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/*
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* Copyright 1998-2006 Sun Microsystems, Inc. All Rights Reserved.
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* DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
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*
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* This code is free software; you can redistribute it and/or modify it
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* under the terms of the GNU General Public License version 2 only, as
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* published by the Free Software Foundation.
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*
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* This code is distributed in the hope that it will be useful, but WITHOUT
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* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
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* version 2 for more details (a copy is included in the LICENSE file that
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* accompanied this code).
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*
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* You should have received a copy of the GNU General Public License version
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* 2 along with this work; if not, write to the Free Software Foundation,
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* Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
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*
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* Please contact Sun Microsystems, Inc., 4150 Network Circle, Santa Clara,
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* CA 95054 USA or visit www.sun.com if you need additional information or
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* have any questions.
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*
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*/
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#include "incls/_precompiled.incl"
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#include "incls/_runtime_sparc.cpp.incl"
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#define __ masm->
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ExceptionBlob *OptoRuntime::_exception_blob;
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//------------------------------ generate_exception_blob ---------------------------
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// creates exception blob at the end
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// Using exception blob, this code is jumped from a compiled method.
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// (see emit_exception_handler in sparc.ad file)
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//
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// Given an exception pc at a call we call into the runtime for the
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// handler in this method. This handler might merely restore state
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// (i.e. callee save registers) unwind the frame and jump to the
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// exception handler for the nmethod if there is no Java level handler
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// for the nmethod.
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//
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// This code is entered with a jmp.
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//
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// Arguments:
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// O0: exception oop
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// O1: exception pc
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//
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// Results:
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// O0: exception oop
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// O1: exception pc in caller or ???
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// destination: exception handler of caller
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//
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// Note: the exception pc MUST be at a call (precise debug information)
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//
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void OptoRuntime::generate_exception_blob() {
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// allocate space for code
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ResourceMark rm;
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int pad = VerifyThread ? 256 : 0;// Extra slop space for more verify code
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// setup code generation tools
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// Measured 8/7/03 at 256 in 32bit debug build (no VerifyThread)
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// Measured 8/7/03 at 528 in 32bit debug build (VerifyThread)
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CodeBuffer buffer("exception_blob", 600+pad, 512);
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MacroAssembler* masm = new MacroAssembler(&buffer);
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int framesize_in_bytes = __ total_frame_size_in_bytes(0);
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int framesize_in_words = framesize_in_bytes / wordSize;
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int framesize_in_slots = framesize_in_bytes / sizeof(jint);
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Label L;
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int start = __ offset();
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__ verify_thread();
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__ st_ptr(Oexception, Address(G2_thread, 0, in_bytes(JavaThread::exception_oop_offset())));
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__ st_ptr(Oissuing_pc, Address(G2_thread, 0, in_bytes(JavaThread::exception_pc_offset())));
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// This call does all the hard work. It checks if an exception catch
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// exists in the method.
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// If so, it returns the handler address.
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// If the nmethod has been deoptimized and it had a handler the handler
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// address is the deopt blob unpack_with_exception entry.
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//
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// If no handler exists it prepares for stack-unwinding, restoring the callee-save
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// registers of the frame being removed.
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//
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__ save_frame(0);
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__ mov(G2_thread, O0);
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__ set_last_Java_frame(SP, noreg);
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__ save_thread(L7_thread_cache);
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// This call can block at exit and nmethod can be deoptimized at that
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// point. If the nmethod had a catch point we would jump to the
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// now deoptimized catch point and fall thru the vanilla deopt
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// path and lose the exception
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// Sure would be simpler if this call didn't block!
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__ call(CAST_FROM_FN_PTR(address, OptoRuntime::handle_exception_C), relocInfo::runtime_call_type);
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__ delayed()->mov(L7_thread_cache, O0);
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// Set an oopmap for the call site. This oopmap will only be used if we
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// are unwinding the stack. Hence, all locations will be dead.
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// Callee-saved registers will be the same as the frame above (i.e.,
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// handle_exception_stub), since they were restored when we got the
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// exception.
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OopMapSet *oop_maps = new OopMapSet();
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oop_maps->add_gc_map( __ offset()-start, new OopMap(framesize_in_slots, 0));
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__ bind(L);
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__ restore_thread(L7_thread_cache);
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__ reset_last_Java_frame();
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__ mov(O0, G3_scratch); // Move handler address to temp
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__ restore();
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// G3_scratch contains handler address
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// Since this may be the deopt blob we must set O7 to look like we returned
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// from the original pc that threw the exception
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__ ld_ptr(Address(G2_thread, 0, in_bytes(JavaThread::exception_pc_offset())), O7);
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__ sub(O7, frame::pc_return_offset, O7);
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assert(Assembler::is_simm13(in_bytes(JavaThread::exception_oop_offset())), "exception offset overflows simm13, following ld instruction cannot be in delay slot");
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__ ld_ptr(Address(G2_thread, 0, in_bytes(JavaThread::exception_oop_offset())), Oexception); // O0
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#ifdef ASSERT
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__ st_ptr(G0, Address(G2_thread, 0, in_bytes(JavaThread::exception_handler_pc_offset())));
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__ st_ptr(G0, Address(G2_thread, 0, in_bytes(JavaThread::exception_pc_offset())));
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#endif
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__ JMP(G3_scratch, 0);
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// Clear the exception oop so GC no longer processes it as a root.
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__ delayed()->st_ptr(G0, Address(G2_thread, 0, in_bytes(JavaThread::exception_oop_offset())));
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// -------------
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// make sure all code is generated
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masm->flush();
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_exception_blob = ExceptionBlob::create(&buffer, oop_maps, framesize_in_words);
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}
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