mirror of
https://github.com/minio/minio.git
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805186ab97
This commit introduces a new crypto package providing AWS S3 related cryptographic building blocks to implement SSE-S3 (master key or KMS) and SSE-C. This change only adds some basic functionallity esp. related to SSE-S3 and documents the general approach for SSE-S3 and SSE-C.
128 lines
4.4 KiB
Go
128 lines
4.4 KiB
Go
// Minio Cloud Storage, (C) 2015, 2016, 2017, 2018 Minio, Inc.
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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package crypto
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import (
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"bytes"
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"crypto/rand"
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"encoding/hex"
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"io"
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"testing"
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)
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var shortRandom = func(limit int64) io.Reader { return io.LimitReader(rand.Reader, limit) }
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func recoverTest(i int, shouldPass bool, t *testing.T) {
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if err := recover(); err == nil && !shouldPass {
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t.Errorf("Test %d should fail but passed successfully", i)
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} else if err != nil && shouldPass {
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t.Errorf("Test %d should pass but failed: %v", i, err)
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}
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}
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var generateKeyTests = []struct {
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ExtKey [32]byte
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Random io.Reader
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ShouldPass bool
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}{
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{ExtKey: [32]byte{}, Random: nil, ShouldPass: true}, // 0
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{ExtKey: [32]byte{}, Random: rand.Reader, ShouldPass: true}, // 1
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{ExtKey: [32]byte{}, Random: shortRandom(32), ShouldPass: true}, // 2
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// {ExtKey: [32]byte{}, Random: shortRandom(31), ShouldPass: false}, // 3 See: https://github.com/minio/minio/issues/6064
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}
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func TestGenerateKey(t *testing.T) {
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for i, test := range generateKeyTests {
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func() {
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defer recoverTest(i, test.ShouldPass, t)
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key := GenerateKey(test.ExtKey, test.Random)
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if [32]byte(key) == [32]byte{} {
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t.Errorf("Test %d: generated key is zero key", i) // check that we generate random and unique key
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}
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}()
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}
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}
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var sealUnsealKeyTests = []struct {
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SealExtKey, SealIV [32]byte
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SealBucket, SealObject string
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UnsealExtKey, UnsealIV [32]byte
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UnsealBucket, UnsealObject string
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ShouldPass bool
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}{
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{
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SealExtKey: [32]byte{}, SealIV: [32]byte{}, SealBucket: "bucket", SealObject: "object",
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UnsealExtKey: [32]byte{}, UnsealIV: [32]byte{}, UnsealBucket: "bucket", UnsealObject: "object",
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ShouldPass: true,
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}, // 0
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{
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SealExtKey: [32]byte{}, SealIV: [32]byte{}, SealBucket: "bucket", SealObject: "object",
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UnsealExtKey: [32]byte{1}, UnsealIV: [32]byte{0}, UnsealBucket: "bucket", UnsealObject: "object",
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ShouldPass: false,
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}, // 1
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{
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SealExtKey: [32]byte{}, SealIV: [32]byte{}, SealBucket: "bucket", SealObject: "object",
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UnsealExtKey: [32]byte{}, UnsealIV: [32]byte{1}, UnsealBucket: "bucket", UnsealObject: "object",
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ShouldPass: false,
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}, // 2
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{
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SealExtKey: [32]byte{}, SealIV: [32]byte{}, SealBucket: "bucket", SealObject: "object",
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UnsealExtKey: [32]byte{}, UnsealIV: [32]byte{}, UnsealBucket: "Bucket", UnsealObject: "object",
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ShouldPass: false,
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}, // 3
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{
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SealExtKey: [32]byte{}, SealIV: [32]byte{}, SealBucket: "bucket", SealObject: "object",
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UnsealExtKey: [32]byte{}, UnsealIV: [32]byte{}, UnsealBucket: "bucket", UnsealObject: "Object",
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ShouldPass: false,
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}, // 4
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}
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func TestSealUnsealKey(t *testing.T) {
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for i, test := range sealUnsealKeyTests {
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key := GenerateKey(test.SealExtKey, rand.Reader)
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sealedKey := key.Seal(test.SealExtKey, test.SealIV, test.SealBucket, test.SealObject)
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if err := key.Unseal(sealedKey, test.UnsealExtKey, test.UnsealIV, test.UnsealBucket, test.UnsealObject); err == nil && !test.ShouldPass {
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t.Errorf("Test %d should fail but passed successfully", i)
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} else if err != nil && test.ShouldPass {
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t.Errorf("Test %d should pass put failed: %v", i, err)
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}
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}
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}
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var derivePartKeyTest = []struct {
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PartID uint32
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PartKey string
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}{
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{PartID: 0, PartKey: "aa7855e13839dd767cd5da7c1ff5036540c9264b7a803029315e55375287b4af"},
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{PartID: 1, PartKey: "a3e7181c6eed030fd52f79537c56c4d07da92e56d374ff1dd2043350785b37d8"},
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{PartID: 10000, PartKey: "f86e65c396ed52d204ee44bd1a0bbd86eb8b01b7354e67a3b3ae0e34dd5bd115"},
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}
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func TestDerivePartKey(t *testing.T) {
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var key ObjectKey
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for i, test := range derivePartKeyTest {
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expectedPartKey, err := hex.DecodeString(test.PartKey)
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if err != nil {
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t.Fatalf("Test %d failed to decode expected part-key: %v", i, err)
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}
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partKey := key.DerivePartKey(test.PartID)
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if !bytes.Equal(partKey[:], expectedPartKey[:]) {
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t.Errorf("Test %d derives wrong part-key: got '%s' want: '%s'", i, hex.EncodeToString(partKey[:]), test.PartKey)
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}
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}
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}
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