llvm-3.2 3.2-2ubuntu5~precise1 source package in Ubuntu

Changelog

llvm-3.2 (3.2-2ubuntu5~precise1) precise-proposed; urgency=low

  * Copy to precise. (LP: #1177679)
  * Drop dh-exec build-depends, not available on precise, and unused.
  * Only build i386 and amd64.
 -- Maarten Lankhorst <email address hidden>   Wed, 08 May 2013 08:57:17 +0200

Upload details

Uploaded by:
Maarten Lankhorst
Sponsored by:
Timo Aaltonen
Uploaded to:
Precise
Original maintainer:
Ubuntu Developers
Architectures:
amd64 i386 all
Section:
devel
Urgency:
Low Urgency

See full publishing history Publishing

Series Pocket Published Component Section
Precise updates main devel

Builds

Precise: [FULLYBUILT] amd64 [FULLYBUILT] i386

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File Size SHA-256 Checksum
llvm-3.2_3.2.orig.tar.bz2 9.0 MiB f4d31cf624f9a18093fcce3c4e6eb64c3d989597b663e80743be514af5f2e6ac
llvm-3.2_3.2-2ubuntu5~precise1.debian.tar.gz 187.6 KiB ccf100bc3b6094b878989b6443bf7c8b4b7056fdf7c448971e920864ea227bf7
llvm-3.2_3.2-2ubuntu5~precise1.dsc 2.7 KiB 182b9f99021abcc85154eff414082bf56a2e64babcccc8cf8de82bb2cdd9b2a9

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Binary packages built by this source

libllvm-3.2-ocaml-dev: Low-Level Virtual Machine (LLVM), bindings for OCaml

 The Low-Level Virtual Machine (LLVM) is a collection of libraries and
 tools that make it easy to build compilers, optimizers, Just-In-Time
 code generators, and many other compiler-related programs. LLVM
 uses a single, language-independent virtual instruction set both
 as an offline code representation (to communicate code between
 compiler phases and to run-time systems) and as the compiler internal
 representation (to analyze and transform programs). This persistent
 code representation allows a common set of sophisticated compiler
 techniques to be applied at compile-time, link-time, install-time,
 run-time, or "idle-time" (between program runs).
 .
 This package provides the OCaml bindings to develop applications using llvm.

libllvm3.2: Low-Level Virtual Machine (LLVM), runtime library

 The Low-Level Virtual Machine (LLVM) is a collection of libraries and
 tools that make it easy to build compilers, optimizers, Just-In-Time
 code generators, and many other compiler-related programs.
 .
 This package contains the LLVM runtime library.

libllvm3.2-dbg: Low-Level Virtual Machine (LLVM), debugging symbols library

 The Low-Level Virtual Machine (LLVM) is a collection of libraries and
 tools that make it easy to build compilers, optimizers, Just-In-Time
 code generators, and many other compiler-related programs.
 .
 This package contains the LLVM runtime library debug symbols.

llvm-3.2: Low-Level Virtual Machine (LLVM)

 The Low-Level Virtual Machine (LLVM) is a collection of libraries and
 tools that make it easy to build compilers, optimizers, Just-In-Time
 code generators, and many other compiler-related programs. LLVM
 uses a single, language-independent virtual instruction set both
 as an offline code representation (to communicate code between
 compiler phases and to run-time systems) and as the compiler internal
 representation (to analyze and transform programs). This persistent
 code representation allows a common set of sophisticated compiler
 techniques to be applied at compile-time, link-time, install-time,
 run-time, or "idle-time" (between program runs).
 .
 The strengths of the LLVM infrastructure are its extremely
 simple design (which makes it easy to understand and use),
 source-language independence, powerful mid-level optimizer, automated
 compiler debugging support, extensibility, and its stability and
 reliability. LLVM is currently being used to host a wide variety of
 academic research projects and commercial projects. LLVM includes C
 and C++ front-ends, a front-end for a Forth-like language (Stacker),
 a young scheme front-end, and Java support is in development. LLVM can
 generate code for X86, SparcV9, PowerPC, or it can emit C code.
 .
 LLVM is the key component of the clang compiler and the gcc plugin called
 dragonegg.

llvm-3.2-dev: Low-Level Virtual Machine (LLVM), libraries and headers

 The Low-Level Virtual Machine (LLVM) is a collection of libraries and
 tools that make it easy to build compilers, optimizers, Just-In-Time
 code generators, and many other compiler-related programs. LLVM
 uses a single, language-independent virtual instruction set both
 as an offline code representation (to communicate code between
 compiler phases and to run-time systems) and as the compiler internal
 representation (to analyze and transform programs). This persistent
 code representation allows a common set of sophisticated compiler
 techniques to be applied at compile-time, link-time, install-time,
 run-time, or "idle-time" (between program runs).
 .
 This package provides the libraries and headers to develop applications
 using llvm.

llvm-3.2-doc: Low-Level Virtual Machine (LLVM), documentation

 The Low-Level Virtual Machine (LLVM) is a collection of libraries and
 tools that make it easy to build compilers, optimizers, Just-In-Time
 code generators, and many other compiler-related programs. LLVM
 uses a single, language-independent virtual instruction set both
 as an offline code representation (to communicate code between
 compiler phases and to run-time systems) and as the compiler internal
 representation (to analyze and transform programs). This persistent
 code representation allows a common set of sophisticated compiler
 techniques to be applied at compile-time, link-time, install-time,
 run-time, or "idle-time" (between program runs).
 .
 This package contains all documentation (extensive).

llvm-3.2-examples: Low-Level Virtual Machine (LLVM), examples

 The Low-Level Virtual Machine (LLVM) is a collection of libraries and
 tools that make it easy to build compilers, optimizers, Just-In-Time
 code generators, and many other compiler-related programs. LLVM
 uses a single, language-independent virtual instruction set both
 as an offline code representation (to communicate code between
 compiler phases and to run-time systems) and as the compiler internal
 representation (to analyze and transform programs). This persistent
 code representation allows a common set of sophisticated compiler
 techniques to be applied at compile-time, link-time, install-time,
 run-time, or "idle-time" (between program runs).
 .
 This package contains examples for using LLVM, both in developing
 extensions to LLVM and in using it to compile code.

llvm-3.2-runtime: Low-Level Virtual Machine (LLVM), bytecode interpreter

 The Low-Level Virtual Machine (LLVM) is a collection of libraries and
 tools that make it easy to build compilers, optimizers, Just-In-Time
 code generators, and many other compiler-related programs. LLVM
 uses a single, language-independent virtual instruction set both
 as an offline code representation (to communicate code between
 compiler phases and to run-time systems) and as the compiler internal
 representation (to analyze and transform programs). This persistent
 code representation allows a common set of sophisticated compiler
 techniques to be applied at compile-time, link-time, install-time,
 run-time, or "idle-time" (between program runs).
 .
 This package provides the minimal required to execute programs in LLVM
 format.

llvm-3.2-source: Low-Level Virtual Machine (LLVM), source code

 The Low-Level Virtual Machine (LLVM) is a collection of libraries and
 tools that make it easy to build compilers, optimizers, Just-In-Time
 code generators, and many other compiler-related programs. LLVM
 uses a single, language-independent virtual instruction set both
 as an offline code representation (to communicate code between
 compiler phases and to run-time systems) and as the compiler internal
 representation (to analyze and transform programs). This persistent
 code representation allows a common set of sophisticated compiler
 techniques to be applied at compile-time, link-time, install-time,
 run-time, or "idle-time" (between program runs).
 .
 This package contains the llvm source code.