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Misha Brukmanabb027c2003-05-27 21:40:39 +00001//===-- SparcEmitter.cpp - Write machine code to executable memory --------===//
2//
3// This file defines a MachineCodeEmitter object that is used by Jello to write
4// machine code to memory and remember where relocatable values lie.
5//
6//===----------------------------------------------------------------------===//
7
8#include "VM.h"
9#include "llvm/CodeGen/MachineCodeEmitter.h"
10#include "llvm/CodeGen/MachineFunction.h"
11#include "llvm/CodeGen/MachineConstantPool.h"
12#include "llvm/CodeGen/MachineInstr.h"
13#include "llvm/Target/TargetData.h"
14#include "llvm/Function.h"
15#include "Support/Statistic.h"
16// FIXME
17#include "../../../lib/Target/Sparc/SparcV9CodeEmitter.h"
18
19namespace {
20 Statistic<> NumBytes("jello", "Number of bytes of machine code compiled");
21
22 class SparcEmitter : public MachineCodeEmitter {
23 VM &TheVM;
24
25 unsigned char *CurBlock, *CurByte;
26
27 // When outputting a function stub in the context of some other function, we
28 // save CurBlock and CurByte here.
29 unsigned char *SavedCurBlock, *SavedCurByte;
30
31 std::vector<std::pair<BasicBlock*,
32 std::pair<unsigned*,MachineInstr*> > > BBRefs;
33 std::map<BasicBlock*, unsigned> BBLocations;
34 std::vector<void*> ConstantPoolAddresses;
35 public:
36 SparcEmitter(VM &vm) : TheVM(vm) {}
37
38 virtual void startFunction(MachineFunction &F);
39 virtual void finishFunction(MachineFunction &F);
40 virtual void emitConstantPool(MachineConstantPool *MCP);
41 virtual void startBasicBlock(MachineBasicBlock &BB);
42 virtual void startFunctionStub(const Function &F, unsigned StubSize);
43 virtual void* finishFunctionStub(const Function &F);
44 virtual void emitByte(unsigned char B);
45 virtual void emitPCRelativeDisp(Value *V);
46 virtual void emitGlobalAddress(GlobalValue *V, bool isPCRelative);
47 virtual void emitGlobalAddress(const std::string &Name, bool isPCRelative);
48 virtual void emitFunctionConstantValueAddress(unsigned ConstantNum,
49 int Offset);
50
51 virtual void saveBBreference(BasicBlock *BB, MachineInstr &MI);
Misha Brukman8e5bf702003-05-28 18:44:38 +000052
Misha Brukmanabb027c2003-05-27 21:40:39 +000053
54 private:
55 void emitAddress(void *Addr, bool isPCRelative);
Misha Brukman8e5bf702003-05-28 18:44:38 +000056 void* getMemory(unsigned NumPages);
Misha Brukmanabb027c2003-05-27 21:40:39 +000057 };
58}
59
60MachineCodeEmitter *VM::createSparcEmitter(VM &V) {
61 return new SparcEmitter(V);
62}
63
64
65#define _POSIX_MAPPED_FILES
66#include <unistd.h>
67#include <sys/mman.h>
68
69// FIXME: This should be rewritten to support a real memory manager for
70// executable memory pages!
Misha Brukman417a7c02003-05-30 20:39:37 +000071void* SparcEmitter::getMemory(unsigned NumPages) {
Brian Gaeke6607fbe2003-05-30 03:37:13 +000072 void *pa;
73 if (NumPages == 0) return 0;
74 static const long pageSize = sysconf (_SC_PAGESIZE);
75 pa = mmap(0, pageSize*NumPages, PROT_READ|PROT_WRITE|PROT_EXEC,
Misha Brukman417a7c02003-05-30 20:39:37 +000076 MAP_PRIVATE|MAP_ANONYMOUS, -1, 0);
Misha Brukman8e5bf702003-05-28 18:44:38 +000077 if (pa == MAP_FAILED) {
78 perror("mmap");
79 abort();
80 }
Misha Brukman8e5bf702003-05-28 18:44:38 +000081 return pa;
Misha Brukmanabb027c2003-05-27 21:40:39 +000082}
83
84
85void SparcEmitter::startFunction(MachineFunction &F) {
Misha Brukman8e5bf702003-05-28 18:44:38 +000086 std::cerr << "Starting function " << F.getFunction()->getName() << "\n";
Misha Brukman417a7c02003-05-30 20:39:37 +000087 CurBlock = (unsigned char *)getMemory(8);
Misha Brukmanabb027c2003-05-27 21:40:39 +000088 CurByte = CurBlock; // Start writing at the beginning of the fn.
89 TheVM.addGlobalMapping(F.getFunction(), CurBlock);
90}
91
92void SparcEmitter::finishFunction(MachineFunction &F) {
Misha Brukman417a7c02003-05-30 20:39:37 +000093 std::cerr << "Finishing function " << F.getFunction()->getName() << "\n";
Misha Brukmanabb027c2003-05-27 21:40:39 +000094 ConstantPoolAddresses.clear();
Misha Brukman8e5bf702003-05-28 18:44:38 +000095 // Re-write branches to BasicBlocks for the entire function
Misha Brukmanabb027c2003-05-27 21:40:39 +000096 for (unsigned i = 0, e = BBRefs.size(); i != e; ++i) {
Misha Brukmanabb027c2003-05-27 21:40:39 +000097 unsigned Location = BBLocations[BBRefs[i].first];
98 unsigned *Ref = BBRefs[i].second.first;
99 MachineInstr *MI = BBRefs[i].second.second;
Misha Brukman417a7c02003-05-30 20:39:37 +0000100 std::cerr << "attempting to resolve BB: " << i << "\n";
Misha Brukmanabb027c2003-05-27 21:40:39 +0000101 for (unsigned i=0, e = MI->getNumOperands(); i != e; ++i) {
102 MachineOperand &op = MI->getOperand(i);
Misha Brukman417a7c02003-05-30 20:39:37 +0000103 if (op.isPCRelativeDisp()) {
104 MI->SetMachineOperandConst(i, MachineOperand::MO_SignExtendedImmed,
105 Location);
106 std::cerr << "Rewrote BB ref: ";
107 unsigned fixedInstr = SparcV9CodeEmitter::getBinaryCodeForInstr(*MI);
108 *Ref = fixedInstr;
Misha Brukmanabb027c2003-05-27 21:40:39 +0000109 break;
110 }
111 }
Misha Brukmanabb027c2003-05-27 21:40:39 +0000112 }
113 BBRefs.clear();
114 BBLocations.clear();
115
116 NumBytes += CurByte-CurBlock;
117
118 DEBUG(std::cerr << "Finished CodeGen of [0x" << std::hex
119 << (unsigned)(intptr_t)CurBlock
120 << std::dec << "] Function: " << F.getFunction()->getName()
121 << ": " << CurByte-CurBlock << " bytes of text\n");
122}
123
124void SparcEmitter::emitConstantPool(MachineConstantPool *MCP) {
125 const std::vector<Constant*> &Constants = MCP->getConstants();
126 for (unsigned i = 0, e = Constants.size(); i != e; ++i) {
127 // For now we just allocate some memory on the heap, this can be
128 // dramatically improved.
129 const Type *Ty = ((Value*)Constants[i])->getType();
130 void *Addr = malloc(TheVM.getTargetData().getTypeSize(Ty));
131 TheVM.InitializeMemory(Constants[i], Addr);
132 ConstantPoolAddresses.push_back(Addr);
133 }
134}
135
136
137void SparcEmitter::startBasicBlock(MachineBasicBlock &BB) {
138 BBLocations[BB.getBasicBlock()] = (unsigned)(intptr_t)CurByte;
139}
140
141
142void SparcEmitter::startFunctionStub(const Function &F, unsigned StubSize) {
143 SavedCurBlock = CurBlock; SavedCurByte = CurByte;
144 // FIXME: this is a huge waste of memory.
145 CurBlock = (unsigned char *)getMemory((StubSize+4095)/4096);
146 CurByte = CurBlock; // Start writing at the beginning of the fn.
147}
148
149void *SparcEmitter::finishFunctionStub(const Function &F) {
150 NumBytes += CurByte-CurBlock;
151 DEBUG(std::cerr << "Finished CodeGen of [0x" << std::hex
152 << (unsigned)(intptr_t)CurBlock
153 << std::dec << "] Function stub for: " << F.getName()
154 << ": " << CurByte-CurBlock << " bytes of text\n");
155 std::swap(CurBlock, SavedCurBlock);
156 CurByte = SavedCurByte;
157 return SavedCurBlock;
158}
159
160void SparcEmitter::emitByte(unsigned char B) {
161 *CurByte++ = B; // Write the byte to memory
162}
163
164// BasicBlock -> pair<memloc, MachineInstr>
165// when the BB is emitted, machineinstr is modified with then-currbyte,
166// processed with MCE, and written out at memloc.
Misha Brukman8e5bf702003-05-28 18:44:38 +0000167// Should be called by the emitter if its outputting a PCRelative disp
Misha Brukmanabb027c2003-05-27 21:40:39 +0000168void SparcEmitter::saveBBreference(BasicBlock *BB, MachineInstr &MI) {
169 BBRefs.push_back(std::make_pair(BB, std::make_pair((unsigned*)CurByte, &MI)));
170}
171
172
173// emitPCRelativeDisp - For functions, just output a displacement that will
174// cause a reference to the zero page, which will cause a seg-fault, causing
175// things to get resolved on demand. Keep track of these markers.
176//
177// For basic block references, keep track of where the references are so they
178// may be patched up when the basic block is defined.
179//
180// BasicBlock -> pair<memloc, MachineInstr>
181// when the BB is emitted, machineinstr is modified with then-currbyte,
182// processed with MCE, and written out at memloc.
183
184void SparcEmitter::emitPCRelativeDisp(Value *V) {
185#if 0
186 BasicBlock *BB = cast<BasicBlock>(V); // Keep track of reference...
187 BBRefs.push_back(std::make_pair(BB, (unsigned*)CurByte));
188 CurByte += 4;
189#endif
190}
191
192// emitAddress - Emit an address in either direct or PCRelative form...
193//
194void SparcEmitter::emitAddress(void *Addr, bool isPCRelative) {
195#if 0
196 if (isPCRelative) {
197 *(intptr_t*)CurByte = (intptr_t)Addr - (intptr_t)CurByte-4;
198 } else {
199 *(void**)CurByte = Addr;
200 }
201 CurByte += 4;
202#endif
203}
204
205void SparcEmitter::emitGlobalAddress(GlobalValue *V, bool isPCRelative) {
206 if (isPCRelative) { // must be a call, this is a major hack!
207 // Try looking up the function to see if it is already compiled!
208 if (void *Addr = TheVM.getPointerToGlobalIfAvailable(V)) {
209 emitAddress(Addr, isPCRelative);
210 } else { // Function has not yet been code generated!
211 TheVM.addFunctionRef(CurByte, cast<Function>(V));
212
213 // Delayed resolution...
214 emitAddress((void*)VM::CompilationCallback, isPCRelative);
215 }
216 } else {
217 emitAddress(TheVM.getPointerToGlobal(V), isPCRelative);
218 }
219}
220
221void SparcEmitter::emitGlobalAddress(const std::string &Name, bool isPCRelative)
222{
223#if 0
224 emitAddress(TheVM.getPointerToNamedFunction(Name), isPCRelative);
225#endif
226}
227
228void SparcEmitter::emitFunctionConstantValueAddress(unsigned ConstantNum,
229 int Offset) {
230 assert(ConstantNum < ConstantPoolAddresses.size() &&
231 "Invalid ConstantPoolIndex!");
232 *(void**)CurByte = (char*)ConstantPoolAddresses[ConstantNum]+Offset;
233 CurByte += 4;
234}