calog/vendor/mruby/mrbgems/mruby-pack/test/pack.rb
2026-07-04 20:25:00 -05:00

202 lines
6.2 KiB
Ruby
Vendored

PACK_IS_LITTLE_ENDIAN = "\x01\00".unpack('S')[0] == 0x01
def assert_pack tmpl, packed, unpacked
t = tmpl.inspect
assert "assert_pack" do
assert_equal packed, unpacked.pack(tmpl), "#{unpacked.inspect}.pack(#{t})"
assert_equal unpacked, packed.unpack(tmpl), "#{packed.inspect}.unpack(#{t})"
end
end
# pack & unpack 'm' (base64)
assert('pack("m")') do
assert_pack "m", "", [""]
assert_pack "m", "AA==\n", ["\0"]
assert_pack "m", "AAA=\n", ["\0\0"]
assert_pack "m", "AAAA\n", ["\0\0\0"]
assert_pack "m", "YWJjZGVmZ2hpamtsbW5vcHFyc3R1dnd4eXpBQkNERUZHSElKS0xNTk9QUVJT\nVFVWV1hZWg==\n", ["abcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZ"]
ary = ["abcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZ"]
assert_equal ary, "YWJjZGVmZ2hpamtsbW5vcHFyc3R1dnd4eXpBQkNERUZHSElKS0xNTk9QUVJT\nVFVWV1hZWg==\n".unpack("m")
assert_equal ary, "YWJjZGVmZ2hpamtsbW5vcHFyc3R1dnd4eXpBQkNERUZHSElKS0xNTk9QUVJTVFVWV1hZWg==\n".unpack("m")
assert_equal "QQ==\n", ["A", "B"].pack("m50")
assert_equal ["A"], "QQ==\n".unpack("m50")
assert_equal "QQ==Qg==", ["A", "B"].pack("m0 m0")
assert_equal ["A", "B"], "QQ==Qg==".unpack("m10 m10")
assert_pack "m0", "YWJjZGVmZ2hpamtsbW5vcHFyc3R1dnd4eXpBQkNERUZHSElKS0xNTk9QUVJTVFVWV1hZWg==", ["abcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZ"]
end
# pack & unpack 'M' (Quoted-printable)
assert('pack("M")') do
assert_pack "M", "123=\n", ["123"]
assert_pack "M", "=3D\n", ["=\n"]
assert_pack "M", "=E3=81=82=\n", [""]
assert_equal ["123"], "123=\n".unpack("M")
assert_equal ["=\n"], "=3D\n".unpack("M")
assert_equal [""], "=E3=81=82=\n".unpack("M")
end
# pack & unpack 'u' (UU-encode)
assert('pack("u")') do
# Basic string test with known good values
assert_pack "u", "-2&5L;&\\L(%=O<FQD(0``\n`\n", ["Hello, World!"]
# Empty string test
assert_pack "u", "", [""]
# Binary data test with known good values
assert_pack "u", "%``$\"`_\\`\n`\n", ["\x00\x01\x02\x03\xFF"]
# Single character test with corrected value
assert_pack "u", "!00``\n`\n", ["A"]
# Test with different line lengths
short_data = "ABCD"
assert_equal [short_data], [short_data].pack("u").unpack("u")
# Test longer data (will span multiple lines)
long_data = "A" * 50
packed_long = [long_data].pack("u")
assert_equal [long_data], packed_long.unpack("u")
# Test that packed data ends with zero-length line for non-empty input
packed = ["test"].pack("u")
# Check if last two characters are backtick and newline
assert_equal "`\n", packed[-2, 2], "UU-encoded data should end with zero-length line"
end
# pack & unpack 'B'/'b'
assert('pack("B/b")') do
assert_pack "b*", "\xFF\x00", ["1111111100000000"]
assert_pack "b*", "\x01\x02", ["1000000001000000"]
assert_pack "b3", "\x01", ["100"]
assert_pack "B*", "\xFF\x00", ["1111111100000000"]
assert_pack "B*", "\x01\x02", ["0000000100000010"]
end
# pack & unpack 'H'
assert('pack("H")') do
assert_pack "H*", "01", ["3031"]
assert_pack "H*", "\020", ["10"]
end
assert('pack("C")') do
assert_pack "C*", "\x00\x01\x7F\x80\xFF", [0, 1, 127, 128, 255]
end
assert('pack("a")') do
assert_equal "a", ["abc"].pack("a")
assert_equal "abc", ["abc"].pack("a*")
assert_equal "abc\0", ["abc"].pack("a4")
assert_equal ["abc\0"], "abc\0".unpack("a4")
assert_equal ["abc "], "abc ".unpack("a4")
end
assert('pack("A")') do
assert_equal "a", ["abc"].pack("A")
assert_equal "abc", ["abc"].pack("A*")
assert_equal "abc ", ["abc"].pack("A4")
assert_equal ["abc"], "abc\0".unpack("A4")
assert_equal ["abc"], "abc ".unpack("A4")
end
# regression tests
assert('issue #1') do
assert_equal "\000\001\000\002", [1, 2].pack("nn")
end
assert 'pack float' do
skip unless Object.const_defined?(:Float)
assert_pack 'e', "\x00\x00@@", [3.0]
assert_pack 'g', "@@\x00\x00", [3.0]
if PACK_IS_LITTLE_ENDIAN
assert_pack 'f', "\x00\x00@@", [3.0]
assert_pack 'F', "\x00\x00@@", [3.0]
else
assert_pack 'f', "@@\x00\x00", [3.0]
assert_pack 'F', "@@\x00\x00", [3.0]
end
end
assert 'pack double' do
skip unless Object.const_defined?(:Float)
assert_pack 'E', "\x00\x00\x00\x00\x00\x00\b@", [3.0]
assert_pack 'G', "@\b\x00\x00\x00\x00\x00\x00", [3.0]
if PACK_IS_LITTLE_ENDIAN
assert_pack 'd', "\x00\x00\x00\x00\x00\x00\b@", [3.0]
assert_pack 'D', "\x00\x00\x00\x00\x00\x00\b@", [3.0]
else
assert_pack 'd', "@\b\x00\x00\x00\x00\x00\x00", [3.0]
assert_pack 'D', "@\b\x00\x00\x00\x00\x00\x00", [3.0]
end
end
assert 'pack/unpack "i"' do
int_size = [0].pack('i').size
raise "pack('i').size is too small (#{int_size})" if int_size < 2
if PACK_IS_LITTLE_ENDIAN
str = "\xC7\xCF" + "\xFF" * (int_size-2)
else
str = "\xFF" * (int_size-2) + "\xCF\xC7"
end
assert_pack 'i', str, [-12345]
end
assert 'pack/unpack "I"' do
uint_size = [0].pack('I').size
raise "pack('I').size is too small (#{uint_size})" if uint_size < 2
if PACK_IS_LITTLE_ENDIAN
str = "\x39\x30" + "\0" * (uint_size-2)
else
str = "\0" * (uint_size-2) + "\x30\x39"
end
assert_pack 'I', str, [12345]
end
assert 'pack/unpack "w"' do
for x in [0,1,127,128,16383,16384,65535,65536]
assert_equal [x], [x].pack("w").unpack("w")
end
end
assert 'pack/unpack "U"' do
assert_equal [], "".unpack("U")
assert_equal [], "".unpack("U*")
assert_equal [65, 66], "ABC".unpack("U2")
assert_equal [12371, 12435, 12395, 12385, 12399, 19990, 30028], "こんにちは世界".unpack("U*")
assert_equal "", [].pack("U")
assert_equal "", [].pack("U*")
assert_equal "AB", [65, 66, 67].pack("U2")
assert_equal "こんにちは世界", [12371, 12435, 12395, 12385, 12399, 19990, 30028].pack("U*")
assert_equal "\000", [0].pack("U")
assert_raise(RangeError) { [-0x40000000].pack("U") }
assert_raise(RangeError) { [-1].pack("U") }
assert_raise(RangeError) { [0x40000000].pack("U") }
end
assert 'unpack1' do
d = 1234
assert_equal(d, [d].pack("i").unpack1("i"))
d = "foobar"
assert_equal(d, [d].pack("a*").unpack1("a*"))
assert_equal(d, [d].pack("A*").unpack1("A*"))
assert_equal(d, [d].pack("Z*").unpack1("Z*"))
assert_equal(d, [d].pack("m").unpack1("m"))
assert_equal(d, [d].pack("M").unpack1("M"))
d = "10010101"
assert_equal(d, [d].pack("b*").unpack1("b*"))
d = "f00b00"
assert_equal(d, [d].pack("h*").unpack1("h*"))
end