (!PyArg_Parse(name_obj, "s", &name)) {
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PyErr_SetString(PyExc_TypeError, "name must be a string");
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return NULL;
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@ -619,43 +631,44 @@ PKCS5_PBKDF2_HMAC_fast(const char *pass, int passlen,
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#endif
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PyDoc_STRVAR(pbkdf2_hmac__doc__,
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"pbkdf2_hmac(hash_name, password, salt, iterations, dklen=None) -> key\n\
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\n\
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Password based key derivation function 2 (PKCS #5 v2.0) with HMAC as\n\
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pseudorandom function.");
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/*[clinic input]
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_hashlib.pbkdf2_hmac as pbkdf2_hmac
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hash_name: str
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password: Py_buffer
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salt: Py_buffer
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iterations: long
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dklen as dklen_obj: object = None
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Password based key derivation function 2 (PKCS #5 v2.0) with HMAC as pseudorandom function.
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[clinic start generated code]*/
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static PyObject *
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pbkdf2_hmac(PyObject *self, PyObject *args, PyObject *kwdict)
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pbkdf2_hmac_impl(PyObject *module, const char *hash_name,
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Py_buffer *password, Py_buffer *salt, long iterations,
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PyObject *dklen_obj)
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/*[clinic end generated code: output=144b76005416599b input=ed3ab0d2d28b5d5c]*/
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{
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static char *kwlist[] = {"hash_name", "password", "salt", "iterations",
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"dklen", NULL};
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PyObject *key_obj = NULL, *dklen_obj = Py_None;
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char *name, *key;
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Py_buffer password, salt;
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long iterations, dklen;
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PyObject *key_obj = NULL;
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char *key;
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long dklen;
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int retval;
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const EVP_MD *digest;
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if (!PyArg_ParseTupleAndKeywords(args, kwdict, "sy*y*l|O:pbkdf2_hmac",
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kwlist, &name, &password, &salt,
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&iterations, &dklen_obj)) {
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return NULL;
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}
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digest = EVP_get_digestbyname(name);
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digest = EVP_get_digestbyname(hash_name);
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if (digest == NULL) {
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PyErr_SetString(PyExc_ValueError, "unsupported hash type");
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goto end;
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}
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if (password.len > INT_MAX) {
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if (password->len > INT_MAX) {
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PyErr_SetString(PyExc_OverflowError,
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"password is too long.");
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goto end;
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}
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if (salt.len > INT_MAX) {
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if (salt->len > INT_MAX) {
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PyErr_SetString(PyExc_OverflowError,
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"salt is too long.");
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goto end;
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@ -700,13 +713,13 @@ pbkdf2_hmac(PyObject *self, PyObject *args, PyObject *kwdict)
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Py_BEGIN_ALLOW_THREADS
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#if HAS_FAST_PKCS5_PBKDF2_HMAC
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retval = PKCS5_PBKDF2_HMAC((char*)password.buf, (int)password.len,
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(unsigned char *)salt.buf, (int)salt.len,
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retval = PKCS5_PBKDF2_HMAC((char*)password->buf, (int)password->len,
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(unsigned char *)salt->buf, (int)salt->len,
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iterations, digest, dklen,
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(unsigned char *)key);
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#else
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retval = PKCS5_PBKDF2_HMAC_fast((char*)password.buf, (int)password.len,
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(unsigned char *)salt.buf, (int)salt.len,
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retval = PKCS5_PBKDF2_HMAC_fast((char*)password->buf, (int)password->len,
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(unsigned char *)salt->buf, (int)salt->len,
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iterations, digest, dklen,
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(unsigned char *)key);
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#endif
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@ -719,8 +732,6 @@ pbkdf2_hmac(PyObject *self, PyObject *args, PyObject *kwdict)
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}
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end:
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PyBuffer_Release(&password);
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PyBuffer_Release(&salt);
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return key_obj;
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}
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@ -1034,10 +1045,9 @@ GEN_CONSTRUCTOR(sha512)
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/* List of functions exported by this module */
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static struct PyMethodDef EVP_functions[] = {
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{"new", (PyCFunction)(void(*)(void))EVP_new, METH_VARARGS|METH_KEYWORDS, EVP_new__doc__},
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EVP_NEW_METHODDEF
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#ifdef PY_PBKDF2_HMAC
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{"pbkdf2_hmac", (PyCFunction)(void(*)(void))pbkdf2_hmac, METH_VARARGS|METH_KEYWORDS,
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pbkdf2_hmac__doc__},
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PBKDF2_HMAC_METHODDEF
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#endif
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_HASHLIB_SCRYPT_METHODDEF
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_HASHLIB_HMAC_DIGEST_METHODDEF
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@ -2,6 +2,195 @@
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preserve
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[clinic start generated code]*/
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PyDoc_STRVAR(EVP_copy__doc__,
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"copy($self, /)\n"
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"--\n"
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"\n"
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"Return a copy of the hash object.");
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#define EVP_COPY_METHODDEF \
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{"copy", (PyCFunction)EVP_copy, METH_NOARGS, EVP_copy__doc__},
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static PyObject *
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EVP_copy_impl(EVPobject *self);
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static PyObject *
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EVP_copy(EVPobject *self, PyObject *Py_UNUSED(ignored))
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{
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return EVP_copy_impl(self);
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}
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PyDoc_STRVAR(EVP_digest__doc__,
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"digest($self, /)\n"
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"--\n"
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"\n"
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"Return the digest value as a bytes object.");
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#define EVP_DIGEST_METHODDEF \
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{"digest", (PyCFunction)EVP_digest, METH_NOARGS, EVP_digest__doc__},
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static PyObject *
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EVP_digest_impl(EVPobject *self);
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static PyObject *
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EVP_digest(EVPobject *self, PyObject *Py_UNUSED(ignored))
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{
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return EVP_digest_impl(self);
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}
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PyDoc_STRVAR(EVP_hexdigest__doc__,
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"hexdigest($self, /)\n"
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"--\n"
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"\n"
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"Return the digest value as a string of hexadecimal digits.");
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#define EVP_HEXDIGEST_METHODDEF \
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{"hexdigest", (PyCFunction)EVP_hexdigest, METH_NOARGS, EVP_hexdigest__doc__},
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static PyObject *
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EVP_hexdigest_impl(EVPobject *self);
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static PyObject *
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EVP_hexdigest(EVPobject *self, PyObject *Py_UNUSED(ignored))
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{
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return EVP_hexdigest_impl(self);
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}
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PyDoc_STRVAR(EVP_update__doc__,
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"update($self, obj, /)\n"
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"--\n"
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"\n"
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"Update this hash object\'s state with the provided string.");
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#define EVP_UPDATE_METHODDEF \
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{"update", (PyCFunction)EVP_update, METH_O, EVP_update__doc__},
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PyDoc_STRVAR(EVP_tp_init__doc__,
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"HASH(name, string=b\'\')\n"
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"--\n"
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"\n"
|
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"A hash is an object used to calculate a checksum of a string of information.\n"
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"\n"
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"Methods:\n"
|
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"\n"
|
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"update() -- updates the current digest with an additional string\n"
|
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"digest() -- return the current digest value\n"
|
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"hexdigest() -- return the current digest as a string of hexadecimal digits\n"
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"copy() -- return a copy of the current hash object\n"
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"\n"
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"Attributes:\n"
|
||||
"\n"
|
||||
"name -- the hash algorithm being used by this object\n"
|
||||
"digest_size -- number of bytes in this hashes output");
|
||||
|
||||
static int
|
||||
EVP_tp_init_impl(EVPobject *self, PyObject *name_obj, PyObject *data_obj);
|
||||
|
||||
static int
|
||||
EVP_tp_init(PyObject *self, PyObject *args, PyObject *kwargs)
|
||||
{
|
||||
int return_value = -1;
|
||||
static const char * const _keywords[] = {"name", "string", NULL};
|
||||
static _PyArg_Parser _parser = {"O|O:HASH", _keywords, 0};
|
||||
PyObject *name_obj;
|
||||
PyObject *data_obj = NULL;
|
||||
|
||||
if (!_PyArg_ParseTupleAndKeywordsFast(args, kwargs, &_parser,
|
||||
&name_obj, &data_obj)) {
|
||||
goto exit;
|
||||
}
|
||||
return_value = EVP_tp_init_impl((EVPobject *)self, name_obj, data_obj);
|
||||
|
||||
exit:
|
||||
return return_value;
|
||||
}
|
||||
|
||||
PyDoc_STRVAR(EVP_new__doc__,
|
||||
"new($module, /, name, string=b\'\')\n"
|
||||
"--\n"
|
||||
"\n"
|
||||
"Return a new hash object using the named algorithm.\n"
|
||||
"\n"
|
||||
"An optional string argument may be provided and will be\n"
|
||||
"automatically hashed.\n"
|
||||
"\n"
|
||||
"The MD5 and SHA1 algorithms are always supported.");
|
||||
|
||||
#define EVP_NEW_METHODDEF \
|
||||
{"new", (PyCFunction)(void(*)(void))EVP_new, METH_FASTCALL|METH_KEYWORDS, EVP_new__doc__},
|
||||
|
||||
static PyObject *
|
||||
EVP_new_impl(PyObject *module, PyObject *name_obj, PyObject *data_obj);
|
||||
|
||||
static PyObject *
|
||||
EVP_new(PyObject *module, PyObject *const *args, Py_ssize_t nargs, PyObject *kwnames)
|
||||
{
|
||||
PyObject *return_value = NULL;
|
||||
static const char * const _keywords[] = {"name", "string", NULL};
|
||||
static _PyArg_Parser _parser = {"O|O:new", _keywords, 0};
|
||||
PyObject *name_obj;
|
||||
PyObject *data_obj = NULL;
|
||||
|
||||
if (!_PyArg_ParseStackAndKeywords(args, nargs, kwnames, &_parser,
|
||||
&name_obj, &data_obj)) {
|
||||
goto exit;
|
||||
}
|
||||
return_value = EVP_new_impl(module, name_obj, data_obj);
|
||||
|
||||
exit:
|
||||
return return_value;
|
||||
}
|
||||
|
||||
#if ((OPENSSL_VERSION_NUMBER >= 0x10000000 && !defined(OPENSSL_NO_HMAC) && !defined(OPENSSL_NO_SHA)))
|
||||
|
||||
PyDoc_STRVAR(pbkdf2_hmac__doc__,
|
||||
"pbkdf2_hmac($module, /, hash_name, password, salt, iterations,\n"
|
||||
" dklen=None)\n"
|
||||
"--\n"
|
||||
"\n"
|
||||
"Password based key derivation function 2 (PKCS #5 v2.0) with HMAC as pseudorandom function.");
|
||||
|
||||
#define PBKDF2_HMAC_METHODDEF \
|
||||
{"pbkdf2_hmac", (PyCFunction)(void(*)(void))pbkdf2_hmac, METH_FASTCALL|METH_KEYWORDS, pbkdf2_hmac__doc__},
|
||||
|
||||
static PyObject *
|
||||
pbkdf2_hmac_impl(PyObject *module, const char *hash_name,
|
||||
Py_buffer *password, Py_buffer *salt, long iterations,
|
||||
PyObject *dklen_obj);
|
||||
|
||||
static PyObject *
|
||||
pbkdf2_hmac(PyObject *module, PyObject *const *args, Py_ssize_t nargs, PyObject *kwnames)
|
||||
{
|
||||
PyObject *return_value = NULL;
|
||||
static const char * const _keywords[] = {"hash_name", "password", "salt", "iterations", "dklen", NULL};
|
||||
static _PyArg_Parser _parser = {"sy*y*l|O:pbkdf2_hmac", _keywords, 0};
|
||||
const char *hash_name;
|
||||
Py_buffer password = {NULL, NULL};
|
||||
Py_buffer salt = {NULL, NULL};
|
||||
long iterations;
|
||||
PyObject *dklen_obj = Py_None;
|
||||
|
||||
if (!_PyArg_ParseStackAndKeywords(args, nargs, kwnames, &_parser,
|
||||
&hash_name, &password, &salt, &iterations, &dklen_obj)) {
|
||||
goto exit;
|
||||
}
|
||||
return_value = pbkdf2_hmac_impl(module, hash_name, &password, &salt, iterations, dklen_obj);
|
||||
|
||||
exit:
|
||||
/* Cleanup for password */
|
||||
if (password.obj) {
|
||||
PyBuffer_Release(&password);
|
||||
}
|
||||
/* Cleanup for salt */
|
||||
if (salt.obj) {
|
||||
PyBuffer_Release(&salt);
|
||||
}
|
||||
|
||||
return return_value;
|
||||
}
|
||||
|
||||
#endif /* ((OPENSSL_VERSION_NUMBER >= 0x10000000 && !defined(OPENSSL_NO_HMAC) && !defined(OPENSSL_NO_SHA))) */
|
||||
|
||||
#if (OPENSSL_VERSION_NUMBER > 0x10100000L && !defined(OPENSSL_NO_SCRYPT) && !defined(LIBRESSL_VERSION_NUMBER))
|
||||
|
||||
PyDoc_STRVAR(_hashlib_scrypt__doc__,
|
||||
|
@ -96,7 +285,11 @@ exit:
|
|||
return return_value;
|
||||
}
|
||||
|
||||
#ifndef PBKDF2_HMAC_METHODDEF
|
||||
#define PBKDF2_HMAC_METHODDEF
|
||||
#endif /* !defined(PBKDF2_HMAC_METHODDEF) */
|
||||
|
||||
#ifndef _HASHLIB_SCRYPT_METHODDEF
|
||||
#define _HASHLIB_SCRYPT_METHODDEF
|
||||
#endif /* !defined(_HASHLIB_SCRYPT_METHODDEF) */
|
||||
/*[clinic end generated code: output=acf668396f59f2b6 input=a9049054013a1b77]*/
|
||||
/*[clinic end generated code: output=cae09468e2cdbefe input=a9049054013a1b77]*/
|
||||
|
|
Loading…
Reference in New Issue