import hashlib
import unittest
from test import support
-
+from test.support import _4G, precisionbigmemtest
def hexstr(s):
assert isinstance(s, bytes), repr(s)
m2.update(aas + bees + cees)
self.assertEqual(m1.digest(), m2.digest())
-
def check(self, name, data, digest):
# test the direct constructors
computed = getattr(hashlib, name)(data).hexdigest()
b'ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789',
'd174ab98d277d9f5a5611c2c9f419d9f')
+ @precisionbigmemtest(size=_4G + 5, memuse=1)
+ def test_case_md5_huge(self, size):
+ if size == _4G + 5:
+ try:
+ self.check('md5', 'A'*size, 'c9af2dff37468ce5dfee8f2cfc0a9c6d')
+ except OverflowError:
+ pass # 32-bit arch
+
+ @precisionbigmemtest(size=_4G - 1, memuse=1)
+ def test_case_md5_uintmax(self, size):
+ if size == _4G - 1:
+ try:
+ self.check('md5', 'A'*size, '28138d306ff1b8281f1a9067e1a1a2b3')
+ except OverflowError:
+ pass # 32-bit arch
# use the three examples from Federal Information Processing Standards
# Publication 180-1, Secure Hash Standard, 1995 April 17
/* EVP is the preferred interface to hashing in OpenSSL */
#include <openssl/evp.h>
+#define MUNCH_SIZE INT_MAX
+
#ifndef HASH_OBJ_CONSTRUCTOR
#define HASH_OBJ_CONSTRUCTOR 0
return NULL;
MY_GET_BUFFER_VIEW_OR_ERROUT(obj, &view);
-
- EVP_DigestUpdate(&self->ctx, (unsigned char*)view.buf,
- Py_SAFE_DOWNCAST(view.len, Py_ssize_t, unsigned int));
-
+ if (view.len > 0 && view.len <= MUNCH_SIZE) {
+ EVP_DigestUpdate(&self->ctx, view.buf, view.len);
+ } else {
+ Py_ssize_t offset = 0, len = view.len;
+ while (len) {
+ unsigned int process = len > MUNCH_SIZE ? MUNCH_SIZE : len;
+ EVP_DigestUpdate(&self->ctx, (unsigned char*)view.buf + offset, process);
+ len -= process;
+ offset += process;
+ }
+ }
PyBuffer_Release(&view);
Py_INCREF(Py_None);
Py_INCREF(self->name);
if (data_obj) {
- EVP_DigestUpdate(&self->ctx, (unsigned char*)view.buf,
- Py_SAFE_DOWNCAST(view.len, Py_ssize_t, unsigned int));
+ if (len > 0 && len <= MUNCH_SIZE) {
+ EVP_DigestUpdate(&self->ctx, cp, Py_SAFE_DOWNCAST(len, Py_ssize_t,
+ unsigned int));
+ } else {
+ Py_ssize_t offset = 0, len = view.len;
+ while (len) {
+ unsigned int process = len > MUNCH_SIZE ? MUNCH_SIZE : len;
+ EVP_DigestUpdate(&self->ctx, (unsigned char*)view.buf + offset, process);
+ len -= process;
+ offset += process;
+ }
+ }
PyBuffer_Release(&view);
}
-
+
return 0;
}
#endif
static PyObject *
EVPnew(PyObject *name_obj,
const EVP_MD *digest, const EVP_MD_CTX *initial_ctx,
- const unsigned char *cp, unsigned int len)
+ const unsigned char *cp, Py_ssize_t len)
{
EVPobject *self;
EVP_DigestInit(&self->ctx, digest);
}
- if (cp && len)
- EVP_DigestUpdate(&self->ctx, cp, len);
+ if (cp && len) {
+ if (len > 0 && len <= MUNCH_SIZE) {
+ EVP_DigestUpdate(&self->ctx, cp, Py_SAFE_DOWNCAST(len, Py_ssize_t,
+ unsigned int));
+ } else {
+ Py_ssize_t offset = 0;
+ while (len) {
+ unsigned int process = len > MUNCH_SIZE ? MUNCH_SIZE : len;
+ EVP_DigestUpdate(&self->ctx, cp + offset, process);
+ len -= process;
+ offset += process;
+ }
+ }
+ }
return (PyObject *)self;
}
digest = EVP_get_digestbyname(name);
- ret_obj = EVPnew(name_obj, digest, NULL, (unsigned char*)view.buf,
- Py_SAFE_DOWNCAST(view.len, Py_ssize_t, unsigned int));
+ ret_obj = EVPnew(name_obj, digest, NULL, (unsigned char*)view.buf, view.len);
if (data_obj)
PyBuffer_Release(&view);
NULL, \
CONST_new_ ## NAME ## _ctx_p, \
(unsigned char*)view.buf, \
- Py_SAFE_DOWNCAST(view.len, Py_ssize_t, unsigned int)); \
+ view.len); \
\
if (data_obj) \
PyBuffer_Release(&view); \