src/cpu/x86/vm/interp_masm_x86_64.hpp

Thu, 03 Nov 2011 04:12:49 -0700

author
twisti
date
Thu, 03 Nov 2011 04:12:49 -0700
changeset 3252
448691f285a5
parent 3050
fdb992d83a87
child 3826
2fe087c3e814
permissions
-rw-r--r--

7106944: assert(_pc == *pc_addr) failed may be too strong
Reviewed-by: kvn, never

     1 /*
     2  * Copyright (c) 2003, 2011, Oracle and/or its affiliates. All rights reserved.
     3  * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
     4  *
     5  * This code is free software; you can redistribute it and/or modify it
     6  * under the terms of the GNU General Public License version 2 only, as
     7  * published by the Free Software Foundation.
     8  *
     9  * This code is distributed in the hope that it will be useful, but WITHOUT
    10  * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
    11  * FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License
    12  * version 2 for more details (a copy is included in the LICENSE file that
    13  * accompanied this code).
    14  *
    15  * You should have received a copy of the GNU General Public License version
    16  * 2 along with this work; if not, write to the Free Software Foundation,
    17  * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
    18  *
    19  * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
    20  * or visit www.oracle.com if you need additional information or have any
    21  * questions.
    22  *
    23  */
    25 #ifndef CPU_X86_VM_INTERP_MASM_X86_64_HPP
    26 #define CPU_X86_VM_INTERP_MASM_X86_64_HPP
    28 #include "assembler_x86.inline.hpp"
    29 #include "interpreter/invocationCounter.hpp"
    31 // This file specializes the assember with interpreter-specific macros
    34 class InterpreterMacroAssembler: public MacroAssembler {
    35 #ifndef CC_INTERP
    36  protected:
    37   // Interpreter specific version of call_VM_base
    38   virtual void call_VM_leaf_base(address entry_point,
    39                                  int number_of_arguments);
    41   virtual void call_VM_base(Register oop_result,
    42                             Register java_thread,
    43                             Register last_java_sp,
    44                             address  entry_point,
    45                             int number_of_arguments,
    46                             bool check_exceptions);
    48   virtual void check_and_handle_popframe(Register java_thread);
    49   virtual void check_and_handle_earlyret(Register java_thread);
    51   // base routine for all dispatches
    52   void dispatch_base(TosState state, address* table, bool verifyoop = true);
    53 #endif // CC_INTERP
    55  public:
    56   InterpreterMacroAssembler(CodeBuffer* code) : MacroAssembler(code) {}
    58   void load_earlyret_value(TosState state);
    60 #ifdef CC_INTERP
    61   void save_bcp()                                          { /*  not needed in c++ interpreter and harmless */ }
    62   void restore_bcp()                                       { /*  not needed in c++ interpreter and harmless */ }
    64   // Helpers for runtime call arguments/results
    65   void get_method(Register reg);
    67 #else
    69   // Interpreter-specific registers
    70   void save_bcp() {
    71     movptr(Address(rbp, frame::interpreter_frame_bcx_offset * wordSize), r13);
    72   }
    74   void restore_bcp() {
    75     movptr(r13, Address(rbp, frame::interpreter_frame_bcx_offset * wordSize));
    76   }
    78   void restore_locals() {
    79     movptr(r14, Address(rbp, frame::interpreter_frame_locals_offset * wordSize));
    80   }
    82   // Helpers for runtime call arguments/results
    83   void get_method(Register reg) {
    84     movptr(reg, Address(rbp, frame::interpreter_frame_method_offset * wordSize));
    85   }
    87   void get_constant_pool(Register reg) {
    88     get_method(reg);
    89     movptr(reg, Address(reg, methodOopDesc::constants_offset()));
    90   }
    92   void get_constant_pool_cache(Register reg) {
    93     get_constant_pool(reg);
    94     movptr(reg, Address(reg, constantPoolOopDesc::cache_offset_in_bytes()));
    95   }
    97   void get_cpool_and_tags(Register cpool, Register tags) {
    98     get_constant_pool(cpool);
    99     movptr(tags, Address(cpool, constantPoolOopDesc::tags_offset_in_bytes()));
   100   }
   102   void get_unsigned_2_byte_index_at_bcp(Register reg, int bcp_offset);
   103   void get_cache_and_index_at_bcp(Register cache, Register index, int bcp_offset, size_t index_size = sizeof(u2));
   104   void get_cache_and_index_and_bytecode_at_bcp(Register cache, Register index, Register bytecode, int byte_no, int bcp_offset, size_t index_size = sizeof(u2));
   105   void get_cache_entry_pointer_at_bcp(Register cache, Register tmp, int bcp_offset, size_t index_size = sizeof(u2));
   106   void get_cache_index_at_bcp(Register index, int bcp_offset, size_t index_size = sizeof(u2));
   108   void pop_ptr(Register r = rax);
   109   void pop_i(Register r = rax);
   110   void pop_l(Register r = rax);
   111   void pop_f(XMMRegister r = xmm0);
   112   void pop_d(XMMRegister r = xmm0);
   113   void push_ptr(Register r = rax);
   114   void push_i(Register r = rax);
   115   void push_l(Register r = rax);
   116   void push_f(XMMRegister r = xmm0);
   117   void push_d(XMMRegister r = xmm0);
   119   void pop(Register r ) { ((MacroAssembler*)this)->pop(r); }
   121   void push(Register r ) { ((MacroAssembler*)this)->push(r); }
   122   void push(int32_t imm ) { ((MacroAssembler*)this)->push(imm); }
   124   void pop(TosState state); // transition vtos -> state
   125   void push(TosState state); // transition state -> vtos
   127   void empty_expression_stack() {
   128     movptr(rsp, Address(rbp, frame::interpreter_frame_monitor_block_top_offset * wordSize));
   129     // NULL last_sp until next java call
   130     movptr(Address(rbp, frame::interpreter_frame_last_sp_offset * wordSize), (int32_t)NULL_WORD);
   131   }
   133   // Helpers for swap and dup
   134   void load_ptr(int n, Register val);
   135   void store_ptr(int n, Register val);
   137   // Generate a subtype check: branch to ok_is_subtype if sub_klass is
   138   // a subtype of super_klass.
   139   void gen_subtype_check( Register sub_klass, Label &ok_is_subtype );
   141   // Dispatching
   142   void dispatch_prolog(TosState state, int step = 0);
   143   void dispatch_epilog(TosState state, int step = 0);
   144   // dispatch via ebx (assume ebx is loaded already)
   145   void dispatch_only(TosState state);
   146   // dispatch normal table via ebx (assume ebx is loaded already)
   147   void dispatch_only_normal(TosState state);
   148   void dispatch_only_noverify(TosState state);
   149   // load ebx from [esi + step] and dispatch via ebx
   150   void dispatch_next(TosState state, int step = 0);
   151   // load ebx from [esi] and dispatch via ebx and table
   152   void dispatch_via (TosState state, address* table);
   154   // jump to an invoked target
   155   void prepare_to_jump_from_interpreted();
   156   void jump_from_interpreted(Register method, Register temp);
   159   // Returning from interpreted functions
   160   //
   161   // Removes the current activation (incl. unlocking of monitors)
   162   // and sets up the return address.  This code is also used for
   163   // exception unwindwing. In that case, we do not want to throw
   164   // IllegalMonitorStateExceptions, since that might get us into an
   165   // infinite rethrow exception loop.
   166   // Additionally this code is used for popFrame and earlyReturn.
   167   // In popFrame case we want to skip throwing an exception,
   168   // installing an exception, and notifying jvmdi.
   169   // In earlyReturn case we only want to skip throwing an exception
   170   // and installing an exception.
   171   void remove_activation(TosState state, Register ret_addr,
   172                          bool throw_monitor_exception = true,
   173                          bool install_monitor_exception = true,
   174                          bool notify_jvmdi = true);
   175 #endif // CC_INTERP
   177   // Object locking
   178   void lock_object  (Register lock_reg);
   179   void unlock_object(Register lock_reg);
   181 #ifndef CC_INTERP
   183   // Interpreter profiling operations
   184   void set_method_data_pointer_for_bcp();
   185   void test_method_data_pointer(Register mdp, Label& zero_continue);
   186   void verify_method_data_pointer();
   188   void set_mdp_data_at(Register mdp_in, int constant, Register value);
   189   void increment_mdp_data_at(Address data, bool decrement = false);
   190   void increment_mdp_data_at(Register mdp_in, int constant,
   191                              bool decrement = false);
   192   void increment_mdp_data_at(Register mdp_in, Register reg, int constant,
   193                              bool decrement = false);
   194   void increment_mask_and_jump(Address counter_addr,
   195                                int increment, int mask,
   196                                Register scratch, bool preloaded,
   197                                Condition cond, Label* where);
   198   void set_mdp_flag_at(Register mdp_in, int flag_constant);
   199   void test_mdp_data_at(Register mdp_in, int offset, Register value,
   200                         Register test_value_out,
   201                         Label& not_equal_continue);
   203   void record_klass_in_profile(Register receiver, Register mdp,
   204                                Register reg2, bool is_virtual_call);
   205   void record_klass_in_profile_helper(Register receiver, Register mdp,
   206                                       Register reg2, int start_row,
   207                                       Label& done, bool is_virtual_call);
   209   void update_mdp_by_offset(Register mdp_in, int offset_of_offset);
   210   void update_mdp_by_offset(Register mdp_in, Register reg, int offset_of_disp);
   211   void update_mdp_by_constant(Register mdp_in, int constant);
   212   void update_mdp_for_ret(Register return_bci);
   214   void profile_taken_branch(Register mdp, Register bumped_count);
   215   void profile_not_taken_branch(Register mdp);
   216   void profile_call(Register mdp);
   217   void profile_final_call(Register mdp);
   218   void profile_virtual_call(Register receiver, Register mdp,
   219                             Register scratch2,
   220                             bool receiver_can_be_null = false);
   221   void profile_ret(Register return_bci, Register mdp);
   222   void profile_null_seen(Register mdp);
   223   void profile_typecheck(Register mdp, Register klass, Register scratch);
   224   void profile_typecheck_failed(Register mdp);
   225   void profile_switch_default(Register mdp);
   226   void profile_switch_case(Register index_in_scratch, Register mdp,
   227                            Register scratch2);
   229   // Debugging
   230   // only if +VerifyOops && state == atos
   231   void verify_oop(Register reg, TosState state = atos);
   232   // only if +VerifyFPU  && (state == ftos || state == dtos)
   233   void verify_FPU(int stack_depth, TosState state = ftos);
   235 #endif // !CC_INTERP
   237   typedef enum { NotifyJVMTI, SkipNotifyJVMTI } NotifyMethodExitMode;
   239   // support for jvmti/dtrace
   240   void notify_method_entry();
   241   void notify_method_exit(TosState state, NotifyMethodExitMode mode);
   242 };
   244 #endif // CPU_X86_VM_INTERP_MASM_X86_64_HPP

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