Commit Graph

7 Commits

Author SHA1 Message Date
Alex Crichton
870024a160 Disallow LTO with a preference to dynamic linking
Closes #11154
2013-12-31 11:48:47 -08:00
Patrick Walton
f62faa89ed librustc: De-@mut outputs in the session 2013-12-26 15:54:37 -08:00
Steven Fackler
c7cf5dc270 Method-ify CStore 2013-12-25 21:50:36 -07:00
Alex Crichton
64faafba19 rustc: Optimize reading metadata by 4x
We were previously reading metadata via `ar p`, but as learned from rustdoc
awhile back, spawning a process to do something is pretty slow. Turns out LLVM
has an Archive class to read archives, but it cannot write archives.

This commits adds bindings to the read-only version of the LLVM archive class
(with a new type that only has a read() method), and then it uses this class
when reading the metadata out of rlibs. When you put this in tandem of not
compressing the metadata, reading the metadata is 4x faster than it used to be
The timings I got for reading metadata from the respective libraries was:

    libstd-04ff901e-0.9-pre.dylib    => 100ms
    libstd-04ff901e-0.9-pre.rlib     => 23ms
    librustuv-7945354c-0.9-pre.dylib => 4ms
    librustuv-7945354c-0.9-pre.rlib  => 1ms
    librustc-5b94a16f-0.9-pre.dylib  => 87ms
    librustc-5b94a16f-0.9-pre.rlib   => 35ms
    libextra-a6ebb16f-0.9-pre.dylib  => 63ms
    libextra-a6ebb16f-0.9-pre.rlib   => 15ms
    libsyntax-2e4c0458-0.9-pre.dylib => 86ms
    libsyntax-2e4c0458-0.9-pre.rlib  => 22ms

In order to always take advantage of these faster metadata read-times, I sort
the files in filesearch based on whether they have an rlib extension or not
(prefer all rlib files first).

Overall, this halved the compile time for a `fn main() {}` crate from 0.185s to
0.095s on my system (when preferring dynamic linking). Reading metadata is still
the slowest pass of the compiler at 0.035s, but it's getting pretty close to
linking at 0.021s! The next best optimization is to just not copy the metadata
from LLVM because that's the most expensive part of reading metadata right now.
2013-12-19 23:34:32 -08:00
Huon Wilson
164f7a290e std::vec: convert to(_mut)_ptr to as_... methods on &[] and &mut []. 2013-12-15 23:37:41 +11:00
Alex Crichton
667d114f47 Disable all unwinding on -Z no-landing-pads LTO
When performing LTO, the rust compiler has an opportunity to completely strip
all landing pads in all dependent libraries. I've modified the LTO pass to
recognize the -Z no-landing-pads option when also running an LTO pass to flag
everything in LLVM as nothrow. I've verified that this prevents any and all
invoke instructions from being emitted.

I believe that this is one of our best options for moving forward with
accomodating use-cases where unwinding doesn't really make sense. This will
allow libraries to be built with landing pads by default but allow usage of them
in contexts where landing pads aren't necessary.

cc #10780
2013-12-11 09:18:20 -08:00
Alex Crichton
fce4a174b9 Implement LTO
This commit implements LTO for rust leveraging LLVM's passes. What this means
is:

* When compiling an rlib, in addition to insdering foo.o into the archive, also
  insert foo.bc (the LLVM bytecode) of the optimized module.

* When the compiler detects the -Z lto option, it will attempt to perform LTO on
  a staticlib or binary output. The compiler will emit an error if a dylib or
  rlib output is being generated.

* The actual act of performing LTO is as follows:

    1. Force all upstream libraries to have an rlib version available.
    2. Load the bytecode of each upstream library from the rlib.
    3. Link all this bytecode into the current LLVM module (just using llvm
       apis)
    4. Run an internalization pass which internalizes all symbols except those
       found reachable for the local crate of compilation.
    5. Run the LLVM LTO pass manager over this entire module

    6a. If assembling an archive, then add all upstream rlibs into the output
        archive. This ignores all of the object/bitcode/metadata files rust
        generated and placed inside the rlibs.
    6b. If linking a binary, create copies of all upstream rlibs, remove the
        rust-generated object-file, and then link everything as usual.

As I have explained in #10741, this process is excruciatingly slow, so this is
*not* turned on by default, and it is also why I have decided to hide it behind
a -Z flag for now. The good news is that the binary sizes are about as small as
they can be as a result of LTO, so it's definitely working.

Closes #10741
Closes #10740
2013-12-09 14:41:49 -08:00