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# -*- coding: utf-8 -*-
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# Copyright (c) 2018-2019 tecnovert
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# Distributed under the MIT software license, see the accompanying
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# file LICENSE.txt or http://www.opensource.org/licenses/mit-license.php.
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import os
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import decimal
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import subprocess
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import json
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import traceback
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import hashlib
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import urllib
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from xmlrpc.client import (
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Transport,
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Fault,
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)
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from .segwit_addr import bech32_decode, convertbits, bech32_encode
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COIN = 100000000
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def format8(i):
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n = abs(i)
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quotient = n // COIN
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remainder = n % COIN
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rv = "%d.%08d" % (quotient, remainder)
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if i < 0:
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rv = '-' + rv
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return rv
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def toBool(s):
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return s.lower() in ["1", "true"]
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def dquantize(n, places=8):
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return n.quantize(decimal.Decimal(10) ** -places)
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def jsonDecimal(obj):
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if isinstance(obj, decimal.Decimal):
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return str(obj)
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raise TypeError
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def dumpj(jin, indent=4):
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return json.dumps(jin, indent=indent, default=jsonDecimal)
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def dumpje(jin):
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return json.dumps(jin, default=jsonDecimal).replace('"', '\\"')
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__b58chars = '123456789ABCDEFGHJKLMNPQRSTUVWXYZabcdefghijkmnopqrstuvwxyz'
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def b58decode(v, length=None):
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long_value = 0
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for (i, c) in enumerate(v[::-1]):
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ofs = __b58chars.find(c)
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if ofs < 0:
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return None
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long_value += ofs * (58**i)
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result = bytes()
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while long_value >= 256:
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div, mod = divmod(long_value, 256)
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result = bytes((mod,)) + result
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long_value = div
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result = bytes((long_value,)) + result
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nPad = 0
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for c in v:
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if c == __b58chars[0]:
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nPad += 1
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else:
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break
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pad = bytes((0,)) * nPad
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result = pad + result
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if length is not None and len(result) != length:
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return None
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return result
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def b58encode(v):
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long_value = 0
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for (i, c) in enumerate(v[::-1]):
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long_value += (256**i) * c
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result = ''
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while long_value >= 58:
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div, mod = divmod(long_value, 58)
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result = __b58chars[mod] + result
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long_value = div
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result = __b58chars[long_value] + result
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# leading 0-bytes in the input become leading-1s
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nPad = 0
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for c in v:
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if c == 0:
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nPad += 1
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else:
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break
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return (__b58chars[0] * nPad) + result
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def decodeWif(network_key):
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key = b58decode(network_key)[1:-4]
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if len(key) == 33:
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return key[:-1]
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return key
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def toWIF(prefix_byte, b, compressed=True):
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b = bytes((prefix_byte, )) + b
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if compressed:
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b += bytes((0x01, ))
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b += hashlib.sha256(hashlib.sha256(b).digest()).digest()[:4]
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return b58encode(b)
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def bech32Decode(hrp, addr):
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hrpgot, data = bech32_decode(addr)
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if hrpgot != hrp:
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return None
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decoded = convertbits(data, 5, 8, False)
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if decoded is None or len(decoded) < 2 or len(decoded) > 40:
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return None
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return bytes(decoded)
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def bech32Encode(hrp, data):
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ret = bech32_encode(hrp, convertbits(data, 8, 5))
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if bech32Decode(hrp, ret) is None:
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return None
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return ret
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def decodeAddress(address_str):
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b58_addr = b58decode(address_str)
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if b58_addr is not None:
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address = b58_addr[:-4]
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checksum = b58_addr[-4:]
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assert(hashlib.sha256(hashlib.sha256(address).digest()).digest()[:4] == checksum), 'Checksum mismatch'
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return b58_addr[:-4]
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return None
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def encodeAddress(address):
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checksum = hashlib.sha256(hashlib.sha256(address).digest()).digest()
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return b58encode(address + checksum[0:4])
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def getKeyID(bytes):
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data = hashlib.sha256(bytes).digest()
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return hashlib.new("ripemd160", data).digest()
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def pubkeyToAddress(prefix, pubkey):
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return encodeAddress(bytes((prefix,)) + getKeyID(pubkey))
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def SerialiseNum(n):
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if n == 0:
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return bytes([0x00])
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if n > 0 and n <= 16:
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return bytes([0x50 + n])
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rv = bytearray()
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neg = n < 0
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absvalue = -n if neg else n
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while(absvalue):
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rv.append(absvalue & 0xff)
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absvalue >>= 8
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if rv[-1] & 0x80:
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rv.append(0x80 if neg else 0)
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elif neg:
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rv[-1] |= 0x80
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return bytes([len(rv)]) + rv
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def DeserialiseNum(b, o=0):
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if b[o] == 0:
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return 0
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if b[o] > 0x50 and b[o] <= 0x50 + 16:
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return b[o] - 0x50
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v = 0
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nb = b[o]
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o += 1
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for i in range(0, nb):
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v |= b[o + i] << (8 * i)
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# If the input vector's most significant byte is 0x80, remove it from the result's msb and return a negative.
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if b[o + nb - 1] & 0x80:
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return -(v & ~(0x80 << (8 * (nb - 1))))
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return v
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class Jsonrpc():
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# __getattr__ complicates extending ServerProxy
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def __init__(self, uri, transport=None, encoding=None, verbose=False,
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allow_none=False, use_datetime=False, use_builtin_types=False,
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*, context=None):
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# establish a "logical" server connection
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# get the url
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type, uri = urllib.parse.splittype(uri)
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if type not in ("http", "https"):
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raise OSError("unsupported XML-RPC protocol")
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self.__host, self.__handler = urllib.parse.splithost(uri)
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if not self.__handler:
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self.__handler = "/RPC2"
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if transport is None:
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handler = Transport
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extra_kwargs = {}
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transport = handler(use_datetime=use_datetime,
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use_builtin_types=use_builtin_types,
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**extra_kwargs)
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self.__transport = transport
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self.__encoding = encoding or 'utf-8'
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self.__verbose = verbose
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self.__allow_none = allow_none
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def close(self):
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if self.__transport is not None:
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self.__transport.close()
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def json_request(self, method, params):
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try:
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connection = self.__transport.make_connection(self.__host)
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headers = self.__transport._extra_headers[:]
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request_body = {
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'method': method,
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'params': params,
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'id': 2
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}
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connection.putrequest("POST", self.__handler)
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headers.append(("Content-Type", "application/json"))
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headers.append(("User-Agent", 'jsonrpc'))
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self.__transport.send_headers(connection, headers)
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self.__transport.send_content(connection, json.dumps(request_body, default=jsonDecimal).encode('utf-8'))
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resp = connection.getresponse()
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return resp.read()
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except Fault:
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raise
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except Exception:
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# All unexpected errors leave connection in
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# a strange state, so we clear it.
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self.__transport.close()
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raise
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def callrpc(rpc_port, auth, method, params=[], wallet=None):
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try:
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url = 'http://%s@127.0.0.1:%d/' % (auth, rpc_port)
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if wallet:
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url += 'wallet/' + wallet
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x = Jsonrpc(url)
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v = x.json_request(method, params)
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x.close()
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r = json.loads(v.decode('utf-8'))
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except Exception as ex:
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traceback.print_exc()
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raise ValueError('RPC Server Error')
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if 'error' in r and r['error'] is not None:
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raise ValueError('RPC error ' + str(r['error']))
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return r['result']
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def callrpc_cli(bindir, datadir, chain, cmd, cli_bin='particl-cli'):
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cli_bin = os.path.join(bindir, cli_bin)
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args = cli_bin + ('' if chain == 'mainnet' else ' -' + chain) + ' -datadir=' + datadir + ' ' + cmd
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p = subprocess.Popen(args, stdin=subprocess.PIPE, stdout=subprocess.PIPE, stderr=subprocess.PIPE, shell=True)
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out = p.communicate()
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if len(out[1]) > 0:
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raise ValueError('RPC error ' + str(out[1]))
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r = out[0].decode('utf-8').strip()
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try:
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r = json.loads(r)
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except Exception:
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pass
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return r
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