Ádám Kallai f75973949b
[BOLT][AArch64] Add support for SPE brstack format (#129231)
Since Linux 6.14, Perf gained the ability to report SPE branch events
using the `brstack` format, which matches the layout of LBR/BRBE.

This patch reuses the existing LBR parsing logic to support SPE.

Example SPE brstack format:
```bash
perf script -i perf.data -F pid,brstack --itrace=bl
```
```
  PID       FROM / TO / PREDICTED

16984  0x72e342e5f4/0x72e36192d0/M/-/-/11/RET/-
16984  0x72e7b8b3b4/0x72e7b8b3b8/PN/-/-/11/COND/-
16984  0x72e7b92b48/0x72e7b92b4c/PN/-/-/8/COND/-
16984  0x72eacc6b7c/0x760cc94b00/P/-/-/9/RET/-
16984  0x72e3f210fc/0x72e3f21068/P/-/-/4//-
16984  0x72e39b8c5c/0x72e3627b24/P/-/-/4//-
16984  0x72e7b89d20/0x72e7b92bbc/P/-/-/4/RET/-
```

SPE brstack flags can be two characters long: `PN` or `MN`:
- `P` = predicted branch
- `M` = mispredicted branch
- `N` = optionally appears when the branch is NOT-TAKEN
    - flag is relevant only to  conditional branches


Example of usage with BOLT:

1. Capture SPE branch events:
```bash
perf record -e 'arm_spe_0/branch_filter=1/u' -- binary
```

2. Convert profile for BOLT:
```bash
perf2bolt -p perf.data -o perf.fdata --spe binary
```

3. Run BOLT Optimization:
```bash
llvm-bolt binary -o binary.bolted --data   perf.fdata ...
```

A unit test verifies the parsing of the 'SPE brstack format'.

---------

Co-authored-by: Paschalis Mpeis <paschalis.mpeis@arm.com>
2025-06-20 10:40:35 +01:00
2025-06-18 09:36:36 -04:00
2025-01-28 19:48:43 -08:00
2025-04-14 16:54:14 +08:00

The LLVM Compiler Infrastructure

OpenSSF Scorecard OpenSSF Best Practices libc++

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.
Readme 5.3 GiB
Languages
LLVM 42%
C++ 30.8%
C 13%
Assembly 9.5%
MLIR 1.4%
Other 2.9%