105 lines
3.7 KiB
Nim
105 lines
3.7 KiB
Nim
import
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unittest, random,
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../stew/[byteutils, leb128, results]
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const edgeValues = {
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0'u64 : "00",
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1'u64 : "01",
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(1'u64 shl 7) - 1'u64 : "7f",
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(1'u64 shl 7) : "8001",
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(1'u64 shl 7) + 1'u64 : "8101",
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(1'u64 shl 14) - 1'u64 : "ff7f",
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(1'u64 shl 14) : "808001",
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(1'u64 shl 21) - 1'u64 : "ffff7f",
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(1'u64 shl 21) : "80808001",
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(1'u64 shl 28) - 1'u64 : "ffffff7f",
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(1'u64 shl 28) : "8080808001",
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(1'u64 shl 35) - 1'u64 : "ffffffff7f",
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(1'u64 shl 35) : "808080808001",
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(1'u64 shl 42) - 1'u64 : "ffffffffff7f",
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(1'u64 shl 42) : "80808080808001",
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(1'u64 shl 49) - 1'u64 : "ffffffffffff7f",
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(1'u64 shl 49) : "8080808080808001",
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(1'u64 shl 56) - 1'u64 : "ffffffffffffff7f",
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(1'u64 shl 56) : "808080808080808001",
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(1'u64 shl 63) - 1'u64 : "ffffffffffffffff7f",
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(1'u64 shl 63) : "80808080808080808001",
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0xFFFF_FFFF_FFFF_FFFF'u64 : "ffffffffffffffffff01"
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}
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suite "leb128":
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template roundtripTest(value: typed) =
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let
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leb {.inject.} = value.toBytes(Leb128)
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roundtripVal = type(value).fromBytes(leb.toOpenArray(), Leb128)
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check:
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value == roundtripVal.val
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test "Success edge cases test":
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for pair in edgeValues:
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let (value, hex) = pair
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roundtripTest value
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check:
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toHex(leb.toOpenArray()) == hex
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test "roundtrip random values":
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template testSome(T: type) =
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for i in 0..10000:
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# TODO nim 1.0 random casts limits to int, so anything bigger will crash
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# * sigh *
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# https://github.com/nim-lang/Nim/issues/16360
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let
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v1 = rand(T(0) .. cast[T](int.high))
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roundtripTest v1
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testSome(uint8)
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testSome(uint16)
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testSome(uint32)
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testSome(uint64)
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test "lengths":
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const lengths = {
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0'u64 : 1,
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1'u64 : 1,
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(1'u64 shl 7) - 1'u64 : 1,
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(1'u64 shl 7) : 2,
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(1'u64 shl 7) + 1'u64 : 2,
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(1'u64 shl 14) - 1'u64 : 2,
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(1'u64 shl 14) : 3,
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(1'u64 shl 21) - 1'u64 : 3,
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(1'u64 shl 21) : 4,
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(1'u64 shl 28) - 1'u64 : 4,
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(1'u64 shl 28) : 5,
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(1'u64 shl 35) - 1'u64 : 5,
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(1'u64 shl 35) : 6,
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(1'u64 shl 42) - 1'u64 : 6,
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(1'u64 shl 42) : 7,
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(1'u64 shl 49) - 1'u64 : 7,
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(1'u64 shl 49) : 8,
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(1'u64 shl 56) - 1'u64 : 8,
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(1'u64 shl 56) : 9,
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(1'u64 shl 63) - 1'u64 : 9,
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(1'u64 shl 63) : 10,
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0xFFFF_FFFF_FFFF_FFFF'u64 : 10
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}
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for pair in lengths:
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check: Leb128.len(pair[0]) == pair[1]
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test "errors":
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check:
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uint8.fromBytes([0x80'u8], Leb128) == (0'u8, 0'i8)
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uint8.fromBytes([0x80'u8, 0x80], Leb128) == (0'u8, 0'i8)
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uint8.fromBytes(toBytes(256'u16, Leb128).toOpenArray(), Leb128).len < 0
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uint8.fromBytes([0x80'u8, 0x02], Leb128) == (0'u8, -2'i8) # 2 bytes consumed and overflow
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uint8.fromBytes([0x80'u8, 0x02, 0x05], Leb128) == (0'u8, -2'i8) # 2 bytes consumed and overflow
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uint64.fromBytes([0xff'u8, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0x02], Leb128).len < 0
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uint64.fromBytes([0xff'u8, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff], Leb128) == (0'u64, 0'i8)
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check:
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uint8.scan([0x80'u8], Leb128) == 0
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uint8.scan([0x80'u8, 0x80], Leb128) == 0
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uint8.scan(toBytes(256'u16, Leb128).toOpenArray(), Leb128) < 0
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uint64.scan([0xff'u8, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0x02], Leb128) < 0
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uint64.scan([0xff'u8, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff], Leb128) == 0
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