mirror of https://github.com/minio/minio.git
366 lines
12 KiB
Go
366 lines
12 KiB
Go
// Copyright (c) 2015-2021 MinIO, Inc.
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//
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// This file is part of MinIO Object Storage stack
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//
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// This program is free software: you can redistribute it and/or modify
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// it under the terms of the GNU Affero General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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//
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// This program is distributed in the hope that it will be useful
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU Affero General Public License for more details.
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//
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// You should have received a copy of the GNU Affero General Public License
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// along with this program. If not, see <http://www.gnu.org/licenses/>.
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package cmd
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import (
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"bytes"
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"encoding/json"
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"errors"
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"fmt"
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"io"
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"net/http"
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"reflect"
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"strconv"
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"strings"
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"time"
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"github.com/bcicen/jstream"
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"github.com/minio/minio-go/v7/pkg/encrypt"
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"github.com/minio/minio-go/v7/pkg/set"
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xhttp "github.com/minio/minio/internal/http"
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)
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// startWithConds - map which indicates if a given condition supports starts-with policy operator
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var startsWithConds = map[string]bool{
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"$acl": true,
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"$bucket": false,
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"$cache-control": true,
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"$content-type": true,
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"$content-disposition": true,
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"$content-encoding": true,
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"$expires": true,
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"$key": true,
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"$success_action_redirect": true,
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"$redirect": true,
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"$success_action_status": true,
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"$x-amz-algorithm": false,
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"$x-amz-credential": false,
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"$x-amz-date": false,
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}
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var postPolicyIgnoreKeys = map[string]bool{
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"Policy": true,
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xhttp.AmzSignature: true,
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xhttp.ContentEncoding: true,
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http.CanonicalHeaderKey(xhttp.AmzChecksumAlgo): true,
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http.CanonicalHeaderKey(xhttp.AmzChecksumCRC32): true,
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http.CanonicalHeaderKey(xhttp.AmzChecksumCRC32C): true,
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http.CanonicalHeaderKey(xhttp.AmzChecksumSHA1): true,
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http.CanonicalHeaderKey(xhttp.AmzChecksumSHA256): true,
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http.CanonicalHeaderKey(xhttp.AmzChecksumMode): true,
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}
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// Add policy conditionals.
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const (
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policyCondEqual = "eq"
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policyCondStartsWith = "starts-with"
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policyCondContentLength = "content-length-range"
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)
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// toString - Safely convert interface to string without causing panic.
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func toString(val interface{}) string {
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switch v := val.(type) {
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case string:
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return v
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default:
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return ""
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}
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}
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// toLowerString - safely convert interface to lower string
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func toLowerString(val interface{}) string {
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return strings.ToLower(toString(val))
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}
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// toInteger _ Safely convert interface to integer without causing panic.
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func toInteger(val interface{}) (int64, error) {
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switch v := val.(type) {
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case float64:
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return int64(v), nil
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case int64:
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return v, nil
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case int:
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return int64(v), nil
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case string:
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i, err := strconv.Atoi(v)
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return int64(i), err
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default:
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return 0, errors.New("Invalid number format")
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}
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}
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// isString - Safely check if val is of type string without causing panic.
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func isString(val interface{}) bool {
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_, ok := val.(string)
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return ok
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}
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// ContentLengthRange - policy content-length-range field.
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type contentLengthRange struct {
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Min int64
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Max int64
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Valid bool // If content-length-range was part of policy
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}
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// PostPolicyForm provides strict static type conversion and validation for Amazon S3's POST policy JSON string.
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type PostPolicyForm struct {
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Expiration time.Time // Expiration date and time of the POST policy.
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Conditions struct { // Conditional policy structure.
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Policies []struct {
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Operator string
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Key string
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Value string
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}
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ContentLengthRange contentLengthRange
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}
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}
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// implemented to ensure that duplicate keys in JSON
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// are merged together into a single JSON key, also
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// to remove any extraneous JSON bodies.
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//
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// Go stdlib doesn't support parsing JSON with duplicate
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// keys, so we need to use this technique to merge the
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// keys.
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func sanitizePolicy(r io.Reader) (io.Reader, error) {
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var buf bytes.Buffer
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e := json.NewEncoder(&buf)
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d := jstream.NewDecoder(r, 0).ObjectAsKVS()
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sset := set.NewStringSet()
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for mv := range d.Stream() {
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var kvs jstream.KVS
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if mv.ValueType == jstream.Object {
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// This is a JSON object type (that preserves key order)
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kvs = mv.Value.(jstream.KVS)
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for _, kv := range kvs {
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if sset.Contains(kv.Key) {
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// Reject duplicate conditions or expiration.
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return nil, fmt.Errorf("input policy has multiple %s, please fix your client code", kv.Key)
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}
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sset.Add(kv.Key)
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}
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e.Encode(kvs)
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}
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}
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return &buf, d.Err()
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}
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// parsePostPolicyForm - Parse JSON policy string into typed PostPolicyForm structure.
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func parsePostPolicyForm(r io.Reader) (PostPolicyForm, error) {
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reader, err := sanitizePolicy(r)
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if err != nil {
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return PostPolicyForm{}, err
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}
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d := json.NewDecoder(reader)
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// Convert po into interfaces and
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// perform strict type conversion using reflection.
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var rawPolicy struct {
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Expiration string `json:"expiration"`
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Conditions []interface{} `json:"conditions"`
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}
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d.DisallowUnknownFields()
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if err := d.Decode(&rawPolicy); err != nil {
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return PostPolicyForm{}, err
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}
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parsedPolicy := PostPolicyForm{}
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// Parse expiry time.
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parsedPolicy.Expiration, err = time.Parse(time.RFC3339Nano, rawPolicy.Expiration)
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if err != nil {
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return PostPolicyForm{}, err
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}
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// Parse conditions.
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for _, val := range rawPolicy.Conditions {
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switch condt := val.(type) {
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case map[string]interface{}: // Handle key:value map types.
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for k, v := range condt {
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if !isString(v) { // Pre-check value type.
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// All values must be of type string.
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return parsedPolicy, fmt.Errorf("Unknown type %s of conditional field value %s found in POST policy form", reflect.TypeOf(condt).String(), condt)
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}
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// {"acl": "public-read" } is an alternate way to indicate - [ "eq", "$acl", "public-read" ]
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// In this case we will just collapse this into "eq" for all use cases.
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parsedPolicy.Conditions.Policies = append(parsedPolicy.Conditions.Policies, struct {
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Operator string
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Key string
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Value string
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}{
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policyCondEqual, "$" + strings.ToLower(k), toString(v),
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})
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}
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case []interface{}: // Handle array types.
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if len(condt) != 3 { // Return error if we have insufficient elements.
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return parsedPolicy, fmt.Errorf("Malformed conditional fields %s of type %s found in POST policy form", condt, reflect.TypeOf(condt).String())
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}
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switch toLowerString(condt[0]) {
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case policyCondEqual, policyCondStartsWith:
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for _, v := range condt { // Pre-check all values for type.
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if !isString(v) {
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// All values must be of type string.
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return parsedPolicy, fmt.Errorf("Unknown type %s of conditional field value %s found in POST policy form", reflect.TypeOf(condt).String(), condt)
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}
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}
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operator, matchType, value := toLowerString(condt[0]), toLowerString(condt[1]), toString(condt[2])
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if !strings.HasPrefix(matchType, "$") {
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return parsedPolicy, fmt.Errorf("Invalid according to Policy: Policy Condition failed: [%s, %s, %s]", operator, matchType, value)
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}
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parsedPolicy.Conditions.Policies = append(parsedPolicy.Conditions.Policies, struct {
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Operator string
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Key string
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Value string
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}{
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operator, matchType, value,
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})
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case policyCondContentLength:
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min, err := toInteger(condt[1])
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if err != nil {
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return parsedPolicy, err
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}
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max, err := toInteger(condt[2])
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if err != nil {
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return parsedPolicy, err
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}
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parsedPolicy.Conditions.ContentLengthRange = contentLengthRange{
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Min: min,
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Max: max,
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Valid: true,
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}
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default:
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// Condition should be valid.
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return parsedPolicy, fmt.Errorf("Unknown type %s of conditional field value %s found in POST policy form",
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reflect.TypeOf(condt).String(), condt)
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}
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default:
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return parsedPolicy, fmt.Errorf("Unknown field %s of type %s found in POST policy form",
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condt, reflect.TypeOf(condt).String())
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}
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}
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return parsedPolicy, nil
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}
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// checkPolicyCond returns a boolean to indicate if a condition is satisfied according
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// to the passed operator
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func checkPolicyCond(op string, input1, input2 string) bool {
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switch op {
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case policyCondEqual:
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return input1 == input2
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case policyCondStartsWith:
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return strings.HasPrefix(input1, input2)
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}
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return false
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}
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// checkPostPolicy - apply policy conditions and validate input values.
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// (http://docs.aws.amazon.com/AmazonS3/latest/API/sigv4-HTTPPOSTConstructPolicy.html)
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func checkPostPolicy(formValues http.Header, postPolicyForm PostPolicyForm) error {
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// Check if policy document expiry date is still not reached
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if !postPolicyForm.Expiration.After(UTCNow()) {
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return fmt.Errorf("Invalid according to Policy: Policy expired")
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}
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// check all formValues appear in postPolicyForm or return error. #https://github.com/minio/minio/issues/17391
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checkHeader := map[string][]string{}
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ignoreKeys := map[string]bool{}
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for key, value := range formValues {
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switch {
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case ignoreKeys[key], postPolicyIgnoreKeys[key], strings.HasPrefix(key, encrypt.SseGenericHeader):
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continue
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case strings.HasPrefix(key, "X-Amz-Ignore-"):
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ignoreKey := strings.Replace(key, "X-Amz-Ignore-", "", 1)
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ignoreKeys[ignoreKey] = true
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// if it have already
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delete(checkHeader, ignoreKey)
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default:
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checkHeader[key] = value
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}
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}
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// map to store the metadata
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metaMap := make(map[string]string)
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for _, policy := range postPolicyForm.Conditions.Policies {
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if strings.HasPrefix(policy.Key, "$x-amz-meta-") {
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formCanonicalName := http.CanonicalHeaderKey(strings.TrimPrefix(policy.Key, "$"))
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metaMap[formCanonicalName] = policy.Value
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}
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}
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// Check if any extra metadata field is passed as input
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for key := range formValues {
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if strings.HasPrefix(key, "X-Amz-Meta-") {
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if _, ok := metaMap[key]; !ok {
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return fmt.Errorf("Invalid according to Policy: Extra input fields: %s", key)
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}
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}
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}
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// Flag to indicate if all policies conditions are satisfied
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var condPassed bool
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// Iterate over policy conditions and check them against received form fields
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for _, policy := range postPolicyForm.Conditions.Policies {
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// Form fields names are in canonical format, convert conditions names
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// to canonical for simplification purpose, so `$key` will become `Key`
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formCanonicalName := http.CanonicalHeaderKey(strings.TrimPrefix(policy.Key, "$"))
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// Operator for the current policy condition
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op := policy.Operator
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// Multiple values should not occur
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if len(checkHeader[formCanonicalName]) >= 2 {
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return fmt.Errorf("Invalid according to Policy: Policy Condition failed: [%s, %s, %s]. FormValues have multiple values: [%s]", op, policy.Key, policy.Value, strings.Join(checkHeader[formCanonicalName], ", "))
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}
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// If the current policy condition is known
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if startsWithSupported, condFound := startsWithConds[policy.Key]; condFound {
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// Check if the current condition supports starts-with operator
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if op == policyCondStartsWith && !startsWithSupported {
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return fmt.Errorf("Invalid according to Policy: Policy Condition failed")
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}
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// Check if current policy condition is satisfied
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condPassed = checkPolicyCond(op, formValues.Get(formCanonicalName), policy.Value)
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if !condPassed {
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return fmt.Errorf("Invalid according to Policy: Policy Condition failed")
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}
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} else if strings.HasPrefix(policy.Key, "$x-amz-meta-") || strings.HasPrefix(policy.Key, "$x-amz-") {
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// This covers all conditions X-Amz-Meta-* and X-Amz-*
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// Check if policy condition is satisfied
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condPassed = checkPolicyCond(op, formValues.Get(formCanonicalName), policy.Value)
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if !condPassed {
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return fmt.Errorf("Invalid according to Policy: Policy Condition failed: [%s, %s, %s]", op, policy.Key, policy.Value)
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}
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}
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delete(checkHeader, formCanonicalName)
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}
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// For SignV2 - Signature field will be ignored
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// Policy is generated from Signature with other fields, so it should be ignored
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if _, ok := formValues[xhttp.AmzSignatureV2]; ok {
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delete(checkHeader, xhttp.AmzSignatureV2)
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}
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if len(checkHeader) != 0 {
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logKeys := make([]string, 0, len(checkHeader))
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for key := range checkHeader {
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logKeys = append(logKeys, key)
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}
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return fmt.Errorf("Each form field that you specify in a form (except %s) must appear in the list of conditions.", strings.Join(logKeys, ", "))
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}
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return nil
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}
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