151 lines
		
	
	
		
			4.3 KiB
		
	
	
	
		
			Python
		
	
	
	
	
	
			
		
		
	
	
			151 lines
		
	
	
		
			4.3 KiB
		
	
	
	
		
			Python
		
	
	
	
	
	
# Copyright 2013-2017 DataStax, Inc.
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#
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# Licensed under the Apache License, Version 2.0 (the "License");
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# you may not use this file except in compliance with the License.
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# You may obtain a copy of the License at
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#
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# http://www.apache.org/licenses/LICENSE-2.0
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#
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# Unless required by applicable law or agreed to in writing, software
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# distributed under the License is distributed on an "AS IS" BASIS,
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# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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# See the License for the specific language governing permissions and
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# limitations under the License.
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import six
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import struct
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def _make_packer(format_string):
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    packer = struct.Struct(format_string)
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    pack = packer.pack
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    unpack = lambda s: packer.unpack(s)[0]
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    return pack, unpack
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int64_pack, int64_unpack = _make_packer('>q')
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int32_pack, int32_unpack = _make_packer('>i')
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int16_pack, int16_unpack = _make_packer('>h')
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int8_pack, int8_unpack = _make_packer('>b')
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uint64_pack, uint64_unpack = _make_packer('>Q')
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uint32_pack, uint32_unpack = _make_packer('>I')
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uint16_pack, uint16_unpack = _make_packer('>H')
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uint8_pack, uint8_unpack = _make_packer('>B')
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float_pack, float_unpack = _make_packer('>f')
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double_pack, double_unpack = _make_packer('>d')
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# Special case for cassandra header
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header_struct = struct.Struct('>BBbB')
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header_pack = header_struct.pack
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header_unpack = header_struct.unpack
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# in protocol version 3 and higher, the stream ID is two bytes
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v3_header_struct = struct.Struct('>BBhB')
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v3_header_pack = v3_header_struct.pack
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v3_header_unpack = v3_header_struct.unpack
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if six.PY3:
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    def byte2int(b):
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        return b
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    def varint_unpack(term):
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        val = int(''.join("%02x" % i for i in term), 16)
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        if (term[0] & 128) != 0:
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            len_term = len(term)  # pulling this out of the expression to avoid overflow in cython optimized code
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            val -= 1 << (len_term * 8)
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        return val
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else:
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    def byte2int(b):
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        return ord(b)
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    def varint_unpack(term):  # noqa
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        val = int(term.encode('hex'), 16)
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        if (ord(term[0]) & 128) != 0:
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            len_term = len(term)  # pulling this out of the expression to avoid overflow in cython optimized code
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            val = val - (1 << (len_term * 8))
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        return val
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def bit_length(n):
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    if six.PY3 or isinstance(n, int):
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        return int.bit_length(n)
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    else:
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        return long.bit_length(n)
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def varint_pack(big):
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    pos = True
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    if big == 0:
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        return b'\x00'
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    if big < 0:
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        bytelength = bit_length(abs(big) - 1) // 8 + 1
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        big = (1 << bytelength * 8) + big
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        pos = False
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    revbytes = bytearray()
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    while big > 0:
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        revbytes.append(big & 0xff)
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        big >>= 8
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    if pos and revbytes[-1] & 0x80:
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        revbytes.append(0)
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    revbytes.reverse()
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    return six.binary_type(revbytes)
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def encode_zig_zag(n):
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    return (n << 1) ^ (n >> 63)
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def decode_zig_zag(n):
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    return (n >> 1) ^ -(n & 1)
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def vints_unpack(term):  # noqa
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    values = []
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    n = 0
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    while n < len(term):
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        first_byte = byte2int(term[n])
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        if (first_byte & 128) == 0:
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            val = first_byte
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        else:
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            num_extra_bytes = 8 - (~first_byte & 0xff).bit_length()
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            val = first_byte & (0xff >> num_extra_bytes)
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            end = n + num_extra_bytes
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            while n < end:
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                n += 1
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                val <<= 8
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                val |= byte2int(term[n]) & 0xff
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        n += 1
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        values.append(decode_zig_zag(val))
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    return tuple(values)
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def vints_pack(values):
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    revbytes = bytearray()
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    values = [int(v) for v in values[::-1]]
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    for v in values:
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        v = encode_zig_zag(v)
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        if v < 128:
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            revbytes.append(v)
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        else:
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            num_extra_bytes = 0
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            num_bits = v.bit_length()
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            # We need to reserve (num_extra_bytes+1) bits in the first byte
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            # ie. with 1 extra byte, the first byte needs to be something like '10XXXXXX'
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            while num_bits > (8-(num_extra_bytes+1)):
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                num_extra_bytes += 1
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                num_bits -= 8
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                revbytes.append(v & 0xff)
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                v >>= 8
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            # We can now store the last bits in the first byte
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            n = 8 - num_extra_bytes
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            v |= (0xff >> n << n)
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            revbytes.append(abs(v))
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    revbytes.reverse()
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    return six.binary_type(revbytes) |