annotate src/cpu/x86/vm/vtableStubs_x86_64.cpp @ 1783:d5d065957597

6953144: Tiered compilation Summary: Infrastructure for tiered compilation support (interpreter + c1 + c2) for 32 and 64 bit. Simple tiered policy implementation. Reviewed-by: kvn, never, phh, twisti
author iveresov
date Fri, 03 Sep 2010 17:51:07 -0700
parents c18cbe5936b8
children f95d63e2154a
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1 /*
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2 * Copyright (c) 2003, 2010, Oracle and/or its affiliates. All rights reserved.
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3 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
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4 *
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5 * This code is free software; you can redistribute it and/or modify it
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6 * under the terms of the GNU General Public License version 2 only, as
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7 * published by the Free Software Foundation.
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8 *
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9 * This code is distributed in the hope that it will be useful, but WITHOUT
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10 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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11 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
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12 * version 2 for more details (a copy is included in the LICENSE file that
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13 * accompanied this code).
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14 *
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15 * You should have received a copy of the GNU General Public License version
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16 * 2 along with this work; if not, write to the Free Software Foundation,
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17 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
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18 *
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19 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
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20 * or visit www.oracle.com if you need additional information or have any
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21 * questions.
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22 *
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23 */
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24
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25 #include "incls/_precompiled.incl"
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26 #include "incls/_vtableStubs_x86_64.cpp.incl"
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27
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28 // machine-dependent part of VtableStubs: create VtableStub of correct size and
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29 // initialize its code
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30
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31 #define __ masm->
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32
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33 #ifndef PRODUCT
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34 extern "C" void bad_compiled_vtable_index(JavaThread* thread,
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35 oop receiver,
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36 int index);
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37 #endif
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38
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39 VtableStub* VtableStubs::create_vtable_stub(int vtable_index) {
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40 const int amd64_code_length = VtableStub::pd_code_size_limit(true);
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41 VtableStub* s = new(amd64_code_length) VtableStub(true, vtable_index);
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42 ResourceMark rm;
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43 CodeBuffer cb(s->entry_point(), amd64_code_length);
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44 MacroAssembler* masm = new MacroAssembler(&cb);
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45
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46 #ifndef PRODUCT
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47 if (CountCompiledCalls) {
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48 __ incrementl(ExternalAddress((address) SharedRuntime::nof_megamorphic_calls_addr()));
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49 }
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50 #endif
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51
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52 // get receiver (need to skip return address on top of stack)
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53 assert(VtableStub::receiver_location() == j_rarg0->as_VMReg(), "receiver expected in j_rarg0");
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54
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55 // Free registers (non-args) are rax, rbx
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56
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57 // get receiver klass
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58 address npe_addr = __ pc();
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59 __ load_klass(rax, j_rarg0);
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60
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61 // compute entry offset (in words)
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62 int entry_offset =
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63 instanceKlass::vtable_start_offset() + vtable_index * vtableEntry::size();
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64
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65 #ifndef PRODUCT
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66 if (DebugVtables) {
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67 Label L;
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68 // check offset vs vtable length
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69 __ cmpl(Address(rax, instanceKlass::vtable_length_offset() * wordSize),
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70 vtable_index * vtableEntry::size());
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71 __ jcc(Assembler::greater, L);
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72 __ movl(rbx, vtable_index);
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73 __ call_VM(noreg,
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74 CAST_FROM_FN_PTR(address, bad_compiled_vtable_index), j_rarg0, rbx);
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75 __ bind(L);
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76 }
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77 #endif // PRODUCT
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78
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79 // load methodOop and target address
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80 const Register method = rbx;
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81
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82 __ movptr(method, Address(rax,
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83 entry_offset * wordSize +
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84 vtableEntry::method_offset_in_bytes()));
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85 if (DebugVtables) {
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86 Label L;
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87 __ cmpptr(method, (int32_t)NULL_WORD);
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88 __ jcc(Assembler::equal, L);
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89 __ cmpptr(Address(method, methodOopDesc::from_compiled_offset()), (int32_t)NULL_WORD);
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90 __ jcc(Assembler::notZero, L);
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91 __ stop("Vtable entry is NULL");
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92 __ bind(L);
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93 }
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94 // rax: receiver klass
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95 // rbx: methodOop
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96 // rcx: receiver
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97 address ame_addr = __ pc();
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98 __ jmp( Address(rbx, methodOopDesc::from_compiled_offset()));
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99
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100 __ flush();
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101
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102 if (PrintMiscellaneous && (WizardMode || Verbose)) {
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103 tty->print_cr("vtable #%d at "PTR_FORMAT"[%d] left over: %d",
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104 vtable_index, s->entry_point(),
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105 (int)(s->code_end() - s->entry_point()),
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106 (int)(s->code_end() - __ pc()));
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107 }
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108 guarantee(__ pc() <= s->code_end(), "overflowed buffer");
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109 // shut the door on sizing bugs
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110 int slop = 3; // 32-bit offset is this much larger than an 8-bit one
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111 assert(vtable_index > 10 || __ pc() + slop <= s->code_end(), "room for 32-bit offset");
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112
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113 s->set_exception_points(npe_addr, ame_addr);
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114 return s;
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115 }
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116
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117
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118 VtableStub* VtableStubs::create_itable_stub(int itable_index) {
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119 // Note well: pd_code_size_limit is the absolute minimum we can get
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120 // away with. If you add code here, bump the code stub size
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121 // returned by pd_code_size_limit!
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122 const int amd64_code_length = VtableStub::pd_code_size_limit(false);
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123 VtableStub* s = new(amd64_code_length) VtableStub(false, itable_index);
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124 ResourceMark rm;
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125 CodeBuffer cb(s->entry_point(), amd64_code_length);
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126 MacroAssembler* masm = new MacroAssembler(&cb);
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127
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128 #ifndef PRODUCT
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129 if (CountCompiledCalls) {
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130 __ incrementl(ExternalAddress((address) SharedRuntime::nof_megamorphic_calls_addr()));
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131 }
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132 #endif
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133
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134 // Entry arguments:
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135 // rax: Interface
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136 // j_rarg0: Receiver
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137
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138 // Free registers (non-args) are rax (interface), rbx
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139
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140 // get receiver (need to skip return address on top of stack)
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141
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142 assert(VtableStub::receiver_location() == j_rarg0->as_VMReg(), "receiver expected in j_rarg0");
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143 // get receiver klass (also an implicit null-check)
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144 address npe_addr = __ pc();
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145
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146 // Most registers are in use; we'll use rax, rbx, r10, r11
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147 // (various calling sequences use r[cd]x, r[sd]i, r[89]; stay away from them)
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148 __ load_klass(r10, j_rarg0);
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149
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150 // If we take a trap while this arg is on the stack we will not
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151 // be able to walk the stack properly. This is not an issue except
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152 // when there are mistakes in this assembly code that could generate
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153 // a spurious fault. Ask me how I know...
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154
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155 const Register method = rbx;
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156 Label throw_icce;
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157
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158 // Get methodOop and entrypoint for compiler
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159 __ lookup_interface_method(// inputs: rec. class, interface, itable index
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160 r10, rax, itable_index,
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161 // outputs: method, scan temp. reg
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162 method, r11,
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163 throw_icce);
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164
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165 // method (rbx): methodOop
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166 // j_rarg0: receiver
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167
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168 #ifdef ASSERT
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169 if (DebugVtables) {
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170 Label L2;
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171 __ cmpptr(method, (int32_t)NULL_WORD);
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172 __ jcc(Assembler::equal, L2);
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173 __ cmpptr(Address(method, methodOopDesc::from_compiled_offset()), (int32_t)NULL_WORD);
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174 __ jcc(Assembler::notZero, L2);
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175 __ stop("compiler entrypoint is null");
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176 __ bind(L2);
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177 }
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178 #endif // ASSERT
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179
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180 // rbx: methodOop
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181 // j_rarg0: receiver
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182 address ame_addr = __ pc();
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183 __ jmp(Address(method, methodOopDesc::from_compiled_offset()));
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184
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185 __ bind(throw_icce);
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186 __ jump(RuntimeAddress(StubRoutines::throw_IncompatibleClassChangeError_entry()));
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187
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188 __ flush();
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189
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190 if (PrintMiscellaneous && (WizardMode || Verbose)) {
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191 tty->print_cr("itable #%d at "PTR_FORMAT"[%d] left over: %d",
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192 itable_index, s->entry_point(),
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193 (int)(s->code_end() - s->entry_point()),
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194 (int)(s->code_end() - __ pc()));
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195 }
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196 guarantee(__ pc() <= s->code_end(), "overflowed buffer");
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197 // shut the door on sizing bugs
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198 int slop = 3; // 32-bit offset is this much larger than an 8-bit one
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199 assert(itable_index > 10 || __ pc() + slop <= s->code_end(), "room for 32-bit offset");
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200
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201 s->set_exception_points(npe_addr, ame_addr);
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202 return s;
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203 }
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204
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205 int VtableStub::pd_code_size_limit(bool is_vtable_stub) {
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206 if (is_vtable_stub) {
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207 // Vtable stub size
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208 return (DebugVtables ? 512 : 24) + (CountCompiledCalls ? 13 : 0) +
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209 (UseCompressedOops ? 16 : 0); // 1 leaq can be 3 bytes + 1 long
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210 } else {
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211 // Itable stub size
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212 return (DebugVtables ? 512 : 74) + (CountCompiledCalls ? 13 : 0) +
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213 (UseCompressedOops ? 32 : 0); // 2 leaqs
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214 }
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215 // In order to tune these parameters, run the JVM with VM options
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216 // +PrintMiscellaneous and +WizardMode to see information about
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217 // actual itable stubs. Look for lines like this:
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218 // itable #1 at 0x5551212[71] left over: 3
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219 // Reduce the constants so that the "left over" number is >=3
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220 // for the common cases.
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221 // Do not aim at a left-over number of zero, because a
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222 // large vtable or itable index (>= 32) will require a 32-bit
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223 // immediate displacement instead of an 8-bit one.
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224 //
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225 // The JVM98 app. _202_jess has a megamorphic interface call.
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226 // The itable code looks like this:
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227 // Decoding VtableStub itbl[1]@12
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228 // mov 0x8(%rsi),%r10
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229 // mov 0x198(%r10),%r11d
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230 // lea 0x218(%r10,%r11,8),%r11
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231 // lea 0x8(%r10),%r10
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232 // mov (%r11),%rbx
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233 // cmp %rbx,%rax
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234 // je success
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235 // loop:
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236 // test %rbx,%rbx
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237 // je throw_icce
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238 // add $0x10,%r11
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239 // mov (%r11),%rbx
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240 // cmp %rbx,%rax
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241 // jne loop
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242 // success:
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243 // mov 0x8(%r11),%r11d
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244 // mov (%r10,%r11,1),%rbx
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245 // jmpq *0x60(%rbx)
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246 // throw_icce:
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247 // jmpq throw_ICCE_entry
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248 }
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249
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250 int VtableStub::pd_code_alignment() {
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251 return wordSize;
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252 }