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Chris Lattnere88f78c2001-09-19 13:47:27 +00001//===-- EmitAssembly.cpp - Emit Sparc Specific .s File ---------------------==//
2//
3// This file implements all of the stuff neccesary to output a .s file from
4// LLVM. The code in this file assumes that the specified module has already
5// been compiled into the internal data structures of the Module.
6//
7// The entry point of this file is the UltraSparc::emitAssembly method.
8//
9//===----------------------------------------------------------------------===//
10
11#include "SparcInternals.h"
12#include "llvm/Analysis/SlotCalculator.h"
13#include "llvm/CodeGen/MachineInstr.h"
14#include "llvm/BasicBlock.h"
15#include "llvm/Method.h"
16#include "llvm/Module.h"
17#include "llvm/Support/StringExtras.h"
18
19namespace {
20
21class SparcAsmPrinter {
22 ostream &Out;
23 SlotCalculator Table;
Chris Lattnerec0a95f2001-10-15 15:54:43 +000024 const UltraSparc &Target;
Chris Lattnere88f78c2001-09-19 13:47:27 +000025
26 enum Sections {
27 Unknown,
28 Text,
29 Data,
30 ReadOnly,
31 } CurSection;
32public:
Chris Lattnerec0a95f2001-10-15 15:54:43 +000033 inline SparcAsmPrinter(ostream &o, const Module *M, const UltraSparc &t)
Chris Lattnere88f78c2001-09-19 13:47:27 +000034 : Out(o), Table(SlotCalculator(M, true)), Target(t), CurSection(Unknown) {
35 emitModule(M);
36 }
37
38private :
39 void emitModule(const Module *M);
40 /*
41 void processSymbolTable(const SymbolTable &ST);
42 void processConstant(const ConstPoolVal *CPV);
43 void processGlobal(const GlobalVariable *GV);
44 */
45 void emitMethod(const Method *M);
46 //void processMethodArgument(const MethodArgument *MA);
47 void emitBasicBlock(const BasicBlock *BB);
48 void emitMachineInst(const MachineInstr *MI);
Chris Lattnerc28f6d62001-10-15 19:21:31 +000049 void printOperand(const MachineOperand &Op);
Chris Lattnere88f78c2001-09-19 13:47:27 +000050
Chris Lattnere88f78c2001-09-19 13:47:27 +000051
52 // enterSection - Use this method to enter a different section of the output
53 // executable. This is used to only output neccesary section transitions.
54 //
55 void enterSection(enum Sections S) {
56 if (S == CurSection) return; // Only switch section if neccesary
57 CurSection = S;
58
59 Out << ".section \".";
60 switch (S) {
61 default: assert(0 && "Bad section name!");
62 case Text: Out << "text"; break;
63 case Data: Out << "data"; break;
64 case ReadOnly: Out << "rodata"; break;
65 }
66 Out << "\"\n";
67 }
68
Chris Lattnerc56d7792001-09-28 15:07:24 +000069 string getEscapedString(const string &S) {
70 string Result;
71
72 for (unsigned i = 0; i < S.size(); ++i) {
73 char C = S[i];
74 if ((C >= 'a' && C <= 'z') || (C >= 'A' && C <= 'Z') ||
75 (C >= '0' && C <= '9')) {
76 Result += C;
77 } else {
78 Result += '$';
79 Result += char('0' + ((unsigned char)C >> 4));
80 Result += char('0' + (C & 0xF));
81 }
82 }
83 return Result;
84 }
85
Chris Lattnere88f78c2001-09-19 13:47:27 +000086 // getID - Return a valid identifier for the specified value. Base it on
87 // the name of the identifier if possible, use a numbered value based on
88 // prefix otherwise. FPrefix is always prepended to the output identifier.
89 //
90 string getID(const Value *V, const char *Prefix, const char *FPrefix = 0) {
91 string FP(FPrefix ? FPrefix : ""); // "Forced prefix"
92 if (V->hasName()) {
Chris Lattnerc56d7792001-09-28 15:07:24 +000093 return FP + getEscapedString(V->getName());
Chris Lattnere88f78c2001-09-19 13:47:27 +000094 } else {
95 assert(Table.getValSlot(V) != -1 && "Value not in value table!");
96 return FP + string(Prefix) + itostr(Table.getValSlot(V));
97 }
98 }
99
100 // getID Wrappers - Ensure consistent usage...
101 string getID(const Method *M) { return getID(M, "anon_method$"); }
102 string getID(const BasicBlock *BB) {
Chris Lattner9a3d63b2001-09-19 15:56:23 +0000103 return getID(BB, "LL", (".L$"+getID(BB->getParent())+"$").c_str());
Chris Lattnere88f78c2001-09-19 13:47:27 +0000104 }
105
106 unsigned getOperandMask(unsigned Opcode) {
107 switch (Opcode) {
108 case SUBcc: return 1 << 3; // Remove CC argument
Chris Lattnerc56d7792001-09-28 15:07:24 +0000109 case BA: case BRZ: // Remove Arg #0, which is always null or xcc
110 case BRLEZ: case BRLZ:
111 case BRNZ: case BRGZ:
112 case BRGEZ: return 1 << 0;
Vikram S. Adve2827d522001-10-20 21:33:50 +0000113 // case RETURN: return 1 << 1; // Remove Arg #2 which is zero
Chris Lattner39f501c2001-10-01 02:32:34 +0000114
Chris Lattnere88f78c2001-09-19 13:47:27 +0000115 default: return 0; // By default, don't hack operands...
116 }
117 }
118};
119
120
Chris Lattnerc28f6d62001-10-15 19:21:31 +0000121void SparcAsmPrinter::printOperand(const MachineOperand &Op) {
122 switch (Op.getOperandType()) {
123 case MachineOperand::MO_VirtualRegister:
124 case MachineOperand::MO_CCRegister:
125 case MachineOperand::MO_MachineRegister: {
126 int RegNum = (int)Op.getAllocatedRegNum();
127
128 // ****this code is temporary till NULL Values are fixed
129 if (RegNum == 10000) {
130 Out << "<NULL VALUE>";
131 } else {
132 Out << "%" << Target.getRegInfo().getUnifiedRegName(RegNum);
133 }
134 break;
135 }
136
137 case MachineOperand::MO_PCRelativeDisp: {
138 const Value *Val = Op.getVRegValue();
139 if (!Val) {
140 Out << "\t<*NULL Value*>";
141 } else if (const BasicBlock *BB = dyn_cast<const BasicBlock>(Val)) {
142 Out << getID(BB);
Vikram S. Adve2827d522001-10-20 21:33:50 +0000143 } else if (const Method *M = dyn_cast<const Method>(Val)) {
144 Out << getID(M);
Chris Lattnerc28f6d62001-10-15 19:21:31 +0000145 } else {
146 Out << "<unknown value=" << Val << ">";
147 }
148 break;
149 }
150
151 default:
152 Out << Op; // use dump field
153 break;
154 }
155}
156
157
Chris Lattnere88f78c2001-09-19 13:47:27 +0000158void SparcAsmPrinter::emitMachineInst(const MachineInstr *MI) {
159 unsigned Opcode = MI->getOpCode();
160
161 if (TargetInstrDescriptors[Opcode].iclass & M_DUMMY_PHI_FLAG)
162 return; // IGNORE PHI NODES
163
164 Out << "\t" << TargetInstrDescriptors[Opcode].opCodeString << "\t";
165
Chris Lattnerc28f6d62001-10-15 19:21:31 +0000166 switch (Opcode) { // Some opcodes have special syntax...
Vikram S. Adve578f99c2001-10-22 13:44:53 +0000167 case JMPLCALL:
168 case JMPLRET:
Chris Lattnerc28f6d62001-10-15 19:21:31 +0000169 assert(MI->getNumOperands() == 3 && "Unexpected JMPL instr!");
170 printOperand(MI->getOperand(0));
171 Out << "+";
Vikram S. Adve43534442001-10-20 20:56:40 +0000172 printOperand(MI->getOperand(1));
Chris Lattnerc28f6d62001-10-15 19:21:31 +0000173 Out << ", ";
Vikram S. Adve43534442001-10-20 20:56:40 +0000174 printOperand(MI->getOperand(2));
Chris Lattnerc28f6d62001-10-15 19:21:31 +0000175 Out << endl;
176 return;
Vikram S. Adve2827d522001-10-20 21:33:50 +0000177
178 case RETURN:
179 assert(MI->getNumOperands() == 2 && "Unexpected RETURN instr!");
180 printOperand(MI->getOperand(0));
181 Out << "+";
182 printOperand(MI->getOperand(1));
183 Out << endl;
184 return;
185
Chris Lattnerc28f6d62001-10-15 19:21:31 +0000186 default: break;
187 }
188
Chris Lattnere88f78c2001-09-19 13:47:27 +0000189 unsigned Mask = getOperandMask(Opcode);
190
191 bool NeedComma = false;
192 for(unsigned OpNum = 0; OpNum < MI->getNumOperands(); ++OpNum) {
193 if ((1 << OpNum) & Mask) continue; // Ignore this operand?
194
195 const MachineOperand &Op = MI->getOperand(OpNum);
196 if (NeedComma) Out << ", "; // Handle comma outputing
197 NeedComma = true;
198
Chris Lattnerc28f6d62001-10-15 19:21:31 +0000199 printOperand(Op);
Chris Lattnere88f78c2001-09-19 13:47:27 +0000200 }
201 Out << endl;
202}
203
204void SparcAsmPrinter::emitBasicBlock(const BasicBlock *BB) {
205 // Emit a label for the basic block
206 Out << getID(BB) << ":\n";
207
208 // Get the vector of machine instructions corresponding to this bb.
209 const MachineCodeForBasicBlock &MIs = BB->getMachineInstrVec();
210 MachineCodeForBasicBlock::const_iterator MII = MIs.begin(), MIE = MIs.end();
211
212 // Loop over all of the instructions in the basic block...
213 for (; MII != MIE; ++MII)
214 emitMachineInst(*MII);
215 Out << "\n"; // Seperate BB's with newlines
216}
217
218void SparcAsmPrinter::emitMethod(const Method *M) {
219 if (M->isExternal()) return;
220
221 // Make sure the slot table has information about this method...
222 Table.incorporateMethod(M);
223
224 string MethName = getID(M);
225 Out << "!****** Outputing Method: " << MethName << " ******\n";
226 enterSection(Text);
227 Out << "\t.align 4\n\t.global\t" << MethName << "\n";
Chris Lattnerc56d7792001-09-28 15:07:24 +0000228 //Out << "\t.type\t" << MethName << ",#function\n";
Chris Lattnerf927bb42001-10-15 19:34:17 +0000229 Out << "\t.type\t" << MethName << ", 2\n";
Chris Lattnere88f78c2001-09-19 13:47:27 +0000230 Out << MethName << ":\n";
231
232 // Output code for all of the basic blocks in the method...
233 for (Method::const_iterator I = M->begin(), E = M->end(); I != E; ++I)
234 emitBasicBlock(*I);
235
236 // Output a .size directive so the debugger knows the extents of the function
237 Out << ".EndOf$" << MethName << ":\n\t.size " << MethName << ", .EndOf$"
238 << MethName << "-" << MethName << endl;
239
240 // Put some spaces between the methods
241 Out << "\n\n";
242
243 // Forget all about M.
244 Table.purgeMethod();
245}
246
247
248void SparcAsmPrinter::emitModule(const Module *M) {
249 // TODO: Look for a filename annotation on M to emit a .file directive
250 for (Module::const_iterator I = M->begin(), E = M->end(); I != E; ++I)
251 emitMethod(*I);
252}
253
254} // End anonymous namespace
255
256//
257// emitAssembly - Output assembly language code (a .s file) for the specified
258// method. The specified method must have been compiled before this may be
259// used.
260//
Chris Lattnerec0a95f2001-10-15 15:54:43 +0000261void UltraSparc::emitAssembly(const Module *M, ostream &Out) const {
Chris Lattnere88f78c2001-09-19 13:47:27 +0000262 SparcAsmPrinter Print(Out, M, *this);
263}