hotspot/src/cpu/sparc/vm/bytecodeInterpreter_sparc.hpp
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7059037: Use BIS for zeroing on T4 Summary: Use BIS for zeroing new allocated big (2Kb and more) objects and arrays. Reviewed-by: never, twisti, ysr
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/*
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 * Copyright (c) 2002, 2010, Oracle and/or its affiliates. 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 Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
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 * or visit www.oracle.com if you need additional information or have any
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 * questions.
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 *
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 */
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#ifndef CPU_SPARC_VM_BYTECODEINTERPRETER_SPARC_HPP
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#define CPU_SPARC_VM_BYTECODEINTERPRETER_SPARC_HPP
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// Platform specific for C++ based Interpreter
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#define LOTS_OF_REGS    /* Lets interpreter use plenty of registers */
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private:
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    // save the bottom of the stack after frame manager setup. For ease of restoration after return
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    // from recursive interpreter call
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    intptr_t*  _frame_bottom;             /* saved bottom of frame manager frame */
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    intptr_t* _last_Java_pc;              /* pc to return to in frame manager */
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    interpreterState _self_link;          /*  Previous interpreter state  */ /* sometimes points to self??? */
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    double    _native_fresult;            /* save result of native calls that might return floats */
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    intptr_t  _native_lresult;            /* save result of native calls that might return handle/longs */
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public:
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    static void pd_layout_interpreterState(interpreterState istate, address last_Java_pc, intptr_t* last_Java_fp);
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#define SET_LAST_JAVA_FRAME()
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#define RESET_LAST_JAVA_FRAME() THREAD->frame_anchor()->set_flags(0);
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/*
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 * Macros for accessing the stack.
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 */
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#undef STACK_INT
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#undef STACK_FLOAT
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#undef STACK_ADDR
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#undef STACK_OBJECT
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#undef STACK_DOUBLE
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#undef STACK_LONG
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// JavaStack Implementation
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#define GET_STACK_SLOT(offset)    (*((intptr_t*) &topOfStack[-(offset)]))
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#define STACK_SLOT(offset)    ((address) &topOfStack[-(offset)])
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#define STACK_ADDR(offset)    (*((address *) &topOfStack[-(offset)]))
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#define STACK_INT(offset)     (*((jint*) &topOfStack[-(offset)]))
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#define STACK_FLOAT(offset)   (*((jfloat *) &topOfStack[-(offset)]))
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#define STACK_OBJECT(offset)  (*((oop *) &topOfStack [-(offset)]))
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#define STACK_DOUBLE(offset)  (((VMJavaVal64*) &topOfStack[-(offset)])->d)
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#define STACK_LONG(offset)    (((VMJavaVal64 *) &topOfStack[-(offset)])->l)
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#define SET_STACK_SLOT(value, offset)   (*(intptr_t*)&topOfStack[-(offset)] = *(intptr_t*)(value))
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#define SET_STACK_ADDR(value, offset)   (*((address *)&topOfStack[-(offset)]) = (value))
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#define SET_STACK_INT(value, offset)    (*((jint *)&topOfStack[-(offset)]) = (value))
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#define SET_STACK_FLOAT(value, offset)  (*((jfloat *)&topOfStack[-(offset)]) = (value))
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#define SET_STACK_OBJECT(value, offset) (*((oop *)&topOfStack[-(offset)]) = (value))
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#define SET_STACK_DOUBLE(value, offset) (((VMJavaVal64*)&topOfStack[-(offset)])->d = (value))
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#define SET_STACK_DOUBLE_FROM_ADDR(addr, offset) (((VMJavaVal64*)&topOfStack[-(offset)])->d =  \
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                                                 ((VMJavaVal64*)(addr))->d)
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#define SET_STACK_LONG(value, offset)   (((VMJavaVal64*)&topOfStack[-(offset)])->l = (value))
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#define SET_STACK_LONG_FROM_ADDR(addr, offset)   (((VMJavaVal64*)&topOfStack[-(offset)])->l =  \
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                                                 ((VMJavaVal64*)(addr))->l)
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#define LOCALS_SLOT(offset)    ((intptr_t*)&locals[-(offset)])
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#define LOCALS_ADDR(offset)    ((address)locals[-(offset)])
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#define LOCALS_INT(offset)     (*((jint*)&locals[-(offset)]))
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#define LOCALS_FLOAT(offset)   (*((jfloat*)&locals[-(offset)]))
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#define LOCALS_OBJECT(offset)  ((oop)locals[-(offset)])
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#define LOCALS_DOUBLE(offset)  (((VMJavaVal64*)&locals[-((offset) + 1)])->d)
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#define LOCALS_LONG(offset)    (((VMJavaVal64*)&locals[-((offset) + 1)])->l)
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#define LOCALS_LONG_AT(offset) (((address)&locals[-((offset) + 1)]))
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#define LOCALS_DOUBLE_AT(offset) (((address)&locals[-((offset) + 1)]))
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#define SET_LOCALS_SLOT(value, offset)    (*(intptr_t*)&locals[-(offset)] = *(intptr_t *)(value))
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#define SET_LOCALS_ADDR(value, offset)    (*((address *)&locals[-(offset)]) = (value))
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#define SET_LOCALS_INT(value, offset)     (*((jint *)&locals[-(offset)]) = (value))
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#define SET_LOCALS_FLOAT(value, offset)   (*((jfloat *)&locals[-(offset)]) = (value))
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#define SET_LOCALS_OBJECT(value, offset)  (*((oop *)&locals[-(offset)]) = (value))
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#define SET_LOCALS_DOUBLE(value, offset)  (((VMJavaVal64*)&locals[-((offset)+1)])->d = (value))
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#define SET_LOCALS_LONG(value, offset)    (((VMJavaVal64*)&locals[-((offset)+1)])->l = (value))
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#define SET_LOCALS_DOUBLE_FROM_ADDR(addr, offset) (((VMJavaVal64*)&locals[-((offset)+1)])->d = \
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                                                  ((VMJavaVal64*)(addr))->d)
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#define SET_LOCALS_LONG_FROM_ADDR(addr, offset) (((VMJavaVal64*)&locals[-((offset)+1)])->l = \
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                                                ((VMJavaVal64*)(addr))->l)
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#endif // CPU_SPARC_VM_BYTECODEINTERPRETER_SPARC_HPP