Commit Graph

22 Commits

Author SHA1 Message Date
Hiroki Noda
8357e57346 Add support for storing code model to LLVM module IR
This patch avoids undefined behavior by linking different object files.
Also this would it could be propagated properly to LTO.

See https://reviews.llvm.org/D52322 and https://reviews.llvm.org/D52323.

This patch is based on https://github.com/rust-lang/rust/pull/74002
2021-03-12 11:02:25 +09:00
Nikita Popov
bc96516a28 Mark pure asm as willreturn 2021-03-01 23:35:35 +01:00
Nikita Popov
1d280b012d Don't directly expose coverage::CounterMappingRegion via FFI
The definition of this struct changes in LLVM 12 due to the addition
of branch coverage support. To avoid future mismatches, declare our
own struct and then convert between them.
2021-03-01 23:35:35 +01:00
Nikita Popov
55f345f325 Support LLVM 12 in rustc 2021-02-28 10:19:44 +01:00
Tri Vo
c7d9bffe76 HWASan support 2021-02-07 23:48:58 -08:00
Hugues de Valon
ce9818f2b7 Add a new ABI to support cmse_nonsecure_call
This commit adds a new ABI to be selected via `extern
"C-cmse-nonsecure-call"` on function pointers in order for the compiler to
apply the corresponding cmse_nonsecure_call callsite attribute.
For Armv8-M targets supporting TrustZone-M, this will perform a
non-secure function call by saving, clearing and calling a non-secure
function pointer using the BLXNS instruction.

See the page on the unstable book for details.

Signed-off-by: Hugues de Valon <hugues.devalon@arm.com>
2021-02-02 13:04:31 +00:00
Erik Desjardins
cd25807223 Use probe-stack=inline-asm in LLVM 11+ 2021-01-14 22:49:16 -05:00
Josh Stone
0342fd16ff Remove the unused context from CreateDebugLocation
This went unused in commit 88d874de63, part of #68965.
2021-01-13 11:55:49 -08:00
Andrew Sun
bc4c5bac40 Use LLVMGetHostCPUFeatures instead of stdsimd 2021-01-07 23:25:19 -05:00
David Wood
341aa97adb
llvm: update ffi bindings for split dwarf
This commit modifies the FFI bindings to LLVM required for Split DWARF
support in rustc. In particular:

- `addPassesToEmitFile`'s wrapper, `LLVMRustWriteOutputFile` now takes
  a `DwoPath` `const char*`. When disabled, `nullptr` should be provided
  which will preserve existing behaviour. When enabled, the path to the
  `.dwo` file should be provided.
- `createCompileUnit`'s wrapper, `LLVMRustDIBuilderCreateCompileUnit`
  now has two additional arguments, for the `DWOId` and to enable
  `SplitDebugInlining`. `DWOId` should always be zero.
- `createTargetMachine`'s wrapper, `LLVMRustCreateTargetMachine` has an
  additional argument which should be provided the path to the `.dwo`
  when enabled.

Signed-off-by: David Wood <david@davidtw.co>
2020-12-16 10:31:42 +00:00
Rich Kadel
5d5dc4c9d8 Updated links to LLVM 11 docs and types 2020-11-23 19:15:10 -08:00
Rich Kadel
1d8c381c01 Upgrades the coverage map to Version 4
Changes the coverage map injected into binaries compiled with
`-Zinstrument-coverage` to LLVM Coverage Mapping Format, Version 4 (from
Version 3). Note, binaries compiled with this version will require LLVM
tools from at least LLVM Version 11.
2020-11-23 15:14:47 -08:00
Mara Bos
52405f7c0c
Rollup merge of #77950 - arlosi:sha256, r=eddyb
Add support for SHA256 source file hashing

Adds support for `-Z src-hash-algorithm sha256`, which became available in LLVM 11.

Using an older version of LLVM will cause an error `invalid checksum kind` if the hash algorithm is set to sha256.

r? `@eddyb`
cc #70401 `@est31`
2020-11-03 19:32:26 +01:00
Eduard-Mihai Burtescu
88d874de63 rustc_codegen_llvm: avoid converting between DILocation and Value. 2020-10-21 04:43:57 +03:00
Eduard-Mihai Burtescu
fa2b381ec8 rustc_codegen_llvm: move DISubprogram creation to a dbg_scope_fn method. 2020-10-21 04:43:57 +03:00
Arlo Siemsen
3296d5ca7b Add support for SHA256 source file hashing for LLVM 11+. 2020-10-14 15:09:51 -07:00
bors
c71248b708 Auto merge of #76859 - Aaron1011:fix/llvm-cgu-reuse, r=davidtwco,nikic
Use llvm::computeLTOCacheKey to determine post-ThinLTO CGU reuse

During incremental ThinLTO compilation, we attempt to re-use the
optimized (post-ThinLTO) bitcode file for a module if it is 'safe' to do
so.

Up until now, 'safe' has meant that the set of modules that our current
modules imports from/exports to is unchanged from the previous
compilation session. See PR #67020 and PR #71131 for more details.

However, this turns out be insufficient to guarantee that it's safe
to reuse the post-LTO module (i.e. that optimizing the pre-LTO module
would produce the same result). When LLVM optimizes a module during
ThinLTO, it may look at other information from the 'module index', such
as whether a (non-imported!) global variable is used. If this
information changes between compilation runs, we may end up re-using an
optimized module that (for example) had dead-code elimination run on a
function that is now used by another module.

Fortunately, LLVM implements its own ThinLTO module cache, which is used
when ThinLTO is performed by a linker plugin (e.g. when clang is used to
compile a C proect). Using this cache directly would require extensive
refactoring of our code - but fortunately for us, LLVM provides a
function that does exactly what we need.

The function `llvm::computeLTOCacheKey` is used to compute a SHA-1 hash
from all data that might influence the result of ThinLTO on a module.
In addition to the module imports/exports that we manually track, it
also hashes information about global variables (e.g. their liveness)
which might be used during optimization. By using this function, we
shouldn't have to worry about new LLVM passes breaking our module re-use
behavior.

In LLVM, the output of this function forms part of the filename used to
store the post-ThinLTO module. To keep our current filename structure
intact, this PR just writes out the mapping 'CGU name -> Hash' to a
file. To determine if a post-LTO module should be reused, we compare
hashes from the previous session.

This should unblock PR #75199 - by sheer chance, it seems to have hit
this issue due to the particular CGU partitioning and optimization
decisions that end up getting made.
2020-10-11 20:50:02 +00:00
Hugues de Valon
d255d70e7a Update LLVM and add Unsupported diagnostic
Secure entry functions do not support if arguments are passed on the
stack. An "unsupported" diagnostic will be emitted by LLVM if that is
the case.
This commits adds support in Rust for that diagnostic so that an error
will be output if that is the case!

Signed-off-by: Hugues de Valon <hugues.devalon@arm.com>
2020-09-30 14:57:37 +01:00
Mateusz Mikuła
5de2c95e6e Remove MMX from Rust 2020-09-20 15:13:11 +02:00
Aaron Hill
cfe07cd42a
Use llvm::computeLTOCacheKey to determine post-ThinLTO CGU reuse
During incremental ThinLTO compilation, we attempt to re-use the
optimized (post-ThinLTO) bitcode file for a module if it is 'safe' to do
so.

Up until now, 'safe' has meant that the set of modules that our current
modules imports from/exports to is unchanged from the previous
compilation session. See PR #67020 and PR #71131 for more details.

However, this turns out be insufficient to guarantee that it's safe
to reuse the post-LTO module (i.e. that optimizing the pre-LTO module
would produce the same result). When LLVM optimizes a module during
ThinLTO, it may look at other information from the 'module index', such
as whether a (non-imported!) global variable is used. If this
information changes between compilation runs, we may end up re-using an
optimized module that (for example) had dead-code elimination run on a
function that is now used by another module.

Fortunately, LLVM implements its own ThinLTO module cache, which is used
when ThinLTO is performed by a linker plugin (e.g. when clang is used to
compile a C proect). Using this cache directly would require extensive
refactoring of our code - but fortunately for us, LLVM provides a
function that does exactly what we need.

The function `llvm::computeLTOCacheKey` is used to compute a SHA-1 hash
from all data that might influence the result of ThinLTO on a module.
In addition to the module imports/exports that we manually track, it
also hashes information about global variables (e.g. their liveness)
which might be used during optimization. By using this function, we
shouldn't have to worry about new LLVM passes breaking our module re-use
behavior.

In LLVM, the output of this function forms part of the filename used to
store the post-ThinLTO module. To keep our current filename structure
intact, this PR just writes out the mapping 'CGU name -> Hash' to a
file. To determine if a post-LTO module should be reused, we compare
hashes from the previous session.

This should unblock PR #75199 - by sheer chance, it seems to have hit
this issue due to the particular CGU partitioning and optimization
decisions that end up getting made.
2020-09-17 22:04:13 -04:00
Vadim Petrochenkov
10d3f8a484 Move rustllvm into rustc_llvm 2020-09-09 23:05:43 +03:00
mark
9e5f7d5631 mv compiler to compiler/ 2020-08-30 18:45:07 +03:00