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path: root/llvm/lib/Target/SystemZ/SystemZConstantPoolValue.cpp
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* Update the file headers across all of the LLVM projects in the monorepoChandler Carruth2019-01-191-4/+3
| | | | | | | | | | | | | | | | | to reflect the new license. We understand that people may be surprised that we're moving the header entirely to discuss the new license. We checked this carefully with the Foundation's lawyer and we believe this is the correct approach. Essentially, all code in the project is now made available by the LLVM project under our new license, so you will see that the license headers include that license only. Some of our contributors have contributed code under our old license, and accordingly, we have retained a copy of our old license notice in the top-level files in each project and repository. llvm-svn: 351636
* Drop prelink support.Rafael Espindola2015-11-171-15/+0
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | The way prelink used to work was * The compiler decides if a given section only has relocations that are know to point to the same DSO. If so, it names it .data.rel.ro.local<something>. * The static linker puts all of these together. * The prelinker program assigns addresses to each library and resolves the local relocations. There are many problems with this: * It is incompatible with address space randomization. * The information passed by the compiler is redundant. The linker knows if a given relocation is in the same DSO or not. If could sort by that if so desired. * There are newer ways of speeding up DSO (gnu hash for example). * Even if we want to implement this again in the compiler, the previous implementation is pretty broken. It talks about relocations that are "resolved by the static linker". If they are resolved, there are none left for the prelinker. What one needs to track is if an expression will require only dynamic relocations that point to the same DSO. At this point it looks like the prelinker is an historical curiosity. For example, fedora has retired it because it failed to build for two releases (http://pkgs.fedoraproject.org/cgit/prelink.git/commit/?id=eb43100a8331d91c801ee3dcdb0a0bb9babfdc1f) This patch removes support for it. That is, it stops printing the ".local" sections. llvm-svn: 253280
* [SystemZ] Support all TLS access models - CodeGen partUlrich Weigand2015-02-181-0/+5
| | | | | | | | | | | | | | | | | | | | | | The current SystemZ back-end only supports the local-exec TLS access model. This patch adds all required CodeGen support for the other TLS models, which means in particular: - Expand initial-exec TLS accesses by loading TLS offsets from the GOT using @indntpoff relocations. - Expand general-dynamic and local-dynamic accesses by generating the appropriate calls to __tls_get_offset. Note that this routine has a non-standard ABI and requires loading the GOT pointer into %r12, so the patch also adds support for the GLOBAL_OFFSET_TABLE ISD node. - Add a new platform-specific optimization pass to remove redundant __tls_get_offset calls in the local-dynamic model (modeled after the corresponding X86 pass). - Add test cases verifying all access models and optimizations. llvm-svn: 229654
* [SystemZ] Use "auto" for cast resultsRichard Sandiford2014-03-061-1/+1
| | | | | | No functional change intended. llvm-svn: 203106
* Replace some unnecessary vector copies with references.Benjamin Kramer2013-09-151-1/+1
| | | | llvm-svn: 190770
* [SystemZ] Add back endUlrich Weigand2013-05-061-0/+62
This adds the actual lib/Target/SystemZ target files necessary to implement the SystemZ target. Note that at this point, the target cannot yet be built since the configure bits are missing. Those will be provided shortly by a follow-on patch. This version of the patch incorporates feedback from reviews by Chris Lattner and Anton Korobeynikov. Thanks to all reviewers! Patch by Richard Sandiford. llvm-svn: 181203
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