mirror of
https://github.com/ceph/ceph-csi.git
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4f0bb2315b
With Amazon STS and kubernetes cluster is configured with OIDC identity provider, credentials to access Amazon KMS can be fetched using oidc-token(serviceaccount token). Each tenant/namespace needs to create a secret with aws region, role and CMK ARN. Ceph-CSI will assume the given role with oidc token and access aws KMS, with given CMK to encrypt/decrypt DEK which will stored in the image metdata. Refer: https://docs.aws.amazon.com/STS/latest/APIReference/welcome.html Resolves: #2879 Signed-off-by: Rakshith R <rar@redhat.com>
210 lines
5.3 KiB
Go
210 lines
5.3 KiB
Go
package middleware
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import (
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"context"
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"io"
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"strings"
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)
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// Stack provides protocol and transport agnostic set of middleware split into
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// distinct steps. Steps have specific transitions between them, that are
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// managed by the individual step.
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//
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// Steps are composed as middleware around the underlying handler in the
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// following order:
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//
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// Initialize -> Serialize -> Build -> Finalize -> Deserialize -> Handler
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//
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// Any middleware within the chain may choose to stop and return an error or
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// response. Since the middleware decorate the handler like a call stack, each
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// middleware will receive the result of the next middleware in the chain.
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// Middleware that does not need to react to an input, or result must forward
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// along the input down the chain, or return the result back up the chain.
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//
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// Initialize <- Serialize -> Build -> Finalize <- Deserialize <- Handler
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type Stack struct {
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// Initialize prepares the input, and sets any default parameters as
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// needed, (e.g. idempotency token, and presigned URLs).
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//
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// Takes Input Parameters, and returns result or error.
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//
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// Receives result or error from Serialize step.
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Initialize *InitializeStep
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// Serialize serializes the prepared input into a data structure that can be consumed
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// by the target transport's message, (e.g. REST-JSON serialization)
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//
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// Converts Input Parameters into a Request, and returns the result or error.
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//
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// Receives result or error from Build step.
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Serialize *SerializeStep
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// Build adds additional metadata to the serialized transport message
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// (e.g. HTTP's Content-Length header, or body checksum). Decorations and
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// modifications to the message should be copied to all message attempts.
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//
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// Takes Request, and returns result or error.
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//
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// Receives result or error from Finalize step.
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Build *BuildStep
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// Finalize performs final preparations needed before sending the message. The
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// message should already be complete by this stage, and is only alternated
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// to meet the expectations of the recipient (e.g. Retry and AWS SigV4
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// request signing)
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//
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// Takes Request, and returns result or error.
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//
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// Receives result or error from Deserialize step.
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Finalize *FinalizeStep
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// Deserialize reacts to the handler's response returned by the recipient of the request
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// message. Deserializes the response into a structured type or error above
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// stacks can react to.
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//
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// Should only forward Request to underlying handler.
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//
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// Takes Request, and returns result or error.
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//
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// Receives raw response, or error from underlying handler.
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Deserialize *DeserializeStep
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id string
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}
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// NewStack returns an initialize empty stack.
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func NewStack(id string, newRequestFn func() interface{}) *Stack {
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return &Stack{
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id: id,
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Initialize: NewInitializeStep(),
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Serialize: NewSerializeStep(newRequestFn),
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Build: NewBuildStep(),
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Finalize: NewFinalizeStep(),
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Deserialize: NewDeserializeStep(),
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}
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}
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// ID returns the unique ID for the stack as a middleware.
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func (s *Stack) ID() string { return s.id }
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// HandleMiddleware invokes the middleware stack decorating the next handler.
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// Each step of stack will be invoked in order before calling the next step.
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// With the next handler call last.
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//
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// The input value must be the input parameters of the operation being
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// performed.
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//
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// Will return the result of the operation, or error.
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func (s *Stack) HandleMiddleware(ctx context.Context, input interface{}, next Handler) (
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output interface{}, metadata Metadata, err error,
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) {
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h := DecorateHandler(next,
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s.Initialize,
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s.Serialize,
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s.Build,
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s.Finalize,
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s.Deserialize,
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)
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return h.Handle(ctx, input)
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}
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// List returns a list of all middleware in the stack by step.
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func (s *Stack) List() []string {
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var l []string
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l = append(l, s.id)
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l = append(l, s.Initialize.ID())
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l = append(l, s.Initialize.List()...)
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l = append(l, s.Serialize.ID())
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l = append(l, s.Serialize.List()...)
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l = append(l, s.Build.ID())
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l = append(l, s.Build.List()...)
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l = append(l, s.Finalize.ID())
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l = append(l, s.Finalize.List()...)
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l = append(l, s.Deserialize.ID())
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l = append(l, s.Deserialize.List()...)
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return l
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}
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func (s *Stack) String() string {
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var b strings.Builder
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w := &indentWriter{w: &b}
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w.WriteLine(s.id)
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w.Push()
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writeStepItems(w, s.Initialize)
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writeStepItems(w, s.Serialize)
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writeStepItems(w, s.Build)
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writeStepItems(w, s.Finalize)
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writeStepItems(w, s.Deserialize)
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return b.String()
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}
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type stackStepper interface {
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ID() string
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List() []string
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}
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func writeStepItems(w *indentWriter, s stackStepper) {
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type lister interface {
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List() []string
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}
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w.WriteLine(s.ID())
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w.Push()
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defer w.Pop()
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// ignore stack to prevent circular iterations
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if _, ok := s.(*Stack); ok {
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return
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}
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for _, id := range s.List() {
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w.WriteLine(id)
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}
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}
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type stringWriter interface {
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io.Writer
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WriteString(string) (int, error)
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WriteRune(rune) (int, error)
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}
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type indentWriter struct {
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w stringWriter
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depth int
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}
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const indentDepth = "\t\t\t\t\t\t\t\t\t\t"
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func (w *indentWriter) Push() {
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w.depth++
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}
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func (w *indentWriter) Pop() {
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w.depth--
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if w.depth < 0 {
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w.depth = 0
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}
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}
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func (w *indentWriter) WriteLine(v string) {
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w.w.WriteString(indentDepth[:w.depth])
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v = strings.ReplaceAll(v, "\n", "\\n")
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v = strings.ReplaceAll(v, "\r", "\\r")
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w.w.WriteString(v)
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w.w.WriteRune('\n')
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}
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