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				@@ -456,6 +456,11 @@ cdef class _AEAD_BASE: 
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				         if iv is not None: 
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				             self.set_iv(iv) 
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				         assert self.blocks == 0, 'iv needs to be set before encrypt is called' 
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				+        # AES-GCM, AES-OCB, CHACHA20 ciphers all add a internal 32bit counter to the 96bit (12Byte) 
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				+        # IV we provide, thus we must not encrypt more than 2^32 cipher blocks with same IV). 
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				+        block_count = self.block_count(len(data)) 
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				+        if block_count > 2**32: 
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				+            raise ValueError('too much data, would overflow internal 32bit counter') 
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				         cdef int ilen = len(data) 
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				         cdef int hlen = len(header) 
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				         assert hlen == self.header_len 
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				@@ -500,7 +505,7 @@ cdef class _AEAD_BASE: 
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				             offset += olen 
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				             if not EVP_CIPHER_CTX_ctrl(self.ctx, EVP_CTRL_GCM_GET_TAG, self.mac_len, odata+hlen): 
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				                 raise CryptoError('EVP_CIPHER_CTX_ctrl GET TAG failed') 
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				-            self.blocks = self.block_count(ilen) 
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				+            self.blocks = block_count 
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				             return odata[:offset] 
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				         finally: 
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				             PyMem_Free(odata) 
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				@@ -511,6 +516,11 @@ cdef class _AEAD_BASE: 
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				         """ 
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				         authenticate aad + iv + cdata, decrypt cdata, ignore header bytes up to aad_offset. 
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				         """ 
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				+        # AES-GCM, AES-OCB, CHACHA20 ciphers all add a internal 32bit counter to the 96bit (12Byte) 
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				+        # IV we provide, thus we must not decrypt more than 2^32 cipher blocks with same IV): 
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				+        approx_block_count = self.block_count(len(envelope))  # sloppy, but good enough for borg 
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				+        if approx_block_count > 2**32: 
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				+            raise ValueError('too much data, would overflow internal 32bit counter') 
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				         cdef int ilen = len(envelope) 
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				         cdef int hlen = self.header_len 
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				         assert hlen == self.header_len 
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				@@ -573,9 +583,7 @@ cdef class _AEAD_BASE: 
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				     def next_iv(self): 
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				         # call this after encrypt() to get the next iv (int) for the next encrypt() call 
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				         # AES-GCM, AES-OCB, CHACHA20 ciphers all add a internal 32bit counter to the 96bit 
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				-        # (12 byte) IV we provide, thus we only need to increment the IV by 1 (and we must 
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				-        # not encrypt more than 2^32 cipher blocks with same IV): 
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				-        assert self.blocks < 2**32 
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				+        # (12 byte) IV we provide, thus we only need to increment the IV by 1. 
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				         iv = int.from_bytes(self.iv[:self.iv_len], byteorder='big') 
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				         return iv + 1 
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