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yangguo@chromium.org78d1ad42012-02-09 13:53:47 +00001// Copyright 2012 the V8 project authors. All rights reserved.
ricow@chromium.org65fae842010-08-25 15:26:24 +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
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11// with the distribution.
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15//
16// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
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22// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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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#if defined(V8_TARGET_ARCH_IA32)
31
32#include "bootstrapper.h"
vegorov@chromium.org7304bca2011-05-16 12:14:13 +000033#include "code-stubs.h"
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +000034#include "isolate.h"
vegorov@chromium.org7304bca2011-05-16 12:14:13 +000035#include "jsregexp.h"
ricow@chromium.org65fae842010-08-25 15:26:24 +000036#include "regexp-macro-assembler.h"
erik.corry@gmail.com394dbcf2011-10-27 07:38:48 +000037#include "stub-cache.h"
erikcorry0ad885c2011-11-21 13:51:57 +000038#include "codegen.h"
ricow@chromium.org65fae842010-08-25 15:26:24 +000039
40namespace v8 {
41namespace internal {
42
43#define __ ACCESS_MASM(masm)
whesse@chromium.org7a392b32011-01-31 11:30:36 +000044
45void ToNumberStub::Generate(MacroAssembler* masm) {
46 // The ToNumber stub takes one argument in eax.
karlklose@chromium.org83a47282011-05-11 11:54:09 +000047 Label check_heap_number, call_builtin;
whesse@chromium.org7b260152011-06-20 15:33:18 +000048 __ JumpIfNotSmi(eax, &check_heap_number, Label::kNear);
whesse@chromium.org7a392b32011-01-31 11:30:36 +000049 __ ret(0);
50
51 __ bind(&check_heap_number);
52 __ mov(ebx, FieldOperand(eax, HeapObject::kMapOffset));
fschneider@chromium.org7979bbb2011-03-28 10:47:03 +000053 Factory* factory = masm->isolate()->factory();
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +000054 __ cmp(ebx, Immediate(factory->heap_number_map()));
karlklose@chromium.org83a47282011-05-11 11:54:09 +000055 __ j(not_equal, &call_builtin, Label::kNear);
whesse@chromium.org7a392b32011-01-31 11:30:36 +000056 __ ret(0);
57
58 __ bind(&call_builtin);
59 __ pop(ecx); // Pop return address.
60 __ push(eax);
61 __ push(ecx); // Push return address.
62 __ InvokeBuiltin(Builtins::TO_NUMBER, JUMP_FUNCTION);
63}
64
65
ricow@chromium.org65fae842010-08-25 15:26:24 +000066void FastNewClosureStub::Generate(MacroAssembler* masm) {
67 // Create a new closure from the given function info in new
68 // space. Set the context to the current context in esi.
yangguo@chromium.org5a11aaf2012-06-20 11:29:00 +000069 Counters* counters = masm->isolate()->counters();
70
ricow@chromium.org65fae842010-08-25 15:26:24 +000071 Label gc;
72 __ AllocateInNewSpace(JSFunction::kSize, eax, ebx, ecx, &gc, TAG_OBJECT);
73
yangguo@chromium.org5a11aaf2012-06-20 11:29:00 +000074 __ IncrementCounter(counters->fast_new_closure_total(), 1);
75
ricow@chromium.org65fae842010-08-25 15:26:24 +000076 // Get the function info from the stack.
77 __ mov(edx, Operand(esp, 1 * kPointerSize));
78
mstarzinger@chromium.org1b3afd12011-11-29 14:28:56 +000079 int map_index = (language_mode_ == CLASSIC_MODE)
80 ? Context::FUNCTION_MAP_INDEX
81 : Context::STRICT_MODE_FUNCTION_MAP_INDEX;
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +000082
yangguo@chromium.org46839fb2012-08-28 09:06:19 +000083 // Compute the function map in the current native context and set that
ricow@chromium.org65fae842010-08-25 15:26:24 +000084 // as the map of the allocated object.
yangguo@chromium.org46839fb2012-08-28 09:06:19 +000085 __ mov(ecx, Operand(esi, Context::SlotOffset(Context::GLOBAL_OBJECT_INDEX)));
86 __ mov(ecx, FieldOperand(ecx, GlobalObject::kNativeContextOffset));
yangguo@chromium.org5a11aaf2012-06-20 11:29:00 +000087 __ mov(ebx, Operand(ecx, Context::SlotOffset(map_index)));
88 __ mov(FieldOperand(eax, JSObject::kMapOffset), ebx);
ricow@chromium.org65fae842010-08-25 15:26:24 +000089
90 // Initialize the rest of the function. We don't have to update the
91 // write barrier because the allocated object is in new space.
fschneider@chromium.org7979bbb2011-03-28 10:47:03 +000092 Factory* factory = masm->isolate()->factory();
93 __ mov(ebx, Immediate(factory->empty_fixed_array()));
ricow@chromium.org65fae842010-08-25 15:26:24 +000094 __ mov(FieldOperand(eax, JSObject::kPropertiesOffset), ebx);
95 __ mov(FieldOperand(eax, JSObject::kElementsOffset), ebx);
96 __ mov(FieldOperand(eax, JSFunction::kPrototypeOrInitialMapOffset),
fschneider@chromium.org7979bbb2011-03-28 10:47:03 +000097 Immediate(factory->the_hole_value()));
ricow@chromium.org65fae842010-08-25 15:26:24 +000098 __ mov(FieldOperand(eax, JSFunction::kSharedFunctionInfoOffset), edx);
99 __ mov(FieldOperand(eax, JSFunction::kContextOffset), esi);
100 __ mov(FieldOperand(eax, JSFunction::kLiteralsOffset), ebx);
101
102 // Initialize the code pointer in the function to be the one
103 // found in the shared function info object.
yangguo@chromium.org5a11aaf2012-06-20 11:29:00 +0000104 // But first check if there is an optimized version for our context.
105 Label check_optimized;
106 Label install_unoptimized;
107 if (FLAG_cache_optimized_code) {
108 __ mov(ebx, FieldOperand(edx, SharedFunctionInfo::kOptimizedCodeMapOffset));
109 __ test(ebx, ebx);
110 __ j(not_zero, &check_optimized, Label::kNear);
111 }
112 __ bind(&install_unoptimized);
113 __ mov(FieldOperand(eax, JSFunction::kNextFunctionLinkOffset),
114 Immediate(factory->undefined_value()));
ricow@chromium.org65fae842010-08-25 15:26:24 +0000115 __ mov(edx, FieldOperand(edx, SharedFunctionInfo::kCodeOffset));
116 __ lea(edx, FieldOperand(edx, Code::kHeaderSize));
117 __ mov(FieldOperand(eax, JSFunction::kCodeEntryOffset), edx);
118
119 // Return and remove the on-stack parameter.
120 __ ret(1 * kPointerSize);
121
yangguo@chromium.org5a11aaf2012-06-20 11:29:00 +0000122 __ bind(&check_optimized);
123
124 __ IncrementCounter(counters->fast_new_closure_try_optimized(), 1);
125
yangguo@chromium.org46839fb2012-08-28 09:06:19 +0000126 // ecx holds native context, ebx points to fixed array of 3-element entries
127 // (native context, optimized code, literals).
yangguo@chromium.org5a11aaf2012-06-20 11:29:00 +0000128 // Map must never be empty, so check the first elements.
129 Label install_optimized;
130 // Speculatively move code object into edx.
131 __ mov(edx, FieldOperand(ebx, FixedArray::kHeaderSize + kPointerSize));
132 __ cmp(ecx, FieldOperand(ebx, FixedArray::kHeaderSize));
133 __ j(equal, &install_optimized);
134
135 // Iterate through the rest of map backwards. edx holds an index as a Smi.
136 Label loop;
137 Label restore;
138 __ mov(edx, FieldOperand(ebx, FixedArray::kLengthOffset));
139 __ bind(&loop);
140 // Do not double check first entry.
141 __ cmp(edx, Immediate(Smi::FromInt(SharedFunctionInfo::kEntryLength)));
142 __ j(equal, &restore);
143 __ sub(edx, Immediate(Smi::FromInt(
144 SharedFunctionInfo::kEntryLength))); // Skip an entry.
145 __ cmp(ecx, CodeGenerator::FixedArrayElementOperand(ebx, edx, 0));
146 __ j(not_equal, &loop, Label::kNear);
147 // Hit: fetch the optimized code.
148 __ mov(edx, CodeGenerator::FixedArrayElementOperand(ebx, edx, 1));
149
150 __ bind(&install_optimized);
151 __ IncrementCounter(counters->fast_new_closure_install_optimized(), 1);
152
153 // TODO(fschneider): Idea: store proper code pointers in the optimized code
154 // map and either unmangle them on marking or do nothing as the whole map is
155 // discarded on major GC anyway.
156 __ lea(edx, FieldOperand(edx, Code::kHeaderSize));
157 __ mov(FieldOperand(eax, JSFunction::kCodeEntryOffset), edx);
158
159 // Now link a function into a list of optimized functions.
160 __ mov(edx, ContextOperand(ecx, Context::OPTIMIZED_FUNCTIONS_LIST));
161
162 __ mov(FieldOperand(eax, JSFunction::kNextFunctionLinkOffset), edx);
163 // No need for write barrier as JSFunction (eax) is in the new space.
164
165 __ mov(ContextOperand(ecx, Context::OPTIMIZED_FUNCTIONS_LIST), eax);
166 // Store JSFunction (eax) into edx before issuing write barrier as
167 // it clobbers all the registers passed.
168 __ mov(edx, eax);
169 __ RecordWriteContextSlot(
170 ecx,
171 Context::SlotOffset(Context::OPTIMIZED_FUNCTIONS_LIST),
172 edx,
173 ebx,
174 kDontSaveFPRegs);
175
176 // Return and remove the on-stack parameter.
177 __ ret(1 * kPointerSize);
178
179 __ bind(&restore);
180 // Restore SharedFunctionInfo into edx.
181 __ mov(edx, Operand(esp, 1 * kPointerSize));
182 __ jmp(&install_unoptimized);
183
ricow@chromium.org65fae842010-08-25 15:26:24 +0000184 // Create a new closure through the slower runtime call.
185 __ bind(&gc);
186 __ pop(ecx); // Temporarily remove return address.
187 __ pop(edx);
188 __ push(esi);
189 __ push(edx);
fschneider@chromium.org7979bbb2011-03-28 10:47:03 +0000190 __ push(Immediate(factory->false_value()));
ricow@chromium.org65fae842010-08-25 15:26:24 +0000191 __ push(ecx); // Restore return address.
vegorov@chromium.org21b5e952010-11-23 10:24:40 +0000192 __ TailCallRuntime(Runtime::kNewClosure, 3, 1);
ricow@chromium.org65fae842010-08-25 15:26:24 +0000193}
194
195
196void FastNewContextStub::Generate(MacroAssembler* masm) {
197 // Try to allocate the context in new space.
198 Label gc;
ager@chromium.org0ee099b2011-01-25 14:06:47 +0000199 int length = slots_ + Context::MIN_CONTEXT_SLOTS;
200 __ AllocateInNewSpace((length * kPointerSize) + FixedArray::kHeaderSize,
ricow@chromium.org65fae842010-08-25 15:26:24 +0000201 eax, ebx, ecx, &gc, TAG_OBJECT);
202
203 // Get the function from the stack.
204 __ mov(ecx, Operand(esp, 1 * kPointerSize));
205
erik.corry@gmail.comf2038fb2012-01-16 11:42:08 +0000206 // Set up the object header.
fschneider@chromium.org7979bbb2011-03-28 10:47:03 +0000207 Factory* factory = masm->isolate()->factory();
svenpanne@chromium.org6d786c92011-06-15 10:58:27 +0000208 __ mov(FieldOperand(eax, HeapObject::kMapOffset),
209 factory->function_context_map());
ricow@chromium.org65fae842010-08-25 15:26:24 +0000210 __ mov(FieldOperand(eax, Context::kLengthOffset),
ager@chromium.org0ee099b2011-01-25 14:06:47 +0000211 Immediate(Smi::FromInt(length)));
ricow@chromium.org65fae842010-08-25 15:26:24 +0000212
erik.corry@gmail.comf2038fb2012-01-16 11:42:08 +0000213 // Set up the fixed slots.
lrn@chromium.org5d00b602011-01-05 09:51:43 +0000214 __ Set(ebx, Immediate(0)); // Set to NULL.
ricow@chromium.org65fae842010-08-25 15:26:24 +0000215 __ mov(Operand(eax, Context::SlotOffset(Context::CLOSURE_INDEX)), ecx);
svenpanne@chromium.org6d786c92011-06-15 10:58:27 +0000216 __ mov(Operand(eax, Context::SlotOffset(Context::PREVIOUS_INDEX)), esi);
ricow@chromium.org65fae842010-08-25 15:26:24 +0000217 __ mov(Operand(eax, Context::SlotOffset(Context::EXTENSION_INDEX)), ebx);
218
svenpanne@chromium.org6d786c92011-06-15 10:58:27 +0000219 // Copy the global object from the previous context.
yangguo@chromium.org46839fb2012-08-28 09:06:19 +0000220 __ mov(ebx, Operand(esi, Context::SlotOffset(Context::GLOBAL_OBJECT_INDEX)));
221 __ mov(Operand(eax, Context::SlotOffset(Context::GLOBAL_OBJECT_INDEX)), ebx);
ricow@chromium.org65fae842010-08-25 15:26:24 +0000222
223 // Initialize the rest of the slots to undefined.
fschneider@chromium.org7979bbb2011-03-28 10:47:03 +0000224 __ mov(ebx, factory->undefined_value());
ager@chromium.org0ee099b2011-01-25 14:06:47 +0000225 for (int i = Context::MIN_CONTEXT_SLOTS; i < length; i++) {
ricow@chromium.org65fae842010-08-25 15:26:24 +0000226 __ mov(Operand(eax, Context::SlotOffset(i)), ebx);
227 }
228
229 // Return and remove the on-stack parameter.
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +0000230 __ mov(esi, eax);
ricow@chromium.org65fae842010-08-25 15:26:24 +0000231 __ ret(1 * kPointerSize);
232
233 // Need to collect. Call into runtime system.
234 __ bind(&gc);
svenpanne@chromium.org6d786c92011-06-15 10:58:27 +0000235 __ TailCallRuntime(Runtime::kNewFunctionContext, 1, 1);
ricow@chromium.org65fae842010-08-25 15:26:24 +0000236}
237
238
svenpanne@chromium.orga8bb4d92011-10-10 13:20:40 +0000239void FastNewBlockContextStub::Generate(MacroAssembler* masm) {
240 // Stack layout on entry:
241 //
242 // [esp + (1 * kPointerSize)]: function
243 // [esp + (2 * kPointerSize)]: serialized scope info
244
245 // Try to allocate the context in new space.
246 Label gc;
247 int length = slots_ + Context::MIN_CONTEXT_SLOTS;
248 __ AllocateInNewSpace(FixedArray::SizeFor(length),
249 eax, ebx, ecx, &gc, TAG_OBJECT);
250
251 // Get the function or sentinel from the stack.
252 __ mov(ecx, Operand(esp, 1 * kPointerSize));
253
254 // Get the serialized scope info from the stack.
255 __ mov(ebx, Operand(esp, 2 * kPointerSize));
256
erik.corry@gmail.comf2038fb2012-01-16 11:42:08 +0000257 // Set up the object header.
svenpanne@chromium.orga8bb4d92011-10-10 13:20:40 +0000258 Factory* factory = masm->isolate()->factory();
259 __ mov(FieldOperand(eax, HeapObject::kMapOffset),
260 factory->block_context_map());
261 __ mov(FieldOperand(eax, Context::kLengthOffset),
262 Immediate(Smi::FromInt(length)));
263
yangguo@chromium.org46839fb2012-08-28 09:06:19 +0000264 // If this block context is nested in the native context we get a smi
svenpanne@chromium.orga8bb4d92011-10-10 13:20:40 +0000265 // sentinel instead of a function. The block context should get the
yangguo@chromium.org46839fb2012-08-28 09:06:19 +0000266 // canonical empty function of the native context as its closure which
svenpanne@chromium.orga8bb4d92011-10-10 13:20:40 +0000267 // we still have to look up.
268 Label after_sentinel;
269 __ JumpIfNotSmi(ecx, &after_sentinel, Label::kNear);
270 if (FLAG_debug_code) {
271 const char* message = "Expected 0 as a Smi sentinel";
272 __ cmp(ecx, 0);
273 __ Assert(equal, message);
274 }
275 __ mov(ecx, GlobalObjectOperand());
yangguo@chromium.org46839fb2012-08-28 09:06:19 +0000276 __ mov(ecx, FieldOperand(ecx, GlobalObject::kNativeContextOffset));
svenpanne@chromium.orga8bb4d92011-10-10 13:20:40 +0000277 __ mov(ecx, ContextOperand(ecx, Context::CLOSURE_INDEX));
278 __ bind(&after_sentinel);
279
erik.corry@gmail.comf2038fb2012-01-16 11:42:08 +0000280 // Set up the fixed slots.
svenpanne@chromium.orga8bb4d92011-10-10 13:20:40 +0000281 __ mov(ContextOperand(eax, Context::CLOSURE_INDEX), ecx);
282 __ mov(ContextOperand(eax, Context::PREVIOUS_INDEX), esi);
283 __ mov(ContextOperand(eax, Context::EXTENSION_INDEX), ebx);
284
285 // Copy the global object from the previous context.
yangguo@chromium.org46839fb2012-08-28 09:06:19 +0000286 __ mov(ebx, ContextOperand(esi, Context::GLOBAL_OBJECT_INDEX));
287 __ mov(ContextOperand(eax, Context::GLOBAL_OBJECT_INDEX), ebx);
svenpanne@chromium.orga8bb4d92011-10-10 13:20:40 +0000288
289 // Initialize the rest of the slots to the hole value.
290 if (slots_ == 1) {
291 __ mov(ContextOperand(eax, Context::MIN_CONTEXT_SLOTS),
292 factory->the_hole_value());
293 } else {
294 __ mov(ebx, factory->the_hole_value());
295 for (int i = 0; i < slots_; i++) {
296 __ mov(ContextOperand(eax, i + Context::MIN_CONTEXT_SLOTS), ebx);
297 }
298 }
299
300 // Return and remove the on-stack parameters.
301 __ mov(esi, eax);
302 __ ret(2 * kPointerSize);
303
304 // Need to collect. Call into runtime system.
305 __ bind(&gc);
306 __ TailCallRuntime(Runtime::kPushBlockContext, 2, 1);
307}
308
309
erikcorry0ad885c2011-11-21 13:51:57 +0000310static void GenerateFastCloneShallowArrayCommon(
311 MacroAssembler* masm,
312 int length,
313 FastCloneShallowArrayStub::Mode mode,
314 Label* fail) {
315 // Registers on entry:
ricow@chromium.org65fae842010-08-25 15:26:24 +0000316 //
erikcorry0ad885c2011-11-21 13:51:57 +0000317 // ecx: boilerplate literal array.
318 ASSERT(mode != FastCloneShallowArrayStub::CLONE_ANY_ELEMENTS);
ricow@chromium.org65fae842010-08-25 15:26:24 +0000319
320 // All sizes here are multiples of kPointerSize.
erik.corry@gmail.com394dbcf2011-10-27 07:38:48 +0000321 int elements_size = 0;
erikcorry0ad885c2011-11-21 13:51:57 +0000322 if (length > 0) {
323 elements_size = mode == FastCloneShallowArrayStub::CLONE_DOUBLE_ELEMENTS
324 ? FixedDoubleArray::SizeFor(length)
325 : FixedArray::SizeFor(length);
erik.corry@gmail.com394dbcf2011-10-27 07:38:48 +0000326 }
ricow@chromium.org65fae842010-08-25 15:26:24 +0000327 int size = JSArray::kSize + elements_size;
328
ricow@chromium.org65fae842010-08-25 15:26:24 +0000329 // Allocate both the JS array and the elements array in one big
330 // allocation. This avoids multiple limit checks.
erikcorry0ad885c2011-11-21 13:51:57 +0000331 __ AllocateInNewSpace(size, eax, ebx, edx, fail, TAG_OBJECT);
ricow@chromium.org65fae842010-08-25 15:26:24 +0000332
333 // Copy the JS array part.
334 for (int i = 0; i < JSArray::kSize; i += kPointerSize) {
erikcorry0ad885c2011-11-21 13:51:57 +0000335 if ((i != JSArray::kElementsOffset) || (length == 0)) {
ricow@chromium.org65fae842010-08-25 15:26:24 +0000336 __ mov(ebx, FieldOperand(ecx, i));
337 __ mov(FieldOperand(eax, i), ebx);
338 }
339 }
340
erikcorry0ad885c2011-11-21 13:51:57 +0000341 if (length > 0) {
ricow@chromium.org65fae842010-08-25 15:26:24 +0000342 // Get hold of the elements array of the boilerplate and setup the
343 // elements pointer in the resulting object.
344 __ mov(ecx, FieldOperand(ecx, JSArray::kElementsOffset));
345 __ lea(edx, Operand(eax, JSArray::kSize));
346 __ mov(FieldOperand(eax, JSArray::kElementsOffset), edx);
347
348 // Copy the elements array.
erikcorry0ad885c2011-11-21 13:51:57 +0000349 if (mode == FastCloneShallowArrayStub::CLONE_ELEMENTS) {
erik.corry@gmail.com394dbcf2011-10-27 07:38:48 +0000350 for (int i = 0; i < elements_size; i += kPointerSize) {
351 __ mov(ebx, FieldOperand(ecx, i));
352 __ mov(FieldOperand(edx, i), ebx);
353 }
354 } else {
erikcorry0ad885c2011-11-21 13:51:57 +0000355 ASSERT(mode == FastCloneShallowArrayStub::CLONE_DOUBLE_ELEMENTS);
erik.corry@gmail.com394dbcf2011-10-27 07:38:48 +0000356 int i;
357 for (i = 0; i < FixedDoubleArray::kHeaderSize; i += kPointerSize) {
358 __ mov(ebx, FieldOperand(ecx, i));
359 __ mov(FieldOperand(edx, i), ebx);
360 }
361 while (i < elements_size) {
362 __ fld_d(FieldOperand(ecx, i));
363 __ fstp_d(FieldOperand(edx, i));
364 i += kDoubleSize;
365 }
366 ASSERT(i == elements_size);
ricow@chromium.org65fae842010-08-25 15:26:24 +0000367 }
368 }
erikcorry0ad885c2011-11-21 13:51:57 +0000369}
ricow@chromium.org65fae842010-08-25 15:26:24 +0000370
erikcorry0ad885c2011-11-21 13:51:57 +0000371
372void FastCloneShallowArrayStub::Generate(MacroAssembler* masm) {
373 // Stack layout on entry:
374 //
375 // [esp + kPointerSize]: constant elements.
376 // [esp + (2 * kPointerSize)]: literal index.
377 // [esp + (3 * kPointerSize)]: literals array.
378
379 // Load boilerplate object into ecx and check if we need to create a
380 // boilerplate.
381 __ mov(ecx, Operand(esp, 3 * kPointerSize));
382 __ mov(eax, Operand(esp, 2 * kPointerSize));
383 STATIC_ASSERT(kPointerSize == 4);
384 STATIC_ASSERT(kSmiTagSize == 1);
385 STATIC_ASSERT(kSmiTag == 0);
386 __ mov(ecx, FieldOperand(ecx, eax, times_half_pointer_size,
387 FixedArray::kHeaderSize));
388 Factory* factory = masm->isolate()->factory();
389 __ cmp(ecx, factory->undefined_value());
390 Label slow_case;
391 __ j(equal, &slow_case);
392
393 FastCloneShallowArrayStub::Mode mode = mode_;
394 // ecx is boilerplate object.
395 if (mode == CLONE_ANY_ELEMENTS) {
396 Label double_elements, check_fast_elements;
397 __ mov(ebx, FieldOperand(ecx, JSArray::kElementsOffset));
398 __ CheckMap(ebx, factory->fixed_cow_array_map(),
399 &check_fast_elements, DONT_DO_SMI_CHECK);
400 GenerateFastCloneShallowArrayCommon(masm, 0,
401 COPY_ON_WRITE_ELEMENTS, &slow_case);
402 __ ret(3 * kPointerSize);
403
404 __ bind(&check_fast_elements);
405 __ CheckMap(ebx, factory->fixed_array_map(),
406 &double_elements, DONT_DO_SMI_CHECK);
407 GenerateFastCloneShallowArrayCommon(masm, length_,
408 CLONE_ELEMENTS, &slow_case);
409 __ ret(3 * kPointerSize);
410
411 __ bind(&double_elements);
412 mode = CLONE_DOUBLE_ELEMENTS;
413 // Fall through to generate the code to handle double elements.
414 }
415
416 if (FLAG_debug_code) {
417 const char* message;
418 Handle<Map> expected_map;
419 if (mode == CLONE_ELEMENTS) {
420 message = "Expected (writable) fixed array";
421 expected_map = factory->fixed_array_map();
422 } else if (mode == CLONE_DOUBLE_ELEMENTS) {
423 message = "Expected (writable) fixed double array";
424 expected_map = factory->fixed_double_array_map();
425 } else {
426 ASSERT(mode == COPY_ON_WRITE_ELEMENTS);
427 message = "Expected copy-on-write fixed array";
428 expected_map = factory->fixed_cow_array_map();
429 }
430 __ push(ecx);
431 __ mov(ecx, FieldOperand(ecx, JSArray::kElementsOffset));
432 __ cmp(FieldOperand(ecx, HeapObject::kMapOffset), expected_map);
433 __ Assert(equal, message);
434 __ pop(ecx);
435 }
436
437 GenerateFastCloneShallowArrayCommon(masm, length_, mode, &slow_case);
ricow@chromium.org65fae842010-08-25 15:26:24 +0000438 // Return and remove the on-stack parameters.
439 __ ret(3 * kPointerSize);
440
441 __ bind(&slow_case);
442 __ TailCallRuntime(Runtime::kCreateArrayLiteralShallow, 3, 1);
443}
444
445
mstarzinger@chromium.orgf8c6bd52011-11-23 12:13:52 +0000446void FastCloneShallowObjectStub::Generate(MacroAssembler* masm) {
447 // Stack layout on entry:
448 //
449 // [esp + kPointerSize]: object literal flags.
450 // [esp + (2 * kPointerSize)]: constant properties.
451 // [esp + (3 * kPointerSize)]: literal index.
452 // [esp + (4 * kPointerSize)]: literals array.
453
454 // Load boilerplate object into ecx and check if we need to create a
455 // boilerplate.
456 Label slow_case;
457 __ mov(ecx, Operand(esp, 4 * kPointerSize));
458 __ mov(eax, Operand(esp, 3 * kPointerSize));
459 STATIC_ASSERT(kPointerSize == 4);
460 STATIC_ASSERT(kSmiTagSize == 1);
461 STATIC_ASSERT(kSmiTag == 0);
462 __ mov(ecx, FieldOperand(ecx, eax, times_half_pointer_size,
463 FixedArray::kHeaderSize));
464 Factory* factory = masm->isolate()->factory();
465 __ cmp(ecx, factory->undefined_value());
466 __ j(equal, &slow_case);
467
468 // Check that the boilerplate contains only fast properties and we can
469 // statically determine the instance size.
470 int size = JSObject::kHeaderSize + length_ * kPointerSize;
471 __ mov(eax, FieldOperand(ecx, HeapObject::kMapOffset));
472 __ movzx_b(eax, FieldOperand(eax, Map::kInstanceSizeOffset));
473 __ cmp(eax, Immediate(size >> kPointerSizeLog2));
474 __ j(not_equal, &slow_case);
475
476 // Allocate the JS object and copy header together with all in-object
477 // properties from the boilerplate.
478 __ AllocateInNewSpace(size, eax, ebx, edx, &slow_case, TAG_OBJECT);
479 for (int i = 0; i < size; i += kPointerSize) {
480 __ mov(ebx, FieldOperand(ecx, i));
481 __ mov(FieldOperand(eax, i), ebx);
482 }
483
484 // Return and remove the on-stack parameters.
485 __ ret(4 * kPointerSize);
486
487 __ bind(&slow_case);
488 __ TailCallRuntime(Runtime::kCreateObjectLiteralShallow, 4, 1);
489}
490
491
ricow@chromium.org9fa09672011-07-25 11:05:35 +0000492// The stub expects its argument on the stack and returns its result in tos_:
493// zero for false, and a non-zero value for true.
ricow@chromium.org65fae842010-08-25 15:26:24 +0000494void ToBooleanStub::Generate(MacroAssembler* masm) {
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +0000495 // This stub overrides SometimesSetsUpAFrame() to return false. That means
496 // we cannot call anything that could cause a GC from this stub.
ricow@chromium.org9fa09672011-07-25 11:05:35 +0000497 Label patch;
ager@chromium.orgea91cc52011-05-23 06:06:11 +0000498 Factory* factory = masm->isolate()->factory();
ricow@chromium.org9fa09672011-07-25 11:05:35 +0000499 const Register argument = eax;
lrn@chromium.orgac2828d2011-06-23 06:29:21 +0000500 const Register map = edx;
501
ricow@chromium.org9fa09672011-07-25 11:05:35 +0000502 if (!types_.IsEmpty()) {
503 __ mov(argument, Operand(esp, 1 * kPointerSize));
504 }
ager@chromium.orgea91cc52011-05-23 06:06:11 +0000505
506 // undefined -> false
whesse@chromium.org4acdc2c2011-08-15 13:01:23 +0000507 CheckOddball(masm, UNDEFINED, Heap::kUndefinedValueRootIndex, false);
ager@chromium.orgea91cc52011-05-23 06:06:11 +0000508
509 // Boolean -> its value
whesse@chromium.org4acdc2c2011-08-15 13:01:23 +0000510 CheckOddball(masm, BOOLEAN, Heap::kFalseValueRootIndex, false);
511 CheckOddball(masm, BOOLEAN, Heap::kTrueValueRootIndex, true);
ricow@chromium.org65fae842010-08-25 15:26:24 +0000512
lrn@chromium.orgac2828d2011-06-23 06:29:21 +0000513 // 'null' -> false.
whesse@chromium.org4acdc2c2011-08-15 13:01:23 +0000514 CheckOddball(masm, NULL_TYPE, Heap::kNullValueRootIndex, false);
ricow@chromium.org65fae842010-08-25 15:26:24 +0000515
ricow@chromium.org9fa09672011-07-25 11:05:35 +0000516 if (types_.Contains(SMI)) {
517 // Smis: 0 -> false, all other -> true
518 Label not_smi;
519 __ JumpIfNotSmi(argument, &not_smi, Label::kNear);
whesse@chromium.org4acdc2c2011-08-15 13:01:23 +0000520 // argument contains the correct return value already.
ricow@chromium.org9fa09672011-07-25 11:05:35 +0000521 if (!tos_.is(argument)) {
522 __ mov(tos_, argument);
523 }
524 __ ret(1 * kPointerSize);
525 __ bind(&not_smi);
vegorov@chromium.org7943d462011-08-01 11:41:52 +0000526 } else if (types_.NeedsMap()) {
ricow@chromium.org9fa09672011-07-25 11:05:35 +0000527 // If we need a map later and have a Smi -> patch.
528 __ JumpIfSmi(argument, &patch, Label::kNear);
529 }
ricow@chromium.org65fae842010-08-25 15:26:24 +0000530
vegorov@chromium.org7943d462011-08-01 11:41:52 +0000531 if (types_.NeedsMap()) {
ricow@chromium.org9fa09672011-07-25 11:05:35 +0000532 __ mov(map, FieldOperand(argument, HeapObject::kMapOffset));
ricow@chromium.org65fae842010-08-25 15:26:24 +0000533
whesse@chromium.org4acdc2c2011-08-15 13:01:23 +0000534 if (types_.CanBeUndetectable()) {
535 __ test_b(FieldOperand(map, Map::kBitFieldOffset),
536 1 << Map::kIsUndetectable);
537 // Undetectable -> false.
538 Label not_undetectable;
539 __ j(zero, &not_undetectable, Label::kNear);
540 __ Set(tos_, Immediate(0));
541 __ ret(1 * kPointerSize);
542 __ bind(&not_undetectable);
543 }
ricow@chromium.org9fa09672011-07-25 11:05:35 +0000544 }
ricow@chromium.org65fae842010-08-25 15:26:24 +0000545
ricow@chromium.org9fa09672011-07-25 11:05:35 +0000546 if (types_.Contains(SPEC_OBJECT)) {
547 // spec object -> true.
548 Label not_js_object;
549 __ CmpInstanceType(map, FIRST_SPEC_OBJECT_TYPE);
550 __ j(below, &not_js_object, Label::kNear);
whesse@chromium.org4acdc2c2011-08-15 13:01:23 +0000551 // argument contains the correct return value already.
552 if (!tos_.is(argument)) {
553 __ Set(tos_, Immediate(1));
554 }
ricow@chromium.org9fa09672011-07-25 11:05:35 +0000555 __ ret(1 * kPointerSize);
556 __ bind(&not_js_object);
ricow@chromium.org9fa09672011-07-25 11:05:35 +0000557 }
ricow@chromium.org65fae842010-08-25 15:26:24 +0000558
ricow@chromium.org9fa09672011-07-25 11:05:35 +0000559 if (types_.Contains(STRING)) {
560 // String value -> false iff empty.
561 Label not_string;
562 __ CmpInstanceType(map, FIRST_NONSTRING_TYPE);
563 __ j(above_equal, &not_string, Label::kNear);
564 __ mov(tos_, FieldOperand(argument, String::kLengthOffset));
565 __ ret(1 * kPointerSize); // the string length is OK as the return value
566 __ bind(&not_string);
ricow@chromium.org9fa09672011-07-25 11:05:35 +0000567 }
568
569 if (types_.Contains(HEAP_NUMBER)) {
570 // heap number -> false iff +0, -0, or NaN.
571 Label not_heap_number, false_result;
572 __ cmp(map, factory->heap_number_map());
573 __ j(not_equal, &not_heap_number, Label::kNear);
574 __ fldz();
575 __ fld_d(FieldOperand(argument, HeapNumber::kValueOffset));
576 __ FCmp();
577 __ j(zero, &false_result, Label::kNear);
whesse@chromium.org4acdc2c2011-08-15 13:01:23 +0000578 // argument contains the correct return value already.
579 if (!tos_.is(argument)) {
580 __ Set(tos_, Immediate(1));
581 }
ricow@chromium.org9fa09672011-07-25 11:05:35 +0000582 __ ret(1 * kPointerSize);
583 __ bind(&false_result);
584 __ Set(tos_, Immediate(0));
585 __ ret(1 * kPointerSize);
586 __ bind(&not_heap_number);
ricow@chromium.org9fa09672011-07-25 11:05:35 +0000587 }
588
whesse@chromium.org4acdc2c2011-08-15 13:01:23 +0000589 __ bind(&patch);
590 GenerateTypeTransition(masm);
ricow@chromium.org9fa09672011-07-25 11:05:35 +0000591}
592
593
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +0000594void StoreBufferOverflowStub::Generate(MacroAssembler* masm) {
595 // We don't allow a GC during a store buffer overflow so there is no need to
596 // store the registers in any particular way, but we do have to store and
597 // restore them.
598 __ pushad();
599 if (save_doubles_ == kSaveFPRegs) {
600 CpuFeatures::Scope scope(SSE2);
601 __ sub(esp, Immediate(kDoubleSize * XMMRegister::kNumRegisters));
602 for (int i = 0; i < XMMRegister::kNumRegisters; i++) {
603 XMMRegister reg = XMMRegister::from_code(i);
604 __ movdbl(Operand(esp, i * kDoubleSize), reg);
605 }
606 }
607 const int argument_count = 1;
608
609 AllowExternalCallThatCantCauseGC scope(masm);
610 __ PrepareCallCFunction(argument_count, ecx);
611 __ mov(Operand(esp, 0 * kPointerSize),
612 Immediate(ExternalReference::isolate_address()));
613 __ CallCFunction(
614 ExternalReference::store_buffer_overflow_function(masm->isolate()),
615 argument_count);
616 if (save_doubles_ == kSaveFPRegs) {
617 CpuFeatures::Scope scope(SSE2);
618 for (int i = 0; i < XMMRegister::kNumRegisters; i++) {
619 XMMRegister reg = XMMRegister::from_code(i);
620 __ movdbl(reg, Operand(esp, i * kDoubleSize));
621 }
622 __ add(esp, Immediate(kDoubleSize * XMMRegister::kNumRegisters));
623 }
624 __ popad();
625 __ ret(0);
626}
627
628
ricow@chromium.org9fa09672011-07-25 11:05:35 +0000629void ToBooleanStub::CheckOddball(MacroAssembler* masm,
630 Type type,
lrn@chromium.orgd4e9e222011-08-03 12:01:58 +0000631 Heap::RootListIndex value,
whesse@chromium.org4acdc2c2011-08-15 13:01:23 +0000632 bool result) {
ricow@chromium.org9fa09672011-07-25 11:05:35 +0000633 const Register argument = eax;
634 if (types_.Contains(type)) {
635 // If we see an expected oddball, return its ToBoolean value tos_.
636 Label different_value;
lrn@chromium.orgd4e9e222011-08-03 12:01:58 +0000637 __ CompareRoot(argument, value);
ricow@chromium.org9fa09672011-07-25 11:05:35 +0000638 __ j(not_equal, &different_value, Label::kNear);
whesse@chromium.org4acdc2c2011-08-15 13:01:23 +0000639 if (!result) {
640 // If we have to return zero, there is no way around clearing tos_.
641 __ Set(tos_, Immediate(0));
642 } else if (!tos_.is(argument)) {
643 // If we have to return non-zero, we can re-use the argument if it is the
644 // same register as the result, because we never see Smi-zero here.
645 __ Set(tos_, Immediate(1));
646 }
ricow@chromium.org9fa09672011-07-25 11:05:35 +0000647 __ ret(1 * kPointerSize);
648 __ bind(&different_value);
ricow@chromium.org9fa09672011-07-25 11:05:35 +0000649 }
650}
651
652
653void ToBooleanStub::GenerateTypeTransition(MacroAssembler* masm) {
654 __ pop(ecx); // Get return address, operand is now on top of stack.
655 __ push(Immediate(Smi::FromInt(tos_.code())));
656 __ push(Immediate(Smi::FromInt(types_.ToByte())));
657 __ push(ecx); // Push return address.
658 // Patch the caller to an appropriate specialized stub and return the
659 // operation result to the caller of the stub.
660 __ TailCallExternalReference(
661 ExternalReference(IC_Utility(IC::kToBoolean_Patch), masm->isolate()),
662 3,
663 1);
ricow@chromium.org65fae842010-08-25 15:26:24 +0000664}
665
666
ricow@chromium.org65fae842010-08-25 15:26:24 +0000667class FloatingPointHelper : public AllStatic {
668 public:
ricow@chromium.org65fae842010-08-25 15:26:24 +0000669 enum ArgLocation {
670 ARGS_ON_STACK,
671 ARGS_IN_REGISTERS
672 };
673
674 // Code pattern for loading a floating point value. Input value must
675 // be either a smi or a heap number object (fp value). Requirements:
676 // operand in register number. Returns operand as floating point number
677 // on FPU stack.
678 static void LoadFloatOperand(MacroAssembler* masm, Register number);
679
680 // Code pattern for loading floating point values. Input values must
681 // be either smi or heap number objects (fp values). Requirements:
682 // operand_1 on TOS+1 or in edx, operand_2 on TOS+2 or in eax.
683 // Returns operands as floating point numbers on FPU stack.
684 static void LoadFloatOperands(MacroAssembler* masm,
685 Register scratch,
686 ArgLocation arg_location = ARGS_ON_STACK);
687
688 // Similar to LoadFloatOperand but assumes that both operands are smis.
689 // Expects operands in edx, eax.
690 static void LoadFloatSmis(MacroAssembler* masm, Register scratch);
691
692 // Test if operands are smi or number objects (fp). Requirements:
693 // operand_1 in eax, operand_2 in edx; falls through on float
694 // operands, jumps to the non_float label otherwise.
695 static void CheckFloatOperands(MacroAssembler* masm,
696 Label* non_float,
697 Register scratch);
698
kasperl@chromium.orga5551262010-12-07 12:49:48 +0000699 // Checks that the two floating point numbers on top of the FPU stack
700 // have int32 values.
701 static void CheckFloatOperandsAreInt32(MacroAssembler* masm,
702 Label* non_int32);
703
ricow@chromium.org65fae842010-08-25 15:26:24 +0000704 // Takes the operands in edx and eax and loads them as integers in eax
705 // and ecx.
ricow@chromium.org65fae842010-08-25 15:26:24 +0000706 static void LoadUnknownsAsIntegers(MacroAssembler* masm,
707 bool use_sse3,
708 Label* operand_conversion_failure);
709
kasperl@chromium.orga5551262010-12-07 12:49:48 +0000710 // Must only be called after LoadUnknownsAsIntegers. Assumes that the
711 // operands are pushed on the stack, and that their conversions to int32
712 // are in eax and ecx. Checks that the original numbers were in the int32
713 // range.
714 static void CheckLoadedIntegersWereInt32(MacroAssembler* masm,
715 bool use_sse3,
716 Label* not_int32);
717
718 // Assumes that operands are smis or heap numbers and loads them
719 // into xmm0 and xmm1. Operands are in edx and eax.
ricow@chromium.org65fae842010-08-25 15:26:24 +0000720 // Leaves operands unchanged.
721 static void LoadSSE2Operands(MacroAssembler* masm);
722
723 // Test if operands are numbers (smi or HeapNumber objects), and load
724 // them into xmm0 and xmm1 if they are. Jump to label not_numbers if
725 // either operand is not a number. Operands are in edx and eax.
726 // Leaves operands unchanged.
727 static void LoadSSE2Operands(MacroAssembler* masm, Label* not_numbers);
728
729 // Similar to LoadSSE2Operands but assumes that both operands are smis.
730 // Expects operands in edx, eax.
731 static void LoadSSE2Smis(MacroAssembler* masm, Register scratch);
kasperl@chromium.orga5551262010-12-07 12:49:48 +0000732
733 // Checks that the two floating point numbers loaded into xmm0 and xmm1
734 // have int32 values.
735 static void CheckSSE2OperandsAreInt32(MacroAssembler* masm,
736 Label* non_int32,
737 Register scratch);
yangguo@chromium.orgfb377212012-11-16 14:43:43 +0000738
739 static void CheckSSE2OperandIsInt32(MacroAssembler* masm,
740 Label* non_int32,
741 XMMRegister operand,
742 Register scratch,
743 XMMRegister xmm_scratch);
ricow@chromium.org65fae842010-08-25 15:26:24 +0000744};
745
746
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +0000747// Get the integer part of a heap number. Surprisingly, all this bit twiddling
748// is faster than using the built-in instructions on floating point registers.
749// Trashes edi and ebx. Dest is ecx. Source cannot be ecx or one of the
750// trashed registers.
751static void IntegerConvert(MacroAssembler* masm,
752 Register source,
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +0000753 bool use_sse3,
754 Label* conversion_failure) {
755 ASSERT(!source.is(ecx) && !source.is(edi) && !source.is(ebx));
756 Label done, right_exponent, normal_exponent;
757 Register scratch = ebx;
758 Register scratch2 = edi;
vegorov@chromium.org7304bca2011-05-16 12:14:13 +0000759 // Get exponent word.
760 __ mov(scratch, FieldOperand(source, HeapNumber::kExponentOffset));
761 // Get exponent alone in scratch2.
762 __ mov(scratch2, scratch);
763 __ and_(scratch2, HeapNumber::kExponentMask);
yangguo@chromium.orgfb377212012-11-16 14:43:43 +0000764 __ shr(scratch2, HeapNumber::kExponentShift);
765 __ sub(scratch2, Immediate(HeapNumber::kExponentBias));
766 // Load ecx with zero. We use this either for the final shift or
767 // for the answer.
768 __ xor_(ecx, ecx);
769 // If the exponent is above 83, the number contains no significant
770 // bits in the range 0..2^31, so the result is zero.
771 static const uint32_t kResultIsZeroExponent = 83;
772 __ cmp(scratch2, Immediate(kResultIsZeroExponent));
773 __ j(above, &done);
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +0000774 if (use_sse3) {
775 CpuFeatures::Scope scope(SSE3);
vegorov@chromium.org7304bca2011-05-16 12:14:13 +0000776 // Check whether the exponent is too big for a 64 bit signed integer.
yangguo@chromium.orgfb377212012-11-16 14:43:43 +0000777 static const uint32_t kTooBigExponent = 63;
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +0000778 __ cmp(scratch2, Immediate(kTooBigExponent));
vegorov@chromium.org7304bca2011-05-16 12:14:13 +0000779 __ j(greater_equal, conversion_failure);
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +0000780 // Load x87 register with heap number.
781 __ fld_d(FieldOperand(source, HeapNumber::kValueOffset));
782 // Reserve space for 64 bit answer.
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +0000783 __ sub(esp, Immediate(sizeof(uint64_t))); // Nolint.
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +0000784 // Do conversion, which cannot fail because we checked the exponent.
785 __ fisttp_d(Operand(esp, 0));
786 __ mov(ecx, Operand(esp, 0)); // Load low word of answer into ecx.
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +0000787 __ add(esp, Immediate(sizeof(uint64_t))); // Nolint.
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +0000788 } else {
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +0000789 // Check whether the exponent matches a 32 bit signed int that cannot be
790 // represented by a Smi. A non-smi 32 bit integer is 1.xxx * 2^30 so the
791 // exponent is 30 (biased). This is the exponent that we are fastest at and
792 // also the highest exponent we can handle here.
yangguo@chromium.orgfb377212012-11-16 14:43:43 +0000793 const uint32_t non_smi_exponent = 30;
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +0000794 __ cmp(scratch2, Immediate(non_smi_exponent));
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +0000795 // If we have a match of the int32-but-not-Smi exponent then skip some
796 // logic.
ricow@chromium.org4668a2c2011-08-29 10:41:00 +0000797 __ j(equal, &right_exponent, Label::kNear);
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +0000798 // If the exponent is higher than that then go to slow case. This catches
799 // numbers that don't fit in a signed int32, infinities and NaNs.
ricow@chromium.org4668a2c2011-08-29 10:41:00 +0000800 __ j(less, &normal_exponent, Label::kNear);
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +0000801
802 {
803 // Handle a big exponent. The only reason we have this code is that the
804 // >>> operator has a tendency to generate numbers with an exponent of 31.
yangguo@chromium.orgfb377212012-11-16 14:43:43 +0000805 const uint32_t big_non_smi_exponent = 31;
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +0000806 __ cmp(scratch2, Immediate(big_non_smi_exponent));
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +0000807 __ j(not_equal, conversion_failure);
808 // We have the big exponent, typically from >>>. This means the number is
809 // in the range 2^31 to 2^32 - 1. Get the top bits of the mantissa.
810 __ mov(scratch2, scratch);
811 __ and_(scratch2, HeapNumber::kMantissaMask);
812 // Put back the implicit 1.
813 __ or_(scratch2, 1 << HeapNumber::kExponentShift);
814 // Shift up the mantissa bits to take up the space the exponent used to
815 // take. We just orred in the implicit bit so that took care of one and
816 // we want to use the full unsigned range so we subtract 1 bit from the
817 // shift distance.
818 const int big_shift_distance = HeapNumber::kNonMantissaBitsInTopWord - 1;
819 __ shl(scratch2, big_shift_distance);
820 // Get the second half of the double.
821 __ mov(ecx, FieldOperand(source, HeapNumber::kMantissaOffset));
822 // Shift down 21 bits to get the most significant 11 bits or the low
823 // mantissa word.
824 __ shr(ecx, 32 - big_shift_distance);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +0000825 __ or_(ecx, scratch2);
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +0000826 // We have the answer in ecx, but we may need to negate it.
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +0000827 __ test(scratch, scratch);
ricow@chromium.org4668a2c2011-08-29 10:41:00 +0000828 __ j(positive, &done, Label::kNear);
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +0000829 __ neg(ecx);
ricow@chromium.org4668a2c2011-08-29 10:41:00 +0000830 __ jmp(&done, Label::kNear);
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +0000831 }
832
833 __ bind(&normal_exponent);
yangguo@chromium.orgfb377212012-11-16 14:43:43 +0000834 // Exponent word in scratch, exponent in scratch2. Zero in ecx.
835 // We know that 0 <= exponent < 30.
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +0000836 __ mov(ecx, Immediate(30));
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +0000837 __ sub(ecx, scratch2);
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +0000838
839 __ bind(&right_exponent);
840 // Here ecx is the shift, scratch is the exponent word.
841 // Get the top bits of the mantissa.
842 __ and_(scratch, HeapNumber::kMantissaMask);
843 // Put back the implicit 1.
844 __ or_(scratch, 1 << HeapNumber::kExponentShift);
845 // Shift up the mantissa bits to take up the space the exponent used to
846 // take. We have kExponentShift + 1 significant bits int he low end of the
847 // word. Shift them to the top bits.
848 const int shift_distance = HeapNumber::kNonMantissaBitsInTopWord - 2;
849 __ shl(scratch, shift_distance);
850 // Get the second half of the double. For some exponents we don't
851 // actually need this because the bits get shifted out again, but
852 // it's probably slower to test than just to do it.
853 __ mov(scratch2, FieldOperand(source, HeapNumber::kMantissaOffset));
854 // Shift down 22 bits to get the most significant 10 bits or the low
855 // mantissa word.
856 __ shr(scratch2, 32 - shift_distance);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +0000857 __ or_(scratch2, scratch);
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +0000858 // Move down according to the exponent.
859 __ shr_cl(scratch2);
860 // Now the unsigned answer is in scratch2. We need to move it to ecx and
861 // we may need to fix the sign.
karlklose@chromium.org83a47282011-05-11 11:54:09 +0000862 Label negative;
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +0000863 __ xor_(ecx, ecx);
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +0000864 __ cmp(ecx, FieldOperand(source, HeapNumber::kExponentOffset));
karlklose@chromium.org83a47282011-05-11 11:54:09 +0000865 __ j(greater, &negative, Label::kNear);
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +0000866 __ mov(ecx, scratch2);
karlklose@chromium.org83a47282011-05-11 11:54:09 +0000867 __ jmp(&done, Label::kNear);
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +0000868 __ bind(&negative);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +0000869 __ sub(ecx, scratch2);
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +0000870 }
yangguo@chromium.orgfb377212012-11-16 14:43:43 +0000871 __ bind(&done);
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +0000872}
873
874
whesse@chromium.org030d38e2011-07-13 13:23:34 +0000875void UnaryOpStub::PrintName(StringStream* stream) {
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +0000876 const char* op_name = Token::Name(op_);
877 const char* overwrite_name = NULL; // Make g++ happy.
878 switch (mode_) {
879 case UNARY_NO_OVERWRITE: overwrite_name = "Alloc"; break;
880 case UNARY_OVERWRITE: overwrite_name = "Overwrite"; break;
881 }
whesse@chromium.org030d38e2011-07-13 13:23:34 +0000882 stream->Add("UnaryOpStub_%s_%s_%s",
883 op_name,
884 overwrite_name,
885 UnaryOpIC::GetName(operand_type_));
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +0000886}
887
888
889// TODO(svenpanne): Use virtual functions instead of switch.
danno@chromium.org40cb8782011-05-25 07:58:50 +0000890void UnaryOpStub::Generate(MacroAssembler* masm) {
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +0000891 switch (operand_type_) {
danno@chromium.org40cb8782011-05-25 07:58:50 +0000892 case UnaryOpIC::UNINITIALIZED:
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +0000893 GenerateTypeTransition(masm);
894 break;
danno@chromium.org40cb8782011-05-25 07:58:50 +0000895 case UnaryOpIC::SMI:
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +0000896 GenerateSmiStub(masm);
897 break;
danno@chromium.org40cb8782011-05-25 07:58:50 +0000898 case UnaryOpIC::HEAP_NUMBER:
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +0000899 GenerateHeapNumberStub(masm);
900 break;
danno@chromium.org40cb8782011-05-25 07:58:50 +0000901 case UnaryOpIC::GENERIC:
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +0000902 GenerateGenericStub(masm);
903 break;
904 }
905}
906
907
danno@chromium.org40cb8782011-05-25 07:58:50 +0000908void UnaryOpStub::GenerateTypeTransition(MacroAssembler* masm) {
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +0000909 __ pop(ecx); // Save return address.
ricow@chromium.org4f693d62011-07-04 14:01:31 +0000910
911 __ push(eax); // the operand
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +0000912 __ push(Immediate(Smi::FromInt(op_)));
ricow@chromium.org4f693d62011-07-04 14:01:31 +0000913 __ push(Immediate(Smi::FromInt(mode_)));
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +0000914 __ push(Immediate(Smi::FromInt(operand_type_)));
915
916 __ push(ecx); // Push return address.
917
918 // Patch the caller to an appropriate specialized stub and return the
919 // operation result to the caller of the stub.
920 __ TailCallExternalReference(
ricow@chromium.org4f693d62011-07-04 14:01:31 +0000921 ExternalReference(IC_Utility(IC::kUnaryOp_Patch), masm->isolate()), 4, 1);
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +0000922}
923
924
925// TODO(svenpanne): Use virtual functions instead of switch.
danno@chromium.org40cb8782011-05-25 07:58:50 +0000926void UnaryOpStub::GenerateSmiStub(MacroAssembler* masm) {
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +0000927 switch (op_) {
928 case Token::SUB:
929 GenerateSmiStubSub(masm);
930 break;
931 case Token::BIT_NOT:
932 GenerateSmiStubBitNot(masm);
933 break;
934 default:
935 UNREACHABLE();
936 }
937}
938
939
danno@chromium.org40cb8782011-05-25 07:58:50 +0000940void UnaryOpStub::GenerateSmiStubSub(MacroAssembler* masm) {
karlklose@chromium.org83a47282011-05-11 11:54:09 +0000941 Label non_smi, undo, slow;
942 GenerateSmiCodeSub(masm, &non_smi, &undo, &slow,
943 Label::kNear, Label::kNear, Label::kNear);
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +0000944 __ bind(&undo);
945 GenerateSmiCodeUndo(masm);
946 __ bind(&non_smi);
947 __ bind(&slow);
948 GenerateTypeTransition(masm);
949}
950
951
danno@chromium.org40cb8782011-05-25 07:58:50 +0000952void UnaryOpStub::GenerateSmiStubBitNot(MacroAssembler* masm) {
karlklose@chromium.org83a47282011-05-11 11:54:09 +0000953 Label non_smi;
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +0000954 GenerateSmiCodeBitNot(masm, &non_smi);
955 __ bind(&non_smi);
956 GenerateTypeTransition(masm);
957}
958
959
danno@chromium.org40cb8782011-05-25 07:58:50 +0000960void UnaryOpStub::GenerateSmiCodeSub(MacroAssembler* masm,
961 Label* non_smi,
962 Label* undo,
963 Label* slow,
964 Label::Distance non_smi_near,
965 Label::Distance undo_near,
966 Label::Distance slow_near) {
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +0000967 // Check whether the value is a smi.
whesse@chromium.org7b260152011-06-20 15:33:18 +0000968 __ JumpIfNotSmi(eax, non_smi, non_smi_near);
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +0000969
970 // We can't handle -0 with smis, so use a type transition for that case.
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +0000971 __ test(eax, eax);
karlklose@chromium.org83a47282011-05-11 11:54:09 +0000972 __ j(zero, slow, slow_near);
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +0000973
974 // Try optimistic subtraction '0 - value', saving operand in eax for undo.
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +0000975 __ mov(edx, eax);
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +0000976 __ Set(eax, Immediate(0));
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +0000977 __ sub(eax, edx);
karlklose@chromium.org83a47282011-05-11 11:54:09 +0000978 __ j(overflow, undo, undo_near);
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +0000979 __ ret(0);
980}
981
982
danno@chromium.org40cb8782011-05-25 07:58:50 +0000983void UnaryOpStub::GenerateSmiCodeBitNot(
karlklose@chromium.org83a47282011-05-11 11:54:09 +0000984 MacroAssembler* masm,
985 Label* non_smi,
986 Label::Distance non_smi_near) {
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +0000987 // Check whether the value is a smi.
whesse@chromium.org7b260152011-06-20 15:33:18 +0000988 __ JumpIfNotSmi(eax, non_smi, non_smi_near);
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +0000989
990 // Flip bits and revert inverted smi-tag.
991 __ not_(eax);
992 __ and_(eax, ~kSmiTagMask);
993 __ ret(0);
994}
995
996
danno@chromium.org40cb8782011-05-25 07:58:50 +0000997void UnaryOpStub::GenerateSmiCodeUndo(MacroAssembler* masm) {
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +0000998 __ mov(eax, edx);
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +0000999}
1000
1001
1002// TODO(svenpanne): Use virtual functions instead of switch.
danno@chromium.org40cb8782011-05-25 07:58:50 +00001003void UnaryOpStub::GenerateHeapNumberStub(MacroAssembler* masm) {
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +00001004 switch (op_) {
1005 case Token::SUB:
1006 GenerateHeapNumberStubSub(masm);
1007 break;
1008 case Token::BIT_NOT:
1009 GenerateHeapNumberStubBitNot(masm);
1010 break;
1011 default:
1012 UNREACHABLE();
1013 }
1014}
1015
1016
danno@chromium.org40cb8782011-05-25 07:58:50 +00001017void UnaryOpStub::GenerateHeapNumberStubSub(MacroAssembler* masm) {
ager@chromium.orgea91cc52011-05-23 06:06:11 +00001018 Label non_smi, undo, slow, call_builtin;
1019 GenerateSmiCodeSub(masm, &non_smi, &undo, &call_builtin, Label::kNear);
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +00001020 __ bind(&non_smi);
1021 GenerateHeapNumberCodeSub(masm, &slow);
1022 __ bind(&undo);
1023 GenerateSmiCodeUndo(masm);
1024 __ bind(&slow);
1025 GenerateTypeTransition(masm);
ager@chromium.orgea91cc52011-05-23 06:06:11 +00001026 __ bind(&call_builtin);
1027 GenerateGenericCodeFallback(masm);
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +00001028}
1029
1030
danno@chromium.org40cb8782011-05-25 07:58:50 +00001031void UnaryOpStub::GenerateHeapNumberStubBitNot(
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +00001032 MacroAssembler* masm) {
karlklose@chromium.org83a47282011-05-11 11:54:09 +00001033 Label non_smi, slow;
1034 GenerateSmiCodeBitNot(masm, &non_smi, Label::kNear);
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +00001035 __ bind(&non_smi);
1036 GenerateHeapNumberCodeBitNot(masm, &slow);
1037 __ bind(&slow);
1038 GenerateTypeTransition(masm);
1039}
1040
1041
danno@chromium.org40cb8782011-05-25 07:58:50 +00001042void UnaryOpStub::GenerateHeapNumberCodeSub(MacroAssembler* masm,
1043 Label* slow) {
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +00001044 __ mov(edx, FieldOperand(eax, HeapObject::kMapOffset));
1045 __ cmp(edx, masm->isolate()->factory()->heap_number_map());
1046 __ j(not_equal, slow);
1047
1048 if (mode_ == UNARY_OVERWRITE) {
1049 __ xor_(FieldOperand(eax, HeapNumber::kExponentOffset),
1050 Immediate(HeapNumber::kSignMask)); // Flip sign.
1051 } else {
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00001052 __ mov(edx, eax);
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +00001053 // edx: operand
1054
1055 Label slow_allocate_heapnumber, heapnumber_allocated;
1056 __ AllocateHeapNumber(eax, ebx, ecx, &slow_allocate_heapnumber);
ricow@chromium.org4668a2c2011-08-29 10:41:00 +00001057 __ jmp(&heapnumber_allocated, Label::kNear);
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +00001058
1059 __ bind(&slow_allocate_heapnumber);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00001060 {
1061 FrameScope scope(masm, StackFrame::INTERNAL);
1062 __ push(edx);
1063 __ CallRuntime(Runtime::kNumberAlloc, 0);
1064 __ pop(edx);
1065 }
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +00001066
1067 __ bind(&heapnumber_allocated);
1068 // eax: allocated 'empty' number
1069 __ mov(ecx, FieldOperand(edx, HeapNumber::kExponentOffset));
1070 __ xor_(ecx, HeapNumber::kSignMask); // Flip sign.
1071 __ mov(FieldOperand(eax, HeapNumber::kExponentOffset), ecx);
1072 __ mov(ecx, FieldOperand(edx, HeapNumber::kMantissaOffset));
1073 __ mov(FieldOperand(eax, HeapNumber::kMantissaOffset), ecx);
1074 }
1075 __ ret(0);
1076}
1077
1078
danno@chromium.org40cb8782011-05-25 07:58:50 +00001079void UnaryOpStub::GenerateHeapNumberCodeBitNot(MacroAssembler* masm,
1080 Label* slow) {
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +00001081 __ mov(edx, FieldOperand(eax, HeapObject::kMapOffset));
1082 __ cmp(edx, masm->isolate()->factory()->heap_number_map());
1083 __ j(not_equal, slow);
1084
1085 // Convert the heap number in eax to an untagged integer in ecx.
vegorov@chromium.org7304bca2011-05-16 12:14:13 +00001086 IntegerConvert(masm, eax, CpuFeatures::IsSupported(SSE3), slow);
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +00001087
1088 // Do the bitwise operation and check if the result fits in a smi.
karlklose@chromium.org83a47282011-05-11 11:54:09 +00001089 Label try_float;
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +00001090 __ not_(ecx);
1091 __ cmp(ecx, 0xc0000000);
karlklose@chromium.org83a47282011-05-11 11:54:09 +00001092 __ j(sign, &try_float, Label::kNear);
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +00001093
1094 // Tag the result as a smi and we're done.
1095 STATIC_ASSERT(kSmiTagSize == 1);
1096 __ lea(eax, Operand(ecx, times_2, kSmiTag));
1097 __ ret(0);
1098
1099 // Try to store the result in a heap number.
1100 __ bind(&try_float);
1101 if (mode_ == UNARY_NO_OVERWRITE) {
1102 Label slow_allocate_heapnumber, heapnumber_allocated;
kmillikin@chromium.orgc53e10d2011-05-18 09:12:58 +00001103 __ mov(ebx, eax);
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +00001104 __ AllocateHeapNumber(eax, edx, edi, &slow_allocate_heapnumber);
1105 __ jmp(&heapnumber_allocated);
1106
1107 __ bind(&slow_allocate_heapnumber);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00001108 {
1109 FrameScope scope(masm, StackFrame::INTERNAL);
1110 // Push the original HeapNumber on the stack. The integer value can't
1111 // be stored since it's untagged and not in the smi range (so we can't
1112 // smi-tag it). We'll recalculate the value after the GC instead.
1113 __ push(ebx);
1114 __ CallRuntime(Runtime::kNumberAlloc, 0);
1115 // New HeapNumber is in eax.
1116 __ pop(edx);
1117 }
kmillikin@chromium.orgc53e10d2011-05-18 09:12:58 +00001118 // IntegerConvert uses ebx and edi as scratch registers.
1119 // This conversion won't go slow-case.
1120 IntegerConvert(masm, edx, CpuFeatures::IsSupported(SSE3), slow);
1121 __ not_(ecx);
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +00001122
1123 __ bind(&heapnumber_allocated);
1124 }
1125 if (CpuFeatures::IsSupported(SSE2)) {
1126 CpuFeatures::Scope use_sse2(SSE2);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00001127 __ cvtsi2sd(xmm0, ecx);
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +00001128 __ movdbl(FieldOperand(eax, HeapNumber::kValueOffset), xmm0);
1129 } else {
1130 __ push(ecx);
1131 __ fild_s(Operand(esp, 0));
1132 __ pop(ecx);
1133 __ fstp_d(FieldOperand(eax, HeapNumber::kValueOffset));
1134 }
1135 __ ret(0);
1136}
1137
1138
1139// TODO(svenpanne): Use virtual functions instead of switch.
danno@chromium.org40cb8782011-05-25 07:58:50 +00001140void UnaryOpStub::GenerateGenericStub(MacroAssembler* masm) {
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +00001141 switch (op_) {
1142 case Token::SUB:
1143 GenerateGenericStubSub(masm);
1144 break;
1145 case Token::BIT_NOT:
1146 GenerateGenericStubBitNot(masm);
1147 break;
1148 default:
1149 UNREACHABLE();
1150 }
1151}
1152
1153
danno@chromium.org40cb8782011-05-25 07:58:50 +00001154void UnaryOpStub::GenerateGenericStubSub(MacroAssembler* masm) {
karlklose@chromium.org83a47282011-05-11 11:54:09 +00001155 Label non_smi, undo, slow;
1156 GenerateSmiCodeSub(masm, &non_smi, &undo, &slow, Label::kNear);
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +00001157 __ bind(&non_smi);
1158 GenerateHeapNumberCodeSub(masm, &slow);
1159 __ bind(&undo);
1160 GenerateSmiCodeUndo(masm);
1161 __ bind(&slow);
1162 GenerateGenericCodeFallback(masm);
1163}
1164
1165
danno@chromium.org40cb8782011-05-25 07:58:50 +00001166void UnaryOpStub::GenerateGenericStubBitNot(MacroAssembler* masm) {
karlklose@chromium.org83a47282011-05-11 11:54:09 +00001167 Label non_smi, slow;
1168 GenerateSmiCodeBitNot(masm, &non_smi, Label::kNear);
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +00001169 __ bind(&non_smi);
1170 GenerateHeapNumberCodeBitNot(masm, &slow);
1171 __ bind(&slow);
1172 GenerateGenericCodeFallback(masm);
1173}
1174
1175
danno@chromium.org40cb8782011-05-25 07:58:50 +00001176void UnaryOpStub::GenerateGenericCodeFallback(MacroAssembler* masm) {
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +00001177 // Handle the slow case by jumping to the corresponding JavaScript builtin.
1178 __ pop(ecx); // pop return address.
1179 __ push(eax);
1180 __ push(ecx); // push return address
1181 switch (op_) {
1182 case Token::SUB:
1183 __ InvokeBuiltin(Builtins::UNARY_MINUS, JUMP_FUNCTION);
1184 break;
1185 case Token::BIT_NOT:
1186 __ InvokeBuiltin(Builtins::BIT_NOT, JUMP_FUNCTION);
1187 break;
1188 default:
1189 UNREACHABLE();
1190 }
1191}
1192
1193
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00001194void BinaryOpStub::Initialize() {
1195 platform_specific_bit_ = CpuFeatures::IsSupported(SSE3);
1196}
1197
1198
danno@chromium.org40cb8782011-05-25 07:58:50 +00001199void BinaryOpStub::GenerateTypeTransition(MacroAssembler* masm) {
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001200 __ pop(ecx); // Save return address.
1201 __ push(edx);
1202 __ push(eax);
1203 // Left and right arguments are now on top.
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001204 __ push(Immediate(Smi::FromInt(MinorKey())));
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001205
1206 __ push(ecx); // Push return address.
1207
1208 // Patch the caller to an appropriate specialized stub and return the
1209 // operation result to the caller of the stub.
1210 __ TailCallExternalReference(
danno@chromium.org40cb8782011-05-25 07:58:50 +00001211 ExternalReference(IC_Utility(IC::kBinaryOp_Patch),
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +00001212 masm->isolate()),
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00001213 3,
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001214 1);
1215}
1216
1217
1218// Prepare for a type transition runtime call when the args are already on
1219// the stack, under the return address.
danno@chromium.org40cb8782011-05-25 07:58:50 +00001220void BinaryOpStub::GenerateTypeTransitionWithSavedArgs(MacroAssembler* masm) {
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001221 __ pop(ecx); // Save return address.
1222 // Left and right arguments are already on top of the stack.
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001223 __ push(Immediate(Smi::FromInt(MinorKey())));
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001224
1225 __ push(ecx); // Push return address.
1226
1227 // Patch the caller to an appropriate specialized stub and return the
1228 // operation result to the caller of the stub.
1229 __ TailCallExternalReference(
danno@chromium.org40cb8782011-05-25 07:58:50 +00001230 ExternalReference(IC_Utility(IC::kBinaryOp_Patch),
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +00001231 masm->isolate()),
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00001232 3,
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001233 1);
1234}
1235
1236
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00001237static void BinaryOpStub_GenerateSmiCode(
danno@chromium.org40cb8782011-05-25 07:58:50 +00001238 MacroAssembler* masm,
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001239 Label* slow,
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00001240 BinaryOpStub::SmiCodeGenerateHeapNumberResults allow_heapnumber_results,
1241 Token::Value op) {
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001242 // 1. Move arguments into edx, eax except for DIV and MOD, which need the
1243 // dividend in eax and edx free for the division. Use eax, ebx for those.
1244 Comment load_comment(masm, "-- Load arguments");
1245 Register left = edx;
1246 Register right = eax;
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00001247 if (op == Token::DIV || op == Token::MOD) {
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001248 left = eax;
1249 right = ebx;
ager@chromium.org5f0c45f2010-12-17 08:51:21 +00001250 __ mov(ebx, eax);
1251 __ mov(eax, edx);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001252 }
1253
1254
1255 // 2. Prepare the smi check of both operands by oring them together.
1256 Comment smi_check_comment(masm, "-- Smi check arguments");
1257 Label not_smis;
1258 Register combined = ecx;
1259 ASSERT(!left.is(combined) && !right.is(combined));
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00001260 switch (op) {
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001261 case Token::BIT_OR:
1262 // Perform the operation into eax and smi check the result. Preserve
1263 // eax in case the result is not a smi.
1264 ASSERT(!left.is(ecx) && !right.is(ecx));
1265 __ mov(ecx, right);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00001266 __ or_(right, left); // Bitwise or is commutative.
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001267 combined = right;
1268 break;
1269
1270 case Token::BIT_XOR:
1271 case Token::BIT_AND:
1272 case Token::ADD:
1273 case Token::SUB:
1274 case Token::MUL:
1275 case Token::DIV:
1276 case Token::MOD:
1277 __ mov(combined, right);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00001278 __ or_(combined, left);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001279 break;
1280
1281 case Token::SHL:
1282 case Token::SAR:
1283 case Token::SHR:
1284 // Move the right operand into ecx for the shift operation, use eax
1285 // for the smi check register.
1286 ASSERT(!left.is(ecx) && !right.is(ecx));
1287 __ mov(ecx, right);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00001288 __ or_(right, left);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001289 combined = right;
1290 break;
1291
1292 default:
1293 break;
1294 }
1295
1296 // 3. Perform the smi check of the operands.
1297 STATIC_ASSERT(kSmiTag == 0); // Adjust zero check if not the case.
whesse@chromium.org7b260152011-06-20 15:33:18 +00001298 __ JumpIfNotSmi(combined, &not_smis);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001299
1300 // 4. Operands are both smis, perform the operation leaving the result in
1301 // eax and check the result if necessary.
1302 Comment perform_smi(masm, "-- Perform smi operation");
1303 Label use_fp_on_smis;
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00001304 switch (op) {
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001305 case Token::BIT_OR:
1306 // Nothing to do.
1307 break;
1308
1309 case Token::BIT_XOR:
1310 ASSERT(right.is(eax));
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00001311 __ xor_(right, left); // Bitwise xor is commutative.
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001312 break;
1313
1314 case Token::BIT_AND:
1315 ASSERT(right.is(eax));
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00001316 __ and_(right, left); // Bitwise and is commutative.
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001317 break;
1318
1319 case Token::SHL:
1320 // Remove tags from operands (but keep sign).
1321 __ SmiUntag(left);
1322 __ SmiUntag(ecx);
1323 // Perform the operation.
1324 __ shl_cl(left);
1325 // Check that the *signed* result fits in a smi.
1326 __ cmp(left, 0xc0000000);
vegorov@chromium.org7304bca2011-05-16 12:14:13 +00001327 __ j(sign, &use_fp_on_smis);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001328 // Tag the result and store it in register eax.
1329 __ SmiTag(left);
1330 __ mov(eax, left);
1331 break;
1332
1333 case Token::SAR:
1334 // Remove tags from operands (but keep sign).
1335 __ SmiUntag(left);
1336 __ SmiUntag(ecx);
1337 // Perform the operation.
1338 __ sar_cl(left);
1339 // Tag the result and store it in register eax.
1340 __ SmiTag(left);
1341 __ mov(eax, left);
1342 break;
1343
1344 case Token::SHR:
1345 // Remove tags from operands (but keep sign).
1346 __ SmiUntag(left);
1347 __ SmiUntag(ecx);
1348 // Perform the operation.
1349 __ shr_cl(left);
1350 // Check that the *unsigned* result fits in a smi.
1351 // Neither of the two high-order bits can be set:
1352 // - 0x80000000: high bit would be lost when smi tagging.
1353 // - 0x40000000: this number would convert to negative when
1354 // Smi tagging these two cases can only happen with shifts
1355 // by 0 or 1 when handed a valid smi.
1356 __ test(left, Immediate(0xc0000000));
ager@chromium.orgea91cc52011-05-23 06:06:11 +00001357 __ j(not_zero, &use_fp_on_smis);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001358 // Tag the result and store it in register eax.
1359 __ SmiTag(left);
1360 __ mov(eax, left);
1361 break;
1362
1363 case Token::ADD:
1364 ASSERT(right.is(eax));
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00001365 __ add(right, left); // Addition is commutative.
vegorov@chromium.org7304bca2011-05-16 12:14:13 +00001366 __ j(overflow, &use_fp_on_smis);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001367 break;
1368
1369 case Token::SUB:
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00001370 __ sub(left, right);
vegorov@chromium.org7304bca2011-05-16 12:14:13 +00001371 __ j(overflow, &use_fp_on_smis);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001372 __ mov(eax, left);
1373 break;
1374
1375 case Token::MUL:
1376 // If the smi tag is 0 we can just leave the tag on one operand.
1377 STATIC_ASSERT(kSmiTag == 0); // Adjust code below if not the case.
1378 // We can't revert the multiplication if the result is not a smi
1379 // so save the right operand.
1380 __ mov(ebx, right);
1381 // Remove tag from one of the operands (but keep sign).
1382 __ SmiUntag(right);
1383 // Do multiplication.
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00001384 __ imul(right, left); // Multiplication is commutative.
vegorov@chromium.org7304bca2011-05-16 12:14:13 +00001385 __ j(overflow, &use_fp_on_smis);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001386 // Check for negative zero result. Use combined = left | right.
1387 __ NegativeZeroTest(right, combined, &use_fp_on_smis);
1388 break;
1389
1390 case Token::DIV:
1391 // We can't revert the division if the result is not a smi so
1392 // save the left operand.
1393 __ mov(edi, left);
1394 // Check for 0 divisor.
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00001395 __ test(right, right);
vegorov@chromium.org7304bca2011-05-16 12:14:13 +00001396 __ j(zero, &use_fp_on_smis);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001397 // Sign extend left into edx:eax.
1398 ASSERT(left.is(eax));
1399 __ cdq();
1400 // Divide edx:eax by right.
1401 __ idiv(right);
1402 // Check for the corner case of dividing the most negative smi by
1403 // -1. We cannot use the overflow flag, since it is not set by idiv
1404 // instruction.
1405 STATIC_ASSERT(kSmiTag == 0 && kSmiTagSize == 1);
1406 __ cmp(eax, 0x40000000);
1407 __ j(equal, &use_fp_on_smis);
1408 // Check for negative zero result. Use combined = left | right.
1409 __ NegativeZeroTest(eax, combined, &use_fp_on_smis);
1410 // Check that the remainder is zero.
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00001411 __ test(edx, edx);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001412 __ j(not_zero, &use_fp_on_smis);
1413 // Tag the result and store it in register eax.
1414 __ SmiTag(eax);
1415 break;
1416
1417 case Token::MOD:
1418 // Check for 0 divisor.
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00001419 __ test(right, right);
vegorov@chromium.org7304bca2011-05-16 12:14:13 +00001420 __ j(zero, &not_smis);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001421
1422 // Sign extend left into edx:eax.
1423 ASSERT(left.is(eax));
1424 __ cdq();
1425 // Divide edx:eax by right.
1426 __ idiv(right);
1427 // Check for negative zero result. Use combined = left | right.
1428 __ NegativeZeroTest(edx, combined, slow);
1429 // Move remainder to register eax.
1430 __ mov(eax, edx);
1431 break;
1432
1433 default:
1434 UNREACHABLE();
1435 }
1436
1437 // 5. Emit return of result in eax. Some operations have registers pushed.
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00001438 switch (op) {
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001439 case Token::ADD:
1440 case Token::SUB:
1441 case Token::MUL:
1442 case Token::DIV:
1443 __ ret(0);
1444 break;
1445 case Token::MOD:
1446 case Token::BIT_OR:
1447 case Token::BIT_AND:
1448 case Token::BIT_XOR:
1449 case Token::SAR:
1450 case Token::SHL:
1451 case Token::SHR:
1452 __ ret(2 * kPointerSize);
1453 break;
1454 default:
1455 UNREACHABLE();
1456 }
1457
1458 // 6. For some operations emit inline code to perform floating point
1459 // operations on known smis (e.g., if the result of the operation
1460 // overflowed the smi range).
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00001461 if (allow_heapnumber_results == BinaryOpStub::NO_HEAPNUMBER_RESULTS) {
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001462 __ bind(&use_fp_on_smis);
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00001463 switch (op) {
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001464 // Undo the effects of some operations, and some register moves.
1465 case Token::SHL:
1466 // The arguments are saved on the stack, and only used from there.
1467 break;
1468 case Token::ADD:
1469 // Revert right = right + left.
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00001470 __ sub(right, left);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001471 break;
1472 case Token::SUB:
1473 // Revert left = left - right.
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00001474 __ add(left, right);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001475 break;
1476 case Token::MUL:
1477 // Right was clobbered but a copy is in ebx.
1478 __ mov(right, ebx);
1479 break;
1480 case Token::DIV:
1481 // Left was clobbered but a copy is in edi. Right is in ebx for
1482 // division. They should be in eax, ebx for jump to not_smi.
1483 __ mov(eax, edi);
1484 break;
1485 default:
1486 // No other operators jump to use_fp_on_smis.
1487 break;
1488 }
1489 __ jmp(&not_smis);
1490 } else {
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00001491 ASSERT(allow_heapnumber_results == BinaryOpStub::ALLOW_HEAPNUMBER_RESULTS);
1492 switch (op) {
ager@chromium.orgea91cc52011-05-23 06:06:11 +00001493 case Token::SHL:
1494 case Token::SHR: {
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001495 Comment perform_float(masm, "-- Perform float operation on smis");
1496 __ bind(&use_fp_on_smis);
1497 // Result we want is in left == edx, so we can put the allocated heap
1498 // number in eax.
1499 __ AllocateHeapNumber(eax, ecx, ebx, slow);
1500 // Store the result in the HeapNumber and return.
ager@chromium.orgea91cc52011-05-23 06:06:11 +00001501 // It's OK to overwrite the arguments on the stack because we
1502 // are about to return.
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00001503 if (op == Token::SHR) {
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001504 __ mov(Operand(esp, 1 * kPointerSize), left);
ager@chromium.orgea91cc52011-05-23 06:06:11 +00001505 __ mov(Operand(esp, 2 * kPointerSize), Immediate(0));
1506 __ fild_d(Operand(esp, 1 * kPointerSize));
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001507 __ fstp_d(FieldOperand(eax, HeapNumber::kValueOffset));
ager@chromium.orgea91cc52011-05-23 06:06:11 +00001508 } else {
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00001509 ASSERT_EQ(Token::SHL, op);
ager@chromium.orgea91cc52011-05-23 06:06:11 +00001510 if (CpuFeatures::IsSupported(SSE2)) {
1511 CpuFeatures::Scope use_sse2(SSE2);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00001512 __ cvtsi2sd(xmm0, left);
ager@chromium.orgea91cc52011-05-23 06:06:11 +00001513 __ movdbl(FieldOperand(eax, HeapNumber::kValueOffset), xmm0);
1514 } else {
1515 __ mov(Operand(esp, 1 * kPointerSize), left);
1516 __ fild_s(Operand(esp, 1 * kPointerSize));
1517 __ fstp_d(FieldOperand(eax, HeapNumber::kValueOffset));
1518 }
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001519 }
ager@chromium.orgea91cc52011-05-23 06:06:11 +00001520 __ ret(2 * kPointerSize);
1521 break;
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001522 }
1523
1524 case Token::ADD:
1525 case Token::SUB:
1526 case Token::MUL:
1527 case Token::DIV: {
1528 Comment perform_float(masm, "-- Perform float operation on smis");
1529 __ bind(&use_fp_on_smis);
1530 // Restore arguments to edx, eax.
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00001531 switch (op) {
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001532 case Token::ADD:
1533 // Revert right = right + left.
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00001534 __ sub(right, left);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001535 break;
1536 case Token::SUB:
1537 // Revert left = left - right.
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00001538 __ add(left, right);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001539 break;
1540 case Token::MUL:
1541 // Right was clobbered but a copy is in ebx.
1542 __ mov(right, ebx);
1543 break;
1544 case Token::DIV:
1545 // Left was clobbered but a copy is in edi. Right is in ebx for
1546 // division.
1547 __ mov(edx, edi);
1548 __ mov(eax, right);
1549 break;
1550 default: UNREACHABLE();
1551 break;
1552 }
1553 __ AllocateHeapNumber(ecx, ebx, no_reg, slow);
kmillikin@chromium.orgc36ce6e2011-04-04 08:25:31 +00001554 if (CpuFeatures::IsSupported(SSE2)) {
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001555 CpuFeatures::Scope use_sse2(SSE2);
1556 FloatingPointHelper::LoadSSE2Smis(masm, ebx);
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00001557 switch (op) {
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001558 case Token::ADD: __ addsd(xmm0, xmm1); break;
1559 case Token::SUB: __ subsd(xmm0, xmm1); break;
1560 case Token::MUL: __ mulsd(xmm0, xmm1); break;
1561 case Token::DIV: __ divsd(xmm0, xmm1); break;
1562 default: UNREACHABLE();
1563 }
1564 __ movdbl(FieldOperand(ecx, HeapNumber::kValueOffset), xmm0);
1565 } else { // SSE2 not available, use FPU.
1566 FloatingPointHelper::LoadFloatSmis(masm, ebx);
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00001567 switch (op) {
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001568 case Token::ADD: __ faddp(1); break;
1569 case Token::SUB: __ fsubp(1); break;
1570 case Token::MUL: __ fmulp(1); break;
1571 case Token::DIV: __ fdivp(1); break;
1572 default: UNREACHABLE();
1573 }
1574 __ fstp_d(FieldOperand(ecx, HeapNumber::kValueOffset));
1575 }
1576 __ mov(eax, ecx);
1577 __ ret(0);
1578 break;
1579 }
1580
1581 default:
1582 break;
1583 }
1584 }
1585
1586 // 7. Non-smi operands, fall out to the non-smi code with the operands in
1587 // edx and eax.
1588 Comment done_comment(masm, "-- Enter non-smi code");
1589 __ bind(&not_smis);
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00001590 switch (op) {
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001591 case Token::BIT_OR:
1592 case Token::SHL:
1593 case Token::SAR:
1594 case Token::SHR:
1595 // Right operand is saved in ecx and eax was destroyed by the smi
1596 // check.
1597 __ mov(eax, ecx);
1598 break;
1599
1600 case Token::DIV:
1601 case Token::MOD:
1602 // Operands are in eax, ebx at this point.
1603 __ mov(edx, eax);
1604 __ mov(eax, ebx);
1605 break;
1606
1607 default:
1608 break;
1609 }
1610}
1611
1612
danno@chromium.org40cb8782011-05-25 07:58:50 +00001613void BinaryOpStub::GenerateSmiStub(MacroAssembler* masm) {
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001614 Label call_runtime;
1615
1616 switch (op_) {
1617 case Token::ADD:
1618 case Token::SUB:
1619 case Token::MUL:
1620 case Token::DIV:
1621 break;
1622 case Token::MOD:
1623 case Token::BIT_OR:
1624 case Token::BIT_AND:
1625 case Token::BIT_XOR:
1626 case Token::SAR:
1627 case Token::SHL:
1628 case Token::SHR:
1629 GenerateRegisterArgsPush(masm);
1630 break;
1631 default:
1632 UNREACHABLE();
1633 }
1634
danno@chromium.org40cb8782011-05-25 07:58:50 +00001635 if (result_type_ == BinaryOpIC::UNINITIALIZED ||
1636 result_type_ == BinaryOpIC::SMI) {
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00001637 BinaryOpStub_GenerateSmiCode(
1638 masm, &call_runtime, NO_HEAPNUMBER_RESULTS, op_);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001639 } else {
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00001640 BinaryOpStub_GenerateSmiCode(
1641 masm, &call_runtime, ALLOW_HEAPNUMBER_RESULTS, op_);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001642 }
1643 __ bind(&call_runtime);
1644 switch (op_) {
1645 case Token::ADD:
1646 case Token::SUB:
1647 case Token::MUL:
1648 case Token::DIV:
1649 GenerateTypeTransition(masm);
1650 break;
1651 case Token::MOD:
1652 case Token::BIT_OR:
1653 case Token::BIT_AND:
1654 case Token::BIT_XOR:
1655 case Token::SAR:
1656 case Token::SHL:
1657 case Token::SHR:
1658 GenerateTypeTransitionWithSavedArgs(masm);
1659 break;
1660 default:
1661 UNREACHABLE();
1662 }
1663}
1664
1665
danno@chromium.org40cb8782011-05-25 07:58:50 +00001666void BinaryOpStub::GenerateBothStringStub(MacroAssembler* masm) {
danno@chromium.org160a7b02011-04-18 15:51:38 +00001667 Label call_runtime;
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00001668 ASSERT(left_type_ == BinaryOpIC::STRING && right_type_ == BinaryOpIC::STRING);
danno@chromium.org160a7b02011-04-18 15:51:38 +00001669 ASSERT(op_ == Token::ADD);
1670 // If both arguments are strings, call the string add stub.
1671 // Otherwise, do a transition.
1672
1673 // Registers containing left and right operands respectively.
1674 Register left = edx;
1675 Register right = eax;
1676
1677 // Test if left operand is a string.
ricow@chromium.org4668a2c2011-08-29 10:41:00 +00001678 __ JumpIfSmi(left, &call_runtime, Label::kNear);
danno@chromium.org160a7b02011-04-18 15:51:38 +00001679 __ CmpObjectType(left, FIRST_NONSTRING_TYPE, ecx);
ricow@chromium.org4668a2c2011-08-29 10:41:00 +00001680 __ j(above_equal, &call_runtime, Label::kNear);
danno@chromium.org160a7b02011-04-18 15:51:38 +00001681
1682 // Test if right operand is a string.
ricow@chromium.org4668a2c2011-08-29 10:41:00 +00001683 __ JumpIfSmi(right, &call_runtime, Label::kNear);
danno@chromium.org160a7b02011-04-18 15:51:38 +00001684 __ CmpObjectType(right, FIRST_NONSTRING_TYPE, ecx);
ricow@chromium.org4668a2c2011-08-29 10:41:00 +00001685 __ j(above_equal, &call_runtime, Label::kNear);
danno@chromium.org160a7b02011-04-18 15:51:38 +00001686
1687 StringAddStub string_add_stub(NO_STRING_CHECK_IN_STUB);
1688 GenerateRegisterArgsPush(masm);
1689 __ TailCallStub(&string_add_stub);
1690
1691 __ bind(&call_runtime);
1692 GenerateTypeTransition(masm);
1693}
1694
1695
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00001696static void BinaryOpStub_GenerateHeapResultAllocation(MacroAssembler* masm,
1697 Label* alloc_failure,
1698 OverwriteMode mode);
1699
1700
svenpanne@chromium.orgfb046332012-04-19 12:02:44 +00001701// Input:
1702// edx: left operand (tagged)
1703// eax: right operand (tagged)
1704// Output:
1705// eax: result (tagged)
danno@chromium.org40cb8782011-05-25 07:58:50 +00001706void BinaryOpStub::GenerateInt32Stub(MacroAssembler* masm) {
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001707 Label call_runtime;
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00001708 ASSERT(Max(left_type_, right_type_) == BinaryOpIC::INT32);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001709
1710 // Floating point case.
1711 switch (op_) {
1712 case Token::ADD:
1713 case Token::SUB:
1714 case Token::MUL:
svenpanne@chromium.orgfb046332012-04-19 12:02:44 +00001715 case Token::DIV:
1716 case Token::MOD: {
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001717 Label not_floats;
1718 Label not_int32;
kmillikin@chromium.orgc36ce6e2011-04-04 08:25:31 +00001719 if (CpuFeatures::IsSupported(SSE2)) {
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001720 CpuFeatures::Scope use_sse2(SSE2);
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00001721 // It could be that only SMIs have been seen at either the left
1722 // or the right operand. For precise type feedback, patch the IC
1723 // again if this changes.
1724 // In theory, we would need the same check in the non-SSE2 case,
1725 // but since we don't support Crankshaft on such hardware we can
1726 // afford not to care about precise type feedback.
1727 if (left_type_ == BinaryOpIC::SMI) {
1728 __ JumpIfNotSmi(edx, &not_int32);
1729 }
1730 if (right_type_ == BinaryOpIC::SMI) {
1731 __ JumpIfNotSmi(eax, &not_int32);
1732 }
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001733 FloatingPointHelper::LoadSSE2Operands(masm, &not_floats);
1734 FloatingPointHelper::CheckSSE2OperandsAreInt32(masm, &not_int32, ecx);
svenpanne@chromium.orgfb046332012-04-19 12:02:44 +00001735 if (op_ == Token::MOD) {
1736 GenerateRegisterArgsPush(masm);
1737 __ InvokeBuiltin(Builtins::MOD, JUMP_FUNCTION);
1738 } else {
1739 switch (op_) {
1740 case Token::ADD: __ addsd(xmm0, xmm1); break;
1741 case Token::SUB: __ subsd(xmm0, xmm1); break;
1742 case Token::MUL: __ mulsd(xmm0, xmm1); break;
1743 case Token::DIV: __ divsd(xmm0, xmm1); break;
1744 default: UNREACHABLE();
1745 }
1746 // Check result type if it is currently Int32.
1747 if (result_type_ <= BinaryOpIC::INT32) {
1748 __ cvttsd2si(ecx, Operand(xmm0));
1749 __ cvtsi2sd(xmm2, ecx);
verwaest@chromium.org33e09c82012-10-10 17:07:22 +00001750 __ pcmpeqd(xmm2, xmm0);
1751 __ movmskpd(ecx, xmm2);
1752 __ test(ecx, Immediate(1));
1753 __ j(zero, &not_int32);
svenpanne@chromium.orgfb046332012-04-19 12:02:44 +00001754 }
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00001755 BinaryOpStub_GenerateHeapResultAllocation(masm, &call_runtime, mode_);
svenpanne@chromium.orgfb046332012-04-19 12:02:44 +00001756 __ movdbl(FieldOperand(eax, HeapNumber::kValueOffset), xmm0);
1757 __ ret(0);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001758 }
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001759 } else { // SSE2 not available, use FPU.
1760 FloatingPointHelper::CheckFloatOperands(masm, &not_floats, ebx);
1761 FloatingPointHelper::LoadFloatOperands(
1762 masm,
1763 ecx,
1764 FloatingPointHelper::ARGS_IN_REGISTERS);
1765 FloatingPointHelper::CheckFloatOperandsAreInt32(masm, &not_int32);
svenpanne@chromium.orgfb046332012-04-19 12:02:44 +00001766 if (op_ == Token::MOD) {
1767 // The operands are now on the FPU stack, but we don't need them.
1768 __ fstp(0);
1769 __ fstp(0);
1770 GenerateRegisterArgsPush(masm);
1771 __ InvokeBuiltin(Builtins::MOD, JUMP_FUNCTION);
1772 } else {
1773 switch (op_) {
1774 case Token::ADD: __ faddp(1); break;
1775 case Token::SUB: __ fsubp(1); break;
1776 case Token::MUL: __ fmulp(1); break;
1777 case Token::DIV: __ fdivp(1); break;
1778 default: UNREACHABLE();
1779 }
1780 Label after_alloc_failure;
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00001781 BinaryOpStub_GenerateHeapResultAllocation(
1782 masm, &after_alloc_failure, mode_);
svenpanne@chromium.orgfb046332012-04-19 12:02:44 +00001783 __ fstp_d(FieldOperand(eax, HeapNumber::kValueOffset));
1784 __ ret(0);
1785 __ bind(&after_alloc_failure);
1786 __ fstp(0); // Pop FPU stack before calling runtime.
1787 __ jmp(&call_runtime);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001788 }
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001789 }
1790
1791 __ bind(&not_floats);
1792 __ bind(&not_int32);
1793 GenerateTypeTransition(masm);
1794 break;
1795 }
1796
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001797 case Token::BIT_OR:
1798 case Token::BIT_AND:
1799 case Token::BIT_XOR:
1800 case Token::SAR:
1801 case Token::SHL:
1802 case Token::SHR: {
1803 GenerateRegisterArgsPush(masm);
1804 Label not_floats;
1805 Label not_int32;
1806 Label non_smi_result;
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00001807 // We do not check the input arguments here, as any value is
1808 // unconditionally truncated to an int32 anyway. To get the
1809 // right optimized code, int32 type feedback is just right.
1810 bool use_sse3 = platform_specific_bit_;
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001811 FloatingPointHelper::LoadUnknownsAsIntegers(masm,
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00001812 use_sse3,
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001813 &not_floats);
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00001814 FloatingPointHelper::CheckLoadedIntegersWereInt32(masm, use_sse3,
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001815 &not_int32);
1816 switch (op_) {
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00001817 case Token::BIT_OR: __ or_(eax, ecx); break;
1818 case Token::BIT_AND: __ and_(eax, ecx); break;
1819 case Token::BIT_XOR: __ xor_(eax, ecx); break;
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001820 case Token::SAR: __ sar_cl(eax); break;
1821 case Token::SHL: __ shl_cl(eax); break;
1822 case Token::SHR: __ shr_cl(eax); break;
1823 default: UNREACHABLE();
1824 }
1825 if (op_ == Token::SHR) {
1826 // Check if result is non-negative and fits in a smi.
1827 __ test(eax, Immediate(0xc0000000));
1828 __ j(not_zero, &call_runtime);
1829 } else {
1830 // Check if result fits in a smi.
1831 __ cmp(eax, 0xc0000000);
ricow@chromium.org4668a2c2011-08-29 10:41:00 +00001832 __ j(negative, &non_smi_result, Label::kNear);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001833 }
1834 // Tag smi result and return.
1835 __ SmiTag(eax);
1836 __ ret(2 * kPointerSize); // Drop two pushed arguments from the stack.
1837
1838 // All ops except SHR return a signed int32 that we load in
1839 // a HeapNumber.
1840 if (op_ != Token::SHR) {
1841 __ bind(&non_smi_result);
1842 // Allocate a heap number if needed.
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00001843 __ mov(ebx, eax); // ebx: result
karlklose@chromium.org83a47282011-05-11 11:54:09 +00001844 Label skip_allocation;
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001845 switch (mode_) {
1846 case OVERWRITE_LEFT:
1847 case OVERWRITE_RIGHT:
1848 // If the operand was an object, we skip the
1849 // allocation of a heap number.
1850 __ mov(eax, Operand(esp, mode_ == OVERWRITE_RIGHT ?
1851 1 * kPointerSize : 2 * kPointerSize));
whesse@chromium.org7b260152011-06-20 15:33:18 +00001852 __ JumpIfNotSmi(eax, &skip_allocation, Label::kNear);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001853 // Fall through!
1854 case NO_OVERWRITE:
1855 __ AllocateHeapNumber(eax, ecx, edx, &call_runtime);
1856 __ bind(&skip_allocation);
1857 break;
1858 default: UNREACHABLE();
1859 }
1860 // Store the result in the HeapNumber and return.
kmillikin@chromium.orgc36ce6e2011-04-04 08:25:31 +00001861 if (CpuFeatures::IsSupported(SSE2)) {
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001862 CpuFeatures::Scope use_sse2(SSE2);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00001863 __ cvtsi2sd(xmm0, ebx);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001864 __ movdbl(FieldOperand(eax, HeapNumber::kValueOffset), xmm0);
1865 } else {
1866 __ mov(Operand(esp, 1 * kPointerSize), ebx);
1867 __ fild_s(Operand(esp, 1 * kPointerSize));
1868 __ fstp_d(FieldOperand(eax, HeapNumber::kValueOffset));
1869 }
1870 __ ret(2 * kPointerSize); // Drop two pushed arguments from the stack.
1871 }
1872
1873 __ bind(&not_floats);
1874 __ bind(&not_int32);
1875 GenerateTypeTransitionWithSavedArgs(masm);
1876 break;
1877 }
1878 default: UNREACHABLE(); break;
1879 }
1880
svenpanne@chromium.orgfb046332012-04-19 12:02:44 +00001881 // If an allocation fails, or SHR hits a hard case, use the runtime system to
1882 // get the correct result.
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001883 __ bind(&call_runtime);
1884
1885 switch (op_) {
1886 case Token::ADD:
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001887 case Token::SUB:
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001888 case Token::MUL:
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001889 case Token::DIV:
1890 GenerateRegisterArgsPush(masm);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001891 break;
1892 case Token::MOD:
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00001893 return; // Handled above.
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001894 case Token::BIT_OR:
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001895 case Token::BIT_AND:
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001896 case Token::BIT_XOR:
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001897 case Token::SAR:
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001898 case Token::SHL:
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001899 case Token::SHR:
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001900 break;
1901 default:
1902 UNREACHABLE();
1903 }
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00001904 GenerateCallRuntime(masm);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001905}
1906
1907
danno@chromium.org40cb8782011-05-25 07:58:50 +00001908void BinaryOpStub::GenerateOddballStub(MacroAssembler* masm) {
lrn@chromium.org7516f052011-03-30 08:52:27 +00001909 if (op_ == Token::ADD) {
1910 // Handle string addition here, because it is the only operation
1911 // that does not do a ToNumber conversion on the operands.
1912 GenerateAddStrings(masm);
1913 }
1914
danno@chromium.org160a7b02011-04-18 15:51:38 +00001915 Factory* factory = masm->isolate()->factory();
1916
lrn@chromium.org7516f052011-03-30 08:52:27 +00001917 // Convert odd ball arguments to numbers.
karlklose@chromium.org83a47282011-05-11 11:54:09 +00001918 Label check, done;
danno@chromium.org160a7b02011-04-18 15:51:38 +00001919 __ cmp(edx, factory->undefined_value());
karlklose@chromium.org83a47282011-05-11 11:54:09 +00001920 __ j(not_equal, &check, Label::kNear);
lrn@chromium.org7516f052011-03-30 08:52:27 +00001921 if (Token::IsBitOp(op_)) {
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00001922 __ xor_(edx, edx);
lrn@chromium.org7516f052011-03-30 08:52:27 +00001923 } else {
danno@chromium.org160a7b02011-04-18 15:51:38 +00001924 __ mov(edx, Immediate(factory->nan_value()));
lrn@chromium.org7516f052011-03-30 08:52:27 +00001925 }
karlklose@chromium.org83a47282011-05-11 11:54:09 +00001926 __ jmp(&done, Label::kNear);
lrn@chromium.org7516f052011-03-30 08:52:27 +00001927 __ bind(&check);
danno@chromium.org160a7b02011-04-18 15:51:38 +00001928 __ cmp(eax, factory->undefined_value());
karlklose@chromium.org83a47282011-05-11 11:54:09 +00001929 __ j(not_equal, &done, Label::kNear);
lrn@chromium.org7516f052011-03-30 08:52:27 +00001930 if (Token::IsBitOp(op_)) {
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00001931 __ xor_(eax, eax);
lrn@chromium.org7516f052011-03-30 08:52:27 +00001932 } else {
danno@chromium.org160a7b02011-04-18 15:51:38 +00001933 __ mov(eax, Immediate(factory->nan_value()));
lrn@chromium.org7516f052011-03-30 08:52:27 +00001934 }
1935 __ bind(&done);
1936
1937 GenerateHeapNumberStub(masm);
1938}
1939
1940
danno@chromium.org40cb8782011-05-25 07:58:50 +00001941void BinaryOpStub::GenerateHeapNumberStub(MacroAssembler* masm) {
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001942 Label call_runtime;
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001943
1944 // Floating point case.
1945 switch (op_) {
1946 case Token::ADD:
1947 case Token::SUB:
1948 case Token::MUL:
1949 case Token::DIV: {
1950 Label not_floats;
kmillikin@chromium.orgc36ce6e2011-04-04 08:25:31 +00001951 if (CpuFeatures::IsSupported(SSE2)) {
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001952 CpuFeatures::Scope use_sse2(SSE2);
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00001953
1954 // It could be that only SMIs have been seen at either the left
1955 // or the right operand. For precise type feedback, patch the IC
1956 // again if this changes.
1957 // In theory, we would need the same check in the non-SSE2 case,
1958 // but since we don't support Crankshaft on such hardware we can
1959 // afford not to care about precise type feedback.
1960 if (left_type_ == BinaryOpIC::SMI) {
1961 __ JumpIfNotSmi(edx, &not_floats);
1962 }
1963 if (right_type_ == BinaryOpIC::SMI) {
1964 __ JumpIfNotSmi(eax, &not_floats);
1965 }
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001966 FloatingPointHelper::LoadSSE2Operands(masm, &not_floats);
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00001967 if (left_type_ == BinaryOpIC::INT32) {
1968 FloatingPointHelper::CheckSSE2OperandIsInt32(
1969 masm, &not_floats, xmm0, ecx, xmm2);
1970 }
1971 if (right_type_ == BinaryOpIC::INT32) {
1972 FloatingPointHelper::CheckSSE2OperandIsInt32(
1973 masm, &not_floats, xmm1, ecx, xmm2);
1974 }
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001975
1976 switch (op_) {
1977 case Token::ADD: __ addsd(xmm0, xmm1); break;
1978 case Token::SUB: __ subsd(xmm0, xmm1); break;
1979 case Token::MUL: __ mulsd(xmm0, xmm1); break;
1980 case Token::DIV: __ divsd(xmm0, xmm1); break;
1981 default: UNREACHABLE();
1982 }
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00001983 BinaryOpStub_GenerateHeapResultAllocation(masm, &call_runtime, mode_);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00001984 __ movdbl(FieldOperand(eax, HeapNumber::kValueOffset), xmm0);
1985 __ ret(0);
1986 } else { // SSE2 not available, use FPU.
1987 FloatingPointHelper::CheckFloatOperands(masm, &not_floats, ebx);
1988 FloatingPointHelper::LoadFloatOperands(
1989 masm,
1990 ecx,
1991 FloatingPointHelper::ARGS_IN_REGISTERS);
1992 switch (op_) {
1993 case Token::ADD: __ faddp(1); break;
1994 case Token::SUB: __ fsubp(1); break;
1995 case Token::MUL: __ fmulp(1); break;
1996 case Token::DIV: __ fdivp(1); break;
1997 default: UNREACHABLE();
1998 }
1999 Label after_alloc_failure;
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00002000 BinaryOpStub_GenerateHeapResultAllocation(
2001 masm, &after_alloc_failure, mode_);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002002 __ fstp_d(FieldOperand(eax, HeapNumber::kValueOffset));
2003 __ ret(0);
2004 __ bind(&after_alloc_failure);
jkummerow@chromium.org28faa982012-04-13 09:58:30 +00002005 __ fstp(0); // Pop FPU stack before calling runtime.
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002006 __ jmp(&call_runtime);
2007 }
2008
2009 __ bind(&not_floats);
2010 GenerateTypeTransition(masm);
2011 break;
2012 }
2013
2014 case Token::MOD: {
2015 // For MOD we go directly to runtime in the non-smi case.
2016 break;
2017 }
2018 case Token::BIT_OR:
2019 case Token::BIT_AND:
2020 case Token::BIT_XOR:
2021 case Token::SAR:
2022 case Token::SHL:
2023 case Token::SHR: {
2024 GenerateRegisterArgsPush(masm);
2025 Label not_floats;
2026 Label non_smi_result;
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00002027 // We do not check the input arguments here, as any value is
2028 // unconditionally truncated to an int32 anyway. To get the
2029 // right optimized code, int32 type feedback is just right.
2030 bool use_sse3 = platform_specific_bit_;
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002031 FloatingPointHelper::LoadUnknownsAsIntegers(masm,
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00002032 use_sse3,
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002033 &not_floats);
2034 switch (op_) {
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00002035 case Token::BIT_OR: __ or_(eax, ecx); break;
2036 case Token::BIT_AND: __ and_(eax, ecx); break;
2037 case Token::BIT_XOR: __ xor_(eax, ecx); break;
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002038 case Token::SAR: __ sar_cl(eax); break;
2039 case Token::SHL: __ shl_cl(eax); break;
2040 case Token::SHR: __ shr_cl(eax); break;
2041 default: UNREACHABLE();
2042 }
2043 if (op_ == Token::SHR) {
2044 // Check if result is non-negative and fits in a smi.
2045 __ test(eax, Immediate(0xc0000000));
2046 __ j(not_zero, &call_runtime);
2047 } else {
2048 // Check if result fits in a smi.
2049 __ cmp(eax, 0xc0000000);
ricow@chromium.org4668a2c2011-08-29 10:41:00 +00002050 __ j(negative, &non_smi_result, Label::kNear);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002051 }
2052 // Tag smi result and return.
2053 __ SmiTag(eax);
2054 __ ret(2 * kPointerSize); // Drop two pushed arguments from the stack.
2055
2056 // All ops except SHR return a signed int32 that we load in
2057 // a HeapNumber.
2058 if (op_ != Token::SHR) {
2059 __ bind(&non_smi_result);
2060 // Allocate a heap number if needed.
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00002061 __ mov(ebx, eax); // ebx: result
karlklose@chromium.org83a47282011-05-11 11:54:09 +00002062 Label skip_allocation;
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002063 switch (mode_) {
2064 case OVERWRITE_LEFT:
2065 case OVERWRITE_RIGHT:
2066 // If the operand was an object, we skip the
2067 // allocation of a heap number.
2068 __ mov(eax, Operand(esp, mode_ == OVERWRITE_RIGHT ?
2069 1 * kPointerSize : 2 * kPointerSize));
whesse@chromium.org7b260152011-06-20 15:33:18 +00002070 __ JumpIfNotSmi(eax, &skip_allocation, Label::kNear);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002071 // Fall through!
2072 case NO_OVERWRITE:
2073 __ AllocateHeapNumber(eax, ecx, edx, &call_runtime);
2074 __ bind(&skip_allocation);
2075 break;
2076 default: UNREACHABLE();
2077 }
2078 // Store the result in the HeapNumber and return.
kmillikin@chromium.orgc36ce6e2011-04-04 08:25:31 +00002079 if (CpuFeatures::IsSupported(SSE2)) {
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002080 CpuFeatures::Scope use_sse2(SSE2);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00002081 __ cvtsi2sd(xmm0, ebx);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002082 __ movdbl(FieldOperand(eax, HeapNumber::kValueOffset), xmm0);
2083 } else {
2084 __ mov(Operand(esp, 1 * kPointerSize), ebx);
2085 __ fild_s(Operand(esp, 1 * kPointerSize));
2086 __ fstp_d(FieldOperand(eax, HeapNumber::kValueOffset));
2087 }
2088 __ ret(2 * kPointerSize); // Drop two pushed arguments from the stack.
2089 }
2090
2091 __ bind(&not_floats);
2092 GenerateTypeTransitionWithSavedArgs(masm);
2093 break;
2094 }
2095 default: UNREACHABLE(); break;
2096 }
2097
2098 // If an allocation fails, or SHR or MOD hit a hard case,
2099 // use the runtime system to get the correct result.
2100 __ bind(&call_runtime);
2101
2102 switch (op_) {
2103 case Token::ADD:
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002104 case Token::SUB:
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002105 case Token::MUL:
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002106 case Token::DIV:
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002107 case Token::MOD:
2108 GenerateRegisterArgsPush(masm);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002109 break;
2110 case Token::BIT_OR:
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002111 case Token::BIT_AND:
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002112 case Token::BIT_XOR:
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002113 case Token::SAR:
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002114 case Token::SHL:
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002115 case Token::SHR:
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002116 break;
2117 default:
2118 UNREACHABLE();
2119 }
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00002120 GenerateCallRuntime(masm);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002121}
2122
2123
danno@chromium.org40cb8782011-05-25 07:58:50 +00002124void BinaryOpStub::GenerateGeneric(MacroAssembler* masm) {
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002125 Label call_runtime;
2126
fschneider@chromium.org7979bbb2011-03-28 10:47:03 +00002127 Counters* counters = masm->isolate()->counters();
2128 __ IncrementCounter(counters->generic_binary_stub_calls(), 1);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002129
2130 switch (op_) {
2131 case Token::ADD:
2132 case Token::SUB:
2133 case Token::MUL:
2134 case Token::DIV:
2135 break;
2136 case Token::MOD:
2137 case Token::BIT_OR:
2138 case Token::BIT_AND:
2139 case Token::BIT_XOR:
2140 case Token::SAR:
2141 case Token::SHL:
2142 case Token::SHR:
2143 GenerateRegisterArgsPush(masm);
2144 break;
2145 default:
2146 UNREACHABLE();
2147 }
2148
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00002149 BinaryOpStub_GenerateSmiCode(
2150 masm, &call_runtime, ALLOW_HEAPNUMBER_RESULTS, op_);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002151
2152 // Floating point case.
2153 switch (op_) {
2154 case Token::ADD:
2155 case Token::SUB:
2156 case Token::MUL:
2157 case Token::DIV: {
2158 Label not_floats;
kmillikin@chromium.orgc36ce6e2011-04-04 08:25:31 +00002159 if (CpuFeatures::IsSupported(SSE2)) {
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002160 CpuFeatures::Scope use_sse2(SSE2);
2161 FloatingPointHelper::LoadSSE2Operands(masm, &not_floats);
2162
2163 switch (op_) {
2164 case Token::ADD: __ addsd(xmm0, xmm1); break;
2165 case Token::SUB: __ subsd(xmm0, xmm1); break;
2166 case Token::MUL: __ mulsd(xmm0, xmm1); break;
2167 case Token::DIV: __ divsd(xmm0, xmm1); break;
2168 default: UNREACHABLE();
2169 }
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00002170 BinaryOpStub_GenerateHeapResultAllocation(masm, &call_runtime, mode_);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002171 __ movdbl(FieldOperand(eax, HeapNumber::kValueOffset), xmm0);
2172 __ ret(0);
2173 } else { // SSE2 not available, use FPU.
2174 FloatingPointHelper::CheckFloatOperands(masm, &not_floats, ebx);
2175 FloatingPointHelper::LoadFloatOperands(
2176 masm,
2177 ecx,
2178 FloatingPointHelper::ARGS_IN_REGISTERS);
2179 switch (op_) {
2180 case Token::ADD: __ faddp(1); break;
2181 case Token::SUB: __ fsubp(1); break;
2182 case Token::MUL: __ fmulp(1); break;
2183 case Token::DIV: __ fdivp(1); break;
2184 default: UNREACHABLE();
2185 }
2186 Label after_alloc_failure;
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00002187 BinaryOpStub_GenerateHeapResultAllocation(
2188 masm, &after_alloc_failure, mode_);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002189 __ fstp_d(FieldOperand(eax, HeapNumber::kValueOffset));
2190 __ ret(0);
2191 __ bind(&after_alloc_failure);
jkummerow@chromium.org28faa982012-04-13 09:58:30 +00002192 __ fstp(0); // Pop FPU stack before calling runtime.
2193 __ jmp(&call_runtime);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002194 }
2195 __ bind(&not_floats);
2196 break;
2197 }
2198 case Token::MOD: {
2199 // For MOD we go directly to runtime in the non-smi case.
2200 break;
2201 }
2202 case Token::BIT_OR:
2203 case Token::BIT_AND:
2204 case Token::BIT_XOR:
2205 case Token::SAR:
2206 case Token::SHL:
2207 case Token::SHR: {
2208 Label non_smi_result;
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00002209 bool use_sse3 = platform_specific_bit_;
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002210 FloatingPointHelper::LoadUnknownsAsIntegers(masm,
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00002211 use_sse3,
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002212 &call_runtime);
2213 switch (op_) {
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00002214 case Token::BIT_OR: __ or_(eax, ecx); break;
2215 case Token::BIT_AND: __ and_(eax, ecx); break;
2216 case Token::BIT_XOR: __ xor_(eax, ecx); break;
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002217 case Token::SAR: __ sar_cl(eax); break;
2218 case Token::SHL: __ shl_cl(eax); break;
2219 case Token::SHR: __ shr_cl(eax); break;
2220 default: UNREACHABLE();
2221 }
2222 if (op_ == Token::SHR) {
2223 // Check if result is non-negative and fits in a smi.
2224 __ test(eax, Immediate(0xc0000000));
2225 __ j(not_zero, &call_runtime);
2226 } else {
2227 // Check if result fits in a smi.
2228 __ cmp(eax, 0xc0000000);
ricow@chromium.org4668a2c2011-08-29 10:41:00 +00002229 __ j(negative, &non_smi_result, Label::kNear);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002230 }
2231 // Tag smi result and return.
2232 __ SmiTag(eax);
2233 __ ret(2 * kPointerSize); // Drop the arguments from the stack.
2234
2235 // All ops except SHR return a signed int32 that we load in
2236 // a HeapNumber.
2237 if (op_ != Token::SHR) {
2238 __ bind(&non_smi_result);
2239 // Allocate a heap number if needed.
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00002240 __ mov(ebx, eax); // ebx: result
karlklose@chromium.org83a47282011-05-11 11:54:09 +00002241 Label skip_allocation;
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002242 switch (mode_) {
2243 case OVERWRITE_LEFT:
2244 case OVERWRITE_RIGHT:
2245 // If the operand was an object, we skip the
2246 // allocation of a heap number.
2247 __ mov(eax, Operand(esp, mode_ == OVERWRITE_RIGHT ?
2248 1 * kPointerSize : 2 * kPointerSize));
whesse@chromium.org7b260152011-06-20 15:33:18 +00002249 __ JumpIfNotSmi(eax, &skip_allocation, Label::kNear);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002250 // Fall through!
2251 case NO_OVERWRITE:
2252 __ AllocateHeapNumber(eax, ecx, edx, &call_runtime);
2253 __ bind(&skip_allocation);
2254 break;
2255 default: UNREACHABLE();
2256 }
2257 // Store the result in the HeapNumber and return.
kmillikin@chromium.orgc36ce6e2011-04-04 08:25:31 +00002258 if (CpuFeatures::IsSupported(SSE2)) {
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002259 CpuFeatures::Scope use_sse2(SSE2);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00002260 __ cvtsi2sd(xmm0, ebx);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002261 __ movdbl(FieldOperand(eax, HeapNumber::kValueOffset), xmm0);
2262 } else {
2263 __ mov(Operand(esp, 1 * kPointerSize), ebx);
2264 __ fild_s(Operand(esp, 1 * kPointerSize));
2265 __ fstp_d(FieldOperand(eax, HeapNumber::kValueOffset));
2266 }
2267 __ ret(2 * kPointerSize);
2268 }
2269 break;
2270 }
2271 default: UNREACHABLE(); break;
2272 }
2273
2274 // If all else fails, use the runtime system to get the correct
2275 // result.
2276 __ bind(&call_runtime);
2277 switch (op_) {
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00002278 case Token::ADD:
ager@chromium.org0ee099b2011-01-25 14:06:47 +00002279 GenerateAddStrings(masm);
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00002280 // Fall through.
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002281 case Token::SUB:
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002282 case Token::MUL:
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002283 case Token::DIV:
2284 GenerateRegisterArgsPush(masm);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002285 break;
2286 case Token::MOD:
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002287 case Token::BIT_OR:
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002288 case Token::BIT_AND:
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002289 case Token::BIT_XOR:
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002290 case Token::SAR:
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002291 case Token::SHL:
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002292 case Token::SHR:
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002293 break;
2294 default:
2295 UNREACHABLE();
2296 }
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00002297 GenerateCallRuntime(masm);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002298}
2299
2300
danno@chromium.org40cb8782011-05-25 07:58:50 +00002301void BinaryOpStub::GenerateAddStrings(MacroAssembler* masm) {
fschneider@chromium.org3a5fd782011-02-24 10:10:44 +00002302 ASSERT(op_ == Token::ADD);
karlklose@chromium.org83a47282011-05-11 11:54:09 +00002303 Label left_not_string, call_runtime;
ager@chromium.org0ee099b2011-01-25 14:06:47 +00002304
2305 // Registers containing left and right operands respectively.
2306 Register left = edx;
2307 Register right = eax;
2308
2309 // Test if left operand is a string.
whesse@chromium.org7b260152011-06-20 15:33:18 +00002310 __ JumpIfSmi(left, &left_not_string, Label::kNear);
ager@chromium.org0ee099b2011-01-25 14:06:47 +00002311 __ CmpObjectType(left, FIRST_NONSTRING_TYPE, ecx);
karlklose@chromium.org83a47282011-05-11 11:54:09 +00002312 __ j(above_equal, &left_not_string, Label::kNear);
ager@chromium.org0ee099b2011-01-25 14:06:47 +00002313
2314 StringAddStub string_add_left_stub(NO_STRING_CHECK_LEFT_IN_STUB);
2315 GenerateRegisterArgsPush(masm);
2316 __ TailCallStub(&string_add_left_stub);
2317
2318 // Left operand is not a string, test right.
2319 __ bind(&left_not_string);
whesse@chromium.org7b260152011-06-20 15:33:18 +00002320 __ JumpIfSmi(right, &call_runtime, Label::kNear);
ager@chromium.org0ee099b2011-01-25 14:06:47 +00002321 __ CmpObjectType(right, FIRST_NONSTRING_TYPE, ecx);
karlklose@chromium.org83a47282011-05-11 11:54:09 +00002322 __ j(above_equal, &call_runtime, Label::kNear);
ager@chromium.org0ee099b2011-01-25 14:06:47 +00002323
2324 StringAddStub string_add_right_stub(NO_STRING_CHECK_RIGHT_IN_STUB);
2325 GenerateRegisterArgsPush(masm);
2326 __ TailCallStub(&string_add_right_stub);
2327
2328 // Neither argument is a string.
2329 __ bind(&call_runtime);
2330}
2331
2332
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00002333static void BinaryOpStub_GenerateHeapResultAllocation(MacroAssembler* masm,
2334 Label* alloc_failure,
2335 OverwriteMode mode) {
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002336 Label skip_allocation;
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002337 switch (mode) {
2338 case OVERWRITE_LEFT: {
2339 // If the argument in edx is already an object, we skip the
2340 // allocation of a heap number.
whesse@chromium.org7b260152011-06-20 15:33:18 +00002341 __ JumpIfNotSmi(edx, &skip_allocation, Label::kNear);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002342 // Allocate a heap number for the result. Keep eax and edx intact
2343 // for the possible runtime call.
2344 __ AllocateHeapNumber(ebx, ecx, no_reg, alloc_failure);
2345 // Now edx can be overwritten losing one of the arguments as we are
2346 // now done and will not need it any more.
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00002347 __ mov(edx, ebx);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002348 __ bind(&skip_allocation);
2349 // Use object in edx as a result holder
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00002350 __ mov(eax, edx);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002351 break;
2352 }
2353 case OVERWRITE_RIGHT:
2354 // If the argument in eax is already an object, we skip the
2355 // allocation of a heap number.
whesse@chromium.org7b260152011-06-20 15:33:18 +00002356 __ JumpIfNotSmi(eax, &skip_allocation, Label::kNear);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002357 // Fall through!
2358 case NO_OVERWRITE:
2359 // Allocate a heap number for the result. Keep eax and edx intact
2360 // for the possible runtime call.
2361 __ AllocateHeapNumber(ebx, ecx, no_reg, alloc_failure);
2362 // Now eax can be overwritten losing one of the arguments as we are
2363 // now done and will not need it any more.
2364 __ mov(eax, ebx);
2365 __ bind(&skip_allocation);
2366 break;
2367 default: UNREACHABLE();
2368 }
2369}
2370
2371
danno@chromium.org40cb8782011-05-25 07:58:50 +00002372void BinaryOpStub::GenerateRegisterArgsPush(MacroAssembler* masm) {
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002373 __ pop(ecx);
2374 __ push(edx);
2375 __ push(eax);
2376 __ push(ecx);
2377}
2378
2379
ricow@chromium.org65fae842010-08-25 15:26:24 +00002380void TranscendentalCacheStub::Generate(MacroAssembler* masm) {
whesse@chromium.org023421e2010-12-21 12:19:12 +00002381 // TAGGED case:
2382 // Input:
2383 // esp[4]: tagged number input argument (should be number).
2384 // esp[0]: return address.
2385 // Output:
2386 // eax: tagged double result.
2387 // UNTAGGED case:
2388 // Input::
2389 // esp[0]: return address.
2390 // xmm1: untagged double input argument
2391 // Output:
2392 // xmm1: untagged double result.
2393
ricow@chromium.org65fae842010-08-25 15:26:24 +00002394 Label runtime_call;
2395 Label runtime_call_clear_stack;
whesse@chromium.org023421e2010-12-21 12:19:12 +00002396 Label skip_cache;
2397 const bool tagged = (argument_type_ == TAGGED);
2398 if (tagged) {
2399 // Test that eax is a number.
karlklose@chromium.org83a47282011-05-11 11:54:09 +00002400 Label input_not_smi;
2401 Label loaded;
whesse@chromium.org023421e2010-12-21 12:19:12 +00002402 __ mov(eax, Operand(esp, kPointerSize));
whesse@chromium.org7b260152011-06-20 15:33:18 +00002403 __ JumpIfNotSmi(eax, &input_not_smi, Label::kNear);
whesse@chromium.org023421e2010-12-21 12:19:12 +00002404 // Input is a smi. Untag and load it onto the FPU stack.
2405 // Then load the low and high words of the double into ebx, edx.
2406 STATIC_ASSERT(kSmiTagSize == 1);
2407 __ sar(eax, 1);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00002408 __ sub(esp, Immediate(2 * kPointerSize));
whesse@chromium.org023421e2010-12-21 12:19:12 +00002409 __ mov(Operand(esp, 0), eax);
2410 __ fild_s(Operand(esp, 0));
2411 __ fst_d(Operand(esp, 0));
2412 __ pop(edx);
2413 __ pop(ebx);
karlklose@chromium.org83a47282011-05-11 11:54:09 +00002414 __ jmp(&loaded, Label::kNear);
whesse@chromium.org023421e2010-12-21 12:19:12 +00002415 __ bind(&input_not_smi);
2416 // Check if input is a HeapNumber.
2417 __ mov(ebx, FieldOperand(eax, HeapObject::kMapOffset));
fschneider@chromium.org7979bbb2011-03-28 10:47:03 +00002418 Factory* factory = masm->isolate()->factory();
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00002419 __ cmp(ebx, Immediate(factory->heap_number_map()));
whesse@chromium.org023421e2010-12-21 12:19:12 +00002420 __ j(not_equal, &runtime_call);
2421 // Input is a HeapNumber. Push it on the FPU stack and load its
2422 // low and high words into ebx, edx.
2423 __ fld_d(FieldOperand(eax, HeapNumber::kValueOffset));
2424 __ mov(edx, FieldOperand(eax, HeapNumber::kExponentOffset));
2425 __ mov(ebx, FieldOperand(eax, HeapNumber::kMantissaOffset));
ricow@chromium.org65fae842010-08-25 15:26:24 +00002426
whesse@chromium.org023421e2010-12-21 12:19:12 +00002427 __ bind(&loaded);
2428 } else { // UNTAGGED.
kmillikin@chromium.orgc36ce6e2011-04-04 08:25:31 +00002429 if (CpuFeatures::IsSupported(SSE4_1)) {
whesse@chromium.org023421e2010-12-21 12:19:12 +00002430 CpuFeatures::Scope sse4_scope(SSE4_1);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00002431 __ pextrd(edx, xmm1, 0x1); // copy xmm1[63..32] to edx.
whesse@chromium.org023421e2010-12-21 12:19:12 +00002432 } else {
2433 __ pshufd(xmm0, xmm1, 0x1);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00002434 __ movd(edx, xmm0);
whesse@chromium.org023421e2010-12-21 12:19:12 +00002435 }
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00002436 __ movd(ebx, xmm1);
whesse@chromium.org023421e2010-12-21 12:19:12 +00002437 }
2438
2439 // ST[0] or xmm1 == double value
ricow@chromium.org65fae842010-08-25 15:26:24 +00002440 // ebx = low 32 bits of double value
2441 // edx = high 32 bits of double value
2442 // Compute hash (the shifts are arithmetic):
2443 // h = (low ^ high); h ^= h >> 16; h ^= h >> 8; h = h & (cacheSize - 1);
2444 __ mov(ecx, ebx);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00002445 __ xor_(ecx, edx);
ricow@chromium.org65fae842010-08-25 15:26:24 +00002446 __ mov(eax, ecx);
2447 __ sar(eax, 16);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00002448 __ xor_(ecx, eax);
ricow@chromium.org65fae842010-08-25 15:26:24 +00002449 __ mov(eax, ecx);
2450 __ sar(eax, 8);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00002451 __ xor_(ecx, eax);
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +00002452 ASSERT(IsPowerOf2(TranscendentalCache::SubCache::kCacheSize));
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00002453 __ and_(ecx,
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +00002454 Immediate(TranscendentalCache::SubCache::kCacheSize - 1));
ricow@chromium.org65fae842010-08-25 15:26:24 +00002455
whesse@chromium.org023421e2010-12-21 12:19:12 +00002456 // ST[0] or xmm1 == double value.
ricow@chromium.org65fae842010-08-25 15:26:24 +00002457 // ebx = low 32 bits of double value.
2458 // edx = high 32 bits of double value.
2459 // ecx = TranscendentalCache::hash(double value).
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +00002460 ExternalReference cache_array =
2461 ExternalReference::transcendental_cache_array_address(masm->isolate());
2462 __ mov(eax, Immediate(cache_array));
2463 int cache_array_index =
2464 type_ * sizeof(masm->isolate()->transcendental_cache()->caches_[0]);
2465 __ mov(eax, Operand(eax, cache_array_index));
ricow@chromium.org65fae842010-08-25 15:26:24 +00002466 // Eax points to the cache for the type type_.
2467 // If NULL, the cache hasn't been initialized yet, so go through runtime.
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00002468 __ test(eax, eax);
ricow@chromium.org65fae842010-08-25 15:26:24 +00002469 __ j(zero, &runtime_call_clear_stack);
2470#ifdef DEBUG
2471 // Check that the layout of cache elements match expectations.
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +00002472 { TranscendentalCache::SubCache::Element test_elem[2];
ricow@chromium.org65fae842010-08-25 15:26:24 +00002473 char* elem_start = reinterpret_cast<char*>(&test_elem[0]);
2474 char* elem2_start = reinterpret_cast<char*>(&test_elem[1]);
2475 char* elem_in0 = reinterpret_cast<char*>(&(test_elem[0].in[0]));
2476 char* elem_in1 = reinterpret_cast<char*>(&(test_elem[0].in[1]));
2477 char* elem_out = reinterpret_cast<char*>(&(test_elem[0].output));
2478 CHECK_EQ(12, elem2_start - elem_start); // Two uint_32's and a pointer.
2479 CHECK_EQ(0, elem_in0 - elem_start);
2480 CHECK_EQ(kIntSize, elem_in1 - elem_start);
2481 CHECK_EQ(2 * kIntSize, elem_out - elem_start);
2482 }
2483#endif
2484 // Find the address of the ecx'th entry in the cache, i.e., &eax[ecx*12].
2485 __ lea(ecx, Operand(ecx, ecx, times_2, 0));
2486 __ lea(ecx, Operand(eax, ecx, times_4, 0));
2487 // Check if cache matches: Double value is stored in uint32_t[2] array.
karlklose@chromium.org83a47282011-05-11 11:54:09 +00002488 Label cache_miss;
ricow@chromium.org65fae842010-08-25 15:26:24 +00002489 __ cmp(ebx, Operand(ecx, 0));
karlklose@chromium.org83a47282011-05-11 11:54:09 +00002490 __ j(not_equal, &cache_miss, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00002491 __ cmp(edx, Operand(ecx, kIntSize));
karlklose@chromium.org83a47282011-05-11 11:54:09 +00002492 __ j(not_equal, &cache_miss, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00002493 // Cache hit!
mstarzinger@chromium.org1b3afd12011-11-29 14:28:56 +00002494 Counters* counters = masm->isolate()->counters();
2495 __ IncrementCounter(counters->transcendental_cache_hit(), 1);
ricow@chromium.org65fae842010-08-25 15:26:24 +00002496 __ mov(eax, Operand(ecx, 2 * kIntSize));
whesse@chromium.org023421e2010-12-21 12:19:12 +00002497 if (tagged) {
2498 __ fstp(0);
2499 __ ret(kPointerSize);
2500 } else { // UNTAGGED.
2501 __ movdbl(xmm1, FieldOperand(eax, HeapNumber::kValueOffset));
2502 __ Ret();
2503 }
ricow@chromium.org65fae842010-08-25 15:26:24 +00002504
2505 __ bind(&cache_miss);
mstarzinger@chromium.org1b3afd12011-11-29 14:28:56 +00002506 __ IncrementCounter(counters->transcendental_cache_miss(), 1);
ricow@chromium.org65fae842010-08-25 15:26:24 +00002507 // Update cache with new value.
2508 // We are short on registers, so use no_reg as scratch.
2509 // This gives slightly larger code.
whesse@chromium.org023421e2010-12-21 12:19:12 +00002510 if (tagged) {
2511 __ AllocateHeapNumber(eax, edi, no_reg, &runtime_call_clear_stack);
2512 } else { // UNTAGGED.
2513 __ AllocateHeapNumber(eax, edi, no_reg, &skip_cache);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00002514 __ sub(esp, Immediate(kDoubleSize));
whesse@chromium.org023421e2010-12-21 12:19:12 +00002515 __ movdbl(Operand(esp, 0), xmm1);
2516 __ fld_d(Operand(esp, 0));
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00002517 __ add(esp, Immediate(kDoubleSize));
whesse@chromium.org023421e2010-12-21 12:19:12 +00002518 }
ulan@chromium.org9a21ec42012-03-06 08:42:24 +00002519 GenerateOperation(masm, type_);
ricow@chromium.org65fae842010-08-25 15:26:24 +00002520 __ mov(Operand(ecx, 0), ebx);
2521 __ mov(Operand(ecx, kIntSize), edx);
2522 __ mov(Operand(ecx, 2 * kIntSize), eax);
2523 __ fstp_d(FieldOperand(eax, HeapNumber::kValueOffset));
whesse@chromium.org023421e2010-12-21 12:19:12 +00002524 if (tagged) {
2525 __ ret(kPointerSize);
2526 } else { // UNTAGGED.
2527 __ movdbl(xmm1, FieldOperand(eax, HeapNumber::kValueOffset));
2528 __ Ret();
ricow@chromium.org65fae842010-08-25 15:26:24 +00002529
whesse@chromium.org023421e2010-12-21 12:19:12 +00002530 // Skip cache and return answer directly, only in untagged case.
2531 __ bind(&skip_cache);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00002532 __ sub(esp, Immediate(kDoubleSize));
whesse@chromium.org023421e2010-12-21 12:19:12 +00002533 __ movdbl(Operand(esp, 0), xmm1);
2534 __ fld_d(Operand(esp, 0));
ulan@chromium.org9a21ec42012-03-06 08:42:24 +00002535 GenerateOperation(masm, type_);
whesse@chromium.org023421e2010-12-21 12:19:12 +00002536 __ fstp_d(Operand(esp, 0));
2537 __ movdbl(xmm1, Operand(esp, 0));
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00002538 __ add(esp, Immediate(kDoubleSize));
whesse@chromium.org023421e2010-12-21 12:19:12 +00002539 // We return the value in xmm1 without adding it to the cache, but
2540 // we cause a scavenging GC so that future allocations will succeed.
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00002541 {
2542 FrameScope scope(masm, StackFrame::INTERNAL);
2543 // Allocate an unused object bigger than a HeapNumber.
2544 __ push(Immediate(Smi::FromInt(2 * kDoubleSize)));
2545 __ CallRuntimeSaveDoubles(Runtime::kAllocateInNewSpace);
2546 }
whesse@chromium.org023421e2010-12-21 12:19:12 +00002547 __ Ret();
2548 }
2549
2550 // Call runtime, doing whatever allocation and cleanup is necessary.
2551 if (tagged) {
2552 __ bind(&runtime_call_clear_stack);
2553 __ fstp(0);
2554 __ bind(&runtime_call);
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +00002555 ExternalReference runtime =
2556 ExternalReference(RuntimeFunction(), masm->isolate());
2557 __ TailCallExternalReference(runtime, 1, 1);
whesse@chromium.org023421e2010-12-21 12:19:12 +00002558 } else { // UNTAGGED.
2559 __ bind(&runtime_call_clear_stack);
2560 __ bind(&runtime_call);
2561 __ AllocateHeapNumber(eax, edi, no_reg, &skip_cache);
2562 __ movdbl(FieldOperand(eax, HeapNumber::kValueOffset), xmm1);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00002563 {
2564 FrameScope scope(masm, StackFrame::INTERNAL);
2565 __ push(eax);
2566 __ CallRuntime(RuntimeFunction(), 1);
2567 }
whesse@chromium.org023421e2010-12-21 12:19:12 +00002568 __ movdbl(xmm1, FieldOperand(eax, HeapNumber::kValueOffset));
2569 __ Ret();
2570 }
ricow@chromium.org65fae842010-08-25 15:26:24 +00002571}
2572
2573
2574Runtime::FunctionId TranscendentalCacheStub::RuntimeFunction() {
2575 switch (type_) {
ricow@chromium.org65fae842010-08-25 15:26:24 +00002576 case TranscendentalCache::SIN: return Runtime::kMath_sin;
2577 case TranscendentalCache::COS: return Runtime::kMath_cos;
mstarzinger@chromium.org1b3afd12011-11-29 14:28:56 +00002578 case TranscendentalCache::TAN: return Runtime::kMath_tan;
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002579 case TranscendentalCache::LOG: return Runtime::kMath_log;
ricow@chromium.org65fae842010-08-25 15:26:24 +00002580 default:
2581 UNIMPLEMENTED();
2582 return Runtime::kAbort;
2583 }
2584}
2585
2586
ulan@chromium.org9a21ec42012-03-06 08:42:24 +00002587void TranscendentalCacheStub::GenerateOperation(
2588 MacroAssembler* masm, TranscendentalCache::Type type) {
ricow@chromium.org65fae842010-08-25 15:26:24 +00002589 // Only free register is edi.
whesse@chromium.org023421e2010-12-21 12:19:12 +00002590 // Input value is on FP stack, and also in ebx/edx.
2591 // Input value is possibly in xmm1.
2592 // Address of result (a newly allocated HeapNumber) may be in eax.
ulan@chromium.org9a21ec42012-03-06 08:42:24 +00002593 if (type == TranscendentalCache::SIN ||
2594 type == TranscendentalCache::COS ||
2595 type == TranscendentalCache::TAN) {
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002596 // Both fsin and fcos require arguments in the range +/-2^63 and
2597 // return NaN for infinities and NaN. They can share all code except
2598 // the actual fsin/fcos operation.
karlklose@chromium.org83a47282011-05-11 11:54:09 +00002599 Label in_range, done;
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002600 // If argument is outside the range -2^63..2^63, fsin/cos doesn't
2601 // work. We must reduce it to the appropriate range.
2602 __ mov(edi, edx);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00002603 __ and_(edi, Immediate(0x7ff00000)); // Exponent only.
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002604 int supported_exponent_limit =
2605 (63 + HeapNumber::kExponentBias) << HeapNumber::kExponentShift;
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00002606 __ cmp(edi, Immediate(supported_exponent_limit));
vegorov@chromium.org7304bca2011-05-16 12:14:13 +00002607 __ j(below, &in_range, Label::kNear);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002608 // Check for infinity and NaN. Both return NaN for sin.
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00002609 __ cmp(edi, Immediate(0x7ff00000));
karlklose@chromium.org83a47282011-05-11 11:54:09 +00002610 Label non_nan_result;
vegorov@chromium.org7304bca2011-05-16 12:14:13 +00002611 __ j(not_equal, &non_nan_result, Label::kNear);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002612 // Input is +/-Infinity or NaN. Result is NaN.
2613 __ fstp(0);
2614 // NaN is represented by 0x7ff8000000000000.
2615 __ push(Immediate(0x7ff80000));
2616 __ push(Immediate(0));
2617 __ fld_d(Operand(esp, 0));
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00002618 __ add(esp, Immediate(2 * kPointerSize));
karlklose@chromium.org83a47282011-05-11 11:54:09 +00002619 __ jmp(&done, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00002620
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002621 __ bind(&non_nan_result);
ricow@chromium.org65fae842010-08-25 15:26:24 +00002622
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002623 // Use fpmod to restrict argument to the range +/-2*PI.
2624 __ mov(edi, eax); // Save eax before using fnstsw_ax.
2625 __ fldpi();
2626 __ fadd(0);
2627 __ fld(1);
2628 // FPU Stack: input, 2*pi, input.
2629 {
karlklose@chromium.org83a47282011-05-11 11:54:09 +00002630 Label no_exceptions;
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002631 __ fwait();
2632 __ fnstsw_ax();
2633 // Clear if Illegal Operand or Zero Division exceptions are set.
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00002634 __ test(eax, Immediate(5));
karlklose@chromium.org83a47282011-05-11 11:54:09 +00002635 __ j(zero, &no_exceptions, Label::kNear);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002636 __ fnclex();
2637 __ bind(&no_exceptions);
2638 }
ricow@chromium.org65fae842010-08-25 15:26:24 +00002639
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002640 // Compute st(0) % st(1)
2641 {
karlklose@chromium.org83a47282011-05-11 11:54:09 +00002642 Label partial_remainder_loop;
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002643 __ bind(&partial_remainder_loop);
2644 __ fprem1();
2645 __ fwait();
2646 __ fnstsw_ax();
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00002647 __ test(eax, Immediate(0x400 /* C2 */));
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002648 // If C2 is set, computation only has partial result. Loop to
2649 // continue computation.
2650 __ j(not_zero, &partial_remainder_loop);
2651 }
2652 // FPU Stack: input, 2*pi, input % 2*pi
2653 __ fstp(2);
2654 __ fstp(0);
2655 __ mov(eax, edi); // Restore eax (allocated HeapNumber pointer).
2656
2657 // FPU Stack: input % 2*pi
2658 __ bind(&in_range);
ulan@chromium.org9a21ec42012-03-06 08:42:24 +00002659 switch (type) {
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002660 case TranscendentalCache::SIN:
2661 __ fsin();
2662 break;
2663 case TranscendentalCache::COS:
2664 __ fcos();
2665 break;
mstarzinger@chromium.org1b3afd12011-11-29 14:28:56 +00002666 case TranscendentalCache::TAN:
2667 // FPTAN calculates tangent onto st(0) and pushes 1.0 onto the
2668 // FP register stack.
2669 __ fptan();
2670 __ fstp(0); // Pop FP register stack.
2671 break;
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002672 default:
2673 UNREACHABLE();
2674 }
2675 __ bind(&done);
2676 } else {
ulan@chromium.org9a21ec42012-03-06 08:42:24 +00002677 ASSERT(type == TranscendentalCache::LOG);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002678 __ fldln2();
2679 __ fxch();
2680 __ fyl2x();
ricow@chromium.org65fae842010-08-25 15:26:24 +00002681 }
ricow@chromium.org65fae842010-08-25 15:26:24 +00002682}
2683
2684
ricow@chromium.org65fae842010-08-25 15:26:24 +00002685// Input: edx, eax are the left and right objects of a bit op.
2686// Output: eax, ecx are left and right integers for a bit op.
ricow@chromium.org65fae842010-08-25 15:26:24 +00002687void FloatingPointHelper::LoadUnknownsAsIntegers(MacroAssembler* masm,
2688 bool use_sse3,
2689 Label* conversion_failure) {
2690 // Check float operands.
2691 Label arg1_is_object, check_undefined_arg1;
2692 Label arg2_is_object, check_undefined_arg2;
2693 Label load_arg2, done;
2694
2695 // Test if arg1 is a Smi.
ricow@chromium.org4668a2c2011-08-29 10:41:00 +00002696 __ JumpIfNotSmi(edx, &arg1_is_object, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00002697
2698 __ SmiUntag(edx);
2699 __ jmp(&load_arg2);
2700
2701 // If the argument is undefined it converts to zero (ECMA-262, section 9.5).
2702 __ bind(&check_undefined_arg1);
fschneider@chromium.org7979bbb2011-03-28 10:47:03 +00002703 Factory* factory = masm->isolate()->factory();
2704 __ cmp(edx, factory->undefined_value());
ricow@chromium.org65fae842010-08-25 15:26:24 +00002705 __ j(not_equal, conversion_failure);
2706 __ mov(edx, Immediate(0));
2707 __ jmp(&load_arg2);
2708
2709 __ bind(&arg1_is_object);
2710 __ mov(ebx, FieldOperand(edx, HeapObject::kMapOffset));
fschneider@chromium.org7979bbb2011-03-28 10:47:03 +00002711 __ cmp(ebx, factory->heap_number_map());
ricow@chromium.org65fae842010-08-25 15:26:24 +00002712 __ j(not_equal, &check_undefined_arg1);
2713
2714 // Get the untagged integer version of the edx heap number in ecx.
vegorov@chromium.org7304bca2011-05-16 12:14:13 +00002715 IntegerConvert(masm, edx, use_sse3, conversion_failure);
ricow@chromium.org65fae842010-08-25 15:26:24 +00002716 __ mov(edx, ecx);
2717
2718 // Here edx has the untagged integer, eax has a Smi or a heap number.
2719 __ bind(&load_arg2);
2720
2721 // Test if arg2 is a Smi.
ricow@chromium.org4668a2c2011-08-29 10:41:00 +00002722 __ JumpIfNotSmi(eax, &arg2_is_object, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00002723
2724 __ SmiUntag(eax);
2725 __ mov(ecx, eax);
2726 __ jmp(&done);
2727
2728 // If the argument is undefined it converts to zero (ECMA-262, section 9.5).
2729 __ bind(&check_undefined_arg2);
fschneider@chromium.org7979bbb2011-03-28 10:47:03 +00002730 __ cmp(eax, factory->undefined_value());
ricow@chromium.org65fae842010-08-25 15:26:24 +00002731 __ j(not_equal, conversion_failure);
2732 __ mov(ecx, Immediate(0));
2733 __ jmp(&done);
2734
2735 __ bind(&arg2_is_object);
2736 __ mov(ebx, FieldOperand(eax, HeapObject::kMapOffset));
fschneider@chromium.org7979bbb2011-03-28 10:47:03 +00002737 __ cmp(ebx, factory->heap_number_map());
ricow@chromium.org65fae842010-08-25 15:26:24 +00002738 __ j(not_equal, &check_undefined_arg2);
2739
2740 // Get the untagged integer version of the eax heap number in ecx.
vegorov@chromium.org7304bca2011-05-16 12:14:13 +00002741 IntegerConvert(masm, eax, use_sse3, conversion_failure);
ricow@chromium.org65fae842010-08-25 15:26:24 +00002742 __ bind(&done);
2743 __ mov(eax, edx);
2744}
2745
2746
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002747void FloatingPointHelper::CheckLoadedIntegersWereInt32(MacroAssembler* masm,
2748 bool use_sse3,
2749 Label* not_int32) {
2750 return;
2751}
2752
2753
ricow@chromium.org65fae842010-08-25 15:26:24 +00002754void FloatingPointHelper::LoadFloatOperand(MacroAssembler* masm,
2755 Register number) {
karlklose@chromium.org83a47282011-05-11 11:54:09 +00002756 Label load_smi, done;
ricow@chromium.org65fae842010-08-25 15:26:24 +00002757
whesse@chromium.org7b260152011-06-20 15:33:18 +00002758 __ JumpIfSmi(number, &load_smi, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00002759 __ fld_d(FieldOperand(number, HeapNumber::kValueOffset));
karlklose@chromium.org83a47282011-05-11 11:54:09 +00002760 __ jmp(&done, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00002761
2762 __ bind(&load_smi);
2763 __ SmiUntag(number);
2764 __ push(number);
2765 __ fild_s(Operand(esp, 0));
2766 __ pop(number);
2767
2768 __ bind(&done);
2769}
2770
2771
2772void FloatingPointHelper::LoadSSE2Operands(MacroAssembler* masm) {
karlklose@chromium.org83a47282011-05-11 11:54:09 +00002773 Label load_smi_edx, load_eax, load_smi_eax, done;
ricow@chromium.org65fae842010-08-25 15:26:24 +00002774 // Load operand in edx into xmm0.
whesse@chromium.org7b260152011-06-20 15:33:18 +00002775 __ JumpIfSmi(edx, &load_smi_edx, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00002776 __ movdbl(xmm0, FieldOperand(edx, HeapNumber::kValueOffset));
2777
2778 __ bind(&load_eax);
2779 // Load operand in eax into xmm1.
whesse@chromium.org7b260152011-06-20 15:33:18 +00002780 __ JumpIfSmi(eax, &load_smi_eax, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00002781 __ movdbl(xmm1, FieldOperand(eax, HeapNumber::kValueOffset));
karlklose@chromium.org83a47282011-05-11 11:54:09 +00002782 __ jmp(&done, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00002783
2784 __ bind(&load_smi_edx);
2785 __ SmiUntag(edx); // Untag smi before converting to float.
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00002786 __ cvtsi2sd(xmm0, edx);
ricow@chromium.org65fae842010-08-25 15:26:24 +00002787 __ SmiTag(edx); // Retag smi for heap number overwriting test.
2788 __ jmp(&load_eax);
2789
2790 __ bind(&load_smi_eax);
2791 __ SmiUntag(eax); // Untag smi before converting to float.
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00002792 __ cvtsi2sd(xmm1, eax);
ricow@chromium.org65fae842010-08-25 15:26:24 +00002793 __ SmiTag(eax); // Retag smi for heap number overwriting test.
2794
2795 __ bind(&done);
2796}
2797
2798
2799void FloatingPointHelper::LoadSSE2Operands(MacroAssembler* masm,
2800 Label* not_numbers) {
karlklose@chromium.org83a47282011-05-11 11:54:09 +00002801 Label load_smi_edx, load_eax, load_smi_eax, load_float_eax, done;
ricow@chromium.org65fae842010-08-25 15:26:24 +00002802 // Load operand in edx into xmm0, or branch to not_numbers.
whesse@chromium.org7b260152011-06-20 15:33:18 +00002803 __ JumpIfSmi(edx, &load_smi_edx, Label::kNear);
fschneider@chromium.org7979bbb2011-03-28 10:47:03 +00002804 Factory* factory = masm->isolate()->factory();
2805 __ cmp(FieldOperand(edx, HeapObject::kMapOffset), factory->heap_number_map());
ricow@chromium.org65fae842010-08-25 15:26:24 +00002806 __ j(not_equal, not_numbers); // Argument in edx is not a number.
2807 __ movdbl(xmm0, FieldOperand(edx, HeapNumber::kValueOffset));
2808 __ bind(&load_eax);
2809 // Load operand in eax into xmm1, or branch to not_numbers.
whesse@chromium.org7b260152011-06-20 15:33:18 +00002810 __ JumpIfSmi(eax, &load_smi_eax, Label::kNear);
fschneider@chromium.org7979bbb2011-03-28 10:47:03 +00002811 __ cmp(FieldOperand(eax, HeapObject::kMapOffset), factory->heap_number_map());
karlklose@chromium.org83a47282011-05-11 11:54:09 +00002812 __ j(equal, &load_float_eax, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00002813 __ jmp(not_numbers); // Argument in eax is not a number.
2814 __ bind(&load_smi_edx);
2815 __ SmiUntag(edx); // Untag smi before converting to float.
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00002816 __ cvtsi2sd(xmm0, edx);
ricow@chromium.org65fae842010-08-25 15:26:24 +00002817 __ SmiTag(edx); // Retag smi for heap number overwriting test.
2818 __ jmp(&load_eax);
2819 __ bind(&load_smi_eax);
2820 __ SmiUntag(eax); // Untag smi before converting to float.
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00002821 __ cvtsi2sd(xmm1, eax);
ricow@chromium.org65fae842010-08-25 15:26:24 +00002822 __ SmiTag(eax); // Retag smi for heap number overwriting test.
karlklose@chromium.org83a47282011-05-11 11:54:09 +00002823 __ jmp(&done, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00002824 __ bind(&load_float_eax);
2825 __ movdbl(xmm1, FieldOperand(eax, HeapNumber::kValueOffset));
2826 __ bind(&done);
2827}
2828
2829
2830void FloatingPointHelper::LoadSSE2Smis(MacroAssembler* masm,
2831 Register scratch) {
2832 const Register left = edx;
2833 const Register right = eax;
2834 __ mov(scratch, left);
2835 ASSERT(!scratch.is(right)); // We're about to clobber scratch.
2836 __ SmiUntag(scratch);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00002837 __ cvtsi2sd(xmm0, scratch);
ricow@chromium.org65fae842010-08-25 15:26:24 +00002838
2839 __ mov(scratch, right);
2840 __ SmiUntag(scratch);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00002841 __ cvtsi2sd(xmm1, scratch);
ricow@chromium.org65fae842010-08-25 15:26:24 +00002842}
2843
2844
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002845void FloatingPointHelper::CheckSSE2OperandsAreInt32(MacroAssembler* masm,
2846 Label* non_int32,
2847 Register scratch) {
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00002848 CheckSSE2OperandIsInt32(masm, non_int32, xmm0, scratch, xmm2);
2849 CheckSSE2OperandIsInt32(masm, non_int32, xmm1, scratch, xmm2);
2850}
2851
2852
2853void FloatingPointHelper::CheckSSE2OperandIsInt32(MacroAssembler* masm,
2854 Label* non_int32,
2855 XMMRegister operand,
2856 Register scratch,
2857 XMMRegister xmm_scratch) {
2858 __ cvttsd2si(scratch, Operand(operand));
2859 __ cvtsi2sd(xmm_scratch, scratch);
2860 __ pcmpeqd(xmm_scratch, operand);
2861 __ movmskpd(scratch, xmm_scratch);
2862 __ test(scratch, Immediate(1));
2863 __ j(zero, non_int32);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002864}
2865
2866
ricow@chromium.org65fae842010-08-25 15:26:24 +00002867void FloatingPointHelper::LoadFloatOperands(MacroAssembler* masm,
2868 Register scratch,
2869 ArgLocation arg_location) {
karlklose@chromium.org83a47282011-05-11 11:54:09 +00002870 Label load_smi_1, load_smi_2, done_load_1, done;
ricow@chromium.org65fae842010-08-25 15:26:24 +00002871 if (arg_location == ARGS_IN_REGISTERS) {
2872 __ mov(scratch, edx);
2873 } else {
2874 __ mov(scratch, Operand(esp, 2 * kPointerSize));
2875 }
whesse@chromium.org7b260152011-06-20 15:33:18 +00002876 __ JumpIfSmi(scratch, &load_smi_1, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00002877 __ fld_d(FieldOperand(scratch, HeapNumber::kValueOffset));
2878 __ bind(&done_load_1);
2879
2880 if (arg_location == ARGS_IN_REGISTERS) {
2881 __ mov(scratch, eax);
2882 } else {
2883 __ mov(scratch, Operand(esp, 1 * kPointerSize));
2884 }
whesse@chromium.org7b260152011-06-20 15:33:18 +00002885 __ JumpIfSmi(scratch, &load_smi_2, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00002886 __ fld_d(FieldOperand(scratch, HeapNumber::kValueOffset));
karlklose@chromium.org83a47282011-05-11 11:54:09 +00002887 __ jmp(&done, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00002888
2889 __ bind(&load_smi_1);
2890 __ SmiUntag(scratch);
2891 __ push(scratch);
2892 __ fild_s(Operand(esp, 0));
2893 __ pop(scratch);
2894 __ jmp(&done_load_1);
2895
2896 __ bind(&load_smi_2);
2897 __ SmiUntag(scratch);
2898 __ push(scratch);
2899 __ fild_s(Operand(esp, 0));
2900 __ pop(scratch);
2901
2902 __ bind(&done);
2903}
2904
2905
2906void FloatingPointHelper::LoadFloatSmis(MacroAssembler* masm,
2907 Register scratch) {
2908 const Register left = edx;
2909 const Register right = eax;
2910 __ mov(scratch, left);
2911 ASSERT(!scratch.is(right)); // We're about to clobber scratch.
2912 __ SmiUntag(scratch);
2913 __ push(scratch);
2914 __ fild_s(Operand(esp, 0));
2915
2916 __ mov(scratch, right);
2917 __ SmiUntag(scratch);
2918 __ mov(Operand(esp, 0), scratch);
2919 __ fild_s(Operand(esp, 0));
2920 __ pop(scratch);
2921}
2922
2923
2924void FloatingPointHelper::CheckFloatOperands(MacroAssembler* masm,
2925 Label* non_float,
2926 Register scratch) {
karlklose@chromium.org83a47282011-05-11 11:54:09 +00002927 Label test_other, done;
ricow@chromium.org65fae842010-08-25 15:26:24 +00002928 // Test if both operands are floats or smi -> scratch=k_is_float;
2929 // Otherwise scratch = k_not_float.
whesse@chromium.org7b260152011-06-20 15:33:18 +00002930 __ JumpIfSmi(edx, &test_other, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00002931 __ mov(scratch, FieldOperand(edx, HeapObject::kMapOffset));
fschneider@chromium.org7979bbb2011-03-28 10:47:03 +00002932 Factory* factory = masm->isolate()->factory();
2933 __ cmp(scratch, factory->heap_number_map());
ricow@chromium.org65fae842010-08-25 15:26:24 +00002934 __ j(not_equal, non_float); // argument in edx is not a number -> NaN
2935
2936 __ bind(&test_other);
whesse@chromium.org7b260152011-06-20 15:33:18 +00002937 __ JumpIfSmi(eax, &done, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00002938 __ mov(scratch, FieldOperand(eax, HeapObject::kMapOffset));
fschneider@chromium.org7979bbb2011-03-28 10:47:03 +00002939 __ cmp(scratch, factory->heap_number_map());
ricow@chromium.org65fae842010-08-25 15:26:24 +00002940 __ j(not_equal, non_float); // argument in eax is not a number -> NaN
2941
2942 // Fall-through: Both operands are numbers.
2943 __ bind(&done);
2944}
2945
2946
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002947void FloatingPointHelper::CheckFloatOperandsAreInt32(MacroAssembler* masm,
2948 Label* non_int32) {
2949 return;
2950}
2951
2952
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002953void MathPowStub::Generate(MacroAssembler* masm) {
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002954 CpuFeatures::Scope use_sse2(SSE2);
fschneider@chromium.org7979bbb2011-03-28 10:47:03 +00002955 Factory* factory = masm->isolate()->factory();
ricow@chromium.org64e3a4b2011-12-13 08:07:27 +00002956 const Register exponent = eax;
2957 const Register base = edx;
2958 const Register scratch = ecx;
2959 const XMMRegister double_result = xmm3;
2960 const XMMRegister double_base = xmm2;
2961 const XMMRegister double_exponent = xmm1;
2962 const XMMRegister double_scratch = xmm4;
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002963
ricow@chromium.org64e3a4b2011-12-13 08:07:27 +00002964 Label call_runtime, done, exponent_not_smi, int_exponent;
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002965
ricow@chromium.org64e3a4b2011-12-13 08:07:27 +00002966 // Save 1 in double_result - we need this several times later on.
2967 __ mov(scratch, Immediate(1));
2968 __ cvtsi2sd(double_result, scratch);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00002969
ricow@chromium.org64e3a4b2011-12-13 08:07:27 +00002970 if (exponent_type_ == ON_STACK) {
2971 Label base_is_smi, unpack_exponent;
2972 // The exponent and base are supplied as arguments on the stack.
2973 // This can only happen if the stub is called from non-optimized code.
2974 // Load input parameters from stack.
2975 __ mov(base, Operand(esp, 2 * kPointerSize));
2976 __ mov(exponent, Operand(esp, 1 * kPointerSize));
2977
2978 __ JumpIfSmi(base, &base_is_smi, Label::kNear);
2979 __ cmp(FieldOperand(base, HeapObject::kMapOffset),
2980 factory->heap_number_map());
2981 __ j(not_equal, &call_runtime);
2982
2983 __ movdbl(double_base, FieldOperand(base, HeapNumber::kValueOffset));
2984 __ jmp(&unpack_exponent, Label::kNear);
2985
2986 __ bind(&base_is_smi);
2987 __ SmiUntag(base);
2988 __ cvtsi2sd(double_base, base);
2989
2990 __ bind(&unpack_exponent);
2991 __ JumpIfNotSmi(exponent, &exponent_not_smi, Label::kNear);
2992 __ SmiUntag(exponent);
2993 __ jmp(&int_exponent);
2994
2995 __ bind(&exponent_not_smi);
2996 __ cmp(FieldOperand(exponent, HeapObject::kMapOffset),
2997 factory->heap_number_map());
2998 __ j(not_equal, &call_runtime);
2999 __ movdbl(double_exponent,
3000 FieldOperand(exponent, HeapNumber::kValueOffset));
3001 } else if (exponent_type_ == TAGGED) {
3002 __ JumpIfNotSmi(exponent, &exponent_not_smi, Label::kNear);
3003 __ SmiUntag(exponent);
3004 __ jmp(&int_exponent);
3005
3006 __ bind(&exponent_not_smi);
3007 __ movdbl(double_exponent,
3008 FieldOperand(exponent, HeapNumber::kValueOffset));
3009 }
3010
3011 if (exponent_type_ != INTEGER) {
3012 Label fast_power;
3013 // Detect integer exponents stored as double.
3014 __ cvttsd2si(exponent, Operand(double_exponent));
3015 // Skip to runtime if possibly NaN (indicated by the indefinite integer).
3016 __ cmp(exponent, Immediate(0x80000000u));
3017 __ j(equal, &call_runtime);
3018 __ cvtsi2sd(double_scratch, exponent);
3019 // Already ruled out NaNs for exponent.
3020 __ ucomisd(double_exponent, double_scratch);
3021 __ j(equal, &int_exponent);
3022
3023 if (exponent_type_ == ON_STACK) {
3024 // Detect square root case. Crankshaft detects constant +/-0.5 at
3025 // compile time and uses DoMathPowHalf instead. We then skip this check
3026 // for non-constant cases of +/-0.5 as these hardly occur.
3027 Label continue_sqrt, continue_rsqrt, not_plus_half;
3028 // Test for 0.5.
3029 // Load double_scratch with 0.5.
3030 __ mov(scratch, Immediate(0x3F000000u));
3031 __ movd(double_scratch, scratch);
3032 __ cvtss2sd(double_scratch, double_scratch);
3033 // Already ruled out NaNs for exponent.
3034 __ ucomisd(double_scratch, double_exponent);
3035 __ j(not_equal, &not_plus_half, Label::kNear);
3036
3037 // Calculates square root of base. Check for the special case of
3038 // Math.pow(-Infinity, 0.5) == Infinity (ECMA spec, 15.8.2.13).
3039 // According to IEEE-754, single-precision -Infinity has the highest
3040 // 9 bits set and the lowest 23 bits cleared.
3041 __ mov(scratch, 0xFF800000u);
3042 __ movd(double_scratch, scratch);
3043 __ cvtss2sd(double_scratch, double_scratch);
3044 __ ucomisd(double_base, double_scratch);
3045 // Comparing -Infinity with NaN results in "unordered", which sets the
3046 // zero flag as if both were equal. However, it also sets the carry flag.
3047 __ j(not_equal, &continue_sqrt, Label::kNear);
3048 __ j(carry, &continue_sqrt, Label::kNear);
3049
3050 // Set result to Infinity in the special case.
3051 __ xorps(double_result, double_result);
3052 __ subsd(double_result, double_scratch);
3053 __ jmp(&done);
3054
3055 __ bind(&continue_sqrt);
3056 // sqrtsd returns -0 when input is -0. ECMA spec requires +0.
3057 __ xorps(double_scratch, double_scratch);
3058 __ addsd(double_scratch, double_base); // Convert -0 to +0.
3059 __ sqrtsd(double_result, double_scratch);
3060 __ jmp(&done);
3061
3062 // Test for -0.5.
3063 __ bind(&not_plus_half);
3064 // Load double_exponent with -0.5 by substracting 1.
3065 __ subsd(double_scratch, double_result);
3066 // Already ruled out NaNs for exponent.
3067 __ ucomisd(double_scratch, double_exponent);
3068 __ j(not_equal, &fast_power, Label::kNear);
3069
3070 // Calculates reciprocal of square root of base. Check for the special
3071 // case of Math.pow(-Infinity, -0.5) == 0 (ECMA spec, 15.8.2.13).
3072 // According to IEEE-754, single-precision -Infinity has the highest
3073 // 9 bits set and the lowest 23 bits cleared.
3074 __ mov(scratch, 0xFF800000u);
3075 __ movd(double_scratch, scratch);
3076 __ cvtss2sd(double_scratch, double_scratch);
3077 __ ucomisd(double_base, double_scratch);
3078 // Comparing -Infinity with NaN results in "unordered", which sets the
3079 // zero flag as if both were equal. However, it also sets the carry flag.
3080 __ j(not_equal, &continue_rsqrt, Label::kNear);
3081 __ j(carry, &continue_rsqrt, Label::kNear);
3082
3083 // Set result to 0 in the special case.
3084 __ xorps(double_result, double_result);
3085 __ jmp(&done);
3086
3087 __ bind(&continue_rsqrt);
3088 // sqrtsd returns -0 when input is -0. ECMA spec requires +0.
3089 __ xorps(double_exponent, double_exponent);
3090 __ addsd(double_exponent, double_base); // Convert -0 to +0.
3091 __ sqrtsd(double_exponent, double_exponent);
3092 __ divsd(double_result, double_exponent);
3093 __ jmp(&done);
3094 }
3095
3096 // Using FPU instructions to calculate power.
3097 Label fast_power_failed;
3098 __ bind(&fast_power);
3099 __ fnclex(); // Clear flags to catch exceptions later.
3100 // Transfer (B)ase and (E)xponent onto the FPU register stack.
3101 __ sub(esp, Immediate(kDoubleSize));
3102 __ movdbl(Operand(esp, 0), double_exponent);
3103 __ fld_d(Operand(esp, 0)); // E
3104 __ movdbl(Operand(esp, 0), double_base);
3105 __ fld_d(Operand(esp, 0)); // B, E
3106
3107 // Exponent is in st(1) and base is in st(0)
3108 // B ^ E = (2^(E * log2(B)) - 1) + 1 = (2^X - 1) + 1 for X = E * log2(B)
3109 // FYL2X calculates st(1) * log2(st(0))
3110 __ fyl2x(); // X
3111 __ fld(0); // X, X
3112 __ frndint(); // rnd(X), X
3113 __ fsub(1); // rnd(X), X-rnd(X)
3114 __ fxch(1); // X - rnd(X), rnd(X)
3115 // F2XM1 calculates 2^st(0) - 1 for -1 < st(0) < 1
3116 __ f2xm1(); // 2^(X-rnd(X)) - 1, rnd(X)
3117 __ fld1(); // 1, 2^(X-rnd(X)) - 1, rnd(X)
3118 __ faddp(1); // 1, 2^(X-rnd(X)), rnd(X)
3119 // FSCALE calculates st(0) * 2^st(1)
3120 __ fscale(); // 2^X, rnd(X)
3121 __ fstp(1);
3122 // Bail out to runtime in case of exceptions in the status word.
3123 __ fnstsw_ax();
3124 __ test_b(eax, 0x5F); // We check for all but precision exception.
3125 __ j(not_zero, &fast_power_failed, Label::kNear);
3126 __ fstp_d(Operand(esp, 0));
3127 __ movdbl(double_result, Operand(esp, 0));
3128 __ add(esp, Immediate(kDoubleSize));
3129 __ jmp(&done);
3130
3131 __ bind(&fast_power_failed);
3132 __ fninit();
3133 __ add(esp, Immediate(kDoubleSize));
3134 __ jmp(&call_runtime);
3135 }
3136
3137 // Calculate power with integer exponent.
3138 __ bind(&int_exponent);
3139 const XMMRegister double_scratch2 = double_exponent;
3140 __ mov(scratch, exponent); // Back up exponent.
3141 __ movsd(double_scratch, double_base); // Back up base.
3142 __ movsd(double_scratch2, double_result); // Load double_exponent with 1.
kasperl@chromium.orga5551262010-12-07 12:49:48 +00003143
3144 // Get absolute value of exponent.
verwaest@chromium.org33e09c82012-10-10 17:07:22 +00003145 Label no_neg, while_true, while_false;
ricow@chromium.org64e3a4b2011-12-13 08:07:27 +00003146 __ test(scratch, scratch);
3147 __ j(positive, &no_neg, Label::kNear);
3148 __ neg(scratch);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00003149 __ bind(&no_neg);
3150
ulan@chromium.org56c14af2012-09-20 12:51:09 +00003151 __ j(zero, &while_false, Label::kNear);
3152 __ shr(scratch, 1);
3153 // Above condition means CF==0 && ZF==0. This means that the
3154 // bit that has been shifted out is 0 and the result is not 0.
3155 __ j(above, &while_true, Label::kNear);
3156 __ movsd(double_result, double_scratch);
3157 __ j(zero, &while_false, Label::kNear);
3158
kasperl@chromium.orga5551262010-12-07 12:49:48 +00003159 __ bind(&while_true);
ricow@chromium.org64e3a4b2011-12-13 08:07:27 +00003160 __ shr(scratch, 1);
ricow@chromium.org64e3a4b2011-12-13 08:07:27 +00003161 __ mulsd(double_scratch, double_scratch);
ulan@chromium.org56c14af2012-09-20 12:51:09 +00003162 __ j(above, &while_true, Label::kNear);
3163 __ mulsd(double_result, double_scratch);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00003164 __ j(not_zero, &while_true);
3165
ulan@chromium.org56c14af2012-09-20 12:51:09 +00003166 __ bind(&while_false);
ricow@chromium.org64e3a4b2011-12-13 08:07:27 +00003167 // scratch has the original value of the exponent - if the exponent is
3168 // negative, return 1/result.
3169 __ test(exponent, exponent);
3170 __ j(positive, &done);
3171 __ divsd(double_scratch2, double_result);
3172 __ movsd(double_result, double_scratch2);
3173 // Test whether result is zero. Bail out to check for subnormal result.
3174 // Due to subnormals, x^-y == (1/x)^y does not hold in all cases.
3175 __ xorps(double_scratch2, double_scratch2);
3176 __ ucomisd(double_scratch2, double_result); // Result cannot be NaN.
3177 // double_exponent aliased as double_scratch2 has already been overwritten
3178 // and may not have contained the exponent value in the first place when the
3179 // exponent is a smi. We reset it with exponent value before bailing out.
3180 __ j(not_equal, &done);
3181 __ cvtsi2sd(double_exponent, exponent);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00003182
ricow@chromium.org64e3a4b2011-12-13 08:07:27 +00003183 // Returning or bailing out.
3184 Counters* counters = masm->isolate()->counters();
3185 if (exponent_type_ == ON_STACK) {
3186 // The arguments are still on the stack.
3187 __ bind(&call_runtime);
3188 __ TailCallRuntime(Runtime::kMath_pow_cfunction, 2, 1);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00003189
ricow@chromium.org64e3a4b2011-12-13 08:07:27 +00003190 // The stub is called from non-optimized code, which expects the result
3191 // as heap number in exponent.
3192 __ bind(&done);
3193 __ AllocateHeapNumber(eax, scratch, base, &call_runtime);
3194 __ movdbl(FieldOperand(eax, HeapNumber::kValueOffset), double_result);
3195 __ IncrementCounter(counters->math_pow(), 1);
3196 __ ret(2 * kPointerSize);
3197 } else {
3198 __ bind(&call_runtime);
3199 {
3200 AllowExternalCallThatCantCauseGC scope(masm);
3201 __ PrepareCallCFunction(4, scratch);
3202 __ movdbl(Operand(esp, 0 * kDoubleSize), double_base);
3203 __ movdbl(Operand(esp, 1 * kDoubleSize), double_exponent);
3204 __ CallCFunction(
3205 ExternalReference::power_double_double_function(masm->isolate()), 4);
3206 }
3207 // Return value is in st(0) on ia32.
3208 // Store it into the (fixed) result register.
3209 __ sub(esp, Immediate(kDoubleSize));
3210 __ fstp_d(Operand(esp, 0));
3211 __ movdbl(double_result, Operand(esp, 0));
3212 __ add(esp, Immediate(kDoubleSize));
kasperl@chromium.orga5551262010-12-07 12:49:48 +00003213
ricow@chromium.org64e3a4b2011-12-13 08:07:27 +00003214 __ bind(&done);
3215 __ IncrementCounter(counters->math_pow(), 1);
3216 __ ret(0);
3217 }
kasperl@chromium.orga5551262010-12-07 12:49:48 +00003218}
3219
3220
ricow@chromium.org65fae842010-08-25 15:26:24 +00003221void ArgumentsAccessStub::GenerateReadElement(MacroAssembler* masm) {
3222 // The key is in edx and the parameter count is in eax.
3223
3224 // The displacement is used for skipping the frame pointer on the
3225 // stack. It is the offset of the last parameter (if any) relative
3226 // to the frame pointer.
3227 static const int kDisplacement = 1 * kPointerSize;
3228
3229 // Check that the key is a smi.
3230 Label slow;
ricow@chromium.org4668a2c2011-08-29 10:41:00 +00003231 __ JumpIfNotSmi(edx, &slow, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00003232
3233 // Check if the calling frame is an arguments adaptor frame.
karlklose@chromium.org83a47282011-05-11 11:54:09 +00003234 Label adaptor;
ricow@chromium.org65fae842010-08-25 15:26:24 +00003235 __ mov(ebx, Operand(ebp, StandardFrameConstants::kCallerFPOffset));
3236 __ mov(ecx, Operand(ebx, StandardFrameConstants::kContextOffset));
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00003237 __ cmp(ecx, Immediate(Smi::FromInt(StackFrame::ARGUMENTS_ADAPTOR)));
karlklose@chromium.org83a47282011-05-11 11:54:09 +00003238 __ j(equal, &adaptor, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00003239
3240 // Check index against formal parameters count limit passed in
3241 // through register eax. Use unsigned comparison to get negative
3242 // check for free.
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00003243 __ cmp(edx, eax);
ricow@chromium.org4668a2c2011-08-29 10:41:00 +00003244 __ j(above_equal, &slow, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00003245
3246 // Read the argument from the stack and return it.
3247 STATIC_ASSERT(kSmiTagSize == 1);
3248 STATIC_ASSERT(kSmiTag == 0); // Shifting code depends on these.
3249 __ lea(ebx, Operand(ebp, eax, times_2, 0));
3250 __ neg(edx);
3251 __ mov(eax, Operand(ebx, edx, times_2, kDisplacement));
3252 __ ret(0);
3253
3254 // Arguments adaptor case: Check index against actual arguments
3255 // limit found in the arguments adaptor frame. Use unsigned
3256 // comparison to get negative check for free.
3257 __ bind(&adaptor);
3258 __ mov(ecx, Operand(ebx, ArgumentsAdaptorFrameConstants::kLengthOffset));
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00003259 __ cmp(edx, ecx);
ricow@chromium.org4668a2c2011-08-29 10:41:00 +00003260 __ j(above_equal, &slow, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00003261
3262 // Read the argument from the stack and return it.
3263 STATIC_ASSERT(kSmiTagSize == 1);
3264 STATIC_ASSERT(kSmiTag == 0); // Shifting code depends on these.
3265 __ lea(ebx, Operand(ebx, ecx, times_2, 0));
3266 __ neg(edx);
3267 __ mov(eax, Operand(ebx, edx, times_2, kDisplacement));
3268 __ ret(0);
3269
3270 // Slow-case: Handle non-smi or out-of-bounds access to arguments
3271 // by calling the runtime system.
3272 __ bind(&slow);
3273 __ pop(ebx); // Return address.
3274 __ push(edx);
3275 __ push(ebx);
3276 __ TailCallRuntime(Runtime::kGetArgumentsProperty, 1, 1);
3277}
3278
3279
whesse@chromium.org7b260152011-06-20 15:33:18 +00003280void ArgumentsAccessStub::GenerateNewNonStrictSlow(MacroAssembler* masm) {
ricow@chromium.org65fae842010-08-25 15:26:24 +00003281 // esp[0] : return address
3282 // esp[4] : number of parameters
3283 // esp[8] : receiver displacement
whesse@chromium.org7b260152011-06-20 15:33:18 +00003284 // esp[12] : function
ricow@chromium.org65fae842010-08-25 15:26:24 +00003285
whesse@chromium.org7b260152011-06-20 15:33:18 +00003286 // Check if the calling frame is an arguments adaptor frame.
3287 Label runtime;
3288 __ mov(edx, Operand(ebp, StandardFrameConstants::kCallerFPOffset));
3289 __ mov(ecx, Operand(edx, StandardFrameConstants::kContextOffset));
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00003290 __ cmp(ecx, Immediate(Smi::FromInt(StackFrame::ARGUMENTS_ADAPTOR)));
whesse@chromium.org7b260152011-06-20 15:33:18 +00003291 __ j(not_equal, &runtime, Label::kNear);
3292
3293 // Patch the arguments.length and the parameters pointer.
3294 __ mov(ecx, Operand(edx, ArgumentsAdaptorFrameConstants::kLengthOffset));
3295 __ mov(Operand(esp, 1 * kPointerSize), ecx);
3296 __ lea(edx, Operand(edx, ecx, times_2,
3297 StandardFrameConstants::kCallerSPOffset));
3298 __ mov(Operand(esp, 2 * kPointerSize), edx);
3299
3300 __ bind(&runtime);
3301 __ TailCallRuntime(Runtime::kNewArgumentsFast, 3, 1);
3302}
3303
3304
3305void ArgumentsAccessStub::GenerateNewNonStrictFast(MacroAssembler* masm) {
3306 // esp[0] : return address
3307 // esp[4] : number of parameters (tagged)
3308 // esp[8] : receiver displacement
3309 // esp[12] : function
3310
3311 // ebx = parameter count (tagged)
3312 __ mov(ebx, Operand(esp, 1 * kPointerSize));
3313
3314 // Check if the calling frame is an arguments adaptor frame.
3315 // TODO(rossberg): Factor out some of the bits that are shared with the other
3316 // Generate* functions.
3317 Label runtime;
3318 Label adaptor_frame, try_allocate;
3319 __ mov(edx, Operand(ebp, StandardFrameConstants::kCallerFPOffset));
3320 __ mov(ecx, Operand(edx, StandardFrameConstants::kContextOffset));
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00003321 __ cmp(ecx, Immediate(Smi::FromInt(StackFrame::ARGUMENTS_ADAPTOR)));
whesse@chromium.org7b260152011-06-20 15:33:18 +00003322 __ j(equal, &adaptor_frame, Label::kNear);
3323
3324 // No adaptor, parameter count = argument count.
3325 __ mov(ecx, ebx);
3326 __ jmp(&try_allocate, Label::kNear);
3327
3328 // We have an adaptor frame. Patch the parameters pointer.
3329 __ bind(&adaptor_frame);
3330 __ mov(ecx, Operand(edx, ArgumentsAdaptorFrameConstants::kLengthOffset));
3331 __ lea(edx, Operand(edx, ecx, times_2,
3332 StandardFrameConstants::kCallerSPOffset));
3333 __ mov(Operand(esp, 2 * kPointerSize), edx);
3334
3335 // ebx = parameter count (tagged)
3336 // ecx = argument count (tagged)
3337 // esp[4] = parameter count (tagged)
3338 // esp[8] = address of receiver argument
3339 // Compute the mapped parameter count = min(ebx, ecx) in ebx.
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00003340 __ cmp(ebx, ecx);
whesse@chromium.org7b260152011-06-20 15:33:18 +00003341 __ j(less_equal, &try_allocate, Label::kNear);
3342 __ mov(ebx, ecx);
3343
3344 __ bind(&try_allocate);
3345
3346 // Save mapped parameter count.
3347 __ push(ebx);
3348
3349 // Compute the sizes of backing store, parameter map, and arguments object.
3350 // 1. Parameter map, has 2 extra words containing context and backing store.
3351 const int kParameterMapHeaderSize =
3352 FixedArray::kHeaderSize + 2 * kPointerSize;
3353 Label no_parameter_map;
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00003354 __ test(ebx, ebx);
whesse@chromium.org7b260152011-06-20 15:33:18 +00003355 __ j(zero, &no_parameter_map, Label::kNear);
3356 __ lea(ebx, Operand(ebx, times_2, kParameterMapHeaderSize));
3357 __ bind(&no_parameter_map);
3358
3359 // 2. Backing store.
3360 __ lea(ebx, Operand(ebx, ecx, times_2, FixedArray::kHeaderSize));
3361
3362 // 3. Arguments object.
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00003363 __ add(ebx, Immediate(Heap::kArgumentsObjectSize));
whesse@chromium.org7b260152011-06-20 15:33:18 +00003364
3365 // Do the allocation of all three objects in one go.
3366 __ AllocateInNewSpace(ebx, eax, edx, edi, &runtime, TAG_OBJECT);
3367
3368 // eax = address of new object(s) (tagged)
3369 // ecx = argument count (tagged)
3370 // esp[0] = mapped parameter count (tagged)
3371 // esp[8] = parameter count (tagged)
3372 // esp[12] = address of receiver argument
yangguo@chromium.org46839fb2012-08-28 09:06:19 +00003373 // Get the arguments boilerplate from the current native context into edi.
whesse@chromium.org7b260152011-06-20 15:33:18 +00003374 Label has_mapped_parameters, copy;
yangguo@chromium.org46839fb2012-08-28 09:06:19 +00003375 __ mov(edi, Operand(esi, Context::SlotOffset(Context::GLOBAL_OBJECT_INDEX)));
3376 __ mov(edi, FieldOperand(edi, GlobalObject::kNativeContextOffset));
whesse@chromium.org7b260152011-06-20 15:33:18 +00003377 __ mov(ebx, Operand(esp, 0 * kPointerSize));
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00003378 __ test(ebx, ebx);
whesse@chromium.org7b260152011-06-20 15:33:18 +00003379 __ j(not_zero, &has_mapped_parameters, Label::kNear);
3380 __ mov(edi, Operand(edi,
3381 Context::SlotOffset(Context::ARGUMENTS_BOILERPLATE_INDEX)));
3382 __ jmp(&copy, Label::kNear);
3383
3384 __ bind(&has_mapped_parameters);
3385 __ mov(edi, Operand(edi,
3386 Context::SlotOffset(Context::ALIASED_ARGUMENTS_BOILERPLATE_INDEX)));
3387 __ bind(&copy);
3388
3389 // eax = address of new object (tagged)
3390 // ebx = mapped parameter count (tagged)
3391 // ecx = argument count (tagged)
3392 // edi = address of boilerplate object (tagged)
3393 // esp[0] = mapped parameter count (tagged)
3394 // esp[8] = parameter count (tagged)
3395 // esp[12] = address of receiver argument
3396 // Copy the JS object part.
3397 for (int i = 0; i < JSObject::kHeaderSize; i += kPointerSize) {
3398 __ mov(edx, FieldOperand(edi, i));
3399 __ mov(FieldOperand(eax, i), edx);
3400 }
3401
erik.corry@gmail.comf2038fb2012-01-16 11:42:08 +00003402 // Set up the callee in-object property.
whesse@chromium.org7b260152011-06-20 15:33:18 +00003403 STATIC_ASSERT(Heap::kArgumentsCalleeIndex == 1);
3404 __ mov(edx, Operand(esp, 4 * kPointerSize));
3405 __ mov(FieldOperand(eax, JSObject::kHeaderSize +
3406 Heap::kArgumentsCalleeIndex * kPointerSize),
3407 edx);
3408
3409 // Use the length (smi tagged) and set that as an in-object property too.
3410 STATIC_ASSERT(Heap::kArgumentsLengthIndex == 0);
3411 __ mov(FieldOperand(eax, JSObject::kHeaderSize +
3412 Heap::kArgumentsLengthIndex * kPointerSize),
3413 ecx);
3414
erik.corry@gmail.comf2038fb2012-01-16 11:42:08 +00003415 // Set up the elements pointer in the allocated arguments object.
whesse@chromium.org7b260152011-06-20 15:33:18 +00003416 // If we allocated a parameter map, edi will point there, otherwise to the
3417 // backing store.
3418 __ lea(edi, Operand(eax, Heap::kArgumentsObjectSize));
3419 __ mov(FieldOperand(eax, JSObject::kElementsOffset), edi);
3420
3421 // eax = address of new object (tagged)
3422 // ebx = mapped parameter count (tagged)
3423 // ecx = argument count (tagged)
3424 // edi = address of parameter map or backing store (tagged)
3425 // esp[0] = mapped parameter count (tagged)
3426 // esp[8] = parameter count (tagged)
3427 // esp[12] = address of receiver argument
3428 // Free a register.
3429 __ push(eax);
3430
3431 // Initialize parameter map. If there are no mapped arguments, we're done.
3432 Label skip_parameter_map;
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00003433 __ test(ebx, ebx);
whesse@chromium.org7b260152011-06-20 15:33:18 +00003434 __ j(zero, &skip_parameter_map);
3435
3436 __ mov(FieldOperand(edi, FixedArray::kMapOffset),
3437 Immediate(FACTORY->non_strict_arguments_elements_map()));
3438 __ lea(eax, Operand(ebx, reinterpret_cast<intptr_t>(Smi::FromInt(2))));
3439 __ mov(FieldOperand(edi, FixedArray::kLengthOffset), eax);
3440 __ mov(FieldOperand(edi, FixedArray::kHeaderSize + 0 * kPointerSize), esi);
3441 __ lea(eax, Operand(edi, ebx, times_2, kParameterMapHeaderSize));
3442 __ mov(FieldOperand(edi, FixedArray::kHeaderSize + 1 * kPointerSize), eax);
3443
3444 // Copy the parameter slots and the holes in the arguments.
3445 // We need to fill in mapped_parameter_count slots. They index the context,
3446 // where parameters are stored in reverse order, at
3447 // MIN_CONTEXT_SLOTS .. MIN_CONTEXT_SLOTS+parameter_count-1
3448 // The mapped parameter thus need to get indices
3449 // MIN_CONTEXT_SLOTS+parameter_count-1 ..
3450 // MIN_CONTEXT_SLOTS+parameter_count-mapped_parameter_count
3451 // We loop from right to left.
3452 Label parameters_loop, parameters_test;
3453 __ push(ecx);
3454 __ mov(eax, Operand(esp, 2 * kPointerSize));
3455 __ mov(ebx, Immediate(Smi::FromInt(Context::MIN_CONTEXT_SLOTS)));
3456 __ add(ebx, Operand(esp, 4 * kPointerSize));
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00003457 __ sub(ebx, eax);
whesse@chromium.org7b260152011-06-20 15:33:18 +00003458 __ mov(ecx, FACTORY->the_hole_value());
3459 __ mov(edx, edi);
3460 __ lea(edi, Operand(edi, eax, times_2, kParameterMapHeaderSize));
3461 // eax = loop variable (tagged)
3462 // ebx = mapping index (tagged)
3463 // ecx = the hole value
3464 // edx = address of parameter map (tagged)
3465 // edi = address of backing store (tagged)
3466 // esp[0] = argument count (tagged)
3467 // esp[4] = address of new object (tagged)
3468 // esp[8] = mapped parameter count (tagged)
3469 // esp[16] = parameter count (tagged)
3470 // esp[20] = address of receiver argument
3471 __ jmp(&parameters_test, Label::kNear);
3472
3473 __ bind(&parameters_loop);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00003474 __ sub(eax, Immediate(Smi::FromInt(1)));
whesse@chromium.org7b260152011-06-20 15:33:18 +00003475 __ mov(FieldOperand(edx, eax, times_2, kParameterMapHeaderSize), ebx);
3476 __ mov(FieldOperand(edi, eax, times_2, FixedArray::kHeaderSize), ecx);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00003477 __ add(ebx, Immediate(Smi::FromInt(1)));
whesse@chromium.org7b260152011-06-20 15:33:18 +00003478 __ bind(&parameters_test);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00003479 __ test(eax, eax);
whesse@chromium.org7b260152011-06-20 15:33:18 +00003480 __ j(not_zero, &parameters_loop, Label::kNear);
3481 __ pop(ecx);
3482
3483 __ bind(&skip_parameter_map);
3484
3485 // ecx = argument count (tagged)
3486 // edi = address of backing store (tagged)
3487 // esp[0] = address of new object (tagged)
3488 // esp[4] = mapped parameter count (tagged)
3489 // esp[12] = parameter count (tagged)
3490 // esp[16] = address of receiver argument
3491 // Copy arguments header and remaining slots (if there are any).
3492 __ mov(FieldOperand(edi, FixedArray::kMapOffset),
3493 Immediate(FACTORY->fixed_array_map()));
3494 __ mov(FieldOperand(edi, FixedArray::kLengthOffset), ecx);
3495
3496 Label arguments_loop, arguments_test;
3497 __ mov(ebx, Operand(esp, 1 * kPointerSize));
3498 __ mov(edx, Operand(esp, 4 * kPointerSize));
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00003499 __ sub(edx, ebx); // Is there a smarter way to do negative scaling?
3500 __ sub(edx, ebx);
whesse@chromium.org7b260152011-06-20 15:33:18 +00003501 __ jmp(&arguments_test, Label::kNear);
3502
3503 __ bind(&arguments_loop);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00003504 __ sub(edx, Immediate(kPointerSize));
whesse@chromium.org7b260152011-06-20 15:33:18 +00003505 __ mov(eax, Operand(edx, 0));
3506 __ mov(FieldOperand(edi, ebx, times_2, FixedArray::kHeaderSize), eax);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00003507 __ add(ebx, Immediate(Smi::FromInt(1)));
whesse@chromium.org7b260152011-06-20 15:33:18 +00003508
3509 __ bind(&arguments_test);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00003510 __ cmp(ebx, ecx);
whesse@chromium.org7b260152011-06-20 15:33:18 +00003511 __ j(less, &arguments_loop, Label::kNear);
3512
3513 // Restore.
3514 __ pop(eax); // Address of arguments object.
3515 __ pop(ebx); // Parameter count.
3516
3517 // Return and remove the on-stack parameters.
3518 __ ret(3 * kPointerSize);
3519
3520 // Do the runtime call to allocate the arguments object.
3521 __ bind(&runtime);
3522 __ pop(eax); // Remove saved parameter count.
3523 __ mov(Operand(esp, 1 * kPointerSize), ecx); // Patch argument count.
danno@chromium.org72204d52012-10-31 10:02:10 +00003524 __ TailCallRuntime(Runtime::kNewArgumentsFast, 3, 1);
whesse@chromium.org7b260152011-06-20 15:33:18 +00003525}
3526
3527
3528void ArgumentsAccessStub::GenerateNewStrict(MacroAssembler* masm) {
3529 // esp[0] : return address
3530 // esp[4] : number of parameters
3531 // esp[8] : receiver displacement
3532 // esp[12] : function
ricow@chromium.org65fae842010-08-25 15:26:24 +00003533
3534 // Check if the calling frame is an arguments adaptor frame.
3535 Label adaptor_frame, try_allocate, runtime;
3536 __ mov(edx, Operand(ebp, StandardFrameConstants::kCallerFPOffset));
3537 __ mov(ecx, Operand(edx, StandardFrameConstants::kContextOffset));
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00003538 __ cmp(ecx, Immediate(Smi::FromInt(StackFrame::ARGUMENTS_ADAPTOR)));
ricow@chromium.org4668a2c2011-08-29 10:41:00 +00003539 __ j(equal, &adaptor_frame, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00003540
3541 // Get the length from the frame.
3542 __ mov(ecx, Operand(esp, 1 * kPointerSize));
ricow@chromium.org4668a2c2011-08-29 10:41:00 +00003543 __ jmp(&try_allocate, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00003544
3545 // Patch the arguments.length and the parameters pointer.
3546 __ bind(&adaptor_frame);
3547 __ mov(ecx, Operand(edx, ArgumentsAdaptorFrameConstants::kLengthOffset));
3548 __ mov(Operand(esp, 1 * kPointerSize), ecx);
whesse@chromium.org7b260152011-06-20 15:33:18 +00003549 __ lea(edx, Operand(edx, ecx, times_2,
3550 StandardFrameConstants::kCallerSPOffset));
ricow@chromium.org65fae842010-08-25 15:26:24 +00003551 __ mov(Operand(esp, 2 * kPointerSize), edx);
3552
3553 // Try the new space allocation. Start out with computing the size of
3554 // the arguments object and the elements array.
karlklose@chromium.org83a47282011-05-11 11:54:09 +00003555 Label add_arguments_object;
ricow@chromium.org65fae842010-08-25 15:26:24 +00003556 __ bind(&try_allocate);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00003557 __ test(ecx, ecx);
karlklose@chromium.org83a47282011-05-11 11:54:09 +00003558 __ j(zero, &add_arguments_object, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00003559 __ lea(ecx, Operand(ecx, times_2, FixedArray::kHeaderSize));
3560 __ bind(&add_arguments_object);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00003561 __ add(ecx, Immediate(Heap::kArgumentsObjectSizeStrict));
ricow@chromium.org65fae842010-08-25 15:26:24 +00003562
3563 // Do the allocation of both objects in one go.
3564 __ AllocateInNewSpace(ecx, eax, edx, ebx, &runtime, TAG_OBJECT);
3565
yangguo@chromium.org46839fb2012-08-28 09:06:19 +00003566 // Get the arguments boilerplate from the current native context.
3567 __ mov(edi, Operand(esi, Context::SlotOffset(Context::GLOBAL_OBJECT_INDEX)));
3568 __ mov(edi, FieldOperand(edi, GlobalObject::kNativeContextOffset));
whesse@chromium.org7b260152011-06-20 15:33:18 +00003569 const int offset =
3570 Context::SlotOffset(Context::STRICT_MODE_ARGUMENTS_BOILERPLATE_INDEX);
3571 __ mov(edi, Operand(edi, offset));
ricow@chromium.org65fae842010-08-25 15:26:24 +00003572
3573 // Copy the JS object part.
3574 for (int i = 0; i < JSObject::kHeaderSize; i += kPointerSize) {
3575 __ mov(ebx, FieldOperand(edi, i));
3576 __ mov(FieldOperand(eax, i), ebx);
3577 }
3578
ricow@chromium.org65fae842010-08-25 15:26:24 +00003579 // Get the length (smi tagged) and set that as an in-object property too.
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +00003580 STATIC_ASSERT(Heap::kArgumentsLengthIndex == 0);
ricow@chromium.org65fae842010-08-25 15:26:24 +00003581 __ mov(ecx, Operand(esp, 1 * kPointerSize));
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +00003582 __ mov(FieldOperand(eax, JSObject::kHeaderSize +
whesse@chromium.org7b260152011-06-20 15:33:18 +00003583 Heap::kArgumentsLengthIndex * kPointerSize),
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +00003584 ecx);
ricow@chromium.org65fae842010-08-25 15:26:24 +00003585
3586 // If there are no actual arguments, we're done.
3587 Label done;
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00003588 __ test(ecx, ecx);
ricow@chromium.org4668a2c2011-08-29 10:41:00 +00003589 __ j(zero, &done, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00003590
3591 // Get the parameters pointer from the stack.
3592 __ mov(edx, Operand(esp, 2 * kPointerSize));
3593
erik.corry@gmail.comf2038fb2012-01-16 11:42:08 +00003594 // Set up the elements pointer in the allocated arguments object and
ricow@chromium.org65fae842010-08-25 15:26:24 +00003595 // initialize the header in the elements fixed array.
whesse@chromium.org7b260152011-06-20 15:33:18 +00003596 __ lea(edi, Operand(eax, Heap::kArgumentsObjectSizeStrict));
ricow@chromium.org65fae842010-08-25 15:26:24 +00003597 __ mov(FieldOperand(eax, JSObject::kElementsOffset), edi);
3598 __ mov(FieldOperand(edi, FixedArray::kMapOffset),
whesse@chromium.org7b260152011-06-20 15:33:18 +00003599 Immediate(FACTORY->fixed_array_map()));
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +00003600
ricow@chromium.org65fae842010-08-25 15:26:24 +00003601 __ mov(FieldOperand(edi, FixedArray::kLengthOffset), ecx);
3602 // Untag the length for the loop below.
3603 __ SmiUntag(ecx);
3604
3605 // Copy the fixed array slots.
karlklose@chromium.org83a47282011-05-11 11:54:09 +00003606 Label loop;
ricow@chromium.org65fae842010-08-25 15:26:24 +00003607 __ bind(&loop);
3608 __ mov(ebx, Operand(edx, -1 * kPointerSize)); // Skip receiver.
3609 __ mov(FieldOperand(edi, FixedArray::kHeaderSize), ebx);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00003610 __ add(edi, Immediate(kPointerSize));
3611 __ sub(edx, Immediate(kPointerSize));
ricow@chromium.org65fae842010-08-25 15:26:24 +00003612 __ dec(ecx);
3613 __ j(not_zero, &loop);
3614
3615 // Return and remove the on-stack parameters.
3616 __ bind(&done);
3617 __ ret(3 * kPointerSize);
3618
3619 // Do the runtime call to allocate the arguments object.
3620 __ bind(&runtime);
whesse@chromium.org7b260152011-06-20 15:33:18 +00003621 __ TailCallRuntime(Runtime::kNewStrictArgumentsFast, 3, 1);
ricow@chromium.org65fae842010-08-25 15:26:24 +00003622}
3623
3624
3625void RegExpExecStub::Generate(MacroAssembler* masm) {
3626 // Just jump directly to runtime if native RegExp is not selected at compile
3627 // time or if regexp entry in generated code is turned off runtime switch or
3628 // at compilation.
3629#ifdef V8_INTERPRETED_REGEXP
3630 __ TailCallRuntime(Runtime::kRegExpExec, 4, 1);
3631#else // V8_INTERPRETED_REGEXP
ricow@chromium.org65fae842010-08-25 15:26:24 +00003632
3633 // Stack frame on entry.
3634 // esp[0]: return address
3635 // esp[4]: last_match_info (expected JSArray)
3636 // esp[8]: previous index
3637 // esp[12]: subject string
3638 // esp[16]: JSRegExp object
3639
3640 static const int kLastMatchInfoOffset = 1 * kPointerSize;
3641 static const int kPreviousIndexOffset = 2 * kPointerSize;
3642 static const int kSubjectOffset = 3 * kPointerSize;
3643 static const int kJSRegExpOffset = 4 * kPointerSize;
3644
3645 Label runtime, invoke_regexp;
3646
3647 // Ensure that a RegExp stack is allocated.
3648 ExternalReference address_of_regexp_stack_memory_address =
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +00003649 ExternalReference::address_of_regexp_stack_memory_address(
3650 masm->isolate());
ricow@chromium.org65fae842010-08-25 15:26:24 +00003651 ExternalReference address_of_regexp_stack_memory_size =
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +00003652 ExternalReference::address_of_regexp_stack_memory_size(masm->isolate());
ricow@chromium.org65fae842010-08-25 15:26:24 +00003653 __ mov(ebx, Operand::StaticVariable(address_of_regexp_stack_memory_size));
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00003654 __ test(ebx, ebx);
vegorov@chromium.org7304bca2011-05-16 12:14:13 +00003655 __ j(zero, &runtime);
ricow@chromium.org65fae842010-08-25 15:26:24 +00003656
3657 // Check that the first argument is a JSRegExp object.
3658 __ mov(eax, Operand(esp, kJSRegExpOffset));
3659 STATIC_ASSERT(kSmiTag == 0);
whesse@chromium.org7b260152011-06-20 15:33:18 +00003660 __ JumpIfSmi(eax, &runtime);
ricow@chromium.org65fae842010-08-25 15:26:24 +00003661 __ CmpObjectType(eax, JS_REGEXP_TYPE, ecx);
3662 __ j(not_equal, &runtime);
3663 // Check that the RegExp has been compiled (data contains a fixed array).
3664 __ mov(ecx, FieldOperand(eax, JSRegExp::kDataOffset));
3665 if (FLAG_debug_code) {
3666 __ test(ecx, Immediate(kSmiTagMask));
3667 __ Check(not_zero, "Unexpected type for RegExp data, FixedArray expected");
3668 __ CmpObjectType(ecx, FIXED_ARRAY_TYPE, ebx);
3669 __ Check(equal, "Unexpected type for RegExp data, FixedArray expected");
3670 }
3671
3672 // ecx: RegExp data (FixedArray)
3673 // Check the type of the RegExp. Only continue if type is JSRegExp::IRREGEXP.
3674 __ mov(ebx, FieldOperand(ecx, JSRegExp::kDataTagOffset));
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00003675 __ cmp(ebx, Immediate(Smi::FromInt(JSRegExp::IRREGEXP)));
ricow@chromium.org65fae842010-08-25 15:26:24 +00003676 __ j(not_equal, &runtime);
3677
3678 // ecx: RegExp data (FixedArray)
3679 // Check that the number of captures fit in the static offsets vector buffer.
3680 __ mov(edx, FieldOperand(ecx, JSRegExp::kIrregexpCaptureCountOffset));
3681 // Calculate number of capture registers (number_of_captures + 1) * 2. This
3682 // uses the asumption that smis are 2 * their untagged value.
3683 STATIC_ASSERT(kSmiTag == 0);
3684 STATIC_ASSERT(kSmiTagSize + kSmiShiftSize == 1);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00003685 __ add(edx, Immediate(2)); // edx was a smi.
ricow@chromium.org65fae842010-08-25 15:26:24 +00003686 // Check that the static offsets vector buffer is large enough.
yangguo@chromium.org355cfd12012-08-29 15:32:24 +00003687 __ cmp(edx, Isolate::kJSRegexpStaticOffsetsVectorSize);
ricow@chromium.org65fae842010-08-25 15:26:24 +00003688 __ j(above, &runtime);
3689
3690 // ecx: RegExp data (FixedArray)
3691 // edx: Number of capture registers
3692 // Check that the second argument is a string.
3693 __ mov(eax, Operand(esp, kSubjectOffset));
whesse@chromium.org7b260152011-06-20 15:33:18 +00003694 __ JumpIfSmi(eax, &runtime);
ricow@chromium.org65fae842010-08-25 15:26:24 +00003695 Condition is_string = masm->IsObjectStringType(eax, ebx, ebx);
3696 __ j(NegateCondition(is_string), &runtime);
3697 // Get the length of the string to ebx.
3698 __ mov(ebx, FieldOperand(eax, String::kLengthOffset));
3699
3700 // ebx: Length of subject string as a smi
3701 // ecx: RegExp data (FixedArray)
3702 // edx: Number of capture registers
3703 // Check that the third argument is a positive smi less than the subject
3704 // string length. A negative value will be greater (unsigned comparison).
3705 __ mov(eax, Operand(esp, kPreviousIndexOffset));
whesse@chromium.org7b260152011-06-20 15:33:18 +00003706 __ JumpIfNotSmi(eax, &runtime);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00003707 __ cmp(eax, ebx);
ricow@chromium.org65fae842010-08-25 15:26:24 +00003708 __ j(above_equal, &runtime);
3709
3710 // ecx: RegExp data (FixedArray)
3711 // edx: Number of capture registers
3712 // Check that the fourth object is a JSArray object.
3713 __ mov(eax, Operand(esp, kLastMatchInfoOffset));
whesse@chromium.org7b260152011-06-20 15:33:18 +00003714 __ JumpIfSmi(eax, &runtime);
ricow@chromium.org65fae842010-08-25 15:26:24 +00003715 __ CmpObjectType(eax, JS_ARRAY_TYPE, ebx);
3716 __ j(not_equal, &runtime);
3717 // Check that the JSArray is in fast case.
3718 __ mov(ebx, FieldOperand(eax, JSArray::kElementsOffset));
3719 __ mov(eax, FieldOperand(ebx, HeapObject::kMapOffset));
fschneider@chromium.org7979bbb2011-03-28 10:47:03 +00003720 Factory* factory = masm->isolate()->factory();
3721 __ cmp(eax, factory->fixed_array_map());
ricow@chromium.org65fae842010-08-25 15:26:24 +00003722 __ j(not_equal, &runtime);
3723 // Check that the last match info has space for the capture registers and the
3724 // additional information.
3725 __ mov(eax, FieldOperand(ebx, FixedArray::kLengthOffset));
3726 __ SmiUntag(eax);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00003727 __ add(edx, Immediate(RegExpImpl::kLastMatchOverhead));
3728 __ cmp(edx, eax);
ricow@chromium.org65fae842010-08-25 15:26:24 +00003729 __ j(greater, &runtime);
3730
ricow@chromium.org4668a2c2011-08-29 10:41:00 +00003731 // Reset offset for possibly sliced string.
3732 __ Set(edi, Immediate(0));
ricow@chromium.org65fae842010-08-25 15:26:24 +00003733 // ecx: RegExp data (FixedArray)
3734 // Check the representation and encoding of the subject string.
3735 Label seq_ascii_string, seq_two_byte_string, check_code;
3736 __ mov(eax, Operand(esp, kSubjectOffset));
3737 __ mov(ebx, FieldOperand(eax, HeapObject::kMapOffset));
3738 __ movzx_b(ebx, FieldOperand(ebx, Map::kInstanceTypeOffset));
3739 // First check for flat two byte string.
mstarzinger@chromium.org1b3afd12011-11-29 14:28:56 +00003740 __ and_(ebx, kIsNotStringMask |
3741 kStringRepresentationMask |
3742 kStringEncodingMask |
3743 kShortExternalStringMask);
ricow@chromium.org65fae842010-08-25 15:26:24 +00003744 STATIC_ASSERT((kStringTag | kSeqStringTag | kTwoByteStringTag) == 0);
ricow@chromium.org4668a2c2011-08-29 10:41:00 +00003745 __ j(zero, &seq_two_byte_string, Label::kNear);
ulan@chromium.org2efb9002012-01-19 15:36:35 +00003746 // Any other flat string must be a flat ASCII string. None of the following
mstarzinger@chromium.org1b3afd12011-11-29 14:28:56 +00003747 // string type tests will succeed if subject is not a string or a short
3748 // external string.
3749 __ and_(ebx, Immediate(kIsNotStringMask |
3750 kStringRepresentationMask |
3751 kShortExternalStringMask));
ricow@chromium.org4668a2c2011-08-29 10:41:00 +00003752 __ j(zero, &seq_ascii_string, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00003753
mstarzinger@chromium.org1b3afd12011-11-29 14:28:56 +00003754 // ebx: whether subject is a string and if yes, its string representation
ricow@chromium.org4668a2c2011-08-29 10:41:00 +00003755 // Check for flat cons string or sliced string.
ricow@chromium.org65fae842010-08-25 15:26:24 +00003756 // A flat cons string is a cons string where the second part is the empty
3757 // string. In that case the subject string is just the first part of the cons
3758 // string. Also in this case the first part of the cons string is known to be
3759 // a sequential string or an external string.
ricow@chromium.org4668a2c2011-08-29 10:41:00 +00003760 // In the case of a sliced string its offset has to be taken into account.
mstarzinger@chromium.org1b3afd12011-11-29 14:28:56 +00003761 Label cons_string, external_string, check_encoding;
yangguo@chromium.org80c42ed2011-08-31 09:03:56 +00003762 STATIC_ASSERT(kConsStringTag < kExternalStringTag);
3763 STATIC_ASSERT(kSlicedStringTag > kExternalStringTag);
mstarzinger@chromium.org1b3afd12011-11-29 14:28:56 +00003764 STATIC_ASSERT(kIsNotStringMask > kExternalStringTag);
3765 STATIC_ASSERT(kShortExternalStringTag > kExternalStringTag);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00003766 __ cmp(ebx, Immediate(kExternalStringTag));
ricow@chromium.org4668a2c2011-08-29 10:41:00 +00003767 __ j(less, &cons_string);
mstarzinger@chromium.org1b3afd12011-11-29 14:28:56 +00003768 __ j(equal, &external_string);
3769
3770 // Catch non-string subject or short external string.
3771 STATIC_ASSERT(kNotStringTag != 0 && kShortExternalStringTag !=0);
3772 __ test(ebx, Immediate(kIsNotStringMask | kShortExternalStringTag));
3773 __ j(not_zero, &runtime);
ricow@chromium.org4668a2c2011-08-29 10:41:00 +00003774
3775 // String is sliced.
3776 __ mov(edi, FieldOperand(eax, SlicedString::kOffsetOffset));
3777 __ mov(eax, FieldOperand(eax, SlicedString::kParentOffset));
3778 // edi: offset of sliced string, smi-tagged.
3779 // eax: parent string.
3780 __ jmp(&check_encoding, Label::kNear);
3781 // String is a cons string, check whether it is flat.
3782 __ bind(&cons_string);
3783 __ cmp(FieldOperand(eax, ConsString::kSecondOffset), factory->empty_string());
ricow@chromium.org65fae842010-08-25 15:26:24 +00003784 __ j(not_equal, &runtime);
3785 __ mov(eax, FieldOperand(eax, ConsString::kFirstOffset));
ricow@chromium.org4668a2c2011-08-29 10:41:00 +00003786 __ bind(&check_encoding);
ricow@chromium.org65fae842010-08-25 15:26:24 +00003787 __ mov(ebx, FieldOperand(eax, HeapObject::kMapOffset));
ricow@chromium.org4668a2c2011-08-29 10:41:00 +00003788 // eax: first part of cons string or parent of sliced string.
3789 // ebx: map of first part of cons string or map of parent of sliced string.
3790 // Is first part of cons or parent of slice a flat two byte string?
ricow@chromium.org65fae842010-08-25 15:26:24 +00003791 __ test_b(FieldOperand(ebx, Map::kInstanceTypeOffset),
3792 kStringRepresentationMask | kStringEncodingMask);
3793 STATIC_ASSERT((kSeqStringTag | kTwoByteStringTag) == 0);
ricow@chromium.org4668a2c2011-08-29 10:41:00 +00003794 __ j(zero, &seq_two_byte_string, Label::kNear);
ulan@chromium.org2efb9002012-01-19 15:36:35 +00003795 // Any other flat string must be sequential ASCII or external.
ricow@chromium.org65fae842010-08-25 15:26:24 +00003796 __ test_b(FieldOperand(ebx, Map::kInstanceTypeOffset),
3797 kStringRepresentationMask);
mstarzinger@chromium.org1b3afd12011-11-29 14:28:56 +00003798 __ j(not_zero, &external_string);
ricow@chromium.org65fae842010-08-25 15:26:24 +00003799
3800 __ bind(&seq_ascii_string);
ulan@chromium.org2efb9002012-01-19 15:36:35 +00003801 // eax: subject string (flat ASCII)
ricow@chromium.org65fae842010-08-25 15:26:24 +00003802 // ecx: RegExp data (FixedArray)
3803 __ mov(edx, FieldOperand(ecx, JSRegExp::kDataAsciiCodeOffset));
ulan@chromium.org2efb9002012-01-19 15:36:35 +00003804 __ Set(ecx, Immediate(1)); // Type is ASCII.
ricow@chromium.org4668a2c2011-08-29 10:41:00 +00003805 __ jmp(&check_code, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00003806
3807 __ bind(&seq_two_byte_string);
3808 // eax: subject string (flat two byte)
3809 // ecx: RegExp data (FixedArray)
3810 __ mov(edx, FieldOperand(ecx, JSRegExp::kDataUC16CodeOffset));
ricow@chromium.org4668a2c2011-08-29 10:41:00 +00003811 __ Set(ecx, Immediate(0)); // Type is two byte.
ricow@chromium.org65fae842010-08-25 15:26:24 +00003812
3813 __ bind(&check_code);
3814 // Check that the irregexp code has been generated for the actual string
3815 // encoding. If it has, the field contains a code object otherwise it contains
jkummerow@chromium.orgddda9e82011-07-06 11:27:02 +00003816 // a smi (code flushing support).
3817 __ JumpIfSmi(edx, &runtime);
ricow@chromium.org65fae842010-08-25 15:26:24 +00003818
3819 // eax: subject string
3820 // edx: code
ulan@chromium.org2efb9002012-01-19 15:36:35 +00003821 // ecx: encoding of subject string (1 if ASCII, 0 if two_byte);
ricow@chromium.org65fae842010-08-25 15:26:24 +00003822 // Load used arguments before starting to push arguments for call to native
3823 // RegExp code to avoid handling changing stack height.
3824 __ mov(ebx, Operand(esp, kPreviousIndexOffset));
3825 __ SmiUntag(ebx); // Previous index from smi.
3826
3827 // eax: subject string
3828 // ebx: previous index
3829 // edx: code
ulan@chromium.org2efb9002012-01-19 15:36:35 +00003830 // ecx: encoding of subject string (1 if ASCII 0 if two_byte);
ricow@chromium.org65fae842010-08-25 15:26:24 +00003831 // All checks done. Now push arguments for native regexp code.
fschneider@chromium.org7979bbb2011-03-28 10:47:03 +00003832 Counters* counters = masm->isolate()->counters();
3833 __ IncrementCounter(counters->regexp_entry_native(), 1);
ricow@chromium.org65fae842010-08-25 15:26:24 +00003834
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +00003835 // Isolates: note we add an additional parameter here (isolate pointer).
mstarzinger@chromium.org15613d02012-05-23 12:04:37 +00003836 static const int kRegExpExecuteArguments = 9;
kmillikin@chromium.org49edbdf2011-02-16 12:32:18 +00003837 __ EnterApiExitFrame(kRegExpExecuteArguments);
ricow@chromium.org65fae842010-08-25 15:26:24 +00003838
mstarzinger@chromium.org15613d02012-05-23 12:04:37 +00003839 // Argument 9: Pass current isolate address.
3840 __ mov(Operand(esp, 8 * kPointerSize),
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +00003841 Immediate(ExternalReference::isolate_address()));
3842
mstarzinger@chromium.org15613d02012-05-23 12:04:37 +00003843 // Argument 8: Indicate that this is a direct call from JavaScript.
3844 __ mov(Operand(esp, 7 * kPointerSize), Immediate(1));
ricow@chromium.org65fae842010-08-25 15:26:24 +00003845
mstarzinger@chromium.org15613d02012-05-23 12:04:37 +00003846 // Argument 7: Start (high end) of backtracking stack memory area.
ricow@chromium.org4668a2c2011-08-29 10:41:00 +00003847 __ mov(esi, Operand::StaticVariable(address_of_regexp_stack_memory_address));
3848 __ add(esi, Operand::StaticVariable(address_of_regexp_stack_memory_size));
mstarzinger@chromium.org15613d02012-05-23 12:04:37 +00003849 __ mov(Operand(esp, 6 * kPointerSize), esi);
3850
3851 // Argument 6: Set the number of capture registers to zero to force global
3852 // regexps to behave as non-global. This does not affect non-global regexps.
3853 __ mov(Operand(esp, 5 * kPointerSize), Immediate(0));
ricow@chromium.org65fae842010-08-25 15:26:24 +00003854
3855 // Argument 5: static offsets vector buffer.
3856 __ mov(Operand(esp, 4 * kPointerSize),
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +00003857 Immediate(ExternalReference::address_of_static_offsets_vector(
3858 masm->isolate())));
ricow@chromium.org65fae842010-08-25 15:26:24 +00003859
ricow@chromium.org4668a2c2011-08-29 10:41:00 +00003860 // Argument 2: Previous index.
3861 __ mov(Operand(esp, 1 * kPointerSize), ebx);
3862
3863 // Argument 1: Original subject string.
3864 // The original subject is in the previous stack frame. Therefore we have to
3865 // use ebp, which points exactly to one pointer size below the previous esp.
3866 // (Because creating a new stack frame pushes the previous ebp onto the stack
3867 // and thereby moves up esp by one kPointerSize.)
3868 __ mov(esi, Operand(ebp, kSubjectOffset + kPointerSize));
3869 __ mov(Operand(esp, 0 * kPointerSize), esi);
3870
3871 // esi: original subject string
3872 // eax: underlying subject string
3873 // ebx: previous index
ulan@chromium.org2efb9002012-01-19 15:36:35 +00003874 // ecx: encoding of subject string (1 if ASCII 0 if two_byte);
ricow@chromium.org4668a2c2011-08-29 10:41:00 +00003875 // edx: code
ricow@chromium.org65fae842010-08-25 15:26:24 +00003876 // Argument 4: End of string data
3877 // Argument 3: Start of string data
ricow@chromium.org4668a2c2011-08-29 10:41:00 +00003878 // Prepare start and end index of the input.
3879 // Load the length from the original sliced string if that is the case.
3880 __ mov(esi, FieldOperand(esi, String::kLengthOffset));
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00003881 __ add(esi, edi); // Calculate input end wrt offset.
ricow@chromium.org65fae842010-08-25 15:26:24 +00003882 __ SmiUntag(edi);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00003883 __ add(ebx, edi); // Calculate input start wrt offset.
ricow@chromium.org4668a2c2011-08-29 10:41:00 +00003884
3885 // ebx: start index of the input string
3886 // esi: end index of the input string
3887 Label setup_two_byte, setup_rest;
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00003888 __ test(ecx, ecx);
ricow@chromium.org4668a2c2011-08-29 10:41:00 +00003889 __ j(zero, &setup_two_byte, Label::kNear);
3890 __ SmiUntag(esi);
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00003891 __ lea(ecx, FieldOperand(eax, esi, times_1, SeqOneByteString::kHeaderSize));
ricow@chromium.org65fae842010-08-25 15:26:24 +00003892 __ mov(Operand(esp, 3 * kPointerSize), ecx); // Argument 4.
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00003893 __ lea(ecx, FieldOperand(eax, ebx, times_1, SeqOneByteString::kHeaderSize));
ricow@chromium.org65fae842010-08-25 15:26:24 +00003894 __ mov(Operand(esp, 2 * kPointerSize), ecx); // Argument 3.
karlklose@chromium.org83a47282011-05-11 11:54:09 +00003895 __ jmp(&setup_rest, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00003896
3897 __ bind(&setup_two_byte);
3898 STATIC_ASSERT(kSmiTag == 0);
ricow@chromium.org4668a2c2011-08-29 10:41:00 +00003899 STATIC_ASSERT(kSmiTagSize == 1); // esi is smi (powered by 2).
3900 __ lea(ecx, FieldOperand(eax, esi, times_1, SeqTwoByteString::kHeaderSize));
ricow@chromium.org65fae842010-08-25 15:26:24 +00003901 __ mov(Operand(esp, 3 * kPointerSize), ecx); // Argument 4.
3902 __ lea(ecx, FieldOperand(eax, ebx, times_2, SeqTwoByteString::kHeaderSize));
3903 __ mov(Operand(esp, 2 * kPointerSize), ecx); // Argument 3.
3904
3905 __ bind(&setup_rest);
3906
ricow@chromium.org65fae842010-08-25 15:26:24 +00003907 // Locate the code entry and call it.
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00003908 __ add(edx, Immediate(Code::kHeaderSize - kHeapObjectTag));
3909 __ call(edx);
kmillikin@chromium.org49edbdf2011-02-16 12:32:18 +00003910
3911 // Drop arguments and come back to JS mode.
3912 __ LeaveApiExitFrame();
ricow@chromium.org65fae842010-08-25 15:26:24 +00003913
3914 // Check the result.
3915 Label success;
mstarzinger@chromium.org15613d02012-05-23 12:04:37 +00003916 __ cmp(eax, 1);
3917 // We expect exactly one result since we force the called regexp to behave
3918 // as non-global.
vegorov@chromium.org7304bca2011-05-16 12:14:13 +00003919 __ j(equal, &success);
ricow@chromium.org65fae842010-08-25 15:26:24 +00003920 Label failure;
3921 __ cmp(eax, NativeRegExpMacroAssembler::FAILURE);
vegorov@chromium.org7304bca2011-05-16 12:14:13 +00003922 __ j(equal, &failure);
ricow@chromium.org65fae842010-08-25 15:26:24 +00003923 __ cmp(eax, NativeRegExpMacroAssembler::EXCEPTION);
3924 // If not exception it can only be retry. Handle that in the runtime system.
3925 __ j(not_equal, &runtime);
3926 // Result must now be exception. If there is no pending exception already a
3927 // stack overflow (on the backtrack stack) was detected in RegExp code but
3928 // haven't created the exception yet. Handle that in the runtime system.
3929 // TODO(592): Rerunning the RegExp to get the stack overflow exception.
kmillikin@chromium.org83e16822011-09-13 08:21:47 +00003930 ExternalReference pending_exception(Isolate::kPendingExceptionAddress,
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +00003931 masm->isolate());
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00003932 __ mov(edx, Immediate(masm->isolate()->factory()->the_hole_value()));
kmillikin@chromium.org49edbdf2011-02-16 12:32:18 +00003933 __ mov(eax, Operand::StaticVariable(pending_exception));
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00003934 __ cmp(edx, eax);
ricow@chromium.org65fae842010-08-25 15:26:24 +00003935 __ j(equal, &runtime);
kmillikin@chromium.org49edbdf2011-02-16 12:32:18 +00003936 // For exception, throw the exception again.
3937
3938 // Clear the pending exception variable.
3939 __ mov(Operand::StaticVariable(pending_exception), edx);
3940
3941 // Special handling of termination exceptions which are uncatchable
3942 // by javascript code.
fschneider@chromium.org7979bbb2011-03-28 10:47:03 +00003943 __ cmp(eax, factory->termination_exception());
kmillikin@chromium.org49edbdf2011-02-16 12:32:18 +00003944 Label throw_termination_exception;
ricow@chromium.org4668a2c2011-08-29 10:41:00 +00003945 __ j(equal, &throw_termination_exception, Label::kNear);
kmillikin@chromium.org49edbdf2011-02-16 12:32:18 +00003946
3947 // Handle normal exception by following handler chain.
3948 __ Throw(eax);
3949
3950 __ bind(&throw_termination_exception);
ulan@chromium.org65a89c22012-02-14 11:46:07 +00003951 __ ThrowUncatchable(eax);
kmillikin@chromium.org49edbdf2011-02-16 12:32:18 +00003952
ricow@chromium.org65fae842010-08-25 15:26:24 +00003953 __ bind(&failure);
kmillikin@chromium.org49edbdf2011-02-16 12:32:18 +00003954 // For failure to match, return null.
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00003955 __ mov(eax, factory->null_value());
ricow@chromium.org65fae842010-08-25 15:26:24 +00003956 __ ret(4 * kPointerSize);
3957
3958 // Load RegExp data.
3959 __ bind(&success);
3960 __ mov(eax, Operand(esp, kJSRegExpOffset));
3961 __ mov(ecx, FieldOperand(eax, JSRegExp::kDataOffset));
3962 __ mov(edx, FieldOperand(ecx, JSRegExp::kIrregexpCaptureCountOffset));
3963 // Calculate number of capture registers (number_of_captures + 1) * 2.
3964 STATIC_ASSERT(kSmiTag == 0);
3965 STATIC_ASSERT(kSmiTagSize + kSmiShiftSize == 1);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00003966 __ add(edx, Immediate(2)); // edx was a smi.
ricow@chromium.org65fae842010-08-25 15:26:24 +00003967
3968 // edx: Number of capture registers
3969 // Load last_match_info which is still known to be a fast case JSArray.
3970 __ mov(eax, Operand(esp, kLastMatchInfoOffset));
3971 __ mov(ebx, FieldOperand(eax, JSArray::kElementsOffset));
3972
3973 // ebx: last_match_info backing store (FixedArray)
3974 // edx: number of capture registers
3975 // Store the capture count.
3976 __ SmiTag(edx); // Number of capture registers to smi.
3977 __ mov(FieldOperand(ebx, RegExpImpl::kLastCaptureCountOffset), edx);
3978 __ SmiUntag(edx); // Number of capture registers back from smi.
3979 // Store last subject and last input.
3980 __ mov(eax, Operand(esp, kSubjectOffset));
3981 __ mov(FieldOperand(ebx, RegExpImpl::kLastSubjectOffset), eax);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00003982 __ RecordWriteField(ebx,
3983 RegExpImpl::kLastSubjectOffset,
3984 eax,
3985 edi,
3986 kDontSaveFPRegs);
ricow@chromium.org65fae842010-08-25 15:26:24 +00003987 __ mov(eax, Operand(esp, kSubjectOffset));
3988 __ mov(FieldOperand(ebx, RegExpImpl::kLastInputOffset), eax);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00003989 __ RecordWriteField(ebx,
3990 RegExpImpl::kLastInputOffset,
3991 eax,
3992 edi,
3993 kDontSaveFPRegs);
ricow@chromium.org65fae842010-08-25 15:26:24 +00003994
3995 // Get the static offsets vector filled by the native regexp code.
3996 ExternalReference address_of_static_offsets_vector =
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +00003997 ExternalReference::address_of_static_offsets_vector(masm->isolate());
ricow@chromium.org65fae842010-08-25 15:26:24 +00003998 __ mov(ecx, Immediate(address_of_static_offsets_vector));
3999
4000 // ebx: last_match_info backing store (FixedArray)
4001 // ecx: offsets vector
4002 // edx: number of capture registers
karlklose@chromium.org83a47282011-05-11 11:54:09 +00004003 Label next_capture, done;
ricow@chromium.org65fae842010-08-25 15:26:24 +00004004 // Capture register counter starts from number of capture registers and
4005 // counts down until wraping after zero.
4006 __ bind(&next_capture);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00004007 __ sub(edx, Immediate(1));
karlklose@chromium.org83a47282011-05-11 11:54:09 +00004008 __ j(negative, &done, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00004009 // Read the value from the static offsets vector buffer.
4010 __ mov(edi, Operand(ecx, edx, times_int_size, 0));
4011 __ SmiTag(edi);
4012 // Store the smi value in the last match info.
4013 __ mov(FieldOperand(ebx,
4014 edx,
4015 times_pointer_size,
4016 RegExpImpl::kFirstCaptureOffset),
4017 edi);
4018 __ jmp(&next_capture);
4019 __ bind(&done);
4020
4021 // Return last match info.
4022 __ mov(eax, Operand(esp, kLastMatchInfoOffset));
4023 __ ret(4 * kPointerSize);
4024
mstarzinger@chromium.org1b3afd12011-11-29 14:28:56 +00004025 // External string. Short external strings have already been ruled out.
4026 // eax: subject string (expected to be external)
4027 // ebx: scratch
4028 __ bind(&external_string);
4029 __ mov(ebx, FieldOperand(eax, HeapObject::kMapOffset));
4030 __ movzx_b(ebx, FieldOperand(ebx, Map::kInstanceTypeOffset));
4031 if (FLAG_debug_code) {
4032 // Assert that we do not have a cons or slice (indirect strings) here.
4033 // Sequential strings have already been ruled out.
4034 __ test_b(ebx, kIsIndirectStringMask);
4035 __ Assert(zero, "external string expected, but not found");
4036 }
4037 __ mov(eax, FieldOperand(eax, ExternalString::kResourceDataOffset));
4038 // Move the pointer so that offset-wise, it looks like a sequential string.
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00004039 STATIC_ASSERT(SeqTwoByteString::kHeaderSize == SeqOneByteString::kHeaderSize);
mstarzinger@chromium.org1b3afd12011-11-29 14:28:56 +00004040 __ sub(eax, Immediate(SeqTwoByteString::kHeaderSize - kHeapObjectTag));
4041 STATIC_ASSERT(kTwoByteStringTag == 0);
4042 __ test_b(ebx, kStringEncodingMask);
4043 __ j(not_zero, &seq_ascii_string);
4044 __ jmp(&seq_two_byte_string);
4045
ricow@chromium.org65fae842010-08-25 15:26:24 +00004046 // Do the runtime call to execute the regexp.
4047 __ bind(&runtime);
4048 __ TailCallRuntime(Runtime::kRegExpExec, 4, 1);
4049#endif // V8_INTERPRETED_REGEXP
4050}
4051
4052
kasperl@chromium.orga5551262010-12-07 12:49:48 +00004053void RegExpConstructResultStub::Generate(MacroAssembler* masm) {
4054 const int kMaxInlineLength = 100;
4055 Label slowcase;
karlklose@chromium.org83a47282011-05-11 11:54:09 +00004056 Label done;
kasperl@chromium.orga5551262010-12-07 12:49:48 +00004057 __ mov(ebx, Operand(esp, kPointerSize * 3));
whesse@chromium.org7b260152011-06-20 15:33:18 +00004058 __ JumpIfNotSmi(ebx, &slowcase);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00004059 __ cmp(ebx, Immediate(Smi::FromInt(kMaxInlineLength)));
kasperl@chromium.orga5551262010-12-07 12:49:48 +00004060 __ j(above, &slowcase);
4061 // Smi-tagging is equivalent to multiplying by 2.
4062 STATIC_ASSERT(kSmiTag == 0);
4063 STATIC_ASSERT(kSmiTagSize == 1);
4064 // Allocate RegExpResult followed by FixedArray with size in ebx.
4065 // JSArray: [Map][empty properties][Elements][Length-smi][index][input]
4066 // Elements: [Map][Length][..elements..]
4067 __ AllocateInNewSpace(JSRegExpResult::kSize + FixedArray::kHeaderSize,
4068 times_half_pointer_size,
4069 ebx, // In: Number of elements (times 2, being a smi)
4070 eax, // Out: Start of allocation (tagged).
4071 ecx, // Out: End of allocation.
4072 edx, // Scratch register
4073 &slowcase,
4074 TAG_OBJECT);
4075 // eax: Start of allocated area, object-tagged.
4076
4077 // Set JSArray map to global.regexp_result_map().
4078 // Set empty properties FixedArray.
4079 // Set elements to point to FixedArray allocated right after the JSArray.
4080 // Interleave operations for better latency.
yangguo@chromium.org46839fb2012-08-28 09:06:19 +00004081 __ mov(edx, ContextOperand(esi, Context::GLOBAL_OBJECT_INDEX));
fschneider@chromium.org7979bbb2011-03-28 10:47:03 +00004082 Factory* factory = masm->isolate()->factory();
4083 __ mov(ecx, Immediate(factory->empty_fixed_array()));
kasperl@chromium.orga5551262010-12-07 12:49:48 +00004084 __ lea(ebx, Operand(eax, JSRegExpResult::kSize));
yangguo@chromium.org46839fb2012-08-28 09:06:19 +00004085 __ mov(edx, FieldOperand(edx, GlobalObject::kNativeContextOffset));
kasperl@chromium.orga5551262010-12-07 12:49:48 +00004086 __ mov(FieldOperand(eax, JSObject::kElementsOffset), ebx);
4087 __ mov(FieldOperand(eax, JSObject::kPropertiesOffset), ecx);
4088 __ mov(edx, ContextOperand(edx, Context::REGEXP_RESULT_MAP_INDEX));
4089 __ mov(FieldOperand(eax, HeapObject::kMapOffset), edx);
4090
4091 // Set input, index and length fields from arguments.
4092 __ mov(ecx, Operand(esp, kPointerSize * 1));
4093 __ mov(FieldOperand(eax, JSRegExpResult::kInputOffset), ecx);
4094 __ mov(ecx, Operand(esp, kPointerSize * 2));
4095 __ mov(FieldOperand(eax, JSRegExpResult::kIndexOffset), ecx);
4096 __ mov(ecx, Operand(esp, kPointerSize * 3));
4097 __ mov(FieldOperand(eax, JSArray::kLengthOffset), ecx);
4098
4099 // Fill out the elements FixedArray.
4100 // eax: JSArray.
4101 // ebx: FixedArray.
4102 // ecx: Number of elements in array, as smi.
4103
4104 // Set map.
4105 __ mov(FieldOperand(ebx, HeapObject::kMapOffset),
fschneider@chromium.org7979bbb2011-03-28 10:47:03 +00004106 Immediate(factory->fixed_array_map()));
kasperl@chromium.orga5551262010-12-07 12:49:48 +00004107 // Set length.
4108 __ mov(FieldOperand(ebx, FixedArray::kLengthOffset), ecx);
ulan@chromium.org56c14af2012-09-20 12:51:09 +00004109 // Fill contents of fixed-array with undefined.
kasperl@chromium.orga5551262010-12-07 12:49:48 +00004110 __ SmiUntag(ecx);
ulan@chromium.org56c14af2012-09-20 12:51:09 +00004111 __ mov(edx, Immediate(factory->undefined_value()));
kasperl@chromium.orga5551262010-12-07 12:49:48 +00004112 __ lea(ebx, FieldOperand(ebx, FixedArray::kHeaderSize));
ulan@chromium.org56c14af2012-09-20 12:51:09 +00004113 // Fill fixed array elements with undefined.
kasperl@chromium.orga5551262010-12-07 12:49:48 +00004114 // eax: JSArray.
4115 // ecx: Number of elements to fill.
4116 // ebx: Start of elements in FixedArray.
ulan@chromium.org56c14af2012-09-20 12:51:09 +00004117 // edx: undefined.
kasperl@chromium.orga5551262010-12-07 12:49:48 +00004118 Label loop;
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00004119 __ test(ecx, ecx);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00004120 __ bind(&loop);
karlklose@chromium.org83a47282011-05-11 11:54:09 +00004121 __ j(less_equal, &done, Label::kNear); // Jump if ecx is negative or zero.
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00004122 __ sub(ecx, Immediate(1));
kasperl@chromium.orga5551262010-12-07 12:49:48 +00004123 __ mov(Operand(ebx, ecx, times_pointer_size, 0), edx);
4124 __ jmp(&loop);
4125
4126 __ bind(&done);
4127 __ ret(3 * kPointerSize);
4128
4129 __ bind(&slowcase);
4130 __ TailCallRuntime(Runtime::kRegExpConstructResult, 3, 1);
4131}
4132
4133
ricow@chromium.org65fae842010-08-25 15:26:24 +00004134void NumberToStringStub::GenerateLookupNumberStringCache(MacroAssembler* masm,
4135 Register object,
4136 Register result,
4137 Register scratch1,
4138 Register scratch2,
4139 bool object_is_smi,
4140 Label* not_found) {
4141 // Use of registers. Register result is used as a temporary.
4142 Register number_string_cache = result;
4143 Register mask = scratch1;
4144 Register scratch = scratch2;
4145
4146 // Load the number string cache.
erik.corry@gmail.com394dbcf2011-10-27 07:38:48 +00004147 ExternalReference roots_array_start =
4148 ExternalReference::roots_array_start(masm->isolate());
ricow@chromium.org65fae842010-08-25 15:26:24 +00004149 __ mov(scratch, Immediate(Heap::kNumberStringCacheRootIndex));
4150 __ mov(number_string_cache,
erik.corry@gmail.com394dbcf2011-10-27 07:38:48 +00004151 Operand::StaticArray(scratch, times_pointer_size, roots_array_start));
ricow@chromium.org65fae842010-08-25 15:26:24 +00004152 // Make the hash mask from the length of the number string cache. It
4153 // contains two elements (number and string) for each cache entry.
4154 __ mov(mask, FieldOperand(number_string_cache, FixedArray::kLengthOffset));
4155 __ shr(mask, kSmiTagSize + 1); // Untag length and divide it by two.
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00004156 __ sub(mask, Immediate(1)); // Make mask.
ricow@chromium.org65fae842010-08-25 15:26:24 +00004157
4158 // Calculate the entry in the number string cache. The hash value in the
4159 // number string cache for smis is just the smi value, and the hash for
4160 // doubles is the xor of the upper and lower words. See
4161 // Heap::GetNumberStringCache.
karlklose@chromium.org83a47282011-05-11 11:54:09 +00004162 Label smi_hash_calculated;
4163 Label load_result_from_cache;
ricow@chromium.org65fae842010-08-25 15:26:24 +00004164 if (object_is_smi) {
4165 __ mov(scratch, object);
4166 __ SmiUntag(scratch);
4167 } else {
karlklose@chromium.org83a47282011-05-11 11:54:09 +00004168 Label not_smi;
ricow@chromium.org65fae842010-08-25 15:26:24 +00004169 STATIC_ASSERT(kSmiTag == 0);
whesse@chromium.org7b260152011-06-20 15:33:18 +00004170 __ JumpIfNotSmi(object, &not_smi, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00004171 __ mov(scratch, object);
4172 __ SmiUntag(scratch);
karlklose@chromium.org83a47282011-05-11 11:54:09 +00004173 __ jmp(&smi_hash_calculated, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00004174 __ bind(&not_smi);
4175 __ cmp(FieldOperand(object, HeapObject::kMapOffset),
fschneider@chromium.org7979bbb2011-03-28 10:47:03 +00004176 masm->isolate()->factory()->heap_number_map());
ricow@chromium.org65fae842010-08-25 15:26:24 +00004177 __ j(not_equal, not_found);
4178 STATIC_ASSERT(8 == kDoubleSize);
4179 __ mov(scratch, FieldOperand(object, HeapNumber::kValueOffset));
4180 __ xor_(scratch, FieldOperand(object, HeapNumber::kValueOffset + 4));
4181 // Object is heap number and hash is now in scratch. Calculate cache index.
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00004182 __ and_(scratch, mask);
ricow@chromium.org65fae842010-08-25 15:26:24 +00004183 Register index = scratch;
4184 Register probe = mask;
4185 __ mov(probe,
4186 FieldOperand(number_string_cache,
4187 index,
4188 times_twice_pointer_size,
4189 FixedArray::kHeaderSize));
whesse@chromium.org7b260152011-06-20 15:33:18 +00004190 __ JumpIfSmi(probe, not_found);
kmillikin@chromium.orgc36ce6e2011-04-04 08:25:31 +00004191 if (CpuFeatures::IsSupported(SSE2)) {
ricow@chromium.org65fae842010-08-25 15:26:24 +00004192 CpuFeatures::Scope fscope(SSE2);
4193 __ movdbl(xmm0, FieldOperand(object, HeapNumber::kValueOffset));
4194 __ movdbl(xmm1, FieldOperand(probe, HeapNumber::kValueOffset));
4195 __ ucomisd(xmm0, xmm1);
4196 } else {
4197 __ fld_d(FieldOperand(object, HeapNumber::kValueOffset));
4198 __ fld_d(FieldOperand(probe, HeapNumber::kValueOffset));
4199 __ FCmp();
4200 }
4201 __ j(parity_even, not_found); // Bail out if NaN is involved.
4202 __ j(not_equal, not_found); // The cache did not contain this value.
karlklose@chromium.org83a47282011-05-11 11:54:09 +00004203 __ jmp(&load_result_from_cache, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00004204 }
4205
4206 __ bind(&smi_hash_calculated);
4207 // Object is smi and hash is now in scratch. Calculate cache index.
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00004208 __ and_(scratch, mask);
ricow@chromium.org65fae842010-08-25 15:26:24 +00004209 Register index = scratch;
4210 // Check if the entry is the smi we are looking for.
4211 __ cmp(object,
4212 FieldOperand(number_string_cache,
4213 index,
4214 times_twice_pointer_size,
4215 FixedArray::kHeaderSize));
4216 __ j(not_equal, not_found);
4217
4218 // Get the result from the cache.
4219 __ bind(&load_result_from_cache);
4220 __ mov(result,
4221 FieldOperand(number_string_cache,
4222 index,
4223 times_twice_pointer_size,
4224 FixedArray::kHeaderSize + kPointerSize));
fschneider@chromium.org7979bbb2011-03-28 10:47:03 +00004225 Counters* counters = masm->isolate()->counters();
4226 __ IncrementCounter(counters->number_to_string_native(), 1);
ricow@chromium.org65fae842010-08-25 15:26:24 +00004227}
4228
4229
4230void NumberToStringStub::Generate(MacroAssembler* masm) {
4231 Label runtime;
4232
4233 __ mov(ebx, Operand(esp, kPointerSize));
4234
4235 // Generate code to lookup number in the number string cache.
4236 GenerateLookupNumberStringCache(masm, ebx, eax, ecx, edx, false, &runtime);
4237 __ ret(1 * kPointerSize);
4238
4239 __ bind(&runtime);
4240 // Handle number to string in the runtime system if not found in the cache.
4241 __ TailCallRuntime(Runtime::kNumberToStringSkipCache, 1, 1);
4242}
4243
4244
4245static int NegativeComparisonResult(Condition cc) {
4246 ASSERT(cc != equal);
4247 ASSERT((cc == less) || (cc == less_equal)
4248 || (cc == greater) || (cc == greater_equal));
4249 return (cc == greater || cc == greater_equal) ? LESS : GREATER;
4250}
4251
ricow@chromium.org65fae842010-08-25 15:26:24 +00004252
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00004253static void CheckInputType(MacroAssembler* masm,
4254 Register input,
4255 CompareIC::State expected,
4256 Label* fail) {
4257 Label ok;
4258 if (expected == CompareIC::SMI) {
4259 __ JumpIfNotSmi(input, fail);
4260 } else if (expected == CompareIC::HEAP_NUMBER) {
4261 __ JumpIfSmi(input, &ok);
4262 __ cmp(FieldOperand(input, HeapObject::kMapOffset),
4263 Immediate(masm->isolate()->factory()->heap_number_map()));
4264 __ j(not_equal, fail);
erik.corry@gmail.comd88afa22010-09-15 12:33:05 +00004265 }
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00004266 // We could be strict about symbol/string here, but as long as
4267 // hydrogen doesn't care, the stub doesn't have to care either.
4268 __ bind(&ok);
4269}
4270
4271
4272static void BranchIfNonSymbol(MacroAssembler* masm,
4273 Label* label,
4274 Register object,
4275 Register scratch) {
4276 __ JumpIfSmi(object, label);
4277 __ mov(scratch, FieldOperand(object, HeapObject::kMapOffset));
4278 __ movzx_b(scratch, FieldOperand(scratch, Map::kInstanceTypeOffset));
4279 __ and_(scratch, kIsSymbolMask | kIsNotStringMask);
4280 __ cmp(scratch, kSymbolTag | kStringTag);
4281 __ j(not_equal, label);
4282}
4283
4284
4285void ICCompareStub::GenerateGeneric(MacroAssembler* masm) {
4286 Label check_unequal_objects;
4287 Condition cc = GetCondition();
4288
4289 Label miss;
4290 CheckInputType(masm, edx, left_, &miss);
4291 CheckInputType(masm, eax, right_, &miss);
4292
4293 // Compare two smis.
4294 Label non_smi, smi_done;
4295 __ mov(ecx, edx);
4296 __ or_(ecx, eax);
4297 __ JumpIfNotSmi(ecx, &non_smi, Label::kNear);
4298 __ sub(edx, eax); // Return on the result of the subtraction.
4299 __ j(no_overflow, &smi_done, Label::kNear);
4300 __ not_(edx); // Correct sign in case of overflow. edx is never 0 here.
4301 __ bind(&smi_done);
4302 __ mov(eax, edx);
4303 __ ret(0);
4304 __ bind(&non_smi);
erik.corry@gmail.comd88afa22010-09-15 12:33:05 +00004305
ricow@chromium.org65fae842010-08-25 15:26:24 +00004306 // NOTICE! This code is only reached after a smi-fast-case check, so
4307 // it is certain that at least one operand isn't a smi.
4308
4309 // Identical objects can be compared fast, but there are some tricky cases
4310 // for NaN and undefined.
4311 {
4312 Label not_identical;
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00004313 __ cmp(eax, edx);
ricow@chromium.org65fae842010-08-25 15:26:24 +00004314 __ j(not_equal, &not_identical);
4315
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00004316 if (cc != equal) {
ricow@chromium.org65fae842010-08-25 15:26:24 +00004317 // Check for undefined. undefined OP undefined is false even though
4318 // undefined == undefined.
karlklose@chromium.org83a47282011-05-11 11:54:09 +00004319 Label check_for_nan;
fschneider@chromium.org7979bbb2011-03-28 10:47:03 +00004320 __ cmp(edx, masm->isolate()->factory()->undefined_value());
karlklose@chromium.org83a47282011-05-11 11:54:09 +00004321 __ j(not_equal, &check_for_nan, Label::kNear);
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00004322 __ Set(eax, Immediate(Smi::FromInt(NegativeComparisonResult(cc))));
ricow@chromium.org65fae842010-08-25 15:26:24 +00004323 __ ret(0);
4324 __ bind(&check_for_nan);
4325 }
4326
fschneider@chromium.org7979bbb2011-03-28 10:47:03 +00004327 // Test for NaN. Sadly, we can't just compare to factory->nan_value(),
ricow@chromium.org65fae842010-08-25 15:26:24 +00004328 // so we do the second best thing - test it ourselves.
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00004329 Label heap_number;
4330 __ cmp(FieldOperand(edx, HeapObject::kMapOffset),
4331 Immediate(masm->isolate()->factory()->heap_number_map()));
4332 __ j(equal, &heap_number, Label::kNear);
4333 if (cc != equal) {
4334 // Call runtime on identical JSObjects. Otherwise return equal.
4335 __ CmpObjectType(eax, FIRST_SPEC_OBJECT_TYPE, ecx);
4336 __ j(above_equal, &not_identical);
4337 }
4338 __ Set(eax, Immediate(Smi::FromInt(EQUAL)));
4339 __ ret(0);
4340
4341 __ bind(&heap_number);
4342 // It is a heap number, so return non-equal if it's NaN and equal if
4343 // it's not NaN.
4344 // The representation of NaN values has all exponent bits (52..62) set,
4345 // and not all mantissa bits (0..51) clear.
4346 // We only accept QNaNs, which have bit 51 set.
4347 // Read top bits of double representation (second word of value).
4348
4349 // Value is a QNaN if value & kQuietNaNMask == kQuietNaNMask, i.e.,
4350 // all bits in the mask are set. We only need to check the word
4351 // that contains the exponent and high bit of the mantissa.
4352 STATIC_ASSERT(((kQuietNaNHighBitsMask << 1) & 0x80000000u) != 0);
4353 __ mov(edx, FieldOperand(edx, HeapNumber::kExponentOffset));
4354 __ Set(eax, Immediate(0));
4355 // Shift value and mask so kQuietNaNHighBitsMask applies to topmost
4356 // bits.
4357 __ add(edx, edx);
4358 __ cmp(edx, kQuietNaNHighBitsMask << 1);
4359 if (cc == equal) {
4360 STATIC_ASSERT(EQUAL != 1);
4361 __ setcc(above_equal, eax);
ricow@chromium.org65fae842010-08-25 15:26:24 +00004362 __ ret(0);
4363 } else {
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00004364 Label nan;
4365 __ j(above_equal, &nan, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00004366 __ Set(eax, Immediate(Smi::FromInt(EQUAL)));
4367 __ ret(0);
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00004368 __ bind(&nan);
4369 __ Set(eax, Immediate(Smi::FromInt(NegativeComparisonResult(cc))));
4370 __ ret(0);
ricow@chromium.org65fae842010-08-25 15:26:24 +00004371 }
4372
4373 __ bind(&not_identical);
4374 }
4375
4376 // Strict equality can quickly decide whether objects are equal.
4377 // Non-strict object equality is slower, so it is handled later in the stub.
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00004378 if (cc == equal && strict()) {
ricow@chromium.org65fae842010-08-25 15:26:24 +00004379 Label slow; // Fallthrough label.
karlklose@chromium.org83a47282011-05-11 11:54:09 +00004380 Label not_smis;
ricow@chromium.org65fae842010-08-25 15:26:24 +00004381 // If we're doing a strict equality comparison, we don't have to do
4382 // type conversion, so we generate code to do fast comparison for objects
4383 // and oddballs. Non-smi numbers and strings still go through the usual
4384 // slow-case code.
4385 // If either is a Smi (we know that not both are), then they can only
4386 // be equal if the other is a HeapNumber. If so, use the slow case.
4387 STATIC_ASSERT(kSmiTag == 0);
4388 ASSERT_EQ(0, Smi::FromInt(0));
4389 __ mov(ecx, Immediate(kSmiTagMask));
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00004390 __ and_(ecx, eax);
4391 __ test(ecx, edx);
karlklose@chromium.org83a47282011-05-11 11:54:09 +00004392 __ j(not_zero, &not_smis, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00004393 // One operand is a smi.
4394
4395 // Check whether the non-smi is a heap number.
4396 STATIC_ASSERT(kSmiTagMask == 1);
4397 // ecx still holds eax & kSmiTag, which is either zero or one.
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00004398 __ sub(ecx, Immediate(0x01));
ricow@chromium.org65fae842010-08-25 15:26:24 +00004399 __ mov(ebx, edx);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00004400 __ xor_(ebx, eax);
4401 __ and_(ebx, ecx); // ebx holds either 0 or eax ^ edx.
4402 __ xor_(ebx, eax);
ricow@chromium.org65fae842010-08-25 15:26:24 +00004403 // if eax was smi, ebx is now edx, else eax.
4404
4405 // Check if the non-smi operand is a heap number.
4406 __ cmp(FieldOperand(ebx, HeapObject::kMapOffset),
fschneider@chromium.org7979bbb2011-03-28 10:47:03 +00004407 Immediate(masm->isolate()->factory()->heap_number_map()));
ricow@chromium.org65fae842010-08-25 15:26:24 +00004408 // If heap number, handle it in the slow case.
ricow@chromium.org4668a2c2011-08-29 10:41:00 +00004409 __ j(equal, &slow, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00004410 // Return non-equal (ebx is not zero)
4411 __ mov(eax, ebx);
4412 __ ret(0);
4413
4414 __ bind(&not_smis);
4415 // If either operand is a JSObject or an oddball value, then they are not
4416 // equal since their pointers are different
4417 // There is no test for undetectability in strict equality.
4418
4419 // Get the type of the first operand.
4420 // If the first object is a JS object, we have done pointer comparison.
karlklose@chromium.org83a47282011-05-11 11:54:09 +00004421 Label first_non_object;
ricow@chromium.orgd2be9012011-06-01 06:00:58 +00004422 STATIC_ASSERT(LAST_TYPE == LAST_SPEC_OBJECT_TYPE);
4423 __ CmpObjectType(eax, FIRST_SPEC_OBJECT_TYPE, ecx);
karlklose@chromium.org83a47282011-05-11 11:54:09 +00004424 __ j(below, &first_non_object, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00004425
4426 // Return non-zero (eax is not zero)
karlklose@chromium.org83a47282011-05-11 11:54:09 +00004427 Label return_not_equal;
ricow@chromium.org65fae842010-08-25 15:26:24 +00004428 STATIC_ASSERT(kHeapObjectTag != 0);
4429 __ bind(&return_not_equal);
4430 __ ret(0);
4431
4432 __ bind(&first_non_object);
4433 // Check for oddballs: true, false, null, undefined.
4434 __ CmpInstanceType(ecx, ODDBALL_TYPE);
4435 __ j(equal, &return_not_equal);
4436
ricow@chromium.orgd2be9012011-06-01 06:00:58 +00004437 __ CmpObjectType(edx, FIRST_SPEC_OBJECT_TYPE, ecx);
ricow@chromium.org65fae842010-08-25 15:26:24 +00004438 __ j(above_equal, &return_not_equal);
4439
4440 // Check for oddballs: true, false, null, undefined.
4441 __ CmpInstanceType(ecx, ODDBALL_TYPE);
4442 __ j(equal, &return_not_equal);
4443
4444 // Fall through to the general case.
4445 __ bind(&slow);
4446 }
4447
4448 // Generate the number comparison code.
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00004449 Label non_number_comparison;
4450 Label unordered;
4451 if (CpuFeatures::IsSupported(SSE2)) {
4452 CpuFeatures::Scope use_sse2(SSE2);
4453 CpuFeatures::Scope use_cmov(CMOV);
ricow@chromium.org65fae842010-08-25 15:26:24 +00004454
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00004455 FloatingPointHelper::LoadSSE2Operands(masm, &non_number_comparison);
4456 __ ucomisd(xmm0, xmm1);
ricow@chromium.org65fae842010-08-25 15:26:24 +00004457
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00004458 // Don't base result on EFLAGS when a NaN is involved.
4459 __ j(parity_even, &unordered, Label::kNear);
4460 // Return a result of -1, 0, or 1, based on EFLAGS.
4461 __ mov(eax, 0); // equal
4462 __ mov(ecx, Immediate(Smi::FromInt(1)));
4463 __ cmov(above, eax, ecx);
4464 __ mov(ecx, Immediate(Smi::FromInt(-1)));
4465 __ cmov(below, eax, ecx);
4466 __ ret(0);
4467 } else {
4468 FloatingPointHelper::CheckFloatOperands(
4469 masm, &non_number_comparison, ebx);
4470 FloatingPointHelper::LoadFloatOperand(masm, eax);
4471 FloatingPointHelper::LoadFloatOperand(masm, edx);
4472 __ FCmp();
ricow@chromium.org65fae842010-08-25 15:26:24 +00004473
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00004474 // Don't base result on EFLAGS when a NaN is involved.
4475 __ j(parity_even, &unordered, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00004476
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00004477 Label below_label, above_label;
4478 // Return a result of -1, 0, or 1, based on EFLAGS.
4479 __ j(below, &below_label, Label::kNear);
4480 __ j(above, &above_label, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00004481
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00004482 __ Set(eax, Immediate(0));
ricow@chromium.org65fae842010-08-25 15:26:24 +00004483 __ ret(0);
4484
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00004485 __ bind(&below_label);
4486 __ mov(eax, Immediate(Smi::FromInt(-1)));
4487 __ ret(0);
4488
4489 __ bind(&above_label);
4490 __ mov(eax, Immediate(Smi::FromInt(1)));
4491 __ ret(0);
ricow@chromium.org65fae842010-08-25 15:26:24 +00004492 }
4493
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00004494 // If one of the numbers was NaN, then the result is always false.
4495 // The cc is never not-equal.
4496 __ bind(&unordered);
4497 ASSERT(cc != not_equal);
4498 if (cc == less || cc == less_equal) {
4499 __ mov(eax, Immediate(Smi::FromInt(1)));
4500 } else {
4501 __ mov(eax, Immediate(Smi::FromInt(-1)));
4502 }
4503 __ ret(0);
4504
4505 // The number comparison code did not provide a valid result.
4506 __ bind(&non_number_comparison);
4507
ricow@chromium.org65fae842010-08-25 15:26:24 +00004508 // Fast negative check for symbol-to-symbol equality.
4509 Label check_for_strings;
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00004510 if (cc == equal) {
ricow@chromium.org65fae842010-08-25 15:26:24 +00004511 BranchIfNonSymbol(masm, &check_for_strings, eax, ecx);
4512 BranchIfNonSymbol(masm, &check_for_strings, edx, ecx);
4513
4514 // We've already checked for object identity, so if both operands
4515 // are symbols they aren't equal. Register eax already holds a
4516 // non-zero value, which indicates not equal, so just return.
4517 __ ret(0);
4518 }
4519
4520 __ bind(&check_for_strings);
4521
4522 __ JumpIfNotBothSequentialAsciiStrings(edx, eax, ecx, ebx,
4523 &check_unequal_objects);
4524
ulan@chromium.org2efb9002012-01-19 15:36:35 +00004525 // Inline comparison of ASCII strings.
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00004526 if (cc == equal) {
lrn@chromium.org1c092762011-05-09 09:42:16 +00004527 StringCompareStub::GenerateFlatAsciiStringEquals(masm,
ricow@chromium.org65fae842010-08-25 15:26:24 +00004528 edx,
4529 eax,
4530 ecx,
lrn@chromium.org1c092762011-05-09 09:42:16 +00004531 ebx);
4532 } else {
4533 StringCompareStub::GenerateCompareFlatAsciiStrings(masm,
4534 edx,
4535 eax,
4536 ecx,
4537 ebx,
4538 edi);
4539 }
ricow@chromium.org65fae842010-08-25 15:26:24 +00004540#ifdef DEBUG
4541 __ Abort("Unexpected fall-through from string comparison");
4542#endif
4543
4544 __ bind(&check_unequal_objects);
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00004545 if (cc == equal && !strict()) {
ricow@chromium.org65fae842010-08-25 15:26:24 +00004546 // Non-strict equality. Objects are unequal if
4547 // they are both JSObjects and not undetectable,
4548 // and their pointers are different.
karlklose@chromium.org83a47282011-05-11 11:54:09 +00004549 Label not_both_objects;
4550 Label return_unequal;
ricow@chromium.org65fae842010-08-25 15:26:24 +00004551 // At most one is a smi, so we can test for smi by adding the two.
4552 // A smi plus a heap object has the low bit set, a heap object plus
4553 // a heap object has the low bit clear.
4554 STATIC_ASSERT(kSmiTag == 0);
4555 STATIC_ASSERT(kSmiTagMask == 1);
4556 __ lea(ecx, Operand(eax, edx, times_1, 0));
4557 __ test(ecx, Immediate(kSmiTagMask));
karlklose@chromium.org83a47282011-05-11 11:54:09 +00004558 __ j(not_zero, &not_both_objects, Label::kNear);
ricow@chromium.orgd2be9012011-06-01 06:00:58 +00004559 __ CmpObjectType(eax, FIRST_SPEC_OBJECT_TYPE, ecx);
karlklose@chromium.org83a47282011-05-11 11:54:09 +00004560 __ j(below, &not_both_objects, Label::kNear);
ricow@chromium.orgd2be9012011-06-01 06:00:58 +00004561 __ CmpObjectType(edx, FIRST_SPEC_OBJECT_TYPE, ebx);
karlklose@chromium.org83a47282011-05-11 11:54:09 +00004562 __ j(below, &not_both_objects, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00004563 // We do not bail out after this point. Both are JSObjects, and
4564 // they are equal if and only if both are undetectable.
4565 // The and of the undetectable flags is 1 if and only if they are equal.
4566 __ test_b(FieldOperand(ecx, Map::kBitFieldOffset),
4567 1 << Map::kIsUndetectable);
karlklose@chromium.org83a47282011-05-11 11:54:09 +00004568 __ j(zero, &return_unequal, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00004569 __ test_b(FieldOperand(ebx, Map::kBitFieldOffset),
4570 1 << Map::kIsUndetectable);
karlklose@chromium.org83a47282011-05-11 11:54:09 +00004571 __ j(zero, &return_unequal, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00004572 // The objects are both undetectable, so they both compare as the value
4573 // undefined, and are equal.
4574 __ Set(eax, Immediate(EQUAL));
4575 __ bind(&return_unequal);
4576 // Return non-equal by returning the non-zero object pointer in eax,
4577 // or return equal if we fell through to here.
4578 __ ret(0); // rax, rdx were pushed
4579 __ bind(&not_both_objects);
4580 }
4581
4582 // Push arguments below the return address.
4583 __ pop(ecx);
4584 __ push(edx);
4585 __ push(eax);
4586
4587 // Figure out which native to call and setup the arguments.
4588 Builtins::JavaScript builtin;
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00004589 if (cc == equal) {
4590 builtin = strict() ? Builtins::STRICT_EQUALS : Builtins::EQUALS;
ricow@chromium.org65fae842010-08-25 15:26:24 +00004591 } else {
4592 builtin = Builtins::COMPARE;
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00004593 __ push(Immediate(Smi::FromInt(NegativeComparisonResult(cc))));
ricow@chromium.org65fae842010-08-25 15:26:24 +00004594 }
4595
4596 // Restore return address on the stack.
4597 __ push(ecx);
4598
4599 // Call the native; it returns -1 (less), 0 (equal), or 1 (greater)
4600 // tagged as a small integer.
4601 __ InvokeBuiltin(builtin, JUMP_FUNCTION);
ricow@chromium.org65fae842010-08-25 15:26:24 +00004602
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00004603 __ bind(&miss);
4604 GenerateMiss(masm);
ricow@chromium.org65fae842010-08-25 15:26:24 +00004605}
4606
4607
4608void StackCheckStub::Generate(MacroAssembler* masm) {
whesse@chromium.org4a5224e2010-10-20 12:37:07 +00004609 __ TailCallRuntime(Runtime::kStackGuard, 0, 1);
ricow@chromium.org65fae842010-08-25 15:26:24 +00004610}
4611
4612
yangguo@chromium.org56454712012-02-16 15:33:53 +00004613void InterruptStub::Generate(MacroAssembler* masm) {
4614 __ TailCallRuntime(Runtime::kInterrupt, 0, 1);
4615}
4616
4617
danno@chromium.orgfa458e42012-02-01 10:48:36 +00004618static void GenerateRecordCallTarget(MacroAssembler* masm) {
4619 // Cache the called function in a global property cell. Cache states
4620 // are uninitialized, monomorphic (indicated by a JSFunction), and
4621 // megamorphic.
4622 // ebx : cache cell for call target
4623 // edi : the function to call
4624 Isolate* isolate = masm->isolate();
4625 Label initialize, done;
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00004626
danno@chromium.orgfa458e42012-02-01 10:48:36 +00004627 // Load the cache state into ecx.
4628 __ mov(ecx, FieldOperand(ebx, JSGlobalPropertyCell::kValueOffset));
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00004629
danno@chromium.orgfa458e42012-02-01 10:48:36 +00004630 // A monomorphic cache hit or an already megamorphic state: invoke the
4631 // function without changing the state.
4632 __ cmp(ecx, edi);
4633 __ j(equal, &done, Label::kNear);
4634 __ cmp(ecx, Immediate(TypeFeedbackCells::MegamorphicSentinel(isolate)));
4635 __ j(equal, &done, Label::kNear);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00004636
danno@chromium.orgfa458e42012-02-01 10:48:36 +00004637 // A monomorphic miss (i.e, here the cache is not uninitialized) goes
4638 // megamorphic.
4639 __ cmp(ecx, Immediate(TypeFeedbackCells::UninitializedSentinel(isolate)));
4640 __ j(equal, &initialize, Label::kNear);
4641 // MegamorphicSentinel is an immortal immovable object (undefined) so no
4642 // write-barrier is needed.
4643 __ mov(FieldOperand(ebx, JSGlobalPropertyCell::kValueOffset),
4644 Immediate(TypeFeedbackCells::MegamorphicSentinel(isolate)));
4645 __ jmp(&done, Label::kNear);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00004646
danno@chromium.orgfa458e42012-02-01 10:48:36 +00004647 // An uninitialized cache is patched with the function.
4648 __ bind(&initialize);
4649 __ mov(FieldOperand(ebx, JSGlobalPropertyCell::kValueOffset), edi);
4650 // No need for a write barrier here - cells are rescanned.
4651
4652 __ bind(&done);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00004653}
4654
4655
ricow@chromium.org65fae842010-08-25 15:26:24 +00004656void CallFunctionStub::Generate(MacroAssembler* masm) {
danno@chromium.orgfa458e42012-02-01 10:48:36 +00004657 // ebx : cache cell for call target
danno@chromium.orgc612e022011-11-10 11:38:15 +00004658 // edi : the function to call
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00004659 Isolate* isolate = masm->isolate();
lrn@chromium.org34e60782011-09-15 07:25:40 +00004660 Label slow, non_function;
ricow@chromium.org65fae842010-08-25 15:26:24 +00004661
danno@chromium.org40cb8782011-05-25 07:58:50 +00004662 // The receiver might implicitly be the global object. This is
4663 // indicated by passing the hole as the receiver to the call
4664 // function stub.
4665 if (ReceiverMightBeImplicit()) {
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00004666 Label receiver_ok;
ricow@chromium.org65fae842010-08-25 15:26:24 +00004667 // Get the receiver from the stack.
4668 // +1 ~ return address
ricow@chromium.org65fae842010-08-25 15:26:24 +00004669 __ mov(eax, Operand(esp, (argc_ + 1) * kPointerSize));
danno@chromium.org40cb8782011-05-25 07:58:50 +00004670 // Call as function is indicated with the hole.
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00004671 __ cmp(eax, isolate->factory()->the_hole_value());
4672 __ j(not_equal, &receiver_ok, Label::kNear);
danno@chromium.org40cb8782011-05-25 07:58:50 +00004673 // Patch the receiver on the stack with the global receiver object.
danno@chromium.orgfa458e42012-02-01 10:48:36 +00004674 __ mov(ecx, GlobalObjectOperand());
4675 __ mov(ecx, FieldOperand(ecx, GlobalObject::kGlobalReceiverOffset));
4676 __ mov(Operand(esp, (argc_ + 1) * kPointerSize), ecx);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00004677 __ bind(&receiver_ok);
ricow@chromium.org65fae842010-08-25 15:26:24 +00004678 }
4679
ricow@chromium.org65fae842010-08-25 15:26:24 +00004680 // Check that the function really is a JavaScript function.
lrn@chromium.org34e60782011-09-15 07:25:40 +00004681 __ JumpIfSmi(edi, &non_function);
ricow@chromium.org65fae842010-08-25 15:26:24 +00004682 // Goto slow case if we do not have a function.
4683 __ CmpObjectType(edi, JS_FUNCTION_TYPE, ecx);
vegorov@chromium.org7304bca2011-05-16 12:14:13 +00004684 __ j(not_equal, &slow);
ricow@chromium.org65fae842010-08-25 15:26:24 +00004685
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00004686 if (RecordCallTarget()) {
danno@chromium.orgfa458e42012-02-01 10:48:36 +00004687 GenerateRecordCallTarget(masm);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00004688 }
4689
ricow@chromium.org65fae842010-08-25 15:26:24 +00004690 // Fast-case: Just invoke the function.
4691 ParameterCount actual(argc_);
danno@chromium.org40cb8782011-05-25 07:58:50 +00004692
4693 if (ReceiverMightBeImplicit()) {
4694 Label call_as_function;
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00004695 __ cmp(eax, isolate->factory()->the_hole_value());
danno@chromium.org40cb8782011-05-25 07:58:50 +00004696 __ j(equal, &call_as_function);
ricow@chromium.orgd2be9012011-06-01 06:00:58 +00004697 __ InvokeFunction(edi,
4698 actual,
4699 JUMP_FUNCTION,
4700 NullCallWrapper(),
4701 CALL_AS_METHOD);
danno@chromium.org40cb8782011-05-25 07:58:50 +00004702 __ bind(&call_as_function);
4703 }
4704 __ InvokeFunction(edi,
4705 actual,
4706 JUMP_FUNCTION,
4707 NullCallWrapper(),
4708 CALL_AS_FUNCTION);
ricow@chromium.org65fae842010-08-25 15:26:24 +00004709
4710 // Slow-case: Non-function called.
4711 __ bind(&slow);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00004712 if (RecordCallTarget()) {
4713 // If there is a call target cache, mark it megamorphic in the
danno@chromium.orgfa458e42012-02-01 10:48:36 +00004714 // non-function case. MegamorphicSentinel is an immortal immovable
4715 // object (undefined) so no write barrier is needed.
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00004716 __ mov(FieldOperand(ebx, JSGlobalPropertyCell::kValueOffset),
danno@chromium.orgfa458e42012-02-01 10:48:36 +00004717 Immediate(TypeFeedbackCells::MegamorphicSentinel(isolate)));
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00004718 }
lrn@chromium.org34e60782011-09-15 07:25:40 +00004719 // Check for function proxy.
4720 __ CmpInstanceType(ecx, JS_FUNCTION_PROXY_TYPE);
4721 __ j(not_equal, &non_function);
4722 __ pop(ecx);
4723 __ push(edi); // put proxy as additional argument under return address
4724 __ push(ecx);
4725 __ Set(eax, Immediate(argc_ + 1));
4726 __ Set(ebx, Immediate(0));
4727 __ SetCallKind(ecx, CALL_AS_FUNCTION);
4728 __ GetBuiltinEntry(edx, Builtins::CALL_FUNCTION_PROXY);
4729 {
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00004730 Handle<Code> adaptor = isolate->builtins()->ArgumentsAdaptorTrampoline();
lrn@chromium.org34e60782011-09-15 07:25:40 +00004731 __ jmp(adaptor, RelocInfo::CODE_TARGET);
4732 }
4733
ricow@chromium.org65fae842010-08-25 15:26:24 +00004734 // CALL_NON_FUNCTION expects the non-function callee as receiver (instead
4735 // of the original receiver from the call site).
lrn@chromium.org34e60782011-09-15 07:25:40 +00004736 __ bind(&non_function);
ricow@chromium.org65fae842010-08-25 15:26:24 +00004737 __ mov(Operand(esp, (argc_ + 1) * kPointerSize), edi);
4738 __ Set(eax, Immediate(argc_));
4739 __ Set(ebx, Immediate(0));
lrn@chromium.org34e60782011-09-15 07:25:40 +00004740 __ SetCallKind(ecx, CALL_AS_METHOD);
ricow@chromium.org65fae842010-08-25 15:26:24 +00004741 __ GetBuiltinEntry(edx, Builtins::CALL_NON_FUNCTION);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00004742 Handle<Code> adaptor = isolate->builtins()->ArgumentsAdaptorTrampoline();
ricow@chromium.org65fae842010-08-25 15:26:24 +00004743 __ jmp(adaptor, RelocInfo::CODE_TARGET);
4744}
4745
4746
danno@chromium.orgfa458e42012-02-01 10:48:36 +00004747void CallConstructStub::Generate(MacroAssembler* masm) {
4748 // eax : number of arguments
4749 // ebx : cache cell for call target
4750 // edi : constructor function
4751 Label slow, non_function_call;
4752
4753 // Check that function is not a smi.
4754 __ JumpIfSmi(edi, &non_function_call);
4755 // Check that function is a JSFunction.
4756 __ CmpObjectType(edi, JS_FUNCTION_TYPE, ecx);
4757 __ j(not_equal, &slow);
4758
4759 if (RecordCallTarget()) {
4760 GenerateRecordCallTarget(masm);
4761 }
4762
4763 // Jump to the function-specific construct stub.
4764 __ mov(ebx, FieldOperand(edi, JSFunction::kSharedFunctionInfoOffset));
4765 __ mov(ebx, FieldOperand(ebx, SharedFunctionInfo::kConstructStubOffset));
4766 __ lea(ebx, FieldOperand(ebx, Code::kHeaderSize));
4767 __ jmp(ebx);
4768
4769 // edi: called object
4770 // eax: number of arguments
4771 // ecx: object map
4772 Label do_call;
4773 __ bind(&slow);
4774 __ CmpInstanceType(ecx, JS_FUNCTION_PROXY_TYPE);
4775 __ j(not_equal, &non_function_call);
4776 __ GetBuiltinEntry(edx, Builtins::CALL_FUNCTION_PROXY_AS_CONSTRUCTOR);
4777 __ jmp(&do_call);
4778
4779 __ bind(&non_function_call);
4780 __ GetBuiltinEntry(edx, Builtins::CALL_NON_FUNCTION_AS_CONSTRUCTOR);
4781 __ bind(&do_call);
4782 // Set expected number of arguments to zero (not changing eax).
4783 __ Set(ebx, Immediate(0));
4784 Handle<Code> arguments_adaptor =
4785 masm->isolate()->builtins()->ArgumentsAdaptorTrampoline();
4786 __ SetCallKind(ecx, CALL_AS_METHOD);
4787 __ jmp(arguments_adaptor, RelocInfo::CODE_TARGET);
4788}
4789
4790
danno@chromium.org4d3fe4e2011-03-10 10:14:28 +00004791bool CEntryStub::NeedsImmovableCode() {
4792 return false;
4793}
4794
4795
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00004796bool CEntryStub::IsPregenerated() {
4797 return (!save_doubles_ || ISOLATE->fp_stubs_generated()) &&
4798 result_size_ == 1;
4799}
4800
4801
4802void CodeStub::GenerateStubsAheadOfTime() {
4803 CEntryStub::GenerateAheadOfTime();
4804 StoreBufferOverflowStub::GenerateFixedRegStubsAheadOfTime();
4805 // It is important that the store buffer overflow stubs are generated first.
4806 RecordWriteStub::GenerateFixedRegStubsAheadOfTime();
4807}
4808
4809
4810void CodeStub::GenerateFPStubs() {
4811 CEntryStub save_doubles(1, kSaveFPRegs);
4812 Handle<Code> code = save_doubles.GetCode();
4813 code->set_is_pregenerated(true);
4814 code->GetIsolate()->set_fp_stubs_generated(true);
4815}
4816
4817
4818void CEntryStub::GenerateAheadOfTime() {
4819 CEntryStub stub(1, kDontSaveFPRegs);
4820 Handle<Code> code = stub.GetCode();
4821 code->set_is_pregenerated(true);
4822}
4823
4824
ricow@chromium.org65fae842010-08-25 15:26:24 +00004825void CEntryStub::GenerateCore(MacroAssembler* masm,
4826 Label* throw_normal_exception,
4827 Label* throw_termination_exception,
4828 Label* throw_out_of_memory_exception,
4829 bool do_gc,
ager@chromium.org0ee099b2011-01-25 14:06:47 +00004830 bool always_allocate_scope) {
ricow@chromium.org65fae842010-08-25 15:26:24 +00004831 // eax: result parameter for PerformGC, if any
4832 // ebx: pointer to C function (C callee-saved)
4833 // ebp: frame pointer (restored after C call)
4834 // esp: stack pointer (restored after C call)
4835 // edi: number of arguments including receiver (C callee-saved)
4836 // esi: pointer to the first argument (C callee-saved)
4837
4838 // Result returned in eax, or eax+edx if result_size_ is 2.
4839
4840 // Check stack alignment.
4841 if (FLAG_debug_code) {
4842 __ CheckStackAlignment();
4843 }
4844
4845 if (do_gc) {
4846 // Pass failure code returned from last attempt as first argument to
4847 // PerformGC. No need to use PrepareCallCFunction/CallCFunction here as the
4848 // stack alignment is known to be correct. This function takes one argument
4849 // which is passed on the stack, and we know that the stack has been
4850 // prepared to pass at least one argument.
4851 __ mov(Operand(esp, 0 * kPointerSize), eax); // Result.
4852 __ call(FUNCTION_ADDR(Runtime::PerformGC), RelocInfo::RUNTIME_ENTRY);
4853 }
4854
4855 ExternalReference scope_depth =
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +00004856 ExternalReference::heap_always_allocate_scope_depth(masm->isolate());
ricow@chromium.org65fae842010-08-25 15:26:24 +00004857 if (always_allocate_scope) {
4858 __ inc(Operand::StaticVariable(scope_depth));
4859 }
4860
4861 // Call C function.
4862 __ mov(Operand(esp, 0 * kPointerSize), edi); // argc.
4863 __ mov(Operand(esp, 1 * kPointerSize), esi); // argv.
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +00004864 __ mov(Operand(esp, 2 * kPointerSize),
4865 Immediate(ExternalReference::isolate_address()));
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00004866 __ call(ebx);
ricow@chromium.org65fae842010-08-25 15:26:24 +00004867 // Result is in eax or edx:eax - do not destroy these registers!
4868
4869 if (always_allocate_scope) {
4870 __ dec(Operand::StaticVariable(scope_depth));
4871 }
4872
4873 // Make sure we're not trying to return 'the hole' from the runtime
4874 // call as this may lead to crashes in the IC code later.
4875 if (FLAG_debug_code) {
karlklose@chromium.org83a47282011-05-11 11:54:09 +00004876 Label okay;
fschneider@chromium.org7979bbb2011-03-28 10:47:03 +00004877 __ cmp(eax, masm->isolate()->factory()->the_hole_value());
karlklose@chromium.org83a47282011-05-11 11:54:09 +00004878 __ j(not_equal, &okay, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00004879 __ int3();
4880 __ bind(&okay);
4881 }
4882
4883 // Check for failure result.
4884 Label failure_returned;
4885 STATIC_ASSERT(((kFailureTag + 1) & kFailureTagMask) == 0);
4886 __ lea(ecx, Operand(eax, 1));
4887 // Lower 2 bits of ecx are 0 iff eax has failure tag.
4888 __ test(ecx, Immediate(kFailureTagMask));
vegorov@chromium.org7304bca2011-05-16 12:14:13 +00004889 __ j(zero, &failure_returned);
ricow@chromium.org65fae842010-08-25 15:26:24 +00004890
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +00004891 ExternalReference pending_exception_address(
kmillikin@chromium.org83e16822011-09-13 08:21:47 +00004892 Isolate::kPendingExceptionAddress, masm->isolate());
erik.corry@gmail.comd91075f2011-02-10 07:45:38 +00004893
4894 // Check that there is no pending exception, otherwise we
4895 // should have returned some failure value.
4896 if (FLAG_debug_code) {
4897 __ push(edx);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00004898 __ mov(edx, Immediate(masm->isolate()->factory()->the_hole_value()));
karlklose@chromium.org83a47282011-05-11 11:54:09 +00004899 Label okay;
erik.corry@gmail.comd91075f2011-02-10 07:45:38 +00004900 __ cmp(edx, Operand::StaticVariable(pending_exception_address));
4901 // Cannot use check here as it attempts to generate call into runtime.
karlklose@chromium.org83a47282011-05-11 11:54:09 +00004902 __ j(equal, &okay, Label::kNear);
erik.corry@gmail.comd91075f2011-02-10 07:45:38 +00004903 __ int3();
4904 __ bind(&okay);
4905 __ pop(edx);
4906 }
4907
ricow@chromium.org65fae842010-08-25 15:26:24 +00004908 // Exit the JavaScript to C++ exit frame.
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00004909 __ LeaveExitFrame(save_doubles_ == kSaveFPRegs);
ricow@chromium.org65fae842010-08-25 15:26:24 +00004910 __ ret(0);
4911
4912 // Handling of failure.
4913 __ bind(&failure_returned);
4914
4915 Label retry;
4916 // If the returned exception is RETRY_AFTER_GC continue at retry label
4917 STATIC_ASSERT(Failure::RETRY_AFTER_GC == 0);
4918 __ test(eax, Immediate(((1 << kFailureTypeTagSize) - 1) << kFailureTagSize));
ricow@chromium.org4668a2c2011-08-29 10:41:00 +00004919 __ j(zero, &retry, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00004920
4921 // Special handling of out of memory exceptions.
4922 __ cmp(eax, reinterpret_cast<int32_t>(Failure::OutOfMemoryException()));
4923 __ j(equal, throw_out_of_memory_exception);
4924
4925 // Retrieve the pending exception and clear the variable.
ricow@chromium.org65fae842010-08-25 15:26:24 +00004926 __ mov(eax, Operand::StaticVariable(pending_exception_address));
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00004927 __ mov(edx, Immediate(masm->isolate()->factory()->the_hole_value()));
ricow@chromium.org65fae842010-08-25 15:26:24 +00004928 __ mov(Operand::StaticVariable(pending_exception_address), edx);
4929
4930 // Special handling of termination exceptions which are uncatchable
4931 // by javascript code.
fschneider@chromium.org7979bbb2011-03-28 10:47:03 +00004932 __ cmp(eax, masm->isolate()->factory()->termination_exception());
ricow@chromium.org65fae842010-08-25 15:26:24 +00004933 __ j(equal, throw_termination_exception);
4934
4935 // Handle normal exception.
4936 __ jmp(throw_normal_exception);
4937
4938 // Retry.
4939 __ bind(&retry);
4940}
4941
4942
ricow@chromium.org65fae842010-08-25 15:26:24 +00004943void CEntryStub::Generate(MacroAssembler* masm) {
4944 // eax: number of arguments including receiver
4945 // ebx: pointer to C function (C callee-saved)
4946 // ebp: frame pointer (restored after C call)
4947 // esp: stack pointer (restored after C call)
4948 // esi: current context (C callee-saved)
4949 // edi: JS function of the caller (C callee-saved)
4950
4951 // NOTE: Invocations of builtins may return failure objects instead
4952 // of a proper result. The builtin entry handles this by performing
4953 // a garbage collection and retrying the builtin (twice).
4954
4955 // Enter the exit frame that transitions from JavaScript to C++.
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00004956 __ EnterExitFrame(save_doubles_ == kSaveFPRegs);
ricow@chromium.org65fae842010-08-25 15:26:24 +00004957
4958 // eax: result parameter for PerformGC, if any (setup below)
4959 // ebx: pointer to builtin function (C callee-saved)
4960 // ebp: frame pointer (restored after C call)
4961 // esp: stack pointer (restored after C call)
4962 // edi: number of arguments including receiver (C callee-saved)
4963 // esi: argv pointer (C callee-saved)
4964
4965 Label throw_normal_exception;
4966 Label throw_termination_exception;
4967 Label throw_out_of_memory_exception;
4968
4969 // Call into the runtime system.
4970 GenerateCore(masm,
4971 &throw_normal_exception,
4972 &throw_termination_exception,
4973 &throw_out_of_memory_exception,
4974 false,
4975 false);
4976
4977 // Do space-specific GC and retry runtime call.
4978 GenerateCore(masm,
4979 &throw_normal_exception,
4980 &throw_termination_exception,
4981 &throw_out_of_memory_exception,
4982 true,
4983 false);
4984
4985 // Do full GC and retry runtime call one final time.
4986 Failure* failure = Failure::InternalError();
4987 __ mov(eax, Immediate(reinterpret_cast<int32_t>(failure)));
4988 GenerateCore(masm,
4989 &throw_normal_exception,
4990 &throw_termination_exception,
4991 &throw_out_of_memory_exception,
4992 true,
4993 true);
4994
4995 __ bind(&throw_out_of_memory_exception);
ulan@chromium.org65a89c22012-02-14 11:46:07 +00004996 // Set external caught exception to false.
4997 Isolate* isolate = masm->isolate();
4998 ExternalReference external_caught(Isolate::kExternalCaughtExceptionAddress,
4999 isolate);
5000 __ mov(Operand::StaticVariable(external_caught), Immediate(false));
5001
5002 // Set pending exception and eax to out of memory exception.
5003 ExternalReference pending_exception(Isolate::kPendingExceptionAddress,
5004 isolate);
5005 __ mov(eax, reinterpret_cast<int32_t>(Failure::OutOfMemoryException()));
5006 __ mov(Operand::StaticVariable(pending_exception), eax);
5007 // Fall through to the next label.
ricow@chromium.org65fae842010-08-25 15:26:24 +00005008
5009 __ bind(&throw_termination_exception);
ulan@chromium.org65a89c22012-02-14 11:46:07 +00005010 __ ThrowUncatchable(eax);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005011
5012 __ bind(&throw_normal_exception);
ulan@chromium.org65a89c22012-02-14 11:46:07 +00005013 __ Throw(eax);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005014}
5015
5016
5017void JSEntryStub::GenerateBody(MacroAssembler* masm, bool is_construct) {
jkummerow@chromium.org04e4f1e2011-11-14 13:36:17 +00005018 Label invoke, handler_entry, exit;
ricow@chromium.org65fae842010-08-25 15:26:24 +00005019 Label not_outermost_js, not_outermost_js_2;
ricow@chromium.org65fae842010-08-25 15:26:24 +00005020
erik.corry@gmail.comf2038fb2012-01-16 11:42:08 +00005021 // Set up frame.
ricow@chromium.org65fae842010-08-25 15:26:24 +00005022 __ push(ebp);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00005023 __ mov(ebp, esp);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005024
5025 // Push marker in two places.
5026 int marker = is_construct ? StackFrame::ENTRY_CONSTRUCT : StackFrame::ENTRY;
5027 __ push(Immediate(Smi::FromInt(marker))); // context slot
5028 __ push(Immediate(Smi::FromInt(marker))); // function slot
5029 // Save callee-saved registers (C calling conventions).
5030 __ push(edi);
5031 __ push(esi);
5032 __ push(ebx);
5033
5034 // Save copies of the top frame descriptor on the stack.
kmillikin@chromium.org83e16822011-09-13 08:21:47 +00005035 ExternalReference c_entry_fp(Isolate::kCEntryFPAddress, masm->isolate());
ricow@chromium.org65fae842010-08-25 15:26:24 +00005036 __ push(Operand::StaticVariable(c_entry_fp));
5037
ricow@chromium.org65fae842010-08-25 15:26:24 +00005038 // If this is the outermost JS call, set js_entry_sp value.
kmillikin@chromium.org83e16822011-09-13 08:21:47 +00005039 ExternalReference js_entry_sp(Isolate::kJSEntrySPAddress,
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +00005040 masm->isolate());
ricow@chromium.org65fae842010-08-25 15:26:24 +00005041 __ cmp(Operand::StaticVariable(js_entry_sp), Immediate(0));
ricow@chromium.org4668a2c2011-08-29 10:41:00 +00005042 __ j(not_equal, &not_outermost_js, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005043 __ mov(Operand::StaticVariable(js_entry_sp), ebp);
kmillikin@chromium.orgc53e10d2011-05-18 09:12:58 +00005044 __ push(Immediate(Smi::FromInt(StackFrame::OUTERMOST_JSENTRY_FRAME)));
danno@chromium.org2c26cb12012-05-03 09:06:43 +00005045 __ jmp(&invoke, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005046 __ bind(&not_outermost_js);
kmillikin@chromium.orgc53e10d2011-05-18 09:12:58 +00005047 __ push(Immediate(Smi::FromInt(StackFrame::INNER_JSENTRY_FRAME)));
ricow@chromium.org65fae842010-08-25 15:26:24 +00005048
jkummerow@chromium.org04e4f1e2011-11-14 13:36:17 +00005049 // Jump to a faked try block that does the invoke, with a faked catch
5050 // block that sets the pending exception.
5051 __ jmp(&invoke);
5052 __ bind(&handler_entry);
5053 handler_offset_ = handler_entry.pos();
5054 // Caught exception: Store result (exception) in the pending exception
5055 // field in the JSEnv and return a failure sentinel.
kmillikin@chromium.org83e16822011-09-13 08:21:47 +00005056 ExternalReference pending_exception(Isolate::kPendingExceptionAddress,
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +00005057 masm->isolate());
ricow@chromium.org65fae842010-08-25 15:26:24 +00005058 __ mov(Operand::StaticVariable(pending_exception), eax);
5059 __ mov(eax, reinterpret_cast<int32_t>(Failure::Exception()));
5060 __ jmp(&exit);
5061
jkummerow@chromium.org04e4f1e2011-11-14 13:36:17 +00005062 // Invoke: Link this frame into the handler chain. There's only one
5063 // handler block in this code object, so its index is 0.
ricow@chromium.org65fae842010-08-25 15:26:24 +00005064 __ bind(&invoke);
yangguo@chromium.org78d1ad42012-02-09 13:53:47 +00005065 __ PushTryHandler(StackHandler::JS_ENTRY, 0);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005066
5067 // Clear any pending exceptions.
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00005068 __ mov(edx, Immediate(masm->isolate()->factory()->the_hole_value()));
ricow@chromium.org65fae842010-08-25 15:26:24 +00005069 __ mov(Operand::StaticVariable(pending_exception), edx);
5070
5071 // Fake a receiver (NULL).
5072 __ push(Immediate(0)); // receiver
5073
jkummerow@chromium.org04e4f1e2011-11-14 13:36:17 +00005074 // Invoke the function by calling through JS entry trampoline builtin and
5075 // pop the faked function when we return. Notice that we cannot store a
5076 // reference to the trampoline code directly in this stub, because the
5077 // builtin stubs may not have been generated yet.
ricow@chromium.org65fae842010-08-25 15:26:24 +00005078 if (is_construct) {
jkummerow@chromium.org04e4f1e2011-11-14 13:36:17 +00005079 ExternalReference construct_entry(Builtins::kJSConstructEntryTrampoline,
5080 masm->isolate());
ricow@chromium.org65fae842010-08-25 15:26:24 +00005081 __ mov(edx, Immediate(construct_entry));
5082 } else {
fschneider@chromium.org7979bbb2011-03-28 10:47:03 +00005083 ExternalReference entry(Builtins::kJSEntryTrampoline,
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +00005084 masm->isolate());
ricow@chromium.org65fae842010-08-25 15:26:24 +00005085 __ mov(edx, Immediate(entry));
5086 }
5087 __ mov(edx, Operand(edx, 0)); // deref address
5088 __ lea(edx, FieldOperand(edx, Code::kHeaderSize));
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00005089 __ call(edx);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005090
5091 // Unlink this frame from the handler chain.
kmillikin@chromium.orgc53e10d2011-05-18 09:12:58 +00005092 __ PopTryHandler();
ricow@chromium.org65fae842010-08-25 15:26:24 +00005093
kmillikin@chromium.orgc53e10d2011-05-18 09:12:58 +00005094 __ bind(&exit);
kmillikin@chromium.orgc53e10d2011-05-18 09:12:58 +00005095 // Check if the current stack frame is marked as the outermost JS frame.
5096 __ pop(ebx);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00005097 __ cmp(ebx, Immediate(Smi::FromInt(StackFrame::OUTERMOST_JSENTRY_FRAME)));
ricow@chromium.org65fae842010-08-25 15:26:24 +00005098 __ j(not_equal, &not_outermost_js_2);
5099 __ mov(Operand::StaticVariable(js_entry_sp), Immediate(0));
5100 __ bind(&not_outermost_js_2);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005101
5102 // Restore the top frame descriptor from the stack.
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +00005103 __ pop(Operand::StaticVariable(ExternalReference(
kmillikin@chromium.org83e16822011-09-13 08:21:47 +00005104 Isolate::kCEntryFPAddress,
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +00005105 masm->isolate())));
ricow@chromium.org65fae842010-08-25 15:26:24 +00005106
5107 // Restore callee-saved registers (C calling conventions).
5108 __ pop(ebx);
5109 __ pop(esi);
5110 __ pop(edi);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00005111 __ add(esp, Immediate(2 * kPointerSize)); // remove markers
ricow@chromium.org65fae842010-08-25 15:26:24 +00005112
5113 // Restore frame pointer and return.
5114 __ pop(ebp);
5115 __ ret(0);
5116}
5117
5118
kmillikin@chromium.orgd2c22f02011-01-10 08:15:37 +00005119// Generate stub code for instanceof.
5120// This code can patch a call site inlined cache of the instance of check,
5121// which looks like this.
5122//
5123// 81 ff XX XX XX XX cmp edi, <the hole, patched to a map>
5124// 75 0a jne <some near label>
5125// b8 XX XX XX XX mov eax, <the hole, patched to either true or false>
5126//
5127// If call site patching is requested the stack will have the delta from the
5128// return address to the cmp instruction just below the return address. This
5129// also means that call site patching can only take place with arguments in
5130// registers. TOS looks like this when call site patching is requested
5131//
5132// esp[0] : return address
5133// esp[4] : delta from return address to cmp instruction
5134//
ricow@chromium.org65fae842010-08-25 15:26:24 +00005135void InstanceofStub::Generate(MacroAssembler* masm) {
kmillikin@chromium.orgd2c22f02011-01-10 08:15:37 +00005136 // Call site inlining and patching implies arguments in registers.
5137 ASSERT(HasArgsInRegisters() || !HasCallSiteInlineCheck());
5138
ager@chromium.org5f0c45f2010-12-17 08:51:21 +00005139 // Fixed register usage throughout the stub.
5140 Register object = eax; // Object (lhs).
5141 Register map = ebx; // Map of the object.
5142 Register function = edx; // Function (rhs).
5143 Register prototype = edi; // Prototype of the function.
5144 Register scratch = ecx;
5145
kmillikin@chromium.orgd2c22f02011-01-10 08:15:37 +00005146 // Constants describing the call site code to patch.
5147 static const int kDeltaToCmpImmediate = 2;
5148 static const int kDeltaToMov = 8;
5149 static const int kDeltaToMovImmediate = 9;
erik.corry@gmail.comf2038fb2012-01-16 11:42:08 +00005150 static const int8_t kCmpEdiOperandByte1 = BitCast<int8_t, uint8_t>(0x3b);
5151 static const int8_t kCmpEdiOperandByte2 = BitCast<int8_t, uint8_t>(0x3d);
kmillikin@chromium.orgd2c22f02011-01-10 08:15:37 +00005152 static const int8_t kMovEaxImmediateByte = BitCast<int8_t, uint8_t>(0xb8);
5153
erik.corry@gmail.com394dbcf2011-10-27 07:38:48 +00005154 ExternalReference roots_array_start =
5155 ExternalReference::roots_array_start(masm->isolate());
kmillikin@chromium.orgd2c22f02011-01-10 08:15:37 +00005156
5157 ASSERT_EQ(object.code(), InstanceofStub::left().code());
5158 ASSERT_EQ(function.code(), InstanceofStub::right().code());
5159
ager@chromium.org5f0c45f2010-12-17 08:51:21 +00005160 // Get the object and function - they are always both needed.
5161 Label slow, not_js_object;
kmillikin@chromium.orgd2c22f02011-01-10 08:15:37 +00005162 if (!HasArgsInRegisters()) {
ager@chromium.org5f0c45f2010-12-17 08:51:21 +00005163 __ mov(object, Operand(esp, 2 * kPointerSize));
5164 __ mov(function, Operand(esp, 1 * kPointerSize));
5165 }
ricow@chromium.org65fae842010-08-25 15:26:24 +00005166
5167 // Check that the left hand is a JS object.
whesse@chromium.org7b260152011-06-20 15:33:18 +00005168 __ JumpIfSmi(object, &not_js_object);
ager@chromium.org5f0c45f2010-12-17 08:51:21 +00005169 __ IsObjectJSObjectType(object, map, scratch, &not_js_object);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005170
kmillikin@chromium.orgd2c22f02011-01-10 08:15:37 +00005171 // If there is a call site cache don't look in the global cache, but do the
5172 // real lookup and update the call site cache.
5173 if (!HasCallSiteInlineCheck()) {
5174 // Look up the function and the map in the instanceof cache.
karlklose@chromium.org83a47282011-05-11 11:54:09 +00005175 Label miss;
kmillikin@chromium.orgd2c22f02011-01-10 08:15:37 +00005176 __ mov(scratch, Immediate(Heap::kInstanceofCacheFunctionRootIndex));
erik.corry@gmail.com394dbcf2011-10-27 07:38:48 +00005177 __ cmp(function, Operand::StaticArray(scratch,
5178 times_pointer_size,
5179 roots_array_start));
karlklose@chromium.org83a47282011-05-11 11:54:09 +00005180 __ j(not_equal, &miss, Label::kNear);
kmillikin@chromium.orgd2c22f02011-01-10 08:15:37 +00005181 __ mov(scratch, Immediate(Heap::kInstanceofCacheMapRootIndex));
5182 __ cmp(map, Operand::StaticArray(
erik.corry@gmail.com394dbcf2011-10-27 07:38:48 +00005183 scratch, times_pointer_size, roots_array_start));
karlklose@chromium.org83a47282011-05-11 11:54:09 +00005184 __ j(not_equal, &miss, Label::kNear);
kmillikin@chromium.orgd2c22f02011-01-10 08:15:37 +00005185 __ mov(scratch, Immediate(Heap::kInstanceofCacheAnswerRootIndex));
5186 __ mov(eax, Operand::StaticArray(
erik.corry@gmail.com394dbcf2011-10-27 07:38:48 +00005187 scratch, times_pointer_size, roots_array_start));
kmillikin@chromium.orgd2c22f02011-01-10 08:15:37 +00005188 __ ret((HasArgsInRegisters() ? 0 : 2) * kPointerSize);
5189 __ bind(&miss);
5190 }
ricow@chromium.org65fae842010-08-25 15:26:24 +00005191
ager@chromium.org5f0c45f2010-12-17 08:51:21 +00005192 // Get the prototype of the function.
erik.corry@gmail.com394dbcf2011-10-27 07:38:48 +00005193 __ TryGetFunctionPrototype(function, prototype, scratch, &slow, true);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005194
5195 // Check that the function prototype is a JS object.
whesse@chromium.org7b260152011-06-20 15:33:18 +00005196 __ JumpIfSmi(prototype, &slow);
ager@chromium.org5f0c45f2010-12-17 08:51:21 +00005197 __ IsObjectJSObjectType(prototype, scratch, scratch, &slow);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005198
kmillikin@chromium.orgd2c22f02011-01-10 08:15:37 +00005199 // Update the global instanceof or call site inlined cache with the current
5200 // map and function. The cached answer will be set when it is known below.
5201 if (!HasCallSiteInlineCheck()) {
ager@chromium.org5f0c45f2010-12-17 08:51:21 +00005202 __ mov(scratch, Immediate(Heap::kInstanceofCacheMapRootIndex));
erik.corry@gmail.com394dbcf2011-10-27 07:38:48 +00005203 __ mov(Operand::StaticArray(scratch, times_pointer_size, roots_array_start),
5204 map);
ager@chromium.org5f0c45f2010-12-17 08:51:21 +00005205 __ mov(scratch, Immediate(Heap::kInstanceofCacheFunctionRootIndex));
erik.corry@gmail.com394dbcf2011-10-27 07:38:48 +00005206 __ mov(Operand::StaticArray(scratch, times_pointer_size, roots_array_start),
ager@chromium.org5f0c45f2010-12-17 08:51:21 +00005207 function);
kmillikin@chromium.orgd2c22f02011-01-10 08:15:37 +00005208 } else {
5209 // The constants for the code patching are based on no push instructions
5210 // at the call site.
5211 ASSERT(HasArgsInRegisters());
5212 // Get return address and delta to inlined map check.
5213 __ mov(scratch, Operand(esp, 0 * kPointerSize));
5214 __ sub(scratch, Operand(esp, 1 * kPointerSize));
5215 if (FLAG_debug_code) {
erik.corry@gmail.comf2038fb2012-01-16 11:42:08 +00005216 __ cmpb(Operand(scratch, 0), kCmpEdiOperandByte1);
kmillikin@chromium.orgd2c22f02011-01-10 08:15:37 +00005217 __ Assert(equal, "InstanceofStub unexpected call site cache (cmp 1)");
erik.corry@gmail.comf2038fb2012-01-16 11:42:08 +00005218 __ cmpb(Operand(scratch, 1), kCmpEdiOperandByte2);
kmillikin@chromium.orgd2c22f02011-01-10 08:15:37 +00005219 __ Assert(equal, "InstanceofStub unexpected call site cache (cmp 2)");
5220 }
erik.corry@gmail.comf2038fb2012-01-16 11:42:08 +00005221 __ mov(scratch, Operand(scratch, kDeltaToCmpImmediate));
5222 __ mov(Operand(scratch, 0), map);
kmillikin@chromium.orgd2c22f02011-01-10 08:15:37 +00005223 }
ricow@chromium.org65fae842010-08-25 15:26:24 +00005224
ager@chromium.org5f0c45f2010-12-17 08:51:21 +00005225 // Loop through the prototype chain of the object looking for the function
5226 // prototype.
5227 __ mov(scratch, FieldOperand(map, Map::kPrototypeOffset));
karlklose@chromium.org83a47282011-05-11 11:54:09 +00005228 Label loop, is_instance, is_not_instance;
ricow@chromium.org65fae842010-08-25 15:26:24 +00005229 __ bind(&loop);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00005230 __ cmp(scratch, prototype);
karlklose@chromium.org83a47282011-05-11 11:54:09 +00005231 __ j(equal, &is_instance, Label::kNear);
fschneider@chromium.org7979bbb2011-03-28 10:47:03 +00005232 Factory* factory = masm->isolate()->factory();
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00005233 __ cmp(scratch, Immediate(factory->null_value()));
karlklose@chromium.org83a47282011-05-11 11:54:09 +00005234 __ j(equal, &is_not_instance, Label::kNear);
ager@chromium.org5f0c45f2010-12-17 08:51:21 +00005235 __ mov(scratch, FieldOperand(scratch, HeapObject::kMapOffset));
5236 __ mov(scratch, FieldOperand(scratch, Map::kPrototypeOffset));
ricow@chromium.org65fae842010-08-25 15:26:24 +00005237 __ jmp(&loop);
5238
5239 __ bind(&is_instance);
kmillikin@chromium.orgd2c22f02011-01-10 08:15:37 +00005240 if (!HasCallSiteInlineCheck()) {
5241 __ Set(eax, Immediate(0));
5242 __ mov(scratch, Immediate(Heap::kInstanceofCacheAnswerRootIndex));
5243 __ mov(Operand::StaticArray(scratch,
erik.corry@gmail.com394dbcf2011-10-27 07:38:48 +00005244 times_pointer_size, roots_array_start), eax);
kmillikin@chromium.orgd2c22f02011-01-10 08:15:37 +00005245 } else {
5246 // Get return address and delta to inlined map check.
fschneider@chromium.org7979bbb2011-03-28 10:47:03 +00005247 __ mov(eax, factory->true_value());
kmillikin@chromium.orgd2c22f02011-01-10 08:15:37 +00005248 __ mov(scratch, Operand(esp, 0 * kPointerSize));
5249 __ sub(scratch, Operand(esp, 1 * kPointerSize));
5250 if (FLAG_debug_code) {
5251 __ cmpb(Operand(scratch, kDeltaToMov), kMovEaxImmediateByte);
5252 __ Assert(equal, "InstanceofStub unexpected call site cache (mov)");
5253 }
5254 __ mov(Operand(scratch, kDeltaToMovImmediate), eax);
5255 if (!ReturnTrueFalseObject()) {
5256 __ Set(eax, Immediate(0));
5257 }
5258 }
5259 __ ret((HasArgsInRegisters() ? 0 : 2) * kPointerSize);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005260
5261 __ bind(&is_not_instance);
kmillikin@chromium.orgd2c22f02011-01-10 08:15:37 +00005262 if (!HasCallSiteInlineCheck()) {
5263 __ Set(eax, Immediate(Smi::FromInt(1)));
5264 __ mov(scratch, Immediate(Heap::kInstanceofCacheAnswerRootIndex));
5265 __ mov(Operand::StaticArray(
erik.corry@gmail.com394dbcf2011-10-27 07:38:48 +00005266 scratch, times_pointer_size, roots_array_start), eax);
kmillikin@chromium.orgd2c22f02011-01-10 08:15:37 +00005267 } else {
5268 // Get return address and delta to inlined map check.
fschneider@chromium.org7979bbb2011-03-28 10:47:03 +00005269 __ mov(eax, factory->false_value());
kmillikin@chromium.orgd2c22f02011-01-10 08:15:37 +00005270 __ mov(scratch, Operand(esp, 0 * kPointerSize));
5271 __ sub(scratch, Operand(esp, 1 * kPointerSize));
5272 if (FLAG_debug_code) {
5273 __ cmpb(Operand(scratch, kDeltaToMov), kMovEaxImmediateByte);
5274 __ Assert(equal, "InstanceofStub unexpected call site cache (mov)");
5275 }
5276 __ mov(Operand(scratch, kDeltaToMovImmediate), eax);
5277 if (!ReturnTrueFalseObject()) {
5278 __ Set(eax, Immediate(Smi::FromInt(1)));
5279 }
5280 }
5281 __ ret((HasArgsInRegisters() ? 0 : 2) * kPointerSize);
ager@chromium.org5f0c45f2010-12-17 08:51:21 +00005282
5283 Label object_not_null, object_not_null_or_smi;
5284 __ bind(&not_js_object);
5285 // Before null, smi and string value checks, check that the rhs is a function
5286 // as for a non-function rhs an exception needs to be thrown.
ricow@chromium.org4668a2c2011-08-29 10:41:00 +00005287 __ JumpIfSmi(function, &slow, Label::kNear);
ager@chromium.org5f0c45f2010-12-17 08:51:21 +00005288 __ CmpObjectType(function, JS_FUNCTION_TYPE, scratch);
ricow@chromium.org4668a2c2011-08-29 10:41:00 +00005289 __ j(not_equal, &slow, Label::kNear);
ager@chromium.org5f0c45f2010-12-17 08:51:21 +00005290
5291 // Null is not instance of anything.
fschneider@chromium.org7979bbb2011-03-28 10:47:03 +00005292 __ cmp(object, factory->null_value());
ricow@chromium.org4668a2c2011-08-29 10:41:00 +00005293 __ j(not_equal, &object_not_null, Label::kNear);
ager@chromium.org5f0c45f2010-12-17 08:51:21 +00005294 __ Set(eax, Immediate(Smi::FromInt(1)));
kmillikin@chromium.orgd2c22f02011-01-10 08:15:37 +00005295 __ ret((HasArgsInRegisters() ? 0 : 2) * kPointerSize);
ager@chromium.org5f0c45f2010-12-17 08:51:21 +00005296
5297 __ bind(&object_not_null);
5298 // Smi values is not instance of anything.
ricow@chromium.org4668a2c2011-08-29 10:41:00 +00005299 __ JumpIfNotSmi(object, &object_not_null_or_smi, Label::kNear);
ager@chromium.org5f0c45f2010-12-17 08:51:21 +00005300 __ Set(eax, Immediate(Smi::FromInt(1)));
kmillikin@chromium.orgd2c22f02011-01-10 08:15:37 +00005301 __ ret((HasArgsInRegisters() ? 0 : 2) * kPointerSize);
ager@chromium.org5f0c45f2010-12-17 08:51:21 +00005302
5303 __ bind(&object_not_null_or_smi);
5304 // String values is not instance of anything.
5305 Condition is_string = masm->IsObjectStringType(object, scratch, scratch);
ricow@chromium.org4668a2c2011-08-29 10:41:00 +00005306 __ j(NegateCondition(is_string), &slow, Label::kNear);
ager@chromium.org5f0c45f2010-12-17 08:51:21 +00005307 __ Set(eax, Immediate(Smi::FromInt(1)));
kmillikin@chromium.orgd2c22f02011-01-10 08:15:37 +00005308 __ ret((HasArgsInRegisters() ? 0 : 2) * kPointerSize);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005309
5310 // Slow-case: Go through the JavaScript implementation.
5311 __ bind(&slow);
kmillikin@chromium.orgd2c22f02011-01-10 08:15:37 +00005312 if (!ReturnTrueFalseObject()) {
5313 // Tail call the builtin which returns 0 or 1.
5314 if (HasArgsInRegisters()) {
5315 // Push arguments below return address.
5316 __ pop(scratch);
5317 __ push(object);
5318 __ push(function);
5319 __ push(scratch);
5320 }
5321 __ InvokeBuiltin(Builtins::INSTANCE_OF, JUMP_FUNCTION);
5322 } else {
5323 // Call the builtin and convert 0/1 to true/false.
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00005324 {
5325 FrameScope scope(masm, StackFrame::INTERNAL);
5326 __ push(object);
5327 __ push(function);
5328 __ InvokeBuiltin(Builtins::INSTANCE_OF, CALL_FUNCTION);
5329 }
karlklose@chromium.org83a47282011-05-11 11:54:09 +00005330 Label true_value, done;
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00005331 __ test(eax, eax);
karlklose@chromium.org83a47282011-05-11 11:54:09 +00005332 __ j(zero, &true_value, Label::kNear);
fschneider@chromium.org7979bbb2011-03-28 10:47:03 +00005333 __ mov(eax, factory->false_value());
karlklose@chromium.org83a47282011-05-11 11:54:09 +00005334 __ jmp(&done, Label::kNear);
kmillikin@chromium.orgd2c22f02011-01-10 08:15:37 +00005335 __ bind(&true_value);
fschneider@chromium.org7979bbb2011-03-28 10:47:03 +00005336 __ mov(eax, factory->true_value());
kmillikin@chromium.orgd2c22f02011-01-10 08:15:37 +00005337 __ bind(&done);
5338 __ ret((HasArgsInRegisters() ? 0 : 2) * kPointerSize);
ager@chromium.org5f0c45f2010-12-17 08:51:21 +00005339 }
ricow@chromium.org65fae842010-08-25 15:26:24 +00005340}
5341
5342
kmillikin@chromium.orgd2c22f02011-01-10 08:15:37 +00005343Register InstanceofStub::left() { return eax; }
5344
5345
5346Register InstanceofStub::right() { return edx; }
5347
5348
ricow@chromium.org65fae842010-08-25 15:26:24 +00005349// -------------------------------------------------------------------------
5350// StringCharCodeAtGenerator
5351
5352void StringCharCodeAtGenerator::GenerateFast(MacroAssembler* masm) {
ricow@chromium.org65fae842010-08-25 15:26:24 +00005353 // If the receiver is a smi trigger the non-string case.
5354 STATIC_ASSERT(kSmiTag == 0);
whesse@chromium.org7b260152011-06-20 15:33:18 +00005355 __ JumpIfSmi(object_, receiver_not_string_);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005356
5357 // Fetch the instance type of the receiver into result register.
5358 __ mov(result_, FieldOperand(object_, HeapObject::kMapOffset));
5359 __ movzx_b(result_, FieldOperand(result_, Map::kInstanceTypeOffset));
5360 // If the receiver is not a string trigger the non-string case.
5361 __ test(result_, Immediate(kIsNotStringMask));
5362 __ j(not_zero, receiver_not_string_);
5363
5364 // If the index is non-smi trigger the non-smi case.
5365 STATIC_ASSERT(kSmiTag == 0);
whesse@chromium.org7b260152011-06-20 15:33:18 +00005366 __ JumpIfNotSmi(index_, &index_not_smi_);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005367 __ bind(&got_smi_index_);
5368
5369 // Check for index out of range.
danno@chromium.orgc612e022011-11-10 11:38:15 +00005370 __ cmp(index_, FieldOperand(object_, String::kLengthOffset));
ricow@chromium.org65fae842010-08-25 15:26:24 +00005371 __ j(above_equal, index_out_of_range_);
5372
danno@chromium.orgc612e022011-11-10 11:38:15 +00005373 __ SmiUntag(index_);
erikcorry0ad885c2011-11-21 13:51:57 +00005374
5375 Factory* factory = masm->isolate()->factory();
5376 StringCharLoadGenerator::Generate(
5377 masm, factory, object_, index_, result_, &call_runtime_);
5378
ricow@chromium.org65fae842010-08-25 15:26:24 +00005379 __ SmiTag(result_);
5380 __ bind(&exit_);
5381}
5382
5383
5384void StringCharCodeAtGenerator::GenerateSlow(
jkummerow@chromium.orgc3b37122011-11-07 10:14:12 +00005385 MacroAssembler* masm,
5386 const RuntimeCallHelper& call_helper) {
ricow@chromium.org65fae842010-08-25 15:26:24 +00005387 __ Abort("Unexpected fallthrough to CharCodeAt slow case");
5388
5389 // Index is not a smi.
5390 __ bind(&index_not_smi_);
5391 // If index is a heap number, try converting it to an integer.
fschneider@chromium.org7979bbb2011-03-28 10:47:03 +00005392 __ CheckMap(index_,
5393 masm->isolate()->factory()->heap_number_map(),
5394 index_not_number_,
kmillikin@chromium.orgc53e10d2011-05-18 09:12:58 +00005395 DONT_DO_SMI_CHECK);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005396 call_helper.BeforeCall(masm);
5397 __ push(object_);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005398 __ push(index_); // Consumed by runtime conversion function.
5399 if (index_flags_ == STRING_INDEX_IS_NUMBER) {
5400 __ CallRuntime(Runtime::kNumberToIntegerMapMinusZero, 1);
5401 } else {
5402 ASSERT(index_flags_ == STRING_INDEX_IS_ARRAY_INDEX);
5403 // NumberToSmi discards numbers that are not exact integers.
5404 __ CallRuntime(Runtime::kNumberToSmi, 1);
5405 }
danno@chromium.orgc612e022011-11-10 11:38:15 +00005406 if (!index_.is(eax)) {
ricow@chromium.org65fae842010-08-25 15:26:24 +00005407 // Save the conversion result before the pop instructions below
5408 // have a chance to overwrite it.
danno@chromium.orgc612e022011-11-10 11:38:15 +00005409 __ mov(index_, eax);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005410 }
ricow@chromium.org65fae842010-08-25 15:26:24 +00005411 __ pop(object_);
5412 // Reload the instance type.
5413 __ mov(result_, FieldOperand(object_, HeapObject::kMapOffset));
5414 __ movzx_b(result_, FieldOperand(result_, Map::kInstanceTypeOffset));
5415 call_helper.AfterCall(masm);
5416 // If index is still not a smi, it must be out of range.
5417 STATIC_ASSERT(kSmiTag == 0);
danno@chromium.orgc612e022011-11-10 11:38:15 +00005418 __ JumpIfNotSmi(index_, index_out_of_range_);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005419 // Otherwise, return to the fast path.
5420 __ jmp(&got_smi_index_);
5421
5422 // Call runtime. We get here when the receiver is a string and the
5423 // index is a number, but the code of getting the actual character
5424 // is too complex (e.g., when the string needs to be flattened).
5425 __ bind(&call_runtime_);
5426 call_helper.BeforeCall(masm);
5427 __ push(object_);
erikcorry0ad885c2011-11-21 13:51:57 +00005428 __ SmiTag(index_);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005429 __ push(index_);
5430 __ CallRuntime(Runtime::kStringCharCodeAt, 2);
5431 if (!result_.is(eax)) {
5432 __ mov(result_, eax);
5433 }
5434 call_helper.AfterCall(masm);
5435 __ jmp(&exit_);
5436
5437 __ Abort("Unexpected fallthrough from CharCodeAt slow case");
5438}
5439
5440
5441// -------------------------------------------------------------------------
5442// StringCharFromCodeGenerator
5443
5444void StringCharFromCodeGenerator::GenerateFast(MacroAssembler* masm) {
5445 // Fast case of Heap::LookupSingleCharacterStringFromCode.
5446 STATIC_ASSERT(kSmiTag == 0);
5447 STATIC_ASSERT(kSmiShiftSize == 0);
5448 ASSERT(IsPowerOf2(String::kMaxAsciiCharCode + 1));
5449 __ test(code_,
5450 Immediate(kSmiTagMask |
5451 ((~String::kMaxAsciiCharCode) << kSmiTagSize)));
vegorov@chromium.org7304bca2011-05-16 12:14:13 +00005452 __ j(not_zero, &slow_case_);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005453
fschneider@chromium.org7979bbb2011-03-28 10:47:03 +00005454 Factory* factory = masm->isolate()->factory();
5455 __ Set(result_, Immediate(factory->single_character_string_cache()));
ricow@chromium.org65fae842010-08-25 15:26:24 +00005456 STATIC_ASSERT(kSmiTag == 0);
5457 STATIC_ASSERT(kSmiTagSize == 1);
5458 STATIC_ASSERT(kSmiShiftSize == 0);
ulan@chromium.org2efb9002012-01-19 15:36:35 +00005459 // At this point code register contains smi tagged ASCII char code.
ricow@chromium.org65fae842010-08-25 15:26:24 +00005460 __ mov(result_, FieldOperand(result_,
5461 code_, times_half_pointer_size,
5462 FixedArray::kHeaderSize));
fschneider@chromium.org7979bbb2011-03-28 10:47:03 +00005463 __ cmp(result_, factory->undefined_value());
vegorov@chromium.org7304bca2011-05-16 12:14:13 +00005464 __ j(equal, &slow_case_);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005465 __ bind(&exit_);
5466}
5467
5468
5469void StringCharFromCodeGenerator::GenerateSlow(
jkummerow@chromium.orgc3b37122011-11-07 10:14:12 +00005470 MacroAssembler* masm,
5471 const RuntimeCallHelper& call_helper) {
ricow@chromium.org65fae842010-08-25 15:26:24 +00005472 __ Abort("Unexpected fallthrough to CharFromCode slow case");
5473
5474 __ bind(&slow_case_);
5475 call_helper.BeforeCall(masm);
5476 __ push(code_);
5477 __ CallRuntime(Runtime::kCharFromCode, 1);
5478 if (!result_.is(eax)) {
5479 __ mov(result_, eax);
5480 }
5481 call_helper.AfterCall(masm);
5482 __ jmp(&exit_);
5483
5484 __ Abort("Unexpected fallthrough from CharFromCode slow case");
5485}
5486
5487
5488// -------------------------------------------------------------------------
5489// StringCharAtGenerator
5490
5491void StringCharAtGenerator::GenerateFast(MacroAssembler* masm) {
5492 char_code_at_generator_.GenerateFast(masm);
5493 char_from_code_generator_.GenerateFast(masm);
5494}
5495
5496
5497void StringCharAtGenerator::GenerateSlow(
jkummerow@chromium.orgc3b37122011-11-07 10:14:12 +00005498 MacroAssembler* masm,
5499 const RuntimeCallHelper& call_helper) {
ricow@chromium.org65fae842010-08-25 15:26:24 +00005500 char_code_at_generator_.GenerateSlow(masm, call_helper);
5501 char_from_code_generator_.GenerateSlow(masm, call_helper);
5502}
5503
5504
5505void StringAddStub::Generate(MacroAssembler* masm) {
ricow@chromium.org7ad65222011-12-19 12:13:11 +00005506 Label call_runtime, call_builtin;
kmillikin@chromium.org3cdd9e12010-09-06 11:39:48 +00005507 Builtins::JavaScript builtin_id = Builtins::ADD;
ricow@chromium.org65fae842010-08-25 15:26:24 +00005508
5509 // Load the two arguments.
5510 __ mov(eax, Operand(esp, 2 * kPointerSize)); // First argument.
5511 __ mov(edx, Operand(esp, 1 * kPointerSize)); // Second argument.
5512
5513 // Make sure that both arguments are strings if not known in advance.
kmillikin@chromium.org3cdd9e12010-09-06 11:39:48 +00005514 if (flags_ == NO_STRING_ADD_FLAGS) {
ricow@chromium.org7ad65222011-12-19 12:13:11 +00005515 __ JumpIfSmi(eax, &call_runtime);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005516 __ CmpObjectType(eax, FIRST_NONSTRING_TYPE, ebx);
ricow@chromium.org7ad65222011-12-19 12:13:11 +00005517 __ j(above_equal, &call_runtime);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005518
5519 // First argument is a a string, test second.
ricow@chromium.org7ad65222011-12-19 12:13:11 +00005520 __ JumpIfSmi(edx, &call_runtime);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005521 __ CmpObjectType(edx, FIRST_NONSTRING_TYPE, ebx);
ricow@chromium.org7ad65222011-12-19 12:13:11 +00005522 __ j(above_equal, &call_runtime);
kmillikin@chromium.org3cdd9e12010-09-06 11:39:48 +00005523 } else {
5524 // Here at least one of the arguments is definitely a string.
5525 // We convert the one that is not known to be a string.
5526 if ((flags_ & NO_STRING_CHECK_LEFT_IN_STUB) == 0) {
5527 ASSERT((flags_ & NO_STRING_CHECK_RIGHT_IN_STUB) != 0);
5528 GenerateConvertArgument(masm, 2 * kPointerSize, eax, ebx, ecx, edi,
5529 &call_builtin);
5530 builtin_id = Builtins::STRING_ADD_RIGHT;
5531 } else if ((flags_ & NO_STRING_CHECK_RIGHT_IN_STUB) == 0) {
5532 ASSERT((flags_ & NO_STRING_CHECK_LEFT_IN_STUB) != 0);
5533 GenerateConvertArgument(masm, 1 * kPointerSize, edx, ebx, ecx, edi,
5534 &call_builtin);
5535 builtin_id = Builtins::STRING_ADD_LEFT;
5536 }
ricow@chromium.org65fae842010-08-25 15:26:24 +00005537 }
5538
5539 // Both arguments are strings.
5540 // eax: first string
5541 // edx: second string
5542 // Check if either of the strings are empty. In that case return the other.
karlklose@chromium.org83a47282011-05-11 11:54:09 +00005543 Label second_not_zero_length, both_not_zero_length;
ricow@chromium.org65fae842010-08-25 15:26:24 +00005544 __ mov(ecx, FieldOperand(edx, String::kLengthOffset));
5545 STATIC_ASSERT(kSmiTag == 0);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00005546 __ test(ecx, ecx);
karlklose@chromium.org83a47282011-05-11 11:54:09 +00005547 __ j(not_zero, &second_not_zero_length, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005548 // Second string is empty, result is first string which is already in eax.
fschneider@chromium.org7979bbb2011-03-28 10:47:03 +00005549 Counters* counters = masm->isolate()->counters();
5550 __ IncrementCounter(counters->string_add_native(), 1);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005551 __ ret(2 * kPointerSize);
5552 __ bind(&second_not_zero_length);
5553 __ mov(ebx, FieldOperand(eax, String::kLengthOffset));
5554 STATIC_ASSERT(kSmiTag == 0);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00005555 __ test(ebx, ebx);
karlklose@chromium.org83a47282011-05-11 11:54:09 +00005556 __ j(not_zero, &both_not_zero_length, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005557 // First string is empty, result is second string which is in edx.
5558 __ mov(eax, edx);
fschneider@chromium.org7979bbb2011-03-28 10:47:03 +00005559 __ IncrementCounter(counters->string_add_native(), 1);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005560 __ ret(2 * kPointerSize);
5561
5562 // Both strings are non-empty.
5563 // eax: first string
5564 // ebx: length of first string as a smi
5565 // ecx: length of second string as a smi
5566 // edx: second string
5567 // Look at the length of the result of adding the two strings.
5568 Label string_add_flat_result, longer_than_two;
5569 __ bind(&both_not_zero_length);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00005570 __ add(ebx, ecx);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005571 STATIC_ASSERT(Smi::kMaxValue == String::kMaxLength);
5572 // Handle exceptionally long strings in the runtime system.
ricow@chromium.org7ad65222011-12-19 12:13:11 +00005573 __ j(overflow, &call_runtime);
ricow@chromium.orgbadaffc2011-03-17 12:15:27 +00005574 // Use the symbol table when adding two one character strings, as it
5575 // helps later optimizations to return a symbol here.
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00005576 __ cmp(ebx, Immediate(Smi::FromInt(2)));
ricow@chromium.org65fae842010-08-25 15:26:24 +00005577 __ j(not_equal, &longer_than_two);
5578
ulan@chromium.org2efb9002012-01-19 15:36:35 +00005579 // Check that both strings are non-external ASCII strings.
ricow@chromium.org7ad65222011-12-19 12:13:11 +00005580 __ JumpIfNotBothSequentialAsciiStrings(eax, edx, ebx, ecx, &call_runtime);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005581
kmillikin@chromium.org3cdd9e12010-09-06 11:39:48 +00005582 // Get the two characters forming the new string.
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00005583 __ movzx_b(ebx, FieldOperand(eax, SeqOneByteString::kHeaderSize));
5584 __ movzx_b(ecx, FieldOperand(edx, SeqOneByteString::kHeaderSize));
ricow@chromium.org65fae842010-08-25 15:26:24 +00005585
5586 // Try to lookup two character string in symbol table. If it is not found
5587 // just allocate a new one.
kmillikin@chromium.org3cdd9e12010-09-06 11:39:48 +00005588 Label make_two_character_string, make_two_character_string_no_reload;
ricow@chromium.org65fae842010-08-25 15:26:24 +00005589 StringHelper::GenerateTwoCharacterSymbolTableProbe(
kmillikin@chromium.org3cdd9e12010-09-06 11:39:48 +00005590 masm, ebx, ecx, eax, edx, edi,
5591 &make_two_character_string_no_reload, &make_two_character_string);
fschneider@chromium.org7979bbb2011-03-28 10:47:03 +00005592 __ IncrementCounter(counters->string_add_native(), 1);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005593 __ ret(2 * kPointerSize);
5594
kmillikin@chromium.org3cdd9e12010-09-06 11:39:48 +00005595 // Allocate a two character string.
ricow@chromium.org65fae842010-08-25 15:26:24 +00005596 __ bind(&make_two_character_string);
kmillikin@chromium.org3cdd9e12010-09-06 11:39:48 +00005597 // Reload the arguments.
5598 __ mov(eax, Operand(esp, 2 * kPointerSize)); // First argument.
5599 __ mov(edx, Operand(esp, 1 * kPointerSize)); // Second argument.
5600 // Get the two characters forming the new string.
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00005601 __ movzx_b(ebx, FieldOperand(eax, SeqOneByteString::kHeaderSize));
5602 __ movzx_b(ecx, FieldOperand(edx, SeqOneByteString::kHeaderSize));
kmillikin@chromium.org3cdd9e12010-09-06 11:39:48 +00005603 __ bind(&make_two_character_string_no_reload);
fschneider@chromium.org7979bbb2011-03-28 10:47:03 +00005604 __ IncrementCounter(counters->string_add_make_two_char(), 1);
ricow@chromium.org7ad65222011-12-19 12:13:11 +00005605 __ AllocateAsciiString(eax, 2, edi, edx, &call_runtime);
kmillikin@chromium.org3cdd9e12010-09-06 11:39:48 +00005606 // Pack both characters in ebx.
5607 __ shl(ecx, kBitsPerByte);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00005608 __ or_(ebx, ecx);
kmillikin@chromium.org3cdd9e12010-09-06 11:39:48 +00005609 // Set the characters in the new string.
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00005610 __ mov_w(FieldOperand(eax, SeqOneByteString::kHeaderSize), ebx);
fschneider@chromium.org7979bbb2011-03-28 10:47:03 +00005611 __ IncrementCounter(counters->string_add_native(), 1);
kmillikin@chromium.org3cdd9e12010-09-06 11:39:48 +00005612 __ ret(2 * kPointerSize);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005613
5614 __ bind(&longer_than_two);
5615 // Check if resulting string will be flat.
ulan@chromium.org2efb9002012-01-19 15:36:35 +00005616 __ cmp(ebx, Immediate(Smi::FromInt(ConsString::kMinLength)));
ricow@chromium.org65fae842010-08-25 15:26:24 +00005617 __ j(below, &string_add_flat_result);
5618
5619 // If result is not supposed to be flat allocate a cons string object. If both
ulan@chromium.org2efb9002012-01-19 15:36:35 +00005620 // strings are ASCII the result is an ASCII cons string.
ricow@chromium.org65fae842010-08-25 15:26:24 +00005621 Label non_ascii, allocated, ascii_data;
5622 __ mov(edi, FieldOperand(eax, HeapObject::kMapOffset));
5623 __ movzx_b(ecx, FieldOperand(edi, Map::kInstanceTypeOffset));
5624 __ mov(edi, FieldOperand(edx, HeapObject::kMapOffset));
5625 __ movzx_b(edi, FieldOperand(edi, Map::kInstanceTypeOffset));
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00005626 __ and_(ecx, edi);
mvstanton@chromium.orge4ac3ef2012-11-12 14:53:34 +00005627 STATIC_ASSERT((kStringEncodingMask & kOneByteStringTag) != 0);
fschneider@chromium.org1805e212011-09-05 10:49:12 +00005628 STATIC_ASSERT((kStringEncodingMask & kTwoByteStringTag) == 0);
5629 __ test(ecx, Immediate(kStringEncodingMask));
ricow@chromium.org65fae842010-08-25 15:26:24 +00005630 __ j(zero, &non_ascii);
5631 __ bind(&ascii_data);
ulan@chromium.org2efb9002012-01-19 15:36:35 +00005632 // Allocate an ASCII cons string.
ricow@chromium.org7ad65222011-12-19 12:13:11 +00005633 __ AllocateAsciiConsString(ecx, edi, no_reg, &call_runtime);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005634 __ bind(&allocated);
5635 // Fill the fields of the cons string.
svenpanne@chromium.orgc859c4f2012-10-15 11:51:39 +00005636 __ AssertSmi(ebx);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005637 __ mov(FieldOperand(ecx, ConsString::kLengthOffset), ebx);
5638 __ mov(FieldOperand(ecx, ConsString::kHashFieldOffset),
5639 Immediate(String::kEmptyHashField));
5640 __ mov(FieldOperand(ecx, ConsString::kFirstOffset), eax);
5641 __ mov(FieldOperand(ecx, ConsString::kSecondOffset), edx);
5642 __ mov(eax, ecx);
fschneider@chromium.org7979bbb2011-03-28 10:47:03 +00005643 __ IncrementCounter(counters->string_add_native(), 1);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005644 __ ret(2 * kPointerSize);
5645 __ bind(&non_ascii);
5646 // At least one of the strings is two-byte. Check whether it happens
ulan@chromium.org2efb9002012-01-19 15:36:35 +00005647 // to contain only ASCII characters.
ricow@chromium.org65fae842010-08-25 15:26:24 +00005648 // ecx: first instance type AND second instance type.
5649 // edi: second instance type.
5650 __ test(ecx, Immediate(kAsciiDataHintMask));
5651 __ j(not_zero, &ascii_data);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005652 // Allocate a two byte cons string.
ricow@chromium.org7ad65222011-12-19 12:13:11 +00005653 __ AllocateTwoByteConsString(ecx, edi, no_reg, &call_runtime);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005654 __ jmp(&allocated);
5655
ricow@chromium.org7ad65222011-12-19 12:13:11 +00005656 // We cannot encounter sliced strings or cons strings here since:
ulan@chromium.org2efb9002012-01-19 15:36:35 +00005657 STATIC_ASSERT(SlicedString::kMinLength >= ConsString::kMinLength);
ricow@chromium.org7ad65222011-12-19 12:13:11 +00005658 // Handle creating a flat result from either external or sequential strings.
5659 // Locate the first characters' locations.
ricow@chromium.org65fae842010-08-25 15:26:24 +00005660 // eax: first string
5661 // ebx: length of resulting flat string as a smi
5662 // edx: second string
ricow@chromium.org7ad65222011-12-19 12:13:11 +00005663 Label first_prepared, second_prepared;
5664 Label first_is_sequential, second_is_sequential;
ricow@chromium.org65fae842010-08-25 15:26:24 +00005665 __ bind(&string_add_flat_result);
5666 __ mov(ecx, FieldOperand(eax, HeapObject::kMapOffset));
5667 __ movzx_b(ecx, FieldOperand(ecx, Map::kInstanceTypeOffset));
ricow@chromium.org7ad65222011-12-19 12:13:11 +00005668 // ecx: instance type of first string
5669 STATIC_ASSERT(kSeqStringTag == 0);
5670 __ test_b(ecx, kStringRepresentationMask);
5671 __ j(zero, &first_is_sequential, Label::kNear);
5672 // Rule out short external string and load string resource.
5673 STATIC_ASSERT(kShortExternalStringTag != 0);
5674 __ test_b(ecx, kShortExternalStringMask);
5675 __ j(not_zero, &call_runtime);
5676 __ mov(eax, FieldOperand(eax, ExternalString::kResourceDataOffset));
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00005677 STATIC_ASSERT(SeqOneByteString::kHeaderSize == SeqTwoByteString::kHeaderSize);
ricow@chromium.org7ad65222011-12-19 12:13:11 +00005678 __ jmp(&first_prepared, Label::kNear);
5679 __ bind(&first_is_sequential);
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00005680 __ add(eax, Immediate(SeqOneByteString::kHeaderSize - kHeapObjectTag));
ricow@chromium.org7ad65222011-12-19 12:13:11 +00005681 __ bind(&first_prepared);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005682
ricow@chromium.org7ad65222011-12-19 12:13:11 +00005683 __ mov(edi, FieldOperand(edx, HeapObject::kMapOffset));
5684 __ movzx_b(edi, FieldOperand(edi, Map::kInstanceTypeOffset));
5685 // Check whether both strings have same encoding.
5686 // edi: instance type of second string
5687 __ xor_(ecx, edi);
5688 __ test_b(ecx, kStringEncodingMask);
5689 __ j(not_zero, &call_runtime);
5690 STATIC_ASSERT(kSeqStringTag == 0);
5691 __ test_b(edi, kStringRepresentationMask);
5692 __ j(zero, &second_is_sequential, Label::kNear);
5693 // Rule out short external string and load string resource.
5694 STATIC_ASSERT(kShortExternalStringTag != 0);
5695 __ test_b(edi, kShortExternalStringMask);
5696 __ j(not_zero, &call_runtime);
5697 __ mov(edx, FieldOperand(edx, ExternalString::kResourceDataOffset));
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00005698 STATIC_ASSERT(SeqOneByteString::kHeaderSize == SeqTwoByteString::kHeaderSize);
ricow@chromium.org7ad65222011-12-19 12:13:11 +00005699 __ jmp(&second_prepared, Label::kNear);
5700 __ bind(&second_is_sequential);
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00005701 __ add(edx, Immediate(SeqOneByteString::kHeaderSize - kHeapObjectTag));
ricow@chromium.org7ad65222011-12-19 12:13:11 +00005702 __ bind(&second_prepared);
5703
5704 // Push the addresses of both strings' first characters onto the stack.
5705 __ push(edx);
5706 __ push(eax);
5707
5708 Label non_ascii_string_add_flat_result, call_runtime_drop_two;
5709 // edi: instance type of second string
5710 // First string and second string have the same encoding.
5711 STATIC_ASSERT(kTwoByteStringTag == 0);
5712 __ test_b(edi, kStringEncodingMask);
5713 __ j(zero, &non_ascii_string_add_flat_result);
5714
ulan@chromium.org2efb9002012-01-19 15:36:35 +00005715 // Both strings are ASCII strings.
ricow@chromium.org65fae842010-08-25 15:26:24 +00005716 // ebx: length of resulting flat string as a smi
5717 __ SmiUntag(ebx);
ricow@chromium.org7ad65222011-12-19 12:13:11 +00005718 __ AllocateAsciiString(eax, ebx, ecx, edx, edi, &call_runtime_drop_two);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005719 // eax: result string
5720 __ mov(ecx, eax);
5721 // Locate first character of result.
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00005722 __ add(ecx, Immediate(SeqOneByteString::kHeaderSize - kHeapObjectTag));
ricow@chromium.org7ad65222011-12-19 12:13:11 +00005723 // Load first argument's length and first character location. Account for
5724 // values currently on the stack when fetching arguments from it.
5725 __ mov(edx, Operand(esp, 4 * kPointerSize));
ricow@chromium.org65fae842010-08-25 15:26:24 +00005726 __ mov(edi, FieldOperand(edx, String::kLengthOffset));
5727 __ SmiUntag(edi);
ricow@chromium.org7ad65222011-12-19 12:13:11 +00005728 __ pop(edx);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005729 // eax: result string
5730 // ecx: first character of result
5731 // edx: first char of first argument
5732 // edi: length of first argument
5733 StringHelper::GenerateCopyCharacters(masm, ecx, edx, edi, ebx, true);
ricow@chromium.org7ad65222011-12-19 12:13:11 +00005734 // Load second argument's length and first character location. Account for
5735 // values currently on the stack when fetching arguments from it.
5736 __ mov(edx, Operand(esp, 2 * kPointerSize));
ricow@chromium.org65fae842010-08-25 15:26:24 +00005737 __ mov(edi, FieldOperand(edx, String::kLengthOffset));
5738 __ SmiUntag(edi);
ricow@chromium.org7ad65222011-12-19 12:13:11 +00005739 __ pop(edx);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005740 // eax: result string
5741 // ecx: next character of result
5742 // edx: first char of second argument
5743 // edi: length of second argument
5744 StringHelper::GenerateCopyCharacters(masm, ecx, edx, edi, ebx, true);
fschneider@chromium.org7979bbb2011-03-28 10:47:03 +00005745 __ IncrementCounter(counters->string_add_native(), 1);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005746 __ ret(2 * kPointerSize);
5747
5748 // Handle creating a flat two byte result.
5749 // eax: first string - known to be two byte
5750 // ebx: length of resulting flat string as a smi
5751 // edx: second string
5752 __ bind(&non_ascii_string_add_flat_result);
ricow@chromium.org7ad65222011-12-19 12:13:11 +00005753 // Both strings are two byte strings.
ricow@chromium.org65fae842010-08-25 15:26:24 +00005754 __ SmiUntag(ebx);
ricow@chromium.org7ad65222011-12-19 12:13:11 +00005755 __ AllocateTwoByteString(eax, ebx, ecx, edx, edi, &call_runtime_drop_two);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005756 // eax: result string
5757 __ mov(ecx, eax);
5758 // Locate first character of result.
ricow@chromium.org7ad65222011-12-19 12:13:11 +00005759 __ add(ecx, Immediate(SeqTwoByteString::kHeaderSize - kHeapObjectTag));
5760 // Load second argument's length and first character location. Account for
5761 // values currently on the stack when fetching arguments from it.
5762 __ mov(edx, Operand(esp, 4 * kPointerSize));
ricow@chromium.org65fae842010-08-25 15:26:24 +00005763 __ mov(edi, FieldOperand(edx, String::kLengthOffset));
5764 __ SmiUntag(edi);
ricow@chromium.org7ad65222011-12-19 12:13:11 +00005765 __ pop(edx);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005766 // eax: result string
5767 // ecx: first character of result
5768 // edx: first char of first argument
5769 // edi: length of first argument
5770 StringHelper::GenerateCopyCharacters(masm, ecx, edx, edi, ebx, false);
ricow@chromium.org7ad65222011-12-19 12:13:11 +00005771 // Load second argument's length and first character location. Account for
5772 // values currently on the stack when fetching arguments from it.
5773 __ mov(edx, Operand(esp, 2 * kPointerSize));
ricow@chromium.org65fae842010-08-25 15:26:24 +00005774 __ mov(edi, FieldOperand(edx, String::kLengthOffset));
5775 __ SmiUntag(edi);
ricow@chromium.org7ad65222011-12-19 12:13:11 +00005776 __ pop(edx);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005777 // eax: result string
5778 // ecx: next character of result
5779 // edx: first char of second argument
5780 // edi: length of second argument
5781 StringHelper::GenerateCopyCharacters(masm, ecx, edx, edi, ebx, false);
fschneider@chromium.org7979bbb2011-03-28 10:47:03 +00005782 __ IncrementCounter(counters->string_add_native(), 1);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005783 __ ret(2 * kPointerSize);
5784
ricow@chromium.org7ad65222011-12-19 12:13:11 +00005785 // Recover stack pointer before jumping to runtime.
5786 __ bind(&call_runtime_drop_two);
5787 __ Drop(2);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005788 // Just jump to runtime to add the two strings.
ricow@chromium.org7ad65222011-12-19 12:13:11 +00005789 __ bind(&call_runtime);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005790 __ TailCallRuntime(Runtime::kStringAdd, 2, 1);
kmillikin@chromium.org3cdd9e12010-09-06 11:39:48 +00005791
5792 if (call_builtin.is_linked()) {
5793 __ bind(&call_builtin);
5794 __ InvokeBuiltin(builtin_id, JUMP_FUNCTION);
5795 }
5796}
5797
5798
5799void StringAddStub::GenerateConvertArgument(MacroAssembler* masm,
5800 int stack_offset,
5801 Register arg,
5802 Register scratch1,
5803 Register scratch2,
5804 Register scratch3,
5805 Label* slow) {
5806 // First check if the argument is already a string.
5807 Label not_string, done;
whesse@chromium.org7b260152011-06-20 15:33:18 +00005808 __ JumpIfSmi(arg, &not_string);
kmillikin@chromium.org3cdd9e12010-09-06 11:39:48 +00005809 __ CmpObjectType(arg, FIRST_NONSTRING_TYPE, scratch1);
5810 __ j(below, &done);
5811
5812 // Check the number to string cache.
5813 Label not_cached;
5814 __ bind(&not_string);
5815 // Puts the cached result into scratch1.
5816 NumberToStringStub::GenerateLookupNumberStringCache(masm,
5817 arg,
5818 scratch1,
5819 scratch2,
5820 scratch3,
5821 false,
5822 &not_cached);
5823 __ mov(arg, scratch1);
5824 __ mov(Operand(esp, stack_offset), arg);
5825 __ jmp(&done);
5826
5827 // Check if the argument is a safe string wrapper.
5828 __ bind(&not_cached);
whesse@chromium.org7b260152011-06-20 15:33:18 +00005829 __ JumpIfSmi(arg, slow);
kmillikin@chromium.org3cdd9e12010-09-06 11:39:48 +00005830 __ CmpObjectType(arg, JS_VALUE_TYPE, scratch1); // map -> scratch1.
5831 __ j(not_equal, slow);
5832 __ test_b(FieldOperand(scratch1, Map::kBitField2Offset),
5833 1 << Map::kStringWrapperSafeForDefaultValueOf);
5834 __ j(zero, slow);
5835 __ mov(arg, FieldOperand(arg, JSValue::kValueOffset));
5836 __ mov(Operand(esp, stack_offset), arg);
5837
5838 __ bind(&done);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005839}
5840
5841
5842void StringHelper::GenerateCopyCharacters(MacroAssembler* masm,
5843 Register dest,
5844 Register src,
5845 Register count,
5846 Register scratch,
5847 bool ascii) {
karlklose@chromium.org83a47282011-05-11 11:54:09 +00005848 Label loop;
ricow@chromium.org65fae842010-08-25 15:26:24 +00005849 __ bind(&loop);
5850 // This loop just copies one character at a time, as it is only used for very
5851 // short strings.
5852 if (ascii) {
5853 __ mov_b(scratch, Operand(src, 0));
5854 __ mov_b(Operand(dest, 0), scratch);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00005855 __ add(src, Immediate(1));
5856 __ add(dest, Immediate(1));
ricow@chromium.org65fae842010-08-25 15:26:24 +00005857 } else {
5858 __ mov_w(scratch, Operand(src, 0));
5859 __ mov_w(Operand(dest, 0), scratch);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00005860 __ add(src, Immediate(2));
5861 __ add(dest, Immediate(2));
ricow@chromium.org65fae842010-08-25 15:26:24 +00005862 }
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00005863 __ sub(count, Immediate(1));
ricow@chromium.org65fae842010-08-25 15:26:24 +00005864 __ j(not_zero, &loop);
5865}
5866
5867
5868void StringHelper::GenerateCopyCharactersREP(MacroAssembler* masm,
5869 Register dest,
5870 Register src,
5871 Register count,
5872 Register scratch,
5873 bool ascii) {
5874 // Copy characters using rep movs of doublewords.
5875 // The destination is aligned on a 4 byte boundary because we are
5876 // copying to the beginning of a newly allocated string.
5877 ASSERT(dest.is(edi)); // rep movs destination
5878 ASSERT(src.is(esi)); // rep movs source
5879 ASSERT(count.is(ecx)); // rep movs count
5880 ASSERT(!scratch.is(dest));
5881 ASSERT(!scratch.is(src));
5882 ASSERT(!scratch.is(count));
5883
5884 // Nothing to do for zero characters.
5885 Label done;
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00005886 __ test(count, count);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005887 __ j(zero, &done);
5888
5889 // Make count the number of bytes to copy.
5890 if (!ascii) {
5891 __ shl(count, 1);
5892 }
5893
5894 // Don't enter the rep movs if there are less than 4 bytes to copy.
karlklose@chromium.org83a47282011-05-11 11:54:09 +00005895 Label last_bytes;
ricow@chromium.org65fae842010-08-25 15:26:24 +00005896 __ test(count, Immediate(~3));
karlklose@chromium.org83a47282011-05-11 11:54:09 +00005897 __ j(zero, &last_bytes, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005898
5899 // Copy from edi to esi using rep movs instruction.
5900 __ mov(scratch, count);
5901 __ sar(count, 2); // Number of doublewords to copy.
5902 __ cld();
5903 __ rep_movs();
5904
5905 // Find number of bytes left.
5906 __ mov(count, scratch);
5907 __ and_(count, 3);
5908
5909 // Check if there are more bytes to copy.
5910 __ bind(&last_bytes);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00005911 __ test(count, count);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005912 __ j(zero, &done);
5913
5914 // Copy remaining characters.
karlklose@chromium.org83a47282011-05-11 11:54:09 +00005915 Label loop;
ricow@chromium.org65fae842010-08-25 15:26:24 +00005916 __ bind(&loop);
5917 __ mov_b(scratch, Operand(src, 0));
5918 __ mov_b(Operand(dest, 0), scratch);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00005919 __ add(src, Immediate(1));
5920 __ add(dest, Immediate(1));
5921 __ sub(count, Immediate(1));
ricow@chromium.org65fae842010-08-25 15:26:24 +00005922 __ j(not_zero, &loop);
5923
5924 __ bind(&done);
5925}
5926
5927
5928void StringHelper::GenerateTwoCharacterSymbolTableProbe(MacroAssembler* masm,
5929 Register c1,
5930 Register c2,
5931 Register scratch1,
5932 Register scratch2,
5933 Register scratch3,
kmillikin@chromium.org3cdd9e12010-09-06 11:39:48 +00005934 Label* not_probed,
ricow@chromium.org65fae842010-08-25 15:26:24 +00005935 Label* not_found) {
5936 // Register scratch3 is the general scratch register in this function.
5937 Register scratch = scratch3;
5938
5939 // Make sure that both characters are not digits as such strings has a
5940 // different hash algorithm. Don't try to look for these in the symbol table.
karlklose@chromium.org83a47282011-05-11 11:54:09 +00005941 Label not_array_index;
ricow@chromium.org65fae842010-08-25 15:26:24 +00005942 __ mov(scratch, c1);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00005943 __ sub(scratch, Immediate(static_cast<int>('0')));
5944 __ cmp(scratch, Immediate(static_cast<int>('9' - '0')));
karlklose@chromium.org83a47282011-05-11 11:54:09 +00005945 __ j(above, &not_array_index, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005946 __ mov(scratch, c2);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00005947 __ sub(scratch, Immediate(static_cast<int>('0')));
5948 __ cmp(scratch, Immediate(static_cast<int>('9' - '0')));
kmillikin@chromium.org3cdd9e12010-09-06 11:39:48 +00005949 __ j(below_equal, not_probed);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005950
5951 __ bind(&not_array_index);
5952 // Calculate the two character string hash.
5953 Register hash = scratch1;
5954 GenerateHashInit(masm, hash, c1, scratch);
5955 GenerateHashAddCharacter(masm, hash, c2, scratch);
5956 GenerateHashGetHash(masm, hash, scratch);
5957
5958 // Collect the two characters in a register.
5959 Register chars = c1;
5960 __ shl(c2, kBitsPerByte);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00005961 __ or_(chars, c2);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005962
5963 // chars: two character string, char 1 in byte 0 and char 2 in byte 1.
5964 // hash: hash of two character string.
5965
5966 // Load the symbol table.
5967 Register symbol_table = c2;
erik.corry@gmail.com394dbcf2011-10-27 07:38:48 +00005968 ExternalReference roots_array_start =
5969 ExternalReference::roots_array_start(masm->isolate());
ricow@chromium.org65fae842010-08-25 15:26:24 +00005970 __ mov(scratch, Immediate(Heap::kSymbolTableRootIndex));
5971 __ mov(symbol_table,
erik.corry@gmail.com394dbcf2011-10-27 07:38:48 +00005972 Operand::StaticArray(scratch, times_pointer_size, roots_array_start));
ricow@chromium.org65fae842010-08-25 15:26:24 +00005973
5974 // Calculate capacity mask from the symbol table capacity.
5975 Register mask = scratch2;
5976 __ mov(mask, FieldOperand(symbol_table, SymbolTable::kCapacityOffset));
5977 __ SmiUntag(mask);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00005978 __ sub(mask, Immediate(1));
ricow@chromium.org65fae842010-08-25 15:26:24 +00005979
5980 // Registers
5981 // chars: two character string, char 1 in byte 0 and char 2 in byte 1.
5982 // hash: hash of two character string
5983 // symbol_table: symbol table
5984 // mask: capacity mask
5985 // scratch: -
5986
5987 // Perform a number of probes in the symbol table.
5988 static const int kProbes = 4;
5989 Label found_in_symbol_table;
5990 Label next_probe[kProbes], next_probe_pop_mask[kProbes];
danno@chromium.org2c456792011-11-11 12:00:53 +00005991 Register candidate = scratch; // Scratch register contains candidate.
ricow@chromium.org65fae842010-08-25 15:26:24 +00005992 for (int i = 0; i < kProbes; i++) {
5993 // Calculate entry in symbol table.
5994 __ mov(scratch, hash);
5995 if (i > 0) {
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00005996 __ add(scratch, Immediate(SymbolTable::GetProbeOffset(i)));
ricow@chromium.org65fae842010-08-25 15:26:24 +00005997 }
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00005998 __ and_(scratch, mask);
ricow@chromium.org65fae842010-08-25 15:26:24 +00005999
6000 // Load the entry from the symbol table.
ricow@chromium.org65fae842010-08-25 15:26:24 +00006001 STATIC_ASSERT(SymbolTable::kEntrySize == 1);
6002 __ mov(candidate,
6003 FieldOperand(symbol_table,
6004 scratch,
6005 times_pointer_size,
6006 SymbolTable::kElementsStartOffset));
6007
6008 // If entry is undefined no string with this hash can be found.
fschneider@chromium.org7979bbb2011-03-28 10:47:03 +00006009 Factory* factory = masm->isolate()->factory();
6010 __ cmp(candidate, factory->undefined_value());
ricow@chromium.org65fae842010-08-25 15:26:24 +00006011 __ j(equal, not_found);
danno@chromium.org2c456792011-11-11 12:00:53 +00006012 __ cmp(candidate, factory->the_hole_value());
ricow@chromium.orgbadaffc2011-03-17 12:15:27 +00006013 __ j(equal, &next_probe[i]);
ricow@chromium.org65fae842010-08-25 15:26:24 +00006014
6015 // If length is not 2 the string is not a candidate.
6016 __ cmp(FieldOperand(candidate, String::kLengthOffset),
6017 Immediate(Smi::FromInt(2)));
6018 __ j(not_equal, &next_probe[i]);
6019
6020 // As we are out of registers save the mask on the stack and use that
6021 // register as a temporary.
6022 __ push(mask);
6023 Register temp = mask;
6024
ulan@chromium.org2efb9002012-01-19 15:36:35 +00006025 // Check that the candidate is a non-external ASCII string.
ricow@chromium.org65fae842010-08-25 15:26:24 +00006026 __ mov(temp, FieldOperand(candidate, HeapObject::kMapOffset));
6027 __ movzx_b(temp, FieldOperand(temp, Map::kInstanceTypeOffset));
6028 __ JumpIfInstanceTypeIsNotSequentialAscii(
6029 temp, temp, &next_probe_pop_mask[i]);
6030
6031 // Check if the two characters match.
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00006032 __ mov(temp, FieldOperand(candidate, SeqOneByteString::kHeaderSize));
ricow@chromium.org65fae842010-08-25 15:26:24 +00006033 __ and_(temp, 0x0000ffff);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00006034 __ cmp(chars, temp);
ricow@chromium.org65fae842010-08-25 15:26:24 +00006035 __ j(equal, &found_in_symbol_table);
6036 __ bind(&next_probe_pop_mask[i]);
6037 __ pop(mask);
6038 __ bind(&next_probe[i]);
6039 }
6040
6041 // No matching 2 character string found by probing.
6042 __ jmp(not_found);
6043
6044 // Scratch register contains result when we fall through to here.
danno@chromium.org2c456792011-11-11 12:00:53 +00006045 Register result = candidate;
ricow@chromium.org65fae842010-08-25 15:26:24 +00006046 __ bind(&found_in_symbol_table);
6047 __ pop(mask); // Pop saved mask from the stack.
6048 if (!result.is(eax)) {
6049 __ mov(eax, result);
6050 }
6051}
6052
6053
6054void StringHelper::GenerateHashInit(MacroAssembler* masm,
6055 Register hash,
6056 Register character,
6057 Register scratch) {
rossberg@chromium.orgfab14982012-01-05 15:02:15 +00006058 // hash = (seed + character) + ((seed + character) << 10);
6059 if (Serializer::enabled()) {
6060 ExternalReference roots_array_start =
6061 ExternalReference::roots_array_start(masm->isolate());
erik.corry@gmail.comf2038fb2012-01-16 11:42:08 +00006062 __ mov(scratch, Immediate(Heap::kHashSeedRootIndex));
rossberg@chromium.orgfab14982012-01-05 15:02:15 +00006063 __ mov(scratch, Operand::StaticArray(scratch,
6064 times_pointer_size,
6065 roots_array_start));
ulan@chromium.org2efb9002012-01-19 15:36:35 +00006066 __ SmiUntag(scratch);
rossberg@chromium.orgfab14982012-01-05 15:02:15 +00006067 __ add(scratch, character);
6068 __ mov(hash, scratch);
6069 __ shl(scratch, 10);
6070 __ add(hash, scratch);
6071 } else {
erik.corry@gmail.comf2038fb2012-01-16 11:42:08 +00006072 int32_t seed = masm->isolate()->heap()->HashSeed();
rossberg@chromium.orgfab14982012-01-05 15:02:15 +00006073 __ lea(scratch, Operand(character, seed));
6074 __ shl(scratch, 10);
6075 __ lea(hash, Operand(scratch, character, times_1, seed));
6076 }
ricow@chromium.org65fae842010-08-25 15:26:24 +00006077 // hash ^= hash >> 6;
6078 __ mov(scratch, hash);
danno@chromium.org2c456792011-11-11 12:00:53 +00006079 __ shr(scratch, 6);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00006080 __ xor_(hash, scratch);
ricow@chromium.org65fae842010-08-25 15:26:24 +00006081}
6082
6083
6084void StringHelper::GenerateHashAddCharacter(MacroAssembler* masm,
6085 Register hash,
6086 Register character,
6087 Register scratch) {
6088 // hash += character;
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00006089 __ add(hash, character);
ricow@chromium.org65fae842010-08-25 15:26:24 +00006090 // hash += hash << 10;
6091 __ mov(scratch, hash);
6092 __ shl(scratch, 10);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00006093 __ add(hash, scratch);
ricow@chromium.org65fae842010-08-25 15:26:24 +00006094 // hash ^= hash >> 6;
6095 __ mov(scratch, hash);
danno@chromium.org2c456792011-11-11 12:00:53 +00006096 __ shr(scratch, 6);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00006097 __ xor_(hash, scratch);
ricow@chromium.org65fae842010-08-25 15:26:24 +00006098}
6099
6100
6101void StringHelper::GenerateHashGetHash(MacroAssembler* masm,
6102 Register hash,
6103 Register scratch) {
6104 // hash += hash << 3;
6105 __ mov(scratch, hash);
6106 __ shl(scratch, 3);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00006107 __ add(hash, scratch);
ricow@chromium.org65fae842010-08-25 15:26:24 +00006108 // hash ^= hash >> 11;
6109 __ mov(scratch, hash);
danno@chromium.org2c456792011-11-11 12:00:53 +00006110 __ shr(scratch, 11);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00006111 __ xor_(hash, scratch);
ricow@chromium.org65fae842010-08-25 15:26:24 +00006112 // hash += hash << 15;
6113 __ mov(scratch, hash);
6114 __ shl(scratch, 15);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00006115 __ add(hash, scratch);
ricow@chromium.org65fae842010-08-25 15:26:24 +00006116
erik.corry@gmail.comf2038fb2012-01-16 11:42:08 +00006117 __ and_(hash, String::kHashBitMask);
danno@chromium.org2c456792011-11-11 12:00:53 +00006118
ricow@chromium.org65fae842010-08-25 15:26:24 +00006119 // if (hash == 0) hash = 27;
karlklose@chromium.org83a47282011-05-11 11:54:09 +00006120 Label hash_not_zero;
karlklose@chromium.org83a47282011-05-11 11:54:09 +00006121 __ j(not_zero, &hash_not_zero, Label::kNear);
erik.corry@gmail.comf2038fb2012-01-16 11:42:08 +00006122 __ mov(hash, Immediate(StringHasher::kZeroHash));
ricow@chromium.org65fae842010-08-25 15:26:24 +00006123 __ bind(&hash_not_zero);
6124}
6125
6126
6127void SubStringStub::Generate(MacroAssembler* masm) {
6128 Label runtime;
6129
6130 // Stack frame on entry.
6131 // esp[0]: return address
6132 // esp[4]: to
6133 // esp[8]: from
6134 // esp[12]: string
6135
6136 // Make sure first argument is a string.
6137 __ mov(eax, Operand(esp, 3 * kPointerSize));
6138 STATIC_ASSERT(kSmiTag == 0);
whesse@chromium.org7b260152011-06-20 15:33:18 +00006139 __ JumpIfSmi(eax, &runtime);
ricow@chromium.org65fae842010-08-25 15:26:24 +00006140 Condition is_string = masm->IsObjectStringType(eax, ebx, ebx);
6141 __ j(NegateCondition(is_string), &runtime);
6142
6143 // eax: string
6144 // ebx: instance type
6145
6146 // Calculate length of sub string using the smi values.
ricow@chromium.org65fae842010-08-25 15:26:24 +00006147 __ mov(ecx, Operand(esp, 1 * kPointerSize)); // To index.
whesse@chromium.org7b260152011-06-20 15:33:18 +00006148 __ JumpIfNotSmi(ecx, &runtime);
ricow@chromium.org65fae842010-08-25 15:26:24 +00006149 __ mov(edx, Operand(esp, 2 * kPointerSize)); // From index.
whesse@chromium.org7b260152011-06-20 15:33:18 +00006150 __ JumpIfNotSmi(edx, &runtime);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00006151 __ sub(ecx, edx);
ricow@chromium.org65fae842010-08-25 15:26:24 +00006152 __ cmp(ecx, FieldOperand(eax, String::kLengthOffset));
ricow@chromium.org64e3a4b2011-12-13 08:07:27 +00006153 Label not_original_string;
erik.corry@gmail.comed49e962012-04-17 11:57:53 +00006154 // Shorter than original string's length: an actual substring.
6155 __ j(below, &not_original_string, Label::kNear);
6156 // Longer than original string's length or negative: unsafe arguments.
6157 __ j(above, &runtime);
6158 // Return original string.
ricow@chromium.org64e3a4b2011-12-13 08:07:27 +00006159 Counters* counters = masm->isolate()->counters();
6160 __ IncrementCounter(counters->sub_string_native(), 1);
6161 __ ret(3 * kPointerSize);
6162 __ bind(&not_original_string);
ricow@chromium.org65fae842010-08-25 15:26:24 +00006163
ricow@chromium.org64e3a4b2011-12-13 08:07:27 +00006164 // eax: string
6165 // ebx: instance type
6166 // ecx: sub string length (smi)
6167 // edx: from index (smi)
6168 // Deal with different string types: update the index if necessary
6169 // and put the underlying string into edi.
6170 Label underlying_unpacked, sliced_string, seq_or_external_string;
6171 // If the string is not indirect, it can only be sequential or external.
6172 STATIC_ASSERT(kIsIndirectStringMask == (kSlicedStringTag & kConsStringTag));
6173 STATIC_ASSERT(kIsIndirectStringMask != 0);
6174 __ test(ebx, Immediate(kIsIndirectStringMask));
6175 __ j(zero, &seq_or_external_string, Label::kNear);
6176
6177 Factory* factory = masm->isolate()->factory();
6178 __ test(ebx, Immediate(kSlicedNotConsMask));
6179 __ j(not_zero, &sliced_string, Label::kNear);
6180 // Cons string. Check whether it is flat, then fetch first part.
6181 // Flat cons strings have an empty second part.
6182 __ cmp(FieldOperand(eax, ConsString::kSecondOffset),
6183 factory->empty_string());
6184 __ j(not_equal, &runtime);
6185 __ mov(edi, FieldOperand(eax, ConsString::kFirstOffset));
6186 // Update instance type.
6187 __ mov(ebx, FieldOperand(edi, HeapObject::kMapOffset));
6188 __ movzx_b(ebx, FieldOperand(ebx, Map::kInstanceTypeOffset));
6189 __ jmp(&underlying_unpacked, Label::kNear);
6190
6191 __ bind(&sliced_string);
6192 // Sliced string. Fetch parent and adjust start index by offset.
6193 __ add(edx, FieldOperand(eax, SlicedString::kOffsetOffset));
6194 __ mov(edi, FieldOperand(eax, SlicedString::kParentOffset));
6195 // Update instance type.
6196 __ mov(ebx, FieldOperand(edi, HeapObject::kMapOffset));
6197 __ movzx_b(ebx, FieldOperand(ebx, Map::kInstanceTypeOffset));
6198 __ jmp(&underlying_unpacked, Label::kNear);
6199
6200 __ bind(&seq_or_external_string);
6201 // Sequential or external string. Just move string to the expected register.
6202 __ mov(edi, eax);
6203
6204 __ bind(&underlying_unpacked);
ricow@chromium.org65fae842010-08-25 15:26:24 +00006205
yangguo@chromium.org80c42ed2011-08-31 09:03:56 +00006206 if (FLAG_string_slices) {
6207 Label copy_routine;
yangguo@chromium.org80c42ed2011-08-31 09:03:56 +00006208 // edi: underlying subject string
ricow@chromium.org7ad65222011-12-19 12:13:11 +00006209 // ebx: instance type of underlying subject string
ricow@chromium.org64e3a4b2011-12-13 08:07:27 +00006210 // edx: adjusted start index (smi)
6211 // ecx: length (smi)
6212 __ cmp(ecx, Immediate(Smi::FromInt(SlicedString::kMinLength)));
6213 // Short slice. Copy instead of slicing.
6214 __ j(less, &copy_routine);
yangguo@chromium.org80c42ed2011-08-31 09:03:56 +00006215 // Allocate new sliced string. At this point we do not reload the instance
6216 // type including the string encoding because we simply rely on the info
6217 // provided by the original string. It does not matter if the original
6218 // string's encoding is wrong because we always have to recheck encoding of
6219 // the newly created string's parent anyways due to externalized strings.
6220 Label two_byte_slice, set_slice_header;
mvstanton@chromium.orge4ac3ef2012-11-12 14:53:34 +00006221 STATIC_ASSERT((kStringEncodingMask & kOneByteStringTag) != 0);
fschneider@chromium.org1805e212011-09-05 10:49:12 +00006222 STATIC_ASSERT((kStringEncodingMask & kTwoByteStringTag) == 0);
6223 __ test(ebx, Immediate(kStringEncodingMask));
yangguo@chromium.org80c42ed2011-08-31 09:03:56 +00006224 __ j(zero, &two_byte_slice, Label::kNear);
6225 __ AllocateAsciiSlicedString(eax, ebx, no_reg, &runtime);
6226 __ jmp(&set_slice_header, Label::kNear);
6227 __ bind(&two_byte_slice);
fschneider@chromium.org1805e212011-09-05 10:49:12 +00006228 __ AllocateTwoByteSlicedString(eax, ebx, no_reg, &runtime);
yangguo@chromium.org80c42ed2011-08-31 09:03:56 +00006229 __ bind(&set_slice_header);
yangguo@chromium.org80c42ed2011-08-31 09:03:56 +00006230 __ mov(FieldOperand(eax, SlicedString::kLengthOffset), ecx);
yangguo@chromium.org80c42ed2011-08-31 09:03:56 +00006231 __ mov(FieldOperand(eax, SlicedString::kHashFieldOffset),
6232 Immediate(String::kEmptyHashField));
erik.corry@gmail.combbceb572012-03-09 10:52:05 +00006233 __ mov(FieldOperand(eax, SlicedString::kParentOffset), edi);
6234 __ mov(FieldOperand(eax, SlicedString::kOffsetOffset), edx);
ricow@chromium.org64e3a4b2011-12-13 08:07:27 +00006235 __ IncrementCounter(counters->sub_string_native(), 1);
6236 __ ret(3 * kPointerSize);
yangguo@chromium.org80c42ed2011-08-31 09:03:56 +00006237
6238 __ bind(&copy_routine);
yangguo@chromium.org80c42ed2011-08-31 09:03:56 +00006239 }
6240
ricow@chromium.org64e3a4b2011-12-13 08:07:27 +00006241 // edi: underlying subject string
ricow@chromium.org7ad65222011-12-19 12:13:11 +00006242 // ebx: instance type of underlying subject string
ricow@chromium.org64e3a4b2011-12-13 08:07:27 +00006243 // edx: adjusted start index (smi)
6244 // ecx: length (smi)
6245 // The subject string can only be external or sequential string of either
6246 // encoding at this point.
6247 Label two_byte_sequential, runtime_drop_two, sequential_string;
6248 STATIC_ASSERT(kExternalStringTag != 0);
6249 STATIC_ASSERT(kSeqStringTag == 0);
6250 __ test_b(ebx, kExternalStringTag);
6251 __ j(zero, &sequential_string);
ricow@chromium.org65fae842010-08-25 15:26:24 +00006252
ricow@chromium.org64e3a4b2011-12-13 08:07:27 +00006253 // Handle external string.
ricow@chromium.org64e3a4b2011-12-13 08:07:27 +00006254 // Rule out short external strings.
6255 STATIC_CHECK(kShortExternalStringTag != 0);
6256 __ test_b(ebx, kShortExternalStringMask);
6257 __ j(not_zero, &runtime);
6258 __ mov(edi, FieldOperand(edi, ExternalString::kResourceDataOffset));
6259 // Move the pointer so that offset-wise, it looks like a sequential string.
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00006260 STATIC_ASSERT(SeqTwoByteString::kHeaderSize == SeqOneByteString::kHeaderSize);
ricow@chromium.org64e3a4b2011-12-13 08:07:27 +00006261 __ sub(edi, Immediate(SeqTwoByteString::kHeaderSize - kHeapObjectTag));
6262
6263 __ bind(&sequential_string);
6264 // Stash away (adjusted) index and (underlying) string.
6265 __ push(edx);
6266 __ push(edi);
6267 __ SmiUntag(ecx);
mvstanton@chromium.orge4ac3ef2012-11-12 14:53:34 +00006268 STATIC_ASSERT((kOneByteStringTag & kStringEncodingMask) != 0);
ricow@chromium.org64e3a4b2011-12-13 08:07:27 +00006269 __ test_b(ebx, kStringEncodingMask);
6270 __ j(zero, &two_byte_sequential);
6271
ulan@chromium.org2efb9002012-01-19 15:36:35 +00006272 // Sequential ASCII string. Allocate the result.
ricow@chromium.org64e3a4b2011-12-13 08:07:27 +00006273 __ AllocateAsciiString(eax, ecx, ebx, edx, edi, &runtime_drop_two);
ricow@chromium.org65fae842010-08-25 15:26:24 +00006274
6275 // eax: result string
6276 // ecx: result string length
6277 __ mov(edx, esi); // esi used by following code.
6278 // Locate first character of result.
6279 __ mov(edi, eax);
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00006280 __ add(edi, Immediate(SeqOneByteString::kHeaderSize - kHeapObjectTag));
ricow@chromium.org65fae842010-08-25 15:26:24 +00006281 // Load string argument and locate character of sub string start.
ricow@chromium.org64e3a4b2011-12-13 08:07:27 +00006282 __ pop(esi);
6283 __ pop(ebx);
ricow@chromium.org65fae842010-08-25 15:26:24 +00006284 __ SmiUntag(ebx);
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00006285 __ lea(esi, FieldOperand(esi, ebx, times_1, SeqOneByteString::kHeaderSize));
ricow@chromium.org65fae842010-08-25 15:26:24 +00006286
6287 // eax: result string
6288 // ecx: result length
6289 // edx: original value of esi
6290 // edi: first character of result
6291 // esi: character of sub string start
6292 StringHelper::GenerateCopyCharactersREP(masm, edi, esi, ecx, ebx, true);
6293 __ mov(esi, edx); // Restore esi.
fschneider@chromium.org7979bbb2011-03-28 10:47:03 +00006294 __ IncrementCounter(counters->sub_string_native(), 1);
ricow@chromium.org65fae842010-08-25 15:26:24 +00006295 __ ret(3 * kPointerSize);
6296
ricow@chromium.org64e3a4b2011-12-13 08:07:27 +00006297 __ bind(&two_byte_sequential);
6298 // Sequential two-byte string. Allocate the result.
6299 __ AllocateTwoByteString(eax, ecx, ebx, edx, edi, &runtime_drop_two);
ricow@chromium.org65fae842010-08-25 15:26:24 +00006300
6301 // eax: result string
6302 // ecx: result string length
6303 __ mov(edx, esi); // esi used by following code.
6304 // Locate first character of result.
6305 __ mov(edi, eax);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00006306 __ add(edi,
ricow@chromium.org65fae842010-08-25 15:26:24 +00006307 Immediate(SeqTwoByteString::kHeaderSize - kHeapObjectTag));
6308 // Load string argument and locate character of sub string start.
ricow@chromium.org64e3a4b2011-12-13 08:07:27 +00006309 __ pop(esi);
6310 __ pop(ebx);
ricow@chromium.org65fae842010-08-25 15:26:24 +00006311 // As from is a smi it is 2 times the value which matches the size of a two
6312 // byte character.
6313 STATIC_ASSERT(kSmiTag == 0);
6314 STATIC_ASSERT(kSmiTagSize + kSmiShiftSize == 1);
ricow@chromium.org64e3a4b2011-12-13 08:07:27 +00006315 __ lea(esi, FieldOperand(esi, ebx, times_1, SeqTwoByteString::kHeaderSize));
ricow@chromium.org65fae842010-08-25 15:26:24 +00006316
6317 // eax: result string
6318 // ecx: result length
6319 // edx: original value of esi
6320 // edi: first character of result
6321 // esi: character of sub string start
6322 StringHelper::GenerateCopyCharactersREP(masm, edi, esi, ecx, ebx, false);
6323 __ mov(esi, edx); // Restore esi.
fschneider@chromium.org7979bbb2011-03-28 10:47:03 +00006324 __ IncrementCounter(counters->sub_string_native(), 1);
ricow@chromium.org65fae842010-08-25 15:26:24 +00006325 __ ret(3 * kPointerSize);
6326
ricow@chromium.org64e3a4b2011-12-13 08:07:27 +00006327 // Drop pushed values on the stack before tail call.
6328 __ bind(&runtime_drop_two);
6329 __ Drop(2);
6330
ricow@chromium.org65fae842010-08-25 15:26:24 +00006331 // Just jump to runtime to create the sub string.
6332 __ bind(&runtime);
6333 __ TailCallRuntime(Runtime::kSubString, 3, 1);
6334}
6335
6336
lrn@chromium.org1c092762011-05-09 09:42:16 +00006337void StringCompareStub::GenerateFlatAsciiStringEquals(MacroAssembler* masm,
6338 Register left,
6339 Register right,
6340 Register scratch1,
6341 Register scratch2) {
6342 Register length = scratch1;
6343
6344 // Compare lengths.
karlklose@chromium.org83a47282011-05-11 11:54:09 +00006345 Label strings_not_equal, check_zero_length;
lrn@chromium.org1c092762011-05-09 09:42:16 +00006346 __ mov(length, FieldOperand(left, String::kLengthOffset));
6347 __ cmp(length, FieldOperand(right, String::kLengthOffset));
karlklose@chromium.org83a47282011-05-11 11:54:09 +00006348 __ j(equal, &check_zero_length, Label::kNear);
lrn@chromium.org1c092762011-05-09 09:42:16 +00006349 __ bind(&strings_not_equal);
6350 __ Set(eax, Immediate(Smi::FromInt(NOT_EQUAL)));
6351 __ ret(0);
6352
6353 // Check if the length is zero.
karlklose@chromium.org83a47282011-05-11 11:54:09 +00006354 Label compare_chars;
lrn@chromium.org1c092762011-05-09 09:42:16 +00006355 __ bind(&check_zero_length);
6356 STATIC_ASSERT(kSmiTag == 0);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00006357 __ test(length, length);
karlklose@chromium.org83a47282011-05-11 11:54:09 +00006358 __ j(not_zero, &compare_chars, Label::kNear);
lrn@chromium.org1c092762011-05-09 09:42:16 +00006359 __ Set(eax, Immediate(Smi::FromInt(EQUAL)));
6360 __ ret(0);
6361
6362 // Compare characters.
6363 __ bind(&compare_chars);
6364 GenerateAsciiCharsCompareLoop(masm, left, right, length, scratch2,
karlklose@chromium.org83a47282011-05-11 11:54:09 +00006365 &strings_not_equal, Label::kNear);
lrn@chromium.org1c092762011-05-09 09:42:16 +00006366
6367 // Characters are equal.
6368 __ Set(eax, Immediate(Smi::FromInt(EQUAL)));
6369 __ ret(0);
6370}
6371
6372
ricow@chromium.org65fae842010-08-25 15:26:24 +00006373void StringCompareStub::GenerateCompareFlatAsciiStrings(MacroAssembler* masm,
6374 Register left,
6375 Register right,
6376 Register scratch1,
6377 Register scratch2,
6378 Register scratch3) {
fschneider@chromium.org7979bbb2011-03-28 10:47:03 +00006379 Counters* counters = masm->isolate()->counters();
6380 __ IncrementCounter(counters->string_compare_native(), 1);
ricow@chromium.org65fae842010-08-25 15:26:24 +00006381
6382 // Find minimum length.
karlklose@chromium.org83a47282011-05-11 11:54:09 +00006383 Label left_shorter;
ricow@chromium.org65fae842010-08-25 15:26:24 +00006384 __ mov(scratch1, FieldOperand(left, String::kLengthOffset));
6385 __ mov(scratch3, scratch1);
6386 __ sub(scratch3, FieldOperand(right, String::kLengthOffset));
6387
6388 Register length_delta = scratch3;
6389
karlklose@chromium.org83a47282011-05-11 11:54:09 +00006390 __ j(less_equal, &left_shorter, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00006391 // Right string is shorter. Change scratch1 to be length of right string.
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00006392 __ sub(scratch1, length_delta);
ricow@chromium.org65fae842010-08-25 15:26:24 +00006393 __ bind(&left_shorter);
6394
6395 Register min_length = scratch1;
6396
6397 // If either length is zero, just compare lengths.
karlklose@chromium.org83a47282011-05-11 11:54:09 +00006398 Label compare_lengths;
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00006399 __ test(min_length, min_length);
karlklose@chromium.org83a47282011-05-11 11:54:09 +00006400 __ j(zero, &compare_lengths, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00006401
lrn@chromium.org1c092762011-05-09 09:42:16 +00006402 // Compare characters.
karlklose@chromium.org83a47282011-05-11 11:54:09 +00006403 Label result_not_equal;
lrn@chromium.org1c092762011-05-09 09:42:16 +00006404 GenerateAsciiCharsCompareLoop(masm, left, right, min_length, scratch2,
karlklose@chromium.org83a47282011-05-11 11:54:09 +00006405 &result_not_equal, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00006406
6407 // Compare lengths - strings up to min-length are equal.
6408 __ bind(&compare_lengths);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00006409 __ test(length_delta, length_delta);
karlklose@chromium.org83a47282011-05-11 11:54:09 +00006410 __ j(not_zero, &result_not_equal, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00006411
6412 // Result is EQUAL.
6413 STATIC_ASSERT(EQUAL == 0);
6414 STATIC_ASSERT(kSmiTag == 0);
6415 __ Set(eax, Immediate(Smi::FromInt(EQUAL)));
6416 __ ret(0);
6417
karlklose@chromium.org83a47282011-05-11 11:54:09 +00006418 Label result_greater;
ricow@chromium.org65fae842010-08-25 15:26:24 +00006419 __ bind(&result_not_equal);
karlklose@chromium.org83a47282011-05-11 11:54:09 +00006420 __ j(greater, &result_greater, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00006421
6422 // Result is LESS.
6423 __ Set(eax, Immediate(Smi::FromInt(LESS)));
6424 __ ret(0);
6425
6426 // Result is GREATER.
6427 __ bind(&result_greater);
6428 __ Set(eax, Immediate(Smi::FromInt(GREATER)));
6429 __ ret(0);
6430}
6431
6432
lrn@chromium.org1c092762011-05-09 09:42:16 +00006433void StringCompareStub::GenerateAsciiCharsCompareLoop(
6434 MacroAssembler* masm,
6435 Register left,
6436 Register right,
6437 Register length,
6438 Register scratch,
karlklose@chromium.org83a47282011-05-11 11:54:09 +00006439 Label* chars_not_equal,
6440 Label::Distance chars_not_equal_near) {
lrn@chromium.org1c092762011-05-09 09:42:16 +00006441 // Change index to run from -length to -1 by adding length to string
6442 // start. This means that loop ends when index reaches zero, which
6443 // doesn't need an additional compare.
6444 __ SmiUntag(length);
6445 __ lea(left,
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00006446 FieldOperand(left, length, times_1, SeqOneByteString::kHeaderSize));
lrn@chromium.org1c092762011-05-09 09:42:16 +00006447 __ lea(right,
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00006448 FieldOperand(right, length, times_1, SeqOneByteString::kHeaderSize));
lrn@chromium.org1c092762011-05-09 09:42:16 +00006449 __ neg(length);
6450 Register index = length; // index = -length;
6451
6452 // Compare loop.
karlklose@chromium.org83a47282011-05-11 11:54:09 +00006453 Label loop;
lrn@chromium.org1c092762011-05-09 09:42:16 +00006454 __ bind(&loop);
6455 __ mov_b(scratch, Operand(left, index, times_1, 0));
6456 __ cmpb(scratch, Operand(right, index, times_1, 0));
karlklose@chromium.org83a47282011-05-11 11:54:09 +00006457 __ j(not_equal, chars_not_equal, chars_not_equal_near);
svenpanne@chromium.org4efbdb12012-03-12 08:18:42 +00006458 __ inc(index);
lrn@chromium.org1c092762011-05-09 09:42:16 +00006459 __ j(not_zero, &loop);
6460}
6461
6462
ricow@chromium.org65fae842010-08-25 15:26:24 +00006463void StringCompareStub::Generate(MacroAssembler* masm) {
6464 Label runtime;
6465
6466 // Stack frame on entry.
6467 // esp[0]: return address
6468 // esp[4]: right string
6469 // esp[8]: left string
6470
6471 __ mov(edx, Operand(esp, 2 * kPointerSize)); // left
6472 __ mov(eax, Operand(esp, 1 * kPointerSize)); // right
6473
karlklose@chromium.org83a47282011-05-11 11:54:09 +00006474 Label not_same;
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00006475 __ cmp(edx, eax);
karlklose@chromium.org83a47282011-05-11 11:54:09 +00006476 __ j(not_equal, &not_same, Label::kNear);
ricow@chromium.org65fae842010-08-25 15:26:24 +00006477 STATIC_ASSERT(EQUAL == 0);
6478 STATIC_ASSERT(kSmiTag == 0);
6479 __ Set(eax, Immediate(Smi::FromInt(EQUAL)));
fschneider@chromium.org7979bbb2011-03-28 10:47:03 +00006480 __ IncrementCounter(masm->isolate()->counters()->string_compare_native(), 1);
ricow@chromium.org65fae842010-08-25 15:26:24 +00006481 __ ret(2 * kPointerSize);
6482
6483 __ bind(&not_same);
6484
ulan@chromium.org2efb9002012-01-19 15:36:35 +00006485 // Check that both objects are sequential ASCII strings.
ricow@chromium.org65fae842010-08-25 15:26:24 +00006486 __ JumpIfNotBothSequentialAsciiStrings(edx, eax, ecx, ebx, &runtime);
6487
ulan@chromium.org2efb9002012-01-19 15:36:35 +00006488 // Compare flat ASCII strings.
ricow@chromium.org65fae842010-08-25 15:26:24 +00006489 // Drop arguments from the stack.
6490 __ pop(ecx);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00006491 __ add(esp, Immediate(2 * kPointerSize));
ricow@chromium.org65fae842010-08-25 15:26:24 +00006492 __ push(ecx);
6493 GenerateCompareFlatAsciiStrings(masm, edx, eax, ecx, ebx, edi);
6494
6495 // Call the runtime; it returns -1 (less), 0 (equal), or 1 (greater)
6496 // tagged as a small integer.
6497 __ bind(&runtime);
6498 __ TailCallRuntime(Runtime::kStringCompare, 2, 1);
6499}
6500
kasperl@chromium.orga5551262010-12-07 12:49:48 +00006501
kasperl@chromium.orga5551262010-12-07 12:49:48 +00006502void ICCompareStub::GenerateSmis(MacroAssembler* masm) {
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00006503 ASSERT(state_ == CompareIC::SMI);
karlklose@chromium.org83a47282011-05-11 11:54:09 +00006504 Label miss;
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00006505 __ mov(ecx, edx);
6506 __ or_(ecx, eax);
whesse@chromium.org7b260152011-06-20 15:33:18 +00006507 __ JumpIfNotSmi(ecx, &miss, Label::kNear);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00006508
6509 if (GetCondition() == equal) {
6510 // For equality we do not care about the sign of the result.
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00006511 __ sub(eax, edx);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00006512 } else {
karlklose@chromium.org83a47282011-05-11 11:54:09 +00006513 Label done;
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00006514 __ sub(edx, eax);
karlklose@chromium.org83a47282011-05-11 11:54:09 +00006515 __ j(no_overflow, &done, Label::kNear);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00006516 // Correct sign of result in case of overflow.
6517 __ not_(edx);
6518 __ bind(&done);
6519 __ mov(eax, edx);
6520 }
6521 __ ret(0);
6522
6523 __ bind(&miss);
6524 GenerateMiss(masm);
6525}
6526
6527
6528void ICCompareStub::GenerateHeapNumbers(MacroAssembler* masm) {
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00006529 ASSERT(state_ == CompareIC::HEAP_NUMBER);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00006530
karlklose@chromium.org83a47282011-05-11 11:54:09 +00006531 Label generic_stub;
ulan@chromium.org9a21ec42012-03-06 08:42:24 +00006532 Label unordered, maybe_undefined1, maybe_undefined2;
karlklose@chromium.org83a47282011-05-11 11:54:09 +00006533 Label miss;
kasperl@chromium.orga5551262010-12-07 12:49:48 +00006534
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00006535 if (left_ == CompareIC::SMI) {
6536 __ JumpIfNotSmi(edx, &miss);
6537 }
6538 if (right_ == CompareIC::SMI) {
6539 __ JumpIfNotSmi(eax, &miss);
6540 }
kasperl@chromium.orga5551262010-12-07 12:49:48 +00006541
6542 // Inlining the double comparison and falling back to the general compare
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00006543 // stub if NaN is involved or SSE2 or CMOV is unsupported.
kmillikin@chromium.orgc36ce6e2011-04-04 08:25:31 +00006544 if (CpuFeatures::IsSupported(SSE2) && CpuFeatures::IsSupported(CMOV)) {
kasperl@chromium.orga5551262010-12-07 12:49:48 +00006545 CpuFeatures::Scope scope1(SSE2);
6546 CpuFeatures::Scope scope2(CMOV);
6547
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00006548 // Load left and right operand.
6549 Label done, left, left_smi, right_smi;
6550 __ JumpIfSmi(eax, &right_smi, Label::kNear);
6551 __ cmp(FieldOperand(eax, HeapObject::kMapOffset),
6552 masm->isolate()->factory()->heap_number_map());
6553 __ j(not_equal, &maybe_undefined1, Label::kNear);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00006554 __ movdbl(xmm1, FieldOperand(eax, HeapNumber::kValueOffset));
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00006555 __ jmp(&left, Label::kNear);
6556 __ bind(&right_smi);
6557 __ mov(ecx, eax); // Can't clobber eax because we can still jump away.
6558 __ SmiUntag(ecx);
6559 __ cvtsi2sd(xmm1, ecx);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00006560
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00006561 __ bind(&left);
6562 __ JumpIfSmi(edx, &left_smi, Label::kNear);
6563 __ cmp(FieldOperand(edx, HeapObject::kMapOffset),
6564 masm->isolate()->factory()->heap_number_map());
6565 __ j(not_equal, &maybe_undefined2, Label::kNear);
6566 __ movdbl(xmm0, FieldOperand(edx, HeapNumber::kValueOffset));
6567 __ jmp(&done);
6568 __ bind(&left_smi);
6569 __ mov(ecx, edx); // Can't clobber edx because we can still jump away.
6570 __ SmiUntag(ecx);
6571 __ cvtsi2sd(xmm0, ecx);
6572
6573 __ bind(&done);
6574 // Compare operands.
kasperl@chromium.orga5551262010-12-07 12:49:48 +00006575 __ ucomisd(xmm0, xmm1);
6576
6577 // Don't base result on EFLAGS when a NaN is involved.
vegorov@chromium.org7304bca2011-05-16 12:14:13 +00006578 __ j(parity_even, &unordered, Label::kNear);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00006579
6580 // Return a result of -1, 0, or 1, based on EFLAGS.
6581 // Performing mov, because xor would destroy the flag register.
6582 __ mov(eax, 0); // equal
6583 __ mov(ecx, Immediate(Smi::FromInt(1)));
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00006584 __ cmov(above, eax, ecx);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00006585 __ mov(ecx, Immediate(Smi::FromInt(-1)));
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00006586 __ cmov(below, eax, ecx);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00006587 __ ret(0);
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00006588 } else {
6589 __ mov(ecx, edx);
6590 __ and_(ecx, eax);
6591 __ JumpIfSmi(ecx, &generic_stub, Label::kNear);
6592
6593 __ cmp(FieldOperand(eax, HeapObject::kMapOffset),
6594 masm->isolate()->factory()->heap_number_map());
6595 __ j(not_equal, &maybe_undefined1, Label::kNear);
6596 __ cmp(FieldOperand(edx, HeapObject::kMapOffset),
6597 masm->isolate()->factory()->heap_number_map());
6598 __ j(not_equal, &maybe_undefined2, Label::kNear);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00006599 }
6600
ulan@chromium.org9a21ec42012-03-06 08:42:24 +00006601 __ bind(&unordered);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00006602 __ bind(&generic_stub);
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00006603 ICCompareStub stub(op_, CompareIC::GENERIC, CompareIC::GENERIC,
6604 CompareIC::GENERIC);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00006605 __ jmp(stub.GetCode(), RelocInfo::CODE_TARGET);
6606
ulan@chromium.org9a21ec42012-03-06 08:42:24 +00006607 __ bind(&maybe_undefined1);
6608 if (Token::IsOrderedRelationalCompareOp(op_)) {
6609 __ cmp(eax, Immediate(masm->isolate()->factory()->undefined_value()));
6610 __ j(not_equal, &miss);
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00006611 __ JumpIfSmi(edx, &unordered);
ulan@chromium.org9a21ec42012-03-06 08:42:24 +00006612 __ CmpObjectType(edx, HEAP_NUMBER_TYPE, ecx);
6613 __ j(not_equal, &maybe_undefined2, Label::kNear);
6614 __ jmp(&unordered);
6615 }
6616
6617 __ bind(&maybe_undefined2);
6618 if (Token::IsOrderedRelationalCompareOp(op_)) {
6619 __ cmp(edx, Immediate(masm->isolate()->factory()->undefined_value()));
6620 __ j(equal, &unordered);
6621 }
6622
kasperl@chromium.orga5551262010-12-07 12:49:48 +00006623 __ bind(&miss);
6624 GenerateMiss(masm);
6625}
6626
6627
karlklose@chromium.org83a47282011-05-11 11:54:09 +00006628void ICCompareStub::GenerateSymbols(MacroAssembler* masm) {
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00006629 ASSERT(state_ == CompareIC::SYMBOL);
karlklose@chromium.org83a47282011-05-11 11:54:09 +00006630 ASSERT(GetCondition() == equal);
6631
6632 // Registers containing left and right operands respectively.
6633 Register left = edx;
6634 Register right = eax;
6635 Register tmp1 = ecx;
6636 Register tmp2 = ebx;
6637
6638 // Check that both operands are heap objects.
6639 Label miss;
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00006640 __ mov(tmp1, left);
karlklose@chromium.org83a47282011-05-11 11:54:09 +00006641 STATIC_ASSERT(kSmiTag == 0);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00006642 __ and_(tmp1, right);
whesse@chromium.org7b260152011-06-20 15:33:18 +00006643 __ JumpIfSmi(tmp1, &miss, Label::kNear);
karlklose@chromium.org83a47282011-05-11 11:54:09 +00006644
6645 // Check that both operands are symbols.
6646 __ mov(tmp1, FieldOperand(left, HeapObject::kMapOffset));
6647 __ mov(tmp2, FieldOperand(right, HeapObject::kMapOffset));
6648 __ movzx_b(tmp1, FieldOperand(tmp1, Map::kInstanceTypeOffset));
6649 __ movzx_b(tmp2, FieldOperand(tmp2, Map::kInstanceTypeOffset));
6650 STATIC_ASSERT(kSymbolTag != 0);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00006651 __ and_(tmp1, tmp2);
karlklose@chromium.org83a47282011-05-11 11:54:09 +00006652 __ test(tmp1, Immediate(kIsSymbolMask));
6653 __ j(zero, &miss, Label::kNear);
6654
6655 // Symbols are compared by identity.
6656 Label done;
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00006657 __ cmp(left, right);
karlklose@chromium.org83a47282011-05-11 11:54:09 +00006658 // Make sure eax is non-zero. At this point input operands are
6659 // guaranteed to be non-zero.
6660 ASSERT(right.is(eax));
6661 __ j(not_equal, &done, Label::kNear);
6662 STATIC_ASSERT(EQUAL == 0);
6663 STATIC_ASSERT(kSmiTag == 0);
6664 __ Set(eax, Immediate(Smi::FromInt(EQUAL)));
6665 __ bind(&done);
6666 __ ret(0);
6667
6668 __ bind(&miss);
6669 GenerateMiss(masm);
6670}
6671
6672
lrn@chromium.org1c092762011-05-09 09:42:16 +00006673void ICCompareStub::GenerateStrings(MacroAssembler* masm) {
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00006674 ASSERT(state_ == CompareIC::STRING);
lrn@chromium.org1c092762011-05-09 09:42:16 +00006675 Label miss;
6676
svenpanne@chromium.org4efbdb12012-03-12 08:18:42 +00006677 bool equality = Token::IsEqualityOp(op_);
6678
lrn@chromium.org1c092762011-05-09 09:42:16 +00006679 // Registers containing left and right operands respectively.
6680 Register left = edx;
6681 Register right = eax;
6682 Register tmp1 = ecx;
6683 Register tmp2 = ebx;
6684 Register tmp3 = edi;
6685
6686 // Check that both operands are heap objects.
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00006687 __ mov(tmp1, left);
lrn@chromium.org1c092762011-05-09 09:42:16 +00006688 STATIC_ASSERT(kSmiTag == 0);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00006689 __ and_(tmp1, right);
whesse@chromium.org7b260152011-06-20 15:33:18 +00006690 __ JumpIfSmi(tmp1, &miss);
lrn@chromium.org1c092762011-05-09 09:42:16 +00006691
6692 // Check that both operands are strings. This leaves the instance
6693 // types loaded in tmp1 and tmp2.
6694 __ mov(tmp1, FieldOperand(left, HeapObject::kMapOffset));
6695 __ mov(tmp2, FieldOperand(right, HeapObject::kMapOffset));
6696 __ movzx_b(tmp1, FieldOperand(tmp1, Map::kInstanceTypeOffset));
6697 __ movzx_b(tmp2, FieldOperand(tmp2, Map::kInstanceTypeOffset));
6698 __ mov(tmp3, tmp1);
6699 STATIC_ASSERT(kNotStringTag != 0);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00006700 __ or_(tmp3, tmp2);
lrn@chromium.org1c092762011-05-09 09:42:16 +00006701 __ test(tmp3, Immediate(kIsNotStringMask));
6702 __ j(not_zero, &miss);
6703
6704 // Fast check for identical strings.
karlklose@chromium.org83a47282011-05-11 11:54:09 +00006705 Label not_same;
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00006706 __ cmp(left, right);
karlklose@chromium.org83a47282011-05-11 11:54:09 +00006707 __ j(not_equal, &not_same, Label::kNear);
lrn@chromium.org1c092762011-05-09 09:42:16 +00006708 STATIC_ASSERT(EQUAL == 0);
6709 STATIC_ASSERT(kSmiTag == 0);
6710 __ Set(eax, Immediate(Smi::FromInt(EQUAL)));
6711 __ ret(0);
6712
6713 // Handle not identical strings.
6714 __ bind(&not_same);
6715
6716 // Check that both strings are symbols. If they are, we're done
svenpanne@chromium.org4efbdb12012-03-12 08:18:42 +00006717 // because we already know they are not identical. But in the case of
6718 // non-equality compare, we still need to determine the order.
6719 if (equality) {
6720 Label do_compare;
6721 STATIC_ASSERT(kSymbolTag != 0);
6722 __ and_(tmp1, tmp2);
6723 __ test(tmp1, Immediate(kIsSymbolMask));
6724 __ j(zero, &do_compare, Label::kNear);
6725 // Make sure eax is non-zero. At this point input operands are
6726 // guaranteed to be non-zero.
6727 ASSERT(right.is(eax));
6728 __ ret(0);
6729 __ bind(&do_compare);
6730 }
lrn@chromium.org1c092762011-05-09 09:42:16 +00006731
6732 // Check that both strings are sequential ASCII.
6733 Label runtime;
lrn@chromium.org1c092762011-05-09 09:42:16 +00006734 __ JumpIfNotBothSequentialAsciiStrings(left, right, tmp1, tmp2, &runtime);
6735
6736 // Compare flat ASCII strings. Returns when done.
svenpanne@chromium.org4efbdb12012-03-12 08:18:42 +00006737 if (equality) {
6738 StringCompareStub::GenerateFlatAsciiStringEquals(
6739 masm, left, right, tmp1, tmp2);
6740 } else {
6741 StringCompareStub::GenerateCompareFlatAsciiStrings(
6742 masm, left, right, tmp1, tmp2, tmp3);
6743 }
lrn@chromium.org1c092762011-05-09 09:42:16 +00006744
6745 // Handle more complex cases in runtime.
6746 __ bind(&runtime);
6747 __ pop(tmp1); // Return address.
6748 __ push(left);
6749 __ push(right);
6750 __ push(tmp1);
svenpanne@chromium.org4efbdb12012-03-12 08:18:42 +00006751 if (equality) {
6752 __ TailCallRuntime(Runtime::kStringEquals, 2, 1);
6753 } else {
6754 __ TailCallRuntime(Runtime::kStringCompare, 2, 1);
6755 }
lrn@chromium.org1c092762011-05-09 09:42:16 +00006756
6757 __ bind(&miss);
6758 GenerateMiss(masm);
6759}
6760
6761
kasperl@chromium.orga5551262010-12-07 12:49:48 +00006762void ICCompareStub::GenerateObjects(MacroAssembler* masm) {
yangguo@chromium.orgfb377212012-11-16 14:43:43 +00006763 ASSERT(state_ == CompareIC::OBJECT);
karlklose@chromium.org83a47282011-05-11 11:54:09 +00006764 Label miss;
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00006765 __ mov(ecx, edx);
6766 __ and_(ecx, eax);
whesse@chromium.org7b260152011-06-20 15:33:18 +00006767 __ JumpIfSmi(ecx, &miss, Label::kNear);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00006768
6769 __ CmpObjectType(eax, JS_OBJECT_TYPE, ecx);
vegorov@chromium.org7304bca2011-05-16 12:14:13 +00006770 __ j(not_equal, &miss, Label::kNear);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00006771 __ CmpObjectType(edx, JS_OBJECT_TYPE, ecx);
vegorov@chromium.org7304bca2011-05-16 12:14:13 +00006772 __ j(not_equal, &miss, Label::kNear);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00006773
6774 ASSERT(GetCondition() == equal);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00006775 __ sub(eax, edx);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00006776 __ ret(0);
6777
6778 __ bind(&miss);
6779 GenerateMiss(masm);
6780}
6781
6782
ricow@chromium.org64e3a4b2011-12-13 08:07:27 +00006783void ICCompareStub::GenerateKnownObjects(MacroAssembler* masm) {
6784 Label miss;
6785 __ mov(ecx, edx);
6786 __ and_(ecx, eax);
6787 __ JumpIfSmi(ecx, &miss, Label::kNear);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00006788
ricow@chromium.org64e3a4b2011-12-13 08:07:27 +00006789 __ mov(ecx, FieldOperand(eax, HeapObject::kMapOffset));
6790 __ mov(ebx, FieldOperand(edx, HeapObject::kMapOffset));
6791 __ cmp(ecx, known_map_);
6792 __ j(not_equal, &miss, Label::kNear);
6793 __ cmp(ebx, known_map_);
6794 __ j(not_equal, &miss, Label::kNear);
6795
6796 __ sub(eax, edx);
6797 __ ret(0);
6798
6799 __ bind(&miss);
6800 GenerateMiss(masm);
6801}
6802
6803
6804void ICCompareStub::GenerateMiss(MacroAssembler* masm) {
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00006805 {
6806 // Call the runtime system in a fresh internal frame.
6807 ExternalReference miss = ExternalReference(IC_Utility(IC::kCompareIC_Miss),
6808 masm->isolate());
6809 FrameScope scope(masm, StackFrame::INTERNAL);
ricow@chromium.org64e3a4b2011-12-13 08:07:27 +00006810 __ push(edx); // Preserve edx and eax.
6811 __ push(eax);
6812 __ push(edx); // And also use them as the arguments.
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00006813 __ push(eax);
6814 __ push(Immediate(Smi::FromInt(op_)));
6815 __ CallExternalReference(miss, 3);
ricow@chromium.org64e3a4b2011-12-13 08:07:27 +00006816 // Compute the entry point of the rewritten stub.
6817 __ lea(edi, FieldOperand(eax, Code::kHeaderSize));
6818 __ pop(eax);
6819 __ pop(edx);
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00006820 }
kasperl@chromium.orga5551262010-12-07 12:49:48 +00006821
kasperl@chromium.orga5551262010-12-07 12:49:48 +00006822 // Do a tail call to the rewritten stub.
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00006823 __ jmp(edi);
kasperl@chromium.orga5551262010-12-07 12:49:48 +00006824}
6825
6826
lrn@chromium.org1c092762011-05-09 09:42:16 +00006827// Helper function used to check that the dictionary doesn't contain
6828// the property. This function may return false negatives, so miss_label
6829// must always call a backup property check that is complete.
6830// This function is safe to call if the receiver has fast properties.
6831// Name must be a symbol and receiver must be a heap object.
erik.corry@gmail.com394dbcf2011-10-27 07:38:48 +00006832void StringDictionaryLookupStub::GenerateNegativeLookup(MacroAssembler* masm,
6833 Label* miss,
6834 Label* done,
6835 Register properties,
6836 Handle<String> name,
6837 Register r0) {
6838 ASSERT(name->IsSymbol());
6839
6840 // If names of slots in range from 1 to kProbes - 1 for the hash value are
6841 // not equal to the name and kProbes-th slot is not used (its name is the
6842 // undefined value), it guarantees the hash table doesn't contain the
6843 // property. It's true even if some slots represent deleted properties
ulan@chromium.org967e2702012-02-28 09:49:15 +00006844 // (their names are the hole value).
erik.corry@gmail.com394dbcf2011-10-27 07:38:48 +00006845 for (int i = 0; i < kInlinedProbes; i++) {
6846 // Compute the masked index: (hash + i + i * i) & mask.
6847 Register index = r0;
6848 // Capacity is smi 2^n.
6849 __ mov(index, FieldOperand(properties, kCapacityOffset));
6850 __ dec(index);
6851 __ and_(index,
6852 Immediate(Smi::FromInt(name->Hash() +
6853 StringDictionary::GetProbeOffset(i))));
6854
6855 // Scale the index by multiplying by the entry size.
6856 ASSERT(StringDictionary::kEntrySize == 3);
6857 __ lea(index, Operand(index, index, times_2, 0)); // index *= 3.
6858 Register entity_name = r0;
6859 // Having undefined at this place means the name is not contained.
6860 ASSERT_EQ(kSmiTagSize, 1);
6861 __ mov(entity_name, Operand(properties, index, times_half_pointer_size,
6862 kElementsStartOffset - kHeapObjectTag));
6863 __ cmp(entity_name, masm->isolate()->factory()->undefined_value());
6864 __ j(equal, done);
6865
6866 // Stop if found the property.
6867 __ cmp(entity_name, Handle<String>(name));
6868 __ j(equal, miss);
6869
ulan@chromium.org967e2702012-02-28 09:49:15 +00006870 Label the_hole;
6871 // Check for the hole and skip.
6872 __ cmp(entity_name, masm->isolate()->factory()->the_hole_value());
6873 __ j(equal, &the_hole, Label::kNear);
6874
erik.corry@gmail.com394dbcf2011-10-27 07:38:48 +00006875 // Check if the entry name is not a symbol.
6876 __ mov(entity_name, FieldOperand(entity_name, HeapObject::kMapOffset));
6877 __ test_b(FieldOperand(entity_name, Map::kInstanceTypeOffset),
6878 kIsSymbolMask);
6879 __ j(zero, miss);
ulan@chromium.org967e2702012-02-28 09:49:15 +00006880 __ bind(&the_hole);
erik.corry@gmail.com394dbcf2011-10-27 07:38:48 +00006881 }
6882
6883 StringDictionaryLookupStub stub(properties,
6884 r0,
6885 r0,
6886 StringDictionaryLookupStub::NEGATIVE_LOOKUP);
6887 __ push(Immediate(Handle<Object>(name)));
6888 __ push(Immediate(name->Hash()));
6889 __ CallStub(&stub);
6890 __ test(r0, r0);
6891 __ j(not_zero, miss);
6892 __ jmp(done);
6893}
6894
6895
lrn@chromium.org1c092762011-05-09 09:42:16 +00006896// Probe the string dictionary in the |elements| register. Jump to the
6897// |done| label if a property with the given name is found leaving the
6898// index into the dictionary in |r0|. Jump to the |miss| label
6899// otherwise.
6900void StringDictionaryLookupStub::GeneratePositiveLookup(MacroAssembler* masm,
6901 Label* miss,
6902 Label* done,
6903 Register elements,
6904 Register name,
6905 Register r0,
6906 Register r1) {
erik.corry@gmail.com6e28b562011-10-27 14:20:17 +00006907 ASSERT(!elements.is(r0));
6908 ASSERT(!elements.is(r1));
6909 ASSERT(!name.is(r0));
6910 ASSERT(!name.is(r1));
6911
svenpanne@chromium.orgc859c4f2012-10-15 11:51:39 +00006912 __ AssertString(name);
lrn@chromium.org1c092762011-05-09 09:42:16 +00006913
6914 __ mov(r1, FieldOperand(elements, kCapacityOffset));
6915 __ shr(r1, kSmiTagSize); // convert smi to int
6916 __ dec(r1);
6917
6918 // Generate an unrolled loop that performs a few probes before
6919 // giving up. Measurements done on Gmail indicate that 2 probes
6920 // cover ~93% of loads from dictionaries.
6921 for (int i = 0; i < kInlinedProbes; i++) {
6922 // Compute the masked index: (hash + i + i * i) & mask.
6923 __ mov(r0, FieldOperand(name, String::kHashFieldOffset));
6924 __ shr(r0, String::kHashShift);
6925 if (i > 0) {
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00006926 __ add(r0, Immediate(StringDictionary::GetProbeOffset(i)));
lrn@chromium.org1c092762011-05-09 09:42:16 +00006927 }
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00006928 __ and_(r0, r1);
lrn@chromium.org1c092762011-05-09 09:42:16 +00006929
6930 // Scale the index by multiplying by the entry size.
6931 ASSERT(StringDictionary::kEntrySize == 3);
6932 __ lea(r0, Operand(r0, r0, times_2, 0)); // r0 = r0 * 3
6933
6934 // Check if the key is identical to the name.
6935 __ cmp(name, Operand(elements,
6936 r0,
6937 times_4,
6938 kElementsStartOffset - kHeapObjectTag));
vegorov@chromium.org7304bca2011-05-16 12:14:13 +00006939 __ j(equal, done);
lrn@chromium.org1c092762011-05-09 09:42:16 +00006940 }
6941
6942 StringDictionaryLookupStub stub(elements,
6943 r1,
6944 r0,
6945 POSITIVE_LOOKUP);
6946 __ push(name);
6947 __ mov(r0, FieldOperand(name, String::kHashFieldOffset));
6948 __ shr(r0, String::kHashShift);
6949 __ push(r0);
6950 __ CallStub(&stub);
6951
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00006952 __ test(r1, r1);
lrn@chromium.org1c092762011-05-09 09:42:16 +00006953 __ j(zero, miss);
6954 __ jmp(done);
6955}
6956
6957
6958void StringDictionaryLookupStub::Generate(MacroAssembler* masm) {
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00006959 // This stub overrides SometimesSetsUpAFrame() to return false. That means
6960 // we cannot call anything that could cause a GC from this stub.
lrn@chromium.org1c092762011-05-09 09:42:16 +00006961 // Stack frame on entry:
6962 // esp[0 * kPointerSize]: return address.
6963 // esp[1 * kPointerSize]: key's hash.
6964 // esp[2 * kPointerSize]: key.
6965 // Registers:
6966 // dictionary_: StringDictionary to probe.
6967 // result_: used as scratch.
6968 // index_: will hold an index of entry if lookup is successful.
6969 // might alias with result_.
6970 // Returns:
6971 // result_ is zero if lookup failed, non zero otherwise.
6972
6973 Label in_dictionary, maybe_in_dictionary, not_in_dictionary;
6974
6975 Register scratch = result_;
6976
6977 __ mov(scratch, FieldOperand(dictionary_, kCapacityOffset));
6978 __ dec(scratch);
6979 __ SmiUntag(scratch);
6980 __ push(scratch);
6981
6982 // If names of slots in range from 1 to kProbes - 1 for the hash value are
6983 // not equal to the name and kProbes-th slot is not used (its name is the
6984 // undefined value), it guarantees the hash table doesn't contain the
6985 // property. It's true even if some slots represent deleted properties
6986 // (their names are the null value).
6987 for (int i = kInlinedProbes; i < kTotalProbes; i++) {
6988 // Compute the masked index: (hash + i + i * i) & mask.
6989 __ mov(scratch, Operand(esp, 2 * kPointerSize));
6990 if (i > 0) {
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00006991 __ add(scratch, Immediate(StringDictionary::GetProbeOffset(i)));
lrn@chromium.org1c092762011-05-09 09:42:16 +00006992 }
6993 __ and_(scratch, Operand(esp, 0));
6994
6995 // Scale the index by multiplying by the entry size.
6996 ASSERT(StringDictionary::kEntrySize == 3);
6997 __ lea(index_, Operand(scratch, scratch, times_2, 0)); // index *= 3.
6998
6999 // Having undefined at this place means the name is not contained.
7000 ASSERT_EQ(kSmiTagSize, 1);
7001 __ mov(scratch, Operand(dictionary_,
7002 index_,
7003 times_pointer_size,
7004 kElementsStartOffset - kHeapObjectTag));
7005 __ cmp(scratch, masm->isolate()->factory()->undefined_value());
7006 __ j(equal, &not_in_dictionary);
7007
7008 // Stop if found the property.
7009 __ cmp(scratch, Operand(esp, 3 * kPointerSize));
7010 __ j(equal, &in_dictionary);
7011
7012 if (i != kTotalProbes - 1 && mode_ == NEGATIVE_LOOKUP) {
7013 // If we hit a non symbol key during negative lookup
7014 // we have to bailout as this key might be equal to the
7015 // key we are looking for.
7016
7017 // Check if the entry name is not a symbol.
7018 __ mov(scratch, FieldOperand(scratch, HeapObject::kMapOffset));
7019 __ test_b(FieldOperand(scratch, Map::kInstanceTypeOffset),
7020 kIsSymbolMask);
7021 __ j(zero, &maybe_in_dictionary);
7022 }
7023 }
7024
7025 __ bind(&maybe_in_dictionary);
7026 // If we are doing negative lookup then probing failure should be
7027 // treated as a lookup success. For positive lookup probing failure
7028 // should be treated as lookup failure.
7029 if (mode_ == POSITIVE_LOOKUP) {
7030 __ mov(result_, Immediate(0));
7031 __ Drop(1);
7032 __ ret(2 * kPointerSize);
7033 }
7034
7035 __ bind(&in_dictionary);
7036 __ mov(result_, Immediate(1));
7037 __ Drop(1);
7038 __ ret(2 * kPointerSize);
7039
7040 __ bind(&not_in_dictionary);
7041 __ mov(result_, Immediate(0));
7042 __ Drop(1);
7043 __ ret(2 * kPointerSize);
7044}
7045
7046
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00007047struct AheadOfTimeWriteBarrierStubList {
7048 Register object, value, address;
7049 RememberedSetAction action;
7050};
7051
7052
jkummerow@chromium.org1456e702012-03-30 08:38:13 +00007053#define REG(Name) { kRegister_ ## Name ## _Code }
7054
7055static const AheadOfTimeWriteBarrierStubList kAheadOfTime[] = {
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00007056 // Used in RegExpExecStub.
jkummerow@chromium.org1456e702012-03-30 08:38:13 +00007057 { REG(ebx), REG(eax), REG(edi), EMIT_REMEMBERED_SET },
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00007058 // Used in CompileArrayPushCall.
jkummerow@chromium.org1456e702012-03-30 08:38:13 +00007059 { REG(ebx), REG(ecx), REG(edx), EMIT_REMEMBERED_SET },
7060 { REG(ebx), REG(edi), REG(edx), OMIT_REMEMBERED_SET },
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00007061 // Used in CompileStoreGlobal and CallFunctionStub.
jkummerow@chromium.org1456e702012-03-30 08:38:13 +00007062 { REG(ebx), REG(ecx), REG(edx), OMIT_REMEMBERED_SET },
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00007063 // Used in StoreStubCompiler::CompileStoreField and
7064 // KeyedStoreStubCompiler::CompileStoreField via GenerateStoreField.
jkummerow@chromium.org1456e702012-03-30 08:38:13 +00007065 { REG(edx), REG(ecx), REG(ebx), EMIT_REMEMBERED_SET },
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00007066 // GenerateStoreField calls the stub with two different permutations of
7067 // registers. This is the second.
jkummerow@chromium.org1456e702012-03-30 08:38:13 +00007068 { REG(ebx), REG(ecx), REG(edx), EMIT_REMEMBERED_SET },
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00007069 // StoreIC::GenerateNormal via GenerateDictionaryStore
jkummerow@chromium.org1456e702012-03-30 08:38:13 +00007070 { REG(ebx), REG(edi), REG(edx), EMIT_REMEMBERED_SET },
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00007071 // KeyedStoreIC::GenerateGeneric.
jkummerow@chromium.org1456e702012-03-30 08:38:13 +00007072 { REG(ebx), REG(edx), REG(ecx), EMIT_REMEMBERED_SET},
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00007073 // KeyedStoreStubCompiler::GenerateStoreFastElement.
jkummerow@chromium.org1456e702012-03-30 08:38:13 +00007074 { REG(edi), REG(ebx), REG(ecx), EMIT_REMEMBERED_SET},
7075 { REG(edx), REG(edi), REG(ebx), EMIT_REMEMBERED_SET},
svenpanne@chromium.org830d30c2012-05-29 13:20:14 +00007076 // ElementsTransitionGenerator::GenerateMapChangeElementTransition
7077 // and ElementsTransitionGenerator::GenerateSmiToDouble
erik.corry@gmail.com394dbcf2011-10-27 07:38:48 +00007078 // and ElementsTransitionGenerator::GenerateDoubleToObject
jkummerow@chromium.org1456e702012-03-30 08:38:13 +00007079 { REG(edx), REG(ebx), REG(edi), EMIT_REMEMBERED_SET},
7080 { REG(edx), REG(ebx), REG(edi), OMIT_REMEMBERED_SET},
erik.corry@gmail.com394dbcf2011-10-27 07:38:48 +00007081 // ElementsTransitionGenerator::GenerateDoubleToObject
jkummerow@chromium.org1456e702012-03-30 08:38:13 +00007082 { REG(eax), REG(edx), REG(esi), EMIT_REMEMBERED_SET},
7083 { REG(edx), REG(eax), REG(edi), EMIT_REMEMBERED_SET},
jkummerow@chromium.orgc3b37122011-11-07 10:14:12 +00007084 // StoreArrayLiteralElementStub::Generate
jkummerow@chromium.org1456e702012-03-30 08:38:13 +00007085 { REG(ebx), REG(eax), REG(ecx), EMIT_REMEMBERED_SET},
yangguo@chromium.org5a11aaf2012-06-20 11:29:00 +00007086 // FastNewClosureStub
7087 { REG(ecx), REG(edx), REG(ebx), EMIT_REMEMBERED_SET},
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00007088 // Null termination.
jkummerow@chromium.org1456e702012-03-30 08:38:13 +00007089 { REG(no_reg), REG(no_reg), REG(no_reg), EMIT_REMEMBERED_SET}
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00007090};
7091
jkummerow@chromium.org1456e702012-03-30 08:38:13 +00007092#undef REG
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00007093
7094bool RecordWriteStub::IsPregenerated() {
jkummerow@chromium.org1456e702012-03-30 08:38:13 +00007095 for (const AheadOfTimeWriteBarrierStubList* entry = kAheadOfTime;
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00007096 !entry->object.is(no_reg);
7097 entry++) {
7098 if (object_.is(entry->object) &&
7099 value_.is(entry->value) &&
7100 address_.is(entry->address) &&
7101 remembered_set_action_ == entry->action &&
7102 save_fp_regs_mode_ == kDontSaveFPRegs) {
7103 return true;
7104 }
7105 }
7106 return false;
7107}
7108
7109
7110void StoreBufferOverflowStub::GenerateFixedRegStubsAheadOfTime() {
7111 StoreBufferOverflowStub stub1(kDontSaveFPRegs);
7112 stub1.GetCode()->set_is_pregenerated(true);
7113
7114 CpuFeatures::TryForceFeatureScope scope(SSE2);
7115 if (CpuFeatures::IsSupported(SSE2)) {
7116 StoreBufferOverflowStub stub2(kSaveFPRegs);
7117 stub2.GetCode()->set_is_pregenerated(true);
7118 }
7119}
7120
7121
7122void RecordWriteStub::GenerateFixedRegStubsAheadOfTime() {
jkummerow@chromium.org1456e702012-03-30 08:38:13 +00007123 for (const AheadOfTimeWriteBarrierStubList* entry = kAheadOfTime;
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00007124 !entry->object.is(no_reg);
7125 entry++) {
7126 RecordWriteStub stub(entry->object,
7127 entry->value,
7128 entry->address,
7129 entry->action,
7130 kDontSaveFPRegs);
7131 stub.GetCode()->set_is_pregenerated(true);
7132 }
7133}
7134
7135
verwaest@chromium.org33e09c82012-10-10 17:07:22 +00007136bool CodeStub::CanUseFPRegisters() {
7137 return CpuFeatures::IsSupported(SSE2);
7138}
7139
7140
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00007141// Takes the input in 3 registers: address_ value_ and object_. A pointer to
7142// the value has just been written into the object, now this stub makes sure
7143// we keep the GC informed. The word in the object where the value has been
7144// written is in the address register.
7145void RecordWriteStub::Generate(MacroAssembler* masm) {
7146 Label skip_to_incremental_noncompacting;
7147 Label skip_to_incremental_compacting;
7148
7149 // The first two instructions are generated with labels so as to get the
7150 // offset fixed up correctly by the bind(Label*) call. We patch it back and
7151 // forth between a compare instructions (a nop in this position) and the
7152 // real branch when we start and stop incremental heap marking.
7153 __ jmp(&skip_to_incremental_noncompacting, Label::kNear);
7154 __ jmp(&skip_to_incremental_compacting, Label::kFar);
7155
7156 if (remembered_set_action_ == EMIT_REMEMBERED_SET) {
7157 __ RememberedSetHelper(object_,
7158 address_,
7159 value_,
7160 save_fp_regs_mode_,
7161 MacroAssembler::kReturnAtEnd);
7162 } else {
7163 __ ret(0);
7164 }
7165
7166 __ bind(&skip_to_incremental_noncompacting);
7167 GenerateIncremental(masm, INCREMENTAL);
7168
7169 __ bind(&skip_to_incremental_compacting);
7170 GenerateIncremental(masm, INCREMENTAL_COMPACTION);
7171
7172 // Initial mode of the stub is expected to be STORE_BUFFER_ONLY.
7173 // Will be checked in IncrementalMarking::ActivateGeneratedStub.
7174 masm->set_byte_at(0, kTwoByteNopInstruction);
7175 masm->set_byte_at(2, kFiveByteNopInstruction);
7176}
7177
7178
7179void RecordWriteStub::GenerateIncremental(MacroAssembler* masm, Mode mode) {
7180 regs_.Save(masm);
7181
7182 if (remembered_set_action_ == EMIT_REMEMBERED_SET) {
7183 Label dont_need_remembered_set;
7184
7185 __ mov(regs_.scratch0(), Operand(regs_.address(), 0));
7186 __ JumpIfNotInNewSpace(regs_.scratch0(), // Value.
7187 regs_.scratch0(),
7188 &dont_need_remembered_set);
7189
7190 __ CheckPageFlag(regs_.object(),
7191 regs_.scratch0(),
7192 1 << MemoryChunk::SCAN_ON_SCAVENGE,
7193 not_zero,
7194 &dont_need_remembered_set);
7195
7196 // First notify the incremental marker if necessary, then update the
7197 // remembered set.
7198 CheckNeedsToInformIncrementalMarker(
7199 masm,
7200 kUpdateRememberedSetOnNoNeedToInformIncrementalMarker,
7201 mode);
7202 InformIncrementalMarker(masm, mode);
7203 regs_.Restore(masm);
7204 __ RememberedSetHelper(object_,
7205 address_,
7206 value_,
7207 save_fp_regs_mode_,
7208 MacroAssembler::kReturnAtEnd);
7209
7210 __ bind(&dont_need_remembered_set);
7211 }
7212
7213 CheckNeedsToInformIncrementalMarker(
7214 masm,
7215 kReturnOnNoNeedToInformIncrementalMarker,
7216 mode);
7217 InformIncrementalMarker(masm, mode);
7218 regs_.Restore(masm);
7219 __ ret(0);
7220}
7221
7222
7223void RecordWriteStub::InformIncrementalMarker(MacroAssembler* masm, Mode mode) {
7224 regs_.SaveCallerSaveRegisters(masm, save_fp_regs_mode_);
7225 int argument_count = 3;
7226 __ PrepareCallCFunction(argument_count, regs_.scratch0());
7227 __ mov(Operand(esp, 0 * kPointerSize), regs_.object());
ulan@chromium.org8e8d8822012-11-23 14:36:46 +00007228 __ mov(Operand(esp, 1 * kPointerSize), regs_.address()); // Slot.
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00007229 __ mov(Operand(esp, 2 * kPointerSize),
7230 Immediate(ExternalReference::isolate_address()));
7231
7232 AllowExternalCallThatCantCauseGC scope(masm);
7233 if (mode == INCREMENTAL_COMPACTION) {
7234 __ CallCFunction(
7235 ExternalReference::incremental_evacuation_record_write_function(
7236 masm->isolate()),
7237 argument_count);
7238 } else {
7239 ASSERT(mode == INCREMENTAL);
7240 __ CallCFunction(
7241 ExternalReference::incremental_marking_record_write_function(
7242 masm->isolate()),
7243 argument_count);
7244 }
7245 regs_.RestoreCallerSaveRegisters(masm, save_fp_regs_mode_);
7246}
7247
7248
7249void RecordWriteStub::CheckNeedsToInformIncrementalMarker(
7250 MacroAssembler* masm,
7251 OnNoNeedToInformIncrementalMarker on_no_need,
7252 Mode mode) {
7253 Label object_is_black, need_incremental, need_incremental_pop_object;
7254
verwaest@chromium.org33e09c82012-10-10 17:07:22 +00007255 __ mov(regs_.scratch0(), Immediate(~Page::kPageAlignmentMask));
7256 __ and_(regs_.scratch0(), regs_.object());
7257 __ mov(regs_.scratch1(),
7258 Operand(regs_.scratch0(),
7259 MemoryChunk::kWriteBarrierCounterOffset));
7260 __ sub(regs_.scratch1(), Immediate(1));
7261 __ mov(Operand(regs_.scratch0(),
7262 MemoryChunk::kWriteBarrierCounterOffset),
7263 regs_.scratch1());
7264 __ j(negative, &need_incremental);
7265
erik.corry@gmail.comc3b670f2011-10-05 21:44:48 +00007266 // Let's look at the color of the object: If it is not black we don't have
7267 // to inform the incremental marker.
7268 __ JumpIfBlack(regs_.object(),
7269 regs_.scratch0(),
7270 regs_.scratch1(),
7271 &object_is_black,
7272 Label::kNear);
7273
7274 regs_.Restore(masm);
7275 if (on_no_need == kUpdateRememberedSetOnNoNeedToInformIncrementalMarker) {
7276 __ RememberedSetHelper(object_,
7277 address_,
7278 value_,
7279 save_fp_regs_mode_,
7280 MacroAssembler::kReturnAtEnd);
7281 } else {
7282 __ ret(0);
7283 }
7284
7285 __ bind(&object_is_black);
7286
7287 // Get the value from the slot.
7288 __ mov(regs_.scratch0(), Operand(regs_.address(), 0));
7289
7290 if (mode == INCREMENTAL_COMPACTION) {
7291 Label ensure_not_white;
7292
7293 __ CheckPageFlag(regs_.scratch0(), // Contains value.
7294 regs_.scratch1(), // Scratch.
7295 MemoryChunk::kEvacuationCandidateMask,
7296 zero,
7297 &ensure_not_white,
7298 Label::kNear);
7299
7300 __ CheckPageFlag(regs_.object(),
7301 regs_.scratch1(), // Scratch.
7302 MemoryChunk::kSkipEvacuationSlotsRecordingMask,
7303 not_zero,
7304 &ensure_not_white,
7305 Label::kNear);
7306
7307 __ jmp(&need_incremental);
7308
7309 __ bind(&ensure_not_white);
7310 }
7311
7312 // We need an extra register for this, so we push the object register
7313 // temporarily.
7314 __ push(regs_.object());
7315 __ EnsureNotWhite(regs_.scratch0(), // The value.
7316 regs_.scratch1(), // Scratch.
7317 regs_.object(), // Scratch.
7318 &need_incremental_pop_object,
7319 Label::kNear);
7320 __ pop(regs_.object());
7321
7322 regs_.Restore(masm);
7323 if (on_no_need == kUpdateRememberedSetOnNoNeedToInformIncrementalMarker) {
7324 __ RememberedSetHelper(object_,
7325 address_,
7326 value_,
7327 save_fp_regs_mode_,
7328 MacroAssembler::kReturnAtEnd);
7329 } else {
7330 __ ret(0);
7331 }
7332
7333 __ bind(&need_incremental_pop_object);
7334 __ pop(regs_.object());
7335
7336 __ bind(&need_incremental);
7337
7338 // Fall through when we need to inform the incremental marker.
7339}
7340
jkummerow@chromium.orgc3b37122011-11-07 10:14:12 +00007341
7342void StoreArrayLiteralElementStub::Generate(MacroAssembler* masm) {
7343 // ----------- S t a t e -------------
7344 // -- eax : element value to store
7345 // -- ebx : array literal
7346 // -- edi : map of array literal
7347 // -- ecx : element index as smi
7348 // -- edx : array literal index in function
7349 // -- esp[0] : return address
7350 // -----------------------------------
7351
7352 Label element_done;
7353 Label double_elements;
7354 Label smi_element;
7355 Label slow_elements;
7356 Label slow_elements_from_double;
7357 Label fast_elements;
7358
jkummerow@chromium.org04e4f1e2011-11-14 13:36:17 +00007359 __ CheckFastElements(edi, &double_elements);
jkummerow@chromium.orgc3b37122011-11-07 10:14:12 +00007360
svenpanne@chromium.org830d30c2012-05-29 13:20:14 +00007361 // Check for FAST_*_SMI_ELEMENTS or FAST_*_ELEMENTS elements
jkummerow@chromium.org04e4f1e2011-11-14 13:36:17 +00007362 __ JumpIfSmi(eax, &smi_element);
svenpanne@chromium.org830d30c2012-05-29 13:20:14 +00007363 __ CheckFastSmiElements(edi, &fast_elements, Label::kNear);
jkummerow@chromium.orgc3b37122011-11-07 10:14:12 +00007364
jkummerow@chromium.org04e4f1e2011-11-14 13:36:17 +00007365 // Store into the array literal requires a elements transition. Call into
7366 // the runtime.
jkummerow@chromium.orgc3b37122011-11-07 10:14:12 +00007367
7368 __ bind(&slow_elements);
7369 __ pop(edi); // Pop return address and remember to put back later for tail
7370 // call.
7371 __ push(ebx);
7372 __ push(ecx);
7373 __ push(eax);
7374 __ mov(ebx, Operand(ebp, JavaScriptFrameConstants::kFunctionOffset));
7375 __ push(FieldOperand(ebx, JSFunction::kLiteralsOffset));
7376 __ push(edx);
7377 __ push(edi); // Return return address so that tail call returns to right
7378 // place.
7379 __ TailCallRuntime(Runtime::kStoreArrayLiteralElement, 5, 1);
7380
jkummerow@chromium.org04e4f1e2011-11-14 13:36:17 +00007381 __ bind(&slow_elements_from_double);
7382 __ pop(edx);
7383 __ jmp(&slow_elements);
jkummerow@chromium.orgc3b37122011-11-07 10:14:12 +00007384
svenpanne@chromium.org830d30c2012-05-29 13:20:14 +00007385 // Array literal has ElementsKind of FAST_*_ELEMENTS and value is an object.
jkummerow@chromium.org04e4f1e2011-11-14 13:36:17 +00007386 __ bind(&fast_elements);
7387 __ mov(ebx, FieldOperand(ebx, JSObject::kElementsOffset));
7388 __ lea(ecx, FieldOperand(ebx, ecx, times_half_pointer_size,
7389 FixedArrayBase::kHeaderSize));
7390 __ mov(Operand(ecx, 0), eax);
7391 // Update the write barrier for the array store.
7392 __ RecordWrite(ebx, ecx, eax,
7393 kDontSaveFPRegs,
7394 EMIT_REMEMBERED_SET,
7395 OMIT_SMI_CHECK);
7396 __ ret(0);
jkummerow@chromium.orgc3b37122011-11-07 10:14:12 +00007397
svenpanne@chromium.org830d30c2012-05-29 13:20:14 +00007398 // Array literal has ElementsKind of FAST_*_SMI_ELEMENTS or FAST_*_ELEMENTS,
7399 // and value is Smi.
jkummerow@chromium.org04e4f1e2011-11-14 13:36:17 +00007400 __ bind(&smi_element);
7401 __ mov(ebx, FieldOperand(ebx, JSObject::kElementsOffset));
7402 __ mov(FieldOperand(ebx, ecx, times_half_pointer_size,
7403 FixedArrayBase::kHeaderSize), eax);
7404 __ ret(0);
jkummerow@chromium.orgc3b37122011-11-07 10:14:12 +00007405
svenpanne@chromium.org830d30c2012-05-29 13:20:14 +00007406 // Array literal has ElementsKind of FAST_*_DOUBLE_ELEMENTS.
jkummerow@chromium.org04e4f1e2011-11-14 13:36:17 +00007407 __ bind(&double_elements);
jkummerow@chromium.orgc3b37122011-11-07 10:14:12 +00007408
jkummerow@chromium.org04e4f1e2011-11-14 13:36:17 +00007409 __ push(edx);
7410 __ mov(edx, FieldOperand(ebx, JSObject::kElementsOffset));
7411 __ StoreNumberToDoubleElements(eax,
7412 edx,
7413 ecx,
7414 edi,
7415 xmm0,
7416 &slow_elements_from_double,
7417 false);
7418 __ pop(edx);
7419 __ ret(0);
jkummerow@chromium.orgc3b37122011-11-07 10:14:12 +00007420}
7421
verwaest@chromium.org753aee42012-07-17 16:15:42 +00007422
7423void ProfileEntryHookStub::MaybeCallEntryHook(MacroAssembler* masm) {
7424 if (entry_hook_ != NULL) {
7425 ProfileEntryHookStub stub;
7426 masm->CallStub(&stub);
7427 }
7428}
7429
7430
7431void ProfileEntryHookStub::Generate(MacroAssembler* masm) {
7432 // Ecx is the only volatile register we must save.
7433 __ push(ecx);
7434
7435 // Calculate and push the original stack pointer.
7436 __ lea(eax, Operand(esp, kPointerSize));
7437 __ push(eax);
7438
7439 // Calculate and push the function address.
7440 __ mov(eax, Operand(eax, 0));
7441 __ sub(eax, Immediate(Assembler::kCallInstructionLength));
7442 __ push(eax);
7443
7444 // Call the entry hook.
7445 int32_t hook_location = reinterpret_cast<int32_t>(&entry_hook_);
7446 __ call(Operand(hook_location, RelocInfo::NONE));
7447 __ add(esp, Immediate(2 * kPointerSize));
7448
7449 // Restore ecx.
7450 __ pop(ecx);
7451 __ ret(0);
7452}
7453
ricow@chromium.org65fae842010-08-25 15:26:24 +00007454#undef __
7455
7456} } // namespace v8::internal
7457
7458#endif // V8_TARGET_ARCH_IA32