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Alexander Scheel e58f3816a4
Start counting ACME certificate issuance as client activity (#20520)
* Add stub ACME billing interfaces

Signed-off-by: Alexander Scheel <alex.scheel@hashicorp.com>

* Add initial implementation of client count

Signed-off-by: Alexander Scheel <alex.scheel@hashicorp.com>

* Correctly attribute to mount, namespace

Signed-off-by: Alexander Scheel <alex.scheel@hashicorp.com>

* Refactor adding entities of custom types

This begins to add custom types of events; presently these are counted
as non-entity tokens, but prefixed with a custom ClientID prefix.

In the future, this will be the basis for counting these events
separately (into separate buckets and separate storage segments).

Signed-off-by: Alexander Scheel <alex.scheel@hashicorp.com>

* Refactor creation of ACME mounts

Signed-off-by: Alexander Scheel <alex.scheel@hashicorp.com>

* Add test case for billing

Signed-off-by: Alexander Scheel <alex.scheel@hashicorp.com>

* Better support managed key system view casting

Without an additional parameter, SystemView could be of a different
internal implementation type that cannot be directly casted to in OSS.
Use a separate parameter for the managed key system view to use instead.

Signed-off-by: Alexander Scheel <alex.scheel@hashicorp.com>

* Refactor creation of mounts for enterprise

Signed-off-by: Alexander Scheel <alex.scheel@hashicorp.com>

* Validate mounts in ACME billing tests

Signed-off-by: Alexander Scheel <alex.scheel@hashicorp.com>

* Use a hopefully unique separator for encoded identifiers

Signed-off-by: Alexander Scheel <alex.scheel@hashicorp.com>

* Use mount accesor, not path

Co-authored-by: miagilepner <mia.epner@hashicorp.com>
Signed-off-by: Alexander Scheel <alex.scheel@hashicorp.com>

* Rename AddEventToFragment->AddActivityToFragment

Co-authored-by: Mike Palmiotto <mike.palmiotto@hashicorp.com>
Signed-off-by: Alexander Scheel <alex.scheel@hashicorp.com>

---------

Signed-off-by: Alexander Scheel <alex.scheel@hashicorp.com>
Co-authored-by: miagilepner <mia.epner@hashicorp.com>
Co-authored-by: Mike Palmiotto <mike.palmiotto@hashicorp.com>
2023-05-17 16:12:04 +00:00
.github VAULT-15547 First pass at agent/proxy decoupling (#20548) 2023-05-17 09:38:34 -04:00
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audit add ns path to granting_policies (#20522) 2023-05-04 15:08:22 -07:00
builtin Start counting ACME certificate issuance as client activity (#20520) 2023-05-17 16:12:04 +00:00
changelog VAULT-15547 First pass at agent/proxy decoupling (#20548) 2023-05-17 09:38:34 -04:00
command VAULT-15547 First pass at agent/proxy decoupling (#20548) 2023-05-17 09:38:34 -04:00
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enos test: use correct pool allocation for spot strategy (#20593) 2023-05-16 14:00:20 -06:00
helper VAULT-15547 First pass at agent/proxy decoupling (#20548) 2023-05-17 09:38:34 -04:00
http Convert seal.Access struct into a interface (OSS) (#20510) 2023-05-04 14:22:30 -04:00
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ui fixes command not found: export when running yarn start and updates caniuse-lite (#20610) 2023-05-16 15:48:49 -06:00
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website Fixed a typo in the "Environment Variable Example" because it was generating a parsing error (#20574) 2023-05-12 22:34:51 +00:00
.copywrite.hcl VAULT-13614 Support SCRAM-SHA-256 encrypted passwords for PostgreSQL (#19616) 2023-03-21 12:12:53 -07:00
.gitattributes Packagespec v0.1.2/master (#9995) 2020-09-28 13:53:39 +01:00
.gitignore [QT-525] enos: use spot instances for Vault targets (#20037) 2023-04-13 15:44:43 -04:00
.go-version Bump Go to 1.20.4 for Vault 1.14.0 (#20615) 2023-05-17 14:30:04 +01:00
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README.md

Vault CircleCI vault enterprise


Please note: We take Vault's security and our users' trust very seriously. If you believe you have found a security issue in Vault, please responsibly disclose by contacting us at security@hashicorp.com.


Vault Logo

Vault is a tool for securely accessing secrets. A secret is anything that you want to tightly control access to, such as API keys, passwords, certificates, and more. Vault provides a unified interface to any secret, while providing tight access control and recording a detailed audit log.

A modern system requires access to a multitude of secrets: database credentials, API keys for external services, credentials for service-oriented architecture communication, etc. Understanding who is accessing what secrets is already very difficult and platform-specific. Adding on key rolling, secure storage, and detailed audit logs is almost impossible without a custom solution. This is where Vault steps in.

The key features of Vault are:

  • Secure Secret Storage: Arbitrary key/value secrets can be stored in Vault. Vault encrypts these secrets prior to writing them to persistent storage, so gaining access to the raw storage isn't enough to access your secrets. Vault can write to disk, Consul, and more.

  • Dynamic Secrets: Vault can generate secrets on-demand for some systems, such as AWS or SQL databases. For example, when an application needs to access an S3 bucket, it asks Vault for credentials, and Vault will generate an AWS keypair with valid permissions on demand. After creating these dynamic secrets, Vault will also automatically revoke them after the lease is up.

  • Data Encryption: Vault can encrypt and decrypt data without storing it. This allows security teams to define encryption parameters and developers to store encrypted data in a location such as a SQL database without having to design their own encryption methods.

  • Leasing and Renewal: All secrets in Vault have a lease associated with them. At the end of the lease, Vault will automatically revoke that secret. Clients are able to renew leases via built-in renew APIs.

  • Revocation: Vault has built-in support for secret revocation. Vault can revoke not only single secrets, but a tree of secrets, for example, all secrets read by a specific user, or all secrets of a particular type. Revocation assists in key rolling as well as locking down systems in the case of an intrusion.

Documentation, Getting Started, and Certification Exams

Documentation is available on the Vault website.

If you're new to Vault and want to get started with security automation, please check out our Getting Started guides on HashiCorp's learning platform. There are also additional guides to continue your learning.

For examples of how to interact with Vault from inside your application in different programming languages, see the vault-examples repo. An out-of-the-box sample application is also available.

Show off your Vault knowledge by passing a certification exam. Visit the certification page for information about exams and find study materials on HashiCorp's learning platform.

Developing Vault

If you wish to work on Vault itself or any of its built-in systems, you'll first need Go installed on your machine.

For local dev first make sure Go is properly installed, including setting up a GOPATH. Ensure that $GOPATH/bin is in your path as some distributions bundle the old version of build tools. Next, clone this repository. Vault uses Go Modules, so it is recommended that you clone the repository outside of the GOPATH. You can then download any required build tools by bootstrapping your environment:

$ make bootstrap
...

To compile a development version of Vault, run make or make dev. This will put the Vault binary in the bin and $GOPATH/bin folders:

$ make dev
...
$ bin/vault
...

To compile a development version of Vault with the UI, run make static-dist dev-ui. This will put the Vault binary in the bin and $GOPATH/bin folders:

$ make static-dist dev-ui
...
$ bin/vault
...

To run tests, type make test. Note: this requires Docker to be installed. If this exits with exit status 0, then everything is working!

$ make test
...

If you're developing a specific package, you can run tests for just that package by specifying the TEST variable. For example below, only vault package tests will be run.

$ make test TEST=./vault
...

Importing Vault

This repository publishes two libraries that may be imported by other projects: github.com/hashicorp/vault/api and github.com/hashicorp/vault/sdk.

Note that this repository also contains Vault (the product), and as with most Go projects, Vault uses Go modules to manage its dependencies. The mechanism to do that is the go.mod file. As it happens, the presence of that file also makes it theoretically possible to import Vault as a dependency into other projects. Some other projects have made a practice of doing so in order to take advantage of testing tooling that was developed for testing Vault itself. This is not, and has never been, a supported way to use the Vault project. We aren't likely to fix bugs relating to failure to import github.com/hashicorp/vault into your project.

Acceptance Tests

Vault has comprehensive acceptance tests covering most of the features of the secret and auth methods.

If you're working on a feature of a secret or auth method and want to verify it is functioning (and also hasn't broken anything else), we recommend running the acceptance tests.

Warning: The acceptance tests create/destroy/modify real resources, which may incur real costs in some cases. In the presence of a bug, it is technically possible that broken backends could leave dangling data behind. Therefore, please run the acceptance tests at your own risk. At the very least, we recommend running them in their own private account for whatever backend you're testing.

To run the acceptance tests, invoke make testacc:

$ make testacc TEST=./builtin/logical/consul
...

The TEST variable is required, and you should specify the folder where the backend is. The TESTARGS variable is recommended to filter down to a specific resource to test, since testing all of them at once can sometimes take a very long time.

Acceptance tests typically require other environment variables to be set for things such as access keys. The test itself should error early and tell you what to set, so it is not documented here.

For more information on Vault Enterprise features, visit the Vault Enterprise site.