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@ServerlessBot
ServerlessBot / IAMCredentials.json
Last active February 24, 2025 15:51
Minimum credential set for Serverless Framework
{
"Statement": [
{
"Action": [
"apigateway:*",
"cloudformation:CancelUpdateStack",
"cloudformation:ContinueUpdateRollback",
"cloudformation:CreateChangeSet",
"cloudformation:CreateStack",
"cloudformation:CreateUploadBucket",
@Akiyamka
Akiyamka / blend-mode-polyfill.js
Created November 9, 2018 10:13
blend-mode-polyfill
/**
* @author Boggddan <github.com/boggddan>
* Запускается в браузерах которые не поддерживают свойство background-blend-mode.
* Полифил применяется к тегам помеченым атрибутом `data-background-blend-mode` в свойтвах которого нужно передать режим смешивания.
* Поддерживается: normal, multiply, lighten, screen, darken. (протестировано в IE 11)
* @example: <div data-background-blend-mode="multiply"></div>
*/
/* Element.prepend polyfill for IE 11 */
function prependPolyfill() {
@Spaider
Spaider / envelope_encryption_kms_boto_pycrypto.md
Last active December 12, 2023 23:59 — forked from pmp/envelope_encryption_kms_boto_pycrypto.md
Envelope Encryption using AWS KMS, Python Boto, and PyCrypto.

If you use Amazon AWS for nearly anything, then you are probably familiar with KMS, the Amazon Key Management Service.

KMS is a service which allows API-level access to cryptographic primitives without the expense and complexity of a full-fledged HSM or CloudHSM implementation. There are trade-offs in that the key material does reside on servers rather than tamper-proof devices, but these risks should be acceptable to a wide range of customers based on the care Amazon has put into the product. You should perform your own diligence on whether KMS is appropriate for your environment. If the security profile is not adequate, you should consider a stronger product such as CloudHSM or managing your own HSM solutions.

The goal here is to provide some introductory code on how to perform envelope encrypt a message using the AWS KMS API.

KMS allows you to encrypt messages of up to 4kb in size directly using the encrypt()/decrypt() API. To exceed these limitations, you must use a technique called "envelope encryptio

@jboner
jboner / latency.txt
Last active July 2, 2025 06:46
Latency Numbers Every Programmer Should Know
Latency Comparison Numbers (~2012)
----------------------------------
L1 cache reference 0.5 ns
Branch mispredict 5 ns
L2 cache reference 7 ns 14x L1 cache
Mutex lock/unlock 25 ns
Main memory reference 100 ns 20x L2 cache, 200x L1 cache
Compress 1K bytes with Zippy 3,000 ns 3 us
Send 1K bytes over 1 Gbps network 10,000 ns 10 us
Read 4K randomly from SSD* 150,000 ns 150 us ~1GB/sec SSD