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Side by Side Diff: src/arm/macro-assembler-arm.h

Issue 6538019: Porting of revisions 6639, 6794 and 6805 to the 3.0 branch. (Closed) Base URL: https://v8.googlecode.com/svn/branches/3.0
Patch Set: Created 9 years, 10 months ago
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1 // Copyright 2010 the V8 project authors. All rights reserved. 1 // Copyright 2010 the V8 project authors. All rights reserved.
2 // Redistribution and use in source and binary forms, with or without 2 // Redistribution and use in source and binary forms, with or without
3 // modification, are permitted provided that the following conditions are 3 // modification, are permitted provided that the following conditions are
4 // met: 4 // met:
5 // 5 //
6 // * Redistributions of source code must retain the above copyright 6 // * Redistributions of source code must retain the above copyright
7 // notice, this list of conditions and the following disclaimer. 7 // notice, this list of conditions and the following disclaimer.
8 // * Redistributions in binary form must reproduce the above 8 // * Redistributions in binary form must reproduce the above
9 // copyright notice, this list of conditions and the following 9 // copyright notice, this list of conditions and the following
10 // disclaimer in the documentation and/or other materials provided 10 // disclaimer in the documentation and/or other materials provided
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277 // --------------------------------------------------------------------------- 277 // ---------------------------------------------------------------------------
278 // Activation frames 278 // Activation frames
279 279
280 void EnterInternalFrame() { EnterFrame(StackFrame::INTERNAL); } 280 void EnterInternalFrame() { EnterFrame(StackFrame::INTERNAL); }
281 void LeaveInternalFrame() { LeaveFrame(StackFrame::INTERNAL); } 281 void LeaveInternalFrame() { LeaveFrame(StackFrame::INTERNAL); }
282 282
283 void EnterConstructFrame() { EnterFrame(StackFrame::CONSTRUCT); } 283 void EnterConstructFrame() { EnterFrame(StackFrame::CONSTRUCT); }
284 void LeaveConstructFrame() { LeaveFrame(StackFrame::CONSTRUCT); } 284 void LeaveConstructFrame() { LeaveFrame(StackFrame::CONSTRUCT); }
285 285
286 // Enter exit frame. 286 // Enter exit frame.
287 // Expects the number of arguments in register r0 and 287 // stack_space - extra stack space, used for alignment before call to C.
288 // the builtin function to call in register r1. Exits with argc in 288 void EnterExitFrame(bool save_doubles, int stack_space = 0);
289 // r4, argv in r6, and and the builtin function to call in r5.
290 void EnterExitFrame(bool save_doubles);
291 289
292 // Leave the current exit frame. Expects the return value in r0. 290 // Leave the current exit frame. Expects the return value in r0.
293 void LeaveExitFrame(bool save_doubles); 291 // Expect the number of values, pushed prior to the exit frame, to
292 // remove in a register (or no_reg, if there is nothing to remove).
293 void LeaveExitFrame(bool save_doubles, Register argument_count);
294 294
295 // Get the actual activation frame alignment for target environment. 295 // Get the actual activation frame alignment for target environment.
296 static int ActivationFrameAlignment(); 296 static int ActivationFrameAlignment();
297 297
298 void LoadContext(Register dst, int context_chain_length); 298 void LoadContext(Register dst, int context_chain_length);
299 299
300 void LoadGlobalFunction(int index, Register function); 300 void LoadGlobalFunction(int index, Register function);
301 301
302 // Load the initial map from the global function. The registers 302 // Load the initial map from the global function. The registers
303 // function and map can be the same, function is then overwritten. 303 // function and map can be the same, function is then overwritten.
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357 357
358 // Push a new try handler and link into try handler chain. 358 // Push a new try handler and link into try handler chain.
359 // The return address must be passed in register lr. 359 // The return address must be passed in register lr.
360 // On exit, r0 contains TOS (code slot). 360 // On exit, r0 contains TOS (code slot).
361 void PushTryHandler(CodeLocation try_location, HandlerType type); 361 void PushTryHandler(CodeLocation try_location, HandlerType type);
362 362
363 // Unlink the stack handler on top of the stack from the try handler chain. 363 // Unlink the stack handler on top of the stack from the try handler chain.
364 // Must preserve the result register. 364 // Must preserve the result register.
365 void PopTryHandler(); 365 void PopTryHandler();
366 366
367 // Passes thrown value (in r0) to the handler of top of the try handler chain.
368 void Throw(Register value);
369
370 // Propagates an uncatchable exception to the top of the current JS stack's
371 // handler chain.
372 void ThrowUncatchable(UncatchableExceptionType type, Register value);
373
367 // --------------------------------------------------------------------------- 374 // ---------------------------------------------------------------------------
368 // Inline caching support 375 // Inline caching support
369 376
370 // Generate code for checking access rights - used for security checks 377 // Generate code for checking access rights - used for security checks
371 // on access to global objects across environments. The holder register 378 // on access to global objects across environments. The holder register
372 // is left untouched, whereas both scratch registers are clobbered. 379 // is left untouched, whereas both scratch registers are clobbered.
373 void CheckAccessGlobalProxy(Register holder_reg, 380 void CheckAccessGlobalProxy(Register holder_reg,
374 Register scratch, 381 Register scratch,
375 Label* miss); 382 Label* miss);
376 383
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604 611
605 // --------------------------------------------------------------------------- 612 // ---------------------------------------------------------------------------
606 // Runtime calls 613 // Runtime calls
607 614
608 // Call a code stub. 615 // Call a code stub.
609 void CallStub(CodeStub* stub, Condition cond = al); 616 void CallStub(CodeStub* stub, Condition cond = al);
610 617
611 // Call a code stub. 618 // Call a code stub.
612 void TailCallStub(CodeStub* stub, Condition cond = al); 619 void TailCallStub(CodeStub* stub, Condition cond = al);
613 620
621 // Tail call a code stub (jump) and return the code object called. Try to
622 // generate the code if necessary. Do not perform a GC but instead return
623 // a retry after GC failure.
624 MUST_USE_RESULT MaybeObject* TryTailCallStub(CodeStub* stub,
625 Condition cond = al);
626
614 // Call a runtime routine. 627 // Call a runtime routine.
615 void CallRuntime(Runtime::Function* f, int num_arguments); 628 void CallRuntime(Runtime::Function* f, int num_arguments);
616 void CallRuntimeSaveDoubles(Runtime::FunctionId id); 629 void CallRuntimeSaveDoubles(Runtime::FunctionId id);
617 630
618 // Convenience function: Same as above, but takes the fid instead. 631 // Convenience function: Same as above, but takes the fid instead.
619 void CallRuntime(Runtime::FunctionId fid, int num_arguments); 632 void CallRuntime(Runtime::FunctionId fid, int num_arguments);
620 633
621 // Convenience function: call an external reference. 634 // Convenience function: call an external reference.
622 void CallExternalReference(const ExternalReference& ext, 635 void CallExternalReference(const ExternalReference& ext,
623 int num_arguments); 636 int num_arguments);
624 637
625 // Tail call of a runtime routine (jump). 638 // Tail call of a runtime routine (jump).
626 // Like JumpToExternalReference, but also takes care of passing the number 639 // Like JumpToExternalReference, but also takes care of passing the number
627 // of parameters. 640 // of parameters.
628 void TailCallExternalReference(const ExternalReference& ext, 641 void TailCallExternalReference(const ExternalReference& ext,
629 int num_arguments, 642 int num_arguments,
630 int result_size); 643 int result_size);
631 644
645 // Tail call of a runtime routine (jump). Try to generate the code if
646 // necessary. Do not perform a GC but instead return a retry after GC
647 // failure.
648 MUST_USE_RESULT MaybeObject* TryTailCallExternalReference(
649 const ExternalReference& ext, int num_arguments, int result_size);
650
632 // Convenience function: tail call a runtime routine (jump). 651 // Convenience function: tail call a runtime routine (jump).
633 void TailCallRuntime(Runtime::FunctionId fid, 652 void TailCallRuntime(Runtime::FunctionId fid,
634 int num_arguments, 653 int num_arguments,
635 int result_size); 654 int result_size);
636 655
637 // Before calling a C-function from generated code, align arguments on stack. 656 // Before calling a C-function from generated code, align arguments on stack.
638 // After aligning the frame, non-register arguments must be stored in 657 // After aligning the frame, non-register arguments must be stored in
639 // sp[0], sp[4], etc., not pushed. The argument count assumes all arguments 658 // sp[0], sp[4], etc., not pushed. The argument count assumes all arguments
640 // are word sized. 659 // are word sized.
641 // Some compilers/platforms require the stack to be aligned when calling 660 // Some compilers/platforms require the stack to be aligned when calling
642 // C++ code. 661 // C++ code.
643 // Needs a scratch register to do some arithmetic. This register will be 662 // Needs a scratch register to do some arithmetic. This register will be
644 // trashed. 663 // trashed.
645 void PrepareCallCFunction(int num_arguments, Register scratch); 664 void PrepareCallCFunction(int num_arguments, Register scratch);
646 665
647 // Calls a C function and cleans up the space for arguments allocated 666 // Calls a C function and cleans up the space for arguments allocated
648 // by PrepareCallCFunction. The called function is not allowed to trigger a 667 // by PrepareCallCFunction. The called function is not allowed to trigger a
649 // garbage collection, since that might move the code and invalidate the 668 // garbage collection, since that might move the code and invalidate the
650 // return address (unless this is somehow accounted for by the called 669 // return address (unless this is somehow accounted for by the called
651 // function). 670 // function).
652 void CallCFunction(ExternalReference function, int num_arguments); 671 void CallCFunction(ExternalReference function, int num_arguments);
653 void CallCFunction(Register function, int num_arguments); 672 void CallCFunction(Register function, int num_arguments);
654 673
674 // Calls an API function. Allocates HandleScope, extracts returned value
675 // from handle and propagates exceptions. Restores context.
676 // stack_space - space to be unwound on exit (includes the call js
677 // arguments space and the additional space allocated for the fast call).
678 MaybeObject* TryCallApiFunctionAndReturn(ApiFunction* function,
679 int stack_space);
680
655 // Jump to a runtime routine. 681 // Jump to a runtime routine.
656 void JumpToExternalReference(const ExternalReference& builtin); 682 void JumpToExternalReference(const ExternalReference& builtin);
657 683
684 MaybeObject* TryJumpToExternalReference(const ExternalReference& ext);
685
658 // Invoke specified builtin JavaScript function. Adds an entry to 686 // Invoke specified builtin JavaScript function. Adds an entry to
659 // the unresolved list if the name does not resolve. 687 // the unresolved list if the name does not resolve.
660 void InvokeBuiltin(Builtins::JavaScript id, 688 void InvokeBuiltin(Builtins::JavaScript id,
661 InvokeJSFlags flags, 689 InvokeJSFlags flags,
662 PostCallGenerator* post_call_generator = NULL); 690 PostCallGenerator* post_call_generator = NULL);
663 691
664 // Store the code object for the given builtin in the target register and 692 // Store the code object for the given builtin in the target register and
665 // setup the function in r1. 693 // setup the function in r1.
666 void GetBuiltinEntry(Register target, Builtins::JavaScript id); 694 void GetBuiltinEntry(Register target, Builtins::JavaScript id);
667 695
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890 #define __FILE_LINE__ __FILE__ ":" CODE_COVERAGE_TOSTRING(__LINE__) 918 #define __FILE_LINE__ __FILE__ ":" CODE_COVERAGE_TOSTRING(__LINE__)
891 #define ACCESS_MASM(masm) masm->stop(__FILE_LINE__); masm-> 919 #define ACCESS_MASM(masm) masm->stop(__FILE_LINE__); masm->
892 #else 920 #else
893 #define ACCESS_MASM(masm) masm-> 921 #define ACCESS_MASM(masm) masm->
894 #endif 922 #endif
895 923
896 924
897 } } // namespace v8::internal 925 } } // namespace v8::internal
898 926
899 #endif // V8_ARM_MACRO_ASSEMBLER_ARM_H_ 927 #endif // V8_ARM_MACRO_ASSEMBLER_ARM_H_
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