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Chris Lattnercf3056d2003-10-13 03:32:08 +00001//===-- InstructionWriter.cpp - Functions for writing instructions --------===//
John Criswellb576c942003-10-20 19:43:21 +00002//
3// The LLVM Compiler Infrastructure
4//
5// This file was developed by the LLVM research group and is distributed under
6// the University of Illinois Open Source License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
Chris Lattner00950542001-06-06 20:29:01 +00009//
10// This file implements the routines for encoding instruction opcodes to a
11// bytecode stream.
12//
Chris Lattner00950542001-06-06 20:29:01 +000013//===----------------------------------------------------------------------===//
14
15#include "WriterInternals.h"
16#include "llvm/Module.h"
Chris Lattner00950542001-06-06 20:29:01 +000017#include "llvm/DerivedTypes.h"
Chris Lattner0fe56f42003-09-08 17:58:37 +000018#include "llvm/Instructions.h"
Chris Lattnera92f6962002-10-01 22:38:41 +000019#include "Support/Statistic.h"
Chris Lattner00950542001-06-06 20:29:01 +000020#include <algorithm>
21
Chris Lattnerce6ef112002-07-26 18:40:14 +000022static Statistic<>
Chris Lattnera407ba12003-01-21 20:13:49 +000023NumInstrs("bytecodewriter", "Number of instructions");
Chris Lattnerce6ef112002-07-26 18:40:14 +000024
Chris Lattner00950542001-06-06 20:29:01 +000025typedef unsigned char uchar;
26
27// outputInstructionFormat0 - Output those wierd instructions that have a large
28// number of operands or have large operands themselves...
29//
30// Format: [opcode] [type] [numargs] [arg0] [arg1] ... [arg<numargs-1>]
31//
Chris Lattner0fe56f42003-09-08 17:58:37 +000032static void outputInstructionFormat0(const Instruction *I, unsigned Opcode,
Chris Lattner00950542001-06-06 20:29:01 +000033 const SlotCalculator &Table,
Chris Lattner697954c2002-01-20 22:54:45 +000034 unsigned Type, std::deque<uchar> &Out) {
Chris Lattner00950542001-06-06 20:29:01 +000035 // Opcode must have top two bits clear...
Chris Lattner0fe56f42003-09-08 17:58:37 +000036 output_vbr(Opcode << 2, Out); // Instruction Opcode ID
Chris Lattner00950542001-06-06 20:29:01 +000037 output_vbr(Type, Out); // Result type
38
Chris Lattnerc8b25d42001-07-07 08:36:50 +000039 unsigned NumArgs = I->getNumOperands();
Chris Lattnereff112c2003-10-18 05:54:48 +000040 output_vbr(NumArgs + (isa<CastInst>(I) || isa<VANextInst>(I) ||
41 isa<VAArgInst>(I)), Out);
Chris Lattner00950542001-06-06 20:29:01 +000042
Chris Lattnerc8b25d42001-07-07 08:36:50 +000043 for (unsigned i = 0; i < NumArgs; ++i) {
Alkis Evlogimenos60596382003-10-17 02:02:40 +000044 int Slot = Table.getSlot(I->getOperand(i));
Chris Lattnere5a57ee2001-07-25 22:47:55 +000045 assert(Slot >= 0 && "No slot number for value!?!?");
46 output_vbr((unsigned)Slot, Out);
47 }
Chris Lattner5ab1f872001-10-21 00:14:44 +000048
Chris Lattnereff112c2003-10-18 05:54:48 +000049 if (isa<CastInst>(I) || isa<VAArgInst>(I)) {
Alkis Evlogimenos60596382003-10-17 02:02:40 +000050 int Slot = Table.getSlot(I->getType());
Chris Lattnereff112c2003-10-18 05:54:48 +000051 assert(Slot != -1 && "Cast return type unknown?");
52 output_vbr((unsigned)Slot, Out);
53 } else if (const VANextInst *VAI = dyn_cast<VANextInst>(I)) {
54 int Slot = Table.getSlot(VAI->getArgType());
55 assert(Slot != -1 && "VarArg argument type unknown?");
Chris Lattner5ab1f872001-10-21 00:14:44 +000056 output_vbr((unsigned)Slot, Out);
57 }
58
Chris Lattnere5a57ee2001-07-25 22:47:55 +000059 align32(Out); // We must maintain correct alignment!
60}
61
62
Misha Brukman37f92e22003-09-11 22:34:13 +000063// outputInstrVarArgsCall - Output the absurdly annoying varargs function calls.
Chris Lattnere5a57ee2001-07-25 22:47:55 +000064// This are more annoying than most because the signature of the call does not
65// tell us anything about the types of the arguments in the varargs portion.
66// Because of this, we encode (as type 0) all of the argument types explicitly
67// before the argument value. This really sucks, but you shouldn't be using
68// varargs functions in your code! *death to printf*!
69//
70// Format: [opcode] [type] [numargs] [arg0] [arg1] ... [arg<numargs-1>]
71//
Chris Lattner0fe56f42003-09-08 17:58:37 +000072static void outputInstrVarArgsCall(const Instruction *I, unsigned Opcode,
Chris Lattnere5a57ee2001-07-25 22:47:55 +000073 const SlotCalculator &Table, unsigned Type,
Chris Lattner697954c2002-01-20 22:54:45 +000074 std::deque<uchar> &Out) {
Chris Lattner1b98c5c2001-10-13 06:48:38 +000075 assert(isa<CallInst>(I) || isa<InvokeInst>(I));
Chris Lattnere5a57ee2001-07-25 22:47:55 +000076 // Opcode must have top two bits clear...
Chris Lattner0fe56f42003-09-08 17:58:37 +000077 output_vbr(Opcode << 2, Out); // Instruction Opcode ID
Chris Lattnere5a57ee2001-07-25 22:47:55 +000078 output_vbr(Type, Out); // Result type (varargs type)
79
Chris Lattnereff112c2003-10-18 05:54:48 +000080 const PointerType *PTy = cast<PointerType>(I->getOperand(0)->getType());
81 const FunctionType *FTy = cast<FunctionType>(PTy->getElementType());
82 unsigned NumParams = FTy->getNumParams();
83
84 unsigned NumFixedOperands;
85 if (isa<CallInst>(I)) {
86 // Output an operand for the callee and each fixed argument, then two for
87 // each variable argument.
88 NumFixedOperands = 1+NumParams;
89 } else {
90 assert(isa<InvokeInst>(I) && "Not call or invoke??");
91 // Output an operand for the callee and destinations, then two for each
92 // variable argument.
93 NumFixedOperands = 3+NumParams;
94 }
95 output_vbr(2 * I->getNumOperands()-NumFixedOperands, Out);
Chris Lattnere5a57ee2001-07-25 22:47:55 +000096
Chris Lattner2fbfdcf2002-04-07 20:49:59 +000097 // The type for the function has already been emitted in the type field of the
Chris Lattner1b98c5c2001-10-13 06:48:38 +000098 // instruction. Just emit the slot # now.
Chris Lattnereff112c2003-10-18 05:54:48 +000099 for (unsigned i = 0; i != NumFixedOperands; ++i) {
100 int Slot = Table.getSlot(I->getOperand(i));
Chris Lattnere5a57ee2001-07-25 22:47:55 +0000101 assert(Slot >= 0 && "No slot number for value!?!?");
102 output_vbr((unsigned)Slot, Out);
Chris Lattnereff112c2003-10-18 05:54:48 +0000103 }
Chris Lattnere5a57ee2001-07-25 22:47:55 +0000104
Chris Lattnereff112c2003-10-18 05:54:48 +0000105 for (unsigned i = NumFixedOperands, e = I->getNumOperands(); i != e; ++i) {
106 // Output Arg Type ID
107 int Slot = Table.getSlot(I->getOperand(i)->getType());
108 assert(Slot >= 0 && "No slot number for value!?!?");
109 output_vbr((unsigned)Slot, Out);
110
Chris Lattnere5a57ee2001-07-25 22:47:55 +0000111 // Output arg ID itself
Alkis Evlogimenos60596382003-10-17 02:02:40 +0000112 Slot = Table.getSlot(I->getOperand(i));
Chris Lattnerc8b25d42001-07-07 08:36:50 +0000113 assert(Slot >= 0 && "No slot number for value!?!?");
Chris Lattner00950542001-06-06 20:29:01 +0000114 output_vbr((unsigned)Slot, Out);
115 }
116 align32(Out); // We must maintain correct alignment!
117}
118
119
120// outputInstructionFormat1 - Output one operand instructions, knowing that no
121// operand index is >= 2^12.
122//
Chris Lattner0fe56f42003-09-08 17:58:37 +0000123static void outputInstructionFormat1(const Instruction *I, unsigned Opcode,
Chris Lattner00950542001-06-06 20:29:01 +0000124 const SlotCalculator &Table, int *Slots,
Chris Lattner697954c2002-01-20 22:54:45 +0000125 unsigned Type, std::deque<uchar> &Out) {
Chris Lattner00950542001-06-06 20:29:01 +0000126 // bits Instruction format:
127 // --------------------------
Chris Lattner2b9f6002001-10-23 03:21:10 +0000128 // 01-00: Opcode type, fixed to 1.
129 // 07-02: Opcode
130 // 19-08: Resulting type plane
131 // 31-20: Operand #1 (if set to (2^12-1), then zero operands)
Chris Lattner00950542001-06-06 20:29:01 +0000132 //
Chris Lattner2b9f6002001-10-23 03:21:10 +0000133 unsigned Bits = 1 | (Opcode << 2) | (Type << 8) | (Slots[0] << 20);
Chris Lattner00950542001-06-06 20:29:01 +0000134 // cerr << "1 " << IType << " " << Type << " " << Slots[0] << endl;
Chris Lattner2b9f6002001-10-23 03:21:10 +0000135 output(Bits, Out);
Chris Lattner00950542001-06-06 20:29:01 +0000136}
137
138
139// outputInstructionFormat2 - Output two operand instructions, knowing that no
140// operand index is >= 2^8.
141//
Chris Lattner0fe56f42003-09-08 17:58:37 +0000142static void outputInstructionFormat2(const Instruction *I, unsigned Opcode,
Chris Lattner00950542001-06-06 20:29:01 +0000143 const SlotCalculator &Table, int *Slots,
Chris Lattner697954c2002-01-20 22:54:45 +0000144 unsigned Type, std::deque<uchar> &Out) {
Chris Lattner00950542001-06-06 20:29:01 +0000145 // bits Instruction format:
146 // --------------------------
Chris Lattner2b9f6002001-10-23 03:21:10 +0000147 // 01-00: Opcode type, fixed to 2.
148 // 07-02: Opcode
149 // 15-08: Resulting type plane
150 // 23-16: Operand #1
151 // 31-24: Operand #2
Chris Lattner00950542001-06-06 20:29:01 +0000152 //
Chris Lattner2b9f6002001-10-23 03:21:10 +0000153 unsigned Bits = 2 | (Opcode << 2) | (Type << 8) |
154 (Slots[0] << 16) | (Slots[1] << 24);
Chris Lattner00950542001-06-06 20:29:01 +0000155 // cerr << "2 " << IType << " " << Type << " " << Slots[0] << " "
156 // << Slots[1] << endl;
Chris Lattner2b9f6002001-10-23 03:21:10 +0000157 output(Bits, Out);
Chris Lattner00950542001-06-06 20:29:01 +0000158}
159
160
161// outputInstructionFormat3 - Output three operand instructions, knowing that no
162// operand index is >= 2^6.
163//
Chris Lattner0fe56f42003-09-08 17:58:37 +0000164static void outputInstructionFormat3(const Instruction *I, unsigned Opcode,
Chris Lattner00950542001-06-06 20:29:01 +0000165 const SlotCalculator &Table, int *Slots,
Chris Lattner697954c2002-01-20 22:54:45 +0000166 unsigned Type, std::deque<uchar> &Out) {
Chris Lattner00950542001-06-06 20:29:01 +0000167 // bits Instruction format:
168 // --------------------------
Chris Lattner2b9f6002001-10-23 03:21:10 +0000169 // 01-00: Opcode type, fixed to 3.
170 // 07-02: Opcode
171 // 13-08: Resulting type plane
172 // 19-14: Operand #1
173 // 25-20: Operand #2
174 // 31-26: Operand #3
Chris Lattner00950542001-06-06 20:29:01 +0000175 //
Chris Lattner2b9f6002001-10-23 03:21:10 +0000176 unsigned Bits = 3 | (Opcode << 2) | (Type << 8) |
177 (Slots[0] << 14) | (Slots[1] << 20) | (Slots[2] << 26);
Chris Lattnerc8b25d42001-07-07 08:36:50 +0000178 //cerr << "3 " << IType << " " << Type << " " << Slots[0] << " "
179 // << Slots[1] << " " << Slots[2] << endl;
Chris Lattner2b9f6002001-10-23 03:21:10 +0000180 output(Bits, Out);
Chris Lattner00950542001-06-06 20:29:01 +0000181}
182
Chris Lattner0b12b5f2002-06-25 16:13:21 +0000183void BytecodeWriter::processInstruction(const Instruction &I) {
Chris Lattner0fe56f42003-09-08 17:58:37 +0000184 assert(I.getOpcode() < 62 && "Opcode too big???");
185 unsigned Opcode = I.getOpcode();
186
187 // Encode 'volatile load' as 62 and 'volatile store' as 63.
188 if (isa<LoadInst>(I) && cast<LoadInst>(I).isVolatile())
189 Opcode = 62;
190 if (isa<StoreInst>(I) && cast<StoreInst>(I).isVolatile())
191 Opcode = 63;
Chris Lattner00950542001-06-06 20:29:01 +0000192
Chris Lattner0b12b5f2002-06-25 16:13:21 +0000193 unsigned NumOperands = I.getNumOperands();
Chris Lattner00950542001-06-06 20:29:01 +0000194 int MaxOpSlot = 0;
Chris Lattnerc8b25d42001-07-07 08:36:50 +0000195 int Slots[3]; Slots[0] = (1 << 12)-1; // Marker to signify 0 operands
Chris Lattner00950542001-06-06 20:29:01 +0000196
Chris Lattnerc8b25d42001-07-07 08:36:50 +0000197 for (unsigned i = 0; i < NumOperands; ++i) {
Chris Lattner0b12b5f2002-06-25 16:13:21 +0000198 const Value *Def = I.getOperand(i);
Alkis Evlogimenos60596382003-10-17 02:02:40 +0000199 int slot = Table.getSlot(Def);
Chris Lattner00950542001-06-06 20:29:01 +0000200 assert(slot != -1 && "Broken bytecode!");
201 if (slot > MaxOpSlot) MaxOpSlot = slot;
Chris Lattnerc8b25d42001-07-07 08:36:50 +0000202 if (i < 3) Slots[i] = slot;
Chris Lattner00950542001-06-06 20:29:01 +0000203 }
204
205 // Figure out which type to encode with the instruction. Typically we want
206 // the type of the first parameter, as opposed to the type of the instruction
207 // (for example, with setcc, we always know it returns bool, but the type of
208 // the first param is actually interesting). But if we have no arguments
209 // we take the type of the instruction itself.
210 //
Chris Lattnerab5ac6b2001-07-08 23:22:50 +0000211 const Type *Ty;
Chris Lattner0b12b5f2002-06-25 16:13:21 +0000212 switch (I.getOpcode()) {
Chris Lattnerab5ac6b2001-07-08 23:22:50 +0000213 case Instruction::Malloc:
214 case Instruction::Alloca:
Chris Lattner0b12b5f2002-06-25 16:13:21 +0000215 Ty = I.getType(); // Malloc & Alloca ALWAYS want to encode the return type
Chris Lattnerab5ac6b2001-07-08 23:22:50 +0000216 break;
217 case Instruction::Store:
Chris Lattner0b12b5f2002-06-25 16:13:21 +0000218 Ty = I.getOperand(1)->getType(); // Encode the pointer type...
Chris Lattner9b625032002-05-06 16:15:30 +0000219 assert(isa<PointerType>(Ty) && "Store to nonpointer type!?!?");
Chris Lattnerab5ac6b2001-07-08 23:22:50 +0000220 break;
221 default: // Otherwise use the default behavior...
Chris Lattner0b12b5f2002-06-25 16:13:21 +0000222 Ty = NumOperands ? I.getOperand(0)->getType() : I.getType();
Chris Lattnerab5ac6b2001-07-08 23:22:50 +0000223 break;
224 }
Chris Lattner00950542001-06-06 20:29:01 +0000225
226 unsigned Type;
Alkis Evlogimenos60596382003-10-17 02:02:40 +0000227 int Slot = Table.getSlot(Ty);
Chris Lattner00950542001-06-06 20:29:01 +0000228 assert(Slot != -1 && "Type not available!!?!");
229 Type = (unsigned)Slot;
230
Chris Lattner7c501472001-07-28 17:51:21 +0000231 // Make sure that we take the type number into consideration. We don't want
232 // to overflow the field size for the instruction format we select.
233 //
234 if (Slot > MaxOpSlot) MaxOpSlot = Slot;
235
Chris Lattner09083092001-07-08 04:57:15 +0000236 // Handle the special case for cast...
Chris Lattnereff112c2003-10-18 05:54:48 +0000237 if (isa<CastInst>(I) || isa<VAArgInst>(I)) {
Chris Lattner09083092001-07-08 04:57:15 +0000238 // Cast has to encode the destination type as the second argument in the
239 // packet, or else we won't know what type to cast to!
Alkis Evlogimenos60596382003-10-17 02:02:40 +0000240 Slots[1] = Table.getSlot(I.getType());
Chris Lattner09083092001-07-08 04:57:15 +0000241 assert(Slots[1] != -1 && "Cast return type unknown?");
242 if (Slots[1] > MaxOpSlot) MaxOpSlot = Slots[1];
243 NumOperands++;
Chris Lattnereff112c2003-10-18 05:54:48 +0000244 } else if (const VANextInst *VANI = dyn_cast<VANextInst>(&I)) {
245 Slots[1] = Table.getSlot(VANI->getArgType());
246 assert(Slots[1] != -1 && "va_next return type unknown?");
247 if (Slots[1] > MaxOpSlot) MaxOpSlot = Slots[1];
248 NumOperands++;
Chris Lattner0b12b5f2002-06-25 16:13:21 +0000249 } else if (const CallInst *CI = dyn_cast<CallInst>(&I)){// Handle VarArg calls
Chris Lattner9fcccb02002-06-05 17:49:40 +0000250 const PointerType *Ty = cast<PointerType>(CI->getCalledValue()->getType());
Chris Lattner2aac6bf2002-04-04 22:19:18 +0000251 if (cast<FunctionType>(Ty->getElementType())->isVarArg()) {
Chris Lattner0fe56f42003-09-08 17:58:37 +0000252 outputInstrVarArgsCall(CI, Opcode, Table, Type, Out);
Chris Lattner1b98c5c2001-10-13 06:48:38 +0000253 return;
254 }
Chris Lattner0b12b5f2002-06-25 16:13:21 +0000255 } else if (const InvokeInst *II = dyn_cast<InvokeInst>(&I)) {// ... & Invokes
Chris Lattner9fcccb02002-06-05 17:49:40 +0000256 const PointerType *Ty = cast<PointerType>(II->getCalledValue()->getType());
Chris Lattner2aac6bf2002-04-04 22:19:18 +0000257 if (cast<FunctionType>(Ty->getElementType())->isVarArg()) {
Chris Lattner0fe56f42003-09-08 17:58:37 +0000258 outputInstrVarArgsCall(II, Opcode, Table, Type, Out);
Chris Lattneref9c23f2001-10-03 14:53:21 +0000259 return;
260 }
Chris Lattner09083092001-07-08 04:57:15 +0000261 }
Chris Lattner00950542001-06-06 20:29:01 +0000262
Chris Lattnera407ba12003-01-21 20:13:49 +0000263 ++NumInstrs;
264
Chris Lattner00950542001-06-06 20:29:01 +0000265 // Decide which instruction encoding to use. This is determined primarily by
266 // the number of operands, and secondarily by whether or not the max operand
267 // will fit into the instruction encoding. More operands == fewer bits per
268 // operand.
269 //
270 switch (NumOperands) {
271 case 0:
272 case 1:
273 if (MaxOpSlot < (1 << 12)-1) { // -1 because we use 4095 to indicate 0 ops
Chris Lattner0fe56f42003-09-08 17:58:37 +0000274 outputInstructionFormat1(&I, Opcode, Table, Slots, Type, Out);
Chris Lattnere8fdde12001-09-07 16:39:41 +0000275 return;
Chris Lattner00950542001-06-06 20:29:01 +0000276 }
277 break;
278
279 case 2:
280 if (MaxOpSlot < (1 << 8)) {
Chris Lattner0fe56f42003-09-08 17:58:37 +0000281 outputInstructionFormat2(&I, Opcode, Table, Slots, Type, Out);
Chris Lattnere8fdde12001-09-07 16:39:41 +0000282 return;
Chris Lattner00950542001-06-06 20:29:01 +0000283 }
284 break;
285
286 case 3:
287 if (MaxOpSlot < (1 << 6)) {
Chris Lattner0fe56f42003-09-08 17:58:37 +0000288 outputInstructionFormat3(&I, Opcode, Table, Slots, Type, Out);
Chris Lattnere8fdde12001-09-07 16:39:41 +0000289 return;
Chris Lattner00950542001-06-06 20:29:01 +0000290 }
291 break;
292 }
293
Chris Lattnerab5ac6b2001-07-08 23:22:50 +0000294 // If we weren't handled before here, we either have a large number of
Misha Brukman37f92e22003-09-11 22:34:13 +0000295 // operands or a large operand index that we are referring to.
Chris Lattner0fe56f42003-09-08 17:58:37 +0000296 outputInstructionFormat0(&I, Opcode, Table, Type, Out);
Chris Lattner00950542001-06-06 20:29:01 +0000297}