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Author SHA1 Message Date
YanJin b09b812e38 proxy host 2022-06-13 22:29:29 +02:00
167 changed files with 10239 additions and 22236 deletions

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@ -1,6 +1 @@
{
"extends": "scality",
"parserOptions": {
"ecmaVersion": 2020
}
}
{ "extends": "scality" }

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@ -1,25 +0,0 @@
---
name: codeQL
on:
push:
branches: [development/*, stabilization/*, hotfix/*]
pull_request:
branches: [development/*, stabilization/*, hotfix/*]
workflow_dispatch:
jobs:
analyze:
name: Static analysis with CodeQL
runs-on: ubuntu-latest
steps:
- name: Checkout code
uses: actions/checkout@v4
- name: Initialize CodeQL
uses: github/codeql-action/init@v3
with:
languages: javascript, typescript
- name: Build and analyze
uses: github/codeql-action/analyze@v3

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@ -1,16 +0,0 @@
---
name: dependency review
on:
pull_request:
branches: [development/*, stabilization/*, hotfix/*]
jobs:
dependency-review:
runs-on: ubuntu-latest
steps:
- name: 'Checkout Repository'
uses: actions/checkout@v4
- name: 'Dependency Review'
uses: actions/dependency-review-action@v4

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@ -25,18 +25,18 @@ jobs:
- 6379:6379
steps:
- name: Checkout
uses: actions/checkout@v4
- uses: actions/setup-node@v4
uses: actions/checkout@v2
- uses: actions/setup-node@v2
with:
node-version: '16'
cache: 'yarn'
- name: install dependencies
run: yarn install --frozen-lockfile --prefer-offline --network-concurrency 1
run: yarn install --frozen-lockfile --prefer-offline
continue-on-error: true # TODO ARSN-97 Remove it when no errors in TS
- name: lint yaml
run: yarn --silent lint_yml
- name: lint javascript
run: yarn --silent lint --max-warnings 0
run: yarn --silent lint -- --max-warnings 0
- name: lint markdown
run: yarn --silent lint_md
- name: add hostname
@ -46,9 +46,7 @@ jobs:
run: yarn --silent coverage
- name: run functional tests
run: yarn ft_test
- uses: codecov/codecov-action@v4
with:
token: ${{ secrets.CODECOV_TOKEN }}
- uses: codecov/codecov-action@v2
- name: run executables tests
run: yarn install && yarn test
working-directory: 'lib/executables/pensieveCreds/'
@ -59,9 +57,9 @@ jobs:
runs-on: ubuntu-latest
steps:
- name: Checkout
uses: actions/checkout@v4
uses: actions/checkout@v2
- name: Install NodeJS
uses: actions/setup-node@v4
uses: actions/setup-node@v2
with:
node-version: '16'
cache: yarn
@ -72,7 +70,7 @@ jobs:
run: yarn build
continue-on-error: true # TODO ARSN-97 Remove it when no errors in TS
- name: Upload artifacts
uses: scality/action-artifacts@v4
uses: scality/action-artifacts@v2
with:
url: https://artifacts.scality.net
user: ${{ secrets.ARTIFACTS_USER }}

12
.swcrc
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@ -1,12 +0,0 @@
{
"$schema": "https://swc.rs/schema.json",
"jsc": {
"parser": {
"syntax": "typescript"
},
"target": "es2017"
},
"module": {
"type": "commonjs"
}
}

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@ -178,83 +178,3 @@ this._serverSideEncryption.configuredMasterKeyId = configuredMasterKeyId || unde
### Usage
Used to store the users configured KMS key id
## Model version 15
### Properties Added
```javascript
this._tags = tags || null;
```
The Tag Set of a bucket is an array of objects with Key and Value:
```javascript
[
{
Key: 'something',
Value: 'some_data'
}
]
```
## Model version 16
### Properties Added
```javascript
this._capabilities = capabilities || undefined;
```
For capacity-enabled buckets, contains the following data:
```javascript
{
_capabilities: {
VeeamSOSApi?: {
SystemInfo?: {
ProtocolVersion: String,
ModelName: String,
ProtocolCapabilities: {
CapacityInfo: Boolean,
UploadSessions: Boolean,
IAMSTS: Boolean,
},
APIEndpoints: {
IAMEndpoint: String,
STSEndpoint: String,
},
SystemRecommendations?: {
S3ConcurrentTaskLimit: Number,
S3MultiObjectDelete: Number,
StorageCurrentTasksLimit: Number,
KbBlockSize: Number,
}
LastModified?: String,
},
CapacityInfo?: {
Capacity: Number,
Available: Number,
Used: Number,
LastModified?: String,
},
}
},
}
```
### Usage
Used to store bucket tagging
## Model version 17
### Properties Added
```javascript
this._quotaMax = quotaMax || 0;
```
### Usage
Used to store bucket quota

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@ -1,27 +0,0 @@
# Delimiter
The Delimiter class handles raw listings from the database with an
optional delimiter, and fills in a curated listing with "Contents" and
"CommonPrefixes" as a result.
## Expected Behavior
- only lists keys belonging to the given **prefix** (if provided)
- groups listed keys that have a common prefix ending with a delimiter
inside CommonPrefixes
- can take a **marker** or **continuationToken** to list from a specific key
- can take a **maxKeys** parameter to limit how many keys can be returned
## State Chart
- States with grey background are *Idle* states, which are waiting for
a new listing key
- States with blue background are *Processing* states, which are
actively processing a new listing key passed by the filter()
function
![Delimiter State Chart](./pics/delimiterStateChart.svg)

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@ -1,45 +0,0 @@
# DelimiterMaster
The DelimiterMaster class handles raw listings from the database of a
versioned or non-versioned bucket with an optional delimiter, and
fills in a curated listing with "Contents" and "CommonPrefixes" as a
result.
## Expected Behavior
- only lists latest versions of versioned buckets
- only lists keys belonging to the given **prefix** (if provided)
- does not list latest versions that are delete markers
- groups listed keys that have a common prefix ending with a delimiter
inside CommonPrefixes
- can take a **marker** or **continuationToken** to list from a specific key
- can take a **maxKeys** parameter to limit how many keys can be returned
- reconciles internal PHD keys with the next version (those are
created when a specific version that is the latest version is
deleted)
- skips internal keys like replay keys
## State Chart
- States with grey background are *Idle* states, which are waiting for
a new listing key
- States with blue background are *Processing* states, which are
actively processing a new listing key passed by the filter()
function
### Bucket Vformat=v0
![DelimiterMaster State Chart for v0 format](./pics/delimiterMasterV0StateChart.svg)
### Bucket Vformat=v1
For buckets in versioning key format **v1**, the algorithm used is the
one from [Delimiter](delimiter.md).

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@ -1,33 +0,0 @@
# DelimiterVersions
The DelimiterVersions class handles raw listings from the database of a
versioned or non-versioned bucket with an optional delimiter, and
fills in a curated listing with "Versions" and "CommonPrefixes" as a
result.
## Expected Behavior
- lists individual distinct versions of versioned buckets
- only lists keys belonging to the given **prefix** (if provided)
- groups listed keys that have a common prefix ending with a delimiter
inside CommonPrefixes
- can take a **keyMarker** and optionally a **versionIdMarker** to
list from a specific key or version
- can take a **maxKeys** parameter to limit how many keys can be returned
- skips internal keys like replay keys
## State Chart
- States with grey background are *Idle* states, which are waiting for
a new listing key
- States with blue background are *Processing* states, which are
actively processing a new listing key passed by the filter()
function
![DelimiterVersions State Chart](./pics/delimiterVersionsStateChart.svg)

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@ -1,45 +0,0 @@
digraph {
node [shape="box",style="filled,rounded",fontsize=16,fixedsize=true,width=3];
edge [fontsize=14];
rankdir=TB;
START [shape="circle",width=0.2,label="",style="filled",fillcolor="black"]
END [shape="circle",width=0.2,label="",style="filled",fillcolor="black",peripheries=2]
node [fillcolor="lightgrey"];
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"SkippingPrefix.Idle" [label="SkippingPrefix",group="SkippingPrefix"];
"SkippingVersions.Idle" [label="SkippingVersions",group="SkippingVersions"];
"WaitVersionAfterPHD.Idle" [label="WaitVersionAfterPHD",group="WaitVersionAfterPHD"];
node [fillcolor="lightblue"];
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"SkippingPrefix.Processing" [label="SkippingPrefix",group="SkippingPrefix"];
"SkippingVersions.Processing" [label="SkippingVersions",group="SkippingVersions"];
"WaitVersionAfterPHD.Processing" [label="WaitVersionAfterPHD",group="WaitVersionAfterPHD"];
START -> "SkippingVersions.Idle" [label="[marker != undefined]"]
START -> "NotSkippingPrefixNorVersions.Idle" [label="[marker == undefined]"]
"NotSkippingPrefixNorVersions.Idle" -> "NotSkippingPrefixNorVersions.Processing" [label="filter(key, value)"]
"SkippingPrefix.Idle" -> "SkippingPrefix.Processing" [label="filter(key, value)"]
"SkippingVersions.Idle" -> "SkippingVersions.Processing" [label="filter(key, value)"]
"WaitVersionAfterPHD.Idle" -> "WaitVersionAfterPHD.Processing" [label="filter(key, value)"]
"NotSkippingPrefixNorVersions.Processing" -> "SkippingVersions.Idle" [label="[Version.isDeleteMarker(value)]\n-> FILTER_ACCEPT"]
"NotSkippingPrefixNorVersions.Processing" -> "WaitVersionAfterPHD.Idle" [label="[Version.isPHD(value)]\n-> FILTER_ACCEPT"]
"NotSkippingPrefixNorVersions.Processing" -> "SkippingPrefix.Idle" [label="[key.startsWith(<ReplayPrefix>)]\n/ prefix <- <ReplayPrefix>\n-> FILTER_SKIP"]
"NotSkippingPrefixNorVersions.Processing" -> END [label="[isListableKey(key, value) and\nKeys == maxKeys]\n-> FILTER_END"]
"NotSkippingPrefixNorVersions.Processing" -> "SkippingPrefix.Idle" [label="[isListableKey(key, value) and\nnKeys < maxKeys and\nhasDelimiter(key)]\n/ prefix <- prefixOf(key)\n/ CommonPrefixes.append(prefixOf(key))\n-> FILTER_ACCEPT"]
"NotSkippingPrefixNorVersions.Processing" -> "SkippingVersions.Idle" [label="[isListableKey(key, value) and\nnKeys < maxKeys and\nnot hasDelimiter(key)]\n/ Contents.append(key, value)\n-> FILTER_ACCEPT"]
"SkippingPrefix.Processing" -> "SkippingPrefix.Idle" [label="[key.startsWith(prefix)]\n-> FILTER_SKIP"]
"SkippingPrefix.Processing" -> "NotSkippingPrefixNorVersions.Processing" [label="[not key.startsWith(prefix)]"]
"SkippingVersions.Processing" -> "SkippingVersions.Idle" [label="[isVersionKey(key)]\n-> FILTER_SKIP"]
"SkippingVersions.Processing" -> "NotSkippingPrefixNorVersions.Processing" [label="[not isVersionKey(key)]"]
"WaitVersionAfterPHD.Processing" -> "NotSkippingPrefixNorVersions.Processing" [label="[isVersionKey(key) and master(key) == PHDkey]\n/ key <- master(key)"]
"WaitVersionAfterPHD.Processing" -> "NotSkippingPrefixNorVersions.Processing" [label="[not isVersionKey(key) or master(key) != PHDkey]"]
}

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Before

Width:  |  Height:  |  Size: 21 KiB

View File

@ -1,9 +1,6 @@
import * as evaluators from './lib/policyEvaluator/evaluator';
import evaluatePrincipal from './lib/policyEvaluator/principal';
import RequestContext, {
actionNeedQuotaCheck,
actionNeedQuotaCheckCopy,
actionWithDataDeletion } from './lib/policyEvaluator/RequestContext';
import RequestContext from './lib/policyEvaluator/RequestContext';
import * as requestUtils from './lib/policyEvaluator/requestUtils';
import * as actionMaps from './lib/policyEvaluator/utils/actionMaps';
import { validateUserPolicy } from './lib/policy/policyValidator'
@ -28,7 +25,6 @@ import * as objectRestore from './lib/s3middleware/objectRestore';
import * as lifecycleHelpers from './lib/s3middleware/lifecycleHelpers';
export { default as errors } from './lib/errors';
export { default as Clustering } from './lib/Clustering';
export * as ClusterRPC from './lib/clustering/ClusterRPC';
export * as ipCheck from './lib/ipCheck';
export * as auth from './lib/auth/auth';
export * as constants from './lib/constants';
@ -52,15 +48,12 @@ export const algorithms = {
Skip: require('./lib/algos/list/skip'),
},
cache: {
GapSet: require('./lib/algos/cache/GapSet'),
GapCache: require('./lib/algos/cache/GapCache'),
LRUCache: require('./lib/algos/cache/LRUCache'),
},
stream: {
MergeStream: require('./lib/algos/stream/MergeStream'),
},
SortedSet: require('./lib/algos/set/SortedSet'),
Heap: require('./lib/algos/heap/Heap'),
};
export const policies = {
@ -70,9 +63,6 @@ export const policies = {
RequestContext,
requestUtils,
actionMaps,
actionNeedQuotaCheck,
actionWithDataDeletion,
actionNeedQuotaCheckCopy,
};
export const testing = {

View File

@ -1,363 +0,0 @@
import { OrderedSet } from '@js-sdsl/ordered-set';
import {
default as GapSet,
GapSetEntry,
} from './GapSet';
// the API is similar but is not strictly a superset of GapSetInterface
// so we don't extend from it
export interface GapCacheInterface {
exposureDelayMs: number;
maxGapWeight: number;
size: number;
setGap: (firstKey: string, lastKey: string, weight: number) => void;
removeOverlappingGaps: (overlappingKeys: string[]) => number;
lookupGap: (minKey: string, maxKey?: string) => Promise<GapSetEntry | null>;
[Symbol.iterator]: () => Iterator<GapSetEntry>;
toArray: () => GapSetEntry[];
};
class GapCacheUpdateSet {
newGaps: GapSet;
updatedKeys: OrderedSet<string>;
constructor(maxGapWeight: number) {
this.newGaps = new GapSet(maxGapWeight);
this.updatedKeys = new OrderedSet();
}
addUpdateBatch(updatedKeys: OrderedSet<string>): void {
this.updatedKeys.union(updatedKeys);
}
};
/**
* Cache of listing "gaps" i.e. ranges of keys that can be skipped
* over during listing (because they only contain delete markers as
* latest versions).
*
* Typically, a single GapCache instance would be attached to a raft session.
*
* The API usage is as follows:
*
* - Initialize a GapCache instance by calling start() (this starts an internal timer)
*
* - Insert a gap or update an existing one via setGap()
*
* - Lookup existing gaps via lookupGap()
*
* - Invalidate gaps that overlap a specific set of keys via removeOverlappingGaps()
*
* - Shut down a GapCache instance by calling stop() (this stops the internal timer)
*
* Gaps inserted via setGap() are not exposed immediately to lookupGap(), but only:
*
* - after a certain delay always larger than 'exposureDelayMs' and usually shorter
* than twice this value (but might be slightly longer in rare cases)
*
* - and only if they haven't been invalidated by a recent call to removeOverlappingGaps()
*
* This ensures atomicity between gap creation and invalidation from updates under
* the condition that a gap is created from first key to last key within the time defined
* by 'exposureDelayMs'.
*
* The implementation is based on two extra temporary "update sets" on top of the main
* exposed gap set, one called "staging" and the other "frozen", each containing a
* temporary updated gap set and a list of updated keys to invalidate gaps with (coming
* from calls to removeOverlappingGaps()). Every "exposureDelayMs" milliseconds, the frozen
* gaps are invalidated by all key updates coming from either of the "staging" or "frozen"
* update set, then merged into the exposed gaps set, after which the staging updates become
* the frozen updates and won't receive any new gap until the next cycle.
*/
export default class GapCache implements GapCacheInterface {
_exposureDelayMs: number;
maxGaps: number;
_stagingUpdates: GapCacheUpdateSet;
_frozenUpdates: GapCacheUpdateSet;
_exposedGaps: GapSet;
_exposeFrozenInterval: NodeJS.Timeout | null;
/**
* @constructor
*
* @param {number} exposureDelayMs - minimum delay between
* insertion of a gap via setGap() and its exposure via
* lookupGap()
* @param {number} maxGaps - maximum number of cached gaps, after
* which no new gap can be added by setGap(). (Note: a future
* improvement could replace this by an eviction strategy)
* @param {number} maxGapWeight - maximum "weight" of individual
* cached gaps, which is also the granularity for
* invalidation. Individual gaps can be chained together,
* which lookupGap() transparently consolidates in the response
* into a single large gap.
*/
constructor(exposureDelayMs: number, maxGaps: number, maxGapWeight: number) {
this._exposureDelayMs = exposureDelayMs;
this.maxGaps = maxGaps;
this._stagingUpdates = new GapCacheUpdateSet(maxGapWeight);
this._frozenUpdates = new GapCacheUpdateSet(maxGapWeight);
this._exposedGaps = new GapSet(maxGapWeight);
this._exposeFrozenInterval = null;
}
/**
* Create a GapCache from an array of exposed gap entries (used in tests)
*
* @return {GapCache} - a new GapCache instance
*/
static createFromArray(
gaps: GapSetEntry[],
exposureDelayMs: number,
maxGaps: number,
maxGapWeight: number
): GapCache {
const gapCache = new GapCache(exposureDelayMs, maxGaps, maxGapWeight);
gapCache._exposedGaps = GapSet.createFromArray(gaps, maxGapWeight)
return gapCache;
}
/**
* Internal helper to remove gaps in the staging and frozen sets
* overlapping with previously updated keys, right before the
* frozen gaps get exposed.
*
* @return {undefined}
*/
_removeOverlappingGapsBeforeExpose(): void {
for (const { updatedKeys } of [this._stagingUpdates, this._frozenUpdates]) {
if (updatedKeys.size() === 0) {
continue;
}
for (const { newGaps } of [this._stagingUpdates, this._frozenUpdates]) {
if (newGaps.size === 0) {
continue;
}
newGaps.removeOverlappingGaps(updatedKeys);
}
}
}
/**
* This function is the core mechanism that updates the exposed gaps in the
* cache. It is called on a regular interval defined by 'exposureDelayMs'.
*
* It does the following in order:
*
* - remove gaps from the frozen set that overlap with any key present in a
* batch passed to removeOverlappingGaps() since the last two triggers of
* _exposeFrozen()
*
* - merge the remaining gaps from the frozen set to the exposed set, which
* makes them visible from calls to lookupGap()
*
* - rotate by freezing the currently staging updates and initiating a new
* staging updates set
*
* @return {undefined}
*/
_exposeFrozen(): void {
this._removeOverlappingGapsBeforeExpose();
for (const gap of this._frozenUpdates.newGaps) {
// Use a trivial strategy to keep the cache size within
// limits: refuse to add new gaps when the size is above
// the 'maxGaps' threshold. We solely rely on
// removeOverlappingGaps() to make space for new gaps.
if (this._exposedGaps.size < this.maxGaps) {
this._exposedGaps.setGap(gap.firstKey, gap.lastKey, gap.weight);
}
}
this._frozenUpdates = this._stagingUpdates;
this._stagingUpdates = new GapCacheUpdateSet(this.maxGapWeight);
}
/**
* Start the internal GapCache timer
*
* @return {undefined}
*/
start(): void {
if (this._exposeFrozenInterval) {
return;
}
this._exposeFrozenInterval = setInterval(
() => this._exposeFrozen(),
this._exposureDelayMs);
}
/**
* Stop the internal GapCache timer
*
* @return {undefined}
*/
stop(): void {
if (this._exposeFrozenInterval) {
clearInterval(this._exposeFrozenInterval);
this._exposeFrozenInterval = null;
}
}
/**
* Record a gap between two keys, associated with a weight to
* limit individual gap's spanning ranges in the cache, for a more
* granular invalidation.
*
* The function handles splitting and merging existing gaps to
* maintain an optimal weight of cache entries.
*
* NOTE 1: the caller must ensure that the full length of the gap
* between 'firstKey' and 'lastKey' has been built from a listing
* snapshot that is more recent than 'exposureDelayMs' milliseconds,
* in order to guarantee that the exposed gap will be fully
* covered (and potentially invalidated) from recent calls to
* removeOverlappingGaps().
*
* NOTE 2: a usual pattern when building a large gap from multiple
* calls to setGap() is to start the next gap from 'lastKey',
* which will be passed as 'firstKey' in the next call, so that
* gaps can be chained together and consolidated by lookupGap().
*
* @param {string} firstKey - first key of the gap
* @param {string} lastKey - last key of the gap, must be greater
* or equal than 'firstKey'
* @param {number} weight - total weight between 'firstKey' and 'lastKey'
* @return {undefined}
*/
setGap(firstKey: string, lastKey: string, weight: number): void {
this._stagingUpdates.newGaps.setGap(firstKey, lastKey, weight);
}
/**
* Remove gaps that overlap with a given set of keys. Used to
* invalidate gaps when keys are inserted or deleted.
*
* @param {OrderedSet<string> | string[]} overlappingKeys - remove gaps that
* overlap with any of this set of keys
* @return {number} - how many gaps were removed from the exposed
* gaps only (overlapping gaps not yet exposed are also invalidated
* but are not accounted for in the returned value)
*/
removeOverlappingGaps(overlappingKeys: OrderedSet<string> | string[]): number {
let overlappingKeysSet;
if (Array.isArray(overlappingKeys)) {
overlappingKeysSet = new OrderedSet(overlappingKeys);
} else {
overlappingKeysSet = overlappingKeys;
}
this._stagingUpdates.addUpdateBatch(overlappingKeysSet);
return this._exposedGaps.removeOverlappingGaps(overlappingKeysSet);
}
/**
* Lookup the next exposed gap that overlaps with [minKey, maxKey]. Internally
* chained gaps are coalesced in the response into a single contiguous large gap.
*
* @param {string} minKey - minimum key overlapping with the returned gap
* @param {string} [maxKey] - maximum key overlapping with the returned gap
* @return {Promise<GapSetEntry | null>} - result of the lookup if a gap
* was found, null otherwise, as a Promise
*/
lookupGap(minKey: string, maxKey?: string): Promise<GapSetEntry | null> {
return this._exposedGaps.lookupGap(minKey, maxKey);
}
/**
* Get the maximum weight setting for individual gaps.
*
* @return {number} - maximum weight of individual gaps
*/
get maxGapWeight(): number {
return this._exposedGaps.maxWeight;
}
/**
* Set the maximum weight setting for individual gaps.
*
* @param {number} gapWeight - maximum weight of individual gaps
*/
set maxGapWeight(gapWeight: number) {
this._exposedGaps.maxWeight = gapWeight;
// also update transient gap sets
this._stagingUpdates.newGaps.maxWeight = gapWeight;
this._frozenUpdates.newGaps.maxWeight = gapWeight;
}
/**
* Get the exposure delay in milliseconds, which is the minimum
* time after which newly cached gaps will be exposed by
* lookupGap().
*
* @return {number} - exposure delay in milliseconds
*/
get exposureDelayMs(): number {
return this._exposureDelayMs;
}
/**
* Set the exposure delay in milliseconds, which is the minimum
* time after which newly cached gaps will be exposed by
* lookupGap(). Setting this attribute automatically updates the
* internal state to honor the new value.
*
* @param {number} - exposure delay in milliseconds
*/
set exposureDelayMs(exposureDelayMs: number) {
if (exposureDelayMs !== this._exposureDelayMs) {
this._exposureDelayMs = exposureDelayMs;
if (this._exposeFrozenInterval) {
// invalidate all pending gap updates, as the new interval may not be
// safe for them
this._stagingUpdates = new GapCacheUpdateSet(this.maxGapWeight);
this._frozenUpdates = new GapCacheUpdateSet(this.maxGapWeight);
// reinitialize the _exposeFrozenInterval timer with the updated delay
this.stop();
this.start();
}
}
}
/**
* Get the number of exposed gaps
*
* @return {number} number of exposed gaps
*/
get size(): number {
return this._exposedGaps.size;
}
/**
* Iterate over exposed gaps
*
* @return {Iterator<GapSetEntry>} an iterator over exposed gaps
*/
[Symbol.iterator](): Iterator<GapSetEntry> {
return this._exposedGaps[Symbol.iterator]();
}
/**
* Get an array of all exposed gaps
*
* @return {GapSetEntry[]} array of exposed gaps
*/
toArray(): GapSetEntry[] {
return this._exposedGaps.toArray();
}
/**
* Clear all exposed and staging gaps from the cache.
*
* Note: retains invalidating updates from removeOverlappingGaps()
* for correctness of gaps inserted afterwards.
*
* @return {undefined}
*/
clear(): void {
this._stagingUpdates.newGaps = new GapSet(this.maxGapWeight);
this._frozenUpdates.newGaps = new GapSet(this.maxGapWeight);
this._exposedGaps = new GapSet(this.maxGapWeight);
}
}

View File

@ -1,366 +0,0 @@
import assert from 'assert';
import { OrderedSet } from '@js-sdsl/ordered-set';
import errors from '../../errors';
export type GapSetEntry = {
firstKey: string,
lastKey: string,
weight: number,
};
export interface GapSetInterface {
maxWeight: number;
size: number;
setGap: (firstKey: string, lastKey: string, weight: number) => GapSetEntry;
removeOverlappingGaps: (overlappingKeys: string[]) => number;
lookupGap: (minKey: string, maxKey?: string) => Promise<GapSetEntry | null>;
[Symbol.iterator]: () => Iterator<GapSetEntry>;
toArray: () => GapSetEntry[];
};
/**
* Specialized data structure to support caching of listing "gaps",
* i.e. ranges of keys that can be skipped over during listing
* (because they only contain delete markers as latest versions)
*/
export default class GapSet implements GapSetInterface, Iterable<GapSetEntry> {
_gaps: OrderedSet<GapSetEntry>;
_maxWeight: number;
/**
* @constructor
* @param {number} maxWeight - weight threshold for each cached
* gap (unitless). Triggers splitting gaps when reached
*/
constructor(maxWeight: number) {
this._gaps = new OrderedSet(
[],
(left: GapSetEntry, right: GapSetEntry) => (
left.firstKey < right.firstKey ? -1 :
left.firstKey > right.firstKey ? 1 : 0
)
);
this._maxWeight = maxWeight;
}
/**
* Create a GapSet from an array of gap entries (used in tests)
*/
static createFromArray(gaps: GapSetEntry[], maxWeight: number): GapSet {
const gapSet = new GapSet(maxWeight);
for (const gap of gaps) {
gapSet._gaps.insert(gap);
}
return gapSet;
}
/**
* Record a gap between two keys, associated with a weight to limit
* individual gap sizes in the cache.
*
* The function handles splitting and merging existing gaps to
* maintain an optimal weight of cache entries.
*
* @param {string} firstKey - first key of the gap
* @param {string} lastKey - last key of the gap, must be greater
* or equal than 'firstKey'
* @param {number} weight - total weight between 'firstKey' and 'lastKey'
* @return {GapSetEntry} - existing or new gap entry
*/
setGap(firstKey: string, lastKey: string, weight: number): GapSetEntry {
assert(lastKey >= firstKey);
// Step 1/4: Find the closest left-overlapping gap, and either re-use it
// or chain it with a new gap depending on the weights if it exists (otherwise
// just creates a new gap).
const curGapIt = this._gaps.reverseLowerBound(<GapSetEntry>{ firstKey });
let curGap;
if (curGapIt.isAccessible()) {
curGap = curGapIt.pointer;
if (curGap.lastKey >= lastKey) {
// return fully overlapping gap already cached
return curGap;
}
}
let remainingWeight = weight;
if (!curGap // no previous gap
|| curGap.lastKey < firstKey // previous gap not overlapping
|| (curGap.lastKey === firstKey // previous gap overlapping by one key...
&& curGap.weight + weight > this._maxWeight) // ...but we can't extend it
) {
// create a new gap indexed by 'firstKey'
curGap = { firstKey, lastKey: firstKey, weight: 0 };
this._gaps.insert(curGap);
} else if (curGap.lastKey > firstKey && weight > this._maxWeight) {
// previous gap is either fully or partially contained in the new gap
// and cannot be extended: substract its weight from the total (heuristic
// in case the previous gap doesn't start at 'firstKey', which is the
// uncommon case)
remainingWeight -= curGap.weight;
// there may be an existing chained gap starting with the previous gap's
// 'lastKey': use it if it exists
const chainedGapIt = this._gaps.find(<GapSetEntry>{ firstKey: curGap.lastKey });
if (chainedGapIt.isAccessible()) {
curGap = chainedGapIt.pointer;
} else {
// no existing chained gap: chain a new gap to the previous gap
curGap = {
firstKey: curGap.lastKey,
lastKey: curGap.lastKey,
weight: 0,
};
this._gaps.insert(curGap);
}
}
// Step 2/4: Cleanup existing gaps fully included in firstKey -> lastKey, and
// aggregate their weights in curGap to define the minimum weight up to the
// last merged gap.
let nextGap;
while (true) {
const nextGapIt = this._gaps.upperBound(<GapSetEntry>{ firstKey: curGap.firstKey });
nextGap = nextGapIt.isAccessible() && nextGapIt.pointer;
// stop the cleanup when no more gap or if the next gap is not fully
// included in curGap
if (!nextGap || nextGap.lastKey > lastKey) {
break;
}
this._gaps.eraseElementByIterator(nextGapIt);
curGap.lastKey = nextGap.lastKey;
curGap.weight += nextGap.weight;
}
// Step 3/4: Extend curGap to lastKey, adjusting the weight.
// At this point, curGap weight is the minimum weight of the finished gap, save it
// for step 4.
let minMergedWeight = curGap.weight;
if (curGap.lastKey === firstKey && firstKey !== lastKey) {
// extend the existing gap by the full amount 'firstKey -> lastKey'
curGap.lastKey = lastKey;
curGap.weight += remainingWeight;
} else if (curGap.lastKey <= lastKey) {
curGap.lastKey = lastKey;
curGap.weight = remainingWeight;
}
// Step 4/4: Find the closest right-overlapping gap, and if it exists, either merge
// it or chain it with curGap depending on the weights.
if (nextGap && nextGap.firstKey <= lastKey) {
// nextGap overlaps with the new gap: check if we can merge it
minMergedWeight += nextGap.weight;
let mergedWeight;
if (lastKey === nextGap.firstKey) {
// nextGap is chained with curGap: add the full weight of nextGap
mergedWeight = curGap.weight + nextGap.weight;
} else {
// strict overlap: don't add nextGap's weight unless
// it's larger than the sum of merged ranges (as it is
// then included in `minMergedWeight`)
mergedWeight = Math.max(curGap.weight, minMergedWeight);
}
if (mergedWeight <= this._maxWeight) {
// merge nextGap into curGap
curGap.lastKey = nextGap.lastKey;
curGap.weight = mergedWeight;
this._gaps.eraseElementByKey(nextGap);
} else {
// adjust the last key to chain with nextGap and substract the next
// gap's weight from curGap (heuristic)
curGap.lastKey = nextGap.firstKey;
curGap.weight = Math.max(mergedWeight - nextGap.weight, 0);
curGap = nextGap;
}
}
// return a copy of curGap
return Object.assign({}, curGap);
}
/**
* Remove gaps that overlap with one or more keys in a given array or
* OrderedSet. Used to invalidate gaps when keys are inserted or deleted.
*
* @param {OrderedSet<string> | string[]} overlappingKeys - remove gaps that overlap
* with any of this set of keys
* @return {number} - how many gaps were removed
*/
removeOverlappingGaps(overlappingKeys: OrderedSet<string> | string[]): number {
// To optimize processing with a large number of keys and/or gaps, this function:
//
// 1. converts the overlappingKeys array to a OrderedSet (if not already a OrderedSet)
// 2. queries both the gaps set and the overlapping keys set in a loop, which allows:
// - skipping ranges of overlapping keys at once when there is no new overlapping gap
// - skipping ranges of gaps at once when there is no overlapping key
//
// This way, it is efficient when the number of non-overlapping gaps is large
// (which is the most common case in practice).
let overlappingKeysSet;
if (Array.isArray(overlappingKeys)) {
overlappingKeysSet = new OrderedSet(overlappingKeys);
} else {
overlappingKeysSet = overlappingKeys;
}
const firstKeyIt = overlappingKeysSet.begin();
let currentKey = firstKeyIt.isAccessible() && firstKeyIt.pointer;
let nRemoved = 0;
while (currentKey) {
const closestGapIt = this._gaps.reverseUpperBound(<GapSetEntry>{ firstKey: currentKey });
if (closestGapIt.isAccessible()) {
const closestGap = closestGapIt.pointer;
if (currentKey <= closestGap.lastKey) {
// currentKey overlaps closestGap: remove the gap
this._gaps.eraseElementByIterator(closestGapIt);
nRemoved += 1;
}
}
const nextGapIt = this._gaps.lowerBound(<GapSetEntry>{ firstKey: currentKey });
if (!nextGapIt.isAccessible()) {
// no more gap: we're done
return nRemoved;
}
const nextGap = nextGapIt.pointer;
// advance to the last key potentially overlapping with nextGap
let currentKeyIt = overlappingKeysSet.reverseLowerBound(nextGap.lastKey);
if (currentKeyIt.isAccessible()) {
currentKey = currentKeyIt.pointer;
if (currentKey >= nextGap.firstKey) {
// currentKey overlaps nextGap: remove the gap
this._gaps.eraseElementByIterator(nextGapIt);
nRemoved += 1;
}
}
// advance to the first key potentially overlapping with another gap
currentKeyIt = overlappingKeysSet.lowerBound(nextGap.lastKey);
currentKey = currentKeyIt.isAccessible() && currentKeyIt.pointer;
}
return nRemoved;
}
/**
* Internal helper to coalesce multiple chained gaps into a single gap.
*
* It is only used to construct lookupGap() return values and
* doesn't modify the GapSet.
*
* NOTE: The function may take a noticeable amount of time and CPU
* to execute if a large number of chained gaps have to be
* coalesced, but it should never take more than a few seconds. In
* most cases it should take less than a millisecond. It regularly
* yields to the nodejs event loop to avoid blocking it during a
* long execution.
*
* @param {GapSetEntry} firstGap - first gap of the chain to coalesce with
* the next ones in the chain
* @return {Promise<GapSetEntry>} - a new coalesced entry, as a Promise
*/
_coalesceGapChain(firstGap: GapSetEntry): Promise<GapSetEntry> {
return new Promise(resolve => {
const coalescedGap: GapSetEntry = Object.assign({}, firstGap);
const coalesceGapChainIteration = () => {
// efficiency trade-off: 100 iterations of log(N) complexity lookups should
// not block the event loop for too long
for (let opCounter = 0; opCounter < 100; ++opCounter) {
const chainedGapIt = this._gaps.find(
<GapSetEntry>{ firstKey: coalescedGap.lastKey });
if (!chainedGapIt.isAccessible()) {
// chain is complete
return resolve(coalescedGap);
}
const chainedGap = chainedGapIt.pointer;
if (chainedGap.firstKey === chainedGap.lastKey) {
// found a single-key gap: chain is complete
return resolve(coalescedGap);
}
coalescedGap.lastKey = chainedGap.lastKey;
coalescedGap.weight += chainedGap.weight;
}
// yield to the event loop before continuing the process
// of coalescing the gap chain
return process.nextTick(coalesceGapChainIteration);
};
coalesceGapChainIteration();
});
}
/**
* Lookup the next gap that overlaps with [minKey, maxKey]. Internally chained
* gaps are coalesced in the response into a single contiguous large gap.
*
* @param {string} minKey - minimum key overlapping with the returned gap
* @param {string} [maxKey] - maximum key overlapping with the returned gap
* @return {Promise<GapSetEntry | null>} - result of the lookup if a gap
* was found, null otherwise, as a Promise
*/
async lookupGap(minKey: string, maxKey?: string): Promise<GapSetEntry | null> {
let firstGap: GapSetEntry | null = null;
const minGapIt = this._gaps.reverseLowerBound(<GapSetEntry>{ firstKey: minKey });
const minGap = minGapIt.isAccessible() && minGapIt.pointer;
if (minGap && minGap.lastKey >= minKey) {
firstGap = minGap;
} else {
const maxGapIt = this._gaps.upperBound(<GapSetEntry>{ firstKey: minKey });
const maxGap = maxGapIt.isAccessible() && maxGapIt.pointer;
if (maxGap && (maxKey === undefined || maxGap.firstKey <= maxKey)) {
firstGap = maxGap;
}
}
if (!firstGap) {
return null;
}
return this._coalesceGapChain(firstGap);
}
/**
* Get the maximum weight setting for individual gaps.
*
* @return {number} - maximum weight of individual gaps
*/
get maxWeight(): number {
return this._maxWeight;
}
/**
* Set the maximum weight setting for individual gaps.
*
* @param {number} gapWeight - maximum weight of individual gaps
*/
set maxWeight(gapWeight: number) {
this._maxWeight = gapWeight;
}
/**
* Get the number of gaps stored in this set.
*
* @return {number} - number of gaps stored in this set
*/
get size(): number {
return this._gaps.size();
}
/**
* Iterate over each gap of the set, ordered by first key
*
* @return {Iterator<GapSetEntry>} - an iterator over all gaps
* Example:
* for (const gap of myGapSet) { ... }
*/
[Symbol.iterator](): Iterator<GapSetEntry> {
return this._gaps[Symbol.iterator]();
}
/**
* Return an array containing all gaps, ordered by first key
*
* NOTE: there is a toArray() method in the OrderedSet implementation
* but it does not scale well and overflows the stack quickly. This is
* why we provide an implementation based on an iterator.
*
* @return {GapSetEntry[]} - an array containing all gaps
*/
toArray(): GapSetEntry[] {
return [...this];
}
}

View File

@ -1,124 +0,0 @@
export enum HeapOrder {
Min = -1,
Max = 1,
}
export enum CompareResult {
LT = -1,
EQ = 0,
GT = 1,
}
export type CompareFunction = (x: any, y: any) => CompareResult;
export class Heap {
size: number;
_maxSize: number;
_order: HeapOrder;
_heap: any[];
_cmpFn: CompareFunction;
constructor(size: number, order: HeapOrder, cmpFn: CompareFunction) {
this.size = 0;
this._maxSize = size;
this._order = order;
this._cmpFn = cmpFn;
this._heap = new Array<any>(this._maxSize);
}
_parent(i: number): number {
return Math.floor((i - 1) / 2);
}
_left(i: number): number {
return Math.floor((2 * i) + 1);
}
_right(i: number): number {
return Math.floor((2 * i) + 2);
}
_shouldSwap(childIdx: number, parentIdx: number): boolean {
return this._cmpFn(this._heap[childIdx], this._heap[parentIdx]) as number === this._order as number;
}
_swap(i: number, j: number) {
const tmp = this._heap[i];
this._heap[i] = this._heap[j];
this._heap[j] = tmp;
}
_heapify(i: number) {
const l = this._left(i);
const r = this._right(i);
let c = i;
if (l < this.size && this._shouldSwap(l, c)) {
c = l;
}
if (r < this.size && this._shouldSwap(r, c)) {
c = r;
}
if (c != i) {
this._swap(c, i);
this._heapify(c);
}
}
add(item: any): any {
if (this.size >= this._maxSize) {
return new Error('Max heap size reached');
}
++this.size;
let c = this.size - 1;
this._heap[c] = item;
while (c > 0) {
if (!this._shouldSwap(c, this._parent(c))) {
return null;
}
this._swap(c, this._parent(c));
c = this._parent(c);
}
return null;
};
remove(): any {
if (this.size <= 0) {
return null;
}
const ret = this._heap[0];
this._heap[0] = this._heap[this.size - 1];
this._heapify(0);
--this.size;
return ret;
};
peek(): any {
if (this.size <= 0) {
return null;
}
return this._heap[0];
};
}
export class MinHeap extends Heap {
constructor(size: number, cmpFn: CompareFunction) {
super(size, HeapOrder.Min, cmpFn);
}
}
export class MaxHeap extends Heap {
constructor(size: number, cmpFn: CompareFunction) {
super(size, HeapOrder.Max, cmpFn);
}
}

View File

@ -1,6 +1,6 @@
'use strict'; // eslint-disable-line strict
const { FILTER_ACCEPT, SKIP_NONE } = require('./tools');
const { FILTER_SKIP, SKIP_NONE } = require('./tools');
// Use a heuristic to amortize the cost of JSON
// serialization/deserialization only on largest metadata where the
@ -92,26 +92,21 @@ class Extension {
* @param {object} entry - a listing entry from metadata
* expected format: { key, value }
* @return {number} - result of filtering the entry:
* FILTER_ACCEPT: entry is accepted and may or not be included
* in the result
* FILTER_SKIP: listing may skip directly (with "gte" param) to
* the key returned by the skipping() method
* FILTER_END: the results are complete, listing can be stopped
* > 0: entry is accepted and included in the result
* = 0: entry is accepted but not included (skipping)
* < 0: entry is not accepted, listing should finish
*/
filter(/* entry: { key, value } */) {
return FILTER_ACCEPT;
filter(entry) {
return entry ? FILTER_SKIP : FILTER_SKIP;
}
/**
* Provides the next key at which the listing task is allowed to skip to.
* This could allow to skip over:
* - a key prefix ending with the delimiter
* - all remaining versions of an object when doing a current
* versions listing in v0 format
* - a cached "gap" of deleted objects when doing a current
* versions listing in v0 format
* Provides the insight into why filter is skipping an entry. This could be
* because it is skipping a range of delimited keys or a range of specific
* version when doing master version listing.
*
* @return {string} - the next key at which the listing task is allowed to skip to
* @return {string} - the insight: a common prefix or a master key,
* or SKIP_NONE if there is no insight
*/
skipping() {
return SKIP_NONE;

View File

@ -1,7 +1,7 @@
'use strict'; // eslint-disable-line strict
const { inc, checkLimit, listingParamsMasterKeysV0ToV1,
FILTER_END, FILTER_ACCEPT, SKIP_NONE } = require('./tools');
FILTER_END, FILTER_ACCEPT } = require('./tools');
const DEFAULT_MAX_KEYS = 1000;
const VSConst = require('../../versioning/constants').VersioningConstants;
const { DbPrefixes, BucketVersioningKeyFormat } = VSConst;
@ -163,7 +163,7 @@ class MultipartUploads {
}
skipping() {
return SKIP_NONE;
return '';
}
/**

View File

@ -2,7 +2,7 @@
const Extension = require('./Extension').default;
const { checkLimit, FILTER_END, FILTER_ACCEPT } = require('./tools');
const { checkLimit, FILTER_END, FILTER_ACCEPT, FILTER_SKIP } = require('./tools');
const DEFAULT_MAX_KEYS = 10000;
/**
@ -91,7 +91,7 @@ class List extends Extension {
* < 0 : listing done
*/
filter(elem) {
// Check if the result array is full
// Check first in case of maxkeys <= 0
if (this.keys >= this.maxKeys) {
return FILTER_END;
}
@ -99,7 +99,7 @@ class List extends Extension {
this.filterKeyStartsWith !== undefined) &&
typeof elem === 'object' &&
!this.customFilter(elem.value)) {
return FILTER_ACCEPT;
return FILTER_SKIP;
}
if (typeof elem === 'object') {
this.res.push({

274
lib/algos/list/delimiter.js Normal file
View File

@ -0,0 +1,274 @@
'use strict'; // eslint-disable-line strict
const Extension = require('./Extension').default;
const { inc, listingParamsMasterKeysV0ToV1,
FILTER_END, FILTER_ACCEPT, FILTER_SKIP } = require('./tools');
const VSConst = require('../../versioning/constants').VersioningConstants;
const { DbPrefixes, BucketVersioningKeyFormat } = VSConst;
/**
* Find the common prefix in the path
*
* @param {String} key - path of the object
* @param {String} delimiter - separator
* @param {Number} delimiterIndex - 'folder' index in the path
* @return {String} - CommonPrefix
*/
function getCommonPrefix(key, delimiter, delimiterIndex) {
return key.substring(0, delimiterIndex + delimiter.length);
}
/**
* Handle object listing with parameters
*
* @prop {String[]} CommonPrefixes - 'folders' defined by the delimiter
* @prop {String[]} Contents - 'files' to list
* @prop {Boolean} IsTruncated - truncated listing flag
* @prop {String|undefined} NextMarker - marker per amazon format
* @prop {Number} keys - count of listed keys
* @prop {String|undefined} delimiter - separator per amazon format
* @prop {String|undefined} prefix - prefix per amazon format
* @prop {Number} maxKeys - number of keys to list
*/
class Delimiter extends Extension {
/**
* Create a new Delimiter instance
* @constructor
* @param {Object} parameters - listing parameters
* @param {String} [parameters.delimiter] - delimiter per amazon
* format
* @param {String} [parameters.prefix] - prefix per amazon
* format
* @param {String} [parameters.marker] - marker per amazon
* format
* @param {Number} [parameters.maxKeys] - number of keys to list
* @param {Boolean} [parameters.v2] - indicates whether v2
* format
* @param {String} [parameters.startAfter] - marker per amazon
* format
* @param {String} [parameters.continuationToken] - obfuscated amazon
* token
* @param {Boolean} [parameters.alphabeticalOrder] - Either the result is
* alphabetically ordered
* or not
* @param {RequestLogger} logger - The logger of the
* request
* @param {String} [vFormat] - versioning key format
*/
constructor(parameters, logger, vFormat) {
super(parameters, logger);
// original listing parameters
this.delimiter = parameters.delimiter;
this.prefix = parameters.prefix;
this.marker = parameters.marker;
this.maxKeys = parameters.maxKeys || 1000;
this.startAfter = parameters.startAfter;
this.continuationToken = parameters.continuationToken;
this.alphabeticalOrder =
typeof parameters.alphabeticalOrder !== 'undefined' ?
parameters.alphabeticalOrder : true;
this.vFormat = vFormat || BucketVersioningKeyFormat.v0;
// results
this.CommonPrefixes = [];
this.Contents = [];
this.IsTruncated = false;
this.NextMarker = parameters.marker;
this.NextContinuationToken =
parameters.continuationToken || parameters.startAfter;
this.startMarker = parameters.v2 ? 'startAfter' : 'marker';
this.continueMarker = parameters.v2 ? 'continuationToken' : 'marker';
this.nextContinueMarker = parameters.v2 ?
'NextContinuationToken' : 'NextMarker';
if (this.delimiter !== undefined &&
this[this.nextContinueMarker] !== undefined &&
this[this.nextContinueMarker].startsWith(this.prefix || '')) {
const nextDelimiterIndex =
this[this.nextContinueMarker].indexOf(this.delimiter,
this.prefix ? this.prefix.length : 0);
this[this.nextContinueMarker] =
this[this.nextContinueMarker].slice(0, nextDelimiterIndex +
this.delimiter.length);
}
Object.assign(this, {
[BucketVersioningKeyFormat.v0]: {
genMDParams: this.genMDParamsV0,
getObjectKey: this.getObjectKeyV0,
skipping: this.skippingV0,
},
[BucketVersioningKeyFormat.v1]: {
genMDParams: this.genMDParamsV1,
getObjectKey: this.getObjectKeyV1,
skipping: this.skippingV1,
},
}[this.vFormat]);
}
genMDParamsV0() {
const params = {};
if (this.prefix) {
params.gte = this.prefix;
params.lt = inc(this.prefix);
}
const startVal = this[this.continueMarker] || this[this.startMarker];
if (startVal) {
if (params.gte && params.gte > startVal) {
return params;
}
delete params.gte;
params.gt = startVal;
}
return params;
}
genMDParamsV1() {
const params = this.genMDParamsV0();
return listingParamsMasterKeysV0ToV1(params);
}
/**
* check if the max keys count has been reached and set the
* final state of the result if it is the case
* @return {Boolean} - indicates if the iteration has to stop
*/
_reachedMaxKeys() {
if (this.keys >= this.maxKeys) {
// In cases of maxKeys <= 0 -> IsTruncated = false
this.IsTruncated = this.maxKeys > 0;
return true;
}
return false;
}
/**
* Add a (key, value) tuple to the listing
* Set the NextMarker to the current key
* Increment the keys counter
* @param {String} key - The key to add
* @param {String} value - The value of the key
* @return {number} - indicates if iteration should continue
*/
addContents(key, value) {
if (this._reachedMaxKeys()) {
return FILTER_END;
}
this.Contents.push({ key, value: this.trimMetadata(value) });
this[this.nextContinueMarker] = key;
++this.keys;
return FILTER_ACCEPT;
}
getObjectKeyV0(obj) {
return obj.key;
}
getObjectKeyV1(obj) {
return obj.key.slice(DbPrefixes.Master.length);
}
/**
* Filter to apply on each iteration, based on:
* - prefix
* - delimiter
* - maxKeys
* The marker is being handled directly by levelDB
* @param {Object} obj - The key and value of the element
* @param {String} obj.key - The key of the element
* @param {String} obj.value - The value of the element
* @return {number} - indicates if iteration should continue
*/
filter(obj) {
const key = this.getObjectKey(obj);
const value = obj.value;
if ((this.prefix && !key.startsWith(this.prefix))
|| (this.alphabeticalOrder
&& typeof this[this.nextContinueMarker] === 'string'
&& key <= this[this.nextContinueMarker])) {
return FILTER_SKIP;
}
if (this.delimiter) {
const baseIndex = this.prefix ? this.prefix.length : 0;
const delimiterIndex = key.indexOf(this.delimiter, baseIndex);
if (delimiterIndex === -1) {
return this.addContents(key, value);
}
return this.addCommonPrefix(key, delimiterIndex);
}
return this.addContents(key, value);
}
/**
* Add a Common Prefix in the list
* @param {String} key - object name
* @param {Number} index - after prefix starting point
* @return {Boolean} - indicates if iteration should continue
*/
addCommonPrefix(key, index) {
const commonPrefix = getCommonPrefix(key, this.delimiter, index);
if (this.CommonPrefixes.indexOf(commonPrefix) === -1
&& this[this.nextContinueMarker] !== commonPrefix) {
if (this._reachedMaxKeys()) {
return FILTER_END;
}
this.CommonPrefixes.push(commonPrefix);
this[this.nextContinueMarker] = commonPrefix;
++this.keys;
return FILTER_ACCEPT;
}
return FILTER_SKIP;
}
/**
* If repd happens to want to skip listing on a bucket in v0
* versioning key format, here is an idea.
*
* @return {string} - the present range (NextMarker) if repd believes
* that it's enough and should move on
*/
skippingV0() {
return this[this.nextContinueMarker];
}
/**
* If repd happens to want to skip listing on a bucket in v1
* versioning key format, here is an idea.
*
* @return {string} - the present range (NextMarker) if repd believes
* that it's enough and should move on
*/
skippingV1() {
return DbPrefixes.Master + this[this.nextContinueMarker];
}
/**
* Return an object containing all mandatory fields to use once the
* iteration is done, doesn't show a NextMarker field if the output
* isn't truncated
* @return {Object} - following amazon format
*/
result() {
/* NextMarker is only provided when delimiter is used.
* specified in v1 listing documentation
* http://docs.aws.amazon.com/AmazonS3/latest/API/RESTBucketGET.html
*/
const result = {
CommonPrefixes: this.CommonPrefixes,
Contents: this.Contents,
IsTruncated: this.IsTruncated,
Delimiter: this.delimiter,
};
if (this.parameters.v2) {
result.NextContinuationToken = this.IsTruncated
? this.NextContinuationToken : undefined;
} else {
result.NextMarker = (this.IsTruncated && this.delimiter)
? this.NextMarker : undefined;
}
return result;
}
}
module.exports = { Delimiter };

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@ -1,356 +0,0 @@
'use strict'; // eslint-disable-line strict
const Extension = require('./Extension').default;
const { inc, listingParamsMasterKeysV0ToV1,
FILTER_END, FILTER_ACCEPT, FILTER_SKIP, SKIP_NONE } = require('./tools');
const VSConst = require('../../versioning/constants').VersioningConstants;
const { DbPrefixes, BucketVersioningKeyFormat } = VSConst;
export interface FilterState {
id: number,
};
export interface FilterReturnValue {
FILTER_ACCEPT,
FILTER_SKIP,
FILTER_END,
};
export const enum DelimiterFilterStateId {
NotSkipping = 1,
SkippingPrefix = 2,
};
export interface DelimiterFilterState_NotSkipping extends FilterState {
id: DelimiterFilterStateId.NotSkipping,
};
export interface DelimiterFilterState_SkippingPrefix extends FilterState {
id: DelimiterFilterStateId.SkippingPrefix,
prefix: string;
};
type KeyHandler = (key: string, value: string) => FilterReturnValue;
export type ResultObject = {
CommonPrefixes: string[];
Contents: {
key: string;
value: string;
}[];
IsTruncated: boolean;
Delimiter ?: string;
NextMarker ?: string;
NextContinuationToken ?: string;
};
/**
* Handle object listing with parameters
*
* @prop {String[]} CommonPrefixes - 'folders' defined by the delimiter
* @prop {String[]} Contents - 'files' to list
* @prop {Boolean} IsTruncated - truncated listing flag
* @prop {String|undefined} NextMarker - marker per amazon format
* @prop {Number} keys - count of listed keys
* @prop {String|undefined} delimiter - separator per amazon format
* @prop {String|undefined} prefix - prefix per amazon format
* @prop {Number} maxKeys - number of keys to list
*/
export class Delimiter extends Extension {
state: FilterState;
keyHandlers: { [id: number]: KeyHandler };
/**
* Create a new Delimiter instance
* @constructor
* @param {Object} parameters - listing parameters
* @param {String} [parameters.delimiter] - delimiter per amazon
* format
* @param {String} [parameters.prefix] - prefix per amazon
* format
* @param {String} [parameters.marker] - marker per amazon
* format
* @param {Number} [parameters.maxKeys] - number of keys to list
* @param {Boolean} [parameters.v2] - indicates whether v2
* format
* @param {String} [parameters.startAfter] - marker per amazon
* format
* @param {String} [parameters.continuationToken] - obfuscated amazon
* token
* @param {RequestLogger} logger - The logger of the
* request
* @param {String} [vFormat] - versioning key format
*/
constructor(parameters, logger, vFormat) {
super(parameters, logger);
// original listing parameters
this.delimiter = parameters.delimiter;
this.prefix = parameters.prefix;
this.maxKeys = parameters.maxKeys || 1000;
if (parameters.v2) {
this.marker = parameters.continuationToken || parameters.startAfter;
} else {
this.marker = parameters.marker;
}
this.nextMarker = this.marker;
this.vFormat = vFormat || BucketVersioningKeyFormat.v0;
// results
this.CommonPrefixes = [];
this.Contents = [];
this.IsTruncated = false;
this.keyHandlers = {};
Object.assign(this, {
[BucketVersioningKeyFormat.v0]: {
genMDParams: this.genMDParamsV0,
getObjectKey: this.getObjectKeyV0,
skipping: this.skippingV0,
},
[BucketVersioningKeyFormat.v1]: {
genMDParams: this.genMDParamsV1,
getObjectKey: this.getObjectKeyV1,
skipping: this.skippingV1,
},
}[this.vFormat]);
// if there is a delimiter, we may skip ranges by prefix,
// hence using the NotSkippingPrefix flavor that checks the
// subprefix up to the delimiter for the NotSkipping state
if (this.delimiter) {
this.setKeyHandler(
DelimiterFilterStateId.NotSkipping,
this.keyHandler_NotSkippingPrefix.bind(this));
} else {
// listing without a delimiter never has to skip over any
// prefix -> use NeverSkipping flavor for the NotSkipping
// state
this.setKeyHandler(
DelimiterFilterStateId.NotSkipping,
this.keyHandler_NeverSkipping.bind(this));
}
this.setKeyHandler(
DelimiterFilterStateId.SkippingPrefix,
this.keyHandler_SkippingPrefix.bind(this));
this.state = <DelimiterFilterState_NotSkipping> {
id: DelimiterFilterStateId.NotSkipping,
};
}
genMDParamsV0() {
const params: { gt ?: string, gte ?: string, lt ?: string } = {};
if (this.prefix) {
params.gte = this.prefix;
params.lt = inc(this.prefix);
}
if (this.marker && this.delimiter) {
const commonPrefix = this.getCommonPrefix(this.marker);
if (commonPrefix) {
const afterPrefix = inc(commonPrefix);
if (!params.gte || afterPrefix > params.gte) {
params.gte = afterPrefix;
}
}
}
if (this.marker && (!params.gte || this.marker >= params.gte)) {
delete params.gte;
params.gt = this.marker;
}
return params;
}
genMDParamsV1() {
const params = this.genMDParamsV0();
return listingParamsMasterKeysV0ToV1(params);
}
/**
* check if the max keys count has been reached and set the
* final state of the result if it is the case
* @return {Boolean} - indicates if the iteration has to stop
*/
_reachedMaxKeys(): boolean {
if (this.keys >= this.maxKeys) {
// In cases of maxKeys <= 0 -> IsTruncated = false
this.IsTruncated = this.maxKeys > 0;
return true;
}
return false;
}
/**
* Add a (key, value) tuple to the listing
* Set the NextMarker to the current key
* Increment the keys counter
* @param {String} key - The key to add
* @param {String} value - The value of the key
* @return {number} - indicates if iteration should continue
*/
addContents(key: string, value: string): void {
this.Contents.push({ key, value: this.trimMetadata(value) });
++this.keys;
this.nextMarker = key;
}
getCommonPrefix(key: string): string | undefined {
if (!this.delimiter) {
return undefined;
}
const baseIndex = this.prefix ? this.prefix.length : 0;
const delimiterIndex = key.indexOf(this.delimiter, baseIndex);
if (delimiterIndex === -1) {
return undefined;
}
return key.substring(0, delimiterIndex + this.delimiter.length);
}
/**
* Add a Common Prefix in the list
* @param {String} commonPrefix - common prefix to add
* @param {String} key - full key starting with commonPrefix
* @return {Boolean} - indicates if iteration should continue
*/
addCommonPrefix(commonPrefix: string, key: string): void {
// add the new prefix to the list
this.CommonPrefixes.push(commonPrefix);
++this.keys;
this.nextMarker = commonPrefix;
}
addCommonPrefixOrContents(key: string, value: string): string | undefined {
// add the subprefix to the common prefixes if the key has the delimiter
const commonPrefix = this.getCommonPrefix(key);
if (commonPrefix) {
this.addCommonPrefix(commonPrefix, key);
return commonPrefix;
}
this.addContents(key, value);
return undefined;
}
getObjectKeyV0(obj: { key: string }): string {
return obj.key;
}
getObjectKeyV1(obj: { key: string }): string {
return obj.key.slice(DbPrefixes.Master.length);
}
/**
* Filter to apply on each iteration, based on:
* - prefix
* - delimiter
* - maxKeys
* The marker is being handled directly by levelDB
* @param {Object} obj - The key and value of the element
* @param {String} obj.key - The key of the element
* @param {String} obj.value - The value of the element
* @return {number} - indicates if iteration should continue
*/
filter(obj: { key: string, value: string }): FilterReturnValue {
const key = this.getObjectKey(obj);
const value = obj.value;
return this.handleKey(key, value);
}
setState(state: FilterState): void {
this.state = state;
}
setKeyHandler(stateId: number, keyHandler: KeyHandler): void {
this.keyHandlers[stateId] = keyHandler;
}
handleKey(key: string, value: string): FilterReturnValue {
return this.keyHandlers[this.state.id](key, value);
}
keyHandler_NeverSkipping(key: string, value: string): FilterReturnValue {
if (this._reachedMaxKeys()) {
return FILTER_END;
}
this.addContents(key, value);
return FILTER_ACCEPT;
}
keyHandler_NotSkippingPrefix(key: string, value: string): FilterReturnValue {
if (this._reachedMaxKeys()) {
return FILTER_END;
}
const commonPrefix = this.addCommonPrefixOrContents(key, value);
if (commonPrefix) {
// transition into SkippingPrefix state to skip all following keys
// while they start with the same prefix
this.setState(<DelimiterFilterState_SkippingPrefix> {
id: DelimiterFilterStateId.SkippingPrefix,
prefix: commonPrefix,
});
}
return FILTER_ACCEPT;
}
keyHandler_SkippingPrefix(key: string, value: string): FilterReturnValue {
const { prefix } = <DelimiterFilterState_SkippingPrefix> this.state;
if (key.startsWith(prefix)) {
return FILTER_SKIP;
}
this.setState(<DelimiterFilterState_NotSkipping> {
id: DelimiterFilterStateId.NotSkipping,
});
return this.handleKey(key, value);
}
skippingBase(): string | undefined {
switch (this.state.id) {
case DelimiterFilterStateId.SkippingPrefix:
const { prefix } = <DelimiterFilterState_SkippingPrefix> this.state;
return inc(prefix);
default:
return SKIP_NONE;
}
}
skippingV0() {
return this.skippingBase();
}
skippingV1() {
const skipTo = this.skippingBase();
if (skipTo === SKIP_NONE) {
return SKIP_NONE;
}
return DbPrefixes.Master + skipTo;
}
/**
* Return an object containing all mandatory fields to use once the
* iteration is done, doesn't show a NextMarker field if the output
* isn't truncated
* @return {Object} - following amazon format
*/
result(): ResultObject {
/* NextMarker is only provided when delimiter is used.
* specified in v1 listing documentation
* http://docs.aws.amazon.com/AmazonS3/latest/API/RESTBucketGET.html
*/
const result: ResultObject = {
CommonPrefixes: this.CommonPrefixes,
Contents: this.Contents,
IsTruncated: this.IsTruncated,
Delimiter: this.delimiter,
};
if (this.parameters.v2) {
result.NextContinuationToken = this.IsTruncated
? this.nextMarker : undefined;
} else {
result.NextMarker = (this.IsTruncated && this.delimiter)
? this.nextMarker : undefined;
}
return result;
}
}

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const { DelimiterMaster } = require('./delimiterMaster');
const { FILTER_ACCEPT, FILTER_END } = require('./tools');
type ResultObject = {
Contents: {
key: string;
value: string;
}[];
IsTruncated: boolean;
NextMarker ?: string;
};
/**
* Handle object listing with parameters. This extends the base class DelimiterMaster
* to return the master/current versions.
*/
class DelimiterCurrent extends DelimiterMaster {
/**
* Delimiter listing of current versions.
* @param {Object} parameters - listing parameters
* @param {String} parameters.beforeDate - limit the response to keys older than beforeDate
* @param {String} parameters.excludedDataStoreName - excluded datatore name
* @param {Number} parameters.maxScannedLifecycleListingEntries - max number of entries to be scanned
* @param {RequestLogger} logger - The logger of the request
* @param {String} [vFormat] - versioning key format
*/
constructor(parameters, logger, vFormat) {
super(parameters, logger, vFormat);
this.beforeDate = parameters.beforeDate;
this.excludedDataStoreName = parameters.excludedDataStoreName;
this.maxScannedLifecycleListingEntries = parameters.maxScannedLifecycleListingEntries;
this.scannedKeys = 0;
}
genMDParamsV0() {
const params = super.genMDParamsV0();
// lastModified and dataStoreName parameters are used by metadata that enables built-in filtering,
// a feature currently exclusive to MongoDB
if (this.beforeDate) {
params.lastModified = {
lt: this.beforeDate,
};
}
if (this.excludedDataStoreName) {
params.dataStoreName = {
ne: this.excludedDataStoreName,
}
}
return params;
}
/**
* Parses the stringified entry's value.
* @param s - sringified value
* @return - undefined if parsing fails, otherwise it contains the parsed value.
*/
_parse(s) {
let p;
try {
p = JSON.parse(s);
} catch (e: any) {
this.logger.warn(
'Could not parse Object Metadata while listing',
{ err: e.toString() });
}
return p;
}
/**
* check if the max keys count has been reached and set the
* final state of the result if it is the case
*
* specialized implementation on DelimiterCurrent to also check
* the number of scanned keys
*
* @return {Boolean} - indicates if the iteration has to stop
*/
_reachedMaxKeys(): boolean {
if (this.maxScannedLifecycleListingEntries && this.scannedKeys >= this.maxScannedLifecycleListingEntries) {
this.IsTruncated = true;
this.logger.info('listing stopped due to reaching the maximum scanned entries limit',
{
maxScannedLifecycleListingEntries: this.maxScannedLifecycleListingEntries,
scannedKeys: this.scannedKeys,
});
return true;
}
return super._reachedMaxKeys();
}
addContents(key, value) {
++this.scannedKeys;
const parsedValue = this._parse(value);
// if parsing fails, skip the key.
if (parsedValue) {
const lastModified = parsedValue['last-modified'];
const dataStoreName = parsedValue.dataStoreName;
// We then check if the current version is older than the "beforeDate" and
// "excludedDataStoreName" is not specified or if specified and the data store name is different.
if ((!this.beforeDate || (lastModified && lastModified < this.beforeDate)) &&
(!this.excludedDataStoreName || dataStoreName !== this.excludedDataStoreName)) {
super.addContents(key, value);
}
// In the event of a timeout occurring before any content is added,
// NextMarker is updated even if the object is not eligible.
// It minimizes the amount of data that the client needs to re-process if the request times out.
this.nextMarker = key;
}
}
result(): object {
const result: ResultObject = {
Contents: this.Contents,
IsTruncated: this.IsTruncated,
};
if (this.IsTruncated) {
result.NextMarker = this.nextMarker;
}
return result;
}
}
module.exports = { DelimiterCurrent };

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'use strict'; // eslint-disable-line strict
const Delimiter = require('./delimiter').Delimiter;
const Version = require('../../versioning/Version').Version;
const VSConst = require('../../versioning/constants').VersioningConstants;
const { BucketVersioningKeyFormat } = VSConst;
const { FILTER_ACCEPT, FILTER_SKIP, SKIP_NONE } = require('./tools');
const VID_SEP = VSConst.VersionId.Separator;
const { DbPrefixes } = VSConst;
/**
* Handle object listing with parameters. This extends the base class Delimiter
* to return the raw master versions of existing objects.
*/
class DelimiterMaster extends Delimiter {
/**
* Delimiter listing of master versions.
* @param {Object} parameters - listing parameters
* @param {String} parameters.delimiter - delimiter per amazon format
* @param {String} parameters.prefix - prefix per amazon format
* @param {String} parameters.marker - marker per amazon format
* @param {Number} parameters.maxKeys - number of keys to list
* @param {Boolean} parameters.v2 - indicates whether v2 format
* @param {String} parameters.startAfter - marker per amazon v2 format
* @param {String} parameters.continuationToken - obfuscated amazon token
* @param {RequestLogger} logger - The logger of the request
* @param {String} [vFormat] - versioning key format
*/
constructor(parameters, logger, vFormat) {
super(parameters, logger, vFormat);
// non-PHD master version or a version whose master is a PHD version
this.prvKey = undefined;
this.prvPHDKey = undefined;
this.inReplayPrefix = false;
Object.assign(this, {
[BucketVersioningKeyFormat.v0]: {
filter: this.filterV0,
skipping: this.skippingV0,
},
[BucketVersioningKeyFormat.v1]: {
filter: this.filterV1,
skipping: this.skippingV1,
},
}[this.vFormat]);
}
/**
* Filter to apply on each iteration for buckets in v0 format,
* based on:
* - prefix
* - delimiter
* - maxKeys
* The marker is being handled directly by levelDB
* @param {Object} obj - The key and value of the element
* @param {String} obj.key - The key of the element
* @param {String} obj.value - The value of the element
* @return {number} - indicates if iteration should continue
*/
filterV0(obj) {
let key = obj.key;
const value = obj.value;
if (key.startsWith(DbPrefixes.Replay)) {
this.inReplayPrefix = true;
return FILTER_SKIP;
}
this.inReplayPrefix = false;
/* Skip keys not starting with the prefix or not alphabetically
* ordered. */
if ((this.prefix && !key.startsWith(this.prefix))
|| (typeof this[this.nextContinueMarker] === 'string' &&
key <= this[this.nextContinueMarker])) {
return FILTER_SKIP;
}
/* Skip version keys (<key><versionIdSeparator><version>) if we already
* have a master version. */
const versionIdIndex = key.indexOf(VID_SEP);
if (versionIdIndex >= 0) {
key = key.slice(0, versionIdIndex);
/* - key === this.prvKey is triggered when a master version has
* been accepted for this key,
* - key === this.NextMarker or this.NextContinueToken is triggered
* when a listing page ends on an accepted obj and the next page
* starts with a version of this object.
* In that case prvKey is default set to undefined
* in the constructor and comparing to NextMarker is the only
* way to know we should not accept this version. This test is
* not redundant with the one at the beginning of this function,
* we are comparing here the key without the version suffix,
* - key startsWith the previous NextMarker happens because we set
* NextMarker to the common prefix instead of the whole key
* value. (TODO: remove this test once ZENKO-1048 is fixed)
* */
if (key === this.prvKey || key === this[this.nextContinueMarker] ||
(this.delimiter &&
key.startsWith(this[this.nextContinueMarker]))) {
/* master version already filtered */
return FILTER_SKIP;
}
}
if (Version.isPHD(value)) {
/* master version is a PHD version, we want to wait for the next
* one:
* - Set the prvKey to undefined to not skip the next version,
* - return accept to avoid users to skip the next values in range
* (skip scan mechanism in metadata backend like Metadata or
* MongoClient). */
this.prvKey = undefined;
this.prvPHDKey = key;
return FILTER_ACCEPT;
}
if (Version.isDeleteMarker(value)) {
/* This entry is a deleteMarker which has not been filtered by the
* version test. Either :
* - it is a deleteMarker on the master version, we want to SKIP
* all the following entries with this key (no master version),
* - or a deleteMarker following a PHD (setting prvKey to undefined
* when an entry is a PHD avoids the skip on version for the
* next entry). In that case we expect the master version to
* follow. */
if (key === this.prvPHDKey) {
this.prvKey = undefined;
return FILTER_ACCEPT;
}
this.prvKey = key;
return FILTER_SKIP;
}
this.prvKey = key;
if (this.delimiter) {
// check if the key has the delimiter
const baseIndex = this.prefix ? this.prefix.length : 0;
const delimiterIndex = key.indexOf(this.delimiter, baseIndex);
if (delimiterIndex >= 0) {
// try to add the prefix to the list
return this.addCommonPrefix(key, delimiterIndex);
}
}
return this.addContents(key, value);
}
/**
* Filter to apply on each iteration for buckets in v1 format,
* based on:
* - prefix
* - delimiter
* - maxKeys
* The marker is being handled directly by levelDB
* @param {Object} obj - The key and value of the element
* @param {String} obj.key - The key of the element
* @param {String} obj.value - The value of the element
* @return {number} - indicates if iteration should continue
*/
filterV1(obj) {
// Filtering master keys in v1 is simply listing the master
// keys, as the state of version keys do not change the
// result, so we can use Delimiter method directly.
return super.filter(obj);
}
skippingBase() {
if (this[this.nextContinueMarker]) {
// next marker or next continuation token:
// - foo/ : skipping foo/
// - foo : skipping foo.
const index = this[this.nextContinueMarker].
lastIndexOf(this.delimiter);
if (index === this[this.nextContinueMarker].length - 1) {
return this[this.nextContinueMarker];
}
return this[this.nextContinueMarker] + VID_SEP;
}
return SKIP_NONE;
}
skippingV0() {
if (this.inReplayPrefix) {
return DbPrefixes.Replay;
}
return this.skippingBase();
}
skippingV1() {
const skipTo = this.skippingBase();
if (skipTo === SKIP_NONE) {
return SKIP_NONE;
}
return DbPrefixes.Master + skipTo;
}
}
module.exports = { DelimiterMaster };

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@ -1,620 +0,0 @@
import {
Delimiter,
FilterState,
FilterReturnValue,
DelimiterFilterStateId,
DelimiterFilterState_NotSkipping,
DelimiterFilterState_SkippingPrefix,
ResultObject,
} from './delimiter';
const Version = require('../../versioning/Version').Version;
const VSConst = require('../../versioning/constants').VersioningConstants;
const { BucketVersioningKeyFormat } = VSConst;
const { FILTER_ACCEPT, FILTER_SKIP, FILTER_END, SKIP_NONE, inc } = require('./tools');
import { GapSetEntry } from '../cache/GapSet';
import { GapCacheInterface } from '../cache/GapCache';
const VID_SEP = VSConst.VersionId.Separator;
const { DbPrefixes } = VSConst;
export const enum DelimiterMasterFilterStateId {
SkippingVersionsV0 = 101,
WaitVersionAfterPHDV0 = 102,
SkippingGapV0 = 103,
};
interface DelimiterMasterFilterState_SkippingVersionsV0 extends FilterState {
id: DelimiterMasterFilterStateId.SkippingVersionsV0,
masterKey: string,
};
interface DelimiterMasterFilterState_WaitVersionAfterPHDV0 extends FilterState {
id: DelimiterMasterFilterStateId.WaitVersionAfterPHDV0,
masterKey: string,
};
interface DelimiterMasterFilterState_SkippingGapV0 extends FilterState {
id: DelimiterMasterFilterStateId.SkippingGapV0,
};
export const enum GapCachingState {
NoGapCache = 0, // there is no gap cache
UnknownGap = 1, // waiting for a cache lookup
GapLookupInProgress = 2, // asynchronous gap lookup in progress
GapCached = 3, // an upcoming or already skippable gap is cached
NoMoreGap = 4, // the cache doesn't have any more gaps inside the listed range
};
type GapCachingInfo_NoGapCache = {
state: GapCachingState.NoGapCache;
};
type GapCachingInfo_NoCachedGap = {
state: GapCachingState.UnknownGap
| GapCachingState.GapLookupInProgress
gapCache: GapCacheInterface;
};
type GapCachingInfo_GapCached = {
state: GapCachingState.GapCached;
gapCache: GapCacheInterface;
gapCached: GapSetEntry;
};
type GapCachingInfo_NoMoreGap = {
state: GapCachingState.NoMoreGap;
};
type GapCachingInfo = GapCachingInfo_NoGapCache
| GapCachingInfo_NoCachedGap
| GapCachingInfo_GapCached
| GapCachingInfo_NoMoreGap;
export const enum GapBuildingState {
Disabled = 0, // no gap cache or no gap building needed (e.g. in V1 versioning format)
NotBuilding = 1, // not currently building a gap (i.e. not listing within a gap)
Building = 2, // currently building a gap (i.e. listing within a gap)
Expired = 3, // not allowed to build due to exposure delay timeout
};
type GapBuildingInfo_NothingToBuild = {
state: GapBuildingState.Disabled | GapBuildingState.Expired;
};
type GapBuildingParams = {
/**
* minimum weight for a gap to be created in the cache
*/
minGapWeight: number;
/**
* trigger a cache setGap() call every N skippable keys
*/
triggerSaveGapWeight: number;
/**
* timestamp to assess whether we're still inside the validity period to
* be allowed to build gaps
*/
initTimestamp: number;
};
type GapBuildingInfo_NotBuilding = {
state: GapBuildingState.NotBuilding;
gapCache: GapCacheInterface;
params: GapBuildingParams;
};
type GapBuildingInfo_Building = {
state: GapBuildingState.Building;
gapCache: GapCacheInterface;
params: GapBuildingParams;
/**
* Gap currently being created
*/
gap: GapSetEntry;
/**
* total current weight of the gap being created
*/
gapWeight: number;
};
type GapBuildingInfo = GapBuildingInfo_NothingToBuild
| GapBuildingInfo_NotBuilding
| GapBuildingInfo_Building;
/**
* Handle object listing with parameters. This extends the base class Delimiter
* to return the raw master versions of existing objects.
*/
export class DelimiterMaster extends Delimiter {
_gapCaching: GapCachingInfo;
_gapBuilding: GapBuildingInfo;
_refreshedBuildingParams: GapBuildingParams | null;
/**
* Delimiter listing of master versions.
* @param {Object} parameters - listing parameters
* @param {String} [parameters.delimiter] - delimiter per amazon format
* @param {String} [parameters.prefix] - prefix per amazon format
* @param {String} [parameters.marker] - marker per amazon format
* @param {Number} [parameters.maxKeys] - number of keys to list
* @param {Boolean} [parameters.v2] - indicates whether v2 format
* @param {String} [parameters.startAfter] - marker per amazon v2 format
* @param {String} [parameters.continuationToken] - obfuscated amazon token
* @param {RequestLogger} logger - The logger of the request
* @param {String} [vFormat="v0"] - versioning key format
*/
constructor(parameters, logger, vFormat?: string) {
super(parameters, logger, vFormat);
if (this.vFormat === BucketVersioningKeyFormat.v0) {
// override Delimiter's implementation of NotSkipping for
// DelimiterMaster logic (skipping versions and special
// handling of delete markers and PHDs)
this.setKeyHandler(
DelimiterFilterStateId.NotSkipping,
this.keyHandler_NotSkippingPrefixNorVersionsV0.bind(this));
// add extra state handlers specific to DelimiterMaster with v0 format
this.setKeyHandler(
DelimiterMasterFilterStateId.SkippingVersionsV0,
this.keyHandler_SkippingVersionsV0.bind(this));
this.setKeyHandler(
DelimiterMasterFilterStateId.WaitVersionAfterPHDV0,
this.keyHandler_WaitVersionAfterPHDV0.bind(this));
this.setKeyHandler(
DelimiterMasterFilterStateId.SkippingGapV0,
this.keyHandler_SkippingGapV0.bind(this));
if (this.marker) {
// distinct initial state to include some special logic
// before the first master key is found that does not have
// to be checked afterwards
this.state = <DelimiterMasterFilterState_SkippingVersionsV0> {
id: DelimiterMasterFilterStateId.SkippingVersionsV0,
masterKey: this.marker,
};
} else {
this.state = <DelimiterFilterState_NotSkipping> {
id: DelimiterFilterStateId.NotSkipping,
};
}
} else {
// save base implementation of the `NotSkipping` state in
// Delimiter before overriding it with ours, to be able to call it from there
this.keyHandler_NotSkipping_Delimiter = this.keyHandlers[DelimiterFilterStateId.NotSkipping];
this.setKeyHandler(
DelimiterFilterStateId.NotSkipping,
this.keyHandler_NotSkippingPrefixNorVersionsV1.bind(this));
}
// in v1, we can directly use Delimiter's implementation,
// which is already set to the proper state
// default initialization of the gap cache and building states, can be
// set by refreshGapCache()
this._gapCaching = {
state: GapCachingState.NoGapCache,
};
this._gapBuilding = {
state: GapBuildingState.Disabled,
};
this._refreshedBuildingParams = null;
}
/**
* Get the validity period left before a refresh of the gap cache is needed
* to continue building new gaps.
*
* @return {number|null} one of:
* - the remaining time in milliseconds in which gaps can be added to the
* cache before a call to refreshGapCache() is required
* - or 0 if there is no time left and a call to refreshGapCache() is required
* to resume caching gaps
* - or null if refreshing the cache is never needed (because the gap cache
* is either not available or not used)
*/
getGapBuildingValidityPeriodMs(): number | null {
let gapBuilding;
switch (this._gapBuilding.state) {
case GapBuildingState.Disabled:
return null;
case GapBuildingState.Expired:
return 0;
case GapBuildingState.NotBuilding:
gapBuilding = <GapBuildingInfo_NotBuilding> this._gapBuilding;
break;
case GapBuildingState.Building:
gapBuilding = <GapBuildingInfo_Building> this._gapBuilding;
break;
}
const { gapCache, params } = gapBuilding;
const elapsedTime = Date.now() - params.initTimestamp;
return Math.max(gapCache.exposureDelayMs - elapsedTime, 0);
}
/**
* Refresh the gaps caching logic (gaps are series of current delete markers
* in V0 bucket metadata format). It has two effects:
*
* - starts exposing existing and future gaps from the cache to efficiently
* skip over series of current delete markers that have been seen and cached
* earlier
*
* - enables building and caching new gaps (or extend existing ones), for a
* limited time period defined by the `gapCacheProxy.exposureDelayMs` value
* in milliseconds. To refresh the validity period and resume building and
* caching new gaps, one must restart a new listing from the database (starting
* at the current listing key, included), then call refreshGapCache() again.
*
* @param {GapCacheInterface} gapCacheProxy - API proxy to the gaps cache
* (the proxy should handle prefixing object keys with the bucket name)
* @param {number} [minGapWeight=100] - minimum weight of a gap for it to be
* added in the cache
* @param {number} [triggerSaveGapWeight] - cumulative weight to wait for
* before saving the current building gap. Cannot be greater than
* `gapCacheProxy.maxGapWeight` (the value is thresholded to `maxGapWeight`
* otherwise). Defaults to `gapCacheProxy.maxGapWeight / 2`.
* @return {undefined}
*/
refreshGapCache(
gapCacheProxy: GapCacheInterface,
minGapWeight?: number,
triggerSaveGapWeight?: number
): void {
if (this.vFormat !== BucketVersioningKeyFormat.v0) {
return;
}
if (this._gapCaching.state === GapCachingState.NoGapCache) {
this._gapCaching = {
state: GapCachingState.UnknownGap,
gapCache: gapCacheProxy,
};
}
const refreshedBuildingParams: GapBuildingParams = {
minGapWeight: minGapWeight || 100,
triggerSaveGapWeight: triggerSaveGapWeight
|| Math.trunc(gapCacheProxy.maxGapWeight / 2),
initTimestamp: Date.now(),
};
if (this._gapBuilding.state === GapBuildingState.Building) {
// refreshed params will be applied as soon as the current building gap is saved
this._refreshedBuildingParams = refreshedBuildingParams;
} else {
this._gapBuilding = {
state: GapBuildingState.NotBuilding,
gapCache: gapCacheProxy,
params: refreshedBuildingParams,
};
}
}
/**
* Trigger a lookup of the closest upcoming or already skippable gap.
*
* @param {string} fromKey - lookup a gap not before 'fromKey'
* @return {undefined} - the lookup is asynchronous and its
* response is handled inside this function
*/
_triggerGapLookup(gapCaching: GapCachingInfo_NoCachedGap, fromKey: string): void {
this._gapCaching = {
state: GapCachingState.GapLookupInProgress,
gapCache: gapCaching.gapCache,
};
const maxKey = this.prefix ? inc(this.prefix) : undefined;
gapCaching.gapCache.lookupGap(fromKey, maxKey).then(_gap => {
const gap = <GapSetEntry | null> _gap;
if (gap) {
this._gapCaching = {
state: GapCachingState.GapCached,
gapCache: gapCaching.gapCache,
gapCached: gap,
};
} else {
this._gapCaching = {
state: GapCachingState.NoMoreGap,
};
}
});
}
_checkGapOnMasterDeleteMarker(key: string): FilterReturnValue {
switch (this._gapBuilding.state) {
case GapBuildingState.Disabled:
case GapBuildingState.Expired:
break;
case GapBuildingState.NotBuilding:
this._createBuildingGap(key, 1);
break;
case GapBuildingState.Building:
this._updateBuildingGap(key);
break;
}
if (this._gapCaching.state === GapCachingState.GapCached) {
const { gapCached } = this._gapCaching;
if (key >= gapCached.firstKey) {
if (key <= gapCached.lastKey) {
// we are inside the last looked up cached gap: transition to
// 'SkippingGapV0' state
this.setState(<DelimiterMasterFilterState_SkippingGapV0> {
id: DelimiterMasterFilterStateId.SkippingGapV0,
});
// cut the current gap before skipping, it will be merged or
// chained with the existing one (depending on its weight)
if (this._gapBuilding.state === GapBuildingState.Building) {
// substract 1 from the weight because we are going to chain this gap,
// which has an overlap of one key.
this._gapBuilding.gap.weight -= 1;
this._cutBuildingGap();
}
return FILTER_SKIP;
}
// as we are past the cached gap, we will need another lookup
this._gapCaching = {
state: GapCachingState.UnknownGap,
gapCache: this._gapCaching.gapCache,
};
}
}
if (this._gapCaching.state === GapCachingState.UnknownGap) {
this._triggerGapLookup(this._gapCaching, key);
}
return FILTER_ACCEPT;
}
filter_onNewMasterKeyV0(key: string, value: string): FilterReturnValue {
// if this master key is a delete marker, accept it without
// adding the version to the contents
if (Version.isDeleteMarker(value)) {
// update the state to start skipping versions of the new master key
this.setState(<DelimiterMasterFilterState_SkippingVersionsV0> {
id: DelimiterMasterFilterStateId.SkippingVersionsV0,
masterKey: key,
});
return this._checkGapOnMasterDeleteMarker(key);
}
if (Version.isPHD(value)) {
// master version is a PHD version: wait for the first
// following version that will be considered as the actual
// master key
this.setState(<DelimiterMasterFilterState_WaitVersionAfterPHDV0> {
id: DelimiterMasterFilterStateId.WaitVersionAfterPHDV0,
masterKey: key,
});
return FILTER_ACCEPT;
}
// cut the current gap as soon as a non-deleted entry is seen
this._cutBuildingGap();
if (key.startsWith(DbPrefixes.Replay)) {
// skip internal replay prefix entirely
this.setState(<DelimiterFilterState_SkippingPrefix> {
id: DelimiterFilterStateId.SkippingPrefix,
prefix: DbPrefixes.Replay,
});
return FILTER_SKIP;
}
if (this._reachedMaxKeys()) {
return FILTER_END;
}
const commonPrefix = this.addCommonPrefixOrContents(key, value);
if (commonPrefix) {
// transition into SkippingPrefix state to skip all following keys
// while they start with the same prefix
this.setState(<DelimiterFilterState_SkippingPrefix> {
id: DelimiterFilterStateId.SkippingPrefix,
prefix: commonPrefix,
});
return FILTER_ACCEPT;
}
// update the state to start skipping versions of the new master key
this.setState(<DelimiterMasterFilterState_SkippingVersionsV0> {
id: DelimiterMasterFilterStateId.SkippingVersionsV0,
masterKey: key,
});
return FILTER_ACCEPT;
}
keyHandler_NotSkippingPrefixNorVersionsV0(key: string, value: string): FilterReturnValue {
return this.filter_onNewMasterKeyV0(key, value);
}
filter_onNewMasterKeyV1(key: string, value: string): FilterReturnValue {
// if this master key is a delete marker, accept it without
// adding the version to the contents
if (Version.isDeleteMarker(value)) {
return FILTER_ACCEPT;
}
// use base Delimiter's implementation
return this.keyHandler_NotSkipping_Delimiter(key, value);
}
keyHandler_NotSkippingPrefixNorVersionsV1(key: string, value: string): FilterReturnValue {
return this.filter_onNewMasterKeyV1(key, value);
}
keyHandler_SkippingVersionsV0(key: string, value: string): FilterReturnValue {
/* In the SkippingVersionsV0 state, skip all version keys
* (<key><versionIdSeparator><version>) */
const versionIdIndex = key.indexOf(VID_SEP);
if (versionIdIndex !== -1) {
// version keys count in the building gap weight because they must
// also be listed until skipped
if (this._gapBuilding.state === GapBuildingState.Building) {
this._updateBuildingGap(key);
}
return FILTER_SKIP;
}
return this.filter_onNewMasterKeyV0(key, value);
}
keyHandler_WaitVersionAfterPHDV0(key: string, value: string): FilterReturnValue {
// After a PHD key is encountered, the next version key of the
// same object if it exists is the new master key, hence
// consider it as such and call 'onNewMasterKeyV0' (the test
// 'masterKey == phdKey' is probably redundant when we already
// know we have a versioned key, since all objects in v0 have
// a master key, but keeping it in doubt)
const { masterKey: phdKey } = <DelimiterMasterFilterState_WaitVersionAfterPHDV0> this.state;
const versionIdIndex = key.indexOf(VID_SEP);
if (versionIdIndex !== -1) {
const masterKey = key.slice(0, versionIdIndex);
if (masterKey === phdKey) {
return this.filter_onNewMasterKeyV0(masterKey, value);
}
}
return this.filter_onNewMasterKeyV0(key, value);
}
keyHandler_SkippingGapV0(key: string, value: string): FilterReturnValue {
const { gapCache, gapCached } = <GapCachingInfo_GapCached> this._gapCaching;
if (key <= gapCached.lastKey) {
return FILTER_SKIP;
}
this._gapCaching = {
state: GapCachingState.UnknownGap,
gapCache,
};
this.setState(<DelimiterMasterFilterState_SkippingVersionsV0> {
id: DelimiterMasterFilterStateId.SkippingVersionsV0,
});
// Start a gap with weight=0 from the latest skippable key. This will
// allow to extend the gap just skipped with a chained gap in case
// other delete markers are seen after the existing gap is skipped.
this._createBuildingGap(gapCached.lastKey, 0, gapCached.weight);
return this.handleKey(key, value);
}
skippingBase(): string | undefined {
switch (this.state.id) {
case DelimiterMasterFilterStateId.SkippingVersionsV0:
const { masterKey } = <DelimiterMasterFilterState_SkippingVersionsV0> this.state;
return masterKey + inc(VID_SEP);
case DelimiterMasterFilterStateId.SkippingGapV0:
const { gapCached } = <GapCachingInfo_GapCached> this._gapCaching;
return gapCached.lastKey;
default:
return super.skippingBase();
}
}
result(): ResultObject {
this._cutBuildingGap();
return super.result();
}
_checkRefreshedBuildingParams(params: GapBuildingParams): GapBuildingParams {
if (this._refreshedBuildingParams) {
const newParams = this._refreshedBuildingParams;
this._refreshedBuildingParams = null;
return newParams;
}
return params;
}
/**
* Save the gap being built if allowed (i.e. still within the
* allocated exposure time window).
*
* @return {boolean} - true if the gap was saved, false if we are
* outside the allocated exposure time window.
*/
_saveBuildingGap(): boolean {
const { gapCache, params, gap, gapWeight } =
<GapBuildingInfo_Building> this._gapBuilding;
const totalElapsed = Date.now() - params.initTimestamp;
if (totalElapsed >= gapCache.exposureDelayMs) {
this._gapBuilding = {
state: GapBuildingState.Expired,
};
this._refreshedBuildingParams = null;
return false;
}
const { firstKey, lastKey, weight } = gap;
gapCache.setGap(firstKey, lastKey, weight);
this._gapBuilding = {
state: GapBuildingState.Building,
gapCache,
params: this._checkRefreshedBuildingParams(params),
gap: {
firstKey: gap.lastKey,
lastKey: gap.lastKey,
weight: 0,
},
gapWeight,
};
return true;
}
/**
* Create a new gap to be extended afterwards
*
* @param {string} newKey - gap's first key
* @param {number} startWeight - initial weight of the building gap (usually 0 or 1)
* @param {number} [cachedWeight] - if continuing a cached gap, weight of the existing
* cached portion
* @return {undefined}
*/
_createBuildingGap(newKey: string, startWeight: number, cachedWeight?: number): void {
if (this._gapBuilding.state === GapBuildingState.NotBuilding) {
const { gapCache, params } = <GapBuildingInfo_NotBuilding> this._gapBuilding;
this._gapBuilding = {
state: GapBuildingState.Building,
gapCache,
params: this._checkRefreshedBuildingParams(params),
gap: {
firstKey: newKey,
lastKey: newKey,
weight: startWeight,
},
gapWeight: (cachedWeight || 0) + startWeight,
};
}
}
_updateBuildingGap(newKey: string): void {
const gapBuilding = <GapBuildingInfo_Building> this._gapBuilding;
const { params, gap } = gapBuilding;
gap.lastKey = newKey;
gap.weight += 1;
gapBuilding.gapWeight += 1;
// the GapCache API requires updating a gap regularly because it can only split
// it once per update, by the known last key. In practice the default behavior
// is to trigger an update after a number of keys that is half the maximum weight.
// It is also useful for other listings to benefit from the cache sooner.
if (gapBuilding.gapWeight >= params.minGapWeight &&
gap.weight >= params.triggerSaveGapWeight) {
this._saveBuildingGap();
}
}
_cutBuildingGap(): void {
if (this._gapBuilding.state === GapBuildingState.Building) {
let gapBuilding = <GapBuildingInfo_Building> this._gapBuilding;
let { gapCache, params, gap, gapWeight } = gapBuilding;
// only set gaps that are significant enough in weight and
// with a non-empty extension
if (gapWeight >= params.minGapWeight && gap.weight > 0) {
// we're done if we were not allowed to save the gap
if (!this._saveBuildingGap()) {
return;
}
// params may have been refreshed, reload them
gapBuilding = <GapBuildingInfo_Building> this._gapBuilding;
params = gapBuilding.params;
}
this._gapBuilding = {
state: GapBuildingState.NotBuilding,
gapCache,
params,
};
}
}
}

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@ -1,202 +0,0 @@
const { DelimiterVersions } = require('./delimiterVersions');
const { FILTER_END, FILTER_SKIP } = require('./tools');
const TRIM_METADATA_MIN_BLOB_SIZE = 10000;
/**
* Handle object listing with parameters. This extends the base class DelimiterVersions
* to return the raw non-current versions objects.
*/
class DelimiterNonCurrent extends DelimiterVersions {
/**
* Delimiter listing of non-current versions.
* @param {Object} parameters - listing parameters
* @param {String} parameters.keyMarker - key marker
* @param {String} parameters.versionIdMarker - version id marker
* @param {String} parameters.beforeDate - limit the response to keys with stale date older than beforeDate.
* stale date is the date on when a version becomes non-current.
* @param {Number} parameters.maxScannedLifecycleListingEntries - max number of entries to be scanned
* @param {String} parameters.excludedDataStoreName - exclude dataStoreName matches from the versions
* @param {RequestLogger} logger - The logger of the request
* @param {String} [vFormat] - versioning key format
*/
constructor(parameters, logger, vFormat) {
super(parameters, logger, vFormat);
this.beforeDate = parameters.beforeDate;
this.excludedDataStoreName = parameters.excludedDataStoreName;
this.maxScannedLifecycleListingEntries = parameters.maxScannedLifecycleListingEntries;
// internal state
this.prevKey = null;
this.staleDate = null;
this.scannedKeys = 0;
}
getLastModified(value) {
let lastModified;
try {
const v = JSON.parse(value);
lastModified = v['last-modified'];
} catch (e) {
this.logger.warn('could not parse Object Metadata while listing',
{
method: 'getLastModified',
err: e.toString(),
});
}
return lastModified;
}
// Overwrite keyHandler_SkippingVersions to include the last version from the previous listing.
// The creation (last-modified) date of this version will be the stale date for the following version.
// eslint-disable-next-line camelcase
keyHandler_SkippingVersions(key, versionId, value) {
if (key === this.keyMarker) {
// since the nonversioned key equals the marker, there is
// necessarily a versionId in this key
const _versionId = versionId;
if (_versionId < this.versionIdMarker) {
// skip all versions until marker
return FILTER_SKIP;
}
}
this.setState({
id: 1 /* NotSkipping */,
});
return this.handleKey(key, versionId, value);
}
filter(obj) {
if (this.maxScannedLifecycleListingEntries && this.scannedKeys >= this.maxScannedLifecycleListingEntries) {
this.IsTruncated = true;
this.logger.info('listing stopped due to reaching the maximum scanned entries limit',
{
maxScannedLifecycleListingEntries: this.maxScannedLifecycleListingEntries,
scannedKeys: this.scannedKeys,
});
return FILTER_END;
}
++this.scannedKeys;
return super.filter(obj);
}
/**
* NOTE: Each version of a specific key is sorted from the latest to the oldest
* thanks to the way version ids are generated.
* DESCRIPTION: Skip the version if it represents the master key, but keep its last-modified date in memory,
* which will be the stale date of the following version.
* The following version is pushed only:
* - if the "stale date" (picked up from the previous version) is available (JSON.parse has not failed),
* - if "beforeDate" is not specified or if specified and the "stale date" is older.
* - if "excludedDataStoreName" is not specified or if specified and the data store name is different
* The in-memory "stale date" is then updated with the version's last-modified date to be used for
* the following version.
* The process stops and returns the available results if either:
* - no more metadata key is left to be processed
* - the listing reaches the maximum number of key to be returned
* - the internal timeout is reached
* @param {String} key - The key to add
* @param {String} versionId - The version id
* @param {String} value - The value of the key
* @return {undefined}
*/
addVersion(key, versionId, value) {
this.nextKeyMarker = key;
this.nextVersionIdMarker = versionId;
// Skip the version if it represents the non-current version, but keep its last-modified date,
// which will be the stale date of the following version.
const isCurrentVersion = key !== this.prevKey;
if (isCurrentVersion) {
this.staleDate = this.getLastModified(value);
this.prevKey = key;
return;
}
// The following version is pushed only:
// - if the "stale date" (picked up from the previous version) is available (JSON.parse has not failed),
// - if "beforeDate" is not specified or if specified and the "stale date" is older.
// - if "excludedDataStoreName" is not specified or if specified and the data store name is different
let lastModified;
if (this.staleDate && (!this.beforeDate || this.staleDate < this.beforeDate)) {
const parsedValue = this._parse(value);
// if parsing fails, skip the key.
if (parsedValue) {
const dataStoreName = parsedValue.dataStoreName;
lastModified = parsedValue['last-modified'];
if (!this.excludedDataStoreName || dataStoreName !== this.excludedDataStoreName) {
const s = this._stringify(parsedValue, this.staleDate);
// check that _stringify succeeds to only push objects with a defined staleDate.
if (s) {
this.Versions.push({ key, value: s });
++this.keys;
}
}
}
}
// The in-memory "stale date" is then updated with the version's last-modified date to be used for
// the following version.
this.staleDate = lastModified || this.getLastModified(value);
return;
}
/**
* Parses the stringified entry's value and remove the location property if too large.
* @param {string} s - sringified value
* @return {object} p - undefined if parsing fails, otherwise it contains the parsed value.
*/
_parse(s) {
let p;
try {
p = JSON.parse(s);
if (s.length >= TRIM_METADATA_MIN_BLOB_SIZE) {
delete p.location;
}
} catch (e) {
this.logger.warn('Could not parse Object Metadata while listing', {
method: 'DelimiterNonCurrent._parse',
err: e.toString(),
});
}
return p;
}
_stringify(parsedMD, staleDate) {
const p = parsedMD;
let s = undefined;
p.staleDate = staleDate;
try {
s = JSON.stringify(p);
} catch (e) {
this.logger.warn('could not stringify Object Metadata while listing', {
method: 'DelimiterNonCurrent._stringify',
err: e.toString(),
});
}
return s;
}
result() {
const { Versions, IsTruncated, NextKeyMarker, NextVersionIdMarker } = super.result();
const result = {
Contents: Versions,
IsTruncated,
};
if (NextKeyMarker) {
result.NextKeyMarker = NextKeyMarker;
}
if (NextVersionIdMarker) {
result.NextVersionIdMarker = NextVersionIdMarker;
}
return result;
}
}
module.exports = { DelimiterNonCurrent };

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@ -1,204 +0,0 @@
const DelimiterVersions = require('./delimiterVersions').DelimiterVersions;
const { FILTER_END } = require('./tools');
const TRIM_METADATA_MIN_BLOB_SIZE = 10000;
/**
* Handle object listing with parameters. This extends the base class DelimiterVersions
* to return the orphan delete markers. Orphan delete markers are also
* refered as expired object delete marker.
* They are delete marker with zero noncurrent versions.
*/
class DelimiterOrphanDeleteMarker extends DelimiterVersions {
/**
* Delimiter listing of orphan delete markers.
* @param {Object} parameters - listing parameters
* @param {String} parameters.beforeDate - limit the response to keys older than beforeDate
* @param {Number} parameters.maxScannedLifecycleListingEntries - max number of entries to be scanned
* @param {RequestLogger} logger - The logger of the request
* @param {String} [vFormat] - versioning key format
*/
constructor(parameters, logger, vFormat) {
const {
marker,
maxKeys,
prefix,
beforeDate,
maxScannedLifecycleListingEntries,
} = parameters;
const versionParams = {
// The orphan delete marker logic uses the term 'marker' instead of 'keyMarker',
// as the latter could suggest the presence of a 'versionIdMarker'.
keyMarker: marker,
maxKeys,
prefix,
};
super(versionParams, logger, vFormat);
this.maxScannedLifecycleListingEntries = maxScannedLifecycleListingEntries;
this.beforeDate = beforeDate;
// this.prevKeyName is used as a marker for the next listing when the current one reaches its entry limit.
// We cannot rely on this.keyName, as it contains the name of the current key.
// In the event of a listing interruption due to reaching the maximum scanned entries,
// relying on this.keyName would cause the next listing to skip the current key because S3 starts
// listing after the marker.
this.prevKeyName = null;
this.keyName = null;
this.value = null;
this.scannedKeys = 0;
}
_reachedMaxKeys() {
if (this.keys >= this.maxKeys) {
return true;
}
return false;
}
_addOrphan() {
const parsedValue = this._parse(this.value);
// if parsing fails, skip the key.
if (parsedValue) {
const lastModified = parsedValue['last-modified'];
const isDeleteMarker = parsedValue.isDeleteMarker;
// We then check if the orphan version is a delete marker and if it is older than the "beforeDate"
if ((!this.beforeDate || (lastModified && lastModified < this.beforeDate)) && isDeleteMarker) {
// Prefer returning an untrimmed data rather than stopping the service in case of parsing failure.
const s = this._stringify(parsedValue) || this.value;
this.Versions.push({ key: this.keyName, value: s });
this.nextKeyMarker = this.keyName;
++this.keys;
}
}
}
/**
* Parses the stringified entry's value and remove the location property if too large.
* @param {string} s - sringified value
* @return {object} p - undefined if parsing fails, otherwise it contains the parsed value.
*/
_parse(s) {
let p;
try {
p = JSON.parse(s);
if (s.length >= TRIM_METADATA_MIN_BLOB_SIZE) {
delete p.location;
}
} catch (e) {
this.logger.warn('Could not parse Object Metadata while listing', {
method: 'DelimiterOrphanDeleteMarker._parse',
err: e.toString(),
});
}
return p;
}
_stringify(value) {
const p = value;
let s = undefined;
try {
s = JSON.stringify(p);
} catch (e) {
this.logger.warn('could not stringify Object Metadata while listing',
{
method: 'DelimiterOrphanDeleteMarker._stringify',
err: e.toString(),
});
}
return s;
}
/**
* The purpose of _isMaxScannedEntriesReached is to restrict the number of scanned entries,
* thus controlling resource overhead (CPU...).
* @return {boolean} isMaxScannedEntriesReached - true if the maximum limit on the number
* of entries scanned has been reached, false otherwise.
*/
_isMaxScannedEntriesReached() {
return this.maxScannedLifecycleListingEntries && this.scannedKeys >= this.maxScannedLifecycleListingEntries;
}
filter(obj) {
if (this._isMaxScannedEntriesReached()) {
this.nextKeyMarker = this.prevKeyName;
this.IsTruncated = true;
this.logger.info('listing stopped due to reaching the maximum scanned entries limit',
{
maxScannedLifecycleListingEntries: this.maxScannedLifecycleListingEntries,
scannedKeys: this.scannedKeys,
});
return FILTER_END;
}
++this.scannedKeys;
return super.filter(obj);
}
/**
* NOTE: Each version of a specific key is sorted from the latest to the oldest
* thanks to the way version ids are generated.
* DESCRIPTION: For a given key, the latest version is kept in memory since it is the current version.
* If the following version reference a new key, it means that the previous one was an orphan version.
* We then check if the orphan version is a delete marker and if it is older than the "beforeDate"
* The process stops and returns the available results if either:
* - no more metadata key is left to be processed
* - the listing reaches the maximum number of key to be returned
* - the internal timeout is reached
* NOTE: we cannot leverage MongoDB to list keys older than "beforeDate"
* because then we will not be able to assess its orphanage.
* @param {String} key - The object key.
* @param {String} versionId - The object version id.
* @param {String} value - The value of the key
* @return {undefined}
*/
addVersion(key, versionId, value) {
// For a given key, the youngest version is kept in memory since it represents the current version.
if (key !== this.keyName) {
// If this.value is defined, it means that <this.keyName, this.value> pair is "allowed" to be an orphan.
if (this.value) {
this._addOrphan();
}
this.prevKeyName = this.keyName;
this.keyName = key;
this.value = value;
return;
}
// If the key is not the current version, we can skip it in the next listing
// in the case where the current listing is interrupted due to reaching the maximum scanned entries.
this.prevKeyName = key;
this.keyName = key;
this.value = null;
return;
}
result() {
// Only check for remaining last orphan delete marker if the listing is not interrupted.
// This will help avoid false positives.
if (!this._isMaxScannedEntriesReached()) {
// The following check makes sure the last orphan delete marker is not forgotten.
if (this.keys < this.maxKeys) {
if (this.value) {
this._addOrphan();
}
// The following make sure that if makeKeys is reached, isTruncated is set to true.
// We moved the "isTruncated" from _reachedMaxKeys to make sure we take into account the last entity
// if listing is truncated right before the last entity and the last entity is a orphan delete marker.
} else {
this.IsTruncated = this.maxKeys > 0;
}
}
const result = {
Contents: this.Versions,
IsTruncated: this.IsTruncated,
};
if (this.IsTruncated) {
result.NextMarker = this.nextKeyMarker;
}
return result;
}
}
module.exports = { DelimiterOrphanDeleteMarker };

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@ -0,0 +1,283 @@
'use strict'; // eslint-disable-line strict
const Delimiter = require('./delimiter').Delimiter;
const Version = require('../../versioning/Version').Version;
const VSConst = require('../../versioning/constants').VersioningConstants;
const { inc, FILTER_END, FILTER_ACCEPT, FILTER_SKIP, SKIP_NONE } =
require('./tools');
const VID_SEP = VSConst.VersionId.Separator;
const { DbPrefixes, BucketVersioningKeyFormat } = VSConst;
/**
* Handle object listing with parameters
*
* @prop {String[]} CommonPrefixes - 'folders' defined by the delimiter
* @prop {String[]} Contents - 'files' to list
* @prop {Boolean} IsTruncated - truncated listing flag
* @prop {String|undefined} NextMarker - marker per amazon format
* @prop {Number} keys - count of listed keys
* @prop {String|undefined} delimiter - separator per amazon format
* @prop {String|undefined} prefix - prefix per amazon format
* @prop {Number} maxKeys - number of keys to list
*/
class DelimiterVersions extends Delimiter {
constructor(parameters, logger, vFormat) {
super(parameters, logger, vFormat);
// specific to version listing
this.keyMarker = parameters.keyMarker;
this.versionIdMarker = parameters.versionIdMarker;
// internal state
this.masterKey = undefined;
this.masterVersionId = undefined;
// listing results
this.NextMarker = parameters.keyMarker;
this.NextVersionIdMarker = undefined;
this.inReplayPrefix = false;
Object.assign(this, {
[BucketVersioningKeyFormat.v0]: {
genMDParams: this.genMDParamsV0,
filter: this.filterV0,
skipping: this.skippingV0,
},
[BucketVersioningKeyFormat.v1]: {
genMDParams: this.genMDParamsV1,
filter: this.filterV1,
skipping: this.skippingV1,
},
}[this.vFormat]);
}
genMDParamsV0() {
const params = {};
if (this.parameters.prefix) {
params.gte = this.parameters.prefix;
params.lt = inc(this.parameters.prefix);
}
if (this.parameters.keyMarker) {
if (params.gte && params.gte > this.parameters.keyMarker) {
return params;
}
delete params.gte;
if (this.parameters.versionIdMarker) {
// versionIdMarker should always come with keyMarker
// but may not be the other way around
params.gt = this.parameters.keyMarker
+ VID_SEP
+ this.parameters.versionIdMarker;
} else {
params.gt = inc(this.parameters.keyMarker + VID_SEP);
}
}
return params;
}
genMDParamsV1() {
// return an array of two listing params sets to ask for
// synchronized listing of M and V ranges
const params = [{}, {}];
if (this.parameters.prefix) {
params[0].gte = DbPrefixes.Master + this.parameters.prefix;
params[0].lt = DbPrefixes.Master + inc(this.parameters.prefix);
params[1].gte = DbPrefixes.Version + this.parameters.prefix;
params[1].lt = DbPrefixes.Version + inc(this.parameters.prefix);
} else {
params[0].gte = DbPrefixes.Master;
params[0].lt = inc(DbPrefixes.Master); // stop after the last master key
params[1].gte = DbPrefixes.Version;
params[1].lt = inc(DbPrefixes.Version); // stop after the last version key
}
if (this.parameters.keyMarker) {
if (params[1].gte <= DbPrefixes.Version + this.parameters.keyMarker) {
delete params[0].gte;
delete params[1].gte;
params[0].gt = DbPrefixes.Master + inc(this.parameters.keyMarker + VID_SEP);
if (this.parameters.versionIdMarker) {
// versionIdMarker should always come with keyMarker
// but may not be the other way around
params[1].gt = DbPrefixes.Version
+ this.parameters.keyMarker
+ VID_SEP
+ this.parameters.versionIdMarker;
} else {
params[1].gt = DbPrefixes.Version
+ inc(this.parameters.keyMarker + VID_SEP);
}
}
}
return params;
}
/**
* Used to synchronize listing of M and V prefixes by object key
*
* @param {object} masterObj object listed from first range
* returned by genMDParamsV1() (the master keys range)
* @param {object} versionObj object listed from second range
* returned by genMDParamsV1() (the version keys range)
* @return {number} comparison result:
* * -1 if master key < version key
* * 1 if master key > version key
*/
compareObjects(masterObj, versionObj) {
const masterKey = masterObj.key.slice(DbPrefixes.Master.length);
const versionKey = versionObj.key.slice(DbPrefixes.Version.length);
return masterKey < versionKey ? -1 : 1;
}
/**
* Add a (key, versionId, value) tuple to the listing.
* Set the NextMarker to the current key
* Increment the keys counter
* @param {object} obj - the entry to add to the listing result
* @param {String} obj.key - The key to add
* @param {String} obj.versionId - versionId
* @param {String} obj.value - The value of the key
* @return {Boolean} - indicates if iteration should continue
*/
addContents(obj) {
if (this._reachedMaxKeys()) {
return FILTER_END;
}
this.Contents.push({
key: obj.key,
value: this.trimMetadata(obj.value),
versionId: obj.versionId,
});
this.NextMarker = obj.key;
this.NextVersionIdMarker = obj.versionId;
++this.keys;
return FILTER_ACCEPT;
}
/**
* Filter to apply on each iteration if bucket is in v0
* versioning key format, based on:
* - prefix
* - delimiter
* - maxKeys
* The marker is being handled directly by levelDB
* @param {Object} obj - The key and value of the element
* @param {String} obj.key - The key of the element
* @param {String} obj.value - The value of the element
* @return {number} - indicates if iteration should continue
*/
filterV0(obj) {
if (obj.key.startsWith(DbPrefixes.Replay)) {
this.inReplayPrefix = true;
return FILTER_SKIP;
}
this.inReplayPrefix = false;
if (Version.isPHD(obj.value)) {
// return accept to avoid skipping the next values in range
return FILTER_ACCEPT;
}
return this.filterCommon(obj.key, obj.value);
}
/**
* Filter to apply on each iteration if bucket is in v1
* versioning key format, based on:
* - prefix
* - delimiter
* - maxKeys
* The marker is being handled directly by levelDB
* @param {Object} obj - The key and value of the element
* @param {String} obj.key - The key of the element
* @param {String} obj.value - The value of the element
* @return {number} - indicates if iteration should continue
*/
filterV1(obj) {
if (Version.isPHD(obj.value)) {
// return accept to avoid skipping the next values in range
return FILTER_ACCEPT;
}
// this function receives both M and V keys, but their prefix
// length is the same so we can remove their prefix without
// looking at the type of key
return this.filterCommon(obj.key.slice(DbPrefixes.Master.length),
obj.value);
}
filterCommon(key, value) {
if (this.prefix && !key.startsWith(this.prefix)) {
return FILTER_SKIP;
}
let nonversionedKey;
let versionId = undefined;
const versionIdIndex = key.indexOf(VID_SEP);
if (versionIdIndex < 0) {
nonversionedKey = key;
this.masterKey = key;
this.masterVersionId =
Version.from(value).getVersionId() || 'null';
versionId = this.masterVersionId;
} else {
nonversionedKey = key.slice(0, versionIdIndex);
versionId = key.slice(versionIdIndex + 1);
// skip a version key if it is the master version
if (this.masterKey === nonversionedKey && this.masterVersionId === versionId) {
return FILTER_SKIP;
}
this.masterKey = undefined;
this.masterVersionId = undefined;
}
if (this.delimiter) {
const baseIndex = this.prefix ? this.prefix.length : 0;
const delimiterIndex = nonversionedKey.indexOf(this.delimiter, baseIndex);
if (delimiterIndex >= 0) {
return this.addCommonPrefix(nonversionedKey, delimiterIndex);
}
}
return this.addContents({ key: nonversionedKey, value, versionId });
}
skippingV0() {
if (this.inReplayPrefix) {
return DbPrefixes.Replay;
}
if (this.NextMarker) {
const index = this.NextMarker.lastIndexOf(this.delimiter);
if (index === this.NextMarker.length - 1) {
return this.NextMarker;
}
}
return SKIP_NONE;
}
skippingV1() {
const skipV0 = this.skippingV0();
if (skipV0 === SKIP_NONE) {
return SKIP_NONE;
}
// skip to the same object key in both M and V range listings
return [DbPrefixes.Master + skipV0,
DbPrefixes.Version + skipV0];
}
/**
* Return an object containing all mandatory fields to use once the
* iteration is done, doesn't show a NextMarker field if the output
* isn't truncated
* @return {Object} - following amazon format
*/
result() {
/* NextMarker is only provided when delimiter is used.
* specified in v1 listing documentation
* http://docs.aws.amazon.com/AmazonS3/latest/API/RESTBucketGET.html
*/
return {
CommonPrefixes: this.CommonPrefixes,
Versions: this.Contents,
IsTruncated: this.IsTruncated,
NextKeyMarker: this.IsTruncated ? this.NextMarker : undefined,
NextVersionIdMarker: this.IsTruncated ?
this.NextVersionIdMarker : undefined,
Delimiter: this.delimiter,
};
}
}
module.exports = { DelimiterVersions };

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@ -1,535 +0,0 @@
'use strict'; // eslint-disable-line strict
const Extension = require('./Extension').default;
import {
FilterState,
FilterReturnValue,
} from './delimiter';
const Version = require('../../versioning/Version').Version;
const VSConst = require('../../versioning/constants').VersioningConstants;
const { inc, FILTER_END, FILTER_ACCEPT, FILTER_SKIP, SKIP_NONE } =
require('./tools');
const VID_SEP = VSConst.VersionId.Separator;
const { DbPrefixes, BucketVersioningKeyFormat } = VSConst;
export const enum DelimiterVersionsFilterStateId {
NotSkipping = 1,
SkippingPrefix = 2,
SkippingVersions = 3,
};
export interface DelimiterVersionsFilterState_NotSkipping extends FilterState {
id: DelimiterVersionsFilterStateId.NotSkipping,
};
export interface DelimiterVersionsFilterState_SkippingPrefix extends FilterState {
id: DelimiterVersionsFilterStateId.SkippingPrefix,
prefix: string;
};
export interface DelimiterVersionsFilterState_SkippingVersions extends FilterState {
id: DelimiterVersionsFilterStateId.SkippingVersions,
gt: string;
};
type KeyHandler = (key: string, versionId: string | undefined, value: string) => FilterReturnValue;
type ResultObject = {
CommonPrefixes: string[],
Versions: {
key: string;
value: string;
versionId: string;
}[];
IsTruncated: boolean;
Delimiter ?: string;
NextKeyMarker ?: string;
NextVersionIdMarker ?: string;
};
type GenMDParamsItem = {
gt ?: string,
gte ?: string,
lt ?: string,
};
/**
* Handle object listing with parameters
*
* @prop {String[]} CommonPrefixes - 'folders' defined by the delimiter
* @prop {String[]} Contents - 'files' to list
* @prop {Boolean} IsTruncated - truncated listing flag
* @prop {String|undefined} NextMarker - marker per amazon format
* @prop {Number} keys - count of listed keys
* @prop {String|undefined} delimiter - separator per amazon format
* @prop {String|undefined} prefix - prefix per amazon format
* @prop {Number} maxKeys - number of keys to list
*/
export class DelimiterVersions extends Extension {
state: FilterState;
keyHandlers: { [id: number]: KeyHandler };
constructor(parameters, logger, vFormat) {
super(parameters, logger);
// original listing parameters
this.delimiter = parameters.delimiter;
this.prefix = parameters.prefix;
this.maxKeys = parameters.maxKeys || 1000;
// specific to version listing
this.keyMarker = parameters.keyMarker;
this.versionIdMarker = parameters.versionIdMarker;
// internal state
this.masterKey = undefined;
this.masterVersionId = undefined;
this.nullKey = null;
this.vFormat = vFormat || BucketVersioningKeyFormat.v0;
// listing results
this.CommonPrefixes = [];
this.Versions = [];
this.IsTruncated = false;
this.nextKeyMarker = parameters.keyMarker;
this.nextVersionIdMarker = undefined;
this.keyHandlers = {};
Object.assign(this, {
[BucketVersioningKeyFormat.v0]: {
genMDParams: this.genMDParamsV0,
getObjectKey: this.getObjectKeyV0,
skipping: this.skippingV0,
},
[BucketVersioningKeyFormat.v1]: {
genMDParams: this.genMDParamsV1,
getObjectKey: this.getObjectKeyV1,
skipping: this.skippingV1,
},
}[this.vFormat]);
if (this.vFormat === BucketVersioningKeyFormat.v0) {
this.setKeyHandler(
DelimiterVersionsFilterStateId.NotSkipping,
this.keyHandler_NotSkippingV0.bind(this));
} else {
this.setKeyHandler(
DelimiterVersionsFilterStateId.NotSkipping,
this.keyHandler_NotSkippingV1.bind(this));
}
this.setKeyHandler(
DelimiterVersionsFilterStateId.SkippingPrefix,
this.keyHandler_SkippingPrefix.bind(this));
this.setKeyHandler(
DelimiterVersionsFilterStateId.SkippingVersions,
this.keyHandler_SkippingVersions.bind(this));
if (this.versionIdMarker) {
this.state = <DelimiterVersionsFilterState_SkippingVersions> {
id: DelimiterVersionsFilterStateId.SkippingVersions,
gt: `${this.keyMarker}${VID_SEP}${this.versionIdMarker}`,
};
} else {
this.state = <DelimiterVersionsFilterState_NotSkipping> {
id: DelimiterVersionsFilterStateId.NotSkipping,
};
}
}
genMDParamsV0() {
const params: GenMDParamsItem = {};
if (this.prefix) {
params.gte = this.prefix;
params.lt = inc(this.prefix);
}
if (this.keyMarker && this.delimiter) {
const commonPrefix = this.getCommonPrefix(this.keyMarker);
if (commonPrefix) {
const afterPrefix = inc(commonPrefix);
if (!params.gte || afterPrefix > params.gte) {
params.gte = afterPrefix;
}
}
}
if (this.keyMarker && (!params.gte || this.keyMarker >= params.gte)) {
delete params.gte;
if (this.versionIdMarker) {
// start from the beginning of versions so we can
// check if there's a null key and fetch it
// (afterwards, we can skip the rest of versions until
// we reach versionIdMarker)
params.gte = `${this.keyMarker}${VID_SEP}`;
} else {
params.gt = `${this.keyMarker}${inc(VID_SEP)}`;
}
}
return params;
}
genMDParamsV1() {
// return an array of two listing params sets to ask for
// synchronized listing of M and V ranges
const v0Params: GenMDParamsItem = this.genMDParamsV0();
const mParams: GenMDParamsItem = {};
const vParams: GenMDParamsItem = {};
if (v0Params.gt) {
mParams.gt = `${DbPrefixes.Master}${v0Params.gt}`;
vParams.gt = `${DbPrefixes.Version}${v0Params.gt}`;
} else if (v0Params.gte) {
mParams.gte = `${DbPrefixes.Master}${v0Params.gte}`;
vParams.gte = `${DbPrefixes.Version}${v0Params.gte}`;
} else {
mParams.gte = DbPrefixes.Master;
vParams.gte = DbPrefixes.Version;
}
if (v0Params.lt) {
mParams.lt = `${DbPrefixes.Master}${v0Params.lt}`;
vParams.lt = `${DbPrefixes.Version}${v0Params.lt}`;
} else {
mParams.lt = inc(DbPrefixes.Master);
vParams.lt = inc(DbPrefixes.Version);
}
return [mParams, vParams];
}
/**
* check if the max keys count has been reached and set the
* final state of the result if it is the case
* @return {Boolean} - indicates if the iteration has to stop
*/
_reachedMaxKeys(): boolean {
if (this.keys >= this.maxKeys) {
// In cases of maxKeys <= 0 -> IsTruncated = false
this.IsTruncated = this.maxKeys > 0;
return true;
}
return false;
}
/**
* Used to synchronize listing of M and V prefixes by object key
*
* @param {object} masterObj object listed from first range
* returned by genMDParamsV1() (the master keys range)
* @param {object} versionObj object listed from second range
* returned by genMDParamsV1() (the version keys range)
* @return {number} comparison result:
* * -1 if master key < version key
* * 1 if master key > version key
*/
compareObjects(masterObj, versionObj) {
const masterKey = masterObj.key.slice(DbPrefixes.Master.length);
const versionKey = versionObj.key.slice(DbPrefixes.Version.length);
return masterKey < versionKey ? -1 : 1;
}
/**
* Parse a listing key into its nonversioned key and version ID components
*
* @param {string} key - full listing key
* @return {object} obj
* @return {string} obj.key - nonversioned part of key
* @return {string} [obj.versionId] - version ID in the key
*/
parseKey(fullKey: string): { key: string, versionId ?: string } {
const versionIdIndex = fullKey.indexOf(VID_SEP);
if (versionIdIndex === -1) {
return { key: fullKey };
}
const nonversionedKey: string = fullKey.slice(0, versionIdIndex);
let versionId: string = fullKey.slice(versionIdIndex + 1);
return { key: nonversionedKey, versionId };
}
/**
* Include a key in the listing output, in the Versions or CommonPrefix result
*
* @param {string} key - key (without version ID)
* @param {string} versionId - version ID
* @param {string} value - metadata value
* @return {undefined}
*/
addKey(key: string, versionId: string, value: string) {
// add the subprefix to the common prefixes if the key has the delimiter
const commonPrefix = this.getCommonPrefix(key);
if (commonPrefix) {
this.addCommonPrefix(commonPrefix);
// transition into SkippingPrefix state to skip all following keys
// while they start with the same prefix
this.setState(<DelimiterVersionsFilterState_SkippingPrefix> {
id: DelimiterVersionsFilterStateId.SkippingPrefix,
prefix: commonPrefix,
});
} else {
this.addVersion(key, versionId, value);
}
}
/**
* Add a (key, versionId, value) tuple to the listing.
* Set the NextMarker to the current key
* Increment the keys counter
* @param {String} key - The key to add
* @param {String} versionId - versionId
* @param {String} value - The value of the key
* @return {undefined}
*/
addVersion(key: string, versionId: string, value: string) {
this.Versions.push({
key,
versionId,
value: this.trimMetadata(value),
});
this.nextKeyMarker = key;
this.nextVersionIdMarker = versionId;
++this.keys;
}
getCommonPrefix(key: string): string | undefined {
if (!this.delimiter) {
return undefined;
}
const baseIndex = this.prefix ? this.prefix.length : 0;
const delimiterIndex = key.indexOf(this.delimiter, baseIndex);
if (delimiterIndex === -1) {
return undefined;
}
return key.substring(0, delimiterIndex + this.delimiter.length);
}
/**
* Add a Common Prefix in the list
* @param {String} commonPrefix - common prefix to add
* @return {undefined}
*/
addCommonPrefix(commonPrefix: string): void {
// add the new prefix to the list
this.CommonPrefixes.push(commonPrefix);
++this.keys;
this.nextKeyMarker = commonPrefix;
this.nextVersionIdMarker = undefined;
}
/**
* Cache the current null key, to save it for outputting it later at
* the correct position
*
* @param {String} key - nonversioned key of the null key
* @param {String} versionId - real version ID of the null key
* @param {String} value - value of the null key
* @return {undefined}
*/
cacheNullKey(key: string, versionId: string, value: string): void {
this.nullKey = { key, versionId, value };
}
getObjectKeyV0(obj: { key: string }): string {
return obj.key;
}
getObjectKeyV1(obj: { key: string }): string {
return obj.key.slice(DbPrefixes.Master.length);
}
/**
* Filter to apply on each iteration, based on:
* - prefix
* - delimiter
* - maxKeys
* The marker is being handled directly by levelDB
* @param {Object} obj - The key and value of the element
* @param {String} obj.key - The key of the element
* @param {String} obj.value - The value of the element
* @return {number} - indicates if iteration should continue
*/
filter(obj: { key: string, value: string }): FilterReturnValue {
const key = this.getObjectKey(obj);
const value = obj.value;
const { key: nonversionedKey, versionId: keyVersionId } = this.parseKey(key);
if (this.nullKey) {
if (this.nullKey.key !== nonversionedKey
|| this.nullKey.versionId < <string> keyVersionId) {
this.handleKey(
this.nullKey.key, this.nullKey.versionId, this.nullKey.value);
this.nullKey = null;
}
}
if (keyVersionId === '') {
// null key
this.cacheNullKey(nonversionedKey, Version.from(value).getVersionId(), value);
if (this.state.id === DelimiterVersionsFilterStateId.SkippingVersions) {
return FILTER_SKIP;
}
return FILTER_ACCEPT;
}
return this.handleKey(nonversionedKey, keyVersionId, value);
}
setState(state: FilterState): void {
this.state = state;
}
setKeyHandler(stateId: number, keyHandler: KeyHandler): void {
this.keyHandlers[stateId] = keyHandler;
}
handleKey(key: string, versionId: string | undefined, value: string): FilterReturnValue {
return this.keyHandlers[this.state.id](key, versionId, value);
}
keyHandler_NotSkippingV0(key: string, versionId: string | undefined, value: string): FilterReturnValue {
if (key.startsWith(DbPrefixes.Replay)) {
// skip internal replay prefix entirely
this.setState(<DelimiterVersionsFilterState_SkippingPrefix> {
id: DelimiterVersionsFilterStateId.SkippingPrefix,
prefix: DbPrefixes.Replay,
});
return FILTER_SKIP;
}
if (Version.isPHD(value)) {
return FILTER_ACCEPT;
}
return this.filter_onNewKey(key, versionId, value);
}
keyHandler_NotSkippingV1(key: string, versionId: string | undefined, value: string): FilterReturnValue {
// NOTE: this check on PHD is only useful for Artesca, S3C
// does not use PHDs in V1 format
if (Version.isPHD(value)) {
return FILTER_ACCEPT;
}
return this.filter_onNewKey(key, versionId, value);
}
filter_onNewKey(key: string, versionId: string | undefined, value: string): FilterReturnValue {
if (this._reachedMaxKeys()) {
return FILTER_END;
}
if (versionId === undefined) {
this.masterKey = key;
this.masterVersionId = Version.from(value).getVersionId() || 'null';
this.addKey(this.masterKey, this.masterVersionId, value);
} else {
if (this.masterKey === key && this.masterVersionId === versionId) {
// do not add a version key if it is the master version
return FILTER_ACCEPT;
}
this.addKey(key, versionId, value);
}
return FILTER_ACCEPT;
}
keyHandler_SkippingPrefix(key: string, versionId: string | undefined, value: string): FilterReturnValue {
const { prefix } = <DelimiterVersionsFilterState_SkippingPrefix> this.state;
if (key.startsWith(prefix)) {
return FILTER_SKIP;
}
this.setState(<DelimiterVersionsFilterState_NotSkipping> {
id: DelimiterVersionsFilterStateId.NotSkipping,
});
return this.handleKey(key, versionId, value);
}
keyHandler_SkippingVersions(key: string, versionId: string | undefined, value: string): FilterReturnValue {
if (key === this.keyMarker) {
// since the nonversioned key equals the marker, there is
// necessarily a versionId in this key
const _versionId = <string> versionId;
if (_versionId < this.versionIdMarker) {
// skip all versions until marker
return FILTER_SKIP;
}
if (_versionId === this.versionIdMarker) {
// nothing left to skip, so return ACCEPT, but don't add this version
return FILTER_ACCEPT;
}
}
this.setState(<DelimiterVersionsFilterState_NotSkipping> {
id: DelimiterVersionsFilterStateId.NotSkipping,
});
return this.handleKey(key, versionId, value);
}
skippingBase(): string | undefined {
switch (this.state.id) {
case DelimiterVersionsFilterStateId.SkippingPrefix:
const { prefix } = <DelimiterVersionsFilterState_SkippingPrefix> this.state;
return inc(prefix);
case DelimiterVersionsFilterStateId.SkippingVersions:
const { gt } = <DelimiterVersionsFilterState_SkippingVersions> this.state;
// the contract of skipping() is to return the first key
// that can be skipped to, so adding a null byte to skip
// over the existing versioned key set in 'gt'
return `${gt}\0`;
default:
return SKIP_NONE;
}
}
skippingV0() {
return this.skippingBase();
}
skippingV1() {
const skipTo = this.skippingBase();
if (skipTo === SKIP_NONE) {
return SKIP_NONE;
}
// skip to the same object key in both M and V range listings
return [
`${DbPrefixes.Master}${skipTo}`,
`${DbPrefixes.Version}${skipTo}`,
];
}
/**
* Return an object containing all mandatory fields to use once the
* iteration is done, doesn't show a NextMarker field if the output
* isn't truncated
* @return {Object} - following amazon format
*/
result() {
// Add the last null key if still in cache (when it is the
// last version of the last key)
//
// NOTE: _reachedMaxKeys sets IsTruncated to true when it
// returns true. Here we want this because either:
//
// - we did not reach the max keys yet so the result is not
// - truncated, and there is still room for the null key in
// - the results
//
// - OR we reached it already while having to process a new
// key (so the result is truncated even without the null key)
//
// - OR we are *just* below the limit but the null key to add
// does not fit, so we know the result is now truncated
// because there remains the null key to be output.
//
if (this.nullKey) {
this.handleKey(this.nullKey.key, this.nullKey.versionId, this.nullKey.value);
}
const result: ResultObject = {
CommonPrefixes: this.CommonPrefixes,
Versions: this.Versions,
IsTruncated: this.IsTruncated,
};
if (this.delimiter) {
result.Delimiter = this.delimiter;
}
if (this.IsTruncated) {
result.NextKeyMarker = this.nextKeyMarker;
if (this.nextVersionIdMarker) {
result.NextVersionIdMarker = this.nextVersionIdMarker;
}
};
return result;
}
}
module.exports = { DelimiterVersions };

View File

@ -6,7 +6,4 @@ module.exports = {
DelimiterMaster: require('./delimiterMaster')
.DelimiterMaster,
MPU: require('./MPU').MultipartUploads,
DelimiterCurrent: require('./delimiterCurrent').DelimiterCurrent,
DelimiterNonCurrent: require('./delimiterNonCurrent').DelimiterNonCurrent,
DelimiterOrphanDeleteMarker: require('./delimiterOrphanDeleteMarker').DelimiterOrphanDeleteMarker,
};

View File

@ -52,21 +52,21 @@ class Skip {
assert(this.skipRangeCb);
const filteringResult = this.extension.filter(entry);
const skipTo = this.extension.skipping();
const skippingRange = this.extension.skipping();
if (filteringResult === FILTER_END) {
this.listingEndCb();
} else if (filteringResult === FILTER_SKIP
&& skipTo !== SKIP_NONE) {
&& skippingRange !== SKIP_NONE) {
if (++this.streakLength >= MAX_STREAK_LENGTH) {
let newRange;
if (Array.isArray(skipTo)) {
if (Array.isArray(skippingRange)) {
newRange = [];
for (let i = 0; i < skipTo.length; ++i) {
newRange.push(skipTo[i]);
for (let i = 0; i < skippingRange.length; ++i) {
newRange.push(this._inc(skippingRange[i]));
}
} else {
newRange = skipTo;
newRange = this._inc(skippingRange);
}
/* Avoid to loop on the same range again and again. */
if (newRange === this.gteParams) {
@ -79,6 +79,16 @@ class Skip {
this.streakLength = 0;
}
}
_inc(str) {
if (!str) {
return str;
}
const lastCharValue = str.charCodeAt(str.length - 1);
const lastCharNewValue = String.fromCharCode(lastCharValue + 1);
return `${str.slice(0, str.length - 1)}${lastCharNewValue}`;
}
}

View File

@ -14,7 +14,7 @@ function vaultSignatureCb(
err: Error | null,
authInfo: { message: { body: any } },
log: Logger,
callback: (err: Error | null, data?: any, results?: any, params?: any, infos?: any) => void,
callback: (err: Error | null, data?: any, results?: any, params?: any) => void,
streamingV4Params?: any
) {
// vaultclient API guarantees that it returns:
@ -38,9 +38,7 @@ function vaultSignatureCb(
}
// @ts-ignore
log.addDefaultFields(auditLog);
return callback(null, userInfo, authorizationResults, streamingV4Params, {
accountQuota: info.accountQuota || {},
});
return callback(null, userInfo, authorizationResults, streamingV4Params);
}
export type AuthV4RequestParams = {
@ -386,19 +384,4 @@ export default class Vault {
return callback(null, respBody);
});
}
report(log: Logger, callback: (err: Error | null, data?: any) => void) {
// call the report function of the client
if (!this.client.report) {
return callback(null, {});
}
// @ts-ignore
return this.client.report(log.getSerializedUids(), (err: Error | null, obj?: any) => {
if (err) {
log.debug(`error from ${this.implName}`, { error: err });
return callback(err);
}
return callback(null, obj);
});
}
}

View File

@ -163,20 +163,6 @@ function doAuth(
return cb(errors.InternalError);
}
/**
* This function will generate a version 4 content-md5 header
* It looks at the request path to determine what kind of header encoding is required
*
* @param path - the request path
* @param payload - the request payload to hash
*/
function generateContentMD5Header(
path: string,
payload: string,
) {
const encoding = path && path.startsWith('/_/backbeat/') ? 'hex' : 'base64';
return crypto.createHash('md5').update(payload, 'binary').digest(encoding);
}
/**
* This function will generate a version 4 header
*
@ -189,7 +175,6 @@ function generateContentMD5Header(
* @param [proxyPath] - path that gets proxied by reverse proxy
* @param [sessionToken] - security token if the access/secret keys
* are temporary credentials from STS
* @param [payload] - body of the request if any
*/
function generateV4Headers(
request: any,
@ -197,9 +182,8 @@ function generateV4Headers(
accessKey: string,
secretKeyValue: string,
awsService: string,
proxyPath?: string,
sessionToken?: string,
payload?: string,
proxyPath: string,
sessionToken: string
) {
Object.assign(request, { headers: {} });
const amzDate = convertUTCtoISO8601(Date.now());
@ -212,7 +196,7 @@ function generateV4Headers(
const timestamp = amzDate;
const algorithm = 'AWS4-HMAC-SHA256';
payload = payload || '';
let payload = '';
if (request.method === 'POST') {
payload = queryString.stringify(data, undefined, undefined, {
encodeURIComponent,
@ -223,7 +207,6 @@ function generateV4Headers(
request.setHeader('host', request._headers.host);
request.setHeader('x-amz-date', amzDate);
request.setHeader('x-amz-content-sha256', payloadChecksum);
request.setHeader('content-md5', generateContentMD5Header(request.path, payload));
if (sessionToken) {
request.setHeader('x-amz-security-token', sessionToken);
@ -234,7 +217,6 @@ function generateV4Headers(
.filter(headerName =>
headerName.startsWith('x-amz-')
|| headerName.startsWith('x-scal-')
|| headerName === 'content-md5'
|| headerName === 'host',
).sort().join(';');
const params = { request, signedHeaders, payloadChecksum,

View File

@ -133,37 +133,23 @@ export default class ChainBackend extends BaseBackend {
return;
}
const check = (policy) => {
const key = (policy.arn || '') + (policy.versionId || '') + (policy.action || '');
resp.message.body.forEach(policy => {
const key = (policy.arn || '') + (policy.versionId || '');
if (!policyMap[key] || !policyMap[key].isAllowed) {
policyMap[key] = policy;
}
// else is duplicate policy
};
resp.message.body.forEach(policy => {
if (Array.isArray(policy)) {
policy.forEach(authResult => check(authResult));
} else {
check(policy);
}
});
});
return Object.keys(policyMap).map(key => {
const policyRes: any = { isAllowed: policyMap[key].isAllowed };
const policyRes:any = { isAllowed: policyMap[key].isAllowed };
if (policyMap[key].arn !== '') {
policyRes.arn = policyMap[key].arn;
}
if (policyMap[key].versionId) {
policyRes.versionId = policyMap[key].versionId;
}
if (policyMap[key].isImplicit !== undefined) {
policyRes.isImplicit = policyMap[key].isImplicit;
}
if (policyMap[key].action) {
policyRes.action = policyMap[key].action;
}
return policyRes;
});
}
@ -212,22 +198,4 @@ export default class ChainBackend extends BaseBackend {
return callback(null, res);
});
}
report(reqUid: string, callback: any) {
this._forEachClient((client, done) =>
client.report(reqUid, done),
(err, res) => {
if (err) {
return callback(err);
}
const mergedRes = res.reduce((acc, val) => {
Object.keys(val).forEach(k => {
acc[k] = val[k];
});
return acc;
}, {});
return callback(null, mergedRes);
});
}
}

View File

@ -161,10 +161,6 @@ class InMemoryBackend extends BaseBackend {
};
return cb(null, vaultReturnObject);
}
report(log: Logger, callback: any) {
return callback(null, {});
}
}

View File

@ -35,16 +35,15 @@ export default function awsURIencode(
encodeSlash?: boolean,
noEncodeStar?: boolean
) {
const encSlash = encodeSlash === undefined ? true : encodeSlash;
let encoded = '';
/**
* Duplicate query params are not suppported by AWS S3 APIs. These params
* are parsed as Arrays by Node.js HTTP parser which breaks this method
*/
if (typeof input !== 'string') {
return '';
return encoded;
}
let encoded = "";
const slash = encodeSlash === undefined || encodeSlash ? '%2F' : '/';
const star = noEncodeStar !== undefined && noEncodeStar ? '*' : '%2A';
for (let i = 0; i < input.length; i++) {
let ch = input.charAt(i);
if ((ch >= 'A' && ch <= 'Z') ||
@ -56,9 +55,9 @@ export default function awsURIencode(
} else if (ch === ' ') {
encoded = encoded.concat('%20');
} else if (ch === '/') {
encoded = encoded.concat(slash);
encoded = encoded.concat(encSlash ? '%2F' : ch);
} else if (ch === '*') {
encoded = encoded.concat(star);
encoded = encoded.concat(noEncodeStar ? '*' : '%2A');
} else {
if (ch >= '\uD800' && ch <= '\uDBFF') {
// If this character is a high surrogate peek the next character

View File

@ -69,11 +69,15 @@ export default function createCanonicalRequest(
const signedHeadersList = pSignedHeaders.split(';');
signedHeadersList.sort((a: any, b: any) => a.localeCompare(b));
const signedHeaders = signedHeadersList.join(';');
const isProxyHost = !!pHeaders['proxyhost'];
// canonical headers
const canonicalHeadersList = signedHeadersList.map((signedHeader: any) => {
if (pHeaders[signedHeader] !== undefined) {
const trimmedHeader = pHeaders[signedHeader]
let header = pHeaders[signedHeader];
if (isProxyHost && signedHeader.toLowerCase() === 'host') {
header = pHeaders['proxyhost'];
}
const trimmedHeader = header
.trim().replace(/\s+/g, ' ');
return `${signedHeader}:${trimmedHeader}\n`;
}

View File

@ -133,13 +133,13 @@ export function check(
}
let proxyPath: string | undefined;
if (request.headers.proxy_path) {
if (request.headers.proxypath) {
try {
proxyPath = decodeURIComponent(request.headers.proxy_path);
proxyPath = decodeURIComponent(request.headers.proxypath);
} catch (err) {
log.debug('invalid proxy_path header', { proxyPath, err });
log.debug('invalid proxypath header', { proxyPath, err });
return { err: errors.InvalidArgument.customizeDescription(
'invalid proxy_path header') };
'invalid proxypath header') };
}
}

View File

@ -57,13 +57,13 @@ export function check(request: any, log: Logger, data: { [key: string]: string }
}
let proxyPath: string | undefined;
if (request.headers.proxy_path) {
if (request.headers.proxypath) {
try {
proxyPath = decodeURIComponent(request.headers.proxy_path);
proxyPath = decodeURIComponent(request.headers.proxypath);
} catch (err) {
log.debug('invalid proxy_path header', { proxyPath });
log.debug('invalid proxypath header', { proxyPath });
return { err: errors.InvalidArgument.customizeDescription(
'invalid proxy_path header') };
'invalid proxypath header') };
}
}

View File

@ -1,569 +0,0 @@
import cluster, { Worker } from 'cluster';
import * as werelogs from 'werelogs';
import { default as errors } from '../../lib/errors';
const rpcLogger = new werelogs.Logger('ClusterRPC');
/**
* Remote procedure calls support between cluster workers.
*
* When using the cluster module, new processes are forked and are
* dispatched workloads, usually HTTP requests. The ClusterRPC module
* implements a RPC system to send commands to all cluster worker
* processes at once from any particular worker, and retrieve their
* individual command results, like a distributed map operation.
*
* The existing nodejs cluster IPC channel is setup from the primary
* to each worker, but not between workers, so there has to be a hop
* by the primary.
*
* How a command is treated:
*
* - a worker sends a command message to the primary
*
* - the primary then forwards that command to each existing worker
* (including the requestor)
*
* - each worker then executes the command and returns a result or an
* error
*
* - the primary gathers all workers results into an array
*
* - finally, the primary dispatches the results array to the original
* requesting worker
*
*
* Limitations:
*
* - The command payload must be serializable, which means that:
* - it should not contain circular references
* - it should be of a reasonable size to be sent in a single RPC message
*
* - The "toWorkers" parameter of value "*" targets the set of workers
* that are available at the time the command is dispatched. Any new
* worker spawned after the command has been dispatched for
* processing, but before the command completes, don't execute
* the command and hence are not part of the results array.
*
*
* To set it up:
*
* - On the primary:
* if (cluster.isPrimary) {
* setupRPCPrimary();
* }
*
* - On the workers:
* if (!cluster.isPrimary) {
* setupRPCWorker({
* handler1: (payload: object, uids: string, callback: HandlerCallback) => void,
* handler2: ...
* });
* }
* Handler functions will be passed the command payload, request
* serialized uids, and must call the callback when the worker is done
* processing the command:
* callback(error: Error | null | undefined, result?: any)
*
* When this setup is done, any worker can start sending commands by calling
* the async function sendWorkerCommand().
*/
// exported types
export type ResultObject = {
error: Error | null;
result: any;
};
/**
* saved Promise for sendWorkerCommand
*/
export type CommandPromise = {
resolve: (results?: ResultObject[]) => void;
reject: (error: Error) => void;
timeout: NodeJS.Timeout | null;
};
export type HandlerCallback = (error: (Error & { code?: number }) | null | undefined, result?: any) => void;
export type HandlerFunction = (payload: object, uids: string, callback: HandlerCallback) => void;
export type HandlersMap = {
[index: string]: HandlerFunction;
};
export type PrimaryHandlerFunction = (worker: Worker, payload: object, uids: string, callback: HandlerCallback) => void;
export type PrimaryHandlersMap = Record<string, PrimaryHandlerFunction>;
// private types
type RPCMessage<T extends string, P> = {
type: T;
uids: string;
payload: P;
};
type RPCCommandMessage = RPCMessage<'cluster-rpc:command', any> & {
toWorkers: string;
toHandler: string;
};
type MarshalledResultObject = {
error: string | null;
errorCode?: number;
result: any;
};
type RPCCommandResultMessage = RPCMessage<'cluster-rpc:commandResult', MarshalledResultObject>;
type RPCCommandResultsMessage = RPCMessage<'cluster-rpc:commandResults', {
results: MarshalledResultObject[];
}>;
type RPCCommandErrorMessage = RPCMessage<'cluster-rpc:commandError', {
error: string;
}>;
interface RPCSetupOptions {
/**
* As werelogs is not a peerDependency, arsenal and a parent project
* might have their own separate versions duplicated in dependencies.
* The config are therefore not shared.
* Use this to propagate werelogs config to arsenal's ClusterRPC.
*/
werelogsConfig?: Parameters<typeof werelogs.configure>[0];
};
/**
* In primary: store worker IDs that are waiting to be dispatched
* their command's results, as a mapping.
*/
const uidsToWorkerId: {
[index: string]: number;
} = {};
/**
* In primary: store worker responses for commands in progress as a
* mapping.
*
* Result objects are 'null' while the worker is still processing the
* command. When a worker finishes processing it stores the result as:
* {
* error: string | null,
* result: any
* }
*/
const uidsToCommandResults: {
[index: string]: {
[index: number]: MarshalledResultObject | null;
};
} = {};
/**
* In workers: store promise callbacks for commands waiting to be
* dispatched, as a mapping.
*/
const uidsToCommandPromise: {
[index: string]: CommandPromise;
} = {};
function _isRpcMessage(message) {
return (message !== null &&
typeof message === 'object' &&
typeof message.type === 'string' &&
message.type.startsWith('cluster-rpc:'));
}
/**
* Setup cluster RPC system on the primary
*
* @param {object} [handlers] - mapping of handler names to handler functions
* handler function:
* `handler({Worker} worker, {object} payload, {string} uids, {function} callback)`
* handler callback must be called when worker is done with the command:
* `callback({Error|null} error, {any} [result])`
* @return {undefined}
*/
export function setupRPCPrimary(handlers?: PrimaryHandlersMap, options?: RPCSetupOptions) {
if (options?.werelogsConfig) {
werelogs.configure(options.werelogsConfig);
}
cluster.on('message', (worker, message) => {
if (_isRpcMessage(message)) {
_handlePrimaryMessage(worker, message, handlers);
}
});
}
/**
* Setup RPCs on a cluster worker process
*
* @param {object} handlers - mapping of handler names to handler functions
* handler function:
* handler({object} payload, {string} uids, {function} callback)
* handler callback must be called when worker is done with the command:
* callback({Error|null} error, {any} [result])
* @return {undefined}
* }
*/
export function setupRPCWorker(handlers: HandlersMap, options?: RPCSetupOptions) {
if (!process.send) {
throw new Error('fatal: cannot setup cluster RPC: "process.send" is not available');
}
if (options?.werelogsConfig) {
werelogs.configure(options.werelogsConfig);
}
process.on('message', (message: RPCCommandMessage | RPCCommandResultsMessage) => {
if (_isRpcMessage(message)) {
_handleWorkerMessage(message, handlers);
}
});
}
/**
* Send a command for workers to execute in parallel, and wait for results
*
* @param {string} toWorkers - which workers should execute the command
* Currently the supported values are:
* - "*", meaning all workers will execute the command
* - "PRIMARY", meaning primary process will execute the command
* @param {string} toHandler - name of handler that will execute the
* command in workers, as declared in setupRPCWorker() parameter object
* @param {string} uids - unique identifier of the command, must be
* unique across all commands in progress
* @param {object} payload - message payload, sent as-is to the handler
* @param {number} [timeoutMs=60000] - timeout the command with a
* "RequestTimeout" error after this number of milliseconds - set to 0
* to disable timeouts (the command may then hang forever)
* @returns {Promise}
*/
export async function sendWorkerCommand(
toWorkers: string,
toHandler: string,
uids: string,
payload: object,
timeoutMs: number = 60000
) {
if (typeof uids !== 'string') {
rpcLogger.error('missing or invalid "uids" field', { uids });
throw errors.MissingParameter;
}
if (uidsToCommandPromise[uids] !== undefined) {
rpcLogger.error('a command is already in progress with same uids', { uids });
throw errors.OperationAborted;
}
rpcLogger.info('sending command', { toWorkers, toHandler, uids, payload });
return new Promise((resolve, reject) => {
let timeout: NodeJS.Timeout | null = null;
if (timeoutMs) {
timeout = setTimeout(() => {
delete uidsToCommandPromise[uids];
reject(errors.RequestTimeout);
}, timeoutMs);
}
uidsToCommandPromise[uids] = { resolve, reject, timeout };
const message: RPCCommandMessage = {
type: 'cluster-rpc:command',
toWorkers,
toHandler,
uids,
payload,
};
return process.send?.(message);
});
}
/**
* Get the number of commands in flight
* @returns {number}
*/
export function getPendingCommandsCount() {
return Object.keys(uidsToCommandPromise).length;
}
function _dispatchCommandResultsToWorker(
worker: Worker,
uids: string,
resultsArray: MarshalledResultObject[]
): void {
const message: RPCCommandResultsMessage = {
type: 'cluster-rpc:commandResults',
uids,
payload: {
results: resultsArray,
},
};
worker.send(message);
}
function _dispatchCommandErrorToWorker(
worker: Worker,
uids: string,
error: Error,
): void {
const message: RPCCommandErrorMessage = {
type: 'cluster-rpc:commandError',
uids,
payload: {
error: error.message,
},
};
worker.send(message);
}
function _sendPrimaryCommandResult(
worker: Worker,
uids: string,
error: (Error & { code?: number }) | null | undefined,
result?: any
): void {
const message: RPCCommandResultsMessage = {
type: 'cluster-rpc:commandResults',
uids,
payload: {
results: [{ error: error?.message || null, errorCode: error?.code, result }],
},
};
worker.send?.(message);
}
function _handlePrimaryCommandMessage(
fromWorker: Worker,
logger: any,
message: RPCCommandMessage,
handlers?: PrimaryHandlersMap
): void {
const { toWorkers, toHandler, uids, payload } = message;
if (toWorkers === '*') {
if (uidsToWorkerId[uids] !== undefined) {
logger.warn('new command already has a waiting worker with same uids', {
uids, workerId: uidsToWorkerId[uids],
});
return undefined;
}
const commandResults = {};
for (const workerId of Object.keys(cluster.workers || {})) {
commandResults[workerId] = null;
}
uidsToWorkerId[uids] = fromWorker?.id;
uidsToCommandResults[uids] = commandResults;
for (const [workerId, worker] of Object.entries(cluster.workers || {})) {
logger.debug('sending command message to worker', {
workerId, toHandler, payload,
});
if (worker) {
worker.send(message);
}
}
} else if (toWorkers === 'PRIMARY') {
const { toHandler, uids, payload } = message;
const cb: HandlerCallback = (err, result) => _sendPrimaryCommandResult(fromWorker, uids, err, result);
if (toHandler in (handlers || {})) {
return handlers![toHandler](fromWorker, payload, uids, cb);
}
logger.error('no such handler in "toHandler" field from worker command message', {
toHandler,
});
return cb(errors.NotImplemented);
} else {
logger.error('unsupported "toWorkers" field from worker command message', {
toWorkers,
});
if (fromWorker) {
_dispatchCommandErrorToWorker(fromWorker, uids, errors.NotImplemented);
}
}
}
function _handlePrimaryCommandResultMessage(
fromWorkerId: number,
logger: any,
message: RPCCommandResultMessage
): void {
const { uids, payload } = message;
const commandResults = uidsToCommandResults[uids];
if (!commandResults) {
logger.warn('received command response message from worker for command not in flight', {
workerId: fromWorkerId,
uids,
});
return undefined;
}
if (commandResults[fromWorkerId] === undefined) {
logger.warn('received command response message with unexpected worker ID', {
workerId: fromWorkerId,
uids,
});
return undefined;
}
if (commandResults[fromWorkerId] !== null) {
logger.warn('ignoring duplicate command response from worker', {
workerId: fromWorkerId,
uids,
});
return undefined;
}
commandResults[fromWorkerId] = payload;
const commandResultsArray = Object.values(commandResults);
if (commandResultsArray.every(response => response !== null)) {
logger.debug('all workers responded to command', { uids });
const completeCommandResultsArray = <MarshalledResultObject[]> commandResultsArray;
const toWorkerId = uidsToWorkerId[uids];
const toWorker = cluster.workers?.[toWorkerId];
delete uidsToCommandResults[uids];
delete uidsToWorkerId[uids];
if (!toWorker) {
logger.warn('worker shut down while its command was executing', {
workerId: toWorkerId, uids,
});
return undefined;
}
// send back response to original worker
_dispatchCommandResultsToWorker(toWorker, uids, completeCommandResultsArray);
}
}
function _handlePrimaryMessage(
fromWorker: Worker,
message: RPCCommandMessage | RPCCommandResultMessage,
handlers?: PrimaryHandlersMap
): void {
const { type: messageType, uids } = message;
const logger = rpcLogger.newRequestLoggerFromSerializedUids(uids);
logger.debug('primary received message from worker', {
workerId: fromWorker?.id, rpcMessage: message,
});
if (messageType === 'cluster-rpc:command') {
return _handlePrimaryCommandMessage(fromWorker, logger, message, handlers);
}
if (messageType === 'cluster-rpc:commandResult') {
return _handlePrimaryCommandResultMessage(fromWorker?.id, logger, message);
}
logger.error('unsupported message type', {
workerId: fromWorker?.id, messageType, uids,
});
return undefined;
}
function _sendWorkerCommandResult(
uids: string,
error: Error | null | undefined,
result?: any
): void {
const message: RPCCommandResultMessage = {
type: 'cluster-rpc:commandResult',
uids,
payload: {
error: error ? error.message : null,
result,
},
};
process.send?.(message);
}
function _handleWorkerCommandMessage(
logger: any,
message: RPCCommandMessage,
handlers: HandlersMap
): void {
const { toHandler, uids, payload } = message;
const cb: HandlerCallback = (err, result) => _sendWorkerCommandResult(uids, err, result);
if (toHandler in handlers) {
return handlers[toHandler](payload, uids, cb);
}
logger.error('no such handler in "toHandler" field from worker command message', {
toHandler,
});
return cb(errors.NotImplemented);
}
function _handleWorkerCommandResultsMessage(
logger: any,
message: RPCCommandResultsMessage,
): void {
const { uids, payload } = message;
const { results } = payload;
const commandPromise: CommandPromise = uidsToCommandPromise[uids];
if (commandPromise === undefined) {
logger.error('missing promise for command results', { uids, payload });
return undefined;
}
if (commandPromise.timeout) {
clearTimeout(commandPromise.timeout);
}
delete uidsToCommandPromise[uids];
const unmarshalledResults = results.map(workerResult => {
let workerError: Error | null = null;
if (workerResult.error) {
if (workerResult.error in errors) {
workerError = errors[workerResult.error];
} else {
workerError = new Error(workerResult.error);
}
}
if (workerError && workerResult.errorCode) {
(workerError as Error & { code: number }).code = workerResult.errorCode;
}
const unmarshalledResult: ResultObject = {
error: workerError,
result: workerResult.result,
};
return unmarshalledResult;
});
return commandPromise.resolve(unmarshalledResults);
}
function _handleWorkerCommandErrorMessage(
logger: any,
message: RPCCommandErrorMessage,
): void {
const { uids, payload } = message;
const { error } = payload;
const commandPromise: CommandPromise = uidsToCommandPromise[uids];
if (commandPromise === undefined) {
logger.error('missing promise for command results', { uids, payload });
return undefined;
}
if (commandPromise.timeout) {
clearTimeout(commandPromise.timeout);
}
delete uidsToCommandPromise[uids];
let commandError: Error | null = null;
if (error in errors) {
commandError = errors[error];
} else {
commandError = new Error(error);
}
return commandPromise.reject(<Error> commandError);
}
function _handleWorkerMessage(
message: RPCCommandMessage | RPCCommandResultsMessage | RPCCommandErrorMessage,
handlers: HandlersMap
): void {
const { type: messageType, uids } = message;
const workerId = cluster.worker?.id;
const logger = rpcLogger.newRequestLoggerFromSerializedUids(uids);
logger.debug('worker received message from primary', {
workerId, rpcMessage: message,
});
if (messageType === 'cluster-rpc:command') {
return _handleWorkerCommandMessage(logger, message, handlers);
}
if (messageType === 'cluster-rpc:commandResults') {
return _handleWorkerCommandResultsMessage(logger, message);
}
if (messageType === 'cluster-rpc:commandError') {
return _handleWorkerCommandErrorMessage(logger, message);
}
logger.error('unsupported message type', {
workerId, messageType,
});
return undefined;
}

View File

@ -35,13 +35,7 @@ export const emptyFileMd5 = 'd41d8cd98f00b204e9800998ecf8427e';
// Version 4 add the Creation-Time and Content-Language attributes,
// and add support for x-ms-meta-* headers in UserMetadata
// Version 5 adds the azureInfo structure
// Version 6 adds a "deleted" flag that is updated to true before
// the object gets deleted. This is done to keep object metadata in the
// oplog when deleting the object, as oplog deletion events don't contain
// any metadata of the object.
// version 6 also adds the "isPHD" flag that is used to indicate that the master
// object is a placeholder and is not up to date.
export const mdModelVersion = 6;
export const mdModelVersion = 5;
/*
* Splitter is used to build the object name for the overview of a
* multipart upload and to build the object names for each part of a
@ -137,14 +131,6 @@ export const supportedNotificationEvents = new Set([
's3:ObjectTagging:Put',
's3:ObjectTagging:Delete',
's3:ObjectAcl:Put',
's3:ObjectRestore:*',
's3:ObjectRestore:Post',
's3:ObjectRestore:Completed',
's3:ObjectRestore:Delete',
's3:LifecycleTransition',
's3:LifecycleExpiration:*',
's3:LifecycleExpiration:DeleteMarkerCreated',
's3:LifecycleExpiration:Delete',
]);
export const notificationArnPrefix = 'arn:scality:bucketnotif';
// HTTP server keep-alive timeout is set to a higher value than
@ -171,7 +157,3 @@ export const maxCachedBuckets = process.env.METADATA_MAX_CACHED_BUCKETS ?
Number(process.env.METADATA_MAX_CACHED_BUCKETS) : 1000;
export const validRestoreObjectTiers = new Set(['Expedited', 'Standard', 'Bulk']);
export const maxBatchingConcurrentOperations = 5;
/** For policy resource arn check we allow empty account ID to not break compatibility */
export const policyArnAllowedEmptyAccountId = ['utapi', 'scuba'];

View File

@ -148,7 +148,7 @@ export class IndexTransaction {
'missing condition for conditional put'
);
}
if (typeof condition.notExists !== 'string' && typeof condition.exists !== 'string') {
if (typeof condition.notExists !== 'string') {
throw propError(
'unsupportedConditionalOperation',
'missing key or supported condition'

View File

@ -42,7 +42,7 @@ export const BucketAlreadyOwnedByYou: ErrorFormat = {
code: 409,
description:
'A bucket with this name exists and is already owned by you',
'Your previous request to create the named bucket succeeded and you already own it. You get this error in all AWS regions except US Standard, us-east-1. In us-east-1 region, you will get 200 OK, but it is no-op (if bucket exists S3 will not do anything).',
};
export const BucketNotEmpty: ErrorFormat = {
@ -365,11 +365,6 @@ export const NoSuchWebsiteConfiguration: ErrorFormat = {
description: 'The specified bucket does not have a website configuration',
};
export const NoSuchTagSet: ErrorFormat = {
code: 404,
description: 'The TagSet does not exist',
};
export const NoSuchUpload: ErrorFormat = {
code: 404,
description:
@ -690,11 +685,6 @@ export const ReportNotPresent: ErrorFormat = {
'The request was rejected because the credential report does not exist. To generate a credential report, use GenerateCredentialReport.',
};
export const Found: ErrorFormat = {
code: 302,
description: 'Resource Found'
};
// ------------- Special non-AWS S3 errors -------------
export const MPUinProgress: ErrorFormat = {
@ -1042,15 +1032,3 @@ export const AuthMethodNotImplemented: ErrorFormat = {
description: 'AuthMethodNotImplemented',
code: 501,
};
// --------------------- quotaErros ---------------------
export const NoSuchQuota: ErrorFormat = {
code: 404,
description: 'The specified resource does not have a quota.',
};
export const QuotaExceeded: ErrorFormat = {
code: 429,
description: 'The quota set for the resource is exceeded.',
};

View File

@ -1,19 +1,26 @@
import promClient from 'prom-client';
const collectDefaultMetricsIntervalMs =
process.env.COLLECT_DEFAULT_METRICS_INTERVAL_MS !== undefined ?
Number.parseInt(process.env.COLLECT_DEFAULT_METRICS_INTERVAL_MS, 10) :
10000;
promClient.collectDefaultMetrics({ timeout: collectDefaultMetricsIntervalMs });
export default class ZenkoMetrics {
static createCounter(params: promClient.CounterConfiguration<string>) {
static createCounter(params: promClient.CounterConfiguration) {
return new promClient.Counter(params);
}
static createGauge(params: promClient.GaugeConfiguration<string>) {
static createGauge(params: promClient.GaugeConfiguration) {
return new promClient.Gauge(params);
}
static createHistogram(params: promClient.HistogramConfiguration<string>) {
static createHistogram(params: promClient.HistogramConfiguration) {
return new promClient.Histogram(params);
}
static createSummary(params: promClient.SummaryConfiguration<string>) {
static createSummary(params: promClient.SummaryConfiguration) {
return new promClient.Summary(params);
}
@ -21,15 +28,11 @@ export default class ZenkoMetrics {
return promClient.register.getSingleMetric(name);
}
static async asPrometheus() {
static asPrometheus() {
return promClient.register.metrics();
}
static asPrometheusContentType() {
return promClient.register.contentType;
}
static collectDefaultMetrics() {
return promClient.collectDefaultMetrics();
}
}

View File

@ -1,5 +1,3 @@
import { RequestLogger } from 'werelogs';
import { legacyLocations } from '../constants';
import escapeForXml from '../s3middleware/escapeForXml';

View File

@ -8,12 +8,11 @@ import ObjectLockConfiguration from './ObjectLockConfiguration';
import BucketPolicy from './BucketPolicy';
import NotificationConfiguration from './NotificationConfiguration';
import { ACL as OACL } from './ObjectMD';
import { areTagsValid, BucketTag } from '../s3middleware/tagging';
// WHEN UPDATING THIS NUMBER, UPDATE BucketInfoModelVersion.md CHANGELOG
// BucketInfoModelVersion.md can be found in documentation/ at the root
// of this repository
const modelVersion = 16;
const modelVersion = 14;
export type CORS = {
id: string;
@ -37,41 +36,6 @@ export type VersioningConfiguration = {
MfaDelete: any;
};
export type VeeamSOSApi = {
SystemInfo?: {
ProtocolVersion: string,
ModelName: string,
ProtocolCapabilities: {
CapacityInfo: boolean,
UploadSessions: boolean,
IAMSTS?: boolean,
},
APIEndpoints?: {
IAMEndpoint: string,
STSEndpoint: string,
},
SystemRecommendations?: {
S3ConcurrentTaskLimit: number,
S3MultiObjectDelete: number,
StorageCurrentTasksLimit: number,
KbBlockSize: number,
}
LastModified?: string,
},
CapacityInfo?: {
Capacity: number,
Available: number,
Used: number,
LastModified?: string,
},
};
// Capabilities contains all specifics from external products supported by
// our S3 implementation, at bucket level
export type Capabilities = {
VeeamSOSApi?: VeeamSOSApi,
};
export type ACL = OACL & { WRITE: string[] }
export default class BucketInfo {
@ -95,13 +59,11 @@ export default class BucketInfo {
_objectLockEnabled?: boolean;
_objectLockConfiguration?: any;
_notificationConfiguration?: any;
_tags?: Array<BucketTag>;
_tags?: { key: string; value: string }[] | null;
_readLocationConstraint: string | null;
_isNFS: boolean | null;
_azureInfo: any | null;
_ingestion: { status: 'enabled' | 'disabled' } | null;
_capabilities?: Capabilities;
_quotaMax: number | 0;
/**
* Represents all bucket information.
@ -156,9 +118,6 @@ export default class BucketInfo {
* @param [objectLockEnabled] - true when object lock enabled
* @param [objectLockConfiguration] - object lock configuration
* @param [notificationConfiguration] - bucket notification configuration
* @param [tags] - bucket tag set
* @param [capabilities] - capabilities for the bucket
* @param quotaMax - bucket quota
*/
constructor(
name: string,
@ -185,9 +144,6 @@ export default class BucketInfo {
objectLockEnabled?: boolean,
objectLockConfiguration?: any,
notificationConfiguration?: any,
tags?: Array<BucketTag> | [],
capabilities?: Capabilities,
quotaMax?: number | 0,
) {
assert.strictEqual(typeof name, 'string');
assert.strictEqual(typeof owner, 'string');
@ -284,15 +240,6 @@ export default class BucketInfo {
READ_ACP: [],
};
if (tags === undefined) {
tags = [] as BucketTag[];
}
assert.strictEqual(areTagsValid(tags), true);
if (quotaMax) {
assert.strictEqual(typeof quotaMax, 'number');
assert(quotaMax >= 0, 'Quota cannot be negative');
}
// IF UPDATING PROPERTIES, INCREMENT MODELVERSION NUMBER ABOVE
this._acl = aclInstance;
this._name = name;
@ -318,9 +265,6 @@ export default class BucketInfo {
this._objectLockEnabled = objectLockEnabled || false;
this._objectLockConfiguration = objectLockConfiguration || null;
this._notificationConfiguration = notificationConfiguration || null;
this._tags = tags;
this._capabilities = capabilities || undefined;
this._quotaMax = quotaMax || 0;
return this;
}
@ -354,9 +298,6 @@ export default class BucketInfo {
objectLockEnabled: this._objectLockEnabled,
objectLockConfiguration: this._objectLockConfiguration,
notificationConfiguration: this._notificationConfiguration,
tags: this._tags,
capabilities: this._capabilities,
quotaMax: this._quotaMax,
};
const final = this._websiteConfiguration
? {
@ -382,8 +323,7 @@ export default class BucketInfo {
obj.cors, obj.replicationConfiguration, obj.lifecycleConfiguration,
obj.bucketPolicy, obj.uid, obj.readLocationConstraint, obj.isNFS,
obj.ingestion, obj.azureInfo, obj.objectLockEnabled,
obj.objectLockConfiguration, obj.notificationConfiguration, obj.tags,
obj.capabilities, obj.quotaMax);
obj.objectLockConfiguration, obj.notificationConfiguration);
}
/**
@ -410,8 +350,7 @@ export default class BucketInfo {
data._bucketPolicy, data._uid, data._readLocationConstraint,
data._isNFS, data._ingestion, data._azureInfo,
data._objectLockEnabled, data._objectLockConfiguration,
data._notificationConfiguration, data._tags, data._capabilities,
data._quotaMax);
data._notificationConfiguration);
}
/**
@ -902,69 +841,4 @@ export default class BucketInfo {
this._objectLockEnabled = enabled;
return this;
}
/**
* Get the value of bucket tags
* @return - Array of bucket tags
*/
getTags() {
return this._tags;
}
/**
* Set bucket tags
* @return - bucket info instance
*/
setTags(tags: Array<BucketTag>) {
this._tags = tags;
return this;
}
/**
* Get the value of bucket capabilities
* @return - capabilities of the bucket
*/
getCapabilities() {
return this._capabilities;
}
/**
* Get a specific bucket capability
*
* @param capability? - if provided, will return a specific capacity
* @return - capability of the bucket
*/
getCapability(capability: string) : VeeamSOSApi | undefined {
if (capability && this._capabilities && this._capabilities[capability]) {
return this._capabilities[capability];
}
return undefined;
}
/**
* Set bucket capabilities
* @return - bucket info instance
*/
setCapabilities(capabilities: Capabilities) {
this._capabilities = capabilities;
return this;
}
/**
* Get the bucket quota information
* @return quotaMax
*/
getQuota() {
return this._quotaMax;
}
/**
* Set bucket quota
* @param quota - quota to be set
* @return - bucket quota info
*/
setQuota(quota: number) {
this._quotaMax = quota || 0;
return this;
}
}

View File

@ -666,38 +666,13 @@ export default class LifecycleConfiguration {
* @return Returns an error object or `null`
*/
_checkDate(date: string) {
const isoRegex = new RegExp(
"^(-?(?:[1-9][0-9]*)?[0-9]{4})" + // Year
"-(1[0-2]|0[1-9])" + // Month
"-(3[01]|0[1-9]|[12][0-9])" + // Day
"T(2[0-3]|[01][0-9])" + // Hour
":([0-5][0-9])" + // Minute
":([0-5][0-9])" + // Second
"(\\.[0-9]+)?" + // Fractional second
"(Z|[+-][01][0-9]:[0-5][0-9])?$", // Timezone
"g"
);
const matches = [...date.matchAll(isoRegex)];
if (matches.length !== 1) {
const isoRegex = new RegExp('^(-?(?:[1-9][0-9]*)?[0-9]{4})-' +
'(1[0-2]|0[1-9])-(3[01]|0[1-9]|[12][0-9])T(2[0-3]|[01][0-9])' +
':([0-5][0-9]):([0-5][0-9])(.[0-9]+)?(Z)?$');
if (!isoRegex.test(date)) {
const msg = 'Date must be in ISO 8601 format';
return errors.InvalidArgument.customizeDescription(msg);
}
// Check for a timezone in the last match group. If none, add a Z to indicate UTC.
if (!matches[0][matches[0].length-1]) {
date += 'Z';
}
const dateObj = new Date(date);
if (Number.isNaN(dateObj.getTime())) {
const msg = 'Date is not a valid date';
return errors.InvalidArgument.customizeDescription(msg);
}
if (dateObj.getUTCHours() !== 0
|| dateObj.getUTCMinutes() !== 0
|| dateObj.getUTCSeconds() !== 0
|| dateObj.getUTCMilliseconds() !== 0) {
const msg = '\'Date\' must be at midnight GMT';
return errors.InvalidArgument.customizeDescription(msg);
}
return null;
}
@ -869,7 +844,6 @@ export default class LifecycleConfiguration {
* days: <value>,
* date: <value>,
* deleteMarker: <value>
* newerNoncurrentVersions: <value>,
* },
* ],
* }
@ -882,8 +856,7 @@ export default class LifecycleConfiguration {
actionName: string;
days?: number;
date?: number;
deleteMarker?: boolean;
newerNoncurrentVersions?: number
deleteMarker?: boolean
}[];
} = {
propName: 'actions',
@ -912,14 +885,8 @@ export default class LifecycleConfiguration {
if (action.error) {
actionsObj.error = action.error;
} else {
const actionTimes = [
'days',
'date',
'deleteMarker',
'transition',
'nonCurrentVersionTransition',
'newerNoncurrentVersions'
];
const actionTimes = ['days', 'date', 'deleteMarker',
'transition', 'nonCurrentVersionTransition'];
actionTimes.forEach(t => {
if (action[t]) {
// eslint-disable-next-line no-param-reassign
@ -1065,7 +1032,6 @@ export default class LifecycleConfiguration {
* nvExpObj = {
* error: <error>,
* days: <value>,
* newerNoncurrentVersions: <value>,
* }
*/
_parseNoncurrentVersionExpiration(rule: any) {
@ -1076,41 +1042,14 @@ export default class LifecycleConfiguration {
'NoncurrentDays');
return { error };
}
const actionParams: {
error?: ArsenalError;
days: number;
newerNoncurrentVersions: number;
} = {
days: 0,
newerNoncurrentVersions: 0,
};
const daysInt = parseInt(subNVExp.NoncurrentDays[0], 10);
if (daysInt < 1) {
const msg = 'NoncurrentDays is not a positive integer';
const error = errors.InvalidArgument.customizeDescription(msg);
return { error };
} else {
actionParams.days = daysInt;
return { days: daysInt };
}
if (subNVExp.NewerNoncurrentVersions) {
const newerVersionsInt = parseInt(subNVExp.NewerNoncurrentVersions[0], 10);
if (Number.isNaN(newerVersionsInt) || newerVersionsInt < 1) {
const msg = 'NewerNoncurrentVersions is not a positive integer';
const error = errors.InvalidArgument.customizeDescription(msg);
return { error };
}
actionParams.newerNoncurrentVersions = newerVersionsInt;
} else {
actionParams.newerNoncurrentVersions = 0;
}
return actionParams;
}
/**
@ -1173,10 +1112,6 @@ export default class LifecycleConfiguration {
assert.strictEqual(typeof t.storageClass, 'string');
});
}
if (a.newerNoncurrentVersions) {
assert.strictEqual(typeof a.newerNoncurrentVersions, 'number');
}
});
});
}
@ -1226,24 +1161,15 @@ export default class LifecycleConfiguration {
}
const Actions = actions.map(action => {
const {
actionName,
days,
date,
deleteMarker,
nonCurrentVersionTransition,
transition,
newerNoncurrentVersions,
} = action;
const { actionName, days, date, deleteMarker,
nonCurrentVersionTransition, transition } = action;
let Action: any;
if (actionName === 'AbortIncompleteMultipartUpload') {
Action = `<${actionName}><DaysAfterInitiation>${days}` +
`</DaysAfterInitiation></${actionName}>`;
} else if (actionName === 'NoncurrentVersionExpiration') {
const Days = `<NoncurrentDays>${days}</NoncurrentDays>`;
const NewerVersions = newerNoncurrentVersions ?
`<NewerNoncurrentVersions>${newerNoncurrentVersions}</NewerNoncurrentVersions>` : '';
Action = `<${actionName}>${Days}${NewerVersions}</${actionName}>`;
Action = `<${actionName}><NoncurrentDays>${days}` +
`</NoncurrentDays></${actionName}>`;
} else if (actionName === 'Expiration') {
const Days = days ? `<Days>${days}</Days>` : '';
const Date = date ? `<Date>${date}</Date>` : '';
@ -1320,18 +1246,13 @@ export default class LifecycleConfiguration {
}
actions.forEach(action => {
const { actionName, days, date, deleteMarker, newerNoncurrentVersions } = action;
const { actionName, days, date, deleteMarker } = action;
if (actionName === 'AbortIncompleteMultipartUpload') {
entry.addAbortMPU(days!);
return;
}
if (actionName === 'NoncurrentVersionExpiration') {
entry.addNCVExpiration('NoncurrentDays', days!);
if (newerNoncurrentVersions) {
entry.addNCVExpiration('NewerNoncurrentVersions', newerNoncurrentVersions!);
}
entry.addNCVExpiration(days!);
return;
}
if (actionName === 'Expiration') {
@ -1368,7 +1289,6 @@ export type Rule = {
days?: number;
date?: number;
deleteMarker?: boolean;
newerNoncurrentVersions?: number;
nonCurrentVersionTransition?: {
noncurrentDays: number;
storageClass: string;

View File

@ -10,10 +10,6 @@ export type Expiration = {
Date?: number | boolean;
Days?: number | boolean;
};
export type NoncurrentExpiration = {
NoncurrentDays: number | null;
NewerNoncurrentVersions: number | null;
};
/**
* @class LifecycleRule
@ -25,10 +21,9 @@ export default class LifecycleRule {
status: Status;
tags: Tags;
expiration?: Expiration;
ncvExpiration?: NoncurrentExpiration;
ncvExpiration?: { NoncurrentDays: number };
abortMPU?: { DaysAfterInitiation: number };
transitions?: any[];
ncvTransitions?: any[];
prefix?: string;
constructor(id: string, status: Status) {
@ -43,10 +38,9 @@ export default class LifecycleRule {
ID: string;
Status: Status;
Expiration?: Expiration;
NoncurrentVersionExpiration?: NoncurrentExpiration;
NoncurrentVersionExpiration?: { NoncurrentDays: number };
AbortIncompleteMultipartUpload?: { DaysAfterInitiation: number };
Transitions?: any[];
NoncurrentVersionTransitions?: any[];
Filter?: Filter;
Prefix?: '';
} = { ID: this.id, Status: this.status };
@ -55,7 +49,7 @@ export default class LifecycleRule {
rule.Expiration = this.expiration;
}
if (this.ncvExpiration) {
rule.NoncurrentVersionExpiration = this.ncvExpiration
rule.NoncurrentVersionExpiration = this.ncvExpiration;
}
if (this.abortMPU) {
rule.AbortIncompleteMultipartUpload = this.abortMPU;
@ -63,9 +57,6 @@ export default class LifecycleRule {
if (this.transitions) {
rule.Transitions = this.transitions;
}
if (this.ncvTransitions) {
rule.NoncurrentVersionTransitions = this.ncvTransitions;
}
const filter = this.buildFilter();
@ -145,24 +136,15 @@ export default class LifecycleRule {
/**
* NoncurrentVersionExpiration
* @param prop - Property must be defined in `validProps`
* @param value - integer for `NoncurrentDays` and `NewerNoncurrentVersions`
* @param days - NoncurrentDays
*/
addNCVExpiration(prop: 'NoncurrentDays' | 'NewerNoncurrentVersions', value: number): this;
addNCVExpiration(prop: string, value: number) {
const validProps = ['NoncurrentDays', 'NewerNoncurrentVersions'];
if (validProps.includes(prop)) {
this.ncvExpiration = this.ncvExpiration || {
NoncurrentDays: null,
NewerNoncurrentVersions: null,
};
this.ncvExpiration[prop] = value;
}
addNCVExpiration(days: number) {
this.ncvExpiration = { NoncurrentDays: days };
return this;
}
/**
* abortincompletemultipartupload
* AbortIncompleteMultipartUpload
* @param days - DaysAfterInitiation
*/
addAbortMPU(days: number) {
@ -178,13 +160,4 @@ export default class LifecycleRule {
this.transitions = transitions;
return this;
}
/**
* NonCurrentVersionTransitions
* @param nvcTransitions - NonCurrentVersionTransitions
*/
addNCVTransitions(nvcTransitions) {
this.ncvTransitions = nvcTransitions;
return this;
}
}

View File

@ -1,7 +1,6 @@
import * as crypto from 'crypto';
import * as constants from '../constants';
import * as VersionIDUtils from '../versioning/VersionID';
import { VersioningConstants } from '../versioning/constants';
import ObjectMDLocation, {
ObjectMDLocationData,
Location,
@ -57,16 +56,13 @@ export type ObjectMDData = {
'x-amz-server-side-encryption-aws-kms-key-id': string;
'x-amz-server-side-encryption-customer-algorithm': string;
'x-amz-website-redirect-location': string;
'x-amz-scal-transition-in-progress'?: boolean;
'x-amz-scal-transition-time'?: string;
azureInfo?: any;
acl: ACL;
key: string;
location: null | Location[];
// versionId, isNull, isNull2, nullVersionId and isDeleteMarker
// versionId, isNull, nullVersionId and isDeleteMarker
// should be undefined when not set explicitly
isNull?: boolean;
isNull2?: boolean;
nullVersionId?: string;
nullUploadId?: string;
isDeleteMarker?: boolean;
@ -80,16 +76,6 @@ export type ObjectMDData = {
dataStoreName: string;
originOp: string;
microVersionId?: string;
// Deletion flag
// Used for keeping object metadata in the oplog event
// In case of a deletion the flag is first updated before
// deleting the object
deleted: boolean;
// PHD flag indicates whether the object is a temporary placeholder.
// This is the case when the latest version of an object gets deleted
// the master is set as a placeholder and gets updated with the new latest
// version data after a certain amount of time.
isPHD: boolean;
};
/**
@ -197,7 +183,6 @@ export default class ObjectMD {
'x-amz-server-side-encryption-aws-kms-key-id': '',
'x-amz-server-side-encryption-customer-algorithm': '',
'x-amz-website-redirect-location': '',
'x-amz-scal-transition-in-progress': false,
acl: {
Canned: 'private',
FULL_CONTROL: [],
@ -211,7 +196,6 @@ export default class ObjectMD {
// versionId, isNull, nullVersionId and isDeleteMarker
// should be undefined when not set explicitly
isNull: undefined,
isNull2: undefined,
nullVersionId: undefined,
nullUploadId: undefined,
isDeleteMarker: undefined,
@ -231,8 +215,6 @@ export default class ObjectMD {
},
dataStoreName: '',
originOp: '',
deleted: false,
isPHD: false,
};
}
@ -646,48 +628,6 @@ export default class ObjectMD {
return this._data['x-amz-website-redirect-location'];
}
/**
* Set metadata transition in progress value
*
* @param inProgress - True if transition is in progress, false otherwise
* @param transitionTime - Date when the transition started
* @return itself
*/
setTransitionInProgress(inProgress: false): this
setTransitionInProgress(inProgress: true, transitionTime: Date|string|number): this
setTransitionInProgress(inProgress: boolean, transitionTime?: Date|string|number) {
this._data['x-amz-scal-transition-in-progress'] = inProgress;
if (!inProgress || !transitionTime) {
delete this._data['x-amz-scal-transition-time'];
} else {
if (typeof transitionTime === 'number') {
transitionTime = new Date(transitionTime);
}
if (transitionTime instanceof Date) {
transitionTime = transitionTime.toISOString();
}
this._data['x-amz-scal-transition-time'] = transitionTime;
}
return this;
}
/**
* Get metadata transition in progress value
*
* @return True if transition is in progress, false otherwise
*/
getTransitionInProgress() {
return this._data['x-amz-scal-transition-in-progress'];
}
/**
* Gets the transition time of the object.
* @returns The transition time of the object.
*/
getTransitionTime() {
return this._data['x-amz-scal-transition-time'];
}
/**
* Set access control list
*
@ -836,31 +776,6 @@ export default class ObjectMD {
return this._data.isNull || false;
}
/**
* Set metadata isNull2 value
*
* @param isNull2 - Whether new version is null or not AND has
* been put with a Cloudserver handling null keys (i.e. supporting
* S3C-7352)
* @return itself
*/
setIsNull2(isNull2: boolean) {
this._data.isNull2 = isNull2;
return this;
}
/**
* Get metadata isNull2 value
*
* @return isNull2 - Whether new version is null or not AND has
* been put with a Cloudserver handling null keys (i.e. supporting
* S3C-7352)
*/
getIsNull2() {
return this._data.isNull2 || false;
}
/**
* Set metadata nullVersionId value
*
@ -952,9 +867,6 @@ export default class ObjectMD {
* @return The object versionId
*/
getVersionId() {
if (this.getIsNull()) {
return VersioningConstants.ExternalNullVersionId;
}
return this._data.versionId;
}
@ -962,16 +874,13 @@ export default class ObjectMD {
* Get metadata versionId value in encoded form (the one visible
* to the S3 API user)
*
* @return {undefined|string} The encoded object versionId
* @return The encoded object versionId
*/
getEncodedVersionId() {
const versionId = this.getVersionId();
if (versionId === VersioningConstants.ExternalNullVersionId) {
return versionId;
} else if (versionId) {
if (versionId) {
return VersionIDUtils.encode(versionId);
}
return undefined;
}
/**
@ -1445,40 +1354,4 @@ export default class ObjectMD {
}
return this;
}
/**
* Set deleted flag
* @param {Boolean} value deleted object
* @return {ObjectMD}
*/
setDeleted(value) {
this._data.deleted = value;
return this;
}
/**
* Get deleted flag
* @return {Boolean}
*/
getDeleted() {
return this._data.deleted;
}
/**
* Set isPHD flag
* @param {Boolean} value isPHD value
* @return {ObjectMD}
*/
setIsPHD(value) {
this._data.isPHD = value;
return this;
}
/**
* Get isPHD flag
* @return {Boolean}
*/
getIsPHD() {
return this._data.isPHD;
}
}

View File

@ -1,8 +1,6 @@
import assert from 'assert';
import UUID from 'uuid';
import { RequestLogger } from 'werelogs';
import escapeForXml from '../s3middleware/escapeForXml';
import errors from '../errors';
import { isValidBucketName } from '../s3routes/routesUtils';
@ -361,11 +359,6 @@ export default class ReplicationConfiguration {
(endpoint: any) => endpoint.site === storageClass
);
if (endpoint) {
// We do not support replication to cold location.
// Only transition to cold location is supported.
if (endpoint.site && this._config.locationConstraints[endpoint.site]?.isCold) {
return false;
}
// If this._hasScalityDestination was not set to true in any
// previous iteration or by a prior rule's storage class, then
// check if the current endpoint is a Scality destination.

View File

@ -1,6 +1,5 @@
import * as http from 'http';
import * as https from 'https';
import { https as HttpsAgent } from 'httpagent';
import * as tls from 'tls';
import * as net from 'net';
import assert from 'assert';
@ -410,11 +409,7 @@ export default class Server {
method: 'arsenal.network.Server.start',
port: this._port,
});
this._https.agent = new HttpsAgent.Agent(this._https, {
// Do not enforce the maximum number of sockets for the
// main server, as it might be able to serve more clients.
maxSockets: false,
});
this._https.agent = new https.Agent(this._https);
this._server = https.createServer(this._https,
(req, res) => this._onRequest(req, res));
} else {
@ -435,6 +430,7 @@ export default class Server {
this._server.on('connection', sock => {
// Setting no delay of the socket to the value configured
// TODO fix this
// @ts-expect-errors
sock.setNoDelay(this.isNoDelay());
sock.on('error', err => this._logger.info(
'socket error - request rejected', { error: err }));

View File

@ -77,11 +77,10 @@ export function getByteRangeFromSpec(
objectSize - 1] };
}
if (rangeSpec.start < objectSize) {
// test is false if end is undefined or end is greater than objectSize
const end: number = rangeSpec.end !== undefined && rangeSpec.end < objectSize
? rangeSpec.end
: objectSize - 1;
return { range: [rangeSpec.start, end] };
// test is false if end is undefined
return { range: [rangeSpec.start,
((rangeSpec.end && (rangeSpec.end < objectSize)) ?
rangeSpec.end : objectSize - 1)] };
}
return { error: errors.InvalidRange };
}

View File

@ -20,7 +20,7 @@ function _ttlvPadVector(vec: any[]) {
return vec;
}
function _throwError(logger: werelogs.Logger, msg: string, data?: LogDictionary) {
function _throwError(logger: werelogs.Logger, msg: string, data?: LogDictionnary) {
logger.error(msg, data);
throw Error(msg);
}

View File

@ -62,7 +62,7 @@ export default class HealthProbeServer extends httpServer {
_onLiveness(
_req: http.IncomingMessage,
res: http.ServerResponse,
log: werelogs.RequestLogger,
log: RequestLogger,
) {
if (this._livenessCheck(log)) {
sendSuccess(res, log);
@ -74,7 +74,7 @@ export default class HealthProbeServer extends httpServer {
_onReadiness(
_req: http.IncomingMessage,
res: http.ServerResponse,
log: werelogs.RequestLogger,
log: RequestLogger,
) {
if (this._readinessCheck(log)) {
sendSuccess(res, log);
@ -84,11 +84,10 @@ export default class HealthProbeServer extends httpServer {
}
// expose metrics to Prometheus
async _onMetrics(_req: http.IncomingMessage, res: http.ServerResponse) {
const metrics = await ZenkoMetrics.asPrometheus();
_onMetrics(_req: http.IncomingMessage, res: http.ServerResponse) {
res.writeHead(200, {
'Content-Type': ZenkoMetrics.asPrometheusContentType(),
});
res.end(metrics);
res.end(ZenkoMetrics.asPrometheus());
}
}

View File

@ -16,7 +16,7 @@ export const DEFAULT_METRICS_ROUTE = '/metrics';
* @param log - Werelogs instance for logging if you choose to
*/
export type ProbeDelegate = (res: http.ServerResponse, log: werelogs.RequestLogger) => string | void
export type ProbeDelegate = (res: http.ServerResponse, log: RequestLogger) => string | void
export type ProbeServerParams = {
port: number;

View File

@ -1,7 +1,4 @@
import * as http from 'http';
import { RequestLogger } from 'werelogs';
import { ArsenalError } from '../../errors';
/**

View File

@ -4,7 +4,7 @@ import * as werelogs from 'werelogs';
import * as constants from '../../constants';
import * as utils from './utils';
import errors, { ArsenalError } from '../../errors';
import { http as HttpAgent } from 'httpagent';
import HttpAgent from 'agentkeepalive';
import * as stream from 'stream';
function setRequestUids(reqHeaders: http.IncomingHttpHeaders, reqUids: string) {
@ -71,7 +71,7 @@ function makeErrorFromHTTPResponse(response: http.IncomingMessage) {
export default class RESTClient {
host: string;
port: number;
httpAgent: http.Agent;
httpAgent: HttpAgent;
logging: werelogs.Logger;
isPassthrough: boolean;
@ -98,10 +98,10 @@ export default class RESTClient {
this.port = params.port;
this.isPassthrough = params.isPassthrough || false;
this.logging = new (params.logApi || werelogs).Logger('DataFileRESTClient');
this.httpAgent = new HttpAgent.Agent({
this.httpAgent = new HttpAgent({
keepAlive: true,
freeSocketTimeout: constants.httpClientFreeSocketTimeout,
}) as http.Agent;
});
}
/** Destroy the HTTP agent, forcing a close of the remaining open connections */
@ -119,7 +119,7 @@ export default class RESTClient {
method: string,
headers: http.OutgoingHttpHeaders | null,
key: string | null,
log: werelogs.RequestLogger,
log: RequestLogger,
responseCb: (res: http.IncomingMessage) => void,
) {
const reqHeaders = headers || {};

View File

@ -25,7 +25,7 @@ function setContentRange(
function sendError(
res: http.ServerResponse,
log: werelogs.RequestLogger,
log: RequestLogger,
error: ArsenalError,
optMessage?: string,
) {
@ -68,6 +68,7 @@ export default class RESTServer extends httpServer {
}) {
assert(params.port);
// @ts-expect-error
werelogs.configure({
level: params.log.logLevel,
dump: params.log.dumpLevel,
@ -141,7 +142,7 @@ export default class RESTServer extends httpServer {
_onPut(
req: http.IncomingMessage,
res: http.ServerResponse,
log: werelogs.RequestLogger,
log: RequestLogger,
) {
let size: number;
try {
@ -183,7 +184,7 @@ export default class RESTServer extends httpServer {
_onGet(
req: http.IncomingMessage,
res: http.ServerResponse,
log: werelogs.RequestLogger,
log: RequestLogger,
) {
let pathInfo: ReturnType<typeof parseURL>;
let rangeSpec: ReturnType<typeof httpUtils.parseRangeSpec> | undefined =
@ -266,7 +267,7 @@ export default class RESTServer extends httpServer {
_onDelete(
req: http.IncomingMessage,
res: http.ServerResponse,
log: werelogs.RequestLogger,
log: RequestLogger,
) {
let pathInfo: ReturnType<typeof parseURL>;
try {

View File

@ -1,6 +1,6 @@
import ioClient from 'socket.io-client';
import * as http from 'http';
import { Server as IOServer } from 'socket.io';
import io from 'socket.io';
import * as sioStream from './sio-stream';
import async from 'async';
import assert from 'assert';
@ -497,7 +497,7 @@ export function RPCServer(params: {
assert(params.logger);
const httpServer = http.createServer();
const server = new IOServer(httpServer, { maxHttpBufferSize: 1e8 });
const server = io(httpServer);
const log = params.logger;
/**
@ -508,7 +508,7 @@ export function RPCServer(params: {
*
* @param {BaseService} serviceList - list of services to register
*/
(server as any).registerServices = function registerServices(...serviceList: any[]) {
server.registerServices = function registerServices(...serviceList: any[]) {
serviceList.forEach(service => {
const sock = this.of(service.namespace);
sock.on('connection', conn => {
@ -536,7 +536,7 @@ export function RPCServer(params: {
});
};
(server as any).listen = function listen(port, bindAddress = undefined) {
server.listen = function listen(port, bindAddress = undefined) {
httpServer.listen(port, bindAddress);
};

View File

@ -38,7 +38,7 @@
},
"principalAWSUserArn": {
"type": "string",
"pattern": "^arn:aws:iam::[0-9]{12}:user/(?!\\*)[\\w+=,.@ -/]{1,2017}$"
"pattern": "^arn:aws:iam::[0-9]{12}:user/(?!\\*)[\\w+=,.@ -/]{1,64}$"
},
"principalAWSRoleArn": {
"type": "string",
@ -360,9 +360,6 @@
"type": "string",
"const": "2012-10-17"
},
"Id": {
"type": "string"
},
"Statement": {
"oneOf": [
{

View File

@ -28,7 +28,7 @@
},
"principalAWSUserArn": {
"type": "string",
"pattern": "^arn:aws:iam::[0-9]{12}:user/(?!\\*)[\\w+=,.@ -/]{1,2017}$"
"pattern": "^arn:aws:iam::[0-9]{12}:user/(?!\\*)[\\w+=,.@ -/]{1,64}$"
},
"principalAWSRoleArn": {
"type": "string",

View File

@ -12,39 +12,13 @@ import {
actionMapSSO,
actionMapSTS,
actionMapMetadata,
actionMapScuba,
} from './utils/actionMaps';
export const actionNeedQuotaCheck = {
const _actionNeedQuotaCheck = {
objectPut: true,
objectPutVersion: true,
objectPutPart: true,
objectRestore: true,
};
/**
* This variable describes APIs that change the bytes
* stored, requiring quota updates
*/
export const actionWithDataDeletion = {
objectDelete: true,
objectDeleteVersion: true,
multipartDelete: true,
multiObjectDelete: true,
};
/**
* The function returns true if the current API call is a copy object
* and the action requires a quota evaluation logic, post retrieval
* of the object metadata.
* @param {string} action - the action being performed
* @param {string} currentApi - the current API being called
* @return {boolean} - whether the action requires a quota check
*/
export function actionNeedQuotaCheckCopy(action: string, currentApi: string) {
return action === 'objectGet' && (currentApi === 'objectCopy' || currentApi === 'objectPutCopyPart');
}
function _findAction(service: string, method: string) {
switch (service) {
case 's3':
@ -62,8 +36,6 @@ function _findAction(service: string, method: string) {
return actionMapSTS[method];
case 'metadata':
return actionMapMetadata[method];
case 'scuba':
return actionMapScuba[method];
default:
return undefined;
}
@ -133,10 +105,6 @@ function _buildArn(
return `arn:scality:metadata::${requesterInfo!.accountid}:` +
`${generalResource}/`;
}
case 'scuba': {
return `arn:scality:scuba::${requesterInfo!.accountid}:` +
`${generalResource}${specificResource ? '/' + specificResource : ''}`;
}
default:
return undefined;
}
@ -200,12 +168,12 @@ export default class RequestContext {
_policyArn: string;
_action?: string;
_needQuota: boolean;
_postXml?: string;
_requestObjTags: string | null;
_existingObjTag: string | null;
_needTagEval: boolean;
_foundAction?: string;
_foundResource?: string;
_objectLockRetentionDays?: number | null;
constructor(
headers: { [key: string]: string | string[] },
@ -224,10 +192,7 @@ export default class RequestContext {
securityToken: string,
policyArn: string,
action?: string,
requestObjTags?: string,
existingObjTag?: string,
needTagEval?: false,
objectLockRetentionDays?: number,
postXml?: string,
) {
this._headers = headers;
this._query = query;
@ -256,12 +221,11 @@ export default class RequestContext {
this._securityToken = securityToken;
this._policyArn = policyArn;
this._action = action;
this._needQuota = actionNeedQuotaCheck[apiMethod] === true
|| actionWithDataDeletion[apiMethod] === true;
this._requestObjTags = requestObjTags || null;
this._existingObjTag = existingObjTag || null;
this._needTagEval = needTagEval || false;
this._objectLockRetentionDays = objectLockRetentionDays || null;
this._needQuota = _actionNeedQuotaCheck[apiMethod] === true;
this._postXml = postXml;
this._requestObjTags = null;
this._existingObjTag = null;
this._needTagEval = false;
return this;
}
@ -274,7 +238,7 @@ export default class RequestContext {
apiMethod: this._apiMethod,
headers: this._headers,
query: this._query,
requesterInfo: this._requesterInfo,
requersterInfo: this._requesterInfo,
requesterIp: this._requesterIp,
sslEnabled: this._sslEnabled,
awsService: this._awsService,
@ -290,10 +254,10 @@ export default class RequestContext {
securityToken: this._securityToken,
policyArn: this._policyArn,
action: this._action,
postXml: this._postXml,
requestObjTags: this._requestObjTags,
existingObjTag: this._existingObjTag,
needTagEval: this._needTagEval,
objectLockRetentionDays: this._objectLockRetentionDays,
};
return JSON.stringify(requestInfo);
}
@ -314,28 +278,12 @@ export default class RequestContext {
if (resource) {
obj.specificResource = resource;
}
return new RequestContext(
obj.headers,
obj.query,
obj.generalResource,
obj.specificResource,
obj.requesterIp,
obj.sslEnabled,
obj.apiMethod,
obj.awsService,
obj.locationConstraint,
obj.requesterInfo,
obj.signatureVersion,
obj.authType,
obj.signatureAge,
obj.securityToken,
obj.policyArn,
obj.action,
obj.requestObjTags,
obj.existingObjTag,
obj.needTagEval,
obj.objectLockRetentionDays,
);
return new RequestContext(obj.headers, obj.query, obj.generalResource,
obj.specificResource, obj.requesterIp, obj.sslEnabled,
obj.apiMethod, obj.awsService, obj.locationConstraint,
obj.requesterInfo, obj.signatureVersion,
obj.authType, obj.signatureAge, obj.securityToken, obj.policyArn,
obj.action, obj.postXml);
}
/**
@ -679,6 +627,26 @@ export default class RequestContext {
return this._needQuota;
}
/**
* Set request post
*
* @param postXml - request post
* @return itself
*/
setPostXml(postXml: string) {
this._postXml = postXml;
return this;
}
/**
* Get request post
*
* @return request post
*/
getPostXml() {
return this._postXml;
}
/**
* Set request object tags
*
@ -738,24 +706,4 @@ export default class RequestContext {
getNeedTagEval() {
return this._needTagEval;
}
/**
* Get object lock retention days
*
* @returns objectLockRetentionDays - object lock retention days
*/
getObjectLockRetentionDays() {
return this._objectLockRetentionDays;
}
/**
* Set object lock retention days
*
* @param objectLockRetentionDays - object lock retention days
* @returns itself
*/
setObjectLockRetentionDays(objectLockRetentionDays: number) {
this._objectLockRetentionDays = objectLockRetentionDays;
return this;
}
}

View File

@ -13,11 +13,7 @@ const operatorsWithVariables = ['StringEquals', 'StringNotEquals',
const operatorsWithNegation = ['StringNotEquals',
'StringNotEqualsIgnoreCase', 'StringNotLike', 'ArnNotEquals',
'ArnNotLike', 'NumericNotEquals'];
const tagConditions = new Set([
's3:ExistingObjectTag',
's3:RequestObjectTagKey',
's3:RequestObjectTagKeys',
]);
const tagConditions = new Set(['s3:ExistingObjectTag', 's3:RequestObjectTagKey', 's3:RequestObjectTagKeys']);
/**
@ -28,11 +24,11 @@ const tagConditions = new Set([
* @param log - logger
* @return true if applicable, false if not
*/
export function isResourceApplicable(
export const isResourceApplicable = (
requestContext: RequestContext,
statementResource: string | string[],
log: Logger,
): boolean {
): boolean => {
const resource = requestContext.getResource();
if (!Array.isArray(statementResource)) {
// eslint-disable-next-line no-param-reassign
@ -63,7 +59,7 @@ export function isResourceApplicable(
{ requestResource: resource });
// If no match found, no resource is applicable
return false;
}
};
/**
* Check whether action in policy statement applies to request
@ -73,11 +69,11 @@ export function isResourceApplicable(
* @param log - logger
* @return true if applicable, false if not
*/
export function isActionApplicable(
export const isActionApplicable = (
requestAction: string,
statementAction: string | string[],
log: Logger,
): boolean {
): boolean => {
if (!Array.isArray(statementAction)) {
// eslint-disable-next-line no-param-reassign
statementAction = [statementAction];
@ -99,33 +95,32 @@ export function isActionApplicable(
{ requestAction });
// If no match found, return false
return false;
}
};
/**
* Check whether request meets policy conditions
* @param {RequestContext} requestContext - info about request
* @param {object} statementCondition - Condition statement from policy
* @param {Logger} log - logger
* @return {boolean|null} a condition evaluation result, one of:
* - true: condition is met
* - false: condition is not met
* - null: condition evaluation requires additional info to be
* provided (namely, for tag conditions, request tags and/or object
* tags have to be provided to evaluate the condition)
* @param requestContext - info about request
* @param statementCondition - Condition statement from policy
* @param log - logger
* @return contains whether conditions are allowed and whether they
* contain any tag condition keys
*/
export function meetConditions(
export const meetConditions = (
requestContext: RequestContext,
statementCondition: any,
log: Logger,
): boolean | null {
let hasTagConditions = false;
) => {
// The Condition portion of a policy is an object with different
// operators as keys
for (const operator of Object.keys(statementCondition)) {
const conditionEval = {};
const operators = Object.keys(statementCondition);
const length = operators.length;
for (let i = 0; i < length; i++) {
const operator = operators[i];
const hasPrefix = operator.includes(':');
const hasIfExistsCondition = operator.endsWith('IfExists');
// If has "IfExists" added to operator name, or operator has "ForAnyValue" or
// "ForAllValues" prefix, find operator name without "IfExists" or prefix
// "For All Values" prefix, find operator name without "IfExists" or prefix
let bareOperator = hasIfExistsCondition ? operator.slice(0, -8) :
operator;
let prefix: string | undefined;
@ -140,6 +135,10 @@ export function meetConditions(
// Note: this should be the actual operator name, not the bareOperator
const conditionsWithSameOperator = statementCondition[operator];
const conditionKeys = Object.keys(conditionsWithSameOperator);
if (conditionKeys.some(key => tagConditions.has(key)) && !requestContext.getNeedTagEval()) {
// @ts-expect-error
conditionEval.tagConditions = true;
}
const conditionKeysLength = conditionKeys.length;
for (let j = 0; j < conditionKeysLength; j++) {
const key = conditionKeys[j];
@ -156,10 +155,6 @@ export function meetConditions(
// tag key is included in condition key and needs to be
// moved to value for evaluation, otherwise key/value are unchanged
const [transformedKey, transformedValue] = transformTagKeyValue(key, value);
if (tagConditions.has(transformedKey) && !requestContext.getNeedTagEval()) {
hasTagConditions = true;
continue;
}
// Pull key using requestContext
// TODO: If applicable to S3, handle policy set operations
// where a keyBasedOnRequestContext returns multiple values and
@ -185,10 +180,11 @@ export function meetConditions(
log.trace('condition not satisfied due to ' +
'missing info', { operator,
conditionKey: transformedKey, policyValue: transformedValue });
return false;
return { allow: false };
}
// If condition operator prefix is included, the key should be an array
if (prefix && !Array.isArray(keyBasedOnRequestContext)) {
// @ts-expect-error
keyBasedOnRequestContext = [keyBasedOnRequestContext];
}
// Transalate operator into function using bareOperator
@ -200,16 +196,14 @@ export function meetConditions(
if (!operatorFunction(keyBasedOnRequestContext, transformedValue, prefix)) {
log.trace('did not satisfy condition', { operator: bareOperator,
keyBasedOnRequestContext, policyValue: transformedValue });
return false;
return { allow: false };
}
}
}
// one or more conditions required tag info to be evaluated
if (hasTagConditions) {
return null;
}
return true;
}
// @ts-expect-error
conditionEval.allow = true;
return conditionEval;
};
/**
* Evaluate whether a request is permitted under a policy.
@ -222,15 +216,13 @@ export function meetConditions(
* @return Allow if permitted, Deny if not permitted or Neutral
* if not applicable
*/
export function evaluatePolicy(
export const evaluatePolicy = (
requestContext: RequestContext,
policy: any,
log: Logger,
): string {
): string => {
// TODO: For bucket policies need to add Principal evaluation
let allow = false;
let allowWithTagCondition = false;
let denyWithTagCondition = false;
let verdict = 'Neutral';
if (!Array.isArray(policy.Statement)) {
// eslint-disable-next-line no-param-reassign
@ -267,18 +259,10 @@ export function evaluatePolicy(
}
const conditionEval = currentStatement.Condition ?
meetConditions(requestContext, currentStatement.Condition, log) :
true;
null;
// If do not meet conditions move on to next statement
if (conditionEval === false) {
continue;
}
// If condition needs tag info to be evaluated, mark and move on to next statement
if (conditionEval === null) {
if (currentStatement.Effect === 'Deny') {
denyWithTagCondition = true;
} else {
allowWithTagCondition = true;
}
// @ts-expect-error
if (conditionEval && !conditionEval.allow) {
continue;
}
if (currentStatement.Effect === 'Deny') {
@ -287,30 +271,19 @@ export function evaluatePolicy(
return 'Deny';
}
log.trace('Allow statement applies');
// statement is applicable, conditions are met and Effect is
// to Allow
allow = true;
}
let verdict;
if (denyWithTagCondition) {
// priority is on checking tags to potentially deny
verdict = 'DenyWithTagCondition';
} else if (allow) {
// at least one statement is an allow
// If statement is applicable, conditions are met and Effect is
// to Allow, set verdict to Allow
verdict = 'Allow';
} else if (allowWithTagCondition) {
// all allow statements need tag checks
verdict = 'AllowWithTagCondition';
} else {
// no statement matched to allow or deny
verdict = 'Neutral';
// @ts-expect-error
if (conditionEval && conditionEval.tagConditions) {
verdict = 'NeedTagConditionEval';
}
}
log.trace('result of evaluating single policy', { verdict });
return verdict;
}
};
/**
* @deprecated Upgrade to standardEvaluateAllPolicies
* Evaluate whether a request is permitted under a policy.
* @param requestContext - Info necessary to
* evaluate permission
@ -321,58 +294,24 @@ export function evaluatePolicy(
* @return Allow if permitted, Deny if not permitted.
* Default is to Deny. Deny overrides an Allow
*/
export function evaluateAllPolicies(
export const evaluateAllPolicies = (
requestContext: RequestContext,
allPolicies: any[],
log: Logger,
): string {
return standardEvaluateAllPolicies(requestContext, allPolicies, log).verdict;
}
export function standardEvaluateAllPolicies(
requestContext: RequestContext,
allPolicies: any[],
log: Logger,
): {
verdict: string;
isImplicit: boolean;
} {
): string => {
log.trace('evaluating all policies');
let allow = false;
let allowWithTagCondition = false;
let denyWithTagCondition = false;
let verdict = 'Deny';
for (let i = 0; i < allPolicies.length; i++) {
const singlePolicyVerdict = evaluatePolicy(requestContext, allPolicies[i], log);
const singlePolicyVerdict =
evaluatePolicy(requestContext, allPolicies[i], log);
// If there is any Deny, just return Deny
if (singlePolicyVerdict === 'Deny') {
return {
verdict: 'Deny',
isImplicit: false,
};
return 'Deny';
}
if (singlePolicyVerdict === 'Allow') {
allow = true;
} else if (singlePolicyVerdict === 'AllowWithTagCondition') {
allowWithTagCondition = true;
} else if (singlePolicyVerdict === 'DenyWithTagCondition') {
denyWithTagCondition = true;
} // else 'Neutral'
}
let verdict;
let isImplicit = false;
if (allow) {
if (denyWithTagCondition) {
verdict = 'NeedTagConditionEval';
} else {
verdict = 'Allow';
}
} else {
if (allowWithTagCondition) {
verdict = 'NeedTagConditionEval';
} else {
verdict = 'Deny';
isImplicit = true;
}
}
log.trace('result of evaluating all policies', { verdict, isImplicit });
return { verdict, isImplicit };
}
log.trace('result of evaluating all pollicies', { verdict });
return verdict;
};

View File

@ -23,22 +23,15 @@ export default class Principal {
* @param statement - Statement policy field
* @return True if meet conditions
*/
static _evaluateStatement(
static _evaluateCondition(
params: Params,
statement: Statement,
): 'Neutral' | 'Allow' | 'Deny' {
const reverse = !!statement.NotPrincipal;
if (reverse) {
// In case of anonymous NotPrincipal, this will neutral everyone
return 'Neutral';
}
// TODO Fix return type
): any {
if (statement.Condition) {
const conditionEval = meetConditions(params.rc, statement.Condition, params.log);
if (conditionEval === false || conditionEval === null) {
return 'Neutral';
return meetConditions(params.rc, statement.Condition, params.log);
}
}
return statement.Effect;
return true;
}
/**
@ -55,12 +48,19 @@ export default class Principal {
statement: Statement,
valids: Valid,
): 'Neutral' | 'Allow' | 'Deny' {
const principal = (statement.Principal || statement.NotPrincipal)!;
const reverse = !!statement.NotPrincipal;
if (typeof principal === 'string') {
if (principal === '*') {
return Principal._evaluateStatement(params, statement);
const principal = (statement.Principal || statement.NotPrincipal)!;
if (typeof principal === 'string' && principal === '*') {
if (reverse) {
// In case of anonymous NotPrincipal, this will neutral everyone
return 'Neutral';
}
const conditionEval = Principal._evaluateCondition(params, statement);
if (!conditionEval || conditionEval.allow === false) {
return 'Neutral';
}
return statement.Effect;
} else if (typeof principal === 'string') {
return 'Deny';
}
let ref = [];
@ -82,8 +82,28 @@ export default class Principal {
}
toCheck = Array.isArray(toCheck) ? toCheck : [toCheck];
ref = Array.isArray(ref) ? ref : [ref];
if (toCheck.includes('*') || ref.some(r => toCheck.includes(r))) {
return Principal._evaluateStatement(params, statement);
if (toCheck.indexOf('*') !== -1) {
if (reverse) {
return 'Neutral';
}
const conditionEval = Principal._evaluateCondition(params, statement);
if (!conditionEval || conditionEval.allow === false) {
return 'Neutral';
}
return statement.Effect;
}
const len = ref.length;
for (let i = 0; i < len; ++i) {
if (toCheck.indexOf(ref[i]) !== -1) {
if (reverse) {
return 'Neutral';
}
const conditionEval = Principal._evaluateCondition(params, statement);
if (!conditionEval || conditionEval.allow === false) {
return 'Neutral';
}
return statement.Effect;
}
}
if (reverse) {
return statement.Effect;

View File

@ -4,14 +4,14 @@ const sharedActionMap = {
bucketDeleteEncryption: 's3:PutEncryptionConfiguration',
bucketDeletePolicy: 's3:DeleteBucketPolicy',
bucketDeleteWebsite: 's3:DeleteBucketWebsite',
bucketDeleteTagging: 's3:PutBucketTagging',
bucketDeleteTagging: 's3:DeleteBucketTagging',
bucketGet: 's3:ListBucket',
bucketGetACL: 's3:GetBucketAcl',
bucketGetCors: 's3:GetBucketCORS',
bucketGetEncryption: 's3:GetEncryptionConfiguration',
bucketGetLifecycle: 's3:GetLifecycleConfiguration',
bucketGetLocation: 's3:GetBucketLocation',
bucketGetNotification: 's3:GetBucketNotification',
bucketGetNotification: 's3:GetBucketNotificationConfiguration',
bucketGetObjectLock: 's3:GetBucketObjectLockConfiguration',
bucketGetPolicy: 's3:GetBucketPolicy',
bucketGetReplication: 's3:GetReplicationConfiguration',
@ -23,7 +23,7 @@ const sharedActionMap = {
bucketPutCors: 's3:PutBucketCORS',
bucketPutEncryption: 's3:PutEncryptionConfiguration',
bucketPutLifecycle: 's3:PutLifecycleConfiguration',
bucketPutNotification: 's3:PutBucketNotification',
bucketPutNotification: 's3:PutBucketNotificationConfiguration',
bucketPutObjectLock: 's3:PutBucketObjectLockConfiguration',
bucketPutPolicy: 's3:PutBucketPolicy',
bucketPutReplication: 's3:PutReplicationConfiguration',
@ -42,7 +42,6 @@ const sharedActionMap = {
objectGetLegalHold: 's3:GetObjectLegalHold',
objectGetRetention: 's3:GetObjectRetention',
objectGetTagging: 's3:GetObjectTagging',
objectHead: 's3:GetObject',
objectPut: 's3:PutObject',
objectPutACL: 's3:PutObjectAcl',
objectPutLegalHold: 's3:PutObjectLegalHold',
@ -52,12 +51,6 @@ const sharedActionMap = {
objectPutVersion: 's3:PutObjectVersion',
};
const actionMapBucketQuotas = {
bucketGetQuota: 'scality:GetBucketQuota',
bucketUpdateQuota: 'scality:UpdateBucketQuota',
bucketDeleteQuota: 'scality:DeleteBucketQuota',
};
// action map used for request context
const actionMapRQ = {
bucketPut: 's3:CreateBucket',
@ -65,35 +58,36 @@ const actionMapRQ = {
// see http://docs.aws.amazon.com/AmazonS3/latest/API/
// RESTBucketDELETEcors.html
bucketDeleteCors: 's3:PutBucketCORS',
bucketDeleteReplication: 's3:PutReplicationConfiguration',
bucketDeleteLifecycle: 's3:PutLifecycleConfiguration',
bucketDeleteReplication: 's3:DeleteReplicationConfiguration',
bucketDeleteLifecycle: 's3:DeleteLifecycleConfiguration',
completeMultipartUpload: 's3:PutObject',
initiateMultipartUpload: 's3:PutObject',
objectDeleteVersion: 's3:DeleteObjectVersion',
objectDeleteTaggingVersion: 's3:DeleteObjectVersionTagging',
objectGetArchiveInfo: 'scality:GetObjectArchiveInfo',
objectGetVersion: 's3:GetObjectVersion',
objectGetACLVersion: 's3:GetObjectVersionAcl',
objectGetTaggingVersion: 's3:GetObjectVersionTagging',
objectHead: 's3:GetObject',
objectPutACLVersion: 's3:PutObjectVersionAcl',
objectPutPart: 's3:PutObject',
objectPutTaggingVersion: 's3:PutObjectVersionTagging',
serviceGet: 's3:ListAllMyBuckets',
objectReplicate: 's3:ReplicateObject',
objectGetRetentionVersion: 's3:GetObjectRetention',
objectPutRetentionVersion: 's3:PutObjectRetention',
objectGetLegalHoldVersion: 's3:GetObjectLegalHold',
objectPutLegalHoldVersion: 's3:PutObjectLegalHold',
listObjectVersions: 's3:ListBucketVersions',
objectPutRetentionVersion: 's3:PutObjectVersionRetention',
objectPutLegalHoldVersion: 's3:PutObjectVersionLegalHold',
...sharedActionMap,
...actionMapBucketQuotas,
};
// action map used for bucket policies
const actionMapBP = actionMapRQ;
const actionMapBP = { ...sharedActionMap };
// action map for all relevant s3 actions
const actionMapS3 = {
// TODO
// @ts-ignore
bucketGetNotification: 's3:GetBucketNotification',
// @ts-ignore
bucketPutNotification: 's3:PutBucketNotification',
...sharedActionMap,
...actionMapRQ,
...actionMapBP,
@ -113,7 +107,7 @@ const actionMonitoringMapS3 = {
bucketGetCors: 'GetBucketCors',
bucketGetLifecycle: 'GetBucketLifecycleConfiguration',
bucketGetLocation: 'GetBucketLocation',
bucketGetNotification: 'GetBucketNotification',
bucketGetNotification: 'GetBucketNotificationConfiguration',
bucketGetObjectLock: 'GetObjectLockConfiguration',
bucketGetPolicy: 'GetBucketPolicy',
bucketGetReplication: 'GetBucketReplication',
@ -126,7 +120,7 @@ const actionMonitoringMapS3 = {
bucketPutACL: 'PutBucketAcl',
bucketPutCors: 'PutBucketCors',
bucketPutLifecycle: 'PutBucketLifecycleConfiguration',
bucketPutNotification: 'PutBucketNotification',
bucketPutNotification: 'PutBucketNotificationConfiguration',
bucketPutObjectLock: 'PutObjectLockConfiguration',
bucketPutPolicy: 'PutBucketPolicy',
bucketPutReplication: 'PutBucketReplication',
@ -159,15 +153,6 @@ const actionMonitoringMapS3 = {
objectPutTagging: 'PutObjectTagging',
objectRestore: 'RestoreObject',
serviceGet: 'ListBuckets',
bucketGetQuota: 'GetBucketQuota',
bucketUpdateQuota: 'UpdateBucketQuota',
bucketDeleteQuota: 'DeleteBucketQuota',
};
const actionMapAccountQuotas = {
UpdateAccountQuota : 'scality:UpdateAccountQuota',
DeleteAccountQuota : 'scality:DeleteAccountQuota',
GetAccountQuota : 'scality:GetAccountQuota',
};
const actionMapIAM = {
@ -203,15 +188,10 @@ const actionMapIAM = {
removeUserFromGroup: 'iam:RemoveUserFromGroup',
updateAccessKey: 'iam:UpdateAccessKey',
updateGroup: 'iam:UpdateGroup',
updateRole: 'iam:UpdateRole',
updateUser: 'iam:UpdateUser',
getAccessKeyLastUsed: 'iam:GetAccessKeyLastUsed',
generateCredentialReport: 'iam:GenerateCredentialReport',
getCredentialReport: 'iam:GetCredentialReport',
tagUser: 'iam:TagUser',
unTagUser: 'iam:UntagUser',
listUserTags: 'iam:ListUserTags',
...actionMapAccountQuotas,
};
const actionMapSSO = {
@ -227,14 +207,6 @@ const actionMapMetadata = {
default: 'metadata:bucketd',
};
const actionMapScuba = {
GetMetrics: 'scuba:GetMetrics',
AdminStartIngest: 'scuba:AdminStartIngest',
AdminStopIngest: 'scuba:AdminStopIngest',
AdminReadRaftCseq: 'scuba:AdminReadRaftCseq',
AdminTriggerRepair: 'scuba:AdminTriggerRepair',
};
export {
actionMapRQ,
actionMapBP,
@ -244,5 +216,4 @@ export {
actionMapSSO,
actionMapSTS,
actionMapMetadata,
actionMapScuba,
};

View File

@ -1,5 +1,5 @@
import { handleWildcardInResource } from './wildcards';
import { policyArnAllowedEmptyAccountId } from '../../constants';
/**
* Checks whether an ARN from a request matches an ARN in a policy
* to compare against each portion of the ARN from the request
@ -38,10 +38,9 @@ export default function checkArnMatch(
const requestSegment = caseSensitive ? requestArnArr[j] :
requestArnArr[j].toLowerCase();
const policyArnArr = policyArn.split(':');
// We want to allow an empty account ID for utapi and scuba service ARNs to not
// We want to allow an empty account ID for utapi service ARNs to not
// break compatibility.
if (j === 4 && policyArnAllowedEmptyAccountId.includes(policyArnArr[2])
&& policyArnArr[4] === '') {
if (j === 4 && policyArnArr[2] === 'utapi' && policyArnArr[4] === '') {
continue;
} else if (!segmentRegEx.test(requestSegment)) {
return false;

View File

@ -11,30 +11,31 @@ import ipaddr from 'ipaddr.js';
* @param requestContext - info sent with request
* @return condition key value
*/
export function findConditionKey(
export const findConditionKey = (
key: string,
requestContext: RequestContext,
): any {
): string => {
// TODO: Consider combining with findVariable function if no benefit
// to keeping separate
const headers = requestContext.getHeaders();
const query = requestContext.getQuery();
const requesterInfo = requestContext.getRequesterInfo();
const map = new Map();
// Possible AWS Condition keys (http://docs.aws.amazon.com/IAM/latest/
// UserGuide/reference_policies_elements.html#AvailableKeys)
switch (key) {
// aws:CurrentTime Used for date/time conditions
// (see Date Condition Operators).
case 'aws:CurrentTime': return new Date().toISOString();
map.set('aws:CurrentTime', new Date().toISOString());
// aws:EpochTime Used for date/time conditions
// (see Date Condition Operators).
case 'aws:EpochTime': return Date.now().toString();
map.set('aws:EpochTime', Date.now().toString());
// aws:TokenIssueTime Date/time that temporary security
// credentials were issued (see Date Condition Operators).
// Only present in requests that are signed using temporary security
// credentials.
case 'aws:TokenIssueTime': return requestContext.getTokenIssueTime();
map.set('aws:TokenIssueTime', requestContext.getTokenIssueTime());
// aws:MultiFactorAuthPresent Used to check whether MFA was used
// (see Boolean Condition Operators).
// Note: This key is only present if MFA was used. So, the following
@ -44,137 +45,133 @@ export function findConditionKey(
// Instead use:
// "Condition" :
// { "Null" : { "aws:MultiFactorAuthPresent" : true } }
case 'aws:MultiFactorAuthPresent': return requestContext.getMultiFactorAuthPresent();
map.set('aws:MultiFactorAuthPresent',
requestContext.getMultiFactorAuthPresent());
// aws:MultiFactorAuthAge Used to check how many seconds since
// MFA credentials were issued. If MFA was not used,
// this key is not present
case 'aws:MultiFactorAuthAge': return requestContext.getMultiFactorAuthAge();
map.set('aws:MultiFactorAuthAge', requestContext.getMultiFactorAuthAge());
// aws:principaltype states whether the principal is an account,
// user, federated, or assumed role
// Note: Docs for conditions have "PrincipalType" but simulator
// and docs for variables have lowercase
case 'aws:principaltype': return requesterInfo.principaltype;
map.set('aws:principaltype', requesterInfo.principaltype);
// aws:Referer Used to check who referred the client browser to
// the address the request is being sent to. Only supported by some
// services, such as S3. Value comes from the referer header in the
// HTTPS request made to AWS.
case 'aws:referer': return headers.referer;
map.set('aws:referer', headers.referer);
// aws:SecureTransport Used to check whether the request was sent
// using SSL (see Boolean Condition Operators).
case 'aws:SecureTransport': return requestContext.getSslEnabled() ? 'true' : 'false';
map.set('aws:SecureTransport',
requestContext.getSslEnabled() ? 'true' : 'false');
// aws:SourceArn Used check the source of the request,
// using the ARN of the source. N/A here.
case 'aws:SourceArn': return undefined;
map.set('aws:SourceArn', undefined);
// aws:SourceIp Used to check the requester's IP address
// (see IP Address Condition Operators)
case 'aws:SourceIp': return requestContext.getRequesterIp();
map.set('aws:SourceIp', requestContext.getRequesterIp());
// aws:SourceVpc Used to restrict access to a specific
// AWS Virtual Private Cloud. N/A here.
case 'aws:SourceVpc': return undefined;
map.set('aws:SourceVpc', undefined);
// aws:SourceVpce Used to limit access to a specific VPC endpoint
// N/A here
case 'aws:SourceVpce': return undefined;
map.set('aws:SourceVpce', undefined);
// aws:UserAgent Used to check the requester's client app.
// (see String Condition Operators)
case 'aws:UserAgent': return headers['user-agent'];
map.set('aws:UserAgent', headers['user-agent']);
// aws:userid Used to check the requester's unique user ID.
// (see String Condition Operators)
case 'aws:userid': return requesterInfo.userid;
map.set('aws:userid', requesterInfo.userid);
// aws:username Used to check the requester's friendly user name.
// (see String Condition Operators)
case 'aws:username': return requesterInfo.username;
map.set('aws:username', requesterInfo.username);
// Possible condition keys for S3:
// s3:x-amz-acl is acl request for bucket or object put request
case 's3:x-amz-acl': return headers['x-amz-acl'];
map.set('s3:x-amz-acl', headers['x-amz-acl']);
// s3:x-amz-grant-PERMISSION (where permission can be:
// read, write, read-acp, write-acp or full-control)
// Value is the value of that header (ex. id of grantee)
case 's3:x-amz-grant-read': return headers['x-amz-grant-read'];
case 's3:x-amz-grant-write': return headers['x-amz-grant-write'];
case 's3:x-amz-grant-read-acp': return headers['x-amz-grant-read-acp'];
case 's3:x-amz-grant-write-acp': return headers['x-amz-grant-write-acp'];
case 's3:x-amz-grant-full-control': return headers['x-amz-grant-full-control'];
map.set('s3:x-amz-grant-read', headers['x-amz-grant-read']);
map.set('s3:x-amz-grant-write', headers['x-amz-grant-write']);
map.set('s3:x-amz-grant-read-acp', headers['x-amz-grant-read-acp']);
map.set('s3:x-amz-grant-write-acp', headers['x-amz-grant-write-acp']);
map.set('s3:x-amz-grant-full-control', headers['x-amz-grant-full-control']);
// s3:x-amz-copy-source is x-amz-copy-source header if applicable on
// a put object
case 's3:x-amz-copy-source': return headers['x-amz-copy-source'];
map.set('s3:x-amz-copy-source', headers['x-amz-copy-source']);
// s3:x-amz-metadata-directive is x-amz-metadata-directive header if
// applicable on a put object copy. Determines whether metadata will
// be copied from original object or replaced. Values or "COPY" or
// "REPLACE". Default is "COPY"
case 's3:x-amz-metadata-directive': return headers['metadata-directive'];
map.set('s3:x-amz-metadata-directive', headers['metadata-directive']);
// s3:x-amz-server-side-encryption -- Used to require that object put
// use server side encryption. Value is the encryption algo such as
// "AES256"
case 's3:x-amz-server-side-encryption': return headers['x-amz-server-side-encryption'];
map.set('s3:x-amz-server-side-encryption',
headers['x-amz-server-side-encryption']);
// s3:x-amz-storage-class -- x-amz-storage-class header value
// (STANDARD, etc.)
case 's3:x-amz-storage-class': return headers['x-amz-storage-class'];
map.set('s3:x-amz-storage-class', headers['x-amz-storage-class']);
// s3:VersionId -- version id of object
case 's3:VersionId': return query.versionId;
map.set('s3:VersionId', query.versionId);
// s3:LocationConstraint -- Used to restrict creation of bucket
// in certain region. Only applicable for CreateBucket
case 's3:LocationConstraint': return requestContext.getLocationConstraint();
map.set('s3:LocationConstraint', requestContext.getLocationConstraint());
// s3:delimiter is delimiter for listing request
case 's3:delimiter': return query.delimiter;
map.set('s3:delimiter', query.delimiter);
// s3:max-keys is max-keys for listing request
case 's3:max-keys': return query['max-keys'];
map.set('s3:max-keys', query['max-keys']);
// s3:prefix is prefix for listing request
case 's3:prefix': return query.prefix;
map.set('s3:prefix', query.prefix);
// s3 auth v4 additional condition keys
// (See http://docs.aws.amazon.com/AmazonS3/latest/API/
// bucket-policy-s3-sigv4-conditions.html)
// s3:signatureversion -- Either "AWS" for v2 or
// "AWS4-HMAC-SHA256" for v4
case 's3:signatureversion': return requestContext.getSignatureVersion();
map.set('s3:signatureversion', requestContext.getSignatureVersion());
// s3:authType -- Method of authentication: either "REST-HEADER",
// "REST-QUERY-STRING" or "POST"
case 's3:authType': return requestContext.getAuthType();
map.set('s3:authType', requestContext.getAuthType());
// s3:signatureAge is the length of time, in milliseconds,
// that a signature is valid in an authenticated request. So,
// can use this to limit the age to less than 7 days
case 's3:signatureAge': return requestContext.getSignatureAge();
map.set('s3:signatureAge', requestContext.getSignatureAge());
// s3:x-amz-content-sha256 - Valid value is "UNSIGNED-PAYLOAD"
// so can use this in a deny policy to deny any requests that do not
// have a signed payload
case 's3:x-amz-content-sha256': return headers['x-amz-content-sha256'];
map.set('s3:x-amz-content-sha256', headers['x-amz-content-sha256']);
// s3:ObjLocationConstraint is the location constraint set for an
// object on a PUT request using the "x-amz-meta-scal-location-constraint"
// header
case 's3:ObjLocationConstraint': return headers['x-amz-meta-scal-location-constraint'];
case 'sts:ExternalId': return requestContext.getRequesterExternalId();
case 'keycloak:groups': return requesterInfo.keycloakGroup;
case 'keycloak:roles': return requesterInfo.keycloakRole;
case 'iam:PolicyArn': return requestContext.getPolicyArn();
map.set('s3:ObjLocationConstraint',
headers['x-amz-meta-scal-location-constraint']);
map.set('sts:ExternalId', requestContext.getRequesterExternalId());
map.set('keycloak:groups', requesterInfo.keycloakGroup);
map.set('keycloak:roles', requesterInfo.keycloakRole);
map.set('iam:PolicyArn', requestContext.getPolicyArn());
// s3:ExistingObjectTag - Used to check that existing object tag has
// specific tag key and value. Extraction of correct tag key is done in CloudServer.
// On first pass of policy evaluation, CloudServer information will not be included,
// so evaluation should be skipped
case 's3:ExistingObjectTag':
return requestContext.getNeedTagEval()
? requestContext.getExistingObjTag() : undefined;
map.set('s3:ExistingObjectTag', requestContext.getNeedTagEval() ? requestContext.getExistingObjTag() : undefined);
// s3:RequestObjectTag - Used to limit putting object tags to specific
// tag key and value. N/A here.
// Requires information from CloudServer
// On first pass of policy evaluation, CloudServer information will not be included,
// so evaluation should be skipped
case 's3:RequestObjectTagKey':
return requestContext.getNeedTagEval()
? requestContext.getRequestObjTags() : undefined;
map.set('s3:RequestObjectTagKey', requestContext.getNeedTagEval() ? requestContext.getRequestObjTags() : undefined);
// s3:RequestObjectTagKeys - Used to limit putting object tags specific tag keys.
// Requires information from CloudServer.
// On first pass of policy evaluation, CloudServer information will not be included,
// so evaluation should be skipped
case 's3:RequestObjectTagKeys':
return requestContext.getNeedTagEval() && requestContext.getRequestObjTags()
map.set('s3:RequestObjectTagKeys',
requestContext.getNeedTagEval() && requestContext.getRequestObjTags()
? getTagKeys(requestContext.getRequestObjTags()!)
: undefined;
// The maximum retention period is 100 years.
case 's3:object-lock-remaining-retention-days':
return requestContext.getObjectLockRetentionDays() || undefined;
default:
return undefined;
}
}
: undefined,
);
return map.get(key);
};
// Wildcards are allowed in certain string comparison and arn comparisons
@ -234,7 +231,7 @@ function convertToEpochTime(time: string | string[]) {
* reference_policies_elements.html)
* @return true if condition passes and false if not
*/
export function convertConditionOperator(operator: string): boolean {
export const convertConditionOperator = (operator: string): boolean => {
// Policy Validator checks that the condition operator
// is only one of these strings so should not have undefined
// or security issue with object assignment
@ -449,4 +446,4 @@ export function convertConditionOperator(operator: string): boolean {
},
};
return operatorMap[operator];
}
};

View File

@ -30,7 +30,7 @@ export default class ResultsCollector extends EventEmitter {
* @emits ResultCollector#done
* @emits ResultCollector#error
*/
pushResult(err: Error | null | undefined, subPartIndex: number) {
pushResult(err: Error | undefined, subPartIndex: number) {
this._results.push({
error: err,
subPartIndex,

View File

@ -1,15 +1,11 @@
import assert from 'assert';
import * as crypto from 'crypto';
import * as stream from 'stream';
import azure from '@azure/storage-blob';
import { RequestLogger } from 'werelogs';
import ResultsCollector from './ResultsCollector';
import SubStreamInterface from './SubStreamInterface';
import * as objectUtils from '../objectUtils';
import MD5Sum from '../MD5Sum';
import errors, { ArsenalError } from '../../errors';
import errors from '../../errors';
export const splitter = '|';
export const overviewMpuKey = 'azure_mpu';
@ -65,7 +61,7 @@ export const getBlockId = (
const paddedSubPart = padString(subPartIndex, 'subPart');
const blockId = `${uploadId}${splitter}partNumber${paddedPartNumber}` +
`${splitter}subPart${paddedSubPart}${splitter}`;
return Buffer.from(padString(blockId, 'part')).toString('base64');
return padString(blockId, 'part');
};
export const getSummaryPartId = (partNumber: number, eTag: string, size: number) => {
@ -104,17 +100,10 @@ export const getSubPartIds = (
) => [...Array(part.numberSubParts).keys()].map(subPartIndex =>
getBlockId(uploadId, part.partNumber, subPartIndex));
type ErrorWrapperFn = (
s3Method: string,
azureMethod: string,
command: (client: azure.ContainerClient) => Promise<any>,
log: RequestLogger,
cb: (err: ArsenalError | null | undefined) => void,
) => void
// TODO Better type this
export const putSinglePart = (
errorWrapperFn: ErrorWrapperFn,
request: stream.Readable,
errorWrapperFn: (first: string, second: string, third: any, log: any, cb: any) => void,
request: any,
params: {
bucketName: string;
partNumber: number;
@ -125,44 +114,44 @@ export const putSinglePart = (
},
dataStoreName: string,
log: RequestLogger,
cb: (err: ArsenalError | null | undefined, dataStoreETag?: string, size?: number) => void,
cb: any,
) => {
const { bucketName, partNumber, size, objectKey, contentMD5, uploadId }
= params;
const blockId = getBlockId(uploadId, partNumber, 0);
const passThrough = new stream.PassThrough();
const options = contentMD5
? { transactionalContentMD5: objectUtils.getMD5Buffer(contentMD5) }
? { useTransactionalMD5: true, transactionalContentMD5: contentMD5 }
: {};
request.pipe(passThrough);
return errorWrapperFn('uploadPart', 'createBlockFromStream', async client => {
try {
const result = await client.getBlockBlobClient(objectKey)
.stageBlock(blockId, () => passThrough, size, options);
const md5 = result.contentMD5 || '';
const eTag = objectUtils.getHexMD5(md5);
return eTag
} catch (err: any) {
return errorWrapperFn('uploadPart', 'createBlockFromStream',
[blockId, bucketName, objectKey, passThrough, size, options,
(err: any | null, result: any) => {
if (err) {
log.error('Error from Azure data backend uploadPart',
{ error: err.message, dataStoreName });
if (err.code === 'ContainerNotFound') {
throw errors.NoSuchBucket;
return cb(errors.NoSuchBucket);
}
if (err.code === 'InvalidMd5') {
throw errors.InvalidDigest;
return cb(errors.InvalidDigest);
}
if (err.code === 'Md5Mismatch') {
throw errors.BadDigest;
return cb(errors.BadDigest);
}
throw errors.InternalError.customizeDescription(
`Error returned from Azure: ${err.message}`
return cb(errors.InternalError.customizeDescription(
`Error returned from Azure: ${err.message}`),
);
}
}, log, cb);
const md5 = result.headers['content-md5'] || '';
const eTag = objectUtils.getHexMD5(md5);
return cb(null, eTag, size);
}], log, cb);
};
const putNextSubPart = (
errorWrapperFn: ErrorWrapperFn,
// TODO type this
export const putNextSubPart = (
errorWrapperFn: any,
partParams: {
uploadId: string;
partNumber: number;
@ -170,10 +159,11 @@ const putNextSubPart = (
objectKey: string;
},
subPartInfo: { lastPartIndex: number; lastPartSize: number },
subPartStream: stream.Readable,
subPartStream: any,
subPartIndex: number,
resultsCollector: ResultsCollector,
log: RequestLogger,
cb: any,
) => {
const { uploadId, partNumber, bucketName, objectKey } = partParams;
const subPartSize = getSubPartSize(
@ -181,20 +171,14 @@ const putNextSubPart = (
const subPartId = getBlockId(uploadId, partNumber,
subPartIndex);
resultsCollector.pushOp();
errorWrapperFn('uploadPart', 'createBlockFromStream', async client => {
try {
const result = await client.getBlockBlobClient(objectKey)
.stageBlock(subPartId, () => subPartStream, subPartSize, {});
resultsCollector.pushResult(null, subPartIndex);
} catch (err: any) {
resultsCollector.pushResult(err, subPartIndex);
}
}, log, () => {});
errorWrapperFn('uploadPart', 'createBlockFromStream',
[subPartId, bucketName, objectKey, subPartStream, subPartSize,
{}, err => resultsCollector.pushResult(err, subPartIndex)], log, cb);
};
export const putSubParts = (
errorWrapperFn: ErrorWrapperFn,
request: stream.Readable,
errorWrapperFn: any,
request: any,
params: {
uploadId: string;
partNumber: number;
@ -204,7 +188,7 @@ export const putSubParts = (
},
dataStoreName: string,
log: RequestLogger,
cb: (err: ArsenalError | null | undefined, dataStoreETag?: string) => void,
cb: any,
) => {
const subPartInfo = getSubPartInfo(params.size);
const resultsCollector = new ResultsCollector();
@ -243,13 +227,14 @@ export const putSubParts = (
const totalLength = streamInterface.getTotalBytesStreamed();
log.trace('successfully put subparts to Azure',
{ numberSubParts, totalLength });
hashedStream.on('hashed', () => cb(null, hashedStream.completedHash));
hashedStream.on('hashed', () => cb(null, hashedStream.completedHash,
totalLength));
// in case the hashed event was already emitted before the
// event handler was registered:
if (hashedStream.completedHash) {
hashedStream.removeAllListeners('hashed');
return cb(null, hashedStream.completedHash);
return cb(null, hashedStream.completedHash, totalLength);
}
return undefined;
});
@ -257,7 +242,7 @@ export const putSubParts = (
const currentStream = streamInterface.getCurrentStream();
// start first put to Azure before we start streaming the data
putNextSubPart(errorWrapperFn, params, subPartInfo,
currentStream, 0, resultsCollector, log);
currentStream, 0, resultsCollector, log, cb);
request.pipe(hashedStream);
hashedStream.on('end', () => {
@ -277,8 +262,8 @@ export const putSubParts = (
}
const { nextStream, subPartIndex } =
streamInterface.transitionToNextStream();
putNextSubPart(errorWrapperFn, params, subPartInfo, nextStream,
subPartIndex, resultsCollector, log);
putNextSubPart(errorWrapperFn, params, subPartInfo,
nextStream, subPartIndex, resultsCollector, log, cb);
streamInterface.write(firstChunk);
} else {
streamInterface.write(data);

View File

@ -1,25 +1,19 @@
import { scaleMsPerDay } from '../objectUtils';
const msInOneDay = 24 * 60 * 60 * 1000; // Milliseconds in a day.
const oneDay = 24 * 60 * 60 * 1000; // Milliseconds in a day.
export default class LifecycleDateTime {
_transitionOneDayEarlier?: boolean;
_expireOneDayEarlier?: boolean;
_timeProgressionFactor?: number;
_scaledMsPerDay: number;
constructor(params?: {
transitionOneDayEarlier: boolean;
expireOneDayEarlier: boolean;
timeProgressionFactor: number;
}) {
this._transitionOneDayEarlier = params?.transitionOneDayEarlier;
this._expireOneDayEarlier = params?.expireOneDayEarlier;
this._timeProgressionFactor = params?.timeProgressionFactor || 1;
this._scaledMsPerDay = scaleMsPerDay(this._timeProgressionFactor);
}
getCurrentDate() {
const timeTravel = this._expireOneDayEarlier ? msInOneDay : 0;
const timeTravel = this._expireOneDayEarlier ? oneDay : 0;
return Date.now() + timeTravel;
}
@ -31,7 +25,7 @@ export default class LifecycleDateTime {
findDaysSince(date: Date) {
const now = this.getCurrentDate();
const diff = now - date.getTime();
return Math.floor(diff / this._scaledMsPerDay);
return Math.floor(diff / (1000 * 60 * 60 * 24));
}
/**
@ -58,25 +52,8 @@ export default class LifecycleDateTime {
}
if (transition.Days !== undefined) {
const lastModifiedTime = this.getTimestamp(lastModified);
const timeTravel = this._transitionOneDayEarlier ? -msInOneDay : 0;
return lastModifiedTime + (transition.Days * this._scaledMsPerDay) + timeTravel;
}
}
/**
* Find the Unix time at which the non-current version transition should occur.
* @param transition - A non-current version transition from the lifecycle non-current version transitions
* @param lastModified - The object's last modified date
* @return - The normalized transition timestamp
*/
getNCVTransitionTimestamp(
transition: { NoncurrentDays?: number },
lastModified: string,
) {
if (transition.NoncurrentDays !== undefined) {
const lastModifiedTime = this.getTimestamp(lastModified);
const timeTravel = this._transitionOneDayEarlier ? -msInOneDay : 0;
return lastModifiedTime + (transition.NoncurrentDays * this._scaledMsPerDay) + timeTravel;
const timeTravel = this._transitionOneDayEarlier ? -oneDay : 0;
return lastModifiedTime + (transition.Days * oneDay) + timeTravel;
}
}
}

View File

@ -61,47 +61,6 @@ export default class LifecycleUtils {
return trans1 > trans2 ? transition1 : transition2;
}
/**
* Compare two non-current version transition rules and return the one that is most recent.
* @param params - The function parameters
* @param params.transition1 - A non-current version transition from the current rule
* @param params.transition2 - A non-current version transition from the previous rule
* @param params.lastModified - The object's last modified
* date
* @return The most applicable transition rule
*/
compareNCVTransitions(params: {
lastModified: string;
transition1: any;
transition2?: any;
}): number | undefined;
compareNCVTransitions(params: {
lastModified: string;
transition1?: any;
transition2: any;
}): number | undefined;
compareNCVTransitions(params: {
lastModified: string;
transition1: any;
transition2: any;
}): number | undefined;
compareNCVTransitions(params: {
lastModified: string;
transition1?: any;
transition2?: any;
}) {
const { transition1, transition2, lastModified } = params;
if (transition1 === undefined) {
return transition2;
}
if (transition2 === undefined) {
return transition1;
}
const trans1 = this._datetime.getNCVTransitionTimestamp(transition1!, lastModified)!;
const trans2 = this._datetime.getNCVTransitionTimestamp(transition2!, lastModified)!;
return trans1 > trans2 ? transition1 : transition2;
}
// TODO Fix This
/**
* Find the most relevant trantition rule for the given transitions array
@ -139,42 +98,6 @@ export default class LifecycleUtils {
});
}
/**
* Find the most relevant non-current version transition rule for the given transitions array
* and any previously stored non-current version transition from another rule.
* @param params - The function parameters
* @param params.transitions - Array of lifecycle non-current version transitions
* @param params.lastModified - The object's last modified
* date
* @return The most applicable non-current version transition rule
*/
getApplicableNCVTransition(params: {
store: any;
currentDate: Date;
transitions: any[];
lastModified: string;
}) {
const { transitions, store, lastModified, currentDate } = params;
const transition = transitions.reduce((result, transition) => {
const isApplicable = // Is the transition time in the past?
this._datetime.getTimestamp(currentDate) >=
this._datetime.getNCVTransitionTimestamp(transition, lastModified)!;
if (!isApplicable) {
return result;
}
return this.compareNCVTransitions({
transition1: transition,
transition2: result,
lastModified,
});
}, undefined);
return this.compareNCVTransitions({
transition1: transition,
transition2: store.NoncurrentVersionTransition,
lastModified,
});
}
// TODO
/**
* Filter out all rules based on `Status` and `Filter` (Prefix and Tags)
@ -284,7 +207,6 @@ export default class LifecycleUtils {
// Names are long, so obscuring a bit
const ncve = 'NoncurrentVersionExpiration';
const ncd = 'NoncurrentDays';
const nncv = 'NewerNoncurrentVersions';
if (!store[ncve]) {
store[ncve] = {};
@ -292,7 +214,6 @@ export default class LifecycleUtils {
if (!store[ncve][ncd] || rule[ncve][ncd] < store[ncve][ncd]) {
store[ncve].ID = rule.ID;
store[ncve][ncd] = rule[ncve][ncd];
store[ncve][nncv] = rule[ncve][nncv];
}
}
if (rule.AbortIncompleteMultipartUpload
@ -318,17 +239,7 @@ export default class LifecycleUtils {
currentDate,
});
}
const ncvt = 'NoncurrentVersionTransitions';
const hasNoncurrentVersionTransitions = Array.isArray(rule[ncvt]) && rule[ncvt].length > 0;
if (hasNoncurrentVersionTransitions && this._supportedRules.includes('noncurrentVersionTransition')) {
store.NoncurrentVersionTransition = this.getApplicableNCVTransition({
transitions: rule.NoncurrentVersionTransitions,
lastModified: metadata.LastModified,
store,
currentDate,
});
}
// TODO: Add support for NoncurrentVersionTransitions.
return store;
}, {});
// Do not transition to a location where the object is already stored.
@ -336,12 +247,6 @@ export default class LifecycleUtils {
&& applicableRules.Transition.StorageClass === metadata.StorageClass) {
applicableRules.Transition = undefined;
}
if (applicableRules.NoncurrentVersionTransition
&& applicableRules.NoncurrentVersionTransition.StorageClass === metadata.StorageClass) {
applicableRules.NoncurrentVersionTransition = undefined;
}
return applicableRules;
/* eslint-enable no-param-reassign */
}

View File

@ -1,21 +1,5 @@
const msInOneDay = 24 * 60 * 60 * 1000; // Milliseconds in a day.
export const getMD5Buffer = (base64MD5: WithImplicitCoercion<string> | Uint8Array) =>
base64MD5 instanceof Uint8Array ? base64MD5 : Buffer.from(base64MD5, 'base64')
export const getHexMD5 = (base64MD5: WithImplicitCoercion<string> | Uint8Array) =>
getMD5Buffer(base64MD5).toString('hex');
export const getHexMD5 = (base64MD5: WithImplicitCoercion<string>) =>
Buffer.from(base64MD5, 'base64').toString('hex');
export const getBase64MD5 = (hexMD5: WithImplicitCoercion<string>) =>
Buffer.from(hexMD5, 'hex').toString('base64');
/**
* Calculates the number of scaled milliseconds per day based on the given time progression factor.
* This function is intended for testing and simulation purposes only.
* @param {number} timeProgressionFactor - The desired time progression factor for scaling.
* @returns {number} The number of scaled milliseconds per day.
* If the result is 0, the minimum value of 1 millisecond is returned.
*/
export const scaleMsPerDay = (timeProgressionFactor: number): number =>
Math.round(msInOneDay / (timeProgressionFactor || 1)) || 1;

View File

@ -3,11 +3,6 @@ import * as werelogs from 'werelogs';
import errors, { ArsenalError } from '../errors';
import escapeForXml from './escapeForXml';
export interface BucketTag {
Key: string;
Value: string;
};
const errorInvalidArgument = () => errors.InvalidArgument
.customizeDescription('The header \'x-amz-tagging\' shall be ' +
'encoded as UTF-8 then URLEncoded URL query parameters without ' +
@ -37,15 +32,6 @@ export const _validator = {
&& tag.Key[0] !== undefined && tag.Value[0] !== undefined
&& typeof tag.Key[0] === 'string' && typeof tag.Value[0] === 'string',
// Allowed characters are letters, whitespace, and numbers, plus
// the following special characters: + - = . _ : /
// Maximum key length: 128 Unicode characters
// Maximum value length: 256 Unicode characters
validateTagObjectStructure: (tag: BucketTag) => tag
&& Object.keys(tag).length === 2
&& typeof tag.Key === 'string' && typeof tag.Value === 'string'
&& tag.Key.length >= 1 && tag.Value.length >= 1,
validateXMLStructure: (result: any) =>
result && Object.keys(result).length === 1 &&
result.Tagging &&
@ -114,47 +100,12 @@ function _validateTags(tags: Array<{ Key: string[], Value: string[] }>) {
}
// not repeating keys
if (tags.length > Object.keys(tagsResult).length) {
return errors.InvalidTag.customizeDescription(
'Cannot provide multiple Tags with the same key'
);
return errors.InvalidTag.customizeDescription('Cannot provide ' +
'multiple Tags with the same key');
}
return tagsResult;
}
/** areTagsValid - Validate bucket tags
* @param tags - tags parsed from xml to be validated
* @return result - true if the tags are valide, false otherwise
*/
export function areTagsValid(tags: Array<BucketTag>) {
if (tags.length === 0) {
return true;
}
// Maximum number of tags per resource: 50
if (tags.length > 50) {
return false;
}
const tagsResult = {};
for (const tag of tags) {
if (!_validator.validateTagObjectStructure(tag)) {
return false;
}
const { Key: key, Value: value } = tag;
const result = _validator.validateKeyValue(key, value);
if (result instanceof Error) {
return false;
}
tagsResult[key] = value;
}
// not repeating keys
if (tags.length > Object.keys(tagsResult).length) {
return false;
}
return true;
}
/** parseTagXml - Parse and validate xml body, returning callback with object
* tags : { key: value}
* @param xml - xml body to parse and validate

View File

@ -1,7 +1,4 @@
import assert from 'assert';
import { RequestLogger } from 'werelogs';
import errors from '../errors';
import routeGET from './routes/routeGET';
import routePUT from './routes/routePUT';

View File

@ -1,5 +1,3 @@
import { RequestLogger } from 'werelogs';
import * as routesUtils from '../routesUtils';
import errors from '../../errors';
import StatsClient from '../../metrics/StatsClient';
@ -43,8 +41,6 @@ export default function routeDELETE(
return call('bucketDeleteEncryption');
} else if (query?.tagging !== undefined) {
return call('bucketDeleteTagging');
} else if (query?.quota !== undefined) {
return call('bucketDeleteQuota');
}
call('bucketDelete');
} else {

View File

@ -1,5 +1,3 @@
import { RequestLogger } from 'werelogs';
import * as routesUtils from '../routesUtils';
import errors from '../../errors';
import * as http from 'http';
@ -60,8 +58,6 @@ export default function routerGET(
call('bucketGetEncryption');
} else if (query.search !== undefined) {
call('metadataSearch')
} else if (query.quota !== undefined) {
call('bucketGetQuota');
} else {
// GET bucket
call('bucketGet');

View File

@ -1,5 +1,3 @@
import { RequestLogger } from 'werelogs';
import * as routesUtils from '../routesUtils';
import errors from '../../errors';
import StatsClient from '../../metrics/StatsClient';

View File

@ -1,5 +1,3 @@
import { RequestLogger } from 'werelogs';
import * as routesUtils from '../routesUtils';
import errors from '../../errors';
import * as http from 'http';

View File

@ -1,5 +1,3 @@
import { RequestLogger } from 'werelogs';
import * as routesUtils from '../routesUtils';
import errors from '../../errors';
import * as http from 'http';

View File

@ -1,5 +1,3 @@
import { RequestLogger } from 'werelogs';
import * as routesUtils from '../routesUtils';
import errors from '../../errors';
import * as http from 'http';
@ -105,13 +103,6 @@ export default function routePUT(
return routesUtils.responseNoBody(err, corsHeaders,
response, 200, log);
});
} else if (query.quota !== undefined) {
api.callApiMethod('bucketUpdateQuota', request, response,
log, (err, resHeaders) => {
routesUtils.statsReport500(err, statsClient);
return routesUtils.responseNoBody(err, resHeaders, response,
200, log);
});
} else {
// PUT bucket
return api.callApiMethod('bucketPut', request, response, log,

View File

@ -1,5 +1,3 @@
import { RequestLogger } from 'werelogs';
import * as routesUtils from '../routesUtils';
import errors from '../../errors';
import * as http from 'http';
@ -29,11 +27,6 @@ export default function routerWebsite(
routesUtils.statsReport500(err, statsClient);
// request being redirected
if (redirectInfo) {
if (err && redirectInfo.withError) {
return routesUtils.redirectRequestOnError(err,
'GET', redirectInfo, dataGetInfo, dataRetrievalParams,
response, resMetaHeaders, log)
}
// note that key might have been modified in websiteGet
// api to add index document
return routesUtils.redirectRequest(redirectInfo,
@ -64,11 +57,6 @@ export default function routerWebsite(
(err, resMetaHeaders, redirectInfo, key) => {
routesUtils.statsReport500(err, statsClient);
if (redirectInfo) {
if (err && redirectInfo.withError) {
return routesUtils.redirectRequestOnError(err,
'HEAD', redirectInfo, null, dataRetrievalParams,
response, resMetaHeaders, log)
}
return routesUtils.redirectRequest(redirectInfo,
// TODO ARSN-217 encrypted does not exists in request.connection
// @ts-ignore

View File

@ -1,16 +1,12 @@
import * as url from 'url';
import * as http from 'http';
import { eachSeries } from 'async';
import { RequestLogger } from 'werelogs';
import * as ipCheck from '../ipCheck';
import errors, { ArsenalError } from '../errors';
import * as constants from '../constants';
import { eachSeries } from 'async';
import DataWrapper from '../storage/data/DataWrapper';
import * as http from 'http';
import StatsClient from '../metrics/StatsClient';
import { objectKeyByteLimit } from '../constants';
const jsutil = require('../jsutil');
export type CallApiMethod = (
methodName: string,
@ -413,7 +409,6 @@ function retrieveData(
return eachSeries(locations,
(current, next) => data.get(current, response, log,
(err: any, readable: http.IncomingMessage) => {
const cbOnce = jsutil.once(next);
// NB: readable is of IncomingMessage type
if (err) {
log.error('failed to get object', {
@ -421,7 +416,7 @@ function retrieveData(
method: 'retrieveData',
});
_destroyResponse();
return cbOnce(err);
return next(err);
}
// response.isclosed is set by the S3 server. Might happen if
// the S3-client closes the connection before the first request
@ -435,19 +430,19 @@ function retrieveData(
// @ts-ignore
responseErr.code = 'ResponseError';
responseErr.message = 'response closed by client request before all data sent';
return cbOnce(responseErr);
return next(responseErr);
}
// readable stream successfully consumed
readable.on('end', () => {
currentStream = null;
log.debug('readable stream end reached');
return cbOnce();
return next();
});
// errors on server side with readable stream
readable.on('error', err => {
log.error('error piping data from source');
_destroyResponse();
return cbOnce(err);
return next(err);
});
currentStream = readable;
return readable.pipe(response, { end: false });
@ -694,8 +689,6 @@ export function streamUserErrorPage(
log: RequestLogger,
) {
setCommonResponseHeaders(corsHeaders, response, log);
response.setHeader('x-amz-error-code', err.message);
response.setHeader('x-amz-error-message', err.description);
response.writeHead(err.code, { 'Content-type': 'text/html' });
response.on('finish', () => {
// TODO ARSN-216 Fix logger
@ -878,7 +871,7 @@ export function redirectRequest(
}
let redirectLocation = justPath ? `/${redirectKey}` :
`${redirectProtocol}://${redirectHostName}/${redirectKey}`;
if (!redirectKey && redirectLocationHeader && redirectLocation !== '/') {
if (!redirectKey && redirectLocationHeader) {
// remove hanging slash
redirectLocation = redirectLocation.slice(0, -1);
}
@ -895,52 +888,6 @@ export function redirectRequest(
return undefined;
}
/**
* redirectRequestOnError - redirect with an error body
* @param err - arsenal error object
* @param method - HTTP method
* @param routingInfo - info for routing
* @param [routingInfo.withError] - flag to differentiate from routing rules
* @param [routingInfo.location] - location header
* @param dataLocations --
* - array of locations to get streams from backend
* @param retrieveDataParams - params to create instance of
* data retrieval function
* @param response - response object
* @param corsHeaders - CORS-related response headers
* @param log - Werelogs instance
*/
export function redirectRequestOnError(
err: ArsenalError,
method: 'HEAD' | 'GET',
routingInfo: {
withError: true;
location: string;
},
dataLocations: { size: string | number }[] | null,
retrieveDataParams: any,
response: http.ServerResponse,
corsHeaders: { [key: string]: string },
log: RequestLogger,
) {
response.setHeader('Location', routingInfo.location);
if (!dataLocations && err.is.Found) {
if (method === 'HEAD') {
return errorHeaderResponse(err, response, corsHeaders, log);
}
response.setHeader('x-amz-error-code', err.message);
response.setHeader('x-amz-error-message', err.description);
return errorHtmlResponse(err, false, '', response, corsHeaders, log);
}
// This is reached only for website error document (GET only)
const overrideErrorCode = err.flatten();
overrideErrorCode.code = 301;
return streamUserErrorPage(ArsenalError.unflatten(overrideErrorCode)!,
dataLocations || [], retrieveDataParams, response, corsHeaders, log);
}
/**
* Get bucket name and object name from the request
* @param request - http request object

View File

@ -2,8 +2,6 @@ const async = require('async');
const PassThrough = require('stream').PassThrough;
const assert = require('assert');
const { Logger } = require('werelogs');
const errors = require('../../errors').default;
const MD5Sum = require('../../s3middleware/MD5Sum').default;
const NullStream = require('../../s3middleware/nullStream').default;
@ -29,7 +27,6 @@ class DataWrapper {
this.metadata = metadata;
this.locStorageCheckFn = locStorageCheckFn;
this.vault = vault;
this.logger = new Logger('DataWrapper');
}
put(cipherBundle, value, valueSize, keyContext, backendInfo, log, cb) {
@ -130,7 +127,7 @@ class DataWrapper {
}
delete(objectGetInfo, log, cb) {
const callback = cb || (() => {});
const callback = cb || log.end;
const isMdModelVersion2 = typeof(objectGetInfo) === 'string';
const isRequiredStringKey =
constants.clientsRequireStringKey[this.implName];
@ -179,9 +176,7 @@ class DataWrapper {
newObjDataStoreName)) {
return process.nextTick(cb);
}
const delLog = this.logger.newRequestLoggerFromSerializedUids(
log.getSerializedUids());
delLog.trace('initiating batch delete', {
log.trace('initiating batch delete', {
keys: locations,
implName: this.implName,
method: 'batchDelete',
@ -207,21 +202,21 @@ class DataWrapper {
return false;
});
if (shouldBatchDelete && keys.length > 1) {
return this.client.batchDelete(backendName, { keys }, delLog, cb);
return this.client.batchDelete(backendName, { keys }, log, cb);
}
return async.eachLimit(locations, 5, (loc, next) => {
process.nextTick(() => this.delete(loc, delLog, next));
process.nextTick(() => this.delete(loc, log, next));
},
err => {
if (err) {
delLog.end().error('batch delete failed', { error: err });
log.end().error('batch delete failed', { error: err });
// deletion of non-existing objects result in 204
if (err.code === 404) {
return cb();
}
return cb(err);
}
delLog.end().trace('batch delete successfully completed');
log.end().trace('batch delete successfully completed');
return cb();
});
}
@ -989,14 +984,13 @@ class DataWrapper {
return this.client.delete(objectGetInfo, log.getSerializedUids(),
err => {
if (err) {
// TODO: sproxydclient and hdclient does not return standard Arsenal error yet.
if (err.code === 404) {
if (err.is.ObjNotFound) {
log.info('no such key in datastore', {
objectGetInfo,
implName: this.implName,
moreRetries: 'no',
});
return cb(errors.ObjNotFound);
return cb(err);
}
log.error('delete error from datastore', {
error: err,

View File

@ -1,10 +1,11 @@
const { http, https } = require('httpagent');
const https = require('https');
const http = require('http');
const url = require('url');
const AWS = require('aws-sdk');
const Sproxy = require('sproxydclient');
const Hyperdrive = require('hdclient');
const HttpsProxyAgent = require('https-proxy-agent');
require("aws-sdk/lib/maintenance_mode_message").suppress = true;
const constants = require('../../constants');
const DataFileBackend = require('./file/DataFileInterface');
const inMemory = require('./in_memory/datastore').backend;
@ -25,13 +26,8 @@ function parseLC(config, vault) {
if (locationObj.type === 'file') {
clients[location] = new DataFileBackend(config);
}
if (locationObj.type === 'vitastor') {
const VitastorBackend = require('./vitastor/VitastorBackend');
clients[location] = new VitastorBackend(location, locationObj.details);
}
if (locationObj.type === 'scality') {
if (locationObj.details.connector.sproxyd) {
const Sproxy = require('sproxydclient');
clients[location] = new Sproxy({
bootstrap: locationObj.details.connector
.sproxyd.bootstrap,
@ -46,7 +42,6 @@ function parseLC(config, vault) {
});
clients[location].clientType = 'scality';
} else if (locationObj.details.connector.hdclient) {
const Hyperdrive = require('hdclient');
clients[location] = new Hyperdrive.hdcontroller.HDProxydClient(
locationObj.details.connector.hdclient);
clients[location].clientType = 'scality';
@ -82,8 +77,8 @@ function parseLC(config, vault) {
connectionAgent = new HttpsProxyAgent(options);
} else {
connectionAgent = sslEnabled ?
new https.Agent(httpAgentConfig, { maxSockets: false }) :
new http.Agent(httpAgentConfig, { maxSockets: false });
new https.Agent(httpAgentConfig) :
new http.Agent(httpAgentConfig);
}
const httpOptions = { agent: connectionAgent, timeout: 0 };
const s3Params = {

View File

@ -5,7 +5,6 @@ const { parseTagFromQuery } = require('../../s3middleware/tagging');
const { externalBackendHealthCheckInterval } = require('../../constants');
const DataFileBackend = require('./file/DataFileInterface');
const { createLogger, checkExternalBackend } = require('./external/utils');
const jsutil = require('../../jsutil');
class MultipleBackendGateway {
constructor(clients, metadata, locStorageCheckFn) {
@ -200,12 +199,11 @@ class MultipleBackendGateway {
uploadPart(request, streamingV4Params, stream, size, location, key,
uploadId, partNumber, bucketName, log, cb) {
const client = this.clients[location];
const cbOnce = jsutil.once(cb);
if (client.uploadPart) {
return this.locStorageCheckFn(location, size, log, err => {
if (err) {
return cbOnce(err);
return cb(err);
}
return client.uploadPart(request, streamingV4Params, stream,
size, key, uploadId, partNumber, bucketName, log,
@ -219,14 +217,14 @@ class MultipleBackendGateway {
'metric following object PUT failure',
{ error: error.message });
}
return cbOnce(err);
return cb(err);
});
}
return cbOnce(null, partInfo);
return cb(null, partInfo);
});
});
}
return cbOnce();
return cb();
}
listParts(key, uploadId, location, bucketName, partNumberMarker, maxParts,

View File

@ -8,7 +8,6 @@ const getMetaHeaders =
const { prepareStream } = require('../../../s3middleware/prepareStream');
const { createLogger, logHelper, removeQuotes, trimXMetaPrefix } =
require('./utils');
const jsutil = require('../../../jsutil');
const missingVerIdInternalError = errors.InternalError.customizeDescription(
'Invalid state. Please ensure versioning is enabled ' +
@ -318,11 +317,9 @@ class AwsClient {
uploadPart(request, streamingV4Params, stream, size, key, uploadId,
partNumber, bucketName, log, callback) {
let hashedStream = stream;
const cbOnce = jsutil.once(callback);
if (request) {
const partStream = prepareStream(request, streamingV4Params,
this._vault, log, cbOnce);
this._vault, log, callback);
hashedStream = new MD5Sum();
partStream.pipe(hashedStream);
}
@ -336,7 +333,7 @@ class AwsClient {
if (err) {
logHelper(log, 'error', 'err from data backend ' +
'on uploadPart', err, this._dataStoreName, this.clientType);
return cbOnce(errors.ServiceUnavailable
return callback(errors.ServiceUnavailable
.customizeDescription('Error returned from ' +
`${this.type}: ${err.message}`),
);
@ -350,7 +347,7 @@ class AwsClient {
dataStoreName: this._dataStoreName,
dataStoreETag: noQuotesETag,
};
return cbOnce(null, dataRetrievalInfo);
return callback(null, dataRetrievalInfo);
});
}

View File

@ -1,109 +1,62 @@
const { BlobServiceClient, StorageSharedKeyCredential, AnonymousCredential } = require('@azure/storage-blob');
const { ClientSecretCredential } = require('@azure/identity');
const url = require('url');
const azure = require('azure-storage');
const errors = require('../../../errors').default;
const azureMpuUtils = require('../../../s3middleware/azureHelpers/mpuUtils');
const azureMpuUtils = require('../../../s3middleware/azureHelpers/mpuUtils').default;
const { validateAndFilterMpuParts } =
require('../../../s3middleware/processMpuParts');
const { createLogger, logHelper, translateAzureMetaHeaders } =
require('./utils');
const objectUtils = require('../../../s3middleware/objectUtils');
const constants = require('../../../constants');
const packageVersion = require('../../../../package.json').version;
class AzureClient {
static addQueryParams(endpoint, token) {
const url = new URL(endpoint);
const query = token.startsWith('?') ? token.slice(1) : token;
if (!url.search) {
url.search = `?${query}`;
} else if (url.search === '?') {
url.search += query;
} else {
url.search += `&${query}`;
}
return url.toString();
}
azure.Constants.USER_AGENT_PRODUCT_NAME = constants.productName;
azure.Constants.USER_AGENT_PRODUCT_VERSION = packageVersion;
class AzureClient {
constructor(config) {
this._azureStorageEndpoint = config.azureStorageEndpoint;
this._azureStorageCredentials = config.azureStorageCredentials;
this._azureContainerName = config.azureContainerName;
const cred = (credentialsConfig => {
switch (credentialsConfig.authMethod) {
case 'client-secret':
return new ClientSecretCredential(
credentialsConfig.tenantId,
credentialsConfig.clientId,
credentialsConfig.clientKey,
);
case 'shared-access-signature':
this._azureStorageEndpoint = AzureClient.addQueryParams(
this._azureStorageEndpoint, credentialsConfig.sasToken);
return new AnonymousCredential();
case 'shared-key':
default:
return new StorageSharedKeyCredential(
credentialsConfig.storageAccountName,
credentialsConfig.storageAccessKey,
);
}
})(this._azureStorageCredentials);
const proxyOptions = (() => {
if (!config.proxy || !config.proxy.url) {
return undefined;
}
// NOTE: config.proxy.certs is not supported
const parsedUrl = new URL(config.proxy.url);
return {
host: parsedUrl.host,
port: parsedUrl.port || 80,
username: parsedUrl.username || undefined,
password: parsedUrl.password || undefined,
};
})();
this._client = new BlobServiceClient(this._azureStorageEndpoint, cred, {
keepAliveOptions: {
enable: false, // Enable use of global HTTP agent
},
proxyOptions,
userAgentOptions: {
userAgentPrefix: `${constants.productName}/${packageVersion} `,
},
}).getContainerClient(this._azureContainerName);
this._client = azure.createBlobService(
this._azureStorageCredentials.storageAccountName,
this._azureStorageCredentials.storageAccessKey,
this._azureStorageEndpoint);
this._client.enableGlobalHttpAgent = true;
this._dataStoreName = config.dataStoreName;
this._bucketMatch = config.bucketMatch;
if (config.proxy && config.proxy.url) {
const parsedUrl = url.parse(config.proxy.url);
if (!parsedUrl.port) {
parsedUrl.port = 80;
}
const proxyParams = parsedUrl;
if (config.proxy.certs) {
Object.assign(proxyParams, config.proxy.certs);
}
this._client.setProxy(proxyParams);
}
}
/**
* Run azure method call.
* @param {string} [s3Method] S3 method name
* @param {string} [azureMethod] Azure method name
* @param {ErrorWrapper~Command} [command] Actual command to run
* @param {RequestLogger} [log] Logger
* @param {ErrorWrapper~Cb} [cb] The final callback
* @returns {void}
*
* @callback ErrorWrapper~Command
* @param {azure.ContainerClient} [client] Azure client to use
* @returns {Promise<any>}
*
* @callback ErrorWrapper~Cb
* @param {azure.ArsenalError} [arsenalErr] Error returned by the command
* @param {any} [result] Result of Azure SDK command
* @returns {void}
*/
_errorWrapper(s3Method, azureMethod, command, log, cb) {
_errorWrapper(s3Method, azureMethod, args, log, cb) {
if (log) {
log.info(`calling azure ${azureMethod} in ${s3Method}`);
log.info(`calling azure ${azureMethod}`);
}
try {
this._client[azureMethod].apply(this._client, args);
} catch (err) {
const error = errors.ServiceUnavailable;
if (log) {
log.error('error thrown by Azure Storage Client Library',
{ error: err.message, stack: err.stack, s3Method,
azureMethod, dataStoreName: this._dataStoreName });
}
cb(error.customizeDescription('Error from Azure ' +
`method: ${azureMethod} on ${s3Method} S3 call: ` +
`${err.message}`));
}
command(this._client).then(
result => cb(null, result),
cb,
);
}
_createAzureKey(requestBucketName, requestObjectKey,
@ -166,32 +119,6 @@ class AzureClient {
};
}
/**
* Build Azure HTTP headers for content settings
* @param {object} [properties] The blob properties to set.
* @param {string} [properties.contentType] The MIME content type of the blob.
* The default type is application/octet-stream.
* @param {string} [properties.contentEncoding] The content encodings that have been applied
* to the blob.
* @param {string} [properties.contentLanguage] The natural languages used by this resource.
* @param {string} [properties.cacheControl] The blob's cache control.
* @param {string} [properties.contentDisposition] The blob's content disposition.
* @param {string} [properties.contentMD5] The blob's MD5 hash.
* @returns {BlobHTTPHeaders} The headers
*/
_getAzureContentSettingsHeaders(properties) {
return {
blobContentMD5: properties.contentMD5
? objectUtils.getMD5Buffer(properties.contentMD5)
: undefined,
blobContentType: properties.contentType || undefined,
blobCacheControl: properties.cacheControl || undefined,
blobContentDisposition: properties.contentDisposition || undefined,
blobContentEncoding: properties.contentEncoding || undefined,
blobContentLanguage: properties.blobContentLanguage || undefined,
};
}
put(stream, size, keyContext, reqUids, callback, skey, metadata) {
const log = createLogger(reqUids);
// before blob is put, make sure there is no ongoing MPU with same key
@ -207,59 +134,50 @@ class AzureClient {
const options = {
metadata: translateAzureMetaHeaders(keyContext.metaHeaders,
keyContext.tagging),
blobHTTPHeaders: this._getAzureContentSettingsHeaders(
keyContext || {}),
contentSettings: {
contentType: keyContext.contentType || undefined,
cacheControl: keyContext.cacheControl || undefined,
contentDisposition: keyContext.contentDisposition ||
undefined,
contentEncoding: keyContext.contentEncoding || undefined,
},
};
if (size === 0) {
return this._errorWrapper('put', 'uploadData', async client => {
try {
await client.getBlockBlobClient(azureKey).upload('', 0, options);
return azureKey;
} catch (err) {
logHelper(log, 'error', 'err from Azure PUT data backend',
err, this._dataStoreName);
throw errors.ServiceUnavailable.customizeDescription(
`Error returned from Azure: ${err.message}`);
return this._errorWrapper('put', 'createBlockBlobFromText',
[this._azureContainerName, azureKey, '', options,
err => {
if (err) {
logHelper(log, 'error', 'err from Azure PUT data ' +
'backend', err, this._dataStoreName);
return callback(errors.ServiceUnavailable
.customizeDescription('Error returned from ' +
`Azure: ${err.message}`));
}
}, log, callback);
return callback(null, azureKey);
}], log, callback);
}
return this._errorWrapper('put', 'createBlockBlobFromStream', async client => {
try {
await client.getBlockBlobClient(azureKey).upload(() => stream, size, options);
return azureKey;
} catch (err) {
logHelper(log, 'error', 'err from Azure PUT data backend',
err, this._dataStoreName);
throw errors.ServiceUnavailable.customizeDescription(
`Error returned from Azure: ${err.message}`);
return this._errorWrapper('put', 'createBlockBlobFromStream',
[this._azureContainerName, azureKey, stream, size, options,
err => {
if (err) {
logHelper(log, 'error', 'err from Azure PUT data ' +
'backend', err, this._dataStoreName);
return callback(errors.ServiceUnavailable
.customizeDescription('Error returned from ' +
`Azure: ${err.message}`));
}
}, log, callback);
return callback(null, azureKey);
}], log, callback);
});
}
/**
* Build BlobRequestConditions from azureStreamingOptions
* @param {object} [objectGetInfoOptions] Azure streaming options
* @param {object} [objectGetInfoOptions.accessConditions] Access conditions
* @param {Date} [objectGetInfoOptions.accessConditions.DateUnModifiedSince] Filter objects not
* modified since that date.
* @returns {BlobRequestConditions} Request conditions
*/
_getAzureConditions(objectGetInfoOptions) {
const accessConditions = objectGetInfoOptions.accessConditions || {};
return {
ifUnmodifiedSince: accessConditions.DateUnModifiedSince || undefined,
};
}
head(objectGetInfo, reqUids, callback) {
const log = createLogger(reqUids);
const { key } = objectGetInfo;
return this._errorWrapper('head', 'getBlobProperties', async client => {
try {
const data = await client.getBlockBlobClient(key).getProperties();
return data;
} catch (err) {
const { key, azureStreamingOptions } = objectGetInfo;
return this._errorWrapper('head', 'getBlobProperties',
[this._azureContainerName, key, azureStreamingOptions,
(err, data) => {
if (err) {
let logLevel;
let retError;
if (err.code === 'NotFound') {
@ -267,46 +185,42 @@ class AzureClient {
retError = errors.LocationNotFound;
} else {
logLevel = 'error';
retError = errors.ServiceUnavailable.customizeDescription(
retError = errors.ServiceUnavailable
.customizeDescription(
`Error returned from Azure: ${err.message}`);
}
logHelper(log, logLevel, 'err from Azure HEAD data backend',
err, this._dataStoreName);
throw retError;
return callback(retError);
}
}, log, callback);
return callback(null, data);
}], log, callback);
}
get(objectGetInfo, range, reqUids, callback) {
const log = createLogger(reqUids);
// for backwards compatibility
const { key, response, azureStreamingOptions } = objectGetInfo;
let rangeStart = 0;
let rangeEnd = undefined;
let streamingOptions;
if (azureStreamingOptions) {
// option coming from api.get()
rangeStart = (typeof azureStreamingOptions.rangeStart === 'string')
? parseInt(azureStreamingOptions.rangeStart, 10)
: azureStreamingOptions.rangeStart;
rangeEnd = (typeof azureStreamingOptions.rangeEnd === 'string')
? parseInt(azureStreamingOptions.rangeEnd, 10)
: azureStreamingOptions.rangeEnd;
streamingOptions = azureStreamingOptions;
} else if (range) {
// option coming from multipleBackend.upload()
rangeStart = (typeof range[0] === 'number') ? range[0] : 0;
rangeEnd = range[1] || undefined;
const rangeStart = (typeof range[0] === 'number') ? range[0].toString() : undefined;
const rangeEnd = range[1] ? range[1].toString() : undefined;
streamingOptions = { rangeStart, rangeEnd };
}
this._errorWrapper('get', 'getBlobToStream', async client => {
try {
const rsp = await client.getBlockBlobClient(key)
.download(rangeStart, rangeEnd - rangeStart + 1 || undefined);
rsp.readableStreamBody.pipe(response);
return response;
} catch (err) {
this._errorWrapper('get', 'getBlobToStream',
[this._azureContainerName, key, response, streamingOptions,
err => {
if (err) {
logHelper(log, 'error', 'err from Azure GET data backend',
err, this._dataStoreName);
throw errors.ServiceUnavailable;
return callback(errors.ServiceUnavailable);
}
}, log, callback);
return callback(null, response);
}], log, callback);
}
delete(objectGetInfo, reqUids, callback) {
@ -316,46 +230,44 @@ class AzureClient {
objectGetInfo.key;
let options;
if (typeof objectGetInfo === 'object') {
options = {
conditions: this._getAzureConditions(objectGetInfo.options || {}),
};
options = objectGetInfo.options;
}
return this._errorWrapper('delete', 'deleteBlobIfExists', async client => {
try {
await client.getBlockBlobClient(key).deleteIfExists(options);
} catch (err) {
if (err.statusCode === 412) {
throw errors.PreconditionFailed;
return this._errorWrapper('delete', 'deleteBlobIfExists',
[this._azureContainerName, key, options,
err => {
if (err && err.statusCode === 412) {
return callback(errors.PreconditionFailed);
}
if (err) {
const log = createLogger(reqUids);
logHelper(log, 'error', 'error deleting object from Azure datastore',
err, this._dataStoreName);
throw errors.ServiceUnavailable.customizeDescription(
`Error returned from Azure: ${err.message}`);
logHelper(log, 'error', 'error deleting object from ' +
'Azure datastore', err, this._dataStoreName);
return callback(errors.ServiceUnavailable
.customizeDescription('Error returned from ' +
`Azure: ${err.message}`));
}
}, log, callback);
return callback();
}], log, callback);
}
healthcheck(location, callback, flightCheckOnStartUp) {
const azureResp = {};
this._errorWrapper('healthcheck', 'checkAzureHealth', async client => {
try {
if (flightCheckOnStartUp) {
await client.createIfNotExists();
} else {
await client.exists();
const healthCheckAction = flightCheckOnStartUp ?
'createContainerIfNotExists' : 'doesContainerExist';
this._errorWrapper('checkAzureHealth', healthCheckAction,
[this._azureContainerName, err => {
/* eslint-disable no-param-reassign */
if (err) {
azureResp[location] = { error: err.message,
external: true };
return callback(null, azureResp);
}
azureResp[location] = {
message: 'Congrats! You can access the Azure storage account',
message:
'Congrats! You can access the Azure storage account',
};
} catch (err) {
azureResp[location] = {
error: err.message,
external: true,
};
}
return azureResp;
}, null, callback);
return callback(null, azureResp);
}], null, callback);
}
uploadPart(request, streamingV4Params, partStream, size, key, uploadId,
@ -409,7 +321,9 @@ class AzureClient {
completeMPU(jsonList, mdInfo, key, uploadId, bucket, metaHeaders,
contentSettings, tagging, log, callback) {
const azureKey = this._createAzureKey(bucket, key, this._bucketMatch);
const commitList = jsonList.uncommittedBlocks || [];
const commitList = {
UncommittedBlocks: jsonList.uncommittedBlocks || [],
};
let filteredPartsObj;
if (!jsonList.uncommittedBlocks) {
const { storedParts, mpuOverviewKey, splitter } = mdInfo;
@ -422,56 +336,60 @@ class AzureClient {
// part.locations is always array of 1, which contains data info
const subPartIds =
azureMpuUtils.getSubPartIds(part.locations[0], uploadId);
commitList.push(...subPartIds);
commitList.UncommittedBlocks.push(...subPartIds);
});
}
const options = {
blobHTTPHeaders: this._getAzureContentSettingsHeaders(contentSettings || {}),
contentSettings,
metadata: translateAzureMetaHeaders(metaHeaders || {}, tagging),
};
return this._errorWrapper('completeMPU', 'commitBlocks', async client => {
try {
await client.getBlockBlobClient(azureKey).commitBlockList(commitList, options);
return {
return this._errorWrapper('completeMPU', 'commitBlocks',
[this._azureContainerName, azureKey, commitList, options,
err => {
if (err) {
logHelper(log, 'error', 'err completing MPU on Azure ' +
'datastore', err, this._dataStoreName);
return callback(errors.ServiceUnavailable
.customizeDescription('Error returned from ' +
`Azure: ${err.message}`));
}
const completeObjData = {
key: azureKey,
filteredPartsObj,
};
} catch (err) {
logHelper(log, 'error', 'err completing MPU on Azure datastore',
err, this._dataStoreName);
throw errors.ServiceUnavailable.customizeDescription(
`Error returned from Azure: ${err.message}`);
}
}, log, callback);
return callback(null, completeObjData);
}], log, callback);
}
objectPutTagging(key, bucket, objectMD, log, callback) {
const azureKey = this._createAzureKey(bucket, key, this._bucketMatch);
const azureMD = this._getMetaHeaders(objectMD);
azureMD.tags = JSON.stringify(objectMD.tags);
this._errorWrapper('objectPutTagging', 'setBlobMetadata', async client => {
try {
await client.getBlockBlobClient(azureKey).setMetadata(azureMD);
} catch (err) {
logHelper(log, 'error', 'err putting object tags to Azure backend',
err, this._dataStoreName);
throw errors.ServiceUnavailable;
this._errorWrapper('objectPutTagging', 'setBlobMetadata',
[this._azureContainerName, azureKey, azureMD,
err => {
if (err) {
logHelper(log, 'error', 'err putting object tags to ' +
'Azure backend', err, this._dataStoreName);
return callback(errors.ServiceUnavailable);
}
}, log, callback);
return callback();
}], log, callback);
}
objectDeleteTagging(key, bucketName, objectMD, log, callback) {
const azureKey = this._createAzureKey(bucketName, key, this._bucketMatch);
const azureMD = this._getMetaHeaders(objectMD);
this._errorWrapper('objectDeleteTagging', 'setBlobMetadata', async client => {
try {
await client.getBlockBlobClient(azureKey).setMetadata(azureMD);
} catch (err) {
logHelper(log, 'error', 'err putting object tags to Azure backend',
err, this._dataStoreName);
throw errors.ServiceUnavailable;
this._errorWrapper('objectDeleteTagging', 'setBlobMetadata',
[this._azureContainerName, azureKey, azureMD,
err => {
if (err) {
logHelper(log, 'error', 'err putting object tags to ' +
'Azure backend', err, this._dataStoreName);
return callback(errors.ServiceUnavailable);
}
}, log, callback);
return callback();
}], log, callback);
}
copyObject(request, destLocationConstraintName, sourceKey,
@ -488,50 +406,54 @@ class AzureClient {
let options;
if (storeMetadataParams.metaHeaders) {
options = {
metadata: translateAzureMetaHeaders(storeMetadataParams.metaHeaders),
};
options = { metadata:
translateAzureMetaHeaders(storeMetadataParams.metaHeaders) };
}
// TODO: should we use syncCopyBlob() instead? or use poller.pollUntilDone() to wait until complete?
this._errorWrapper('copyObject', 'startCopyBlob', async client => {
let res;
try {
const poller = await client.getBlockBlobClient(destAzureKey).beginCopyFromURL(
`${this._azureStorageEndpoint}${sourceContainerName}/${sourceKey}`,
options,
this._errorWrapper('copyObject', 'startCopyBlob',
[`${this._azureStorageEndpoint}` +
`${sourceContainerName}/${sourceKey}`,
this._azureContainerName, destAzureKey, options,
(err, res) => {
if (err) {
if (err.code === 'CannotVerifyCopySource') {
logHelper(log, 'error', 'Unable to access ' +
`${sourceContainerName} Azure Container`, err,
this._dataStoreName);
return callback(errors.AccessDenied
.customizeDescription('Error: Unable to access ' +
`${sourceContainerName} Azure Container`),
);
res = poller.getOperationState().result;
if (res.copyProgress !== 'pending') {
return destAzureKey;
}
} catch (err) {
if (err.code === 'CannotVerifyCopySource') { // TOOD: may use a constant (or type) from SDK ??
logHelper(log, 'error',
`Unable to access ${sourceContainerName} Azure Container`,
logHelper(log, 'error', 'error from data backend on ' +
'copyObject', err, this._dataStoreName);
return callback(errors.ServiceUnavailable
.customizeDescription('Error returned from ' +
`AWS: ${err.message}`),
);
}
if (res.copy.status === 'pending') {
logHelper(log, 'error', 'Azure copy status is pending',
err, this._dataStoreName);
throw errors.AccessDenied.customizeDescription(
`Error: Unable to access ${sourceContainerName} Azure Container`);
const copyId = res.copy.id;
this._client.abortCopyBlob(this._azureContainerName,
destAzureKey, copyId, err => {
if (err) {
logHelper(log, 'error', 'error from data backend ' +
'on abortCopyBlob', err, this._dataStoreName);
return callback(errors.ServiceUnavailable
.customizeDescription('Error returned from ' +
`AWS on abortCopyBlob: ${err.message}`),
);
}
logHelper(log, 'error', 'error from data backend on copyObject',
err, this._dataStoreName);
throw errors.ServiceUnavailable.customizeDescription(
`Error returned from AWS: ${err.message}`);
return callback(errors.InvalidObjectState
.customizeDescription('Error: Azure copy status was ' +
'pending. It has been aborted successfully'),
);
});
}
logHelper(log, 'error', 'Azure copy status is pending', {}, this._dataStoreName);
try {
await client.getBlockBlobClient(destAzureKey).abortCopyFromURL(res.copyId);
} catch (err) {
logHelper(log, 'error', 'error from data backend on abortCopyBlob',
err, this._dataStoreName);
throw errors.ServiceUnavailable.customizeDescription(
`Error returned from AWS on abortCopyBlob: ${err.message}`);
}
throw errors.InvalidObjectState.customizeDescription(
'Error: Azure copy status was pending. It has been aborted successfully');
}, log, callback);
return callback(null, destAzureKey);
}], log, callback);
}
}

View File

@ -1,696 +0,0 @@
// Zenko CloudServer Vitastor data storage backend adapter
// Copyright (c) Vitaliy Filippov, 2019+
// License: VNPL-1.1 (see README.md for details)
const stream = require('stream');
const vitastor = require('vitastor');
const VOLUME_MAGIC = 'VstS3Vol';
const OBJECT_MAGIC = 'VstS3Obj';
const FLAG_DELETED = 2n;
type Volume = {
id: number,
partial_sectors: {
[key: string]: {
buffer: Buffer,
refs: number,
},
},
header: {
location: string,
bucket: string,
max_size: number,
create_ts: number,
used_ts: number,
size: number,
objects: number,
removed_objects: number,
object_bytes: number,
removed_bytes: number,
},
};
type ObjectHeader = {
size: number,
key: string,
part_num?: number,
};
class VitastorBackend
{
locationName: string;
config: {
pool_id: number,
metadata_image: string,
metadata_pool_id: number,
metadata_inode_num: number,
size_buckets: number[],
size_bucket_mul: number,
id_batch_size: number,
sector_size: number,
write_chunk_size: number,
read_chunk_size: number,
pack_objects: boolean,
// and also other parameters for vitastor itself
};
next_id: number;
alloc_id: number;
opened: boolean;
on_open: ((...args: any[]) => void)[] | null;
open_error: Error | null;
cli: any;
kv: any;
volumes: {
[bucket: string]: {
[max_size: string]: Volume,
},
};
volumes_by_id: {
[id: string]: Volume,
};
volume_delete_stats: {
[id: string]: {
count: number,
bytes: number,
},
};
constructor(locationName, config)
{
this.locationName = locationName;
this.config = config;
// validate config
this.config.pool_id = Number(this.config.pool_id) || 0;
if (!this.config.pool_id)
throw new Error('pool_id is required for Vitastor');
if (!this.config.metadata_image && (!this.config.metadata_pool_id || !this.config.metadata_inode_num))
throw new Error('metadata_image or metadata_inode is required for Vitastor');
if (!this.config.size_buckets || !this.config.size_buckets.length)
this.config.size_buckets = [ 32*1024, 128*1024, 512*1024, 2*1024, 8*1024 ];
this.config.size_bucket_mul = Number(this.config.size_bucket_mul) || 2;
this.config.id_batch_size = Number(this.config.id_batch_size) || 100;
this.config.sector_size = Number(this.config.sector_size) || 0;
if (this.config.sector_size < 4096)
this.config.sector_size = 4096;
this.config.write_chunk_size = Number(this.config.write_chunk_size) || 0;
if (this.config.write_chunk_size < this.config.sector_size)
this.config.write_chunk_size = 4*1024*1024; // 4 MB
this.config.read_chunk_size = Number(this.config.read_chunk_size) || 0;
if (this.config.read_chunk_size < this.config.sector_size)
this.config.read_chunk_size = 4*1024*1024; // 4 MB
this.config.pack_objects = !!this.config.pack_objects;
// state
this.next_id = 1;
this.alloc_id = 0;
this.opened = false;
this.on_open = null;
this.open_error = null;
this.cli = new vitastor.Client(config);
this.kv = new vitastor.KV(this.cli);
// we group objects into volumes by bucket and size
this.volumes = {};
this.volumes_by_id = {};
this.volume_delete_stats = {};
}
async _makeVolumeId()
{
if (this.next_id <= this.alloc_id)
{
return this.next_id++;
}
const id_key = 'id'+this.config.pool_id;
const [ err, prev ] = await new Promise<[ any, string ]>(ok => this.kv.get(id_key, (err, value) => ok([ err, value ])));
if (err && err != vitastor.ENOENT)
{
throw new Error(err);
}
const new_id = (parseInt(prev) || 0) + 1;
this.next_id = new_id;
this.alloc_id = this.next_id + this.config.id_batch_size - 1;
await new Promise((ok, no) => this.kv.set(id_key, this.alloc_id, err => (err ? no(new Error(err)) : ok(null)), cas_old => cas_old === prev));
return this.next_id;
}
async _getVolume(bucketName, size)
{
if (!this.opened)
{
if (this.on_open)
{
await new Promise(ok => this.on_open!.push(ok));
}
else
{
this.on_open = [];
if (this.config.metadata_image)
{
const img = new vitastor.Image(this.cli, this.config.metadata_image);
const info = await new Promise<{ pool_id: number, inode_num: number }>(ok => img.get_info(ok));
this.config.metadata_pool_id = info.pool_id;
this.config.metadata_inode_num = info.inode_num;
}
const kv_config = {};
for (const key in this.config)
{
if (key.substr(0, 3) === 'kv_')
kv_config[key] = this.config[key];
}
this.open_error = await new Promise(ok => this.kv.open(
this.config.metadata_pool_id, this.config.metadata_inode_num,
kv_config, err => ok(err ? new Error(err) : null)
));
this.opened = true;
this.on_open.map(cb => setImmediate(cb));
this.on_open = null;
}
}
if (this.open_error)
{
throw this.open_error;
}
let i;
for (i = 0; i < this.config.size_buckets.length && size >= this.config.size_buckets[i]; i++) {}
let s;
if (i < this.config.size_buckets.length)
s = this.config.size_buckets[i];
else if (this.config.size_bucket_mul > 1)
{
while (size >= s)
s = Math.floor(this.config.size_bucket_mul * s);
}
if (!this.volumes[bucketName])
{
this.volumes[bucketName] = {};
}
if (this.volumes[bucketName][s])
{
return this.volumes[bucketName][s];
}
const new_id = await this._makeVolumeId();
const new_vol = this.volumes[bucketName][s] = {
id: new_id,
// FIXME: partial_sectors should be written with CAS because otherwise we may lose quick deletes
partial_sectors: {},
header: {
location: this.locationName,
bucket: bucketName,
max_size: s,
create_ts: Date.now(),
used_ts: Date.now(),
size: this.config.sector_size, // initial position is right after header
objects: 0,
removed_objects: 0,
object_bytes: 0,
removed_bytes: 0,
},
};
this.volumes_by_id[new_id] = new_vol;
const header_text = JSON.stringify(this.volumes[bucketName][s].header);
const buf = Buffer.alloc(this.config.sector_size);
buf.write(VOLUME_MAGIC + header_text, 0);
await new Promise((ok, no) => this.cli.write(
this.config.pool_id, new_id, 0, buf, err => (err ? no(new Error(err)) : ok(null))
));
await new Promise((ok, no) => this.kv.set(
'vol_'+this.config.pool_id+'_'+new_id, header_text, err => (err ? no(new Error(err)) : ok(null)), cas_old => !cas_old
));
return new_vol;
}
toObjectGetInfo(objectKey, bucketName, storageLocation)
{
return null;
}
_bufferStart(vol, cur_pos, cur_size, cur_chunks, sector_refs)
{
if ((cur_pos % this.config.sector_size) ||
Math.floor((cur_pos + cur_size) / this.config.sector_size) == Math.floor(cur_pos / this.config.sector_size))
{
const sect_pos = Math.floor(cur_pos / this.config.sector_size) * this.config.sector_size;
const sect = vol.partial_sectors[sect_pos]
? vol.partial_sectors[sect_pos].buffer
: Buffer.alloc(this.config.sector_size);
if (this.config.pack_objects)
{
// Save only if <pack_objects>
if (!vol.partial_sectors[sect_pos])
vol.partial_sectors[sect_pos] = { buffer: sect, refs: 0 };
vol.partial_sectors[sect_pos].refs++;
sector_refs.push(sect_pos);
}
let off = cur_pos % this.config.sector_size;
let i = 0;
for (; i < cur_chunks.length; i++)
{
let copy_len = this.config.sector_size - off;
copy_len = copy_len > cur_chunks[i].length ? cur_chunks[i].length : copy_len;
cur_chunks[i].copy(sect, off, 0, copy_len);
off += copy_len;
if (copy_len < cur_chunks[i].length)
{
cur_chunks[i] = cur_chunks[i].slice(copy_len);
cur_size -= copy_len;
break;
}
else
cur_size -= cur_chunks[i].length;
}
cur_chunks.splice(0, i, sect);
cur_size += this.config.sector_size;
cur_pos = sect_pos;
}
return [ cur_pos, cur_size ];
}
_bufferEnd(vol, cur_pos, cur_size, cur_chunks, sector_refs, write_all)
{
const write_pos = cur_pos;
const write_chunks = cur_chunks;
let write_size = cur_size;
cur_chunks = [];
cur_pos += cur_size;
cur_size = 0;
let remain = (cur_pos % this.config.sector_size);
if (remain > 0)
{
cur_pos -= remain;
let last_sect = null;
if (write_all)
{
last_sect = vol.partial_sectors[cur_pos]
? vol.partial_sectors[cur_pos].buffer
: Buffer.alloc(this.config.sector_size);
if (this.config.pack_objects)
{
// Save only if <pack_objects>
if (!vol.partial_sectors[cur_pos])
vol.partial_sectors[cur_pos] = { buffer: last_sect, refs: 0 };
vol.partial_sectors[cur_pos].refs++;
sector_refs.push(cur_pos);
}
}
write_size -= remain;
if (write_size < 0)
write_size = 0;
for (let i = write_chunks.length-1; i >= 0 && remain > 0; i--)
{
if (write_chunks[i].length <= remain)
{
remain -= write_chunks[i].length;
if (write_all)
write_chunks[i].copy(last_sect, remain);
else
cur_chunks.unshift(write_chunks[i]);
write_chunks.pop();
}
else
{
if (write_all)
write_chunks[i].copy(last_sect, 0, write_chunks[i].length - remain);
else
cur_chunks.unshift(write_chunks[i].slice(write_chunks[i].length - remain));
write_chunks[i] = write_chunks[i].slice(0, write_chunks[i].length - remain);
remain = 0;
i++;
}
}
if (write_all)
{
write_chunks.push(last_sect);
write_size += this.config.sector_size;
}
}
for (const chunk of cur_chunks)
{
cur_size += chunk.length;
}
return [ write_pos, write_chunks, write_size, cur_pos, cur_size, cur_chunks ];
}
/**
* reqUids: string, // request-ids for log, usually joined by ':'
* keyContext: {
* // a lot of shit, basically all metadata
* bucketName,
* objectKey,
* owner?,
* namespace?,
* partNumber?,
* uploadId?,
* metaHeaders?,
* isDeleteMarker?,
* tagging?,
* contentType?,
* cacheControl?,
* contentDisposition?,
* contentEncoding?,
* },
* callback: (error, objectGetInfo: any) => void,
*/
put(stream, size, keyContext, reqUids, callback)
{
callback = once(callback);
this._getVolume(keyContext.bucketName, size)
.then(vol => this._put(vol, stream, size, keyContext, reqUids, callback))
.catch(callback);
}
_put(vol, stream, size, keyContext, reqUids, callback)
{
const object_header: ObjectHeader = {
size,
key: keyContext.objectKey,
};
if (keyContext.partNumber)
{
object_header.part_num = keyContext.partNumber;
}
// header is: <8 bytes magic> <8 bytes flags> <8 bytes json length> <json>
const hdr_begin_buf = Buffer.alloc(24);
const hdr_json_buf = Buffer.from(JSON.stringify(object_header), 'utf-8');
hdr_begin_buf.write(OBJECT_MAGIC);
hdr_begin_buf.writeBigInt64LE(BigInt(hdr_json_buf.length), 16);
const object_header_buf = Buffer.concat([ hdr_begin_buf, hdr_json_buf ]);
const object_pos = vol.header.size;
const object_get_info = { volume: vol.id, offset: object_pos, hdrlen: object_header_buf.length, size };
let cur_pos = object_pos;
let cur_chunks = [ object_header_buf ];
let cur_size = object_header_buf.length;
let err: Error|null = null;
let waiting = 1; // 1 for end or error, 1 for each write request
vol.header.size += object_header_buf.length + size;
if (!this.config.pack_objects && (vol.header.size % this.config.sector_size))
{
vol.header.size += this.config.sector_size - (vol.header.size % this.config.sector_size);
}
const writeChunk = (last) =>
{
const sector_refs = [];
// Handle partial beginning
[ cur_pos, cur_size ] = this._bufferStart(vol, cur_pos, cur_size, cur_chunks, sector_refs);
// Handle partial end
let write_pos, write_chunks, write_size;
[ write_pos, write_chunks, write_size, cur_pos, cur_size, cur_chunks ] = this._bufferEnd(vol, cur_pos, cur_size, cur_chunks, sector_refs, last);
waiting++;
// FIXME: pool_id: maybe it should be stored in volume metadata to allow to migrate volumes?
this.cli.write(this.config.pool_id, vol.id, write_pos, write_chunks, (res) =>
{
for (const sect of sector_refs)
{
vol.partial_sectors[sect].refs--;
if (!vol.partial_sectors[sect].refs &&
vol.header.size >= sect+this.config.sector_size)
{
// Forget partial data when it's not needed anymore
delete(vol.partial_sectors[sect]);
}
}
waiting--;
if (res)
{
err = new Error(res);
waiting--;
}
if (!waiting)
{
callback(err, err ? null : object_get_info);
}
});
};
// Stream data
stream.on('error', (e) =>
{
err = e;
waiting--;
if (!waiting)
{
callback(err, null);
}
});
stream.on('end', () =>
{
if (err)
{
return;
}
waiting--;
if (cur_size)
{
// write last chunk
writeChunk(true);
}
if (!waiting)
{
callback(null, object_get_info);
}
});
stream.on('data', (chunk) =>
{
if (err)
{
return;
}
cur_chunks.push(chunk);
cur_size += chunk.length;
if (cur_size >= this.config.write_chunk_size)
{
// got a complete chunk, write it out
writeChunk(false);
}
});
}
/**
* objectGetInfo: {
* key: { volume, offset, hdrlen, size }, // from put
* size,
* start,
* dataStoreName,
* dataStoreETag,
* range,
* response: ServerResponse,
* },
* range?: [ start, end ], // like in HTTP - first byte index, last byte index
* callback: (error, readStream) => void,
*/
get(objectGetInfo, range, reqUids, callback)
{
if (!(objectGetInfo instanceof Object) || !objectGetInfo.key ||
!(objectGetInfo.key instanceof Object) || !objectGetInfo.key.volume ||
!objectGetInfo.key.offset || !objectGetInfo.key.hdrlen || !objectGetInfo.key.size)
{
throw new Error('objectGetInfo must be { key: { volume, offset, hdrlen, size } }, but is '+JSON.stringify(objectGetInfo));
}
const [ start, end ] = range || [];
if (start < 0 || end < 0 || end != null && start != null && end < start || start >= objectGetInfo.key.size)
{
throw new Error('Invalid range: '+start+'-'+end);
}
let offset = objectGetInfo.key.offset + objectGetInfo.key.hdrlen + (start || 0);
let len = objectGetInfo.key.size - (start || 0);
if (end)
{
const len2 = end - (start || 0) + 1;
if (len2 < len)
len = len2;
}
callback(null, new VitastorReadStream(this.cli, objectGetInfo.key.volume, offset, len, this.config));
}
/**
* objectGetInfo: {
* key: { volume, offset, hdrlen, size }, // from put
* size,
* start,
* dataStoreName,
* dataStoreETag,
* range,
* response: ServerResponse,
* },
* callback: (error) => void,
*/
delete(objectGetInfo, reqUids, callback)
{
callback = once(callback);
this._delete(objectGetInfo, reqUids)
.then(callback)
.catch(callback);
}
async _delete(objectGetInfo, reqUids)
{
if (!(objectGetInfo instanceof Object) || !objectGetInfo.key ||
!(objectGetInfo.key instanceof Object) || !objectGetInfo.key.volume ||
!objectGetInfo.key.offset || !objectGetInfo.key.hdrlen || !objectGetInfo.key.size)
{
throw new Error('objectGetInfo must be { key: { volume, offset, hdrlen, size } }, but is '+JSON.stringify(objectGetInfo));
}
const in_sect_pos = (objectGetInfo.key.offset % this.config.sector_size);
const sect_pos = objectGetInfo.key.offset - in_sect_pos;
const vol = this.volumes_by_id[objectGetInfo.key.volume];
if (vol && vol.partial_sectors[sect_pos])
{
// The sector may still be written to in corner cases
const sect = vol.partial_sectors[sect_pos];
const flags = sect.buffer.readBigInt64LE(in_sect_pos + 8);
if (!(flags & FLAG_DELETED))
{
const del_stat = this.volume_delete_stats[vol.id] = (this.volume_delete_stats[vol.id] || { count: 0, bytes: 0 });
del_stat.count++;
del_stat.bytes += objectGetInfo.key.size;
sect.buffer.writeBigInt64LE(flags | FLAG_DELETED, in_sect_pos + 8);
sect.refs++;
const err = await new Promise<any>(ok => this.cli.write(this.config.pool_id, objectGetInfo.key.volume, sect_pos, sect.buffer, ok));
sect.refs--;
if (err)
{
sect.buffer.writeBigInt64LE(0n, in_sect_pos + 8);
throw new Error(err);
}
}
}
else
{
// RMW with CAS
const [ err, buf, version ] = await new Promise<[ any, Buffer, bigint ]>(ok => this.cli.read(
this.config.pool_id, objectGetInfo.key.volume, sect_pos, this.config.sector_size,
(err, buf, version) => ok([ err, buf, version ])
));
if (err)
{
throw new Error(err);
}
// FIXME What if JSON crosses sector boundary? Prevent it if we want to pack objects
const magic = buf.slice(in_sect_pos, in_sect_pos+8).toString();
const flags = buf.readBigInt64LE(in_sect_pos+8);
const json_len = Number(buf.readBigInt64LE(in_sect_pos+16));
let json_hdr;
if (in_sect_pos+24+json_len <= buf.length)
{
try
{
json_hdr = JSON.parse(buf.slice(in_sect_pos+24, in_sect_pos+24+json_len).toString());
}
catch (e)
{
}
}
if (magic !== OBJECT_MAGIC || !json_hdr || json_hdr.size !== objectGetInfo.key.size)
{
throw new Error(
'header of object with size '+objectGetInfo.key.size+
' bytes not found in volume '+objectGetInfo.key.volume+' at '+objectGetInfo.key.offset
);
}
else if (!(flags & FLAG_DELETED))
{
buf.writeBigInt64LE(flags | FLAG_DELETED, in_sect_pos + 8);
const err = await new Promise<any>(ok => this.cli.write(this.config.pool_id, objectGetInfo.key.volume, sect_pos, buf, { version: version+1n }, ok));
if (err == vitastor.EINTR)
{
// Retry
await this._delete(objectGetInfo, reqUids);
}
else if (err)
{
throw new Error(err);
}
else
{
// FIXME: Write deletion statistics to volumes
// FIXME: Implement defragmentation
const del_stat = this.volume_delete_stats[objectGetInfo.key.volume] = (this.volume_delete_stats[objectGetInfo.key.volume] || { count: 0, bytes: 0 });
del_stat.count++;
del_stat.bytes += objectGetInfo.key.size;
}
}
}
}
/**
* config: full zenko server config,
* callback: (error, stats) => void, // stats is the returned statistics in arbitrary format
*/
getDiskUsage(config, reqUids, callback)
{
// FIXME: Iterate all volumes and return its sizes and deletion statistics, or maybe just sizes
callback(null, {});
}
}
class VitastorReadStream extends stream.Readable
{
constructor(cli, volume_id, offset, len, config, options = undefined)
{
super(options);
this.cli = cli;
this.volume_id = volume_id;
this.offset = offset;
this.end = offset + len;
this.pos = offset;
this.config = config;
this._reading = false;
}
_read(n)
{
if (this._reading)
{
return;
}
// FIXME: Validate object header
const chunk_size = n && this.config.read_chunk_size < n ? n : this.config.read_chunk_size;
const read_offset = this.pos;
const round_offset = read_offset - (read_offset % this.config.sector_size);
let read_end = this.end <= read_offset+chunk_size ? this.end : read_offset+chunk_size;
const round_end = (read_end % this.config.sector_size)
? read_end + this.config.sector_size - (read_end % this.config.sector_size)
: read_end;
if (round_end <= this.end)
read_end = round_end;
this.pos = read_end;
if (read_end <= read_offset)
{
// EOF
this.push(null);
return;
}
this._reading = true;
this.cli.read(this.config.pool_id, this.volume_id, round_offset, round_end-round_offset, (err, buf, version) =>
{
this._reading = false;
if (err)
{
this.destroy(new Error(err));
return;
}
if (read_offset != round_offset || round_end != read_end)
{
buf = buf.subarray(read_offset-round_offset, buf.length-(round_end-read_end));
}
if (this.push(buf))
{
this._read(n);
}
});
}
}
function once(callback)
{
let called = false;
return function()
{
if (!called)
{
called = true;
callback.apply(null, arguments);
}
};
}
module.exports = VitastorBackend;

View File

@ -51,36 +51,6 @@ function _parseListEntries(entries) {
});
}
/** _parseLifecycleListEntries - parse the values returned in a lifeycle listing by metadata
* @param {object[]} entries - Version or Content entries in a metadata listing
* @param {string} entries[].key - metadata key
* @param {string} entries[].value - stringified object metadata
* @return {object} - mapped array with parsed value or JSON parsing err
*/
function _parseLifecycleListEntries(entries) {
return entries.map(entry => {
const tmp = JSON.parse(entry.value);
return {
key: entry.key,
value: {
Size: tmp['content-length'],
ETag: tmp['content-md5'],
VersionId: tmp.versionId,
IsNull: tmp.isNull,
LastModified: tmp['last-modified'],
Owner: {
DisplayName: tmp['owner-display-name'],
ID: tmp['owner-id'],
},
StorageClass: tmp['x-amz-storage-class'],
tags: tmp.tags,
staleDate: tmp.staleDate,
dataStoreName: tmp.dataStoreName,
},
};
});
}
/** parseListEntries - parse the values returned in a listing by metadata
* @param {object[]} entries - Version or Content entries in a metadata listing
* @param {string} entries[].key - metadata key
@ -177,42 +147,6 @@ class MetadataWrapper {
});
}
updateBucketCapabilities(bucketName, bucketMD, capabilityName, capacityField, capability, log, cb) {
log.debug('updating bucket capabilities in metadata');
// When concurrency update is not supported, we update the whole bucket metadata
if (!this.client.putBucketAttributesCapabilities) {
return this.updateBucket(bucketName, bucketMD, log, cb);
}
return this.client.putBucketAttributesCapabilities(bucketName, capabilityName, capacityField, capability,
log, err => {
if (err) {
log.debug('error from metadata', { implName: this.implName,
error: err });
return cb(err);
}
log.trace('bucket capabilities updated in metadata');
return cb(err);
});
}
deleteBucketCapabilities(bucketName, bucketMD, capabilityName, capacityField, log, cb) {
log.debug('deleting bucket capabilities in metadata');
// When concurrency update is not supported, we update the whole bucket metadata
if (!this.client.deleteBucketAttributesCapability) {
return this.updateBucket(bucketName, bucketMD, log, cb);
}
return this.client.deleteBucketAttributesCapability(bucketName, capabilityName, capacityField,
log, err => {
if (err) {
log.debug('error from metadata', { implName: this.implName,
error: err });
return cb(err);
}
log.trace('bucket capabilities deleted in metadata');
return cb(err);
});
}
getBucket(bucketName, log, cb) {
log.debug('getting bucket from metadata');
this.client.getBucketAttributes(bucketName, log, (err, data) => {
@ -226,19 +160,6 @@ class MetadataWrapper {
});
}
getBucketQuota(bucketName, log, cb) {
log.debug('getting bucket quota from metadata');
this.client.getBucketAttributes(bucketName, log, (err, data) => {
if (err) {
log.debug('error from metadata', { implName: this.implName,
error: err });
return cb(err);
}
const bucketInfo = BucketInfo.fromObj(data);
return cb(err, { quota: bucketInfo.getQuota() });
});
}
deleteBucket(bucketName, log, cb) {
log.debug('deleting bucket from metadata');
this.client.deleteBucket(bucketName, log, err => {
@ -292,25 +213,6 @@ class MetadataWrapper {
});
}
getObjectsMD(bucketName, objNamesWithParams, log, cb) {
if (typeof this.client.getObjects !== 'function') {
log.debug('backend does not support get object metadata with batching', {
implName: this.implName,
});
return cb(errors.NotImplemented);
}
log.debug('getting objects from metadata', { objects: objNamesWithParams });
return this.client.getObjects(bucketName, objNamesWithParams, log, (err, data) => {
if (err) {
log.debug('error getting objects from metadata', { implName: this.implName, objects: objNamesWithParams,
err });
return cb(err);
}
log.debug('objects retrieved from metadata', { objects: objNamesWithParams });
return cb(err, data);
});
}
getObjectMD(bucketName, objName, params, log, cb) {
log.debug('getting object from metadata');
this.client.getObject(bucketName, objName, params, log, (err, data) => {
@ -324,7 +226,7 @@ class MetadataWrapper {
});
}
deleteObjectMD(bucketName, objName, params, log, cb, originOp = 's3:ObjectRemoved:Delete') {
deleteObjectMD(bucketName, objName, params, log, cb) {
log.debug('deleting object from metadata');
this.client.deleteObject(bucketName, objName, params, log, err => {
if (err) {
@ -334,7 +236,7 @@ class MetadataWrapper {
}
log.debug('object deleted from metadata');
return cb(err);
}, originOp);
});
}
listObject(bucketName, listingParams, log, cb) {
@ -377,29 +279,6 @@ class MetadataWrapper {
});
}
listLifecycleObject(bucketName, listingParams, log, cb) {
log.debug('getting object listing for lifecycle from metadata');
this.client.listLifecycleObject(bucketName, listingParams, log, (err, data) => {
if (err) {
log.error('error from metadata', { implName: this.implName,
err });
return cb(err);
}
log.debug('object listing for lifecycle retrieved from metadata');
// eslint-disable-next-line no-param-reassign
data.Contents = parseListEntries(data.Contents, _parseLifecycleListEntries);
if (data.Contents instanceof Error) {
log.error('error parsing metadata listing for lifecycle', {
error: data.Contents,
listingType: listingParams.listingType,
method: 'listLifecycleObject',
});
return cb(errors.InternalError);
}
return cb(null, data);
});
}
listMultipartUploads(bucketName, listingParams, log, cb) {
this.client.listMultipartUploads(bucketName, listingParams, log,
(err, data) => {
@ -548,139 +427,6 @@ class MetadataWrapper {
return cb();
});
}
/**
* Put bucket indexes
*
* indexSpec format:
* [
* { key:[ { key: "", order: 1 } ... ], name: <id 1>, ... , < backend options> },
* ...
* { key:[ { key: "", order: 1 } ... ], name: <id n>, ... },
* ]
*
*
* @param {String} bucketName bucket name
* @param {Array<Object>} indexSpecs index specification
* @param {Object} log logger
* @param {Function} cb callback
* @return {undefined}
*/
putBucketIndexes(bucketName, indexSpecs, log, cb) {
log.debug('put bucket indexes');
if (typeof this.client.putBucketIndexes !== 'function') {
log.error('error from metadata', {
method: 'putBucketIndexes',
error: errors.NotImplemented,
implName: this.implName,
});
return cb(errors.NotImplemented);
}
return this.client.putBucketIndexes(bucketName, indexSpecs, log, err => {
if (err) {
log.debug('error from metadata', {
method: 'putBucketIndexes',
error: err,
implName: this.implName,
});
return cb(err);
}
return cb(null);
});
}
/**
* Delete bucket indexes
*
* indexSpec format:
* [
* { key:[ { key: "", order: 1 } ... ], name: <id 1>, ... , < backend options> },
* ...
* { key:[ { key: "", order: 1 } ... ], name: <id n>, ... },
* ]
*
*
* @param {String} bucketName bucket name
* @param {Array<Object>} indexSpecs index specification
* @param {Object} log logger
* @param {Function} cb callback
* @return {undefined}
*/
deleteBucketIndexes(bucketName, indexSpecs, log, cb) {
log.debug('delete bucket indexes');
if (typeof this.client.deleteBucketIndexes !== 'function') {
log.error('error from metadata', {
method: 'deleteBucketIndexes',
error: errors.NotImplemented,
implName: this.implName,
});
return cb(errors.NotImplemented);
}
return this.client.deleteBucketIndexes(bucketName, indexSpecs, log, err => {
if (err) {
log.error('error from metadata', {
method: 'deleteBucketIndexes',
error: err,
implName: this.implName,
});
return cb(err);
}
return cb(null);
});
}
getBucketIndexes(bucketName, log, cb) {
log.debug('get bucket indexes');
if (typeof this.client.getBucketIndexes !== 'function') {
log.debug('error from metadata', {
method: 'getBucketIndexes',
error: errors.NotImplemented,
implName: this.implName,
});
return cb(errors.NotImplemented);
}
return this.client.getBucketIndexes(bucketName, log, (err, res) => {
if (err) {
log.debug('error from metadata', {
method: 'getBucketIndexes',
error: err,
implName: this.implName,
});
return cb(err);
}
return cb(null, res);
});
}
getIndexingJobs(log, cb) {
if (typeof this.client.getIndexingJobs !== 'function') {
log.debug('error from metadata', {
method: 'getIndexingJobs',
error: errors.NotImplemented,
implName: this.implName,
});
return cb(errors.NotImplemented);
}
return this.client.getIndexingJobs(log, (err, res) => {
if (err) {
log.debug('error from metadata', {
method: 'getBucketIndexes',
error: err,
implName: this.implName,
});
return cb(err);
}
return cb(null, res);
});
}
}
module.exports = MetadataWrapper;

View File

@ -110,17 +110,6 @@ class BucketClientInterface {
return null;
}
listLifecycleObject(bucketName, params, log, cb) {
this.client.listObject(bucketName, log.getSerializedUids(), params,
(err, data) => {
if (err) {
return cb(err);
}
return cb(null, JSON.parse(data));
});
return null;
}
listMultipartUploads(bucketName, params, log, cb) {
this.client.listObject(bucketName, log.getSerializedUids(), params,
(err, data) => {

View File

@ -325,10 +325,6 @@ class BucketFileInterface {
return this.internalListObject(bucketName, params, log, cb);
}
listLifecycleObject(bucketName, params, log, cb) {
return this.internalListObject(bucketName, params, log, cb);
}
listMultipartUploads(bucketName, params, log, cb) {
return this.internalListObject(bucketName, params, log, cb);
}

View File

@ -318,10 +318,6 @@ const metastore = {
});
},
listLifecycleObject(bucketName, params, log, cb) {
return process.nextTick(cb, errors.NotImplemented);
},
listMultipartUploads(bucketName, listingParams, log, cb) {
process.nextTick(() => {
metastore.getBucketAttributes(bucketName, log, (err, bucket) => {

View File

@ -108,26 +108,9 @@ class ListRecordStream extends stream.Readable {
if (value && value.tags) {
value.tags = unescape(value.tags);
}
// updates overwrite the whole metadata,
// so they are considered as puts
let type = 'put';
// When the object metadata contain the "deleted"
// flag, it means that the operation is the update
// we perform before the deletion of an object. We
// perform the update to keep all the metadata in the
// oplog. This update is what will be used by backbeat
// as the delete operation so we put the type of operation
// for this event to a delete.
// Backbeat still receives the actual delete operations
// but they are ignored as they don't contain any metadata.
// The delete operations are kept in case we want to listen
// to delete events comming from special collections other
// than "bucket" collections.
if (value && value.deleted) {
type = 'delete';
}
entry = {
type,
type: 'put', // updates overwrite the whole metadata,
// so they are considered as puts
key: itemObj.o2._id,
// updated value may be either stored directly in 'o'
// attribute or in '$set' attribute (supposedly when

File diff suppressed because it is too large Load Diff

View File

@ -143,13 +143,13 @@ on top of the delete marker or if the delete marker is deleted.
##### Format of master keys
```
\x7fM{{key}}
\x7fM{{key}
```
##### Format of version keys
```
\x7fV{{key}}\x00{{versionId}}
\x7fV{{key}\x00{versionId}
```
##### Sizing considerations
@ -272,61 +272,7 @@ The mongoclient backend implements a readable key/value stream called
in Arsenal/lib/algos listing algorithms. Note it does not require any
LevelDB package.
A versioned object in MongoDB is stored using two types of documents:
a version document for each version of the object, and a master document
containing the data of the latest version of the object.
When deleting the latest version of an object, the master document is replaced
by a temporary placeholder document (marked with `isPHD: true` in its metadata)
that gets resolved later with the data
of the new latest version of the object.
Listing a buckets objects (not versions) is done in two steps.
First, all master documents are listed internally
(these can contain the placeholder documents).
Next, the placeholder documents are resolved by listing
the objects versions and returning the latest ones data.
#### Generating the UUID
To avoid race conditions we always (try to) generate a new UUID and we
condition the insertion to the non-existence of the document.
#### Oplog Events
The oplog (operations log) is a special capped collection that keeps a
rolling record of all operations that modify the data stored in the database.
The oplog is read and used by multiple backbeat extensions such as replication
and bucket notification to react to database changes.
oplog events have different types such as insertion, update and deletion.
Within an oplog event we find the changes that occured at object level or
collection level.
At object level if an object was inserted for example we'll find all of the object's
data in the event. Update events contain the change that occured to an object, and
delete events don't contain anything (only the object's _id).
To keep the latest object's metadata before it got deleted in the oplog, we update
the full object setting a deletion flag before deleting the object. This adds an
update event containing all of the object's metadata.
Note: updating the object with itself without change creates a no-op event that gets
ignored.
**Special Cases:**
When deleting the last version of an object in a versioned bucket, the master object
goes into a PHD state (temporary non updated state) that gets resolved later. There
is one case where a master can be non existent, it's where the last version is a
delete marker. In this case the created PHD master is empty only containing the
isPHD flag and the versionId.
When versioning is enabled in a bucket, only version events should be processed as
they already contain all of the information needed.
In non versioned buckets, master object events are the ones to be processed.
In versioning suspended buckets, both master and version events should be processed,
as the master object itself is considered a null version. No special case is present
here as the master object is always present.

View File

@ -55,38 +55,15 @@ class MongoReadStream extends Readable {
}
}
if (options.lastModified) {
query['value.last-modified'] = {};
if (options.lastModified.lt) {
query['value.last-modified'].$lt = options.lastModified.lt;
}
}
if (options.dataStoreName) {
query['value.dataStoreName'] = {};
if (options.dataStoreName.ne) {
query['value.dataStoreName'].$ne = options.dataStoreName.ne;
}
}
if (!Object.keys(query._id).length) {
delete query._id;
}
// filtering out objects flagged for deletion
query.$or = [
{ 'value.deleted': { $exists: false } },
{ 'value.deleted': { $eq: false } },
];
if (searchOptions) {
Object.assign(query, searchOptions);
}
const projection = { 'value.location': 0 };
this._cursor = c.find(query, { projection }).sort({
this._cursor = c.find(query).sort({
_id: options.reverse ? -1 : 1,
});
if (options.limit && options.limit !== -1) {
@ -102,10 +79,15 @@ class MongoReadStream extends Readable {
return;
}
this._cursor.next().then(doc => {
this._cursor.next((err, doc) => {
if (this._destroyed) {
return;
}
if (err) {
this.emit('error', err);
return;
}
let key = undefined;
let value = undefined;
@ -129,12 +111,6 @@ class MongoReadStream extends Readable {
value,
});
}
}).catch(err => {
if (this._destroyed) {
return;
}
this.emit('error', err);
return;
});
}
@ -144,7 +120,7 @@ class MongoReadStream extends Readable {
}
this._destroyed = true;
this._cursor.close().catch(err => {
this._cursor.close(err => {
if (err) {
this.emit('error', err);
return;

View File

@ -185,48 +185,6 @@ function formatVersionKey(key, versionId, vFormat) {
return formatVersionKeyV0(key, versionId);
}
function indexFormatMongoArrayToObject(mongoIndexArray) {
const indexObj = [];
for (const idx of mongoIndexArray) {
const keys = [];
let entries = [];
if (idx.key instanceof Map) {
entries = idx.key.entries();
} else {
entries = Object.entries(idx.key);
}
for (const k of entries) {
keys.push({ key: k[0], order: k[1] });
}
indexObj.push({ name: idx.name, keys });
}
return indexObj;
}
function indexFormatObjectToMongoArray(indexObj) {
const mongoIndexArray = [];
for (const idx of indexObj) {
const key = new Map();
for (const k of idx.keys) {
key.set(k.key, k.order);
}
// copy all field except keys from idx
// eslint-disable-next-line
const { keys: _, ...toCopy } = idx;
mongoIndexArray.push(Object.assign(toCopy, { name: idx.name, key }));
}
return mongoIndexArray;
}
module.exports = {
credPrefix,
@ -237,6 +195,4 @@ module.exports = {
translateConditions,
formatMasterKey,
formatVersionKey,
indexFormatMongoArrayToObject,
indexFormatObjectToMongoArray,
};

View File

@ -10,21 +10,21 @@ function trySetDirSyncFlag(path) {
const GETFLAGS = 2148034049;
const SETFLAGS = 1074292226;
const FS_DIRSYNC_FL = 65536n;
const FS_DIRSYNC_FL = 65536;
const buffer = Buffer.alloc(8, 0);
const pathFD = fs.openSync(path, 'r');
const status = ioctl(pathFD, GETFLAGS, buffer);
assert.strictEqual(status, 0);
const currentFlags = buffer.readBigInt64LE(0);
const currentFlags = buffer.readUIntLE(0, 8);
const flags = currentFlags | FS_DIRSYNC_FL;
buffer.writeBigInt64LE(flags, 0);
buffer.writeUIntLE(flags, 0, 8);
const status2 = ioctl(pathFD, SETFLAGS, buffer);
assert.strictEqual(status2, 0);
fs.closeSync(pathFD);
const pathFD2 = fs.openSync(path, 'r');
const confirmBuffer = Buffer.alloc(8, 0);
ioctl(pathFD2, GETFLAGS, confirmBuffer);
assert.strictEqual(confirmBuffer.readBigInt64LE(0),
assert.strictEqual(confirmBuffer.readUIntLE(0, 8),
currentFlags | FS_DIRSYNC_FL, 'FS_DIRSYNC_FL not set');
fs.closeSync(pathFD2);
}

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