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README.md
12
README.md
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@ -28,15 +28,15 @@ proc fuzzMe(s: string, a, b, c: int32) =
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if a == 0xdeadc0de'i32 and b == 0x11111111'i32 and c == 0x22222222'i32:
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if s.len == 100: doAssert false
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func fuzzTarget(data: (string, int32, int32, int32)) =
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proc fuzzTarget(data: (string, int32, int32, int32)) =
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let (s, a, b, c) = data
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fuzzMe(s, a, b, c)
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defaultMutator(fuzzTarget)
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```
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> **WARNING**: Fuzz targets must not modify the input variable. This can be ensured by using `.noSideEffect`
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> and {.experimental: "strictFuncs".}
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> **WARNING**: Fuzz targets must not modify the input variable. This can be ensured for `ref`
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> pointers by using the `func` keyword and {.experimental: "strictFuncs".}
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Or complex as shown bellow:
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@ -52,14 +52,14 @@ type
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of Br: discard
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of Text: textStr: string
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func `==`(a, b: ContentNode): bool =
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proc `==`(a, b: ContentNode): bool =
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if a.kind != b.kind: return false
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case a.kind
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of P: return a.pChildren == b.pChildren
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of Br: return true
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of Text: return a.textStr == b.textStr
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func fuzzTarget(x: ContentNode) =
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proc fuzzTarget(x: ContentNode) =
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# Convert or translate `x` to any format (JSON, HMTL, binary, etc...)
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# and feed it to the API you are testing.
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@ -101,7 +101,7 @@ control of the mutation procedure, like uncompressing a `seq[byte]` then calling
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`runMutator` on the raw data and compressing the output again.
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```nim
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func myTarget(x: seq[byte]) =
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proc myTarget(x: seq[byte]) =
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var data = uncompress(x)
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...
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