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Dean Michael Berris52735fc2016-07-14 04:06:33 +00001//===-- XRayInstrumentation.cpp - Adds XRay instrumentation to functions. -===//
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// This file implements a MachineFunctionPass that inserts the appropriate
11// XRay instrumentation instructions. We look for XRay-specific attributes
12// on the function to determine whether we should insert the replacement
13// operations.
14//
15//===---------------------------------------------------------------------===//
16
17#include "llvm/CodeGen/Analysis.h"
18#include "llvm/CodeGen/MachineFunction.h"
19#include "llvm/CodeGen/MachineFunctionPass.h"
20#include "llvm/CodeGen/MachineInstrBuilder.h"
21#include "llvm/CodeGen/Passes.h"
22#include "llvm/Support/TargetRegistry.h"
23#include "llvm/Target/TargetInstrInfo.h"
24#include "llvm/Target/TargetSubtargetInfo.h"
25
26using namespace llvm;
27
28namespace {
29struct XRayInstrumentation : public MachineFunctionPass {
30 static char ID;
31
32 XRayInstrumentation() : MachineFunctionPass(ID) {
33 initializeXRayInstrumentationPass(*PassRegistry::getPassRegistry());
34 }
35
36 bool runOnMachineFunction(MachineFunction &MF) override;
Dean Michael Berris464015442016-09-19 00:54:35 +000037
38private:
39 // Replace the original RET instruction with the exit sled code ("patchable
40 // ret" pseudo-instruction), so that at runtime XRay can replace the sled
41 // with a code jumping to XRay trampoline, which calls the tracing handler
42 // and, in the end, issues the RET instruction.
43 // This is the approach to go on CPUs which have a single RET instruction,
44 // like x86/x86_64.
45 void replaceRetWithPatchableRet(MachineFunction &MF,
46 const TargetInstrInfo *TII);
47 // Prepend the original return instruction with the exit sled code ("patchable
48 // function exit" pseudo-instruction), preserving the original return
49 // instruction just after the exit sled code.
50 // This is the approach to go on CPUs which have multiple options for the
51 // return instruction, like ARM. For such CPUs we can't just jump into the
52 // XRay trampoline and issue a single return instruction there. We rather
53 // have to call the trampoline and return from it to the original return
54 // instruction of the function being instrumented.
55 void prependRetWithPatchableExit(MachineFunction &MF,
56 const TargetInstrInfo *TII);
Dean Michael Berris52735fc2016-07-14 04:06:33 +000057};
Dean Michael Berris464015442016-09-19 00:54:35 +000058} // anonymous namespace
Dean Michael Berris52735fc2016-07-14 04:06:33 +000059
Dean Michael Berris464015442016-09-19 00:54:35 +000060void XRayInstrumentation::replaceRetWithPatchableRet(MachineFunction &MF,
61 const TargetInstrInfo *TII)
62{
63 // We look for *all* terminators and returns, then replace those with
Dean Michael Berris52735fc2016-07-14 04:06:33 +000064 // PATCHABLE_RET instructions.
65 SmallVector<MachineInstr *, 4> Terminators;
66 for (auto &MBB : MF) {
67 for (auto &T : MBB.terminators()) {
Dean Michael Berrise8ae5ba2016-09-01 01:29:13 +000068 unsigned Opc = 0;
Dean Michael Berris52735fc2016-07-14 04:06:33 +000069 if (T.isReturn() && T.getOpcode() == TII->getReturnOpcode()) {
70 // Replace return instructions with:
71 // PATCHABLE_RET <Opcode>, <Operand>...
Dean Michael Berrise8ae5ba2016-09-01 01:29:13 +000072 Opc = TargetOpcode::PATCHABLE_RET;
73 }
74 if (TII->isTailCall(T)) {
75 // Treat the tail call as a return instruction, which has a
76 // different-looking sled than the normal return case.
77 Opc = TargetOpcode::PATCHABLE_TAIL_CALL;
78 }
79 if (Opc != 0) {
80 auto MIB = BuildMI(MBB, T, T.getDebugLoc(), TII->get(Opc))
Dean Michael Berris52735fc2016-07-14 04:06:33 +000081 .addImm(T.getOpcode());
82 for (auto &MO : T.operands())
83 MIB.addOperand(MO);
84 Terminators.push_back(&T);
Dean Michael Berris52735fc2016-07-14 04:06:33 +000085 }
86 }
87 }
88
89 for (auto &I : Terminators)
90 I->eraseFromParent();
Dean Michael Berris464015442016-09-19 00:54:35 +000091}
Dean Michael Berris52735fc2016-07-14 04:06:33 +000092
Dean Michael Berris464015442016-09-19 00:54:35 +000093void XRayInstrumentation::prependRetWithPatchableExit(MachineFunction &MF,
94 const TargetInstrInfo *TII)
95{
96 for (auto &MBB : MF) {
97 for (auto &T : MBB.terminators()) {
Dean Michael Berris156f6ca2016-10-18 05:54:15 +000098 unsigned Opc = 0;
Dean Michael Berris464015442016-09-19 00:54:35 +000099 if (T.isReturn()) {
Dean Michael Berris156f6ca2016-10-18 05:54:15 +0000100 Opc = TargetOpcode::PATCHABLE_FUNCTION_EXIT;
101 }
102 if (TII->isTailCall(T)) {
103 Opc = TargetOpcode::PATCHABLE_TAIL_CALL;
104 }
105 if (Opc != 0) {
106 // Prepend the return instruction with PATCHABLE_FUNCTION_EXIT or
107 // PATCHABLE_TAIL_CALL .
108 BuildMI(MBB, T, T.getDebugLoc(),TII->get(Opc));
Dean Michael Berris464015442016-09-19 00:54:35 +0000109 }
110 }
111 }
112}
113
114bool XRayInstrumentation::runOnMachineFunction(MachineFunction &MF) {
115 auto &F = *MF.getFunction();
116 auto InstrAttr = F.getFnAttribute("function-instrument");
117 bool AlwaysInstrument = !InstrAttr.hasAttribute(Attribute::None) &&
118 InstrAttr.isStringAttribute() &&
119 InstrAttr.getValueAsString() == "xray-always";
120 Attribute Attr = F.getFnAttribute("xray-instruction-threshold");
121 unsigned XRayThreshold = 0;
122 if (!AlwaysInstrument) {
123 if (Attr.hasAttribute(Attribute::None) || !Attr.isStringAttribute())
124 return false; // XRay threshold attribute not found.
125 if (Attr.getValueAsString().getAsInteger(10, XRayThreshold))
126 return false; // Invalid value for threshold.
127 if (F.size() < XRayThreshold)
128 return false; // Function is too small.
129 }
130
131 auto &FirstMBB = *MF.begin();
132 auto &FirstMI = *FirstMBB.begin();
133
134 if (!MF.getSubtarget().isXRaySupported()) {
135 FirstMI.emitError("An attempt to perform XRay instrumentation for an"
136 " unsupported target.");
137 return false;
138 }
139
140 // FIXME: Do the loop triviality analysis here or in an earlier pass.
141
142 // First, insert an PATCHABLE_FUNCTION_ENTER as the first instruction of the
143 // MachineFunction.
144 auto *TII = MF.getSubtarget().getInstrInfo();
145 BuildMI(FirstMBB, FirstMI, FirstMI.getDebugLoc(),
146 TII->get(TargetOpcode::PATCHABLE_FUNCTION_ENTER));
147
148 switch (MF.getTarget().getTargetTriple().getArch()) {
149 case Triple::ArchType::arm:
150 case Triple::ArchType::thumb:
151 // For the architectures which don't have a single return instruction
152 prependRetWithPatchableExit(MF, TII);
153 break;
154 default:
155 // For the architectures that have a single return instruction (such as
156 // RETQ on x86_64).
157 replaceRetWithPatchableRet(MF, TII);
158 break;
159 }
Dean Michael Berris52735fc2016-07-14 04:06:33 +0000160 return true;
161}
162
163char XRayInstrumentation::ID = 0;
164char &llvm::XRayInstrumentationID = XRayInstrumentation::ID;
165INITIALIZE_PASS(XRayInstrumentation, "xray-instrumentation", "Insert XRay ops",
Dean Michael Berris086639a2016-07-14 11:46:41 +0000166 false, false)