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0c189265e8
(Or split the test into two tests of which one is skipped depending on encryption support)
206 lines
6.2 KiB
Go
206 lines
6.2 KiB
Go
package tests
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import (
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"fmt"
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"github.com/stretchr/testify/require"
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"github.com/zrepl/zrepl/platformtest"
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"github.com/zrepl/zrepl/zfs"
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)
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func SendArgsValidationEncryptedSendOfUnencryptedDatasetForbidden__EncryptionSupported_true(ctx *platformtest.Context) {
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sendArgsValidationEncryptedSendOfUnencryptedDatasetForbidden_impl(ctx, true)
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}
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func SendArgsValidationEncryptedSendOfUnencryptedDatasetForbidden__EncryptionSupported_false(ctx *platformtest.Context) {
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sendArgsValidationEncryptedSendOfUnencryptedDatasetForbidden_impl(ctx, false)
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}
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func sendArgsValidationEncryptedSendOfUnencryptedDatasetForbidden_impl(ctx *platformtest.Context, testForEncryptionSupported bool) {
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supported, err := zfs.EncryptionCLISupported(ctx)
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check(err)
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if supported != testForEncryptionSupported {
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ctx.SkipNow()
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}
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noEncryptionCLISupport := !supported
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platformtest.Run(ctx, platformtest.PanicErr, ctx.RootDataset, `
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DESTROYROOT
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CREATEROOT
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+ "send er"
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+ "send er@a snap"
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`)
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fs := fmt.Sprintf("%s/send er", ctx.RootDataset)
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props := mustGetFilesystemVersion(ctx, fs+"@a snap")
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sendArgs, err := zfs.ZFSSendArgsUnvalidated{
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FS: fs,
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To: &zfs.ZFSSendArgVersion{
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RelName: "@a snap",
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GUID: props.Guid,
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},
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Encrypted: &zfs.NilBool{B: true},
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ResumeToken: "",
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}.Validate(ctx)
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var stream *zfs.SendStream
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if err == nil {
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stream, err = zfs.ZFSSend(ctx, sendArgs) // no shadow
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if err == nil {
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defer stream.Close()
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}
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// fallthrough
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}
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if noEncryptionCLISupport {
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require.Error(ctx, err)
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saverr, ok := err.(*zfs.ZFSSendArgsValidationError)
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require.True(ctx, ok, "%T", err)
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require.Equal(ctx, zfs.ZFSSendArgsEncryptedSendRequestedButFSUnencrypted, saverr.What)
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return
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}
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require.Error(ctx, err)
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ctx.Logf("send err: %T %s", err, err)
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validationErr, ok := err.(*zfs.ZFSSendArgsValidationError)
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require.True(ctx, ok)
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require.True(ctx, validationErr.What == zfs.ZFSSendArgsEncryptedSendRequestedButFSUnencrypted)
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}
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func SendArgsValidationResumeTokenEncryptionMismatchForbidden(ctx *platformtest.Context) {
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supported, err := zfs.EncryptionCLISupported(ctx)
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check(err)
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if !supported {
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ctx.SkipNow()
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}
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supported, err = zfs.ResumeSendSupported(ctx)
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check(err)
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if !supported {
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ctx.SkipNow()
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}
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platformtest.Run(ctx, platformtest.PanicErr, ctx.RootDataset, `
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DESTROYROOT
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CREATEROOT
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+ "send er" encrypted
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`)
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sendFS := fmt.Sprintf("%s/send er", ctx.RootDataset)
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unencRecvFS := fmt.Sprintf("%s/unenc recv", ctx.RootDataset)
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encRecvFS := fmt.Sprintf("%s/enc recv", ctx.RootDataset)
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src := makeDummyDataSnapshots(ctx, sendFS)
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unencS := makeResumeSituation(ctx, src, unencRecvFS, zfs.ZFSSendArgsUnvalidated{
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FS: sendFS,
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To: src.snapA,
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Encrypted: &zfs.NilBool{B: false}, // !
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}, zfs.RecvOptions{
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RollbackAndForceRecv: false,
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SavePartialRecvState: true,
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})
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encS := makeResumeSituation(ctx, src, encRecvFS, zfs.ZFSSendArgsUnvalidated{
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FS: sendFS,
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To: src.snapA,
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Encrypted: &zfs.NilBool{B: true}, // !
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}, zfs.RecvOptions{
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RollbackAndForceRecv: false,
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SavePartialRecvState: true,
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})
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// threat model: use of a crafted resume token that requests an unencrypted send
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// but send args require encrypted send
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{
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var maliciousSend zfs.ZFSSendArgsUnvalidated = encS.sendArgs
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maliciousSend.ResumeToken = unencS.recvErrDecoded.ResumeTokenRaw
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_, err := maliciousSend.Validate(ctx)
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validationErr, ok := err.(*zfs.ZFSSendArgsValidationError)
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require.True(ctx, ok)
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require.Equal(ctx, validationErr.What, zfs.ZFSSendArgsResumeTokenMismatch)
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ctx.Logf("%s", validationErr)
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mismatchError, ok := validationErr.Msg.(*zfs.ZFSSendArgsResumeTokenMismatchError)
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require.True(ctx, ok)
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require.Equal(ctx, mismatchError.What, zfs.ZFSSendArgsResumeTokenMismatchEncryptionNotSet)
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}
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// threat model: use of a crafted resume token that requests an encrypted send
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// but send args require unencrypted send
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{
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var maliciousSend zfs.ZFSSendArgsUnvalidated = unencS.sendArgs
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maliciousSend.ResumeToken = encS.recvErrDecoded.ResumeTokenRaw
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_, err := maliciousSend.Validate(ctx)
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require.Error(ctx, err)
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ctx.Logf("send err: %T %s", err, err)
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validationErr, ok := err.(*zfs.ZFSSendArgsValidationError)
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require.True(ctx, ok)
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require.Equal(ctx, validationErr.What, zfs.ZFSSendArgsResumeTokenMismatch)
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ctx.Logf("%s", validationErr)
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mismatchError, ok := validationErr.Msg.(*zfs.ZFSSendArgsResumeTokenMismatchError)
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require.True(ctx, ok)
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require.Equal(ctx, mismatchError.What, zfs.ZFSSendArgsResumeTokenMismatchEncryptionSet)
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}
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}
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func SendArgsValidationResumeTokenDifferentFilesystemForbidden(ctx *platformtest.Context) {
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supported, err := zfs.ResumeSendSupported(ctx)
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check(err)
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if !supported {
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ctx.SkipNow()
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}
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platformtest.Run(ctx, platformtest.PanicErr, ctx.RootDataset, `
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DESTROYROOT
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CREATEROOT
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+ "send er1"
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+ "send er2"
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`)
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sendFS1 := fmt.Sprintf("%s/send er1", ctx.RootDataset)
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sendFS2 := fmt.Sprintf("%s/send er2", ctx.RootDataset)
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recvFS := fmt.Sprintf("%s/unenc recv", ctx.RootDataset)
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src1 := makeDummyDataSnapshots(ctx, sendFS1)
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src2 := makeDummyDataSnapshots(ctx, sendFS2)
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rs := makeResumeSituation(ctx, src1, recvFS, zfs.ZFSSendArgsUnvalidated{
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FS: sendFS1,
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To: src1.snapA,
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Encrypted: &zfs.NilBool{B: false},
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}, zfs.RecvOptions{
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RollbackAndForceRecv: false,
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SavePartialRecvState: true,
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})
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// threat model: forged resume token tries to steal a full send of snapA on fs2 by
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// presenting a resume token for full send of snapA on fs1
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var maliciousSend zfs.ZFSSendArgsUnvalidated = zfs.ZFSSendArgsUnvalidated{
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FS: sendFS2,
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To: &zfs.ZFSSendArgVersion{
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RelName: src2.snapA.RelName,
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GUID: src2.snapA.GUID,
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},
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Encrypted: &zfs.NilBool{B: false},
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ResumeToken: rs.recvErrDecoded.ResumeTokenRaw,
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}
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_, err = maliciousSend.Validate(ctx)
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require.Error(ctx, err)
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ctx.Logf("send err: %T %s", err, err)
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validationErr, ok := err.(*zfs.ZFSSendArgsValidationError)
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require.True(ctx, ok)
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require.Equal(ctx, validationErr.What, zfs.ZFSSendArgsResumeTokenMismatch)
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ctx.Logf("%s", validationErr)
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mismatchError, ok := validationErr.Msg.(*zfs.ZFSSendArgsResumeTokenMismatchError)
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require.True(ctx, ok)
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require.Equal(ctx, mismatchError.What, zfs.ZFSSendArgsResumeTokenMismatchFilesystem)
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}
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