1 | #!/usr/local/bin/python |
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2 | |
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3 | import sys |
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4 | |
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5 | from M2Crypto import SSL, X509, EVP |
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6 | from pyasn1.codec.der import decoder |
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7 | |
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8 | |
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9 | # The version of M2Crypto on users is pretty old and doesn't have all the |
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10 | # features that are useful. The legacy code is somewhat more brittle than the |
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11 | # main line, but will work. |
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12 | if "as_der" not in dir(EVP.PKey): |
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13 | from asn1_raw import get_key_bits_from_file, get_key_bits_from_cert |
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14 | legacy = True |
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15 | else: |
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16 | legacy = False |
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17 | |
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18 | class fedd_ssl_context(SSL.Context): |
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19 | """ |
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20 | Simple wrapper around an M2Crypto.SSL.Context to initialize it for fedd. |
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21 | """ |
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22 | def __init__(self, my_cert, trusted_certs=None, password=None): |
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23 | """ |
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24 | construct a fedd_ssl_context |
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25 | |
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26 | @param my_cert: PEM file with my certificate in it |
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27 | @param trusted_certs: PEM file with trusted certs in it (optional) |
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28 | """ |
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29 | SSL.Context.__init__(self) |
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30 | |
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31 | # load_cert takes a callback to get a password, not a password, so if |
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32 | # the caller provided a password, this creates a nonce callback using a |
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33 | # lambda form. |
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34 | if password != None and not callable(password): |
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35 | # This is cute. password = lambda *args: password produces a |
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36 | # function object that returns itself rather than one that returns |
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37 | # the object itself. This is because password is an object |
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38 | # reference and after the assignment it's a lambda. So we assign |
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39 | # to a temp. |
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40 | pwd = password |
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41 | password =lambda *args: pwd |
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42 | |
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43 | if password != None: |
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44 | self.load_cert(my_cert, callback=password) |
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45 | else: |
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46 | self.load_cert(my_cert) |
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47 | if trusted_certs != None: self.load_verify_locations(trusted_certs) |
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48 | self.set_verify(SSL.verify_peer, 10) |
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49 | |
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50 | class fedid: |
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51 | """ |
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52 | Wrapper around the federated ID from an X509 certificate. |
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53 | """ |
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54 | HASHSIZE=20 |
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55 | def __init__(self, bits=None, hexstr=None, cert=None, file=None): |
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56 | if bits != None: |
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57 | self.set_bits(bits) |
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58 | elif hexstr != None: |
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59 | self.set_hexstr(hexstr) |
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60 | elif cert != None: |
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61 | self.set_cert(cert) |
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62 | elif file != None: |
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63 | self.set_file(file) |
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64 | else: |
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65 | self.buf = None |
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66 | |
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67 | def __hash__(self): |
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68 | return hash(self.buf) |
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69 | |
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70 | def __eq__(self, other): |
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71 | if isinstance(other, type(self)): |
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72 | return self.buf == other.buf |
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73 | elif isinstance(other, type(str())): |
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74 | return self.buf == other; |
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75 | else: |
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76 | return False |
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77 | |
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78 | def __ne__(self, other): return not self.__eq__(other) |
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79 | |
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80 | def __str__(self): |
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81 | if self.buf != None: |
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82 | return str().join([ "%02x" % ord(x) for x in self.buf]) |
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83 | else: return "" |
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84 | |
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85 | def __repr__(self): |
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86 | return "fedid(hexstr='%s')" % self.__str__() |
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87 | |
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88 | def pack_soap(self): |
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89 | return self.buf |
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90 | |
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91 | def digest_bits(self, bits): |
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92 | """Internal function. Compute the fedid from bits and store in buf""" |
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93 | d = EVP.MessageDigest('sha1') |
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94 | d.update(bits) |
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95 | self.buf = d.final() |
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96 | |
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97 | |
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98 | def set_hexstr(self, hexstr): |
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99 | h = hexstr.replace(':','') |
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100 | self.buf= str().join([chr(int(h[i:i+2],16)) \ |
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101 | for i in range(0,2*fedid.HASHSIZE,2)]) |
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102 | |
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103 | def get_hexstr(self): |
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104 | """Return the hexstring representation of the fedid""" |
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105 | return __str__(self) |
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106 | |
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107 | def set_bits(self, bits): |
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108 | """Set the fedid to bits(a 160 bit buffer)""" |
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109 | self.buf = bits |
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110 | |
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111 | def get_bits(self): |
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112 | """Get the 160 bit buffer from the fedid""" |
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113 | return self.buf |
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114 | |
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115 | def set_file(self, file): |
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116 | """Get the fedid from a certificate file |
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117 | |
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118 | Calculate the SHA1 hash over the bit string of the public key as |
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119 | defined in RFC3280. |
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120 | """ |
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121 | self.buf = None |
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122 | if legacy: self.digest_bits(get_key_bits_from_file(file)) |
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123 | else: self.set_cert(X509.load_cert(file)) |
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124 | |
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125 | def set_cert(self, cert): |
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126 | """Get the fedid from a certificate. |
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127 | |
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128 | Calculate the SHA1 hash over the bit string of the public key as |
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129 | defined in RFC3280. |
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130 | """ |
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131 | |
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132 | self.buf = None |
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133 | if (cert != None): |
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134 | if legacy: |
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135 | self.digest_bits(get_key_bits_from_cert(cert)) |
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136 | else: |
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137 | b = [] |
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138 | k = cert.get_pubkey() |
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139 | |
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140 | # Getting the key was easy, but getting the bit string of the |
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141 | # key requires a side trip through ASN.1 |
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142 | dec = decoder.decode(k.as_der()) |
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143 | |
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144 | # kv is a tuple of the bits in the key. The loop below |
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145 | # recombines these into bytes and then into a buffer for the |
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146 | # SSL digest function. |
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147 | kv = dec[0].getComponentByPosition(1) |
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148 | for i in range(0, len(kv), 8): |
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149 | v = 0 |
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150 | for j in range(0, 8): |
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151 | v = (v << 1) + kv[i+j] |
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152 | b.append(v) |
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153 | # The comprehension turns b from a list of bytes into a buffer |
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154 | # (string) of bytes |
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155 | self.digest_bits(str().join([chr(x) for x in b])) |
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156 | |
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157 | def pack_id(id): |
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158 | """ |
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159 | Return a dictionary with the field name set by the id type. Handy for |
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160 | creating dictionaries to be converted to messages. |
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161 | """ |
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162 | if isinstance(id, type(fedid())): return { 'fedid': id } |
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163 | elif id.startswith("http:") or id.startswith("https:"): return { 'uri': id } |
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164 | else: return { 'username': id} |
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165 | |
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166 | def unpack_id(id): |
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167 | """return id as a type determined by the key""" |
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168 | if id.has_key("fedid"): return fedid(id["fedid"]) |
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169 | else: |
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170 | for k in ("username", "uri", "kerberosUsername"): |
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171 | if id.has_key(k): return id[k] |
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172 | return None |
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173 | |
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174 | def pack_soap(container, name, contents): |
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175 | """ |
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176 | Convert the dictionary in contents into a tree of ZSI classes. |
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177 | |
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178 | The holder classes are constructed from factories in container and assigned |
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179 | to either the element or attribute name. This is used to recursively |
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180 | create the SOAP message. |
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181 | """ |
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182 | if getattr(contents, "__iter__", None) != None: |
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183 | attr =getattr(container, "new_%s" % name, None) |
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184 | if attr: obj = attr() |
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185 | else: |
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186 | print dir(container) |
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187 | raise TypeError("%s does not have a new_%s attribute" % \ |
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188 | (container, name)) |
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189 | for e, v in contents.iteritems(): |
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190 | assign = getattr(obj, "set_element_%s" % e, None) or \ |
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191 | getattr(obj, "set_attribute_%s" % e, None) |
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192 | if isinstance(v, type(dict())): |
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193 | assign(pack_soap(obj, e, v)) |
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194 | elif getattr(v, "__iter__", None) != None: |
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195 | assign([ pack_soap(obj, e, val ) for val in v]) |
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196 | elif getattr(v, "pack_soap", None) != None: |
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197 | assign(v.pack_soap()) |
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198 | else: |
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199 | assign(v) |
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200 | return obj |
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201 | else: return contents |
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202 | |
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203 | def unpack_soap(element): |
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204 | """ |
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205 | Convert a tree of ZSI SOAP classes intro a hash. The inverse of pack_soap |
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206 | |
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207 | Elements or elements that are empty are ignored. |
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208 | """ |
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209 | methods = [ m for m in dir(element) \ |
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210 | if m.startswith("get_element") or m.startswith("get_attribute")] |
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211 | if len(methods) > 0: |
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212 | rv = { } |
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213 | for m in methods: |
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214 | if m.startswith("get_element_"): n = m.replace("get_element_","",1) |
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215 | else: n = m.replace("get_attribute_", "", 1) |
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216 | sub = getattr(element, m)() |
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217 | if sub != None: |
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218 | if isinstance(sub, basestring): |
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219 | rv[n] = sub |
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220 | elif getattr(sub, "__iter__", None) != None: |
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221 | if len(sub) > 0: rv[n] = [unpack_soap(e) for e in sub] |
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222 | else: |
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223 | rv[n] = unpack_soap(sub) |
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224 | return rv |
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225 | else: |
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226 | return element |
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