mirror of
https://github.com/rocky-linux/peridot.git
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388 lines
13 KiB
Go
388 lines
13 KiB
Go
// Copyright 2020 Google LLC
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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 storage
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import (
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"crypto"
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"crypto/rand"
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"crypto/rsa"
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"crypto/sha256"
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"encoding/base64"
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"encoding/json"
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"errors"
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"fmt"
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"net/url"
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"strings"
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"time"
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)
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// PostPolicyV4Options are used to construct a signed post policy.
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// Please see https://cloud.google.com/storage/docs/xml-api/post-object
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// for reference about the fields.
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type PostPolicyV4Options struct {
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// GoogleAccessID represents the authorizer of the signed URL generation.
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// It is typically the Google service account client email address from
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// the Google Developers Console in the form of "xxx@developer.gserviceaccount.com".
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// Required.
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GoogleAccessID string
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// PrivateKey is the Google service account private key. It is obtainable
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// from the Google Developers Console.
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// At https://console.developers.google.com/project/<your-project-id>/apiui/credential,
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// create a service account client ID or reuse one of your existing service account
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// credentials. Click on the "Generate new P12 key" to generate and download
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// a new private key. Once you download the P12 file, use the following command
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// to convert it into a PEM file.
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//
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// $ openssl pkcs12 -in key.p12 -passin pass:notasecret -out key.pem -nodes
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//
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// Provide the contents of the PEM file as a byte slice.
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// Exactly one of PrivateKey or SignBytes must be non-nil.
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PrivateKey []byte
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// SignBytes is a function for implementing custom signing. For example, if
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// your application is running on Google App Engine, you can use
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// appengine's internal signing function:
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// ctx := appengine.NewContext(request)
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// acc, _ := appengine.ServiceAccount(ctx)
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// url, err := SignedURL("bucket", "object", &SignedURLOptions{
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// GoogleAccessID: acc,
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// SignBytes: func(b []byte) ([]byte, error) {
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// _, signedBytes, err := appengine.SignBytes(ctx, b)
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// return signedBytes, err
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// },
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// // etc.
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// })
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//
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// Exactly one of PrivateKey or SignBytes must be non-nil.
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SignBytes func(hashBytes []byte) (signature []byte, err error)
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// Expires is the expiration time on the signed URL.
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// It must be a time in the future.
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// Required.
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Expires time.Time
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// Style provides options for the type of URL to use. Options are
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// PathStyle (default), BucketBoundHostname, and VirtualHostedStyle. See
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// https://cloud.google.com/storage/docs/request-endpoints for details.
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// Optional.
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Style URLStyle
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// Insecure when set indicates that the generated URL's scheme
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// will use "http" instead of "https" (default).
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// Optional.
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Insecure bool
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// Fields specifies the attributes of a PostPolicyV4 request.
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// When Fields is non-nil, its attributes must match those that will
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// passed into field Conditions.
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// Optional.
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Fields *PolicyV4Fields
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// The conditions that the uploaded file will be expected to conform to.
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// When used, the failure of an upload to satisfy a condition will result in
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// a 4XX status code, back with the message describing the problem.
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// Optional.
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Conditions []PostPolicyV4Condition
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}
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// PolicyV4Fields describes the attributes for a PostPolicyV4 request.
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type PolicyV4Fields struct {
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// ACL specifies the access control permissions for the object.
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// Optional.
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ACL string
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// CacheControl specifies the caching directives for the object.
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// Optional.
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CacheControl string
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// ContentType specifies the media type of the object.
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// Optional.
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ContentType string
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// ContentDisposition specifies how the file will be served back to requesters.
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// Optional.
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ContentDisposition string
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// ContentEncoding specifies the decompressive transcoding that the object.
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// This field is complementary to ContentType in that the file could be
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// compressed but ContentType specifies the file's original media type.
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// Optional.
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ContentEncoding string
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// Metadata specifies custom metadata for the object.
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// If any key doesn't begin with "x-goog-meta-", an error will be returned.
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// Optional.
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Metadata map[string]string
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// StatusCodeOnSuccess when set, specifies the status code that Cloud Storage
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// will serve back on successful upload of the object.
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// Optional.
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StatusCodeOnSuccess int
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// RedirectToURLOnSuccess when set, specifies the URL that Cloud Storage
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// will serve back on successful upload of the object.
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// Optional.
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RedirectToURLOnSuccess string
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}
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// PostPolicyV4 describes the URL and respective form fields for a generated PostPolicyV4 request.
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type PostPolicyV4 struct {
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// URL is the generated URL that the file upload will be made to.
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URL string
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// Fields specifies the generated key-values that the file uploader
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// must include in their multipart upload form.
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Fields map[string]string
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}
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// PostPolicyV4Condition describes the constraints that the subsequent
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// object upload's multipart form fields will be expected to conform to.
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type PostPolicyV4Condition interface {
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isEmpty() bool
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json.Marshaler
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}
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type startsWith struct {
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key, value string
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}
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func (sw *startsWith) MarshalJSON() ([]byte, error) {
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return json.Marshal([]string{"starts-with", sw.key, sw.value})
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}
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func (sw *startsWith) isEmpty() bool {
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return sw.value == ""
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}
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// ConditionStartsWith checks that an attributes starts with value.
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// An empty value will cause this condition to be ignored.
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func ConditionStartsWith(key, value string) PostPolicyV4Condition {
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return &startsWith{key, value}
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}
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type contentLengthRangeCondition struct {
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start, end uint64
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}
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func (clr *contentLengthRangeCondition) MarshalJSON() ([]byte, error) {
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return json.Marshal([]interface{}{"content-length-range", clr.start, clr.end})
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}
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func (clr *contentLengthRangeCondition) isEmpty() bool {
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return clr.start == 0 && clr.end == 0
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}
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type singleValueCondition struct {
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name, value string
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}
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func (svc *singleValueCondition) MarshalJSON() ([]byte, error) {
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return json.Marshal(map[string]string{svc.name: svc.value})
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}
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func (svc *singleValueCondition) isEmpty() bool {
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return svc.value == ""
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}
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// ConditionContentLengthRange constraints the limits that the
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// multipart upload's range header will be expected to be within.
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func ConditionContentLengthRange(start, end uint64) PostPolicyV4Condition {
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return &contentLengthRangeCondition{start, end}
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}
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func conditionRedirectToURLOnSuccess(redirectURL string) PostPolicyV4Condition {
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return &singleValueCondition{"success_action_redirect", redirectURL}
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}
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func conditionStatusCodeOnSuccess(statusCode int) PostPolicyV4Condition {
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svc := &singleValueCondition{name: "success_action_status"}
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if statusCode > 0 {
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svc.value = fmt.Sprintf("%d", statusCode)
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}
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return svc
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}
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// GenerateSignedPostPolicyV4 generates a PostPolicyV4 value from bucket, object and opts.
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// The generated URL and fields will then allow an unauthenticated client to perform multipart uploads.
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func GenerateSignedPostPolicyV4(bucket, object string, opts *PostPolicyV4Options) (*PostPolicyV4, error) {
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if bucket == "" {
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return nil, errors.New("storage: bucket must be non-empty")
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}
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if object == "" {
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return nil, errors.New("storage: object must be non-empty")
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}
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now := utcNow()
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if err := validatePostPolicyV4Options(opts, now); err != nil {
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return nil, err
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}
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var signingFn func(hashedBytes []byte) ([]byte, error)
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switch {
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case opts.SignBytes != nil:
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signingFn = opts.SignBytes
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case len(opts.PrivateKey) != 0:
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parsedRSAPrivKey, err := parseKey(opts.PrivateKey)
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if err != nil {
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return nil, err
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}
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signingFn = func(hashedBytes []byte) ([]byte, error) {
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return rsa.SignPKCS1v15(rand.Reader, parsedRSAPrivKey, crypto.SHA256, hashedBytes)
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}
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default:
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return nil, errors.New("storage: exactly one of PrivateKey or SignedBytes must be set")
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}
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var descFields PolicyV4Fields
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if opts.Fields != nil {
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descFields = *opts.Fields
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}
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if err := validateMetadata(descFields.Metadata); err != nil {
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return nil, err
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}
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// Build the policy.
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conds := make([]PostPolicyV4Condition, len(opts.Conditions))
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copy(conds, opts.Conditions)
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conds = append(conds,
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// These are ordered lexicographically. Technically the order doesn't matter
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// for creating the policy, but we use this order to match the
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// cross-language conformance tests for this feature.
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&singleValueCondition{"acl", descFields.ACL},
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&singleValueCondition{"cache-control", descFields.CacheControl},
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&singleValueCondition{"content-disposition", descFields.ContentDisposition},
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&singleValueCondition{"content-encoding", descFields.ContentEncoding},
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&singleValueCondition{"content-type", descFields.ContentType},
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conditionRedirectToURLOnSuccess(descFields.RedirectToURLOnSuccess),
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conditionStatusCodeOnSuccess(descFields.StatusCodeOnSuccess),
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)
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YYYYMMDD := now.Format(yearMonthDay)
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policyFields := map[string]string{
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"key": object,
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"x-goog-date": now.Format(iso8601),
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"x-goog-credential": opts.GoogleAccessID + "/" + YYYYMMDD + "/auto/storage/goog4_request",
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"x-goog-algorithm": "GOOG4-RSA-SHA256",
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"acl": descFields.ACL,
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"cache-control": descFields.CacheControl,
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"content-disposition": descFields.ContentDisposition,
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"content-encoding": descFields.ContentEncoding,
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"content-type": descFields.ContentType,
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"success_action_redirect": descFields.RedirectToURLOnSuccess,
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}
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for key, value := range descFields.Metadata {
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conds = append(conds, &singleValueCondition{key, value})
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policyFields[key] = value
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}
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// Following from the order expected by the conformance test cases,
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// hence manually inserting these fields in a specific order.
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conds = append(conds,
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&singleValueCondition{"bucket", bucket},
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&singleValueCondition{"key", object},
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&singleValueCondition{"x-goog-date", now.Format(iso8601)},
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&singleValueCondition{
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name: "x-goog-credential",
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value: opts.GoogleAccessID + "/" + YYYYMMDD + "/auto/storage/goog4_request",
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},
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&singleValueCondition{"x-goog-algorithm", "GOOG4-RSA-SHA256"},
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)
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nonEmptyConds := make([]PostPolicyV4Condition, 0, len(opts.Conditions))
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for _, cond := range conds {
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if cond == nil || !cond.isEmpty() {
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nonEmptyConds = append(nonEmptyConds, cond)
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}
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}
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condsAsJSON, err := json.Marshal(map[string]interface{}{
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"conditions": nonEmptyConds,
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"expiration": opts.Expires.Format(time.RFC3339),
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})
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if err != nil {
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return nil, fmt.Errorf("storage: PostPolicyV4 JSON serialization failed: %v", err)
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}
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b64Policy := base64.StdEncoding.EncodeToString(condsAsJSON)
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shaSum := sha256.Sum256([]byte(b64Policy))
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signature, err := signingFn(shaSum[:])
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if err != nil {
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return nil, err
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}
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policyFields["policy"] = b64Policy
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policyFields["x-goog-signature"] = fmt.Sprintf("%x", signature)
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// Construct the URL.
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scheme := "https"
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if opts.Insecure {
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scheme = "http"
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}
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path := opts.Style.path(bucket, "") + "/"
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u := &url.URL{
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Path: path,
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RawPath: pathEncodeV4(path),
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Host: opts.Style.host(bucket),
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Scheme: scheme,
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}
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if descFields.StatusCodeOnSuccess > 0 {
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policyFields["success_action_status"] = fmt.Sprintf("%d", descFields.StatusCodeOnSuccess)
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}
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// Clear out fields with blanks values.
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for key, value := range policyFields {
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if value == "" {
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delete(policyFields, key)
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}
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}
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pp4 := &PostPolicyV4{
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Fields: policyFields,
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URL: u.String(),
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}
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return pp4, nil
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}
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// validatePostPolicyV4Options checks that:
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// * GoogleAccessID is set
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// * either but not both PrivateKey and SignBytes are set or nil, but not both
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// * Expires, the deadline is not in the past
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// * if Style is not set, it'll use PathStyle
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func validatePostPolicyV4Options(opts *PostPolicyV4Options, now time.Time) error {
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if opts == nil || opts.GoogleAccessID == "" {
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return errors.New("storage: missing required GoogleAccessID")
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}
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if privBlank, signBlank := len(opts.PrivateKey) == 0, opts.SignBytes == nil; privBlank == signBlank {
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return errors.New("storage: exactly one of PrivateKey or SignedBytes must be set")
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}
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if opts.Expires.Before(now) {
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return errors.New("storage: expecting Expires to be in the future")
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}
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if opts.Style == nil {
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opts.Style = PathStyle()
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}
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return nil
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}
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// validateMetadata ensures that all keys passed in have a prefix of "x-goog-meta-",
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// otherwise it will return an error.
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func validateMetadata(hdrs map[string]string) (err error) {
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if len(hdrs) == 0 {
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return nil
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}
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badKeys := make([]string, 0, len(hdrs))
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for key := range hdrs {
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if !strings.HasPrefix(key, "x-goog-meta-") {
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badKeys = append(badKeys, key)
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}
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}
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if len(badKeys) != 0 {
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err = errors.New("storage: expected metadata to begin with x-goog-meta-, got " + strings.Join(badKeys, ", "))
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}
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return
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}
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