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Ulrich Weigand5f613df2013-05-06 16:15:19 +00001//===-- SystemZTargetMachine.cpp - Define TargetMachine for SystemZ -------===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9
10#include "SystemZTargetMachine.h"
11#include "llvm/CodeGen/Passes.h"
12#include "llvm/Support/TargetRegistry.h"
Richard Sandiford37cd6cf2013-08-23 10:27:02 +000013#include "llvm/Transforms/Scalar.h"
Aditya Nandakumara2719322014-11-13 09:26:31 +000014#include "llvm/CodeGen/TargetLoweringObjectFileImpl.h"
Ulrich Weigand5f613df2013-05-06 16:15:19 +000015
16using namespace llvm;
17
18extern "C" void LLVMInitializeSystemZTarget() {
19 // Register the target.
20 RegisterTargetMachine<SystemZTargetMachine> X(TheSystemZTarget);
21}
22
23SystemZTargetMachine::SystemZTargetMachine(const Target &T, StringRef TT,
24 StringRef CPU, StringRef FS,
25 const TargetOptions &Options,
Eric Christopherf1bd22d2014-07-01 20:18:59 +000026 Reloc::Model RM, CodeModel::Model CM,
Ulrich Weigand5f613df2013-05-06 16:15:19 +000027 CodeGenOpt::Level OL)
Eric Christopherf1bd22d2014-07-01 20:18:59 +000028 : LLVMTargetMachine(T, TT, CPU, FS, Options, RM, CM, OL),
Aditya Nandakumara2719322014-11-13 09:26:31 +000029 TLOF(make_unique<TargetLoweringObjectFileELF>()),
Eric Christopher52349952014-07-01 20:19:02 +000030 Subtarget(TT, CPU, FS, *this) {
Rafael Espindola227144c2013-05-13 01:16:13 +000031 initAsmInfo();
Ulrich Weigand5f613df2013-05-06 16:15:19 +000032}
33
Reid Kleckner357600e2014-11-20 23:37:18 +000034SystemZTargetMachine::~SystemZTargetMachine() {}
35
Ulrich Weigand5f613df2013-05-06 16:15:19 +000036namespace {
37/// SystemZ Code Generator Pass Configuration Options.
38class SystemZPassConfig : public TargetPassConfig {
39public:
40 SystemZPassConfig(SystemZTargetMachine *TM, PassManagerBase &PM)
41 : TargetPassConfig(TM, PM) {}
42
43 SystemZTargetMachine &getSystemZTargetMachine() const {
44 return getTM<SystemZTargetMachine>();
45 }
46
Richard Sandifordb4d67b52014-03-06 12:03:36 +000047 void addIRPasses() override;
48 bool addInstSelector() override;
Matthias Braun7e37a5f2014-12-11 21:26:47 +000049 void addPreSched2() override;
50 void addPreEmitPass() override;
Ulrich Weigand5f613df2013-05-06 16:15:19 +000051};
52} // end anonymous namespace
53
Richard Sandiford37cd6cf2013-08-23 10:27:02 +000054void SystemZPassConfig::addIRPasses() {
55 TargetPassConfig::addIRPasses();
Richard Sandiford37cd6cf2013-08-23 10:27:02 +000056}
57
Ulrich Weigand5f613df2013-05-06 16:15:19 +000058bool SystemZPassConfig::addInstSelector() {
59 addPass(createSystemZISelDag(getSystemZTargetMachine(), getOptLevel()));
60 return false;
61}
62
Matthias Braun7e37a5f2014-12-11 21:26:47 +000063void SystemZPassConfig::addPreSched2() {
Ulrich Weigand2c356f32014-06-05 14:20:10 +000064 if (getOptLevel() != CodeGenOpt::None &&
65 getSystemZTargetMachine().getSubtargetImpl()->hasLoadStoreOnCond())
Richard Sandifordf2404162013-07-25 09:11:15 +000066 addPass(&IfConverterID);
Richard Sandifordf2404162013-07-25 09:11:15 +000067}
68
Matthias Braun7e37a5f2014-12-11 21:26:47 +000069void SystemZPassConfig::addPreEmitPass() {
Richard Sandifordbdbb8af2013-08-05 10:58:53 +000070 // We eliminate comparisons here rather than earlier because some
71 // transformations can change the set of available CC values and we
72 // generally want those transformations to have priority. This is
73 // especially true in the commonest case where the result of the comparison
74 // is used by a single in-range branch instruction, since we will then
75 // be able to fuse the compare and the branch instead.
76 //
77 // For example, two-address NILF can sometimes be converted into
78 // three-address RISBLG. NILF produces a CC value that indicates whether
79 // the low word is zero, but RISBLG does not modify CC at all. On the
80 // other hand, 64-bit ANDs like NILL can sometimes be converted to RISBG.
81 // The CC value produced by NILL isn't useful for our purposes, but the
82 // value produced by RISBG can be used for any comparison with zero
83 // (not just equality). So there are some transformations that lose
84 // CC values (while still being worthwhile) and others that happen to make
85 // the CC result more useful than it was originally.
86 //
Richard Sandifordc2121252013-08-05 11:23:46 +000087 // Another reason is that we only want to use BRANCH ON COUNT in cases
88 // where we know that the count register is not going to be spilled.
89 //
Richard Sandifordbdbb8af2013-08-05 10:58:53 +000090 // Doing it so late makes it more likely that a register will be reused
91 // between the comparison and the branch, but it isn't clear whether
92 // preventing that would be a win or not.
93 if (getOptLevel() != CodeGenOpt::None)
Matthias Braun7e37a5f2014-12-11 21:26:47 +000094 addPass(createSystemZElimComparePass(getSystemZTargetMachine()), false);
Richard Sandiford35ec4e3562013-09-25 10:11:07 +000095 if (getOptLevel() != CodeGenOpt::None)
Matthias Braun7e37a5f2014-12-11 21:26:47 +000096 addPass(createSystemZShortenInstPass(getSystemZTargetMachine()), false);
Richard Sandiford312425f2013-05-20 14:23:08 +000097 addPass(createSystemZLongBranchPass(getSystemZTargetMachine()));
Richard Sandiford312425f2013-05-20 14:23:08 +000098}
99
Ulrich Weigand5f613df2013-05-06 16:15:19 +0000100TargetPassConfig *SystemZTargetMachine::createPassConfig(PassManagerBase &PM) {
101 return new SystemZPassConfig(this, PM);
102}