Commit Graph

11 Commits

Author SHA1 Message Date
Jez Ng 428a7c1b38 [lld-macho] Have ICF operate on all sections at once
ICF previously operated only within a given OutputSection. We would
merge all CFStrings first, then merge all regular code sections in a
second phase. This worked fine since CFStrings would never reference
regular `__text` sections. However, I would like to expand ICF to merge
functions that reference unwind info. Unwind info references the LSDA
section, which can in turn reference the `__text` section, so we cannot
perform ICF in phases.

In order to have ICF operate on InputSections spanning multiple
OutputSections, we need a way to distinguish InputSections that are
destined for different OutputSections, so that we don't fold across
section boundaries. We achieve this by creating OutputSections early,
and setting `InputSection::parent` to point to them. This is what
LLD-ELF does. (This change should also make it easier to implement the
`section$start$` symbols.)

This diff also folds InputSections w/o checking their flags, which I
think is the right behavior -- if they are destined for the same
OutputSection, they will have the same flags in the output (even if
their input flags differ). I.e. the `parent` pointer check subsumes the
`flags` check. In practice this has nearly no effect (ICF did not become
any more effective on chromium_framework).

I've also updated ICF.cpp's block comment to better reflect its current
status.

Reviewed By: #lld-macho, smeenai

Differential Revision: https://reviews.llvm.org/D105641
2021-07-17 13:42:51 -04:00
Jez Ng 0d6d35e63b [lld-macho] -section_rename should work on synthetic sections too
Previously, we only applied the renames to
ConcatOutputSections.

Reviewed By: #lld-macho, thakis

Differential Revision: https://reviews.llvm.org/D105079
2021-06-30 18:55:48 -04:00
Jez Ng 001ba65375 [lld-macho] De-templatize mach_header operations
@thakis pointed out that `mach_header` and `mach_header_64`
actually have the same set of (used) fields, with the 64-bit version
having extra padding. So we can access the fields we need using the
single `mach_header` type instead of using templates to switch between
the two.

I also spotted a potential issue where hasObjCSection tries to parse a
file w/o checking if it does indeed match the target arch... As such,
I've added a quick magic number check to ensure we don't access invalid
memory during `findCommand()`.

Addresses PR50180.

Reviewed By: #lld-macho, thakis

Differential Revision: https://reviews.llvm.org/D101724
2021-05-03 18:31:23 -04:00
Jez Ng 817d98d841 [lld-macho][nfc] Refactor in preparation for 32-bit support
The main challenge was handling the different on-disk structures (e.g.
`mach_header` vs `mach_header_64`). I tried to strike a balance between
sprinkling `target->wordSize == 8` checks everywhere (branchy = slow, and ugly)
and templatizing everything (causes code bloat, also ugly). I think I struck a
decent balance by judicious use of type erasure.

Note that LLD-ELF has a similar architecture, though it seems to use more templating.

Linking chromium_framework takes about the same time before and after this
change:

      N           Min           Max        Median           Avg        Stddev
  x  20          4.52          4.67         4.595        4.5945   0.044423204
  +  20           4.5          4.71         4.575         4.582   0.056344803
  No difference proven at 95.0% confidence

Reviewed By: #lld-macho, oontvoo

Differential Revision: https://reviews.llvm.org/D99633
2021-04-02 18:46:39 -04:00
Greg McGary 74b888baad [lld-macho][NFC] Minor refactor of Writer::run()
Move some functions closer to their uses. Move detailed address-assignment logic out of the otherwise abstract `Writer::run()`. This prepares the ground for a diff to implement branch range extension thunks.

* `SyntheticSections.cpp`
 ** move `needsBinding()` and `prepareBranchTarget()` into `Writer.cpp`
 ** move `addNonLazyBindingEntries()` adjacent to its use.

* `Writer.cpp`
 ** move address-assignment logic from `Writer::run()` into new function `Writer::assignAddresses()`
 ** move `needsBinding()` and `prepareBranchTarget()` from `SyntheticSections.cpp`

* `Target.h`
** remove orphaned decls of `prepareSymbolRelocation()` and `validateRelocationInfo()` which were moved to other files in earlier diffs.

Differential Revision: https://reviews.llvm.org/D98795
2021-03-17 15:13:43 -07:00
Jez Ng daaaed6bb8 [lld-macho] Fix TLV data initialization
We were mishandling the case where both `__tbss` and `__thread_data` sections were
present.

TLVP relocations should be encoded as offsets from the start of `__thread_data`,
even if the symbol is actually located in `__thread_bss`. Previously, we were
writing the offset from the start of the containing section, which doesn't
really make sense since there's no way `tlv_get_addr()` can know which section a
given `tlv$init` symbol is in at runtime.

In addition, this patch ensures that we place `__thread_data` immediately before
`__thread_bss`. This is what ld64 does, likely for performance reasons. Zerofill
sections must also be at the end of their segments; we were already doing this,
but now we ensure that `__thread_bss` occurs before `__bss`, so that it's always
possible to have it contiguous with `__thread_data`.

Fixes llvm.org/PR48657.

Reviewed By: #lld-macho, thakis

Differential Revision: https://reviews.llvm.org/D94329
2021-01-08 18:48:12 -05:00
Jez Ng 6f63216c3d [lld-macho] Extend SyntheticSections to cover all segment load commands
Previously, the special segments `__PAGEZERO` and `__LINKEDIT` were
implemented as special LoadCommands. This diff implements them using
special sections instead which have an `isHidden()` attribute. We do not
emit section headers for hidden sections, but we use their addresses and
file offsets to determine that of their containing segments. In addition
to allowing us to share more segment-related code, this refactor is also
important for the next step of emitting dylibs:

1) dylibs don't have segments like __PAGEZERO, so we need an easy way of
   omitting them w/o messing up segment indices
2) Unlike the kernel, which is happy to run an executable with
   out-of-order segments, dyld requires dylibs to have their segment
   load commands arranged in increasing address order. The refactor
   makes it easier to implement sorting of sections and segments.

Differential Revision: https://reviews.llvm.org/D76839
2020-04-27 12:58:12 -07:00
Jez Ng 060efd24c7 [lld-macho] Add basic support for linking against dylibs
This diff implements:

* dylib loading (much of which is being restored from @pcc and @ruiu's
  original work)
* The GOT_LOAD relocation, which allows us to load non-lazy dylib
  symbols
* Basic bind opcode emission, which tells `dyld` how to populate the GOT

Differential Revision: https://reviews.llvm.org/D76252
2020-04-21 13:43:19 -07:00
Fangrui Song 6acd300375 Reland D75382 "[lld] Initial commit for new Mach-O backend"
With a fix for http://lab.llvm.org:8011/builders/clang-cmake-armv8-lld/builds/3636

Also trims some unneeded dependencies.
2020-04-02 12:03:43 -07:00
Oliver Stannard af39151f3c Revert "[lld] Initial commit for new Mach-O backend"
This is causing buildbot failures on 32-bit hosts, for example:
http://lab.llvm.org:8011/builders/clang-cmake-armv8-lld/builds/3636

This reverts commit 03f43b3aca.
2020-04-02 13:23:30 +01:00
Jez Ng 03f43b3aca [lld] Initial commit for new Mach-O backend
Summary:
This is the first commit for the new Mach-O backend, designed to roughly
follow the architecture of the existing ELF and COFF backends, and
building off work that @ruiu and @pcc did in a branch a while back. Note
that this is a very stripped-down commit with the bare minimum of
functionality for ease of review. We'll be following up with more diffs
soon.

Currently, we're able to generate a simple "Hello World!" executable
that runs on OS X Catalina (and possibly on earlier OS X versions; I
haven't tested them). (This executable can be obtained by compiling
`test/MachO/relocations.s`.) We're mocking out a few load commands to
achieve this -- for example, we can't load dynamic libraries, but
Catalina requires binaries to be linked against `dyld`, so we hardcode
the emission of a `LC_LOAD_DYLIB` command. Other mocked out load
commands include LC_SYMTAB and LC_DYSYMTAB.

Differential Revision: https://reviews.llvm.org/D75382
2020-03-31 11:58:47 -07:00