Switch fuzztarget SHA256 to simply XOR'ing all input bytes
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@ -1,64 +1,63 @@
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//! fuzztarget-only Sha2 context with a dummy Sha256 and Sha512 hashers.
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use crypto::digest::Digest;
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use crypto::sha2;
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#[derive(Clone, Copy)]
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/// Dummy Sha256 that hashes the input, but only returns the first byte of output, masking the
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/// rest to 0s.
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pub struct Sha256 {
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state: sha2::Sha256,
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state: u8,
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}
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impl Sha256 {
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/// Constructs a new dummy Sha256 context
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pub fn new() -> Sha256 {
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Sha256 {
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state: sha2::Sha256::new(),
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state: 0,
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}
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}
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}
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impl Digest for Sha256 {
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fn result(&mut self, data: &mut [u8]) {
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self.state.result(data);
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data[0] = self.state;
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for i in 1..32 {
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data[i] = 0;
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}
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}
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fn input(&mut self, data: &[u8]) { self.state.input(data); }
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fn reset(&mut self) { self.state.reset(); }
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fn output_bits(&self) -> usize { self.state.output_bits() }
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fn block_size(&self) -> usize { self.state.block_size() }
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fn input(&mut self, data: &[u8]) { for i in data { self.state ^= i; } }
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fn reset(&mut self) { self.state = 0; }
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fn output_bits(&self) -> usize { 256 }
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fn block_size(&self) -> usize { 64 }
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}
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#[derive(Clone, Copy)]
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/// Dummy Sha512 that hashes the input, but only returns the first byte of output, masking the
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/// rest to 0s.
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pub struct Sha512 {
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state: sha2::Sha512,
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state: u8,
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}
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impl Sha512 {
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/// Constructs a new dummy Sha512 context
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pub fn new() -> Sha512 {
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Sha512 {
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state: sha2::Sha512::new(),
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state: 0xff,
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}
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}
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}
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impl Digest for Sha512 {
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fn result(&mut self, data: &mut [u8]) {
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self.state.result(data);
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data[0] = self.state;
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for i in 1..64 {
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data[i] = 0;
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}
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}
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fn input(&mut self, data: &[u8]) { self.state.input(data); }
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fn reset(&mut self) { self.state.reset(); }
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fn output_bits(&self) -> usize { self.state.output_bits() }
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fn block_size(&self) -> usize { self.state.block_size() }
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fn input(&mut self, data: &[u8]) { for i in data { self.state ^= i; } }
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fn reset(&mut self) { self.state = 0xff; }
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fn output_bits(&self) -> usize { 512 }
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fn block_size(&self) -> usize { 128 }
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}
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