Fix typographical errors in .md files found by cspell
Signed-off-by: Tom Cosgrove <tom.cosgrove@arm.com>
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## Reporting Vulneratibilities
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## Reporting Vulnerabilities
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If you think you have found an Mbed TLS security vulnerability, then please
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send an email to the security team at
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@ -800,7 +800,7 @@ than just the MFL configuration into account.
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### Relaxed semantics for PSK configuration
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This affects users which call the PSK configuration APIs
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`mbedtlsl_ssl_conf_psk()` and `mbedtls_ssl_conf_psk_opaque()`
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`mbedtls_ssl_conf_psk()` and `mbedtls_ssl_conf_psk_opaque()`
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multiple times on the same SSL configuration.
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In Mbed TLS 2.x, users would observe later calls overwriting
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@ -1,4 +1,4 @@
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PSA Cryptograpy API implementation and PSA driver interface
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PSA Cryptography API implementation and PSA driver interface
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===========================================================
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## Introduction
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@ -171,7 +171,7 @@ match a limitation of the PSA API.
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It is unclear what parameters people use in practice. It looks like by default
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OpenSSL picks saltlen = keylen - hashlen - 2 (tested with openssl 1.1.1f).
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The `certool` command provided by GnuTLS seems to be picking saltlen = hashlen
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The `certtool` command provided by GnuTLS seems to be picking saltlen = hashlen
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by default (tested with GnuTLS 3.6.13). FIPS 186-4 requires 0 <= saltlen <=
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hashlen.
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@ -42,9 +42,9 @@ are:
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- When `MBEDTLS_PSA_CRYPTO_C` is enabled and used, applications need to call
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`psa_crypto_init()` before TLS/X.509 uses PSA functions. (This prevents us
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from even enabling the option by default.)
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- `MBEDTLS_PSA_CRYPTO_C` has a hard depend on `MBEDTLS_ENTROPY_C ||
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- `MBEDTLS_PSA_CRYPTO_C` has a hard dependency on `MBEDTLS_ENTROPY_C ||
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MBEDTLS_PSA_CRYPTO_EXTERNAL_RNG` but it's
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currently possible to compilte TLS and X.509 without any of the options.
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currently possible to compile TLS and X.509 without any of the options.
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Also, we can't just auto-enable `MBEDTLS_ENTROPY_C` as it doesn't build
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out of the box on all platforms, and even less
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`MBEDTLS_PSA_CRYPTO_EXTERNAL_RNG` as it requires a user-provided RNG
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@ -241,7 +241,7 @@ The entry points that implement each step of a multi-part operation are grouped
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1. The core calls the `xxx_setup` entry point for this operation family. If this fails, the core destroys the operation context object without calling any other driver entry point on it.
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1. The core calls other entry points that manipulate the operation context object, respecting the constraints.
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1. If any entry point fails, the core calls the driver's `xxx_abort` entry point for this operation family, then destroys the operation context object without calling any other driver entry point on it.
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1. If a “finish” entry point fails, the core destroys the operation context object without calling any other driver entry point on it. The finish entry points are: *prefix*`_mac_sign_finish`, *prefix*`_mac_verify_finish`, *prefix*`_cipher_fnish`, *prefix*`_aead_finish`, *prefix*`_aead_verify`.
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1. If a “finish” entry point fails, the core destroys the operation context object without calling any other driver entry point on it. The finish entry points are: *prefix*`_mac_sign_finish`, *prefix*`_mac_verify_finish`, *prefix*`_cipher_finish`, *prefix*`_aead_finish`, *prefix*`_aead_verify`.
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If a driver implements a multi-part operation but not the corresponding single-part operation, the core calls the driver's multipart operation entry points to perform the single-part operation.
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@ -21,7 +21,7 @@ Python3 and Jinja2 rev 2.10.1
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### What's critical for a migrating user
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The Driver Wrapper auto generation project is designed to use a python templating library ( Jinja2 ) to render templates based on drivers that are defined using a Driver descrioption JSON file(s).
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The Driver Wrapper auto generation project is designed to use a python templating library ( Jinja2 ) to render templates based on drivers that are defined using a Driver description JSON file(s).
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While that is the larger goal, for version 1.0 here's what's changed
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@ -1,16 +1,16 @@
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README for git hooks script
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===========================
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git has a way to run scripts, which are invoked by specific git commands.
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The git hooks are located in `<mbed TLS root>/.git/hooks`, and as such are not under version control
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The git hooks are located in `<Mbed TLS root>/.git/hooks`, and as such are not under version control
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for more information, see the [git documentation](https://git-scm.com/docs/githooks).
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The mbed TLS git hooks are located in `<mbed TLS root>/tests/git-scripts` directory, and one must create a soft link from `<mbed TLS root>/.git/hooks` to `<mbed TLS root>/tesst/git-scripts`, in order to make the hook scripts successfully work.
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The Mbed TLS git hooks are located in `<Mbed TLS root>/tests/git-scripts` directory, and one must create a soft link from `<Mbed TLS root>/.git/hooks` to `<Mbed TLS root>/tests/git-scripts`, in order to make the hook scripts successfully work.
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Example:
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Execute the following command to create a link on linux from the mbed TLS `.git/hooks` directory:
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Execute the following command to create a link on Linux from the Mbed TLS `.git/hooks` directory:
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`ln -s ../../tests/git-scripts/pre-push.sh pre-push`
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**Note: Currently the mbed TLS git hooks work only on a GNU platform. If using a non-GNU platform, don't enable these hooks!**
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**Note: Currently the Mbed TLS git hooks work only on a GNU platform. If using a non-GNU platform, don't enable these hooks!**
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These scripts can also be used independently.
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