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45 Commits

Author SHA1 Message Date
n1474335
bf2643802a 8.3.1 2018-08-23 21:42:04 +01:00
n1474335
1ad079fbd4 'Find/Replace', 'Filter' and 'Register' now used XRegExp 2018-08-23 21:41:57 +01:00
n1474335
5aa13f2428 Changelog improved 2018-08-22 03:26:02 +01:00
n1474335
38f5fcde86 8.3.0 2018-08-21 19:29:51 +01:00
n1474335
f99ab87ca1 Merge branch 'artemisbot-features/messagepack' 2018-08-21 19:29:39 +01:00
n1474335
d3d230a76d Tweaked MessagePack operations 2018-08-21 19:29:19 +01:00
n1474335
e7c6a05e9f Merge branch 'features/messagepack' of https://github.com/artemisbot/CyberChef into artemisbot-features/messagepack 2018-08-21 19:22:10 +01:00
n1474335
17ec5c2683 8.2.0 2018-08-21 19:11:15 +01:00
n1474335
8d1839b9e2 Updated CHANGELOG.md 2018-08-21 19:10:35 +01:00
n1474335
23213a4ac5 Merge branch 'PenguinGeorge-info-links' 2018-08-21 19:08:08 +01:00
n1474335
e81c81351d Added more infoLinks and updated newOperation script to include prompt for them. 2018-08-21 19:07:13 +01:00
Matt C
36e16d9925 Fixed linting issues 2018-08-20 19:14:19 +01:00
Matt C
84eaaf4819 Tests now work
Also they'll work in the node API too now
2018-08-20 19:08:01 +01:00
n1474335
757096d97a Added image licencing info 2018-08-20 01:20:02 +01:00
n1474335
2393eac218 Removed src/test.mjs 2018-08-20 00:50:59 +01:00
n1474335
745d21d1bc 8.1.4 2018-08-20 00:26:49 +01:00
n1474335
cb34518a89 Recipes with a single backslash argument are now parsed correctly. Fixes #319 2018-08-20 00:26:44 +01:00
Matt C
821dd9c48c Added messagepack tests but they don't work
and i'm too burnt out to figure out why
2018-08-20 00:20:04 +01:00
n1474335
740f3924df Pressing return on a highlighted search result now correctly adds it to the recipe in Firefox. 2018-08-20 00:10:57 +01:00
n1474335
f052ed9b00 Compile message no longer overflows on small screens 2018-08-20 00:04:49 +01:00
n1474335
2507362741 8.1.3 2018-08-19 23:08:02 +01:00
n1474335
481a4266b0 Reset progress on statechange events. Fixes #329. 2018-08-19 23:07:53 +01:00
n1474335
92d9abf43a 8.1.2 2018-08-19 22:58:35 +01:00
n1474335
5bcdd99870 'Change IP format' operation now uses the correct arguments. Fixes #332 2018-08-19 22:58:31 +01:00
n1474335
e11bb38625 8.1.1 2018-08-19 22:50:54 +01:00
n1474335
affe057cab Added 'Decimal' option for toggleStrings. Closes #337. 2018-08-19 22:50:49 +01:00
n1474335
c1b2fc9400 Updated CHANGELOG.md 2018-08-19 17:39:49 +01:00
n1474335
782e0f3475 8.1.0 2018-08-19 17:37:19 +01:00
n1474335
6be7ac89d4 Merge branch 'sevzero-esm' 2018-08-19 17:37:03 +01:00
n1474335
ad2424cfdd Tidied up 'Dechunk HTTP Response' operation 2018-08-19 17:36:40 +01:00
n1474335
b9703e2bb6 8.0.2 2018-08-19 17:14:36 +01:00
n1474335
198b67104f Merge branch 'Cynser-fix-date-time' 2018-08-19 17:14:20 +01:00
n1474335
8dab0eac58 Removed excess newline 2018-08-19 17:14:07 +01:00
Cynser
8b78383732 Newline at end of files 2018-08-16 03:31:09 +01:00
Cynser
f1c31ea966 Added some tests for the Translate DateTime Format operation 2018-08-16 03:28:11 +01:00
Cynser
1a1fad7433 Fixed DateTime format arguments 2018-08-16 03:01:19 +01:00
d98762625
ab248a0209 Merge pull request #333 from d98762625/update-cla-doc
Update CLA info in README
2018-08-14 12:09:19 +01:00
d98762625
6155dbb6e9 Update CLA info in README 2018-08-14 09:35:41 +01:00
Matt C
0c06e64051 Added MessagePack operations 2018-08-09 11:09:28 +01:00
sevzero
ed84614389 Fixed issues raised by Travis 2018-05-24 13:39:14 +00:00
sevzero
67bd2605c0 Updated variable scope in legacy HTTP.js file 2018-05-24 13:21:50 +00:00
sevzero
83c145c2ac Reduced variable scopes 2018-05-24 13:17:46 +00:00
sevzero
53bf52c989 Added decoder for chunked HTTP encoding
This decoder will join up a HTTP response sent using chunked transfer encoding, raised in issue #168.

This is useful when attempting to extract files or gzipped responses sent using chunked transfer encoding, particularly when combined with the gunzip operation.
2018-05-24 13:09:04 +00:00
George J
77a0238406 Fixes syntax error 2018-05-13 13:27:52 +01:00
George J
c7f13ff67f Added 'More Info' links to the descriptions of many operations for #265 2018-05-05 00:43:42 +01:00
263 changed files with 836 additions and 157 deletions

View File

@@ -1,36 +1,71 @@
# Changelog
All notable changes to this project will be documented in this file.
All notable changes to CyberChef will be documented in this file.
### [8.3.0] - 2018-08-21
- 'To MessagePack' and 'From MessagePack' operations added [@artemisbot] | [#338]
### [8.2.0] - 2018-08-21
- Information links added to most operations, accessible in the description popover [@PenguinGeorge] | [#298]
### [8.1.0] - 2018-08-19
- 'Dechunk HTTP response' operation added [@sevzero] | [#311]
## [8.0.0] - 2018-08-05
- Codebase rewritten using [ES modules](https://hacks.mozilla.org/2018/03/es-modules-a-cartoon-deep-dive/) and [classes](https://developer.mozilla.org/en-US/docs/Web/JavaScript/Reference/Classes) #284
- Operation architecture restructured to make adding new operations a lot simpler #284
- A script has been added to aid in the creation of new operations by running `npm run newop` @n1474335 #284
- 'Magic' operation added - [automated detection of encoded data](https://github.com/gchq/CyberChef/wiki/Automatic-detection-of-encoded-data-using-CyberChef-Magic) @n1474335 #239
- UI updated to use [Bootstrap Material Design](https://fezvrasta.github.io/bootstrap-material-design/) @n1474335 #248
- `JSON`, `File` and `List<File>` Dish types added @n1474335 #284
- `OperationError` type added for better handling of errors thrown by operations @d98762625 #296
- A `present()` method has been added, allowing operations to pass machine-friendly data to subsequent operations whilst presenting human-friendly data to the user @n1474335 #284
- Set operations added @d98762625 #281
- 'To Table' operation added @JustAnotherMark #294
- 'Haversine distance' operation added @Dachande663 #325
- Started keeping a changelog @n1474335
- Codebase rewritten using [ES modules](https://hacks.mozilla.org/2018/03/es-modules-a-cartoon-deep-dive/) and [classes](https://developer.mozilla.org/en-US/docs/Web/JavaScript/Reference/Classes) [@n1474335] [@d98762625] [@artemisbot] [@picapi] | [#284]
- Operation architecture restructured to make adding new operations a lot simpler [@n1474335] | [#284]
- A script has been added to aid in the creation of new operations by running `npm run newop` [@n1474335] | [#284]
- 'Magic' operation added - [automated detection of encoded data](https://github.com/gchq/CyberChef/wiki/Automatic-detection-of-encoded-data-using-CyberChef-Magic) [@n1474335] | [#239]
- UI updated to use [Bootstrap Material Design](https://fezvrasta.github.io/bootstrap-material-design/) [@n1474335] | [#248]
- `JSON`, `File` and `List<File>` Dish types added [@n1474335] | [#284]
- `OperationError` type added for better handling of errors thrown by operations [@d98762625] | [#296]
- A `present()` method has been added, allowing operations to pass machine-friendly data to subsequent operations whilst presenting human-friendly data to the user [@n1474335] | [#284]
- Set operations added [@d98762625] | [#281]
- 'To Table' operation added [@JustAnotherMark] | [#294]
- 'Haversine distance' operation added [@Dachande663] | [#325]
- Started keeping a changelog [@n1474335]
## [7.0.0] - 2017-12-28
- Added support for loading, processing and downloading files up to 500MB @n1474335 #224
- Added support for loading, processing and downloading files up to 500MB [@n1474335] | [#224]
## [6.0.0] - 2017-09-19
- Added threading support, moving all recipe processing into a [Web Worker](https://developer.mozilla.org/en-US/docs/Web/API/Web_Workers_API/Using_web_workers) to increase performance and allow long-running operations to be cancelled @n1474335 #173
- Created modules so that operations relying on large libraries can be downloaded separately as required, reducing the initial loading time for the app @n1474335 #173
- Threading support added. All recipe processing moved into a [Web Worker](https://developer.mozilla.org/en-US/docs/Web/API/Web_Workers_API/Using_web_workers) to increase performance and allowing long-running operations to be cancelled [@n1474335] | [#173]
- Module system created so that operations relying on large libraries can be downloaded separately as required, reducing the initial loading time for the app [@n1474335] | [#173]
## [5.0.0] - 2017-03-30
- Configured Webpack build process, Babel transpilation and ES6 imports and exports @n1474335 #95
- Webpack build process configured with Babel transpilation and ES6 imports and exports [@n1474335] | [#95]
## [4.0.0] - 2016-11-28
- Initial open source commit @n1474335
- Initial open source commit [@n1474335] | [b1d73a72](https://github.com/gchq/CyberChef/commit/b1d73a725dc7ab9fb7eb789296efd2b7e4b08306)
[8.3.0]: https://github.com/gchq/CyberChef/releases/tag/v8.3.0
[8.2.0]: https://github.com/gchq/CyberChef/releases/tag/v8.2.0
[8.1.0]: https://github.com/gchq/CyberChef/releases/tag/v8.1.0
[8.0.0]: https://github.com/gchq/CyberChef/releases/tag/v8.0.0
[7.0.0]: https://github.com/gchq/CyberChef/releases/tag/v7.0.0
[6.0.0]: https://github.com/gchq/CyberChef/releases/tag/v6.0.0
[5.0.0]: https://github.com/gchq/CyberChef/releases/tag/v5.0.0
[4.0.0]: https://github.com/gchq/CyberChef/commit/b1d73a725dc7ab9fb7eb789296efd2b7e4b08306
[@n1474335]: https://github.com/n1474335
[@d98762625]: https://github.com/d98762625
[@artemisbot]: https://github.com/artemisbot
[@picapi]: https://github.com/picapi
[@Dachande663]: https://github.com/Dachande663
[@JustAnotherMark]: https://github.com/JustAnotherMark
[@sevzero]: https://github.com/sevzero
[@PenguinGeorge]: https://github.com/PenguinGeorge
[#95]: https://github.com/gchq/CyberChef/pull/299
[#173]: https://github.com/gchq/CyberChef/pull/173
[#224]: https://github.com/gchq/CyberChef/pull/224
[#239]: https://github.com/gchq/CyberChef/pull/239
[#248]: https://github.com/gchq/CyberChef/pull/248
[#281]: https://github.com/gchq/CyberChef/pull/281
[#284]: https://github.com/gchq/CyberChef/pull/284
[#294]: https://github.com/gchq/CyberChef/pull/294
[#296]: https://github.com/gchq/CyberChef/pull/296
[#298]: https://github.com/gchq/CyberChef/pull/298
[#311]: https://github.com/gchq/CyberChef/pull/311
[#325]: https://github.com/gchq/CyberChef/pull/325
[#338]: https://github.com/gchq/CyberChef/pull/338

View File

@@ -88,9 +88,8 @@ Contributing a new operation to CyberChef is super easy! There is a quickstart s
An installation walkthrough, how-to guides for adding new operations and themes, descriptions of the repository structure, available data types and coding conventions can all be found in the project [wiki pages](https://github.com/gchq/CyberChef/wiki).
- Sign the [GCHQ Contributor Licence Agreement](https://github.com/gchq/Gaffer/wiki/GCHQ-OSS-Contributor-License-Agreement-V1.0)
- Push your changes to your fork.
- Submit a pull request.
- Submit a pull request. If you are doing this for the first time, you will be prompted to sign the [GCHQ Contributor Licence Agreement](https://cla-assistant.io/gchq/CyberChef) via the CLA assistant on the pull request. This will also ask whether you are happy for GCHQ to contact you about a token of thanks for your contribution, or about job opportunities at GCHQ.
## Licencing

190
package-lock.json generated
View File

@@ -1,6 +1,6 @@
{
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"ua-parser-js": {
"version": "0.7.18",
@@ -10689,7 +10776,8 @@
"util-deprecate": {
"version": "1.0.2",
"resolved": "https://registry.npmjs.org/util-deprecate/-/util-deprecate-1.0.2.tgz",
"integrity": "sha1-RQ1Nyfpw3nMnYvvS1KKJgUGaDM8="
"integrity": "sha1-RQ1Nyfpw3nMnYvvS1KKJgUGaDM8=",
"dev": true
},
"util.promisify": {
"version": "1.0.0",
@@ -10744,7 +10832,8 @@
"uuid": {
"version": "3.3.2",
"resolved": "https://registry.npmjs.org/uuid/-/uuid-3.3.2.tgz",
"integrity": "sha512-yXJmeNaw3DnnKAOKJE51sL/ZaYfWJRl1pK9dr19YFCu0ObS231AB1/LbqTKRAQ5kw8A90rA6fr4riOUpTZvQZA=="
"integrity": "sha512-yXJmeNaw3DnnKAOKJE51sL/ZaYfWJRl1pK9dr19YFCu0ObS231AB1/LbqTKRAQ5kw8A90rA6fr4riOUpTZvQZA==",
"dev": true
},
"valid-data-url": {
"version": "0.1.6",
@@ -10778,6 +10867,7 @@
"version": "1.10.0",
"resolved": "https://registry.npmjs.org/verror/-/verror-1.10.0.tgz",
"integrity": "sha1-OhBcoXBTr1XW4nDB+CiGguGNpAA=",
"dev": true,
"requires": {
"assert-plus": "^1.0.0",
"core-util-is": "1.0.2",
@@ -11237,6 +11327,7 @@
"version": "1.3.1",
"resolved": "https://registry.npmjs.org/which/-/which-1.3.1.tgz",
"integrity": "sha512-HxJdYWq1MTIQbJ3nw0cqssHoTNU267KlrDuGZ1WYlxDStUtKUhOaJmh112/TZmHxxUfuJqPXSOm7tDyas0OSIQ==",
"dev": true,
"requires": {
"isexe": "^2.0.0"
}
@@ -11482,6 +11573,7 @@
"version": "2.4.1",
"resolved": "https://registry.npmjs.org/yauzl/-/yauzl-2.4.1.tgz",
"integrity": "sha1-lSj0QtqxsihOWLQ3m7GU4i4MQAU=",
"dev": true,
"requires": {
"fd-slicer": "~1.0.1"
}

View File

@@ -1,6 +1,6 @@
{
"name": "cyberchef",
"version": "8.0.1",
"version": "8.3.1",
"description": "The Cyber Swiss Army Knife for encryption, encoding, compression and data analysis.",
"author": "n1474335 <n1474335@gmail.com>",
"homepage": "https://gchq.github.io/CyberChef",
@@ -108,6 +108,7 @@
"moment-timezone": "^0.5.21",
"node-forge": "^0.7.5",
"node-md6": "^0.1.0",
"notepack.io": "^2.1.3",
"nwmatcher": "^1.4.4",
"otp": "^0.1.3",
"popper.js": "^1.14.4",

View File

@@ -29,6 +29,7 @@ class Operation {
this.name = "";
this.module = "";
this.description = "";
this.infoURL = null;
}

View File

@@ -8,6 +8,7 @@ import utf8 from "utf8";
import moment from "moment-timezone";
import {fromBase64} from "./lib/Base64";
import {fromHex} from "./lib/Hex";
import {fromDecimal} from "./lib/Decimal";
/**
@@ -297,7 +298,7 @@ class Utils {
* Accepts hex, Base64, UTF8 and Latin1 strings.
*
* @param {string} str
* @param {string} type - One of "Hex", "Base64", "UTF8" or "Latin1"
* @param {string} type - One of "Hex", "Decimal", "Base64", "UTF8" or "Latin1"
* @returns {byteArray}
*
* @example
@@ -314,6 +315,8 @@ class Utils {
switch (type.toLowerCase()) {
case "hex":
return fromHex(str);
case "decimal":
return fromDecimal(str);
case "base64":
return fromBase64(str, null, "byteArray");
case "utf8":
@@ -330,7 +333,7 @@ class Utils {
* Accepts hex, Base64, UTF8 and Latin1 strings.
*
* @param {string} str
* @param {string} type - One of "Hex", "Base64", "UTF8" or "Latin1"
* @param {string} type - One of "Hex", "Decimal", "Base64", "UTF8" or "Latin1"
* @returns {string}
*
* @example
@@ -347,6 +350,8 @@ class Utils {
switch (type.toLowerCase()) {
case "hex":
return Utils.byteArrayToChars(fromHex(str));
case "decimal":
return Utils.byteArrayToChars(fromDecimal(str));
case "base64":
return Utils.byteArrayToChars(fromBase64(str, null, "byteArray"));
case "utf8":
@@ -769,7 +774,7 @@ class Utils {
args = m[2]
.replace(/"/g, '\\"') // Escape double quotes
.replace(/(^|,|{|:)'/g, '$1"') // Replace opening ' with "
.replace(/([^\\])'(,|:|}|$)/g, '$1"$2') // Replace closing ' with "
.replace(/([^\\]|[^\\]\\\\)'(,|:|}|$)/g, '$1"$2') // Replace closing ' with "
.replace(/\\'/g, "'"); // Unescape single quotes
args = "[" + args + "]";

View File

@@ -47,7 +47,9 @@
"Change IP format",
"Encode text",
"Decode text",
"Swap endianness"
"Swap endianness",
"To MessagePack",
"From MessagePack"
]
},
{
@@ -137,6 +139,7 @@
"ops": [
"HTTP request",
"Strip HTTP headers",
"Dechunk HTTP response",
"Parse User Agent",
"Parse IP range",
"Parse IPv6 address",
@@ -312,7 +315,9 @@
"To Camel case",
"To Kebab case",
"BSON serialise",
"BSON deserialise"
"BSON deserialise",
"To MessagePack",
"From MessagePack"
]
},
{

View File

@@ -35,12 +35,13 @@ for (const opObj in Ops) {
const op = new Ops[opObj]();
operationConfig[op.name] = {
module: op.module,
module: op.module,
description: op.description,
inputType: op.inputType,
outputType: op.presentType,
infoURL: op.infoURL,
inputType: op.inputType,
outputType: op.presentType,
flowControl: op.flowControl,
args: op.args
args: op.args
};
if (op.hasOwnProperty("patterns")) {

View File

@@ -53,6 +53,12 @@ If your operation does not rely on a library, just leave this blank and it will
prompt: "Description",
type: "string"
},
infoURL: {
description: "An optional URL for an external site can be added to give more information about the operation. Wikipedia links are often suitable. If linking to Wikipedia, use an international link (e.g. https://wikipedia.org/...) rather than a localised link (e.g. https://en.wikipedia.org/...).",
example: "https://wikipedia.org/wiki/Percent-encoding",
prompt: "Information URL",
type: "string",
},
inputType: {
description: `The input type defines how the input data will be presented to your operation. Check the project wiki for a full description of each type. The options are: ${ioTypes.join(", ")}.`,
example: "string",
@@ -141,6 +147,7 @@ class ${moduleName} extends Operation {
this.name = "${result.opName}";
this.module = "${result.module}";
this.description = "${(new EscapeString).run(result.description, ["Special chars", "Double"])}";
this.infoURL = "${result.infoURL}";
this.inputType = "${result.inputType}";
this.outputType = "${result.outputType}";
this.args = [

37
src/core/lib/Decimal.mjs Normal file
View File

@@ -0,0 +1,37 @@
/**
* Decimal functions.
*
* @author n1474335 [n1474335@gmail.com]
* @copyright Crown Copyright 2018
* @license Apache-2.0
*/
import Utils from "../Utils";
/**
* Convert a string of decimal values into a byte array.
*
* @param {string} data
* @param {string} [delim]
* @returns {byteArray}
*
* @example
* // returns [10,20,30]
* fromDecimal("10 20 30");
*
* // returns [10,20,30]
* fromDecimal("10:20:30", "Colon");
*/
export function fromDecimal(data, delim="Auto") {
delim = Utils.charRep(delim);
const output = [];
let byteStr = data.split(delim);
if (byteStr[byteStr.length-1] === "")
byteStr = byteStr.slice(0, byteStr.length-1);
for (let i = 0; i < byteStr.length; i++) {
output[i] = parseInt(byteStr[i], 10);
}
return output;
}

View File

@@ -1,5 +1,5 @@
/**
* Byte representation functions.
* Hexadecimal functions.
*
* @author n1474335 [n1474335@gmail.com]
* @copyright Crown Copyright 2016
@@ -83,8 +83,7 @@ export function toHexFast(data) {
* // returns [10,20,30]
* fromHex("0a:14:1e", "Colon");
*/
export function fromHex(data, delim, byteLen=2) {
delim = delim || "Auto";
export function fromHex(data, delim="Auto", byteLen=2) {
if (delim !== "None") {
const delimRegex = delim === "Auto" ? /[^a-f\d]/gi : Utils.regexRep(delim);
data = data.replace(delimRegex, "");

View File

@@ -22,6 +22,7 @@ class ADD extends Operation {
this.name = "ADD";
this.module = "Default";
this.description = "ADD the input with the given key (e.g. <code>fe023da5</code>), MOD 255";
this.infoURL = "https://wikipedia.org/wiki/Bitwise_operation#Bitwise_operators";
this.inputType = "byteArray";
this.outputType = "byteArray";
this.args = [
@@ -29,7 +30,7 @@ class ADD extends Operation {
"name": "Key",
"type": "toggleString",
"value": "",
"toggleValues": ["Hex", "Base64", "UTF8", "Latin1"]
"toggleValues": ["Hex", "Decimal", "Base64", "UTF8", "Latin1"]
}
];
}

View File

@@ -23,6 +23,7 @@ class AESDecrypt extends Operation {
this.name = "AES Decrypt";
this.module = "Ciphers";
this.description = "Advanced Encryption Standard (AES) is a U.S. Federal Information Processing Standard (FIPS). It was selected after a 5-year process where 15 competing designs were evaluated.<br><br><b>Key:</b> The following algorithms will be used based on the size of the key:<ul><li>16 bytes = AES-128</li><li>24 bytes = AES-192</li><li>32 bytes = AES-256</li></ul><br><br><b>IV:</b> The Initialization Vector should be 16 bytes long. If not entered, it will default to 16 null bytes.<br><br><b>Padding:</b> In CBC and ECB mode, PKCS#7 padding will be used.<br><br><b>GCM Tag:</b> This field is ignored unless 'GCM' mode is used.";
this.infoURL = "https://wikipedia.org/wiki/Advanced_Encryption_Standard";
this.inputType = "string";
this.outputType = "string";
this.args = [

View File

@@ -23,6 +23,7 @@ class AESEncrypt extends Operation {
this.name = "AES Encrypt";
this.module = "Ciphers";
this.description = "Advanced Encryption Standard (AES) is a U.S. Federal Information Processing Standard (FIPS). It was selected after a 5-year process where 15 competing designs were evaluated.<br><br><b>Key:</b> The following algorithms will be used based on the size of the key:<ul><li>16 bytes = AES-128</li><li>24 bytes = AES-192</li><li>32 bytes = AES-256</li></ul>You can generate a password-based key using one of the KDF operations.<br><br><b>IV:</b> The Initialization Vector should be 16 bytes long. If not entered, it will default to 16 null bytes.<br><br><b>Padding:</b> In CBC and ECB mode, PKCS#7 padding will be used.";
this.infoURL = "https://wikipedia.org/wiki/Advanced_Encryption_Standard";
this.inputType = "string";
this.outputType = "string";
this.args = [

View File

@@ -22,6 +22,7 @@ class AND extends Operation {
this.name = "AND";
this.module = "Default";
this.description = "AND the input with the given key.<br>e.g. <code>fe023da5</code>";
this.infoURL = "https://wikipedia.org/wiki/Bitwise_operation#AND";
this.inputType = "byteArray";
this.outputType = "byteArray";
this.args = [
@@ -29,7 +30,7 @@ class AND extends Operation {
"name": "Key",
"type": "toggleString",
"value": "",
"toggleValues": ["Hex", "Base64", "UTF8", "Latin1"]
"toggleValues": ["Hex", "Decimal", "Base64", "UTF8", "Latin1"]
}
];
}

View File

@@ -21,6 +21,7 @@ class Adler32Checksum extends Operation {
this.name = "Adler-32 Checksum";
this.module = "Hashing";
this.description = "Adler-32 is a checksum algorithm which was invented by Mark Adler in 1995, and is a modification of the Fletcher checksum. Compared to a cyclic redundancy check of the same length, it trades reliability for speed (preferring the latter).<br><br>Adler-32 is more reliable than Fletcher-16, and slightly less reliable than Fletcher-32.";
this.infoURL = "https://wikipedia.org/wiki/Adler-32";
this.inputType = "byteArray";
this.outputType = "string";
this.args = [];

View File

@@ -22,6 +22,7 @@ class AffineCipherDecode extends Operation {
this.name = "Affine Cipher Decode";
this.module = "Ciphers";
this.description = "The Affine cipher is a type of monoalphabetic substitution cipher. To decrypt, each letter in an alphabet is mapped to its numeric equivalent, decrypted by a mathematical function, and converted back to a letter.";
this.infoURL = "https://wikipedia.org/wiki/Affine_cipher";
this.inputType = "string";
this.outputType = "string";
this.args = [

View File

@@ -21,6 +21,7 @@ class AffineCipherEncode extends Operation {
this.name = "Affine Cipher Encode";
this.module = "Ciphers";
this.description = "The Affine cipher is a type of monoalphabetic substitution cipher, wherein each letter in an alphabet is mapped to its numeric equivalent, encrypted using simple mathematical function, <code>(ax + b) % 26</code>, and converted back to a letter.";
this.infoURL = "https://wikipedia.org/wiki/Affine_cipher";
this.inputType = "string";
this.outputType = "string";
this.args = [

View File

@@ -21,6 +21,7 @@ class AnalyseHash extends Operation {
this.name = "Analyse hash";
this.module = "Hashing";
this.description = "Tries to determine information about a given hash and suggests which algorithm may have been used to generate it based on its length.";
this.infoURL = "https://wikipedia.org/wiki/Comparison_of_cryptographic_hash_functions";
this.inputType = "string";
this.outputType = "string";
this.args = [];

View File

@@ -21,6 +21,7 @@ class AtbashCipher extends Operation {
this.name = "Atbash Cipher";
this.module = "Ciphers";
this.description = "Atbash is a mono-alphabetic substitution cipher originally used to encode the Hebrew alphabet. It has been modified here for use with the Latin alphabet.";
this.infoURL = "https://wikipedia.org/wiki/Atbash";
this.inputType = "string";
this.outputType = "string";
this.args = [];

View File

@@ -22,6 +22,7 @@ class BSONDeserialise extends Operation {
this.name = "BSON deserialise";
this.module = "BSON";
this.description = "BSON is a computer data interchange format used mainly as a data storage and network transfer format in the MongoDB database. It is a binary form for representing simple data structures, associative arrays (called objects or documents in MongoDB), and various data types of specific interest to MongoDB. The name 'BSON' is based on the term JSON and stands for 'Binary JSON'.<br><br>Input data should be in a raw bytes format.";
this.infoURL = "https://wikipedia.org/wiki/BSON";
this.inputType = "ArrayBuffer";
this.outputType = "string";
this.args = [];

View File

@@ -22,6 +22,7 @@ class BSONSerialise extends Operation {
this.name = "BSON serialise";
this.module = "BSON";
this.description = "BSON is a computer data interchange format used mainly as a data storage and network transfer format in the MongoDB database. It is a binary form for representing simple data structures, associative arrays (called objects or documents in MongoDB), and various data types of specific interest to MongoDB. The name 'BSON' is based on the term JSON and stands for 'Binary JSON'.<br><br>Input data should be valid JSON.";
this.infoURL = "https://wikipedia.org/wiki/BSON";
this.inputType = "string";
this.outputType = "ArrayBuffer";
this.args = [];

View File

@@ -21,6 +21,7 @@ class Bcrypt extends Operation {
this.name = "Bcrypt";
this.module = "Hashing";
this.description = "bcrypt is a password hashing function designed by Niels Provos and David Mazi\xe8res, based on the Blowfish cipher, and presented at USENIX in 1999. Besides incorporating a salt to protect against rainbow table attacks, bcrypt is an adaptive function: over time, the iteration count (rounds) can be increased to make it slower, so it remains resistant to brute-force search attacks even with increasing computation power.<br><br>Enter the password in the input to generate its hash.";
this.infoURL = "https://wikipedia.org/wiki/Bcrypt";
this.inputType = "string";
this.outputType = "string";
this.args = [

View File

@@ -21,6 +21,7 @@ class BcryptCompare extends Operation {
this.name = "Bcrypt compare";
this.module = "Hashing";
this.description = "Tests whether the input matches the given bcrypt hash. To test multiple possible passwords, use the 'Fork' operation.";
this.infoURL = "https://wikipedia.org/wiki/Bcrypt";
this.inputType = "string";
this.outputType = "string";
this.args = [

View File

@@ -22,6 +22,7 @@ class BcryptParse extends Operation {
this.name = "Bcrypt parse";
this.module = "Hashing";
this.description = "Parses a bcrypt hash to determine the number of rounds used, the salt, and the password hash.";
this.infoURL = "https://wikipedia.org/wiki/Bcrypt";
this.inputType = "string";
this.outputType = "string";
this.args = [];

View File

@@ -22,6 +22,7 @@ class BifidCipherDecode extends Operation {
this.name = "Bifid Cipher Decode";
this.module = "Ciphers";
this.description = "The Bifid cipher is a cipher which uses a Polybius square in conjunction with transposition, which can be fairly difficult to decipher without knowing the alphabet keyword.";
this.infoURL = "https://wikipedia.org/wiki/Bifid_cipher";
this.inputType = "string";
this.outputType = "string";
this.args = [

View File

@@ -22,6 +22,7 @@ class BifidCipherEncode extends Operation {
this.name = "Bifid Cipher Encode";
this.module = "Ciphers";
this.description = "The Bifid cipher is a cipher which uses a Polybius square in conjunction with transposition, which can be fairly difficult to decipher without knowing the alphabet keyword.";
this.infoURL = "https://wikipedia.org/wiki/Bifid_cipher";
this.inputType = "string";
this.outputType = "string";
this.args = [

View File

@@ -20,6 +20,7 @@ class BitShiftLeft extends Operation {
this.name = "Bit shift left";
this.module = "Default";
this.description = "Shifts the bits in each byte towards the left by the specified amount.";
this.infoURL = "https://wikipedia.org/wiki/Bitwise_operation#Bit_shifts";
this.inputType = "byteArray";
this.outputType = "byteArray";
this.args = [

View File

@@ -20,6 +20,7 @@ class BitShiftRight extends Operation {
this.name = "Bit shift right";
this.module = "Default";
this.description = "Shifts the bits in each byte towards the right by the specified amount.<br><br><i>Logical shifts</i> replace the leftmost bits with zeros.<br><i>Arithmetic shifts</i> preserve the most significant bit (MSB) of the original byte keeping the sign the same (positive or negative).";
this.infoURL = "https://wikipedia.org/wiki/Bitwise_operation#Bit_shifts";
this.inputType = "byteArray";
this.outputType = "byteArray";
this.args = [

View File

@@ -38,6 +38,7 @@ class BlowfishDecrypt extends Operation {
this.name = "Blowfish Decrypt";
this.module = "Ciphers";
this.description = "Blowfish is a symmetric-key block cipher designed in 1993 by Bruce Schneier and included in a large number of cipher suites and encryption products. AES now receives more attention.<br><br><b>IV:</b> The Initialization Vector should be 8 bytes long. If not entered, it will default to 8 null bytes.";
this.infoURL = "https://wikipedia.org/wiki/Blowfish_(cipher)";
this.inputType = "string";
this.outputType = "string";
this.args = [

View File

@@ -39,6 +39,7 @@ class BlowfishEncrypt extends Operation {
this.name = "Blowfish Encrypt";
this.module = "Ciphers";
this.description = "Blowfish is a symmetric-key block cipher designed in 1993 by Bruce Schneier and included in a large number of cipher suites and encryption products. AES now receives more attention.<br><br><b>IV:</b> The Initialization Vector should be 8 bytes long. If not entered, it will default to 8 null bytes.";
this.infoURL = "https://wikipedia.org/wiki/Blowfish_(cipher)";
this.inputType = "string";
this.outputType = "string";
this.args = [

View File

@@ -22,6 +22,7 @@ class Bzip2Decompress extends Operation {
this.name = "Bzip2 Decompress";
this.module = "Compression";
this.description = "Decompresses data using the Bzip2 algorithm.";
this.infoURL = "https://wikipedia.org/wiki/Bzip2";
this.inputType = "byteArray";
this.outputType = "string";
this.args = [];

View File

@@ -21,6 +21,7 @@ class CRC16Checksum extends Operation {
this.name = "CRC-16 Checksum";
this.module = "Hashing";
this.description = "A cyclic redundancy check (CRC) is an error-detecting code commonly used in digital networks and storage devices to detect accidental changes to raw data.<br><br>The CRC was invented by W. Wesley Peterson in 1961.";
this.infoURL = "https://wikipedia.org/wiki/Cyclic_redundancy_check";
this.inputType = "ArrayBuffer";
this.outputType = "string";
this.args = [];

View File

@@ -21,6 +21,7 @@ class CRC32Checksum extends Operation {
this.name = "CRC-32 Checksum";
this.module = "Hashing";
this.description = "A cyclic redundancy check (CRC) is an error-detecting code commonly used in digital networks and storage devices to detect accidental changes to raw data.<br><br>The CRC was invented by W. Wesley Peterson in 1961; the 32-bit CRC function of Ethernet and many other standards is the work of several researchers and was published in 1975.";
this.infoURL = "https://wikipedia.org/wiki/Cyclic_redundancy_check";
this.inputType = "ArrayBuffer";
this.outputType = "string";
this.args = [];

View File

@@ -23,6 +23,7 @@ class CSSSelector extends Operation {
this.name = "CSS selector";
this.module = "Code";
this.description = "Extract information from an HTML document with a CSS selector";
this.infoURL = "https://wikipedia.org/wiki/Cascading_Style_Sheets#Selector";
this.inputType = "string";
this.outputType = "string";
this.args = [

View File

@@ -21,6 +21,7 @@ class CTPH extends Operation {
this.name = "CTPH";
this.module = "Hashing";
this.description = "Context Triggered Piecewise Hashing, also called Fuzzy Hashing, can match inputs that have homologies. Such inputs have sequences of identical bytes in the same order, although bytes in between these sequences may be different in both content and length.<br><br>CTPH was originally based on the work of Dr. Andrew Tridgell and a spam email detector called SpamSum. This method was adapted by Jesse Kornblum and published at the DFRWS conference in 2006 in a paper 'Identifying Almost Identical Files Using Context Triggered Piecewise Hashing'.";
this.infoURL = "https://forensicswiki.org/wiki/Context_Triggered_Piecewise_Hashing";
this.inputType = "string";
this.outputType = "string";
this.args = [];

View File

@@ -21,6 +21,7 @@ class CartesianProduct extends Operation {
this.name = "Cartesian Product";
this.module = "Default";
this.description = "Calculates the cartesian product of multiple sets of data, returning all possible combinations.";
this.infoURL = "https://wikipedia.org/wiki/Cartesian_product";
this.inputType = "string";
this.outputType = "string";
this.args = [

View File

@@ -21,7 +21,7 @@ class ChangeIPFormat extends Operation {
super();
this.name = "Change IP format";
this.module = "JSBN";
this.module = "Default";
this.description = "Convert an IP address from one format to another, e.g. <code>172.20.23.54</code> to <code>ac141736</code>";
this.inputType = "string";
this.outputType = "string";
@@ -29,12 +29,12 @@ class ChangeIPFormat extends Operation {
{
"name": "Input format",
"type": "option",
"value": ["Hex", "Raw"]
"value": ["Dotted Decimal", "Decimal", "Hex"]
},
{
"name": "Output format",
"type": "option",
"value": ["Hex", "Raw"]
"value": ["Dotted Decimal", "Decimal", "Hex"]
}
];
}

View File

@@ -20,6 +20,7 @@ class ChiSquare extends Operation {
this.name = "Chi Square";
this.module = "Default";
this.description = "Calculates the Chi Square distribution of values.";
this.infoURL = "https://wikipedia.org/wiki/Chi-squared_distribution";
this.inputType = "ArrayBuffer";
this.outputType = "number";
this.args = [];

View File

@@ -24,6 +24,7 @@ class CompareCTPHHashes extends Operation {
this.name = "Compare CTPH hashes";
this.module = "Hashing";
this.description = "Compares two Context Triggered Piecewise Hashing (CTPH) fuzzy hashes to determine the similarity between them on a scale of 0 to 100.";
this.infoURL = "https://forensicswiki.org/wiki/Context_Triggered_Piecewise_Hashing";
this.inputType = "string";
this.outputType = "Number";
this.args = [

View File

@@ -24,6 +24,7 @@ class CompareSSDEEPHashes extends Operation {
this.name = "Compare SSDEEP hashes";
this.module = "Hashing";
this.description = "Compares two SSDEEP fuzzy hashes to determine the similarity between them on a scale of 0 to 100.";
this.infoURL = "https://forensicswiki.org/wiki/Ssdeep";
this.inputType = "string";
this.outputType = "Number";
this.args = [

View File

@@ -20,6 +20,7 @@ class ConvertArea extends Operation {
this.name = "Convert area";
this.module = "Default";
this.description = "Converts a unit of area to another format.";
this.infoURL = "https://wikipedia.org/wiki/Orders_of_magnitude_(area)";
this.inputType = "BigNumber";
this.outputType = "BigNumber";
this.args = [

View File

@@ -20,6 +20,7 @@ class ConvertDataUnits extends Operation {
this.name = "Convert data units";
this.module = "Default";
this.description = "Converts a unit of data to another format.";
this.infoURL = "https://wikipedia.org/wiki/Orders_of_magnitude_(data)";
this.inputType = "BigNumber";
this.outputType = "BigNumber";
this.args = [

View File

@@ -20,6 +20,7 @@ class ConvertDistance extends Operation {
this.name = "Convert distance";
this.module = "Default";
this.description = "Converts a unit of distance to another format.";
this.infoURL = "https://wikipedia.org/wiki/Orders_of_magnitude_(length)";
this.inputType = "BigNumber";
this.outputType = "BigNumber";
this.args = [

View File

@@ -20,6 +20,7 @@ class ConvertMass extends Operation {
this.name = "Convert mass";
this.module = "Default";
this.description = "Converts a unit of mass to another format.";
this.infoURL = "https://wikipedia.org/wiki/Orders_of_magnitude_(mass)";
this.inputType = "BigNumber";
this.outputType = "BigNumber";
this.args = [

View File

@@ -20,6 +20,7 @@ class ConvertSpeed extends Operation {
this.name = "Convert speed";
this.module = "Default";
this.description = "Converts a unit of speed to another format.";
this.infoURL = "https://wikipedia.org/wiki/Orders_of_magnitude_(speed)";
this.inputType = "BigNumber";
this.outputType = "BigNumber";
this.args = [

View File

@@ -23,6 +23,7 @@ class DESDecrypt extends Operation {
this.name = "DES Decrypt";
this.module = "Ciphers";
this.description = "DES is a previously dominant algorithm for encryption, and was published as an official U.S. Federal Information Processing Standard (FIPS). It is now considered to be insecure due to its small key size.<br><br><b>Key:</b> DES uses a key length of 8 bytes (64 bits).<br>Triple DES uses a key length of 24 bytes (192 bits).<br><br><b>IV:</b> The Initialization Vector should be 8 bytes long. If not entered, it will default to 8 null bytes.<br><br><b>Padding:</b> In CBC and ECB mode, PKCS#7 padding will be used.";
this.infoURL = "https://wikipedia.org/wiki/Data_Encryption_Standard";
this.inputType = "string";
this.outputType = "string";
this.args = [

View File

@@ -23,6 +23,7 @@ class DESEncrypt extends Operation {
this.name = "DES Encrypt";
this.module = "Ciphers";
this.description = "DES is a previously dominant algorithm for encryption, and was published as an official U.S. Federal Information Processing Standard (FIPS). It is now considered to be insecure due to its small key size.<br><br><b>Key:</b> DES uses a key length of 8 bytes (64 bits).<br>Triple DES uses a key length of 24 bytes (192 bits).<br><br>You can generate a password-based key using one of the KDF operations.<br><br><b>IV:</b> The Initialization Vector should be 8 bytes long. If not entered, it will default to 8 null bytes.<br><br><b>Padding:</b> In CBC and ECB mode, PKCS#7 padding will be used.";
this.infoURL = "https://wikipedia.org/wiki/Data_Encryption_Standard";
this.inputType = "string";
this.outputType = "string";
this.args = [

View File

@@ -0,0 +1,51 @@
/**
* @author sevzero [sevzero@protonmail.com]
* @copyright Crown Copyright 2018
* @license Apache-2.0
*/
import Operation from "../Operation";
/**
* Dechunk HTTP response operation
*/
class DechunkHTTPResponse extends Operation {
/**
* DechunkHTTPResponse constructor
*/
constructor() {
super();
this.name = "Dechunk HTTP response";
this.module = "Default";
this.description = "Parses an HTTP response transferred using Transfer-Encoding: Chunked";
this.infoURL = "https://wikipedia.org/wiki/Chunked_transfer_encoding";
this.inputType = "string";
this.outputType = "string";
this.args = [];
}
/**
* @param {string} input
* @param {Object[]} args
* @returns {string}
*/
run(input, args) {
const chunks = [];
let chunkSizeEnd = input.indexOf("\n") + 1;
const lineEndings = input.charAt(chunkSizeEnd - 2) === "\r" ? "\r\n" : "\n";
const lineEndingsLength = lineEndings.length;
let chunkSize = parseInt(input.slice(0, chunkSizeEnd), 16);
while (!isNaN(chunkSize)) {
chunks.push(input.slice(chunkSizeEnd, chunkSize + chunkSizeEnd));
input = input.slice(chunkSizeEnd + chunkSize + lineEndingsLength);
chunkSizeEnd = input.indexOf(lineEndings) + lineEndingsLength;
chunkSize = parseInt(input.slice(0, chunkSizeEnd), 16);
}
return chunks.join("") + input;
}
}
export default DechunkHTTPResponse;

View File

@@ -20,6 +20,7 @@ class DecodeNetBIOSName extends Operation {
this.name = "Decode NetBIOS Name";
this.module = "Default";
this.description = "NetBIOS names as seen across the client interface to NetBIOS are exactly 16 bytes long. Within the NetBIOS-over-TCP protocols, a longer representation is used.<br><br>There are two levels of encoding. The first level maps a NetBIOS name into a domain system name. The second level maps the domain system name into the 'compressed' representation required for interaction with the domain name system.<br><br>This operation decodes the first level of encoding. See RFC 1001 for full details.";
this.infoURL = "https://wikipedia.org/wiki/NetBIOS";
this.inputType = "byteArray";
this.outputType = "byteArray";
this.args = [

View File

@@ -29,6 +29,7 @@ class DecodeText extends Operation {
Object.keys(IO_FORMAT).map(e => `<li>${e}</li>`).join("\n"),
"</ul>",
].join("\n");
this.infoURL = "https://wikipedia.org/wiki/Character_encoding";
this.inputType = "byteArray";
this.outputType = "string";
this.args = [

View File

@@ -21,7 +21,8 @@ class DeriveEVPKey extends Operation {
this.name = "Derive EVP key";
this.module = "Ciphers";
this.description = "EVP is a password-based key derivation function (PBKDF) used extensively in OpenSSL. In many applications of cryptography, user security is ultimately dependent on a password, and because a password usually can't be used directly as a cryptographic key, some processing is required.<br><br>A salt provides a large set of keys for any given password, and an iteration count increases the cost of producing keys from a password, thereby also increasing the difficulty of attack.<br><br>If you leave the salt argument empty, a random salt will be generated.";
this.description = "This operation performs a password-based key derivation function (PBKDF) used extensively in OpenSSL. In many applications of cryptography, user security is ultimately dependent on a password, and because a password usually can't be used directly as a cryptographic key, some processing is required.<br><br>A salt provides a large set of keys for any given password, and an iteration count increases the cost of producing keys from a password, thereby also increasing the difficulty of attack.<br><br>If you leave the salt argument empty, a random salt will be generated.";
this.infoURL = "https://wikipedia.org/wiki/Key_derivation_function";
this.inputType = "string";
this.outputType = "string";
this.args = [

View File

@@ -22,6 +22,7 @@ class DerivePBKDF2Key extends Operation {
this.name = "Derive PBKDF2 key";
this.module = "Ciphers";
this.description = "PBKDF2 is a password-based key derivation function. It is part of RSA Laboratories' Public-Key Cryptography Standards (PKCS) series, specifically PKCS #5 v2.0, also published as Internet Engineering Task Force's RFC 2898.<br><br>In many applications of cryptography, user security is ultimately dependent on a password, and because a password usually can't be used directly as a cryptographic key, some processing is required.<br><br>A salt provides a large set of keys for any given password, and an iteration count increases the cost of producing keys from a password, thereby also increasing the difficulty of attack.<br><br>If you leave the salt argument empty, a random salt will be generated.";
this.infoURL = "https://wikipedia.org/wiki/PBKDF2";
this.inputType = "string";
this.outputType = "string";
this.args = [

View File

@@ -21,6 +21,7 @@ class DetectFileType extends Operation {
this.name = "Detect File Type";
this.module = "Default";
this.description = "Attempts to guess the MIME (Multipurpose Internet Mail Extensions) type of the data based on 'magic bytes'.<br><br>Currently supports the following file types: 7z, amr, avi, bmp, bz2, class, cr2, crx, dex, dmg, doc, elf, eot, epub, exe, flac, flv, gif, gz, ico, iso, jpg, jxr, m4a, m4v, mid, mkv, mov, mp3, mp4, mpg, ogg, otf, pdf, png, ppt, ps, psd, rar, rtf, sqlite, swf, tar, tar.z, tif, ttf, utf8, vmdk, wav, webm, webp, wmv, woff, woff2, xls, xz, zip.";
this.infoURL = "https://wikipedia.org/wiki/List_of_file_signatures";
this.inputType = "ArrayBuffer";
this.outputType = "string";
this.args = [];

View File

@@ -23,6 +23,7 @@ class Diff extends Operation {
this.name = "Diff";
this.module = "Diff";
this.description = "Compares two inputs (separated by the specified delimiter) and highlights the differences between them.";
this.infoURL = "https://wikipedia.org/wiki/File_comparison";
this.inputType = "string";
this.outputType = "html";
this.args = [

View File

@@ -22,6 +22,7 @@ class DisassembleX86 extends Operation {
this.name = "Disassemble x86";
this.module = "Shellcode";
this.description = "Disassembly is the process of translating machine language into assembly language.<br><br>This operation supports 64-bit, 32-bit and 16-bit code written for Intel or AMD x86 processors. It is particularly useful for reverse engineering shellcode.<br><br>Input should be in hexadecimal.";
this.infoURL = "https://wikipedia.org/wiki/X86";
this.inputType = "string";
this.outputType = "string";
this.args = [

View File

@@ -20,6 +20,7 @@ class EncodeNetBIOSName extends Operation {
this.name = "Encode NetBIOS Name";
this.module = "Default";
this.description = "NetBIOS names as seen across the client interface to NetBIOS are exactly 16 bytes long. Within the NetBIOS-over-TCP protocols, a longer representation is used.<br><br>There are two levels of encoding. The first level maps a NetBIOS name into a domain system name. The second level maps the domain system name into the 'compressed' representation required for interaction with the domain name system.<br><br>This operation carries out the first level of encoding. See RFC 1001 for full details.";
this.infoURL = "https://wikipedia.org/wiki/NetBIOS";
this.inputType = "byteArray";
this.outputType = "byteArray";
this.args = [

View File

@@ -29,6 +29,7 @@ class EncodeText extends Operation {
Object.keys(IO_FORMAT).map(e => `<li>${e}</li>`).join("\n"),
"</ul>",
].join("\n");
this.infoURL = "https://wikipedia.org/wiki/Character_encoding";
this.inputType = "string";
this.outputType = "byteArray";
this.args = [

View File

@@ -21,6 +21,7 @@ class Entropy extends Operation {
this.name = "Entropy";
this.module = "Default";
this.description = "Shannon Entropy, in the context of information theory, is a measure of the rate at which information is produced by a source of data. It can be used, in a broad sense, to detect whether data is likely to be structured or unstructured. 8 is the maximum, representing highly unstructured, 'random' data. English language text usually falls somewhere between 3.5 and 5. Properly encrypted or compressed data should have an entropy of over 7.5.";
this.infoURL = "https://wikipedia.org/wiki/Entropy_(information_theory)";
this.inputType = "byteArray";
this.outputType = "number";
this.presentType = "html";

View File

@@ -22,6 +22,7 @@ class EscapeString extends Operation {
this.name = "Escape string";
this.module = "Default";
this.description = "Escapes special characters in a string so that they do not cause conflicts. For example, <code>Don't stop me now</code> becomes <code>Don\\'t stop me now</code>.<br><br>Supports the following escape sequences:<ul><li><code>\\n</code> (Line feed/newline)</li><li><code>\\r</code> (Carriage return)</li><li><code>\\t</code> (Horizontal tab)</li><li><code>\\b</code> (Backspace)</li><li><code>\\f</code> (Form feed)</li><li><code>\\xnn</code> (Hex, where n is 0-f)</li><li><code>\\\\</code> (Backslash)</li><li><code>\\'</code> (Single quote)</li><li><code>\\&quot;</code> (Double quote)</li><li><code>\\unnnn</code> (Unicode character)</li><li><code>\\u{nnnnnn}</code> (Unicode code point)</li></ul>";
this.infoURL = "https://wikipedia.org/wiki/Escape_sequence";
this.inputType = "string";
this.outputType = "string";
this.args = [

View File

@@ -28,6 +28,7 @@ class ExtractEXIF extends Operation {
"<br><br>",
"EXIF data from photos usually contains information about the image file itself as well as the device used to create it.",
].join("\n");
this.infoURL = "https://wikipedia.org/wiki/Exif";
this.inputType = "ArrayBuffer";
this.outputType = "string";
this.args = [];

View File

@@ -8,6 +8,7 @@ import Operation from "../Operation";
import Utils from "../Utils";
import {INPUT_DELIM_OPTIONS} from "../lib/Delim";
import OperationError from "../errors/OperationError";
import XRegExp from "xregexp";
/**
* Filter operation
@@ -21,7 +22,7 @@ class Filter extends Operation {
super();
this.name = "Filter";
this.module = "Default";
this.module = "Regex";
this.description = "Splits up the input using the specified delimiter and then filters each branch based on a regular expression.";
this.inputType = "string";
this.outputType = "string";
@@ -55,7 +56,7 @@ class Filter extends Operation {
let regex;
try {
regex = new RegExp(args[1]);
regex = new XRegExp(args[1]);
} catch (err) {
throw new OperationError(`Invalid regex. Details: ${err.message}`);
}

View File

@@ -6,6 +6,7 @@
import Operation from "../Operation";
import Utils from "../Utils";
import XRegExp from "xregexp";
/**
* Find / Replace operation
@@ -21,6 +22,7 @@ class FindReplace extends Operation {
this.name = "Find / Replace";
this.module = "Regex";
this.description = "Replaces all occurrences of the first string with the second.<br><br>Includes support for regular expressions (regex), simple strings and extended strings (which support \\n, \\r, \\t, \\b, \\f and escaped hex bytes using \\x notation, e.g. \\x00 for a null byte).";
this.infoURL = "https://wikipedia.org/wiki/Regular_expression";
this.inputType = "string";
this.outputType = "string";
this.args = [
@@ -49,6 +51,11 @@ class FindReplace extends Operation {
"name": "Multiline matching",
"type": "boolean",
"value": true
},
{
"name": "Dot matches all",
"type": "boolean",
"value": false
}
];
}
@@ -59,16 +66,17 @@ class FindReplace extends Operation {
* @returns {string}
*/
run(input, args) {
const [{option: type}, replace, g, i, m] = args;
const [{option: type}, replace, g, i, m, s] = args;
let find = args[0].string,
modifiers = "";
if (g) modifiers += "g";
if (i) modifiers += "i";
if (m) modifiers += "m";
if (s) modifiers += "s";
if (type === "Regex") {
find = new RegExp(find, modifiers);
find = new XRegExp(find, modifiers);
return input.replace(find, replace);
}
@@ -76,7 +84,7 @@ class FindReplace extends Operation {
find = Utils.parseEscapedChars(find);
}
find = new RegExp(Utils.escapeRegex(find), modifiers);
find = new XRegExp(Utils.escapeRegex(find), modifiers);
return input.replace(find, replace);
}

View File

@@ -21,6 +21,7 @@ class Fletcher16Checksum extends Operation {
this.name = "Fletcher-16 Checksum";
this.module = "Hashing";
this.description = "The Fletcher checksum is an algorithm for computing a position-dependent checksum devised by John Gould Fletcher at Lawrence Livermore Labs in the late 1970s.<br><br>The objective of the Fletcher checksum was to provide error-detection properties approaching those of a cyclic redundancy check but with the lower computational effort associated with summation techniques.";
this.infoURL = "https://wikipedia.org/wiki/Fletcher%27s_checksum#Fletcher-16";
this.inputType = "byteArray";
this.outputType = "string";
this.args = [];

View File

@@ -21,6 +21,7 @@ class Fletcher32Checksum extends Operation {
this.name = "Fletcher-32 Checksum";
this.module = "Hashing";
this.description = "The Fletcher checksum is an algorithm for computing a position-dependent checksum devised by John Gould Fletcher at Lawrence Livermore Labs in the late 1970s.<br><br>The objective of the Fletcher checksum was to provide error-detection properties approaching those of a cyclic redundancy check but with the lower computational effort associated with summation techniques.";
this.infoURL = "https://wikipedia.org/wiki/Fletcher%27s_checksum#Fletcher-32";
this.inputType = "byteArray";
this.outputType = "string";
this.args = [];

View File

@@ -21,6 +21,7 @@ class Fletcher64Checksum extends Operation {
this.name = "Fletcher-64 Checksum";
this.module = "Hashing";
this.description = "The Fletcher checksum is an algorithm for computing a position-dependent checksum devised by John Gould Fletcher at Lawrence Livermore Labs in the late 1970s.<br><br>The objective of the Fletcher checksum was to provide error-detection properties approaching those of a cyclic redundancy check but with the lower computational effort associated with summation techniques.";
this.infoURL = "https://wikipedia.org/wiki/Fletcher%27s_checksum#Fletcher-64";
this.inputType = "byteArray";
this.outputType = "string";
this.args = [];

View File

@@ -21,6 +21,7 @@ class Fletcher8Checksum extends Operation {
this.name = "Fletcher-8 Checksum";
this.module = "Hashing";
this.description = "The Fletcher checksum is an algorithm for computing a position-dependent checksum devised by John Gould Fletcher at Lawrence Livermore Labs in the late 1970s.<br><br>The objective of the Fletcher checksum was to provide error-detection properties approaching those of a cyclic redundancy check but with the lower computational effort associated with summation techniques.";
this.infoURL = "https://wikipedia.org/wiki/Fletcher%27s_checksum";
this.inputType = "byteArray";
this.outputType = "string";
this.args = [];

View File

@@ -20,6 +20,7 @@ class FormatMACAddresses extends Operation {
this.name = "Format MAC addresses";
this.module = "Default";
this.description = "Displays given MAC addresses in multiple different formats.<br><br>Expects addresses in a list separated by newlines, spaces or commas.<br><br>WARNING: There are no validity checks.";
this.infoURL = "https://wikipedia.org/wiki/MAC_address#Notational_conventions";
this.inputType = "string";
this.outputType = "string";
this.args = [

View File

@@ -22,6 +22,7 @@ class FrequencyDistribution extends Operation {
this.name = "Frequency distribution";
this.module = "Default";
this.description = "Displays the distribution of bytes in the data as a graph.";
this.infoURL = "https://wikipedia.org/wiki/Frequency_distribution";
this.inputType = "ArrayBuffer";
this.outputType = "json";
this.presentType = "html";

View File

@@ -24,6 +24,7 @@ class FromBCD extends Operation {
this.name = "From BCD";
this.module = "Default";
this.description = "Binary-Coded Decimal (BCD) is a class of binary encodings of decimal numbers where each decimal digit is represented by a fixed number of bits, usually four or eight. Special bit patterns are sometimes used for a sign.";
this.infoURL = "https://wikipedia.org/wiki/Binary-coded_decimal";
this.inputType = "string";
this.outputType = "BigNumber";
this.args = [

View File

@@ -22,6 +22,7 @@ class FromBase extends Operation {
this.name = "From Base";
this.module = "Default";
this.description = "Converts a number to decimal from a given numerical base.";
this.infoURL = "https://wikipedia.org/wiki/Radix";
this.inputType = "string";
this.outputType = "BigNumber";
this.args = [

View File

@@ -21,6 +21,7 @@ class FromBase32 extends Operation {
this.name = "From Base32";
this.module = "Default";
this.description = "Base32 is a notation for encoding arbitrary byte data using a restricted set of symbols that can be conveniently used by humans and processed by computers. It uses a smaller set of characters than Base64, usually the uppercase alphabet and the numbers 2 to 7.";
this.infoURL = "https://wikipedia.org/wiki/Base32";
this.inputType = "string";
this.outputType = "byteArray";
this.args = [

View File

@@ -23,6 +23,7 @@ class FromBase58 extends Operation {
this.name = "From Base58";
this.module = "Default";
this.description = "Base58 (similar to Base64) is a notation for encoding arbitrary byte data. It differs from Base64 by removing easily misread characters (i.e. l, I, 0 and O) to improve human readability.<br><br>This operation decodes data from an ASCII string (with an alphabet of your choosing, presets included) back into its raw form.<br><br>e.g. <code>StV1DL6CwTryKyV</code> becomes <code>hello world</code><br><br>Base58 is commonly used in cryptocurrencies (Bitcoin, Ripple, etc).";
this.infoURL = "https://wikipedia.org/wiki/Base58";
this.inputType = "string";
this.outputType = "byteArray";
this.args = [

View File

@@ -21,6 +21,7 @@ class FromBase64 extends Operation {
this.name = "From Base64";
this.module = "Default";
this.description = "Base64 is a notation for encoding arbitrary byte data using a restricted set of symbols that can be conveniently used by humans and processed by computers.<br><br>This operation decodes data from an ASCII Base64 string back into its raw format.<br><br>e.g. <code>aGVsbG8=</code> becomes <code>hello</code>";
this.infoURL = "https://wikipedia.org/wiki/Base64";
this.inputType = "string";
this.outputType = "byteArray";
this.args = [

View File

@@ -22,6 +22,7 @@ class FromBinary extends Operation {
this.name = "From Binary";
this.module = "Default";
this.description = "Converts a binary string back into its raw form.<br><br>e.g. <code>01001000 01101001</code> becomes <code>Hi</code>";
this.infoURL = "https://wikipedia.org/wiki/Binary_code";
this.inputType = "string";
this.outputType = "byteArray";
this.args = [

View File

@@ -23,6 +23,7 @@ class FromCharcode extends Operation {
this.name = "From Charcode";
this.module = "Default";
this.description = "Converts unicode character codes back into text.<br><br>e.g. <code>0393 03b5 03b9 03ac 20 03c3 03bf 03c5</code> becomes <code>Γειά σου</code>";
this.infoURL = "https://wikipedia.org/wiki/Plane_(Unicode)";
this.inputType = "string";
this.outputType = "byteArray";
this.args = [

View File

@@ -5,8 +5,8 @@
*/
import Operation from "../Operation";
import Utils from "../Utils";
import {DELIM_OPTIONS} from "../lib/Delim";
import {fromDecimal} from "../lib/Decimal";
/**
* From Decimal operation
@@ -71,16 +71,7 @@ class FromDecimal extends Operation {
* @returns {byteArray}
*/
run(input, args) {
const delim = Utils.charRep(args[0]),
output = [];
let byteStr = input.split(delim);
if (byteStr[byteStr.length-1] === "")
byteStr = byteStr.slice(0, byteStr.length-1);
for (let i = 0; i < byteStr.length; i++) {
output[i] = parseInt(byteStr[i], 10);
}
return output;
return fromDecimal(input, args[0]);
}
}

View File

@@ -21,6 +21,7 @@ class FromHTMLEntity extends Operation {
this.name = "From HTML Entity";
this.module = "Default";
this.description = "Converts HTML entities back to characters<br><br>e.g. <code>&amp;<span>amp;</span></code> becomes <code>&amp;</code>";
this.infoURL = "https://wikipedia.org/wiki/List_of_XML_and_HTML_character_entity_references";
this.inputType = "string";
this.outputType = "string";
this.args = [];

View File

@@ -22,6 +22,7 @@ class FromHex extends Operation {
this.name = "From Hex";
this.module = "Default";
this.description = "Converts a hexadecimal byte string back into its raw value.<br><br>e.g. <code>ce 93 ce b5 ce b9 ce ac 20 cf 83 ce bf cf 85 0a</code> becomes the UTF-8 encoded string <code>Γειά σου</code>";
this.infoURL = "https://wikipedia.org/wiki/Hexadecimal";
this.inputType = "string";
this.outputType = "byteArray";
this.args = [
@@ -86,7 +87,7 @@ class FromHex extends Operation {
* @returns {byteArray}
*/
run(input, args) {
const delim = args[0] || "Space";
const delim = args[0] || "Auto";
return fromHex(input, delim, 2);
}

View File

@@ -21,7 +21,8 @@ class FromHexContent extends Operation {
this.name = "From Hex Content";
this.module = "Default";
this.description = "Translates hexadecimal bytes in text back to raw bytes.<br><br>e.g. <code>foo|3d|bar</code> becomes <code>foo=bar</code>.";
this.description = "Translates hexadecimal bytes in text back to raw bytes. This format is used by SNORT for representing hex within ASCII text.<br><br>e.g. <code>foo|3d|bar</code> becomes <code>foo=bar</code>.";
this.infoURL = "http://manual-snort-org.s3-website-us-east-1.amazonaws.com/node32.html#SECTION00451000000000000000";
this.inputType = "string";
this.outputType = "byteArray";
this.args = [];

View File

@@ -21,6 +21,7 @@ class FromHexdump extends Operation {
this.name = "From Hexdump";
this.module = "Default";
this.description = "Attempts to convert a hexdump back into raw data. This operation supports many different hexdump variations, but probably not all. Make sure you verify that the data it gives you is correct before continuing analysis.";
this.infoURL = "https://wikipedia.org/wiki/Hex_dump";
this.inputType = "string";
this.outputType = "byteArray";
this.args = [];

View File

@@ -0,0 +1,47 @@
/**
* @author Matt C [matt@artemisbot.uk]
* @copyright Crown Copyright 2018
* @license Apache-2.0
*/
import Operation from "../Operation";
import OperationError from "../errors/OperationError";
import notepack from "notepack.io";
/**
* From MessagePack operation
*/
class FromMessagePack extends Operation {
/**
* FromMessagePack constructor
*/
constructor() {
super();
this.name = "From MessagePack";
this.module = "Code";
this.description = "Converts MessagePack encoded data to JSON. MessagePack is a computer data interchange format. It is a binary form for representing simple data structures like arrays and associative arrays.";
this.infoURL = "https://wikipedia.org/wiki/MessagePack";
this.inputType = "ArrayBuffer";
this.outputType = "JSON";
this.args = [];
}
/**
* @param {ArrayBuffer} input
* @param {Object[]} args
* @returns {JSON}
*/
run(input, args) {
try {
const buf = Buffer.from(new Uint8Array(input));
return notepack.decode(buf);
} catch (err) {
throw new OperationError(`Could not decode MessagePack to JSON: ${err}`);
}
}
}
export default FromMessagePack;

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@@ -22,6 +22,7 @@ class FromMorseCode extends Operation {
this.name = "From Morse Code";
this.module = "Default";
this.description = "Translates Morse Code into (upper case) alphanumeric characters.";
this.infoURL = "https://wikipedia.org/wiki/Morse_code";
this.inputType = "string";
this.outputType = "string";
this.args = [

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@@ -22,6 +22,7 @@ class FromOctal extends Operation {
this.name = "From Octal";
this.module = "Default";
this.description = "Converts an octal byte string back into its raw value.<br><br>e.g. <code>316 223 316 265 316 271 316 254 40 317 203 316 277 317 205</code> becomes the UTF-8 encoded string <code>Γειά σου</code>";
this.infoURL = "https://wikipedia.org/wiki/Octal";
this.inputType = "string";
this.outputType = "byteArray";
this.args = [

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@@ -21,6 +21,7 @@ class FromPunycode extends Operation {
this.name = "From Punycode";
this.module = "Encodings";
this.description = "Punycode is a way to represent Unicode with the limited character subset of ASCII supported by the Domain Name System.<br><br>e.g. <code>mnchen-3ya</code> decodes to <code>m\xfcnchen</code>";
this.infoURL = "https://wikipedia.org/wiki/Punycode";
this.inputType = "string";
this.outputType = "string";
this.args = [

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@@ -24,6 +24,7 @@ class FromQuotedPrintable extends Operation {
this.name = "From Quoted Printable";
this.module = "Default";
this.description = "Converts QP-encoded text back to standard text.";
this.infoURL = "https://wikipedia.org/wiki/Quoted-printable";
this.inputType = "string";
this.outputType = "byteArray";
this.args = [];

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@@ -23,6 +23,7 @@ class FromUNIXTimestamp extends Operation {
this.name = "From UNIX Timestamp";
this.module = "Default";
this.description = "Converts a UNIX timestamp to a datetime string.<br><br>e.g. <code>978346800</code> becomes <code>Mon 1 January 2001 11:00:00 UTC</code><br><br>A UNIX timestamp is a 32-bit value representing the number of seconds since January 1, 1970 UTC (the UNIX epoch).";
this.infoURL = "https://wikipedia.org/wiki/Unix_time";
this.inputType = "number";
this.outputType = "string";
this.args = [

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@@ -43,6 +43,7 @@ class GenerateAllHashes extends Operation {
this.name = "Generate all hashes";
this.module = "Hashing";
this.description = "Generates all available hashes and checksums for the input.";
this.infoURL = "https://wikipedia.org/wiki/Comparison_of_cryptographic_hash_functions";
this.inputType = "ArrayBuffer";
this.outputType = "string";
this.args = [];

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@@ -22,6 +22,7 @@ class GenerateHOTP extends Operation {
this.name = "Generate HOTP";
this.module = "Default";
this.description = "The HMAC-based One-Time Password algorithm (HOTP) is an algorithm that computes a one-time password from a shared secret key and an incrementing counter. It has been adopted as Internet Engineering Task Force standard RFC 4226, is the cornerstone of Initiative For Open Authentication (OATH), and is used in a number of two-factor authentication systems.<br><br>Enter the secret as the input or leave it blank for a random secret to be generated.";
this.infoURL = "https://wikipedia.org/wiki/HMAC-based_One-time_Password_algorithm";
this.inputType = "byteArray";
this.outputType = "string";
this.args = [

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@@ -26,6 +26,7 @@ class GeneratePGPKeyPair extends Operation {
this.name = "Generate PGP Key Pair";
this.module = "PGP";
this.description = "Generates a new public/private PGP key pair. Supports RSA and Eliptic Curve (EC) keys.";
this.infoURL = "https://wikipedia.org/wiki/Pretty_Good_Privacy";
this.inputType = "string";
this.outputType = "string";
this.args = [

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@@ -22,6 +22,7 @@ class GenerateTOTP extends Operation {
this.name = "Generate TOTP";
this.module = "Default";
this.description = "The Time-based One-Time Password algorithm (TOTP) is an algorithm that computes a one-time password from a shared secret key and the current time. It has been adopted as Internet Engineering Task Force standard RFC 6238, is the cornerstone of Initiative For Open Authentication (OATH), and is used in a number of two-factor authentication systems. A TOTP is an HOTP where the counter is the current time.<br><br>Enter the secret as the input or leave it blank for a random secret to be generated. T0 and T1 are in seconds.";
this.infoURL = "https://wikipedia.org/wiki/Time-based_One-time_Password_algorithm";
this.inputType = "byteArray";
this.outputType = "string";
this.args = [

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@@ -21,6 +21,7 @@ class GenerateUUID extends Operation {
this.name = "Generate UUID";
this.module = "Crypto";
this.description = "Generates an RFC 4122 version 4 compliant Universally Unique Identifier (UUID), also known as a Globally Unique Identifier (GUID).<br><br>A version 4 UUID relies on random numbers, in this case generated using <code>window.crypto</code> if available and falling back to <code>Math.random</code> if not.";
this.infoURL = "https://wikipedia.org/wiki/Universally_unique_identifier";
this.inputType = "string";
this.outputType = "string";
this.args = [];

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@@ -24,6 +24,7 @@ class GroupIPAddresses extends Operation {
this.name = "Group IP addresses";
this.module = "JSBN";
this.description = "Groups a list of IP addresses into subnets. Supports both IPv4 and IPv6 addresses.";
this.infoURL = "https://wikipedia.org/wiki/Subnetwork";
this.inputType = "string";
this.outputType = "string";
this.args = [

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@@ -23,6 +23,7 @@ class Gunzip extends Operation {
this.name = "Gunzip";
this.module = "Compression";
this.description = "Decompresses data which has been compressed using the deflate algorithm with gzip headers.";
this.infoURL = "https://wikipedia.org/wiki/Gzip";
this.inputType = "ArrayBuffer";
this.outputType = "ArrayBuffer";
this.args = [];

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@@ -24,6 +24,7 @@ class Gzip extends Operation {
this.name = "Gzip";
this.module = "Compression";
this.description = "Compresses data using the deflate algorithm with gzip headers.";
this.infoURL = "https://wikipedia.org/wiki/Gzip";
this.inputType = "ArrayBuffer";
this.outputType = "ArrayBuffer";
this.args = [

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@@ -21,6 +21,7 @@ class HAS160 extends Operation {
this.name = "HAS-160";
this.module = "Hashing";
this.description = "HAS-160 is a cryptographic hash function designed for use with the Korean KCDSA digital signature algorithm. It is derived from SHA-1, with assorted changes intended to increase its security. It produces a 160-bit output.<br><br>HAS-160 is used in the same way as SHA-1. First it divides input in blocks of 512 bits each and pads the final block. A digest function updates the intermediate hash value by processing the input blocks in turn.<br><br>The message digest algorithm consists of 80 rounds.";
this.infoURL = "https://wikipedia.org/wiki/HAS-160";
this.inputType = "ArrayBuffer";
this.outputType = "string";
this.args = [];

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@@ -22,6 +22,7 @@ class HMAC extends Operation {
this.name = "HMAC";
this.module = "Hashing";
this.description = "Keyed-Hash Message Authentication Codes (HMAC) are a mechanism for message authentication using cryptographic hash functions.";
this.infoURL = "https://wikipedia.org/wiki/HMAC";
this.inputType = "ArrayBuffer";
this.outputType = "string";
this.args = [

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@@ -30,6 +30,7 @@ class HTTPRequest extends Operation {
"<br><br>",
"The status code of the response, along with a limited selection of exposed headers, can be viewed by checking the 'Show response metadata' option. Only a limited set of response headers are exposed by the browser for security reasons.",
].join("\n");
this.infoURL = "https://wikipedia.org/wiki/List_of_HTTP_header_fields#Request_fields";
this.inputType = "string";
this.outputType = "string";
this.manualBake = true;

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@@ -23,6 +23,7 @@ class HammingDistance extends Operation {
this.name = "Hamming Distance";
this.module = "Default";
this.description = "In information theory, the Hamming distance between two strings of equal length is the number of positions at which the corresponding symbols are different. In other words, it measures the minimum number of substitutions required to change one string into the other, or the minimum number of errors that could have transformed one string into the other. In a more general context, the Hamming distance is one of several string metrics for measuring the edit distance between two sequences.";
this.infoURL = "https://wikipedia.org/wiki/Hamming_distance";
this.inputType = "string";
this.outputType = "string";
this.args = [

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@@ -21,6 +21,7 @@ class HaversineDistance extends Operation {
this.name = "Haversine distance";
this.module = "Default";
this.description = "Returns the distance between two pairs of GPS latitude and longitude co-ordinates in metres.<br><br>e.g. <code>51.487263,-0.124323, 38.9517,-77.1467</code>";
this.infoURL = "https://wikipedia.org/wiki/Haversine_formula";
this.inputType = "string";
this.outputType = "number";
this.args = [];

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