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Sean Silva 0aa97ad5c8 [mlir] Change generate-test-checks.py to %[[V:.*]] style
Summary:
This style seems to be the preferred style lately as it plays better
with op syntaxes that include `[` and `]`.

Input:
```
module {
  func @f(%arg0 : i32) -> i32 {
    %0 = addi %arg0, %arg0 : i32
    %1 = muli %arg0, %0 : i32
    return %1 : i32
  }
}
```

New output:

```
// NOTE: Assertions have been autogenerated by utils/generate-test-checks.py
// CHECK:       module {

// CHECK-LABEL:   func @f(
// CHECK-SAME:            %[[VAL_0:.*]] : i32) -> i32 {
// CHECK:           %[[VAL_1:.*]] = addi %[[VAL_0]], %[[VAL_0]] : i32
// CHECK:           %[[VAL_2:.*]] = muli %[[VAL_0]], %[[VAL_1]] : i32
// CHECK:           return %[[VAL_2]] : i32
// CHECK:         }
// CHECK:       }
```

Old output:
```
// NOTE: Assertions have been autogenerated by utils/generate-test-checks.py
// CHECK:       module {

// CHECK-LABEL:   func @f(
// CHECK-SAME:            [[VAL_0:%.*]] : i32) -> i32 {
// CHECK:           [[VAL_1:%.*]] = addi [[VAL_0]], [[VAL_0]] : i32
// CHECK:           [[VAL_2:%.*]] = muli [[VAL_0]], [[VAL_1]] : i32
// CHECK:           return [[VAL_2]] : i32
// CHECK:         }
// CHECK:       }
```

Differential Revision: https://reviews.llvm.org/D79836
2020-05-13 14:50:14 -07:00
clang Fix template class debug info for Visual Studio visualizers 2020-05-13 14:20:18 -07:00
clang-tools-extra [clangd] Add metrics for selection tree and recovery expressions. 2020-05-12 16:14:48 +02:00
compiler-rt Add shim for fork() on PS4 as it is not supported there. 2020-05-13 18:47:01 +00:00
debuginfo-tests Ensure that CMake tries to find Python3 before processing 2020-05-13 13:56:48 -07:00
flang [MLIR] Rename SideEffects.td -> SideEffectInterfaces.td 2020-05-12 12:21:42 -07:00
libc [libc] Call mtx_init in mtx_test. 2020-05-13 09:48:31 -07:00
libclc libclc: Pass system libraries to the linker after llvm libraries 2020-04-29 15:34:54 -07:00
libcxx [libc++] Explicitly list Lit features from the config_site header 2020-05-13 16:17:22 -04:00
libcxxabi [demangler] Fix demangling of enumerators with negative values 2020-05-13 14:32:08 -04:00
libunwind [libcxx][libcxxabi][libunwind] Use libgcc on Android 2020-04-30 15:42:32 -07:00
lld [lld][WebAssembly] Fix for --relocatable and signature mismatches 2020-05-13 10:27:09 -07:00
lldb [lldb/Reproducers] Add test-specific API to set the test CWD 2020-05-13 09:00:07 -07:00
llvm [Attributor] Use AAValueConstantRange to infer dereferencability. 2020-05-13 16:44:15 -05:00
mlir [mlir] Change generate-test-checks.py to %[[V:.*]] style 2020-05-13 14:50:14 -07:00
openmp [Openmp][VE] Libomptarget plugin for NEC SX-Aurora 2020-05-12 10:47:30 +02:00
parallel-libs
polly Make Polly tests dependencies explicit 2020-05-04 08:06:39 +02:00
pstl
utils/arcanist
.arcconfig
.arclint
.clang-format
.clang-tidy
.git-blame-ignore-revs
.gitignore
CONTRIBUTING.md
README.md

The LLVM Compiler Infrastructure

This directory and its sub-directories contain source code for LLVM, a toolkit for the construction of highly optimized compilers, optimizers, and run-time environments.

The README briefly describes how to get started with building LLVM. For more information on how to contribute to the LLVM project, please take a look at the Contributing to LLVM guide.

Getting Started with the LLVM System

Taken from https://llvm.org/docs/GettingStarted.html.

Overview

Welcome to the LLVM project!

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 converts it into object files. Tools include an assembler, disassembler, bitcode analyzer, and bitcode optimizer. It also contains basic regression tests.

C-like languages use the Clang front end. 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

The LLVM Getting Started documentation may be out of date. The Clang Getting Started page might have more accurate information.

This is an example work-flow and configuration to get and build the LLVM source:

  1. Checkout LLVM (including related sub-projects like Clang):

    • git clone https://github.com/llvm/llvm-project.git

    • Or, on windows, git clone --config core.autocrlf=false https://github.com/llvm/llvm-project.git

  2. Configure and build LLVM and Clang:

    • cd llvm-project

    • mkdir build

    • cd build

    • cmake -G <generator> [options] ../llvm

      Some common build system generators are:

      • Ninja --- for generating Ninja build files. Most llvm developers use Ninja.
      • Unix Makefiles --- for generating make-compatible parallel makefiles.
      • Visual Studio --- for generating Visual Studio projects and solutions.
      • Xcode --- for generating Xcode projects.

      Some Common options:

      • -DLLVM_ENABLE_PROJECTS='...' --- semicolon-separated list of the LLVM sub-projects you'd like to additionally build. Can include any of: clang, clang-tools-extra, libcxx, libcxxabi, libunwind, lldb, compiler-rt, lld, polly, or debuginfo-tests.

        For example, to build LLVM, Clang, libcxx, and libcxxabi, use -DLLVM_ENABLE_PROJECTS="clang;libcxx;libcxxabi".

      • -DCMAKE_INSTALL_PREFIX=directory --- Specify for directory the full path name of where you want the LLVM tools and libraries to be installed (default /usr/local).

      • -DCMAKE_BUILD_TYPE=type --- Valid options for type are Debug, Release, RelWithDebInfo, and MinSizeRel. Default is Debug.

      • -DLLVM_ENABLE_ASSERTIONS=On --- Compile with assertion checks enabled (default is Yes for Debug builds, No for all other build types).

    • cmake --build . [-- [options] <target>] or your build system specified above directly.

      • The default target (i.e. ninja or make) will build all of LLVM.

      • The check-all target (i.e. ninja check-all) will run the regression tests to ensure everything is in working order.

      • CMake will generate targets for each tool and library, and most LLVM sub-projects generate their own check-<project> target.

      • Running a serial build will be slow. To improve speed, try running a parallel build. That's done by default in Ninja; for make, use the option -j NNN, where NNN is the number of parallel jobs, e.g. the number of CPUs you have.

    • For more information see CMake

Consult the Getting Started with LLVM page for detailed information on configuring and compiling LLVM. You can visit Directory Layout to learn about the layout of the source code tree.