fix: change prehash value back to sha256 from noop (#19002)
Co-authored-by: Damian Nolan <damiannolan@gmail.com> Co-authored-by: Aleksandr Bezobchuk <alexanderbez@users.noreply.github.com>
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@ -50,6 +50,9 @@ func (ci *CommitInfo) Hash() []byte {
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return rootHash
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}
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// GetStoreProof takes in a storeKey and returns a proof of the store key in addition
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// to the root hash it should be proved against. If an empty string is provided, the first
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// store based on lexographical ordering will be proved.
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func (ci *CommitInfo) GetStoreProof(storeKey string) ([]byte, *CommitmentOp, error) {
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sort.Slice(ci.StoreInfos, func(i, j int) bool {
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return ci.StoreInfos[i].Name < ci.StoreInfos[j].Name
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@ -24,7 +24,7 @@ var (
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LeafSpec: &ics23.LeafOp{
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Prefix: leafPrefix,
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PrehashKey: ics23.HashOp_NO_HASH,
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PrehashValue: ics23.HashOp_NO_HASH,
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PrehashValue: ics23.HashOp_SHA256,
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Hash: ics23.HashOp_SHA256,
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Length: ics23.LengthOp_VAR_PROTO,
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},
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@ -122,7 +122,34 @@ func (op CommitmentOp) Run(args [][]byte) ([][]byte, error) {
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return [][]byte{root}, nil
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}
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// ProofFromByteSlices computes the proof from the given leaves.
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// ProofFromByteSlices computes the proof from the given leaves. An iteration will be
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// perfomed for each level of the tree, where each iteration hashes together the bottom most
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// nodes. If the length of the bottom most nodes is odd, then the last node will be saved
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// for the next iteration.
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//
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// Example:
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// Iteration 1:
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// n = 5
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// leaves = a, b, c, d, e.
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// index = 2 (prove c)
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//
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// Iteration 2:
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// n = 3
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// leaves = ab, cd, e
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// index = 1 (prove c, so index of cd)
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//
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// Iteration 3:
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// n = 2
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// leaves = abcd, e
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// index = 0 (prove c, so index of abcd)
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//
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// Final iteration:
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// n = 1
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// leaves = abcde
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// index = 0
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//
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// The bitwise & operator allows us to determine if the index or length is odd or even.
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// The bitwise ^ operator allows us to increment when the value is even and decrement when it is odd.
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func ProofFromByteSlices(leaves [][]byte, index int) (rootHash []byte, inners []*ics23.InnerOp) {
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if len(leaves) == 0 {
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return emptyHash(), nil
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@ -130,23 +157,35 @@ func ProofFromByteSlices(leaves [][]byte, index int) (rootHash []byte, inners []
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n := len(leaves)
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for n > 1 {
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// Begin by constructing the proof for the inner node of the requested index.
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// A proof of the inner node is skipped only in the case where the requested index
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// is the last element and it does not have a leaf pair (resulting in it being
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// saved until the next iteration).
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if index < n-1 || index&1 == 1 {
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inner := &ics23.InnerOp{Hash: ics23.HashOp_SHA256}
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//Iif proof index is even then child is from left, suffix is populated
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// otherwise, child is from right and the prefix is populated.
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if index&1 == 0 {
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// inner op(prefix=0x01 | child | suffix=leaves[index+1])
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inner.Prefix = innerPrefix
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inner.Suffix = leaves[index^1]
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inner.Suffix = leaves[index^1] // XOR op is index+1 because index is even
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} else {
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inner.Prefix = append(innerPrefix, leaves[index^1]...)
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// inner op(prefix=0x01 | leaves[index-1] | child | suffix=nil)
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inner.Prefix = append(innerPrefix, leaves[index^1]...) // XOR op is index-1 because index is odd
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}
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inners = append(inners, inner)
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}
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// hash together all leaf pairs
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for i := 0; i < n/2; i++ {
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leaves[i] = InnerHash(leaves[2*i], leaves[2*i+1])
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}
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// save any leftover leaf for the next iteration
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if n&1 == 1 {
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leaves[n/2] = leaves[n-1]
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}
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n = (n + 1) / 2
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n = (n + 1) / 2 // n + 1 accounts for any leaves which are added to the next iteration
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index /= 2
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}
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@ -178,7 +217,8 @@ func LeafHash(key, value []byte) ([]byte, error) {
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return SimpleMerkleSpec.LeafSpec.Apply(key, value)
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}
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// InnerHash computes the hash of an inner node.
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// InnerHash computes the hash of an inner node as defined by ics23:
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// https://github.com/cosmos/ics23/blob/go/v0.10.0/proto/cosmos/ics23/v1/proofs.proto#L130
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func InnerHash(left, right []byte) []byte {
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data := make([]byte, len(innerPrefix)+len(left)+len(right))
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n := copy(data, innerPrefix)
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@ -14,29 +14,29 @@ func TestProofFromBytesSlices(t *testing.T) {
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want string
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}{
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{[]string{}, []string{}, "e3b0c44298fc1c149afbf4c8996fb92427ae41e4649b934ca495991b7852b855"},
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{[]string{"key1"}, []string{"value1"}, "09c468a07fe9bc1f14e754cff0acbad4faf9449449288be8e1d5d1199a247034"},
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{[]string{"key1"}, []string{"value2"}, "2131d85de3a8ded5d3a72bfc657f7324138540c520de7401ac8594785a3082fb"},
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{[]string{"key1"}, []string{"value1"}, "a44d3cc7daba1a4600b00a2434b30f8b970652169810d6dfa9fb1793a2189324"},
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{[]string{"key1"}, []string{"value2"}, "0638e99b3445caec9d95c05e1a3fc1487b4ddec6a952ff337080360b0dcc078c"},
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// swap order with 2 keys
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{
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[]string{"key1", "key2"},
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[]string{"value1", "value2"},
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"017788f37362dd0687beb59c0b3bfcc17a955120a4cb63dbdd4a0fdf9e07730e",
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"8fd19b19e7bb3f2b3ee0574027d8a5a4cec370464ea2db2fbfa5c7d35bb0cff3",
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},
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{
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[]string{"key2", "key1"},
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[]string{"value2", "value1"},
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"ad2b0c23dbd3376440a5347fba02ff35cfad7930daa5e733930315b6fbb03b26",
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"55d4bce1c53b7d394bd41bbfc2b239cc2e1c7e36423612a97181c47e79bb713c",
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},
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// swap order with 3 keys
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{
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[]string{"key1", "key2", "key3"},
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[]string{"value1", "value2", "value3"},
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"68f41a8a3508cb5f8eb3f1c7534a86fea9f59aa4898a5aac2f1bb92834ae2a36",
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"1dd674ec6782a0d586a903c9c63326a41cbe56b3bba33ed6ff5b527af6efb3dc",
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},
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{
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[]string{"key1", "key3", "key2"},
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[]string{"value1", "value3", "value2"},
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"92cd50420c22d0c79f64dd1b04bfd5f5d73265f7ac37e65cf622f3cf8b963805",
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"443382fbb629e0d50e86d6ea49e22aa4e27ba50262730b0122cec36860c903a2",
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},
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}
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for i, tc := range tests {
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