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hashentry_test.go
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hashentry_test.go
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// Copyright 2020 Contributors to the Veraison project.
// SPDX-License-Identifier: Apache-2.0
package swid
import (
"errors"
"testing"
"github.com/stretchr/testify/assert"
)
func TestHashEntry_UnmarshalJSON(t *testing.T) {
type TestVector struct {
val string
}
tests := []struct {
name string
testVector TestVector
expected HashEntry
expectedErr string
}{
{
name: "good stuff",
testVector: TestVector{
val: `"sha-256;3q2+7w=="`,
},
expected: HashEntry{
HashAlgID: 1,
HashValue: []byte{0xde, 0xad, 0xbe, 0xef},
},
expectedErr: "",
},
{
name: "good stuff (legacy)",
testVector: TestVector{
val: `"sha-256:3q2+7w=="`,
},
expected: HashEntry{
HashAlgID: 1,
HashValue: []byte{0xde, 0xad, 0xbe, 0xef},
},
expectedErr: "",
},
{
name: "no match for alg",
testVector: TestVector{
val: `"sha0-512;3q2+7w=="`,
},
expected: HashEntry{},
expectedErr: "unknown hash algorithm sha0-512",
},
{
name: "empty string",
testVector: TestVector{
val: `""`,
},
expected: HashEntry{},
expectedErr: "bad format: expecting <hash-alg-string>;<hash-value>",
},
{
name: "empty algo and hash value",
testVector: TestVector{
val: `";"`,
},
expected: HashEntry{},
expectedErr: "bad format: expecting <hash-alg-string>;<hash-value>",
},
{
name: "whitespaces",
testVector: TestVector{
val: `" ; "`,
},
expected: HashEntry{},
expectedErr: "bad format: expecting <hash-alg-string>;<hash-value>",
}, {
name: "excess material",
testVector: TestVector{
val: `"sha-256;3q2+7w==;EXCESS MATERIAL"`,
},
expected: HashEntry{},
expectedErr: "bad format: expecting <hash-alg-string>;<hash-value>",
},
{
name: "missing algo",
testVector: TestVector{
val: `";3q2+7w=="`,
},
expected: HashEntry{},
expectedErr: "bad format: expecting <hash-alg-string>;<hash-value>",
},
{
name: "missing hash value",
testVector: TestVector{
val: `"sha-256;"`,
},
expected: HashEntry{},
expectedErr: "bad format: expecting <hash-alg-string>;<hash-value>",
},
{
name: "corrupt base64 for value",
testVector: TestVector{
val: `"sha-256;....Caligula...."`,
},
expected: HashEntry{},
expectedErr: "illegal base64 data at input byte 0",
},
{
name: "unexpected container",
testVector: TestVector{
val: `[ "sha-256", "3q2+7w==" ]`,
},
expected: HashEntry{},
expectedErr: "expecting string, found []interface {} instead",
},
{
name: "invalid json",
testVector: TestVector{
val: `[ `,
},
expected: HashEntry{},
expectedErr: "unexpected end of JSON input",
},
}
for _, test := range tests {
t.Run(test.name, func(t *testing.T) {
actual := HashEntry{}
err := actual.UnmarshalJSON([]byte(test.testVector.val))
assert.Equal(t, test.expected, actual)
if test.expectedErr != "" {
assert.EqualError(t, err, test.expectedErr)
}
})
}
}
func TestHashEntry_MarshalJSON(t *testing.T) {
tests := []struct {
name string
testVector HashEntry
expected string
expectedErr error
}{
{
name: "good stuff",
testVector: HashEntry{
HashAlgID: 6,
HashValue: []byte{0xde, 0xad, 0xbe, 0xef},
},
expected: `"sha-256-32;3q2+7w=="`,
expectedErr: nil,
},
{
name: "unknown hash algo",
testVector: HashEntry{
HashAlgID: 1024,
HashValue: []byte{0xde, 0xad, 0xbe, 0xef},
},
expected: `__ignored__`,
expectedErr: errors.New("unknown hash algorithm ID 1024"),
},
{
name: "empty hash value",
testVector: HashEntry{
HashAlgID: 1,
HashValue: []byte{},
},
expected: `__ignored__`,
expectedErr: errors.New("empty hash value"),
},
}
for _, test := range tests {
t.Run(test.name, func(t *testing.T) {
u := test.testVector
actual, err := u.MarshalJSON()
assert.Equal(t, test.expectedErr, err)
if test.expectedErr == nil {
assert.JSONEq(t, test.expected, string(actual))
}
})
}
}
func TestHashEntry_AlgIDToString(t *testing.T) {
tests := []struct {
name string
testVector HashEntry
expected string
}{
{
name: "good stuff",
testVector: HashEntry{
HashAlgID: 1,
HashValue: []byte{0xde, 0xad, 0xbe, 0xef},
},
expected: "sha-256",
},
{
name: "unknown hash algo",
testVector: HashEntry{
HashAlgID: 1000,
HashValue: []byte{0xde, 0xad, 0xbe, 0xef},
},
expected: "alg-id(1000)",
},
}
for _, test := range tests {
t.Run(test.name, func(t *testing.T) {
u := test.testVector
actual := u.AlgIDToString()
assert.Equal(t, test.expected, actual)
})
}
}
func TestHashEntry_Set_OK(t *testing.T) {
tvs := []struct {
alg uint64
val []byte
}{
{
alg: Sha256,
val: MustHexDecode(t, "e45b72f5c0c0b572db4d8d3ab7e97f368ff74e62347a824decb67a84e5224d75"),
},
{
alg: Sha256_128,
val: MustHexDecode(t, "e45b72f5c0c0b572db4d8d3ab7e97f36"),
},
{
alg: Sha256_120,
val: MustHexDecode(t, "e45b72f5c0c0b572db4d8d3ab7e97f"),
},
{
alg: Sha256_96,
val: MustHexDecode(t, "e45b72f5c0c0b572db4d8d3a"),
},
{
alg: Sha256_64,
val: MustHexDecode(t, "e45b72f5c0c0b572"),
},
{
alg: Sha256_32,
val: MustHexDecode(t, "e45b72ab"),
},
{
alg: Sha384,
val: MustHexDecode(t, "e45b72f5c0c0b572db4d8d3ab7e97f368ff74e62347a824decb67a84e5224d75e45b72f5c0c0b572db4d8d3ab7e97f36"),
},
{
alg: Sha512,
val: MustHexDecode(t, "e45b72f5c0c0b572db4d8d3ab7e97f368ff74e62347a824decb67a84e5224d75e45b72f5c0c0b572db4d8d3ab7e97f368ff74e62347a824decb67a84e5224d75"),
},
{
alg: Sha3_224,
val: MustHexDecode(t, "e45b72f5c0c0b572db4d8d3ab7e97f36e45b72f5c0c0b572db4d8d3a"),
},
{
alg: Sha3_256,
val: MustHexDecode(t, "e45b72f5c0c0b572db4d8d3ab7e97f368ff74e62347a824decb67a84e5224d75"),
},
{
alg: Sha3_384,
val: MustHexDecode(t, "e45b72f5c0c0b572db4d8d3ab7e97f368ff74e62347a824decb67a84e5224d75e45b72f5c0c0b572db4d8d3ab7e97f36"),
},
{
alg: Sha3_512,
val: MustHexDecode(t, "e45b72f5c0c0b572db4d8d3ab7e97f368ff74e62347a824decb67a84e5224d75e45b72f5c0c0b572db4d8d3ab7e97f368ff74e62347a824decb67a84e5224d75"),
},
}
for _, tv := range tvs {
var h HashEntry
assert.Nil(t, h.Set(tv.alg, tv.val))
}
}
func TestHashEntry_String(t *testing.T) {
for _, tv := range []struct {
In HashEntry
Expected string
}{
{
In: HashEntry{
HashAlgID: 1,
HashValue: []byte{0xde, 0xad, 0xbe, 0xef},
},
Expected: "sha-256;3q2+7w==",
},
{
In: HashEntry{
HashAlgID: 1337,
HashValue: nil,
},
Expected: "unknown-alg;<empty>",
},
} {
ret := tv.In.String()
assert.Equal(t, tv.Expected, ret)
}
}
func TestHashEntry_Set_mismatched_input(t *testing.T) {
tvs := []struct {
alg uint64
val []byte
exp string
}{
{
alg: Sha256,
val: MustHexDecode(t, "e45b72f5c0c0b572db4d8d3ab7e97f368ff74e62347a824decb67a84e5224d"),
exp: "length mismatch for hash algorithm sha-256: want 32 bytes, got 31",
},
{
alg: Sha256_128,
val: MustHexDecode(t, "e45b72f5c0c0b572db4d8d3ab7e97f"),
exp: "length mismatch for hash algorithm sha-256-128: want 16 bytes, got 15",
},
{
alg: Sha256_120,
val: MustHexDecode(t, "e45b72f5c0c0b572db4d8d3ab7e9"),
exp: "length mismatch for hash algorithm sha-256-120: want 15 bytes, got 14",
},
{
alg: Sha256_96,
val: MustHexDecode(t, "e45b72f5c0c0b572db4d8d"),
exp: "length mismatch for hash algorithm sha-256-96: want 12 bytes, got 11",
},
{
alg: Sha256_64,
val: MustHexDecode(t, "e45b72f5c0c0b5"),
exp: "length mismatch for hash algorithm sha-256-64: want 8 bytes, got 7",
},
{
alg: Sha256_32,
val: MustHexDecode(t, "e45b72"),
exp: "length mismatch for hash algorithm sha-256-32: want 4 bytes, got 3",
},
{
alg: Sha384,
val: MustHexDecode(t, "e45b72f5c0c0b572db4d8d3ab7e97f368ff74e62347a824decb67a84e5224d75e45b72f5c0c0b572db4d8d3ab7e97f"),
exp: "length mismatch for hash algorithm sha-384: want 48 bytes, got 47",
},
{
alg: Sha512,
val: MustHexDecode(t, "e45b72f5c0c0b572db4d8d3ab7e97f368ff74e62347a824decb67a84e5224d75e45b72f5c0c0b572db4d8d3ab7e97f368ff74e62347a824decb67a84e5224d"),
exp: "length mismatch for hash algorithm sha-512: want 64 bytes, got 63",
},
{
alg: Sha3_224,
val: MustHexDecode(t, "e45b72f5c0c0b572db4d8d3ab7e97f36e45b72f5c0c0b572db4d8d"),
exp: "length mismatch for hash algorithm sha3-224: want 28 bytes, got 27",
},
{
alg: Sha3_256,
val: MustHexDecode(t, "e45b72f5c0c0b572db4d8d3ab7e97f368ff74e62347a824decb67a84e5224d"),
exp: "length mismatch for hash algorithm sha3-256: want 32 bytes, got 31",
},
{
alg: Sha3_384,
val: MustHexDecode(t, "e45b72f5c0c0b572db4d8d3ab7e97f368ff74e62347a824decb67a84e5224d75e45b72f5c0c0b572db4d8d3ab7e97f"),
exp: "length mismatch for hash algorithm sha3-384: want 48 bytes, got 47",
},
{
alg: Sha3_512,
val: MustHexDecode(t, "e45b72f5c0c0b572db4d8d3ab7e97f368ff74e62347a824decb67a84e5224d75e45b72f5c0c0b572db4d8d3ab7e97f368ff74e62347a824decb67a84e5224d"),
exp: "length mismatch for hash algorithm sha3-512: want 64 bytes, got 63",
},
}
for _, tv := range tvs {
var h HashEntry
assert.EqualError(t, h.Set(tv.alg, tv.val), tv.exp)
}
}
func TestHashEntry_ValidHashEntry_unknown_algo(t *testing.T) {
var unknownAlgID uint64 = 0
err := ValidHashEntry(unknownAlgID, []byte{})
assert.EqualError(t, err, "unknown hash algorithm 0")
}
func TestParseHashEntry(t *testing.T) {
for _, tv := range []struct {
In string
Expected HashEntry
ExpectedErr string
}{
{
In: "sha-256;3q2+7w==",
Expected: HashEntry{
HashAlgID: Sha256,
HashValue: []byte{0xde, 0xad, 0xbe, 0xef},
},
ExpectedErr: "",
},
{
In: "",
Expected: HashEntry{},
ExpectedErr: "bad format: expecting <hash-alg-string>;<hash-value>",
},
{
In: "sha-256;@@@@",
Expected: HashEntry{},
ExpectedErr: "illegal base64 data at input byte 0",
},
{
In: "XXXX;3q2+7w==",
Expected: HashEntry{},
ExpectedErr: "unknown hash algorithm XXXX",
},
} {
ret, err := ParseHashEntry(tv.In)
if err == nil {
assert.Equal(t, tv.Expected, ret)
} else {
assert.EqualError(t, err, tv.ExpectedErr)
}
}
}
func TestAlgFromString(t *testing.T) {
for _, tv := range []struct {
In string
Expected uint64
}{
{
In: "sha-256",
Expected: 1,
},
{
In: "foo",
Expected: 0,
},
{
In: "SHA-256",
Expected: 0,
},
} {
ret := AlgIDFromString(tv.In)
assert.Equal(t, tv.Expected, ret)
}
}