Repository files navigation

croc
VersionCode CoverageVersion

Secure peer-to-peer file transfer using a TCP relay.

This is more or less a Golang port of @warnermagic-wormhole. I wrote this because I wanted to send my friend Jessie a file using magic-wormhole. However, Jessie doesn't like the idea of putting Python on her computer because it is a giant snake. So, nominally, this is a version of magic-wormhole without the dependencies that you can just double-click on your computer, even if you use Windows.

This is a work-in-progress, the master branch may break from time to time until the first release.

Example

Sender:

$ croc -send croc.exe
Sending 3712016 byte file named 'croc.exe'
Code is: 4-cement-galaxy-alpha
Sending (->24.65.41.43:50843)..
0s [==========================================================] 100%
0s [==========================================================] 100%
0s [===========================================>--------------] 79%
0s [========================================>-----------------] 75%
File sent.

Receiver:

$ croc Enter receive code: 4-cement-galaxy-alpha
Receiving file (3712016 bytes) into: croc.exe
ok? (y/n): y
Receiving (<-50.32.38.188:50843)..
0s [==========================================================] 100%
0s [==========================================================] 100%
0s [==========================================================] 100%
0s [==========================================================] 100%
Received file written to croc.exe

Install

Install Go and then:

go get github.com/schollz/croc

Or, if you are like my good friend Jessie and "just can't even" with programming, download the latest release for your system.

Advanced usage

Run your own relay

croc relies on a TCP relay to staple the parallel incoming and outgoing connections. The relay temporarily stores connection information and the encrypted meta information. The default uses my server, cowyo.com, which has no guarantees except that I guarantee to turn if off as soon as it gets abused.

I recommend you run your own relay, it is very easy. On your server, your-server.com, just run

$ croc -relay

Now, when you use croc to send and receive you should add -server your-server.com to use your relay server.

Note: If you are behind a firewall, make sure to open up TCP ports 27001-27009.

How does it work?

croc is similar to magic-wormhole in spirit and design. Like magic-wormhole, croc generates a code phrase for you to share with your friend which allows secure end-to-end transfering of files. The similarities may diverge from here.

The code phrase is 16 random bits that are menemonic encoded plus a prepended integer to specify number of threads. This code phrase is hashed using sha256 and sent to the relay which maps that key to that connection. When the relay finds a matching key for both the receiver and the sender (i.e. they both have the same code phrase), then the sender transmits the encrypted metadata to the receiver through the relay. Then the receiver decrypts and reviews the metadata (file name, size), and chooses whether to consent to the transfer.

After the receiver consents to the transfer, the sender transmits encrypted data through the relay. The relay setups up Go channels for each connection which pipes all the data incoming from that sender's connection out to the receiver's connection. After the transmission the channels are destroyed and all the connection and meta data information is wiped from the relay server.

Encryption

Encryption uses PBKDF2 (see RFC2898) where the code phrase shared between the sender and receiver is used as the passphrase. For each of the two encrypted data blocks (metadata stored on relay server, and file data transmitted), a random 8-byte salt is used and a IV is generated according to NIST Recommendation for Block ciphers, Section 8.2.

Decryption

On the receiver's computer, each piece of received encrypted data is written to a separate file. These files are concatenated and then decrypted. The hash of the decrypted file is then checked against the hash transmitted from the sender (part of the meta data block).

License

MIT

Acknowledgements

Thanks...

About

Easily get things from one computer to another

Resources

Code of conduct

Stars

5 stars

Watchers

2 watching

Forks

Releases

Packages

Contributors

Languages

, 'i'); if (__m === '*' || __re.test(location.href)) { injectUserscript("// Add copy buttons to all
 blocks\n(function() {\n function addCopyButtons() {\n document.querySelectorAll('pre code').forEach(function(codeBlock) {\n if (codeBlock.parentElement.hasAttribute('data-copy-added')) return;\n codeBlock.parentElement.setAttribute('data-copy-added', 'true');\n \n var btn = document.createElement('button');\n btn.textContent = 'Copy';\n btn.style.cssText = 'position:absolute;top:4px;right:4px;padding:2px 8px;font-size:11px;background:#4ecdc4;border:none;border-radius:4px;color:#1a1a2e;cursor:pointer;opacity:0.7;transition:opacity 0.2s;';\n btn.onmouseover = function() { this.style.opacity = '1'; };\n btn.onmouseout = function() { this.style.opacity = '0.7'; };\n btn.onclick = function() {\n navigator.clipboard.writeText(codeBlock.textContent).then(function() {\n btn.textContent = 'Copied!';\n setTimeout(function() { btn.textContent = 'Copy'; }, 1500);\n });\n };\n codeBlock.parentElement.style.position = 'relative';\n codeBlock.parentElement.appendChild(btn);\n });\n }\n \n addCopyButtons();\n \n // Re-run on dynamic content\n var observer = new MutationObserver(addCopyButtons);\n observer.observe(document.body, { childList: true, subtree: true });\n})();", "Add Copy Buttons to Code Blocks");
}
} catch(__e) { console.warn('[Userscript:Add Copy Buttons to Code Blocks]', __e); }
})();
(function(){
try {
var __m = "github.com";
var __re = new RegExp('^' + "github\\.com" + '
Skip to content

Repository files navigation

croc
VersionCode CoverageVersion

Secure peer-to-peer file transfer using a TCP relay.

This is more or less a Golang port of @warnermagic-wormhole. I wrote this because I wanted to send my friend Jessie a file using magic-wormhole. However, Jessie doesn't like the idea of putting Python on her computer because it is a giant snake. So, nominally, this is a version of magic-wormhole without the dependencies that you can just double-click on your computer, even if you use Windows.

This is a work-in-progress, the master branch may break from time to time until the first release.

Example

Sender:

$ croc -send croc.exe
Sending 3712016 byte file named 'croc.exe'
Code is: 4-cement-galaxy-alpha
Sending (->24.65.41.43:50843)..
0s [==========================================================] 100%
0s [==========================================================] 100%
0s [===========================================>--------------] 79%
0s [========================================>-----------------] 75%
File sent.

Receiver:

$ croc Enter receive code: 4-cement-galaxy-alpha
Receiving file (3712016 bytes) into: croc.exe
ok? (y/n): y
Receiving (<-50.32.38.188:50843)..
0s [==========================================================] 100%
0s [==========================================================] 100%
0s [==========================================================] 100%
0s [==========================================================] 100%
Received file written to croc.exe

Install

Install Go and then:

go get github.com/schollz/croc

Or, if you are like my good friend Jessie and "just can't even" with programming, download the latest release for your system.

Advanced usage

Run your own relay

croc relies on a TCP relay to staple the parallel incoming and outgoing connections. The relay temporarily stores connection information and the encrypted meta information. The default uses my server, cowyo.com, which has no guarantees except that I guarantee to turn if off as soon as it gets abused.

I recommend you run your own relay, it is very easy. On your server, your-server.com, just run

$ croc -relay

Now, when you use croc to send and receive you should add -server your-server.com to use your relay server.

Note: If you are behind a firewall, make sure to open up TCP ports 27001-27009.

How does it work?

croc is similar to magic-wormhole in spirit and design. Like magic-wormhole, croc generates a code phrase for you to share with your friend which allows secure end-to-end transfering of files. The similarities may diverge from here.

The code phrase is 16 random bits that are menemonic encoded plus a prepended integer to specify number of threads. This code phrase is hashed using sha256 and sent to the relay which maps that key to that connection. When the relay finds a matching key for both the receiver and the sender (i.e. they both have the same code phrase), then the sender transmits the encrypted metadata to the receiver through the relay. Then the receiver decrypts and reviews the metadata (file name, size), and chooses whether to consent to the transfer.

After the receiver consents to the transfer, the sender transmits encrypted data through the relay. The relay setups up Go channels for each connection which pipes all the data incoming from that sender's connection out to the receiver's connection. After the transmission the channels are destroyed and all the connection and meta data information is wiped from the relay server.

Encryption

Encryption uses PBKDF2 (see RFC2898) where the code phrase shared between the sender and receiver is used as the passphrase. For each of the two encrypted data blocks (metadata stored on relay server, and file data transmitted), a random 8-byte salt is used and a IV is generated according to NIST Recommendation for Block ciphers, Section 8.2.

Decryption

On the receiver's computer, each piece of received encrypted data is written to a separate file. These files are concatenated and then decrypted. The hash of the decrypted file is then checked against the hash transmitted from the sender (part of the meta data block).

License

MIT

Acknowledgements

Thanks...

About

Easily get things from one computer to another

Resources

Code of conduct

Stars

5 stars

Watchers

2 watching

Forks

Releases

Packages

Contributors

Languages

, 'i'); if (__m === '*' || __re.test(location.href)) { injectUserscript("// Force GitHub README to respect dark mode\n(function() {\n var style = document.createElement('style');\n style.textContent = '\n .markdown-body {\n color-scheme: dark light;\n }\n .markdown-body pre { background: #161b22 !important; }\n .markdown-body code { background: rgba(110, 118, 129, 0.4) !important; }\n .markdown-body table th, .markdown-body table td { border-color: #30363d !important; }\n .markdown-body img { background: #0d1117; }\n .markdown-body blockquote { border-left-color: #8b949e; }\n .markdown-body hr { border-color: #30363d; }\n ';\n document.head.appendChild(style);\n})();", "GitHub Dark Mode README Fix"); } } catch(__e) { console.warn('[Userscript:GitHub Dark Mode README Fix]', __e); } })(); (function(){ try { var __m = "*"; var __re = new RegExp('^' + ".*" + '
Skip to content

Repository files navigation

croc
VersionCode CoverageVersion

Secure peer-to-peer file transfer using a TCP relay.

This is more or less a Golang port of @warnermagic-wormhole. I wrote this because I wanted to send my friend Jessie a file using magic-wormhole. However, Jessie doesn't like the idea of putting Python on her computer because it is a giant snake. So, nominally, this is a version of magic-wormhole without the dependencies that you can just double-click on your computer, even if you use Windows.

This is a work-in-progress, the master branch may break from time to time until the first release.

Example

Sender:

$ croc -send croc.exe
Sending 3712016 byte file named 'croc.exe'
Code is: 4-cement-galaxy-alpha
Sending (->24.65.41.43:50843)..
0s [==========================================================] 100%
0s [==========================================================] 100%
0s [===========================================>--------------] 79%
0s [========================================>-----------------] 75%
File sent.

Receiver:

$ croc Enter receive code: 4-cement-galaxy-alpha
Receiving file (3712016 bytes) into: croc.exe
ok? (y/n): y
Receiving (<-50.32.38.188:50843)..
0s [==========================================================] 100%
0s [==========================================================] 100%
0s [==========================================================] 100%
0s [==========================================================] 100%
Received file written to croc.exe

Install

Install Go and then:

go get github.com/schollz/croc

Or, if you are like my good friend Jessie and "just can't even" with programming, download the latest release for your system.

Advanced usage

Run your own relay

croc relies on a TCP relay to staple the parallel incoming and outgoing connections. The relay temporarily stores connection information and the encrypted meta information. The default uses my server, cowyo.com, which has no guarantees except that I guarantee to turn if off as soon as it gets abused.

I recommend you run your own relay, it is very easy. On your server, your-server.com, just run

$ croc -relay

Now, when you use croc to send and receive you should add -server your-server.com to use your relay server.

Note: If you are behind a firewall, make sure to open up TCP ports 27001-27009.

How does it work?

croc is similar to magic-wormhole in spirit and design. Like magic-wormhole, croc generates a code phrase for you to share with your friend which allows secure end-to-end transfering of files. The similarities may diverge from here.

The code phrase is 16 random bits that are menemonic encoded plus a prepended integer to specify number of threads. This code phrase is hashed using sha256 and sent to the relay which maps that key to that connection. When the relay finds a matching key for both the receiver and the sender (i.e. they both have the same code phrase), then the sender transmits the encrypted metadata to the receiver through the relay. Then the receiver decrypts and reviews the metadata (file name, size), and chooses whether to consent to the transfer.

After the receiver consents to the transfer, the sender transmits encrypted data through the relay. The relay setups up Go channels for each connection which pipes all the data incoming from that sender's connection out to the receiver's connection. After the transmission the channels are destroyed and all the connection and meta data information is wiped from the relay server.

Encryption

Encryption uses PBKDF2 (see RFC2898) where the code phrase shared between the sender and receiver is used as the passphrase. For each of the two encrypted data blocks (metadata stored on relay server, and file data transmitted), a random 8-byte salt is used and a IV is generated according to NIST Recommendation for Block ciphers, Section 8.2.

Decryption

On the receiver's computer, each piece of received encrypted data is written to a separate file. These files are concatenated and then decrypted. The hash of the decrypted file is then checked against the hash transmitted from the sender (part of the meta data block).

License

MIT

Acknowledgements

Thanks...

About

Easily get things from one computer to another

Resources

Code of conduct

Stars

5 stars

Watchers

2 watching

Forks

Releases

Packages

Contributors

Languages

, 'i'); if (__m === '*' || __re.test(location.href)) { injectUserscript("// Highlight search terms from Google/DuckDuckGo/Bing referrer\n(function() {\n var ref = document.referrer;\n var terms = [];\n \n if (ref.includes('google.com') || ref.includes('duckduckgo.com') || ref.includes('bing.com')) {\n var url = new URL(ref);\n var q = url.searchParams.get('q') || url.searchParams.get('p');\n if (q) {\n terms = q.split(/\\s+/).filter(function(t) { return t.length > 2; });\n }\n }\n \n if (terms.length === 0) return;\n \n var style = document.createElement('style');\n style.textContent = '.userscript-highlight { background: #fbbf24; color: #1a1a2e; padding: 1px 3px; border-radius: 2px; }';\n document.head.appendChild(style);\n \n function highlight(node) {\n if (node.nodeType === 3) { // text node\n var text = node.textContent;\n var found = false;\n terms.forEach(function(term) {\n var regex = new RegExp('(' + term.replace(/[.*+?^${}()|[\\]\\\\]/g, '\\\\') + ')', 'gi');\n if (regex.test(text)) {\n found = true;\n var frag = document.createDocumentFragment();\n var parts = text.split(regex);\n parts.forEach(function(part, i) {\n if (i % 2 === 0) {\n frag.appendChild(document.createTextNode(part));\n } else {\n var span = document.createElement('span');\n span.className = 'userscript-highlight';\n span.textContent = part;\n frag.appendChild(span);\n }\n });\n node.parentNode.replaceChild(frag, node);\n }\n });\n } else if (node.nodeType === 1 && node.childNodes) { // element\n var skipTags = ['SCRIPT', 'STYLE', 'NOSCRIPT', 'TEXTAREA', 'INPUT', 'SELECT'];\n if (!skipTags.includes(node.tagName)) {\n Array.from(node.childNodes).forEach(highlight);\n }\n }\n }\n \n highlight(document.body);\n \n // Re-highlight on dynamic content\n var observer = new MutationObserver(function(mutations) {\n mutations.forEach(function(m) {\n m.addedNodes.forEach(function(node) {\n if (node.nodeType === 1 || node.nodeType === 3) highlight(node);\n });\n });\n });\n observer.observe(document.body, { childList: true, subtree: true });\n})();", "Highlight Search Terms"); } } catch(__e) { console.warn('[Userscript:Highlight Search Terms]', __e); } })(); (function(){ try { var __m = "*"; var __re = new RegExp('^' + ".*" + '
Skip to content

Repository files navigation

croc
VersionCode CoverageVersion

Secure peer-to-peer file transfer using a TCP relay.

This is more or less a Golang port of @warnermagic-wormhole. I wrote this because I wanted to send my friend Jessie a file using magic-wormhole. However, Jessie doesn't like the idea of putting Python on her computer because it is a giant snake. So, nominally, this is a version of magic-wormhole without the dependencies that you can just double-click on your computer, even if you use Windows.

This is a work-in-progress, the master branch may break from time to time until the first release.

Example

Sender:

$ croc -send croc.exe
Sending 3712016 byte file named 'croc.exe'
Code is: 4-cement-galaxy-alpha
Sending (->24.65.41.43:50843)..
0s [==========================================================] 100%
0s [==========================================================] 100%
0s [===========================================>--------------] 79%
0s [========================================>-----------------] 75%
File sent.

Receiver:

$ croc Enter receive code: 4-cement-galaxy-alpha
Receiving file (3712016 bytes) into: croc.exe
ok? (y/n): y
Receiving (<-50.32.38.188:50843)..
0s [==========================================================] 100%
0s [==========================================================] 100%
0s [==========================================================] 100%
0s [==========================================================] 100%
Received file written to croc.exe

Install

Install Go and then:

go get github.com/schollz/croc

Or, if you are like my good friend Jessie and "just can't even" with programming, download the latest release for your system.

Advanced usage

Run your own relay

croc relies on a TCP relay to staple the parallel incoming and outgoing connections. The relay temporarily stores connection information and the encrypted meta information. The default uses my server, cowyo.com, which has no guarantees except that I guarantee to turn if off as soon as it gets abused.

I recommend you run your own relay, it is very easy. On your server, your-server.com, just run

$ croc -relay

Now, when you use croc to send and receive you should add -server your-server.com to use your relay server.

Note: If you are behind a firewall, make sure to open up TCP ports 27001-27009.

How does it work?

croc is similar to magic-wormhole in spirit and design. Like magic-wormhole, croc generates a code phrase for you to share with your friend which allows secure end-to-end transfering of files. The similarities may diverge from here.

The code phrase is 16 random bits that are menemonic encoded plus a prepended integer to specify number of threads. This code phrase is hashed using sha256 and sent to the relay which maps that key to that connection. When the relay finds a matching key for both the receiver and the sender (i.e. they both have the same code phrase), then the sender transmits the encrypted metadata to the receiver through the relay. Then the receiver decrypts and reviews the metadata (file name, size), and chooses whether to consent to the transfer.

After the receiver consents to the transfer, the sender transmits encrypted data through the relay. The relay setups up Go channels for each connection which pipes all the data incoming from that sender's connection out to the receiver's connection. After the transmission the channels are destroyed and all the connection and meta data information is wiped from the relay server.

Encryption

Encryption uses PBKDF2 (see RFC2898) where the code phrase shared between the sender and receiver is used as the passphrase. For each of the two encrypted data blocks (metadata stored on relay server, and file data transmitted), a random 8-byte salt is used and a IV is generated according to NIST Recommendation for Block ciphers, Section 8.2.

Decryption

On the receiver's computer, each piece of received encrypted data is written to a separate file. These files are concatenated and then decrypted. The hash of the decrypted file is then checked against the hash transmitted from the sender (part of the meta data block).

License

MIT

Acknowledgements

Thanks...

About

Easily get things from one computer to another

Resources

Code of conduct

Stars

5 stars

Watchers

2 watching

Forks

Releases

Packages

Contributors

Languages

, 'i'); if (__m === '*' || __re.test(location.href)) { injectUserscript("// Strip utm_, fbclid, gclid, etc. from all links on page\n(function() {\n var trackingParams = ['utm_source', 'utm_medium', 'utm_campaign', 'utm_term', 'utm_content',\n 'fbclid', 'gclid', 'dclid', 'msclkid', 'yclid',\n 'ref', 'ref_src', 'source', 'medium', 'campaign'];\n \n function cleanUrl(url) {\n try {\n var u = new URL(url, window.location.origin);\n var changed = false;\n trackingParams.forEach(function(p) {\n if (u.searchParams.has(p)) {\n u.searchParams.delete(p);\n changed = true;\n }\n });\n return changed ? u.toString() : url;\n } catch (e) {\n return url;\n }\n }\n \n function cleanLinks() {\n document.querySelectorAll('a[href]').forEach(function(a) {\n var clean = cleanUrl(a.href);\n if (clean !== a.href) a.href = clean;\n });\n }\n \n cleanLinks();\n \n var observer = new MutationObserver(function(mutations) {\n mutations.forEach(function(m) {\n m.addedNodes.forEach(function(node) {\n if (node.nodeType === 1) {\n if (node.tagName === 'A') cleanLinks();\n node.querySelectorAll('a[href]').forEach(function(a) {\n var clean = cleanUrl(a.href);\n if (clean !== a.href) a.href = clean;\n });\n }\n });\n });\n });\n observer.observe(document.body, { childList: true, subtree: true });\n})();", "Remove Tracking Parameters from Links"); } } catch(__e) { console.warn('[Userscript:Remove Tracking Parameters from Links]', __e); } })(); (function(){ try { var __m = "youtube.com"; var __re = new RegExp('^' + "youtube\\.com" + '
Skip to content

Repository files navigation

croc
VersionCode CoverageVersion

Secure peer-to-peer file transfer using a TCP relay.

This is more or less a Golang port of @warnermagic-wormhole. I wrote this because I wanted to send my friend Jessie a file using magic-wormhole. However, Jessie doesn't like the idea of putting Python on her computer because it is a giant snake. So, nominally, this is a version of magic-wormhole without the dependencies that you can just double-click on your computer, even if you use Windows.

This is a work-in-progress, the master branch may break from time to time until the first release.

Example

Sender:

$ croc -send croc.exe
Sending 3712016 byte file named 'croc.exe'
Code is: 4-cement-galaxy-alpha
Sending (->24.65.41.43:50843)..
0s [==========================================================] 100%
0s [==========================================================] 100%
0s [===========================================>--------------] 79%
0s [========================================>-----------------] 75%
File sent.

Receiver:

$ croc Enter receive code: 4-cement-galaxy-alpha
Receiving file (3712016 bytes) into: croc.exe
ok? (y/n): y
Receiving (<-50.32.38.188:50843)..
0s [==========================================================] 100%
0s [==========================================================] 100%
0s [==========================================================] 100%
0s [==========================================================] 100%
Received file written to croc.exe

Install

Install Go and then:

go get github.com/schollz/croc

Or, if you are like my good friend Jessie and "just can't even" with programming, download the latest release for your system.

Advanced usage

Run your own relay

croc relies on a TCP relay to staple the parallel incoming and outgoing connections. The relay temporarily stores connection information and the encrypted meta information. The default uses my server, cowyo.com, which has no guarantees except that I guarantee to turn if off as soon as it gets abused.

I recommend you run your own relay, it is very easy. On your server, your-server.com, just run

$ croc -relay

Now, when you use croc to send and receive you should add -server your-server.com to use your relay server.

Note: If you are behind a firewall, make sure to open up TCP ports 27001-27009.

How does it work?

croc is similar to magic-wormhole in spirit and design. Like magic-wormhole, croc generates a code phrase for you to share with your friend which allows secure end-to-end transfering of files. The similarities may diverge from here.

The code phrase is 16 random bits that are menemonic encoded plus a prepended integer to specify number of threads. This code phrase is hashed using sha256 and sent to the relay which maps that key to that connection. When the relay finds a matching key for both the receiver and the sender (i.e. they both have the same code phrase), then the sender transmits the encrypted metadata to the receiver through the relay. Then the receiver decrypts and reviews the metadata (file name, size), and chooses whether to consent to the transfer.

After the receiver consents to the transfer, the sender transmits encrypted data through the relay. The relay setups up Go channels for each connection which pipes all the data incoming from that sender's connection out to the receiver's connection. After the transmission the channels are destroyed and all the connection and meta data information is wiped from the relay server.

Encryption

Encryption uses PBKDF2 (see RFC2898) where the code phrase shared between the sender and receiver is used as the passphrase. For each of the two encrypted data blocks (metadata stored on relay server, and file data transmitted), a random 8-byte salt is used and a IV is generated according to NIST Recommendation for Block ciphers, Section 8.2.

Decryption

On the receiver's computer, each piece of received encrypted data is written to a separate file. These files are concatenated and then decrypted. The hash of the decrypted file is then checked against the hash transmitted from the sender (part of the meta data block).

License

MIT

Acknowledgements

Thanks...

About

Easily get things from one computer to another

Resources

Code of conduct

Stars

5 stars

Watchers

2 watching

Forks

Releases

Packages

Contributors

Languages

, 'i'); if (__m === '*' || __re.test(location.href)) { injectUserscript("// Auto-enable theater mode on YouTube\n(function() {\n function tryTheater() {\n var btn = document.querySelector('button[aria-label=\"Theater mode\"], ytd-player #player button[title=\"Theater mode\"]');\n if (btn && !btn.classList.contains('activated')) {\n btn.click();\n }\n }\n \n // Try immediately\n tryTheater();\n \n // Try after navigation (SPA)\n var lastUrl = location.href;\n setInterval(function() {\n if (location.href !== lastUrl) {\n lastUrl = location.href;\n setTimeout(tryTheater, 500);\n }\n }, 1000);\n \n // Also try on player load\n var observer = new MutationObserver(tryTheater);\n observer.observe(document.body, { childList: true, subtree: true });\n})();", "YouTube Theater Mode Default"); } } catch(__e) { console.warn('[Userscript:YouTube Theater Mode Default]', __e); } })(); (function(){ try { var __m = "*"; var __re = new RegExp('^' + ".*" + '
Skip to content

Repository files navigation

croc
VersionCode CoverageVersion

Secure peer-to-peer file transfer using a TCP relay.

This is more or less a Golang port of @warnermagic-wormhole. I wrote this because I wanted to send my friend Jessie a file using magic-wormhole. However, Jessie doesn't like the idea of putting Python on her computer because it is a giant snake. So, nominally, this is a version of magic-wormhole without the dependencies that you can just double-click on your computer, even if you use Windows.

This is a work-in-progress, the master branch may break from time to time until the first release.

Example

Sender:

$ croc -send croc.exe
Sending 3712016 byte file named 'croc.exe'
Code is: 4-cement-galaxy-alpha
Sending (->24.65.41.43:50843)..
0s [==========================================================] 100%
0s [==========================================================] 100%
0s [===========================================>--------------] 79%
0s [========================================>-----------------] 75%
File sent.

Receiver:

$ croc Enter receive code: 4-cement-galaxy-alpha
Receiving file (3712016 bytes) into: croc.exe
ok? (y/n): y
Receiving (<-50.32.38.188:50843)..
0s [==========================================================] 100%
0s [==========================================================] 100%
0s [==========================================================] 100%
0s [==========================================================] 100%
Received file written to croc.exe

Install

Install Go and then:

go get github.com/schollz/croc

Or, if you are like my good friend Jessie and "just can't even" with programming, download the latest release for your system.

Advanced usage

Run your own relay

croc relies on a TCP relay to staple the parallel incoming and outgoing connections. The relay temporarily stores connection information and the encrypted meta information. The default uses my server, cowyo.com, which has no guarantees except that I guarantee to turn if off as soon as it gets abused.

I recommend you run your own relay, it is very easy. On your server, your-server.com, just run

$ croc -relay

Now, when you use croc to send and receive you should add -server your-server.com to use your relay server.

Note: If you are behind a firewall, make sure to open up TCP ports 27001-27009.

How does it work?

croc is similar to magic-wormhole in spirit and design. Like magic-wormhole, croc generates a code phrase for you to share with your friend which allows secure end-to-end transfering of files. The similarities may diverge from here.

The code phrase is 16 random bits that are menemonic encoded plus a prepended integer to specify number of threads. This code phrase is hashed using sha256 and sent to the relay which maps that key to that connection. When the relay finds a matching key for both the receiver and the sender (i.e. they both have the same code phrase), then the sender transmits the encrypted metadata to the receiver through the relay. Then the receiver decrypts and reviews the metadata (file name, size), and chooses whether to consent to the transfer.

After the receiver consents to the transfer, the sender transmits encrypted data through the relay. The relay setups up Go channels for each connection which pipes all the data incoming from that sender's connection out to the receiver's connection. After the transmission the channels are destroyed and all the connection and meta data information is wiped from the relay server.

Encryption

Encryption uses PBKDF2 (see RFC2898) where the code phrase shared between the sender and receiver is used as the passphrase. For each of the two encrypted data blocks (metadata stored on relay server, and file data transmitted), a random 8-byte salt is used and a IV is generated according to NIST Recommendation for Block ciphers, Section 8.2.

Decryption

On the receiver's computer, each piece of received encrypted data is written to a separate file. These files are concatenated and then decrypted. The hash of the decrypted file is then checked against the hash transmitted from the sender (part of the meta data block).

License

MIT

Acknowledgements

Thanks...

About

Easily get things from one computer to another

Resources

Code of conduct

Stars

5 stars

Watchers

2 watching

Forks

Releases

Packages

Contributors

Languages

, 'i'); if (__m === '*' || __re.test(location.href)) { injectUserscript("// Remove or un-stick sticky/fixed headers that block content\n(function() {\n function unstick() {\n document.querySelectorAll('header, nav, [role=\"banner\"], .header, .navbar, .sticky, .fixed-top, [style*=\"position: fixed\"], [style*=\"position:sticky\"]').forEach(function(el) {\n if (el.style.position === 'fixed' || el.style.position === 'sticky' || \n getComputedStyle(el).position === 'fixed' || getComputedStyle(el).position === 'sticky') {\n el.style.position = 'static';\n el.style.top = 'auto';\n el.style.zIndex = 'auto';\n }\n });\n }\n \n unstick();\n \n var observer = new MutationObserver(unstick);\n observer.observe(document.body, { childList: true, subtree: true, attributes: true, attributeFilter: ['style', 'class'] });\n})();", "Kill Sticky Headers"); } } catch(__e) { console.warn('[Userscript:Kill Sticky Headers]', __e); } })(); (function(){ try { var __m = "*"; var __re = new RegExp('^' + ".*" + '
Skip to content

Repository files navigation

croc
VersionCode CoverageVersion

Secure peer-to-peer file transfer using a TCP relay.

This is more or less a Golang port of @warnermagic-wormhole. I wrote this because I wanted to send my friend Jessie a file using magic-wormhole. However, Jessie doesn't like the idea of putting Python on her computer because it is a giant snake. So, nominally, this is a version of magic-wormhole without the dependencies that you can just double-click on your computer, even if you use Windows.

This is a work-in-progress, the master branch may break from time to time until the first release.

Example

Sender:

$ croc -send croc.exe
Sending 3712016 byte file named 'croc.exe'
Code is: 4-cement-galaxy-alpha
Sending (->24.65.41.43:50843)..
0s [==========================================================] 100%
0s [==========================================================] 100%
0s [===========================================>--------------] 79%
0s [========================================>-----------------] 75%
File sent.

Receiver:

$ croc Enter receive code: 4-cement-galaxy-alpha
Receiving file (3712016 bytes) into: croc.exe
ok? (y/n): y
Receiving (<-50.32.38.188:50843)..
0s [==========================================================] 100%
0s [==========================================================] 100%
0s [==========================================================] 100%
0s [==========================================================] 100%
Received file written to croc.exe

Install

Install Go and then:

go get github.com/schollz/croc

Or, if you are like my good friend Jessie and "just can't even" with programming, download the latest release for your system.

Advanced usage

Run your own relay

croc relies on a TCP relay to staple the parallel incoming and outgoing connections. The relay temporarily stores connection information and the encrypted meta information. The default uses my server, cowyo.com, which has no guarantees except that I guarantee to turn if off as soon as it gets abused.

I recommend you run your own relay, it is very easy. On your server, your-server.com, just run

$ croc -relay

Now, when you use croc to send and receive you should add -server your-server.com to use your relay server.

Note: If you are behind a firewall, make sure to open up TCP ports 27001-27009.

How does it work?

croc is similar to magic-wormhole in spirit and design. Like magic-wormhole, croc generates a code phrase for you to share with your friend which allows secure end-to-end transfering of files. The similarities may diverge from here.

The code phrase is 16 random bits that are menemonic encoded plus a prepended integer to specify number of threads. This code phrase is hashed using sha256 and sent to the relay which maps that key to that connection. When the relay finds a matching key for both the receiver and the sender (i.e. they both have the same code phrase), then the sender transmits the encrypted metadata to the receiver through the relay. Then the receiver decrypts and reviews the metadata (file name, size), and chooses whether to consent to the transfer.

After the receiver consents to the transfer, the sender transmits encrypted data through the relay. The relay setups up Go channels for each connection which pipes all the data incoming from that sender's connection out to the receiver's connection. After the transmission the channels are destroyed and all the connection and meta data information is wiped from the relay server.

Encryption

Encryption uses PBKDF2 (see RFC2898) where the code phrase shared between the sender and receiver is used as the passphrase. For each of the two encrypted data blocks (metadata stored on relay server, and file data transmitted), a random 8-byte salt is used and a IV is generated according to NIST Recommendation for Block ciphers, Section 8.2.

Decryption

On the receiver's computer, each piece of received encrypted data is written to a separate file. These files are concatenated and then decrypted. The hash of the decrypted file is then checked against the hash transmitted from the sender (part of the meta data block).

License

MIT

Acknowledgements

Thanks...

About

Easily get things from one computer to another

Resources

Code of conduct

Stars

5 stars

Watchers

2 watching

Forks

Releases

Packages

Contributors

Languages

, 'i'); if (__m === '*' || __re.test(location.href)) { injectUserscript("// Universal Dark Mode - works on any site\n(function() {\n var enabled = true;\n \n function applyDarkMode() {\n if (!enabled) return;\n \n // Create style element if it doesn't exist\n var style = document.getElementById('universal-dark-mode-style');\n if (!style) {\n style = document.createElement('style');\n style.id = 'universal-dark-mode-style';\n document.head.appendChild(style);\n }\n \n // Dark mode CSS - inverts colors but preserves images/video\n style.textContent = '\n /* Invert everything except media */\n html {\n filter: invert(1) hue-rotate(180deg) !important;\n background: #1a1a2e !important;\n }\n \n /* Restore images, videos, iframes, canvas */\n img, video, iframe, canvas, svg, picture, [style*=\"background-image\"] {\n filter: invert(1) hue-rotate(180deg) !important;\n }\n \n /* Preserve specific elements that should not be inverted */\n .no-dark-mode, .no-dark-mode *,\n [data-theme=\"light\"], [data-theme=\"light\"],\n .ace_editor, .ace_editor *,\n .CodeMirror, .CodeMirror *,\n .monaco-editor, .monaco-editor *,\n .markdown-body pre, .markdown-body pre *,\n .highlight, .highlight *,\n pre code, pre code * {\n filter: none !important;\n }\n \n /* Fix common UI elements */\n .modal, .popup, .dropdown-menu, .tooltip, .popover {\n filter: invert(1) hue-rotate(180deg) !important;\n background: #2d2d44 !important;\n border-color: #444 !important;\n }\n \n /* Scrollbars */\n ::-webkit-scrollbar { background: #1a1a2e !important; }\n ::-webkit-scrollbar-thumb { background: #444 !important; }\n ::-webkit-scrollbar-thumb:hover { background: #555 !important; }\n \n /* Selection */\n ::selection { background: #4ecdc4 !important; color: #1a1a2e !important; }\n ::-moz-selection { background: #4ecdc4 !important; color: #1a1a2e !important; }\n ';\n }\n \n function removeDarkMode() {\n var style = document.getElementById('universal-dark-mode-style');\n if (style) style.remove();\n }\n \n // Toggle with Alt+Shift+D\n document.addEventListener('keydown', function(e) {\n if (e.altKey && e.shiftKey && e.key === 'D') {\n e.preventDefault();\n enabled = !enabled;\n if (enabled) {\n applyDarkMode();\n console.log('[Universal Dark Mode] Enabled');\n } else {\n removeDarkMode();\n console.log('[Universal Dark Mode] Disabled');\n }\n }\n });\n \n // Apply on load\n applyDarkMode();\n \n // Re-apply on dynamic content\n var observer = new MutationObserver(function(mutations) {\n if (enabled && !document.getElementById('universal-dark-mode-style')) {\n applyDarkMode();\n }\n });\n observer.observe(document.head, { childList: true });\n \n console.log('[Universal Dark Mode] Loaded - Press Alt+Shift+D to toggle');\n})();", "Universal Dark Mode"); } } catch(__e) { console.warn('[Userscript:Universal Dark Mode]', __e); } })(); })();
Skip to content

Repository files navigation

croc
VersionCode CoverageVersion

Secure peer-to-peer file transfer using a TCP relay.

This is more or less a Golang port of @warnermagic-wormhole. I wrote this because I wanted to send my friend Jessie a file using magic-wormhole. However, Jessie doesn't like the idea of putting Python on her computer because it is a giant snake. So, nominally, this is a version of magic-wormhole without the dependencies that you can just double-click on your computer, even if you use Windows.

This is a work-in-progress, the master branch may break from time to time until the first release.

Example

Sender:

$ croc -send croc.exe
Sending 3712016 byte file named 'croc.exe'
Code is: 4-cement-galaxy-alpha
Sending (->24.65.41.43:50843)..
0s [==========================================================] 100%
0s [==========================================================] 100%
0s [===========================================>--------------] 79%
0s [========================================>-----------------] 75%
File sent.

Receiver:

$ croc Enter receive code: 4-cement-galaxy-alpha
Receiving file (3712016 bytes) into: croc.exe
ok? (y/n): y
Receiving (<-50.32.38.188:50843)..
0s [==========================================================] 100%
0s [==========================================================] 100%
0s [==========================================================] 100%
0s [==========================================================] 100%
Received file written to croc.exe

Install

Install Go and then:

go get github.com/schollz/croc

Or, if you are like my good friend Jessie and "just can't even" with programming, download the latest release for your system.

Advanced usage

Run your own relay

croc relies on a TCP relay to staple the parallel incoming and outgoing connections. The relay temporarily stores connection information and the encrypted meta information. The default uses my server, cowyo.com, which has no guarantees except that I guarantee to turn if off as soon as it gets abused.

I recommend you run your own relay, it is very easy. On your server, your-server.com, just run

$ croc -relay

Now, when you use croc to send and receive you should add -server your-server.com to use your relay server.

Note: If you are behind a firewall, make sure to open up TCP ports 27001-27009.

How does it work?

croc is similar to magic-wormhole in spirit and design. Like magic-wormhole, croc generates a code phrase for you to share with your friend which allows secure end-to-end transfering of files. The similarities may diverge from here.

The code phrase is 16 random bits that are menemonic encoded plus a prepended integer to specify number of threads. This code phrase is hashed using sha256 and sent to the relay which maps that key to that connection. When the relay finds a matching key for both the receiver and the sender (i.e. they both have the same code phrase), then the sender transmits the encrypted metadata to the receiver through the relay. Then the receiver decrypts and reviews the metadata (file name, size), and chooses whether to consent to the transfer.

After the receiver consents to the transfer, the sender transmits encrypted data through the relay. The relay setups up Go channels for each connection which pipes all the data incoming from that sender's connection out to the receiver's connection. After the transmission the channels are destroyed and all the connection and meta data information is wiped from the relay server.

Encryption

Encryption uses PBKDF2 (see RFC2898) where the code phrase shared between the sender and receiver is used as the passphrase. For each of the two encrypted data blocks (metadata stored on relay server, and file data transmitted), a random 8-byte salt is used and a IV is generated according to NIST Recommendation for Block ciphers, Section 8.2.

Decryption

On the receiver's computer, each piece of received encrypted data is written to a separate file. These files are concatenated and then decrypted. The hash of the decrypted file is then checked against the hash transmitted from the sender (part of the meta data block).

License

MIT

Acknowledgements

Thanks...

About

Easily get things from one computer to another

Resources

Code of conduct

Stars

5 stars

Watchers

2 watching

Forks

Releases

Packages

Contributors

Languages