Maksim Panchenko 7063b22c63
[BOLT] Always place new PT_LOAD after existing ones (#182642)
Insert new PT_LOAD segments right after the last existing PT_LOAD in the
program header table, instead of before PT_DYNAMIC or at the end. This
maintains the ascending p_vaddr order required by the ELF specification.

Previously, new segments could end up breaking PT_LOAD p_vaddr order
when PT_LOAD segments followed PT_DYNAMIC or PT_GNU_STACK. This lead to
runtime loader incorrectly assessing dynamic object size and silently
corrupting memory.
2026-02-21 14:09:36 -08:00
2026-01-21 23:14:07 +01:00

The LLVM Compiler Infrastructure

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Welcome to the LLVM project!

This repository contains the source code for LLVM, a toolkit for the construction of highly optimized compilers, optimizers, and run-time environments.

The LLVM project has multiple components. The core of the project is itself called "LLVM". This contains all of the tools, libraries, and header files needed to process intermediate representations and convert them into object files. Tools include an assembler, disassembler, bitcode analyzer, and bitcode optimizer.

C-like languages use the Clang frontend. This component compiles C, C++, Objective-C, and Objective-C++ code into LLVM bitcode -- and from there into object files, using LLVM.

Other components include: the libc++ C++ standard library, the LLD linker, and more.

Getting the Source Code and Building LLVM

Consult the Getting Started with LLVM page for information on building and running LLVM.

For information on how to contribute to the LLVM project, please take a look at the Contributing to LLVM guide.

Getting in touch

Join the LLVM Discourse forums, Discord chat, LLVM Office Hours or Regular sync-ups.

The LLVM project has adopted a code of conduct for participants to all modes of communication within the project.

Description
The LLVM Project is a collection of modular and reusable compiler and toolchain technologies.
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