annotate src/share/vm/c1/c1_FrameMap.cpp @ 1972:f95d63e2154a

6989984: Use standard include model for Hospot Summary: Replaced MakeDeps and the includeDB files with more standardized solutions. Reviewed-by: coleenp, kvn, kamg
author stefank
date Tue, 23 Nov 2010 13:22:55 -0800
parents 126ea7725993
children 7514897db238
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1 /*
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2 * Copyright (c) 2000, 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 "precompiled.hpp"
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26 #include "c1/c1_FrameMap.hpp"
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27 #include "c1/c1_LIR.hpp"
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28 #include "runtime/sharedRuntime.hpp"
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29 #ifdef TARGET_ARCH_x86
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30 # include "vmreg_x86.inline.hpp"
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31 #endif
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32 #ifdef TARGET_ARCH_sparc
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33 # include "vmreg_sparc.inline.hpp"
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34 #endif
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35 #ifdef TARGET_ARCH_zero
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36 # include "vmreg_zero.inline.hpp"
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37 #endif
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41 //-----------------------------------------------------
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42
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43 // Convert method signature into an array of BasicTypes for the arguments
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44 BasicTypeArray* FrameMap::signature_type_array_for(const ciMethod* method) {
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45 ciSignature* sig = method->signature();
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46 BasicTypeList* sta = new BasicTypeList(method->arg_size());
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47 // add receiver, if any
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48 if (!method->is_static()) sta->append(T_OBJECT);
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49 // add remaining arguments
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50 for (int i = 0; i < sig->count(); i++) {
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51 ciType* type = sig->type_at(i);
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52 BasicType t = type->basic_type();
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53 if (t == T_ARRAY) {
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54 t = T_OBJECT;
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55 }
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56 sta->append(t);
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57 }
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58 // done
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59 return sta;
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60 }
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61
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62
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63 CallingConvention* FrameMap::java_calling_convention(const BasicTypeArray* signature, bool outgoing) {
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64 // compute the size of the arguments first. The signature array
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65 // that java_calling_convention takes includes a T_VOID after double
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66 // work items but our signatures do not.
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67 int i;
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68 int sizeargs = 0;
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69 for (i = 0; i < signature->length(); i++) {
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70 sizeargs += type2size[signature->at(i)];
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71 }
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72
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73 BasicType* sig_bt = NEW_RESOURCE_ARRAY(BasicType, sizeargs);
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74 VMRegPair* regs = NEW_RESOURCE_ARRAY(VMRegPair, sizeargs);
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75 int sig_index = 0;
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76 for (i = 0; i < sizeargs; i++, sig_index++) {
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77 sig_bt[i] = signature->at(sig_index);
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78 if (sig_bt[i] == T_LONG || sig_bt[i] == T_DOUBLE) {
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79 sig_bt[i + 1] = T_VOID;
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80 i++;
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81 }
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82 }
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83
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84 intptr_t out_preserve = SharedRuntime::java_calling_convention(sig_bt, regs, sizeargs, outgoing);
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85 LIR_OprList* args = new LIR_OprList(signature->length());
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86 for (i = 0; i < sizeargs;) {
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87 BasicType t = sig_bt[i];
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88 assert(t != T_VOID, "should be skipping these");
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89
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90 LIR_Opr opr = map_to_opr(t, regs + i, outgoing);
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91 args->append(opr);
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92 if (opr->is_address()) {
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93 LIR_Address* addr = opr->as_address_ptr();
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94 assert(addr->disp() == (int)addr->disp(), "out of range value");
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95 out_preserve = MAX2(out_preserve, (intptr_t)addr->disp() / 4);
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96 }
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97 i += type2size[t];
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98 }
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99 assert(args->length() == signature->length(), "size mismatch");
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100 out_preserve += SharedRuntime::out_preserve_stack_slots();
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101
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102 if (outgoing) {
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103 // update the space reserved for arguments.
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104 update_reserved_argument_area_size(out_preserve * BytesPerWord);
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105 }
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106 return new CallingConvention(args, out_preserve);
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107 }
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108
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109
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110 CallingConvention* FrameMap::c_calling_convention(const BasicTypeArray* signature) {
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111 // compute the size of the arguments first. The signature array
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112 // that java_calling_convention takes includes a T_VOID after double
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113 // work items but our signatures do not.
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114 int i;
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115 int sizeargs = 0;
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116 for (i = 0; i < signature->length(); i++) {
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117 sizeargs += type2size[signature->at(i)];
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118 }
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119
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120 BasicType* sig_bt = NEW_RESOURCE_ARRAY(BasicType, sizeargs);
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121 VMRegPair* regs = NEW_RESOURCE_ARRAY(VMRegPair, sizeargs);
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122 int sig_index = 0;
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123 for (i = 0; i < sizeargs; i++, sig_index++) {
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124 sig_bt[i] = signature->at(sig_index);
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125 if (sig_bt[i] == T_LONG || sig_bt[i] == T_DOUBLE) {
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126 sig_bt[i + 1] = T_VOID;
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127 i++;
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128 }
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129 }
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130
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131 intptr_t out_preserve = SharedRuntime::c_calling_convention(sig_bt, regs, sizeargs);
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132 LIR_OprList* args = new LIR_OprList(signature->length());
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133 for (i = 0; i < sizeargs;) {
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134 BasicType t = sig_bt[i];
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135 assert(t != T_VOID, "should be skipping these");
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136
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137 // C calls are always outgoing
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138 bool outgoing = true;
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139 LIR_Opr opr = map_to_opr(t, regs + i, outgoing);
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140 // they might be of different types if for instance floating point
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141 // values are passed in cpu registers, but the sizes must match.
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142 assert(type2size[opr->type()] == type2size[t], "type mismatch");
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143 args->append(opr);
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144 if (opr->is_address()) {
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145 LIR_Address* addr = opr->as_address_ptr();
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146 out_preserve = MAX2(out_preserve, (intptr_t)addr->disp() / 4);
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147 }
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148 i += type2size[t];
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149 }
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150 assert(args->length() == signature->length(), "size mismatch");
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151 out_preserve += SharedRuntime::out_preserve_stack_slots();
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152 update_reserved_argument_area_size(out_preserve * BytesPerWord);
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153 return new CallingConvention(args, out_preserve);
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154 }
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155
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156
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157 //--------------------------------------------------------
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158 // FrameMap
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159 //--------------------------------------------------------
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160
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161 bool FrameMap::_init_done = false;
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162 Register FrameMap::_cpu_rnr2reg [FrameMap::nof_cpu_regs];
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163 int FrameMap::_cpu_reg2rnr [FrameMap::nof_cpu_regs];
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164
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165
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166 FrameMap::FrameMap(ciMethod* method, int monitors, int reserved_argument_area_size) {
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167 assert(_init_done, "should already be completed");
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168
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169 _framesize = -1;
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170 _num_spills = -1;
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171
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172 assert(monitors >= 0, "not set");
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173 _num_monitors = monitors;
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174 assert(reserved_argument_area_size >= 0, "not set");
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175 _reserved_argument_area_size = MAX2(4, reserved_argument_area_size) * BytesPerWord;
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176
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177 _argcount = method->arg_size();
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178 _argument_locations = new intArray(_argcount, -1);
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179 _incoming_arguments = java_calling_convention(signature_type_array_for(method), false);
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180 _oop_map_arg_count = _incoming_arguments->reserved_stack_slots();
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181
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182 int java_index = 0;
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183 for (int i = 0; i < _incoming_arguments->length(); i++) {
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184 LIR_Opr opr = _incoming_arguments->at(i);
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185 if (opr->is_address()) {
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186 LIR_Address* address = opr->as_address_ptr();
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187 _argument_locations->at_put(java_index, address->disp() - STACK_BIAS);
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188 _incoming_arguments->args()->at_put(i, LIR_OprFact::stack(java_index, as_BasicType(as_ValueType(address->type()))));
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189 }
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190 java_index += type2size[opr->type()];
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191 }
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192
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193 }
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194
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195
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196 bool FrameMap::finalize_frame(int nof_slots) {
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197 assert(nof_slots >= 0, "must be positive");
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198 assert(_num_spills == -1, "can only be set once");
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199 _num_spills = nof_slots;
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200 assert(_framesize == -1, "should only be calculated once");
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201 _framesize = round_to(in_bytes(sp_offset_for_monitor_base(0)) +
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202 _num_monitors * sizeof(BasicObjectLock) +
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203 sizeof(intptr_t) + // offset of deopt orig pc
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204 frame_pad_in_bytes,
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205 StackAlignmentInBytes) / 4;
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206 int java_index = 0;
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207 for (int i = 0; i < _incoming_arguments->length(); i++) {
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208 LIR_Opr opr = _incoming_arguments->at(i);
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209 if (opr->is_stack()) {
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210 _argument_locations->at_put(java_index, in_bytes(framesize_in_bytes()) +
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211 _argument_locations->at(java_index));
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212 }
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213 java_index += type2size[opr->type()];
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214 }
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215 // make sure it's expressible on the platform
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216 return validate_frame();
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217 }
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218
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219 VMReg FrameMap::sp_offset2vmreg(ByteSize offset) const {
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220 int offset_in_bytes = in_bytes(offset);
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221 assert(offset_in_bytes % 4 == 0, "must be multiple of 4 bytes");
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222 assert(offset_in_bytes / 4 < framesize() + oop_map_arg_count(), "out of range");
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223 return VMRegImpl::stack2reg(offset_in_bytes / 4);
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224 }
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225
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226
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227 bool FrameMap::location_for_sp_offset(ByteSize byte_offset_from_sp,
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228 Location::Type loc_type,
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229 Location* loc) const {
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230 int offset = in_bytes(byte_offset_from_sp);
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231 assert(offset >= 0, "incorrect offset");
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232 if (!Location::legal_offset_in_bytes(offset)) {
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233 return false;
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234 }
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235 Location tmp_loc = Location::new_stk_loc(loc_type, offset);
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236 *loc = tmp_loc;
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237 return true;
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238 }
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239
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240
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241 bool FrameMap::locations_for_slot (int index, Location::Type loc_type,
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242 Location* loc, Location* second) const {
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243 ByteSize offset_from_sp = sp_offset_for_slot(index);
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244 if (!location_for_sp_offset(offset_from_sp, loc_type, loc)) {
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245 return false;
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246 }
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247 if (second != NULL) {
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248 // two word item
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249 offset_from_sp = offset_from_sp + in_ByteSize(4);
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250 return location_for_sp_offset(offset_from_sp, loc_type, second);
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251 }
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252 return true;
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253 }
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254
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255 //////////////////////
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256 // Public accessors //
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257 //////////////////////
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258
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259
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260 ByteSize FrameMap::sp_offset_for_slot(const int index) const {
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261 if (index < argcount()) {
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262 int offset = _argument_locations->at(index);
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263 assert(offset != -1, "not a memory argument");
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264 assert(offset >= framesize() * 4, "argument inside of frame");
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265 return in_ByteSize(offset);
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266 }
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267 ByteSize offset = sp_offset_for_spill(index - argcount());
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268 assert(in_bytes(offset) < framesize() * 4, "spill outside of frame");
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269 return offset;
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270 }
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271
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272
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273 ByteSize FrameMap::sp_offset_for_double_slot(const int index) const {
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274 ByteSize offset = sp_offset_for_slot(index);
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275 if (index >= argcount()) {
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276 assert(in_bytes(offset) + 4 < framesize() * 4, "spill outside of frame");
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277 }
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278 return offset;
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279 }
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280
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281
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282 ByteSize FrameMap::sp_offset_for_spill(const int index) const {
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283 assert(index >= 0 && index < _num_spills, "out of range");
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284 int offset = round_to(first_available_sp_in_frame + _reserved_argument_area_size, sizeof(double)) +
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285 index * spill_slot_size_in_bytes;
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286 return in_ByteSize(offset);
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287 }
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288
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289 ByteSize FrameMap::sp_offset_for_monitor_base(const int index) const {
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290 int end_of_spills = round_to(first_available_sp_in_frame + _reserved_argument_area_size, sizeof(double)) +
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291 _num_spills * spill_slot_size_in_bytes;
304
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292 int offset = (int) round_to(end_of_spills, HeapWordSize) + index * sizeof(BasicObjectLock);
0
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293 return in_ByteSize(offset);
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294 }
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295
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296 ByteSize FrameMap::sp_offset_for_monitor_lock(int index) const {
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297 check_monitor_index(index);
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298 return sp_offset_for_monitor_base(index) + in_ByteSize(BasicObjectLock::lock_offset_in_bytes());;
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299 }
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300
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301 ByteSize FrameMap::sp_offset_for_monitor_object(int index) const {
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302 check_monitor_index(index);
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303 return sp_offset_for_monitor_base(index) + in_ByteSize(BasicObjectLock::obj_offset_in_bytes());
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304 }
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305
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306 void FrameMap::print_frame_layout() const {
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307 int svar;
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308 tty->print_cr("#####################################");
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309 tty->print_cr("Frame size in words %d", framesize());
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310
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311 if( _num_monitors > 0) {
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312 tty->print_cr("monitor [0]:%d | [%2d]:%d",
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313 in_bytes(sp_offset_for_monitor_base(0)),
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314 in_bytes(sp_offset_for_monitor_base(_num_monitors)));
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315 }
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316 if( _num_spills > 0) {
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317 svar = _num_spills - 1;
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318 if(svar == 0)
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319 tty->print_cr("spill [0]:%d", in_bytes(sp_offset_for_spill(0)));
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320 else
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321 tty->print_cr("spill [0]:%d | [%2d]:%d", in_bytes(sp_offset_for_spill(0)),
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322 svar,
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323 in_bytes(sp_offset_for_spill(svar)));
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324 }
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325 }
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326
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327
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328 // For OopMaps, map a local variable or spill index to an VMReg.
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329 // This is the offset from sp() in the frame of the slot for the index,
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330 // skewed by SharedInfo::stack0 to indicate a stack location (vs.a register.)
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331 //
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332 // C ABI size +
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333 // framesize + framesize +
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334 // stack0 stack0 stack0 0 <- VMReg->value()
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335 // | | | <registers> |
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336 // ..........|..............|..............|.............|
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337 // 0 1 2 3 | <C ABI area> | 4 5 6 ...... | <- local indices
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338 // ^ ^ sp()
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339 // | |
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340 // arguments non-argument locals
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341
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342
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343 VMReg FrameMap::regname(LIR_Opr opr) const {
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344 if (opr->is_single_cpu()) {
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345 assert(!opr->is_virtual(), "should not see virtual registers here");
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346 return opr->as_register()->as_VMReg();
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347 } else if (opr->is_single_stack()) {
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348 return sp_offset2vmreg(sp_offset_for_slot(opr->single_stack_ix()));
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349 } else if (opr->is_address()) {
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350 LIR_Address* addr = opr->as_address_ptr();
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351 assert(addr->base() == stack_pointer(), "sp based addressing only");
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352 return sp_offset2vmreg(in_ByteSize(addr->index()->as_jint()));
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353 }
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354 ShouldNotReachHere();
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355 return VMRegImpl::Bad();
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356 }
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357
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358
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359
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360
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361 // ------------ extra spill slots ---------------