blob: bb0a07229ab7e5f03e43e61eae9109243ec3d78a [file] [log] [blame]
Ben Murdochb0fe1622011-05-05 13:52:32 +01001// Copyright 2010 the V8 project authors. All rights reserved.
Steve Blocka7e24c12009-10-30 11:49:00 +00002// Redistribution and use in source and binary forms, with or without
3// modification, are permitted provided that the following conditions are
4// met:
5//
6// * Redistributions of source code must retain the above copyright
7// notice, this list of conditions and the following disclaimer.
8// * Redistributions in binary form must reproduce the above
9// copyright notice, this list of conditions and the following
10// disclaimer in the documentation and/or other materials provided
11// with the distribution.
12// * Neither the name of Google Inc. nor the names of its
13// contributors may be used to endorse or promote products derived
14// from this software without specific prior written permission.
15//
16// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
17// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
18// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
19// A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
20// OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
21// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
22// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
23// DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
24// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
25// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
26// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
27
28#include "v8.h"
29
30#include "code-stubs.h"
31#include "codegen-inl.h"
32#include "debug.h"
Ben Murdochb0fe1622011-05-05 13:52:32 +010033#include "deoptimizer.h"
Steve Blocka7e24c12009-10-30 11:49:00 +000034#include "disasm.h"
35#include "disassembler.h"
36#include "macro-assembler.h"
37#include "serialize.h"
38#include "string-stream.h"
39
40namespace v8 {
41namespace internal {
42
43#ifdef ENABLE_DISASSEMBLER
44
45void Disassembler::Dump(FILE* f, byte* begin, byte* end) {
46 for (byte* pc = begin; pc < end; pc++) {
47 if (f == NULL) {
Ben Murdochf87a2032010-10-22 12:50:53 +010048 PrintF("%" V8PRIxPTR " %4" V8PRIdPTR " %02x\n",
49 reinterpret_cast<intptr_t>(pc),
50 pc - begin,
51 *pc);
Steve Blocka7e24c12009-10-30 11:49:00 +000052 } else {
53 fprintf(f, "%" V8PRIxPTR " %4" V8PRIdPTR " %02x\n",
54 reinterpret_cast<uintptr_t>(pc), pc - begin, *pc);
55 }
56 }
57}
58
59
60class V8NameConverter: public disasm::NameConverter {
61 public:
62 explicit V8NameConverter(Code* code) : code_(code) {}
63 virtual const char* NameOfAddress(byte* pc) const;
64 virtual const char* NameInCode(byte* addr) const;
65 Code* code() const { return code_; }
66 private:
67 Code* code_;
68};
69
70
71const char* V8NameConverter::NameOfAddress(byte* pc) const {
72 static v8::internal::EmbeddedVector<char, 128> buffer;
73
74 const char* name = Builtins::Lookup(pc);
75 if (name != NULL) {
76 OS::SNPrintF(buffer, "%s (%p)", name, pc);
77 return buffer.start();
78 }
79
80 if (code_ != NULL) {
Steve Blockd0582a62009-12-15 09:54:21 +000081 int offs = static_cast<int>(pc - code_->instruction_start());
Steve Blocka7e24c12009-10-30 11:49:00 +000082 // print as code offset, if it seems reasonable
83 if (0 <= offs && offs < code_->instruction_size()) {
84 OS::SNPrintF(buffer, "%d (%p)", offs, pc);
85 return buffer.start();
86 }
87 }
88
89 return disasm::NameConverter::NameOfAddress(pc);
90}
91
92
93const char* V8NameConverter::NameInCode(byte* addr) const {
94 // The V8NameConverter is used for well known code, so we can "safely"
95 // dereference pointers in generated code.
96 return (code_ != NULL) ? reinterpret_cast<const char*>(addr) : "";
97}
98
99
100static void DumpBuffer(FILE* f, char* buff) {
101 if (f == NULL) {
102 PrintF("%s", buff);
103 } else {
104 fprintf(f, "%s", buff);
105 }
106}
107
108static const int kOutBufferSize = 2048 + String::kMaxShortPrintLength;
109static const int kRelocInfoPosition = 57;
110
111static int DecodeIt(FILE* f,
112 const V8NameConverter& converter,
113 byte* begin,
114 byte* end) {
115 NoHandleAllocation ha;
116 AssertNoAllocation no_alloc;
117 ExternalReferenceEncoder ref_encoder;
118
119 v8::internal::EmbeddedVector<char, 128> decode_buffer;
120 v8::internal::EmbeddedVector<char, kOutBufferSize> out_buffer;
121 byte* pc = begin;
122 disasm::Disassembler d(converter);
123 RelocIterator* it = NULL;
124 if (converter.code() != NULL) {
125 it = new RelocIterator(converter.code());
126 } else {
127 // No relocation information when printing code stubs.
128 }
129 int constants = -1; // no constants being decoded at the start
130
131 while (pc < end) {
132 // First decode instruction so that we know its length.
133 byte* prev_pc = pc;
134 if (constants > 0) {
135 OS::SNPrintF(decode_buffer,
136 "%08x constant",
137 *reinterpret_cast<int32_t*>(pc));
138 constants--;
139 pc += 4;
140 } else {
141 int num_const = d.ConstantPoolSizeAt(pc);
142 if (num_const >= 0) {
143 OS::SNPrintF(decode_buffer,
144 "%08x constant pool begin",
145 *reinterpret_cast<int32_t*>(pc));
146 constants = num_const;
147 pc += 4;
148 } else if (it != NULL && !it->done() && it->rinfo()->pc() == pc &&
149 it->rinfo()->rmode() == RelocInfo::INTERNAL_REFERENCE) {
150 // raw pointer embedded in code stream, e.g., jump table
151 byte* ptr = *reinterpret_cast<byte**>(pc);
152 OS::SNPrintF(decode_buffer,
153 "%08" V8PRIxPTR " jump table entry %4" V8PRIdPTR,
154 ptr,
155 ptr - begin);
156 pc += 4;
157 } else {
158 decode_buffer[0] = '\0';
159 pc += d.InstructionDecode(decode_buffer, pc);
160 }
161 }
162
163 // Collect RelocInfo for this instruction (prev_pc .. pc-1)
164 List<const char*> comments(4);
165 List<byte*> pcs(1);
166 List<RelocInfo::Mode> rmodes(1);
167 List<intptr_t> datas(1);
168 if (it != NULL) {
169 while (!it->done() && it->rinfo()->pc() < pc) {
170 if (RelocInfo::IsComment(it->rinfo()->rmode())) {
171 // For comments just collect the text.
172 comments.Add(reinterpret_cast<const char*>(it->rinfo()->data()));
173 } else {
174 // For other reloc info collect all data.
175 pcs.Add(it->rinfo()->pc());
176 rmodes.Add(it->rinfo()->rmode());
177 datas.Add(it->rinfo()->data());
178 }
179 it->next();
180 }
181 }
182
183 StringBuilder out(out_buffer.start(), out_buffer.length());
184
185 // Comments.
186 for (int i = 0; i < comments.length(); i++) {
187 out.AddFormatted(" %s\n", comments[i]);
188 }
189
190 // Write out comments, resets outp so that we can format the next line.
191 DumpBuffer(f, out.Finalize());
192 out.Reset();
193
194 // Instruction address and instruction offset.
195 out.AddFormatted("%p %4d ", prev_pc, prev_pc - begin);
196
197 // Instruction.
198 out.AddFormatted("%s", decode_buffer.start());
199
200 // Print all the reloc info for this instruction which are not comments.
201 for (int i = 0; i < pcs.length(); i++) {
202 // Put together the reloc info
203 RelocInfo relocinfo(pcs[i], rmodes[i], datas[i]);
204
205 // Indent the printing of the reloc info.
206 if (i == 0) {
207 // The first reloc info is printed after the disassembled instruction.
208 out.AddPadding(' ', kRelocInfoPosition - out.position());
209 } else {
210 // Additional reloc infos are printed on separate lines.
211 out.AddFormatted("\n");
212 out.AddPadding(' ', kRelocInfoPosition);
213 }
214
215 RelocInfo::Mode rmode = relocinfo.rmode();
216 if (RelocInfo::IsPosition(rmode)) {
217 if (RelocInfo::IsStatementPosition(rmode)) {
218 out.AddFormatted(" ;; debug: statement %d", relocinfo.data());
219 } else {
220 out.AddFormatted(" ;; debug: position %d", relocinfo.data());
221 }
222 } else if (rmode == RelocInfo::EMBEDDED_OBJECT) {
223 HeapStringAllocator allocator;
224 StringStream accumulator(&allocator);
225 relocinfo.target_object()->ShortPrint(&accumulator);
226 SmartPointer<const char> obj_name = accumulator.ToCString();
227 out.AddFormatted(" ;; object: %s", *obj_name);
228 } else if (rmode == RelocInfo::EXTERNAL_REFERENCE) {
229 const char* reference_name =
230 ref_encoder.NameOfAddress(*relocinfo.target_reference_address());
231 out.AddFormatted(" ;; external reference (%s)", reference_name);
232 } else if (RelocInfo::IsCodeTarget(rmode)) {
233 out.AddFormatted(" ;; code:");
234 if (rmode == RelocInfo::CONSTRUCT_CALL) {
235 out.AddFormatted(" constructor,");
236 }
237 Code* code = Code::GetCodeFromTargetAddress(relocinfo.target_address());
238 Code::Kind kind = code->kind();
239 if (code->is_inline_cache_stub()) {
240 if (rmode == RelocInfo::CODE_TARGET_CONTEXT) {
241 out.AddFormatted(" contextual,");
242 }
243 InlineCacheState ic_state = code->ic_state();
244 out.AddFormatted(" %s, %s", Code::Kind2String(kind),
245 Code::ICState2String(ic_state));
246 if (ic_state == MONOMORPHIC) {
247 PropertyType type = code->type();
248 out.AddFormatted(", %s", Code::PropertyType2String(type));
249 }
250 if (code->ic_in_loop() == IN_LOOP) {
251 out.AddFormatted(", in_loop");
252 }
Ben Murdoch7f4d5bd2010-06-15 11:15:29 +0100253 if (kind == Code::CALL_IC || kind == Code::KEYED_CALL_IC) {
Steve Blocka7e24c12009-10-30 11:49:00 +0000254 out.AddFormatted(", argc = %d", code->arguments_count());
255 }
256 } else if (kind == Code::STUB) {
257 // Reverse lookup required as the minor key cannot be retrieved
258 // from the code object.
259 Object* obj = Heap::code_stubs()->SlowReverseLookup(code);
260 if (obj != Heap::undefined_value()) {
261 ASSERT(obj->IsSmi());
262 // Get the STUB key and extract major and minor key.
263 uint32_t key = Smi::cast(obj)->value();
264 uint32_t minor_key = CodeStub::MinorKeyFromKey(key);
Kristian Monsen80d68ea2010-09-08 11:05:35 +0100265 CodeStub::Major major_key = CodeStub::GetMajorKey(code);
266 ASSERT(major_key == CodeStub::MajorKeyFromKey(key));
Steve Blocka7e24c12009-10-30 11:49:00 +0000267 out.AddFormatted(" %s, %s, ",
268 Code::Kind2String(kind),
Kristian Monsen80d68ea2010-09-08 11:05:35 +0100269 CodeStub::MajorName(major_key, false));
270 switch (major_key) {
Steve Blocka7e24c12009-10-30 11:49:00 +0000271 case CodeStub::CallFunction:
272 out.AddFormatted("argc = %d", minor_key);
273 break;
Leon Clarke4515c472010-02-03 11:58:03 +0000274 default:
Steve Blocka7e24c12009-10-30 11:49:00 +0000275 out.AddFormatted("minor: %d", minor_key);
276 }
277 }
278 } else {
279 out.AddFormatted(" %s", Code::Kind2String(kind));
280 }
Ben Murdochb0fe1622011-05-05 13:52:32 +0100281 } else if (rmode == RelocInfo::RUNTIME_ENTRY) {
282 // A runtime entry reloinfo might be a deoptimization bailout.
283 Address addr = relocinfo.target_address();
284 int id = Deoptimizer::GetDeoptimizationId(addr, Deoptimizer::EAGER);
285 if (id == Deoptimizer::kNotDeoptimizationEntry) {
286 out.AddFormatted(" ;; %s", RelocInfo::RelocModeName(rmode));
287 } else {
288 out.AddFormatted(" ;; deoptimization bailout %d", id);
289 }
Steve Blocka7e24c12009-10-30 11:49:00 +0000290 } else {
291 out.AddFormatted(" ;; %s", RelocInfo::RelocModeName(rmode));
292 }
293 }
294 out.AddString("\n");
295 DumpBuffer(f, out.Finalize());
296 out.Reset();
297 }
298
299 delete it;
Steve Blockd0582a62009-12-15 09:54:21 +0000300 return static_cast<int>(pc - begin);
Steve Blocka7e24c12009-10-30 11:49:00 +0000301}
302
303
304int Disassembler::Decode(FILE* f, byte* begin, byte* end) {
305 V8NameConverter defaultConverter(NULL);
306 return DecodeIt(f, defaultConverter, begin, end);
307}
308
309
310// Called by Code::CodePrint.
311void Disassembler::Decode(FILE* f, Code* code) {
Ben Murdochb0fe1622011-05-05 13:52:32 +0100312 int decode_size = (code->kind() == Code::OPTIMIZED_FUNCTION)
313 ? static_cast<int>(code->safepoint_table_start())
314 : code->instruction_size();
315 // If there might be a stack check table, stop before reaching it.
316 if (code->kind() == Code::FUNCTION) {
317 decode_size =
318 Min(decode_size, static_cast<int>(code->stack_check_table_start()));
319 }
320
321 byte* begin = code->instruction_start();
322 byte* end = begin + decode_size;
Steve Blocka7e24c12009-10-30 11:49:00 +0000323 V8NameConverter v8NameConverter(code);
324 DecodeIt(f, v8NameConverter, begin, end);
325}
326
327#else // ENABLE_DISASSEMBLER
328
329void Disassembler::Dump(FILE* f, byte* begin, byte* end) {}
330int Disassembler::Decode(FILE* f, byte* begin, byte* end) { return 0; }
331void Disassembler::Decode(FILE* f, Code* code) {}
332
333#endif // ENABLE_DISASSEMBLER
334
335} } // namespace v8::internal