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-rw-r--r--net-wireless/crda/files/crda-4.14-python-3.patch95
1 files changed, 0 insertions, 95 deletions
diff --git a/net-wireless/crda/files/crda-4.14-python-3.patch b/net-wireless/crda/files/crda-4.14-python-3.patch
deleted file mode 100644
index df22a6a4bd44..000000000000
--- a/net-wireless/crda/files/crda-4.14-python-3.patch
+++ /dev/null
@@ -1,95 +0,0 @@
-diff --git a/utils/key2pub.py b/utils/key2pub.py
-index 9bb04cd..632e6a6 100755
---- a/utils/key2pub.py
-+++ b/utils/key2pub.py
-@@ -3,20 +3,20 @@
- import sys
- try:
- from M2Crypto import RSA
--except ImportError, e:
-+except ImportError as e:
- sys.stderr.write('ERROR: Failed to import the "M2Crypto" module: %s\n' % e.message)
- sys.stderr.write('Please install the "M2Crypto" Python module.\n')
- sys.stderr.write('On Debian GNU/Linux the package is called "python-m2crypto".\n')
- sys.exit(1)
-
- def print_ssl_64(output, name, val):
-- while val[0] == '\0':
-+ while val[0:1] == b'\0':
- val = val[1:]
- while len(val) % 8:
-- val = '\0' + val
-+ val = b'\0' + val
- vnew = []
- while len(val):
-- vnew.append((val[0], val[1], val[2], val[3], val[4], val[5], val[6], val[7]))
-+ vnew.append((val[0:1], val[1:2], val[2:3], val[3:4], val[4:5], val[5:6], val[6:7], val[7:8]))
- val = val[8:]
- vnew.reverse()
- output.write('static BN_ULONG %s[%d] = {\n' % (name, len(vnew)))
-@@ -34,13 +34,13 @@ def print_ssl_64(output, name, val):
- output.write('};\n\n')
-
- def print_ssl_32(output, name, val):
-- while val[0] == '\0':
-+ while val[0:1] == b'\0':
- val = val[1:]
- while len(val) % 4:
-- val = '\0' + val
-+ val = b'\0' + val
- vnew = []
- while len(val):
-- vnew.append((val[0], val[1], val[2], val[3], ))
-+ vnew.append((val[0:1], val[1:2], val[2:3], val[3:4]))
- val = val[4:]
- vnew.reverse()
- output.write('static BN_ULONG %s[%d] = {\n' % (name, len(vnew)))
-@@ -80,21 +80,21 @@ struct pubkey {
-
- static struct pubkey keys[] = {
- ''')
-- for n in xrange(n + 1):
-+ for n in range(n + 1):
- output.write(' KEYS(e_%d, n_%d),\n' % (n, n))
- output.write('};\n')
- pass
-
- def print_gcrypt(output, name, val):
- output.write('#include <stdint.h>\n')
-- while val[0] == '\0':
-+ while val[0:1] == b'\0':
- val = val[1:]
- output.write('static const uint8_t %s[%d] = {\n' % (name, len(val)))
- idx = 0
- for v in val:
- if not idx:
- output.write('\t')
-- output.write('0x%.2x, ' % ord(v))
-+ output.write('0x%.2x, ' % (v if sys.version_info[0] >=3 else ord(v)))
- idx += 1
- if idx == 8:
- idx = 0
-@@ -117,7 +117,7 @@ struct key_params {
-
- static const struct key_params __attribute__ ((unused)) keys[] = {
- ''')
-- for n in xrange(n + 1):
-+ for n in range(n + 1):
- output.write(' KEYS(e_%d, n_%d),\n' % (n, n))
- output.write('};\n')
-
-@@ -135,7 +135,7 @@ except IndexError:
- mode = None
-
- if not mode in modes:
-- print 'Usage: %s [%s] input-file... output-file' % (sys.argv[0], '|'.join(modes.keys()))
-+ print('Usage: %s [%s] input-file... output-file' % (sys.argv[0], '|'.join(modes.keys())))
- sys.exit(2)
-
- output = open(outfile, 'w')
-@@ -153,3 +153,5 @@ for f in files:
- idx += 1
-
- modes[mode][1](output, idx - 1)
-+
-+output.close()