LLVM 1.3 Release Notes
  1. Introduction
  2. What's New?
  3. Installation Instructions
  4. Portability and Supported Platforms
  5. Known Problems
  6. Additional Information

Written by the LLVM team

Introduction

This document contains the release notes for the LLVM compiler infrastructure, release 1.3. Here we describe the status of LLVM, including any known problems and bug fixes from the previous release. The most up-to-date version of this document can be found on the LLVM 1.3 web site. If you are not reading this on the LLVM web pages, you should probably go there because this document may be updated after the release.

For more information about LLVM, including information about potentially more current releases, please check out the main web site. If you have questions or comments, the LLVM developer's mailing list is a good place to send them.

Note that if you are reading this file from CVS, this document applies to the next release, not the current one. To see the release notes for the current or previous releases, see the releases page.

What's New?

This is the fourth public release of the LLVM compiler infrastructure. This release primarily improves the performance of the code produced by all aspects of the LLVM compiler and adds some new features, though it does fix a few bugs as well.

At this time, LLVM is known to correctly compile and run all C & C++ SPEC CPU2000 benchmarks, the Olden benchmarks, and the Ptrdist benchmarks. It has also been used to compile many other programs. LLVM now also works with a broad variety of C++ programs, though it has still received less testing than the C front-end.

This release implements the following new features:
  1. The LLVM select instruction is now fully implemented and supported by all transformations, native code generators, and the interpreter.
  2. Bugpoint can now narrow down code-generation bugs to a loop nest, where before it could only narrow them down to a function being miscompiled.
  3. Bugpoint can now debug arbitrary modes of llc and lli, by passing them command line flags (e.g., -regalloc=linearscan, -enable-correct-eh-support, etc.)
  4. The Control Flow Graph in the native code generators is no longer constrained to be the same as the CFG for the LLVM input code.
  5. The LLVM induction variable analysis routines have been rewritten.
  6. LLVM now has new loop unrolling and loop unswitching passes.
  7. The induction variable substitution pass performs linear function test replacement and exit value replacement optimizations.
  8. The LLVM Bytecode file format is now documented.
  9. LLVM now has first-class support for Accurate Garbage Collection, enabling the use of aggressive copying and generational collectors.
  10. LLVM now includes an implementation of Andersen's interprocedural alias analysis algorithm.
  11. Bugpoint can extract individual basic blocks to track down reduce miscompilation testcases.
In this release, the following missing features were implemented:
  1. LLVM cannot handle structures with more than 256 elements
  2. [bugpoint] External functions used in non-instruction entities, such as global constant initializer
  3. Stacker does not handle targets with 64-bit pointers.
  4. Bugpoint doesn't support uses of external fns by immediate constant exprs
In this release, the following Quality of Implementation issues were fixed:
  1. LLVM tools will happily spew bytecode onto your terminal
  2. [llvmgcc] type names are not emitted for structure typedefs
  3. All documentation is now conformant to the HTML 4.01 (Strict) level.
In this release, the following build problems were fixed:
  1. Minor configure bugs with -disable/enable-povray and -disable-spec
  2. shell scripts output by gccld don't work if you change PATH
This release includes the following Code Quality improvements:
  1. Fixed: [vmcore] Code quality problem due to long operand of getelementptr
  2. The X86 backend now generates substantially better code for 64-bit integer and floating point operations.
  3. The -inline pass no longer inlines mutually recursive functions until it hits the inlining threshold.
  4. The -inline pass no longer misses obvious inlining opportunities just because the callee eventually calls into an external function.
  5. The -simplifycfg pass can now "if convert" simple statements into the new select instruction.
  6. The -loopsimplify pass can now break natural loops with multiple backedges into multiple nested loops. This enables a variety of subsequent optimizations.
  7. The -adce pass can now eliminate calls to functions that do not not write to memory.
  8. The link-time optimizer now runs the -prune-eh pass (to remove unused exception handlers).
  9. The -simplifycfg pass can now eliminate simple correlated branches (such as "if (A < B && A < B)", and can turn short-circuiting operators into the strict versions when useful (such as "if (A < B || A > C)" into "if (A < B | A > C)"
  10. LLVM now has infrastructure for (simple and sparse conditional) constant propagation of function calls. It currently supports a few math library functions like sqrt/sin/cos/etc.
In this release, the following bugs in the previous release were fixed:

Bugs in the LLVM Core:

  1. [vmcore] Linker causes erroneous asssertion
  2. [loopsimplify] Loop simplify incorrectly updates dominator information
  3. [tailduplicate] DemoteRegToStack breaks SSA form
  4. [X86] JIT miscompiles unsigned short to floating point cast
  5. [adce] Crash handling unreachable code that unwinds
  6. [sparc] LLC can't emit 2 functions of the same name, both having constant pools
  7. [livevar] Live variables missed physical register use of aliased definition
  8. Verifier misses malformed switch instruction

Bugs in the C/C++ front-end:

  1. [llvmgcc] Crash on use of undeclared enum type
  2. [llvmgcc] Variable length array indexing miscompiled
Portability and Supported Platforms

LLVM has been extensively tested on Intel and AMD machines running Red Hat Linux. It has also been tested under FreeBSD, and on Sun UltraSPARC workstations running Solaris 8. Additionally, LLVM works on Mac OS X 10.3 and above, but only with the C backend and interpreter; no native machine-code generator for the PowerPC is available yet.

The core LLVM infrastructure uses GNU autoconf to adapt itself to the machine and operating system on which it is built. However, minor porting may be required to get LLVM to work on new platforms. We welcome your portability patches and reports of successful builds or error messages.

In this release, the following portability problems were fixed:
  1. warnings compiling Stacker compiler on Mac OS X
  2. Archive file reader doesn't understand abbreviated names in headers
Known Problems

This section contains all known problems with the LLVM system, listed by component. As new problems are discovered, they will be added to these sections. If you run into a problem, please check the LLVM bug database and submit a bug if there isn't already one.

Experimental features included with this release

The following components of this LLVM release are either untested, known to be broken or unreliable, or are in early development. These components should not be relied on, and bugs should not be filed against them, but they may be useful to some people. In particular, if you would like to work on one of these components, please contact us on the llvmdev list.

Known problems with the LLVM Core
Known problems with the C front-end
Bugs
Notes

If you run into GCC extensions which have not been included in any of these lists, please let us know (also including whether or not they work).

Known problems with the C++ front-end

For this release, the C++ front-end is considered to be fully functional but has not been tested as thoroughly as the C front-end. It has been tested and works for a number of non-trivial programs, but there may be lurking bugs. Please report any bugs or problems.

Bugs
Notes
Known problems with the X86 back-end
Known problems with the Sparc back-end
Known problems with the C back-end
Additional Information

A wide variety of additional information is available on the LLVM web page, including mailing lists and publications describing algorithms and components implemented in LLVM. The web page also contains versions of the API documentation which is up-to-date with the CVS version of the source code. You can access versions of these documents specific to this release by going into the "llvm/doc/" directory in the LLVM tree.

If you have any questions or comments about LLVM, please feel free to contact us via the mailing lists.


Valid CSS! Valid HTML 4.01! The LLVM Compiler Infrastructure
Last modified: $Date$