OLD | NEW |
1 // Copyright 2012 the V8 project authors. All rights reserved. | 1 // Copyright 2012 the V8 project authors. All rights reserved. |
2 // Use of this source code is governed by a BSD-style license that can be | 2 // Use of this source code is governed by a BSD-style license that can be |
3 // found in the LICENSE file. | 3 // found in the LICENSE file. |
4 | 4 |
5 #if V8_TARGET_ARCH_ARM | 5 #if V8_TARGET_ARCH_ARM |
6 | 6 |
7 #include "src/codegen.h" | 7 #include "src/codegen.h" |
8 #include "src/debug/debug.h" | 8 #include "src/debug/debug.h" |
9 #include "src/deoptimizer.h" | 9 #include "src/deoptimizer.h" |
10 #include "src/full-codegen/full-codegen.h" | 10 #include "src/full-codegen/full-codegen.h" |
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1249 __ CallRuntime(Runtime::kStackGuard, 0); | 1249 __ CallRuntime(Runtime::kStackGuard, 0); |
1250 } | 1250 } |
1251 __ Jump(masm->isolate()->builtins()->OnStackReplacement(), | 1251 __ Jump(masm->isolate()->builtins()->OnStackReplacement(), |
1252 RelocInfo::CODE_TARGET); | 1252 RelocInfo::CODE_TARGET); |
1253 | 1253 |
1254 __ bind(&ok); | 1254 __ bind(&ok); |
1255 __ Ret(); | 1255 __ Ret(); |
1256 } | 1256 } |
1257 | 1257 |
1258 | 1258 |
| 1259 // static |
1259 void Builtins::Generate_FunctionCall(MacroAssembler* masm) { | 1260 void Builtins::Generate_FunctionCall(MacroAssembler* masm) { |
1260 // 1. Make sure we have at least one argument. | 1261 // 1. Make sure we have at least one argument. |
1261 // r0: actual number of arguments | 1262 // r0: actual number of arguments |
1262 { Label done; | 1263 { |
| 1264 Label done; |
1263 __ cmp(r0, Operand::Zero()); | 1265 __ cmp(r0, Operand::Zero()); |
1264 __ b(ne, &done); | 1266 __ b(ne, &done); |
1265 __ LoadRoot(r2, Heap::kUndefinedValueRootIndex); | 1267 __ PushRoot(Heap::kUndefinedValueRootIndex); |
1266 __ push(r2); | |
1267 __ add(r0, r0, Operand(1)); | 1268 __ add(r0, r0, Operand(1)); |
1268 __ bind(&done); | 1269 __ bind(&done); |
1269 } | 1270 } |
1270 | 1271 |
1271 // 2. Get the function to call (passed as receiver) from the stack, check | 1272 // 2. Get the callable to call (passed as receiver) from the stack. |
1272 // if it is a function. | |
1273 // r0: actual number of arguments | 1273 // r0: actual number of arguments |
1274 Label slow, non_function; | |
1275 __ ldr(r1, MemOperand(sp, r0, LSL, kPointerSizeLog2)); | 1274 __ ldr(r1, MemOperand(sp, r0, LSL, kPointerSizeLog2)); |
1276 __ JumpIfSmi(r1, &non_function); | |
1277 __ CompareObjectType(r1, r2, r2, JS_FUNCTION_TYPE); | |
1278 __ b(ne, &slow); | |
1279 | 1275 |
1280 // 3a. Patch the first argument if necessary when calling a function. | 1276 // 3. Shift arguments and return address one slot down on the stack |
1281 // r0: actual number of arguments | |
1282 // r1: function | |
1283 Label shift_arguments; | |
1284 __ mov(r4, Operand::Zero()); // indicate regular JS_FUNCTION | |
1285 { Label convert_to_object, use_global_proxy, patch_receiver; | |
1286 // Change context eagerly in case we need the global receiver. | |
1287 __ ldr(cp, FieldMemOperand(r1, JSFunction::kContextOffset)); | |
1288 | |
1289 // Do not transform the receiver for strict mode functions. | |
1290 __ ldr(r2, FieldMemOperand(r1, JSFunction::kSharedFunctionInfoOffset)); | |
1291 __ ldr(r3, FieldMemOperand(r2, SharedFunctionInfo::kCompilerHintsOffset)); | |
1292 __ tst(r3, Operand(1 << (SharedFunctionInfo::kStrictModeFunction + | |
1293 kSmiTagSize))); | |
1294 __ b(ne, &shift_arguments); | |
1295 | |
1296 // Do not transform the receiver for native (Compilerhints already in r3). | |
1297 __ tst(r3, Operand(1 << (SharedFunctionInfo::kNative + kSmiTagSize))); | |
1298 __ b(ne, &shift_arguments); | |
1299 | |
1300 // Compute the receiver in sloppy mode. | |
1301 __ add(r2, sp, Operand(r0, LSL, kPointerSizeLog2)); | |
1302 __ ldr(r2, MemOperand(r2, -kPointerSize)); | |
1303 // r0: actual number of arguments | |
1304 // r1: function | |
1305 // r2: first argument | |
1306 __ JumpIfSmi(r2, &convert_to_object); | |
1307 | |
1308 __ LoadRoot(r3, Heap::kUndefinedValueRootIndex); | |
1309 __ cmp(r2, r3); | |
1310 __ b(eq, &use_global_proxy); | |
1311 __ LoadRoot(r3, Heap::kNullValueRootIndex); | |
1312 __ cmp(r2, r3); | |
1313 __ b(eq, &use_global_proxy); | |
1314 | |
1315 STATIC_ASSERT(LAST_SPEC_OBJECT_TYPE == LAST_TYPE); | |
1316 __ CompareObjectType(r2, r3, r3, FIRST_SPEC_OBJECT_TYPE); | |
1317 __ b(ge, &shift_arguments); | |
1318 | |
1319 __ bind(&convert_to_object); | |
1320 | |
1321 { | |
1322 // Enter an internal frame in order to preserve argument count. | |
1323 FrameAndConstantPoolScope scope(masm, StackFrame::INTERNAL); | |
1324 __ SmiTag(r0); | |
1325 __ push(r0); | |
1326 | |
1327 __ mov(r0, r2); | |
1328 ToObjectStub stub(masm->isolate()); | |
1329 __ CallStub(&stub); | |
1330 __ mov(r2, r0); | |
1331 | |
1332 __ pop(r0); | |
1333 __ SmiUntag(r0); | |
1334 | |
1335 // Exit the internal frame. | |
1336 } | |
1337 | |
1338 // Restore the function to r1, and the flag to r4. | |
1339 __ ldr(r1, MemOperand(sp, r0, LSL, kPointerSizeLog2)); | |
1340 __ mov(r4, Operand::Zero()); | |
1341 __ jmp(&patch_receiver); | |
1342 | |
1343 __ bind(&use_global_proxy); | |
1344 __ ldr(r2, ContextOperand(cp, Context::GLOBAL_OBJECT_INDEX)); | |
1345 __ ldr(r2, FieldMemOperand(r2, GlobalObject::kGlobalProxyOffset)); | |
1346 | |
1347 __ bind(&patch_receiver); | |
1348 __ add(r3, sp, Operand(r0, LSL, kPointerSizeLog2)); | |
1349 __ str(r2, MemOperand(r3, -kPointerSize)); | |
1350 | |
1351 __ jmp(&shift_arguments); | |
1352 } | |
1353 | |
1354 // 3b. Check for function proxy. | |
1355 __ bind(&slow); | |
1356 __ mov(r4, Operand(1, RelocInfo::NONE32)); // indicate function proxy | |
1357 __ cmp(r2, Operand(JS_FUNCTION_PROXY_TYPE)); | |
1358 __ b(eq, &shift_arguments); | |
1359 __ bind(&non_function); | |
1360 __ mov(r4, Operand(2, RelocInfo::NONE32)); // indicate non-function | |
1361 | |
1362 // 3c. Patch the first argument when calling a non-function. The | |
1363 // CALL_NON_FUNCTION builtin expects the non-function callee as | |
1364 // receiver, so overwrite the first argument which will ultimately | |
1365 // become the receiver. | |
1366 // r0: actual number of arguments | |
1367 // r1: function | |
1368 // r4: call type (0: JS function, 1: function proxy, 2: non-function) | |
1369 __ add(r2, sp, Operand(r0, LSL, kPointerSizeLog2)); | |
1370 __ str(r1, MemOperand(r2, -kPointerSize)); | |
1371 | |
1372 // 4. Shift arguments and return address one slot down on the stack | |
1373 // (overwriting the original receiver). Adjust argument count to make | 1277 // (overwriting the original receiver). Adjust argument count to make |
1374 // the original first argument the new receiver. | 1278 // the original first argument the new receiver. |
1375 // r0: actual number of arguments | 1279 // r0: actual number of arguments |
1376 // r1: function | 1280 // r1: callable |
1377 // r4: call type (0: JS function, 1: function proxy, 2: non-function) | 1281 { |
1378 __ bind(&shift_arguments); | 1282 Label loop; |
1379 { Label loop; | |
1380 // Calculate the copy start address (destination). Copy end address is sp. | 1283 // Calculate the copy start address (destination). Copy end address is sp. |
1381 __ add(r2, sp, Operand(r0, LSL, kPointerSizeLog2)); | 1284 __ add(r2, sp, Operand(r0, LSL, kPointerSizeLog2)); |
1382 | 1285 |
1383 __ bind(&loop); | 1286 __ bind(&loop); |
1384 __ ldr(ip, MemOperand(r2, -kPointerSize)); | 1287 __ ldr(ip, MemOperand(r2, -kPointerSize)); |
1385 __ str(ip, MemOperand(r2)); | 1288 __ str(ip, MemOperand(r2)); |
1386 __ sub(r2, r2, Operand(kPointerSize)); | 1289 __ sub(r2, r2, Operand(kPointerSize)); |
1387 __ cmp(r2, sp); | 1290 __ cmp(r2, sp); |
1388 __ b(ne, &loop); | 1291 __ b(ne, &loop); |
1389 // Adjust the actual number of arguments and remove the top element | 1292 // Adjust the actual number of arguments and remove the top element |
1390 // (which is a copy of the last argument). | 1293 // (which is a copy of the last argument). |
1391 __ sub(r0, r0, Operand(1)); | 1294 __ sub(r0, r0, Operand(1)); |
1392 __ pop(); | 1295 __ pop(); |
1393 } | 1296 } |
1394 | 1297 |
1395 // 5a. Call non-function via tail call to CALL_NON_FUNCTION builtin, | 1298 // 4. Call the callable. |
1396 // or a function proxy via CALL_FUNCTION_PROXY. | 1299 __ Jump(masm->isolate()->builtins()->Call(), RelocInfo::CODE_TARGET); |
1397 // r0: actual number of arguments | |
1398 // r1: function | |
1399 // r4: call type (0: JS function, 1: function proxy, 2: non-function) | |
1400 { Label function, non_proxy; | |
1401 __ tst(r4, r4); | |
1402 __ b(eq, &function); | |
1403 // Expected number of arguments is 0 for CALL_NON_FUNCTION. | |
1404 __ mov(r2, Operand::Zero()); | |
1405 __ cmp(r4, Operand(1)); | |
1406 __ b(ne, &non_proxy); | |
1407 | |
1408 __ push(r1); // re-add proxy object as additional argument | |
1409 __ add(r0, r0, Operand(1)); | |
1410 __ GetBuiltinFunction(r1, Context::CALL_FUNCTION_PROXY_BUILTIN_INDEX); | |
1411 __ Jump(masm->isolate()->builtins()->ArgumentsAdaptorTrampoline(), | |
1412 RelocInfo::CODE_TARGET); | |
1413 | |
1414 __ bind(&non_proxy); | |
1415 __ GetBuiltinFunction(r1, Context::CALL_NON_FUNCTION_BUILTIN_INDEX); | |
1416 __ Jump(masm->isolate()->builtins()->ArgumentsAdaptorTrampoline(), | |
1417 RelocInfo::CODE_TARGET); | |
1418 __ bind(&function); | |
1419 } | |
1420 | |
1421 // 5b. Get the code to call from the function and check that the number of | |
1422 // expected arguments matches what we're providing. If so, jump | |
1423 // (tail-call) to the code in register edx without checking arguments. | |
1424 // r0: actual number of arguments | |
1425 // r1: function | |
1426 __ ldr(r3, FieldMemOperand(r1, JSFunction::kSharedFunctionInfoOffset)); | |
1427 __ ldr(r2, | |
1428 FieldMemOperand(r3, SharedFunctionInfo::kFormalParameterCountOffset)); | |
1429 __ SmiUntag(r2); | |
1430 __ cmp(r2, r0); // Check formal and actual parameter counts. | |
1431 __ Jump(masm->isolate()->builtins()->ArgumentsAdaptorTrampoline(), | |
1432 RelocInfo::CODE_TARGET, | |
1433 ne); | |
1434 | |
1435 __ ldr(r3, FieldMemOperand(r1, JSFunction::kCodeEntryOffset)); | |
1436 ParameterCount expected(0); | |
1437 __ InvokeCode(r3, expected, expected, JUMP_FUNCTION, NullCallWrapper()); | |
1438 } | 1300 } |
1439 | 1301 |
1440 | 1302 |
1441 static void Generate_PushAppliedArguments(MacroAssembler* masm, | 1303 static void Generate_PushAppliedArguments(MacroAssembler* masm, |
1442 const int argumentsOffset, | 1304 const int argumentsOffset, |
1443 const int indexOffset, | 1305 const int indexOffset, |
1444 const int limitOffset) { | 1306 const int limitOffset) { |
1445 Label entry, loop; | 1307 Label entry, loop; |
1446 Register receiver = LoadDescriptor::ReceiverRegister(); | 1308 Register receiver = LoadDescriptor::ReceiverRegister(); |
1447 Register key = LoadDescriptor::NameRegister(); | 1309 Register key = LoadDescriptor::NameRegister(); |
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1492 const int kFormalParameters = targetIsArgument ? 3 : 2; | 1354 const int kFormalParameters = targetIsArgument ? 3 : 2; |
1493 const int kStackSize = kFormalParameters + 1; | 1355 const int kStackSize = kFormalParameters + 1; |
1494 | 1356 |
1495 { | 1357 { |
1496 FrameAndConstantPoolScope frame_scope(masm, StackFrame::INTERNAL); | 1358 FrameAndConstantPoolScope frame_scope(masm, StackFrame::INTERNAL); |
1497 const int kArgumentsOffset = kFPOnStackSize + kPCOnStackSize; | 1359 const int kArgumentsOffset = kFPOnStackSize + kPCOnStackSize; |
1498 const int kReceiverOffset = kArgumentsOffset + kPointerSize; | 1360 const int kReceiverOffset = kArgumentsOffset + kPointerSize; |
1499 const int kFunctionOffset = kReceiverOffset + kPointerSize; | 1361 const int kFunctionOffset = kReceiverOffset + kPointerSize; |
1500 | 1362 |
1501 __ ldr(r0, MemOperand(fp, kFunctionOffset)); // get the function | 1363 __ ldr(r0, MemOperand(fp, kFunctionOffset)); // get the function |
1502 __ push(r0); | 1364 __ ldr(r1, MemOperand(fp, kArgumentsOffset)); // get the args array |
1503 __ ldr(r0, MemOperand(fp, kArgumentsOffset)); // get the args array | 1365 __ Push(r0, r1); |
1504 __ push(r0); | |
1505 if (targetIsArgument) { | 1366 if (targetIsArgument) { |
1506 __ InvokeBuiltin(Context::REFLECT_APPLY_PREPARE_BUILTIN_INDEX, | 1367 __ InvokeBuiltin(Context::REFLECT_APPLY_PREPARE_BUILTIN_INDEX, |
1507 CALL_FUNCTION); | 1368 CALL_FUNCTION); |
1508 } else { | 1369 } else { |
1509 __ InvokeBuiltin(Context::APPLY_PREPARE_BUILTIN_INDEX, CALL_FUNCTION); | 1370 __ InvokeBuiltin(Context::APPLY_PREPARE_BUILTIN_INDEX, CALL_FUNCTION); |
1510 } | 1371 } |
1511 | 1372 |
1512 Generate_CheckStackOverflow(masm, kFunctionOffset, r0, kArgcIsSmiTagged); | 1373 Generate_CheckStackOverflow(masm, kFunctionOffset, r0, kArgcIsSmiTagged); |
1513 | 1374 |
1514 // Push current limit and index. | 1375 // Push current limit and index. |
1515 const int kIndexOffset = | 1376 const int kIndexOffset = |
1516 StandardFrameConstants::kExpressionsOffset - (2 * kPointerSize); | 1377 StandardFrameConstants::kExpressionsOffset - (2 * kPointerSize); |
1517 const int kLimitOffset = | 1378 const int kLimitOffset = |
1518 StandardFrameConstants::kExpressionsOffset - (1 * kPointerSize); | 1379 StandardFrameConstants::kExpressionsOffset - (1 * kPointerSize); |
1519 __ push(r0); // limit | 1380 __ mov(r1, Operand::Zero()); |
1520 __ mov(r1, Operand::Zero()); // initial index | 1381 __ ldr(r2, MemOperand(fp, kReceiverOffset)); |
1521 __ push(r1); | 1382 __ Push(r0, r1, r2); // limit, initial index and receiver. |
1522 | |
1523 // Get the receiver. | |
1524 __ ldr(r0, MemOperand(fp, kReceiverOffset)); | |
1525 | |
1526 // Check that the function is a JS function (otherwise it must be a proxy). | |
1527 Label push_receiver; | |
1528 __ ldr(r1, MemOperand(fp, kFunctionOffset)); | |
1529 __ CompareObjectType(r1, r2, r2, JS_FUNCTION_TYPE); | |
1530 __ b(ne, &push_receiver); | |
1531 | |
1532 // Change context eagerly to get the right global object if necessary. | |
1533 __ ldr(cp, FieldMemOperand(r1, JSFunction::kContextOffset)); | |
1534 // Load the shared function info while the function is still in r1. | |
1535 __ ldr(r2, FieldMemOperand(r1, JSFunction::kSharedFunctionInfoOffset)); | |
1536 | |
1537 // Compute the receiver. | |
1538 // Do not transform the receiver for strict mode functions. | |
1539 Label call_to_object, use_global_proxy; | |
1540 __ ldr(r2, FieldMemOperand(r2, SharedFunctionInfo::kCompilerHintsOffset)); | |
1541 __ tst(r2, Operand(1 << (SharedFunctionInfo::kStrictModeFunction + | |
1542 kSmiTagSize))); | |
1543 __ b(ne, &push_receiver); | |
1544 | |
1545 // Do not transform the receiver for strict mode functions. | |
1546 __ tst(r2, Operand(1 << (SharedFunctionInfo::kNative + kSmiTagSize))); | |
1547 __ b(ne, &push_receiver); | |
1548 | |
1549 // Compute the receiver in sloppy mode. | |
1550 __ JumpIfSmi(r0, &call_to_object); | |
1551 __ LoadRoot(r1, Heap::kNullValueRootIndex); | |
1552 __ cmp(r0, r1); | |
1553 __ b(eq, &use_global_proxy); | |
1554 __ LoadRoot(r1, Heap::kUndefinedValueRootIndex); | |
1555 __ cmp(r0, r1); | |
1556 __ b(eq, &use_global_proxy); | |
1557 | |
1558 // Check if the receiver is already a JavaScript object. | |
1559 // r0: receiver | |
1560 STATIC_ASSERT(LAST_SPEC_OBJECT_TYPE == LAST_TYPE); | |
1561 __ CompareObjectType(r0, r1, r1, FIRST_SPEC_OBJECT_TYPE); | |
1562 __ b(ge, &push_receiver); | |
1563 | |
1564 // Convert the receiver to a regular object. | |
1565 // r0: receiver | |
1566 __ bind(&call_to_object); | |
1567 ToObjectStub stub(masm->isolate()); | |
1568 __ CallStub(&stub); | |
1569 __ b(&push_receiver); | |
1570 | |
1571 __ bind(&use_global_proxy); | |
1572 __ ldr(r0, ContextOperand(cp, Context::GLOBAL_OBJECT_INDEX)); | |
1573 __ ldr(r0, FieldMemOperand(r0, GlobalObject::kGlobalProxyOffset)); | |
1574 | |
1575 // Push the receiver. | |
1576 // r0: receiver | |
1577 __ bind(&push_receiver); | |
1578 __ push(r0); | |
1579 | 1383 |
1580 // Copy all arguments from the array to the stack. | 1384 // Copy all arguments from the array to the stack. |
1581 Generate_PushAppliedArguments( | 1385 Generate_PushAppliedArguments(masm, kArgumentsOffset, kIndexOffset, |
1582 masm, kArgumentsOffset, kIndexOffset, kLimitOffset); | 1386 kLimitOffset); |
1583 | 1387 |
1584 // Call the function. | 1388 // Call the callable. |
1585 Label call_proxy; | 1389 // TODO(bmeurer): This should be a tail call according to ES6. |
1586 ParameterCount actual(r0); | |
1587 __ ldr(r1, MemOperand(fp, kFunctionOffset)); | 1390 __ ldr(r1, MemOperand(fp, kFunctionOffset)); |
1588 __ CompareObjectType(r1, r2, r2, JS_FUNCTION_TYPE); | 1391 __ Call(masm->isolate()->builtins()->Call(), RelocInfo::CODE_TARGET); |
1589 __ b(ne, &call_proxy); | |
1590 __ InvokeFunction(r1, actual, CALL_FUNCTION, NullCallWrapper()); | |
1591 | |
1592 frame_scope.GenerateLeaveFrame(); | |
1593 __ add(sp, sp, Operand(kStackSize * kPointerSize)); | |
1594 __ Jump(lr); | |
1595 | |
1596 // Call the function proxy. | |
1597 __ bind(&call_proxy); | |
1598 __ push(r1); // add function proxy as last argument | |
1599 __ add(r0, r0, Operand(1)); | |
1600 __ mov(r2, Operand::Zero()); | |
1601 __ GetBuiltinFunction(r1, Context::CALL_FUNCTION_PROXY_BUILTIN_INDEX); | |
1602 __ Call(masm->isolate()->builtins()->ArgumentsAdaptorTrampoline(), | |
1603 RelocInfo::CODE_TARGET); | |
1604 | 1392 |
1605 // Tear down the internal frame and remove function, receiver and args. | 1393 // Tear down the internal frame and remove function, receiver and args. |
1606 } | 1394 } |
1607 __ add(sp, sp, Operand(kStackSize * kPointerSize)); | 1395 __ add(sp, sp, Operand(kStackSize * kPointerSize)); |
1608 __ Jump(lr); | 1396 __ Jump(lr); |
1609 } | 1397 } |
1610 | 1398 |
1611 | 1399 |
1612 static void Generate_ConstructHelper(MacroAssembler* masm) { | 1400 static void Generate_ConstructHelper(MacroAssembler* masm) { |
1613 const int kFormalParameters = 3; | 1401 const int kFormalParameters = 3; |
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1726 // then tear down the parameters. | 1514 // then tear down the parameters. |
1727 __ ldr(r1, MemOperand(fp, -(StandardFrameConstants::kFixedFrameSizeFromFp + | 1515 __ ldr(r1, MemOperand(fp, -(StandardFrameConstants::kFixedFrameSizeFromFp + |
1728 kPointerSize))); | 1516 kPointerSize))); |
1729 | 1517 |
1730 __ LeaveFrame(StackFrame::ARGUMENTS_ADAPTOR); | 1518 __ LeaveFrame(StackFrame::ARGUMENTS_ADAPTOR); |
1731 __ add(sp, sp, Operand::PointerOffsetFromSmiKey(r1)); | 1519 __ add(sp, sp, Operand::PointerOffsetFromSmiKey(r1)); |
1732 __ add(sp, sp, Operand(kPointerSize)); // adjust for receiver | 1520 __ add(sp, sp, Operand(kPointerSize)); // adjust for receiver |
1733 } | 1521 } |
1734 | 1522 |
1735 | 1523 |
| 1524 // static |
| 1525 void Builtins::Generate_CallFunction(MacroAssembler* masm) { |
| 1526 // ----------- S t a t e ------------- |
| 1527 // -- r0 : the number of arguments (not including the receiver) |
| 1528 // -- r1 : the function to call (checked to be a JSFunction) |
| 1529 // ----------------------------------- |
| 1530 |
| 1531 Label convert, convert_global_proxy, convert_to_object, done_convert; |
| 1532 __ AssertFunction(r1); |
| 1533 // TODO(bmeurer): Throw a TypeError if function's [[FunctionKind]] internal |
| 1534 // slot is "classConstructor". |
| 1535 // Enter the context of the function; ToObject has to run in the function |
| 1536 // context, and we also need to take the global proxy from the function |
| 1537 // context in case of conversion. |
| 1538 // See ES6 section 9.2.1 [[Call]] ( thisArgument, argumentsList) |
| 1539 STATIC_ASSERT(SharedFunctionInfo::kNativeByteOffset == |
| 1540 SharedFunctionInfo::kStrictModeByteOffset); |
| 1541 __ ldr(cp, FieldMemOperand(r1, JSFunction::kContextOffset)); |
| 1542 __ ldr(r2, FieldMemOperand(r1, JSFunction::kSharedFunctionInfoOffset)); |
| 1543 // We need to convert the receiver for non-native sloppy mode functions. |
| 1544 __ ldrb(r3, FieldMemOperand(r2, SharedFunctionInfo::kNativeByteOffset)); |
| 1545 __ tst(r3, Operand((1 << SharedFunctionInfo::kNativeBitWithinByte) | |
| 1546 (1 << SharedFunctionInfo::kStrictModeBitWithinByte))); |
| 1547 __ b(ne, &done_convert); |
| 1548 { |
| 1549 __ ldr(r3, MemOperand(sp, r0, LSL, kPointerSizeLog2)); |
| 1550 |
| 1551 // ----------- S t a t e ------------- |
| 1552 // -- r0 : the number of arguments (not including the receiver) |
| 1553 // -- r1 : the function to call (checked to be a JSFunction) |
| 1554 // -- r2 : the shared function info. |
| 1555 // -- r3 : the receiver |
| 1556 // -- cp : the function context. |
| 1557 // ----------------------------------- |
| 1558 |
| 1559 Label convert_receiver; |
| 1560 __ JumpIfSmi(r3, &convert_to_object); |
| 1561 STATIC_ASSERT(LAST_JS_RECEIVER_TYPE == LAST_TYPE); |
| 1562 __ CompareObjectType(r3, r4, r4, FIRST_JS_RECEIVER_TYPE); |
| 1563 __ b(hs, &done_convert); |
| 1564 __ JumpIfRoot(r3, Heap::kUndefinedValueRootIndex, &convert_global_proxy); |
| 1565 __ JumpIfNotRoot(r3, Heap::kNullValueRootIndex, &convert_to_object); |
| 1566 __ bind(&convert_global_proxy); |
| 1567 { |
| 1568 // Patch receiver to global proxy. |
| 1569 __ LoadGlobalProxy(r3); |
| 1570 } |
| 1571 __ b(&convert_receiver); |
| 1572 __ bind(&convert_to_object); |
| 1573 { |
| 1574 // Convert receiver using ToObject. |
| 1575 // TODO(bmeurer): Inline the allocation here to avoid building the frame |
| 1576 // in the fast case? (fall back to AllocateInNewSpace?) |
| 1577 FrameAndConstantPoolScope scope(masm, StackFrame::INTERNAL); |
| 1578 __ SmiTag(r0); |
| 1579 __ Push(r0, r1); |
| 1580 __ mov(r0, r3); |
| 1581 ToObjectStub stub(masm->isolate()); |
| 1582 __ CallStub(&stub); |
| 1583 __ mov(r3, r0); |
| 1584 __ Pop(r0, r1); |
| 1585 __ SmiUntag(r0); |
| 1586 } |
| 1587 __ ldr(r2, FieldMemOperand(r1, JSFunction::kSharedFunctionInfoOffset)); |
| 1588 __ bind(&convert_receiver); |
| 1589 __ str(r3, MemOperand(sp, r0, LSL, kPointerSizeLog2)); |
| 1590 } |
| 1591 __ bind(&done_convert); |
| 1592 |
| 1593 // ----------- S t a t e ------------- |
| 1594 // -- r0 : the number of arguments (not including the receiver) |
| 1595 // -- r1 : the function to call (checked to be a JSFunction) |
| 1596 // -- r2 : the shared function info. |
| 1597 // -- cp : the function context. |
| 1598 // ----------------------------------- |
| 1599 |
| 1600 __ ldr(r2, |
| 1601 FieldMemOperand(r2, SharedFunctionInfo::kFormalParameterCountOffset)); |
| 1602 __ SmiUntag(r2); |
| 1603 __ ldr(r3, FieldMemOperand(r1, JSFunction::kCodeEntryOffset)); |
| 1604 ParameterCount actual(r0); |
| 1605 ParameterCount expected(r2); |
| 1606 __ InvokeCode(r3, expected, actual, JUMP_FUNCTION, NullCallWrapper()); |
| 1607 } |
| 1608 |
| 1609 |
| 1610 // static |
| 1611 void Builtins::Generate_Call(MacroAssembler* masm) { |
| 1612 // ----------- S t a t e ------------- |
| 1613 // -- r0 : the number of arguments (not including the receiver) |
| 1614 // -- r1 : the target to call (can be any Object). |
| 1615 // ----------------------------------- |
| 1616 |
| 1617 Label non_smi, non_function; |
| 1618 __ JumpIfSmi(r1, &non_function); |
| 1619 __ bind(&non_smi); |
| 1620 __ CompareObjectType(r1, r2, r2, JS_FUNCTION_TYPE); |
| 1621 __ Jump(masm->isolate()->builtins()->CallFunction(), RelocInfo::CODE_TARGET, |
| 1622 eq); |
| 1623 __ cmp(r2, Operand(JS_FUNCTION_PROXY_TYPE)); |
| 1624 __ b(ne, &non_function); |
| 1625 |
| 1626 // 1. Call to function proxy. |
| 1627 // TODO(neis): This doesn't match the ES6 spec for [[Call]] on proxies. |
| 1628 __ ldr(r1, FieldMemOperand(r1, JSFunctionProxy::kCallTrapOffset)); |
| 1629 __ AssertNotSmi(r1); |
| 1630 __ b(&non_smi); |
| 1631 |
| 1632 // 2. Call to something else, which might have a [[Call]] internal method (if |
| 1633 // not we raise an exception). |
| 1634 __ bind(&non_function); |
| 1635 // TODO(bmeurer): I wonder why we prefer to have slow API calls? This could |
| 1636 // be awesome instead; i.e. a trivial improvement would be to call into the |
| 1637 // runtime and just deal with the API function there instead of returning a |
| 1638 // delegate from a runtime call that just jumps back to the runtime once |
| 1639 // called. Or, bonus points, call directly into the C API function here, as |
| 1640 // we do in some Crankshaft fast cases. |
| 1641 // Overwrite the original receiver with the (original) target. |
| 1642 __ str(r1, MemOperand(sp, r0, LSL, kPointerSizeLog2)); |
| 1643 { |
| 1644 // Determine the delegate for the target (if any). |
| 1645 FrameAndConstantPoolScope scope(masm, StackFrame::INTERNAL); |
| 1646 __ SmiTag(r0); |
| 1647 __ Push(r0, r1); |
| 1648 __ CallRuntime(Runtime::kGetFunctionDelegate, 1); |
| 1649 __ mov(r1, r0); |
| 1650 __ Pop(r0); |
| 1651 __ SmiUntag(r0); |
| 1652 } |
| 1653 // The delegate is always a regular function. |
| 1654 __ AssertFunction(r1); |
| 1655 __ Jump(masm->isolate()->builtins()->CallFunction(), RelocInfo::CODE_TARGET); |
| 1656 } |
| 1657 |
| 1658 |
1736 void Builtins::Generate_ArgumentsAdaptorTrampoline(MacroAssembler* masm) { | 1659 void Builtins::Generate_ArgumentsAdaptorTrampoline(MacroAssembler* masm) { |
1737 // ----------- S t a t e ------------- | 1660 // ----------- S t a t e ------------- |
1738 // -- r0 : actual number of arguments | 1661 // -- r0 : actual number of arguments |
1739 // -- r1 : function (passed through to callee) | 1662 // -- r1 : function (passed through to callee) |
1740 // -- r2 : expected number of arguments | 1663 // -- r2 : expected number of arguments |
1741 // ----------------------------------- | 1664 // ----------------------------------- |
1742 | 1665 |
1743 Label stack_overflow; | 1666 Label stack_overflow; |
1744 ArgumentAdaptorStackCheck(masm, &stack_overflow); | 1667 ArgumentAdaptorStackCheck(masm, &stack_overflow); |
1745 Label invoke, dont_adapt_arguments; | 1668 Label invoke, dont_adapt_arguments; |
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1876 } | 1799 } |
1877 } | 1800 } |
1878 | 1801 |
1879 | 1802 |
1880 #undef __ | 1803 #undef __ |
1881 | 1804 |
1882 } // namespace internal | 1805 } // namespace internal |
1883 } // namespace v8 | 1806 } // namespace v8 |
1884 | 1807 |
1885 #endif // V8_TARGET_ARCH_ARM | 1808 #endif // V8_TARGET_ARCH_ARM |
OLD | NEW |