annotate src/share/vm/opto/output.cpp @ 66:6dbf1a175d6b

6672848: (Escape Analysis) improve lock elimination with EA Summary: Remove lock/unlock MemBar nodes and specify locks in debug info for deoptimization. Reviewed-by: never
author kvn
date Fri, 14 Mar 2008 16:40:42 -0700
parents eac007780a58
children 885ed790ecf0
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1 /*
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2 * Copyright 1998-2007 Sun Microsystems, Inc. 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 Sun Microsystems, Inc., 4150 Network Circle, Santa Clara,
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20 * CA 95054 USA or visit www.sun.com if you need additional information or
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21 * have any 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/_output.cpp.incl"
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27
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28 extern uint size_java_to_interp();
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29 extern uint reloc_java_to_interp();
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30 extern uint size_exception_handler();
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31 extern uint size_deopt_handler();
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32
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33 #ifndef PRODUCT
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34 #define DEBUG_ARG(x) , x
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35 #else
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36 #define DEBUG_ARG(x)
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37 #endif
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38
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39 extern int emit_exception_handler(CodeBuffer &cbuf);
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40 extern int emit_deopt_handler(CodeBuffer &cbuf);
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41
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42 //------------------------------Output-----------------------------------------
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43 // Convert Nodes to instruction bits and pass off to the VM
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44 void Compile::Output() {
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45 // RootNode goes
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46 assert( _cfg->_broot->_nodes.size() == 0, "" );
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47
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48 // Initialize the space for the BufferBlob used to find and verify
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49 // instruction size in MachNode::emit_size()
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50 init_scratch_buffer_blob();
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51
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52 // Make sure I can find the Start Node
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53 Block_Array& bbs = _cfg->_bbs;
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54 Block *entry = _cfg->_blocks[1];
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55 Block *broot = _cfg->_broot;
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56
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57 const StartNode *start = entry->_nodes[0]->as_Start();
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58
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59 // Replace StartNode with prolog
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60 MachPrologNode *prolog = new (this) MachPrologNode();
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61 entry->_nodes.map( 0, prolog );
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62 bbs.map( prolog->_idx, entry );
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63 bbs.map( start->_idx, NULL ); // start is no longer in any block
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64
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65 // Virtual methods need an unverified entry point
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66
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67 if( is_osr_compilation() ) {
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68 if( PoisonOSREntry ) {
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69 // TODO: Should use a ShouldNotReachHereNode...
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70 _cfg->insert( broot, 0, new (this) MachBreakpointNode() );
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71 }
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72 } else {
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73 if( _method && !_method->flags().is_static() ) {
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74 // Insert unvalidated entry point
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75 _cfg->insert( broot, 0, new (this) MachUEPNode() );
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76 }
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77
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78 }
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79
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80
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81 // Break before main entry point
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82 if( (_method && _method->break_at_execute())
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83 #ifndef PRODUCT
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84 ||(OptoBreakpoint && is_method_compilation())
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85 ||(OptoBreakpointOSR && is_osr_compilation())
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86 ||(OptoBreakpointC2R && !_method)
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87 #endif
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88 ) {
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89 // checking for _method means that OptoBreakpoint does not apply to
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90 // runtime stubs or frame converters
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91 _cfg->insert( entry, 1, new (this) MachBreakpointNode() );
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92 }
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93
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94 // Insert epilogs before every return
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95 for( uint i=0; i<_cfg->_num_blocks; i++ ) {
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96 Block *b = _cfg->_blocks[i];
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97 if( !b->is_connector() && b->non_connector_successor(0) == _cfg->_broot ) { // Found a program exit point?
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98 Node *m = b->end();
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99 if( m->is_Mach() && m->as_Mach()->ideal_Opcode() != Op_Halt ) {
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100 MachEpilogNode *epilog = new (this) MachEpilogNode(m->as_Mach()->ideal_Opcode() == Op_Return);
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101 b->add_inst( epilog );
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102 bbs.map(epilog->_idx, b);
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103 //_regalloc->set_bad(epilog->_idx); // Already initialized this way.
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104 }
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105 }
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106 }
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107
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108 # ifdef ENABLE_ZAP_DEAD_LOCALS
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109 if ( ZapDeadCompiledLocals ) Insert_zap_nodes();
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110 # endif
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111
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112 ScheduleAndBundle();
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113
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114 #ifndef PRODUCT
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115 if (trace_opto_output()) {
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116 tty->print("\n---- After ScheduleAndBundle ----\n");
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117 for (uint i = 0; i < _cfg->_num_blocks; i++) {
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118 tty->print("\nBB#%03d:\n", i);
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119 Block *bb = _cfg->_blocks[i];
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120 for (uint j = 0; j < bb->_nodes.size(); j++) {
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121 Node *n = bb->_nodes[j];
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122 OptoReg::Name reg = _regalloc->get_reg_first(n);
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123 tty->print(" %-6s ", reg >= 0 && reg < REG_COUNT ? Matcher::regName[reg] : "");
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124 n->dump();
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125 }
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126 }
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127 }
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128 #endif
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129
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130 if (failing()) return;
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131
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132 BuildOopMaps();
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133
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134 if (failing()) return;
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135
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136 Fill_buffer();
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137 }
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138
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139 bool Compile::need_stack_bang(int frame_size_in_bytes) const {
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140 // Determine if we need to generate a stack overflow check.
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141 // Do it if the method is not a stub function and
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142 // has java calls or has frame size > vm_page_size/8.
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143 return (stub_function() == NULL &&
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144 (has_java_calls() || frame_size_in_bytes > os::vm_page_size()>>3));
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145 }
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146
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147 bool Compile::need_register_stack_bang() const {
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148 // Determine if we need to generate a register stack overflow check.
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149 // This is only used on architectures which have split register
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150 // and memory stacks (ie. IA64).
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151 // Bang if the method is not a stub function and has java calls
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152 return (stub_function() == NULL && has_java_calls());
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153 }
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154
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155 # ifdef ENABLE_ZAP_DEAD_LOCALS
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156
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157
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158 // In order to catch compiler oop-map bugs, we have implemented
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159 // a debugging mode called ZapDeadCompilerLocals.
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160 // This mode causes the compiler to insert a call to a runtime routine,
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161 // "zap_dead_locals", right before each place in compiled code
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162 // that could potentially be a gc-point (i.e., a safepoint or oop map point).
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163 // The runtime routine checks that locations mapped as oops are really
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164 // oops, that locations mapped as values do not look like oops,
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165 // and that locations mapped as dead are not used later
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166 // (by zapping them to an invalid address).
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167
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168 int Compile::_CompiledZap_count = 0;
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169
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170 void Compile::Insert_zap_nodes() {
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171 bool skip = false;
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172
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173
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174 // Dink with static counts because code code without the extra
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175 // runtime calls is MUCH faster for debugging purposes
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176
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177 if ( CompileZapFirst == 0 ) ; // nothing special
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178 else if ( CompileZapFirst > CompiledZap_count() ) skip = true;
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179 else if ( CompileZapFirst == CompiledZap_count() )
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180 warning("starting zap compilation after skipping");
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181
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182 if ( CompileZapLast == -1 ) ; // nothing special
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183 else if ( CompileZapLast < CompiledZap_count() ) skip = true;
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184 else if ( CompileZapLast == CompiledZap_count() )
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185 warning("about to compile last zap");
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186
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187 ++_CompiledZap_count; // counts skipped zaps, too
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188
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189 if ( skip ) return;
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190
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191
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192 if ( _method == NULL )
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193 return; // no safepoints/oopmaps emitted for calls in stubs,so we don't care
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194
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195 // Insert call to zap runtime stub before every node with an oop map
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196 for( uint i=0; i<_cfg->_num_blocks; i++ ) {
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197 Block *b = _cfg->_blocks[i];
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198 for ( uint j = 0; j < b->_nodes.size(); ++j ) {
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199 Node *n = b->_nodes[j];
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200
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201 // Determining if we should insert a zap-a-lot node in output.
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202 // We do that for all nodes that has oopmap info, except for calls
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203 // to allocation. Calls to allocation passes in the old top-of-eden pointer
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204 // and expect the C code to reset it. Hence, there can be no safepoints between
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205 // the inlined-allocation and the call to new_Java, etc.
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206 // We also cannot zap monitor calls, as they must hold the microlock
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207 // during the call to Zap, which also wants to grab the microlock.
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208 bool insert = n->is_MachSafePoint() && (n->as_MachSafePoint()->oop_map() != NULL);
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209 if ( insert ) { // it is MachSafePoint
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210 if ( !n->is_MachCall() ) {
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211 insert = false;
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212 } else if ( n->is_MachCall() ) {
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213 MachCallNode* call = n->as_MachCall();
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214 if (call->entry_point() == OptoRuntime::new_instance_Java() ||
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215 call->entry_point() == OptoRuntime::new_array_Java() ||
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216 call->entry_point() == OptoRuntime::multianewarray2_Java() ||
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217 call->entry_point() == OptoRuntime::multianewarray3_Java() ||
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218 call->entry_point() == OptoRuntime::multianewarray4_Java() ||
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219 call->entry_point() == OptoRuntime::multianewarray5_Java() ||
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220 call->entry_point() == OptoRuntime::slow_arraycopy_Java() ||
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221 call->entry_point() == OptoRuntime::complete_monitor_locking_Java()
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222 ) {
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223 insert = false;
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224 }
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225 }
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226 if (insert) {
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227 Node *zap = call_zap_node(n->as_MachSafePoint(), i);
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228 b->_nodes.insert( j, zap );
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229 _cfg->_bbs.map( zap->_idx, b );
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230 ++j;
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231 }
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232 }
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233 }
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234 }
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235 }
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236
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237
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238 Node* Compile::call_zap_node(MachSafePointNode* node_to_check, int block_no) {
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239 const TypeFunc *tf = OptoRuntime::zap_dead_locals_Type();
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240 CallStaticJavaNode* ideal_node =
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241 new (this, tf->domain()->cnt()) CallStaticJavaNode( tf,
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242 OptoRuntime::zap_dead_locals_stub(_method->flags().is_native()),
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243 "call zap dead locals stub", 0, TypePtr::BOTTOM);
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244 // We need to copy the OopMap from the site we're zapping at.
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245 // We have to make a copy, because the zap site might not be
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246 // a call site, and zap_dead is a call site.
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247 OopMap* clone = node_to_check->oop_map()->deep_copy();
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248
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249 // Add the cloned OopMap to the zap node
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250 ideal_node->set_oop_map(clone);
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251 return _matcher->match_sfpt(ideal_node);
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252 }
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253
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254 //------------------------------is_node_getting_a_safepoint--------------------
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255 bool Compile::is_node_getting_a_safepoint( Node* n) {
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256 // This code duplicates the logic prior to the call of add_safepoint
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257 // below in this file.
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258 if( n->is_MachSafePoint() ) return true;
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259 return false;
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260 }
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261
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262 # endif // ENABLE_ZAP_DEAD_LOCALS
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263
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264 //------------------------------compute_loop_first_inst_sizes------------------
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265 // Compute the size of first NumberOfLoopInstrToAlign instructions at head
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266 // of a loop. When aligning a loop we need to provide enough instructions
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267 // in cpu's fetch buffer to feed decoders. The loop alignment could be
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268 // avoided if we have enough instructions in fetch buffer at the head of a loop.
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269 // By default, the size is set to 999999 by Block's constructor so that
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270 // a loop will be aligned if the size is not reset here.
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271 //
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272 // Note: Mach instructions could contain several HW instructions
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273 // so the size is estimated only.
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274 //
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275 void Compile::compute_loop_first_inst_sizes() {
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276 // The next condition is used to gate the loop alignment optimization.
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277 // Don't aligned a loop if there are enough instructions at the head of a loop
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278 // or alignment padding is larger then MaxLoopPad. By default, MaxLoopPad
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279 // is equal to OptoLoopAlignment-1 except on new Intel cpus, where it is
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280 // equal to 11 bytes which is the largest address NOP instruction.
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281 if( MaxLoopPad < OptoLoopAlignment-1 ) {
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282 uint last_block = _cfg->_num_blocks-1;
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283 for( uint i=1; i <= last_block; i++ ) {
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284 Block *b = _cfg->_blocks[i];
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285 // Check the first loop's block which requires an alignment.
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286 if( b->head()->is_Loop() &&
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287 b->code_alignment() > (uint)relocInfo::addr_unit() ) {
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288 uint sum_size = 0;
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289 uint inst_cnt = NumberOfLoopInstrToAlign;
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290 inst_cnt = b->compute_first_inst_size(sum_size, inst_cnt,
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291 _regalloc);
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292 // Check the next fallthrough block if first loop's block does not have
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293 // enough instructions.
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294 if( inst_cnt > 0 && i < last_block ) {
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295 // First, check if the first loop's block contains whole loop.
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296 // LoopNode::LoopBackControl == 2.
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297 Block *bx = _cfg->_bbs[b->pred(2)->_idx];
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298 // Skip connector blocks (with limit in case of irreducible loops).
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299 int search_limit = 16;
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300 while( bx->is_connector() && search_limit-- > 0) {
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301 bx = _cfg->_bbs[bx->pred(1)->_idx];
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302 }
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303 if( bx != b ) { // loop body is in several blocks.
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304 Block *nb = NULL;
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305 while( inst_cnt > 0 && i < last_block && nb != bx &&
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306 !_cfg->_blocks[i+1]->head()->is_Loop() ) {
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307 i++;
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308 nb = _cfg->_blocks[i];
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309 inst_cnt = nb->compute_first_inst_size(sum_size, inst_cnt,
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310 _regalloc);
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311 } // while( inst_cnt > 0 && i < last_block )
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312 } // if( bx != b )
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313 } // if( inst_cnt > 0 && i < last_block )
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314 b->set_first_inst_size(sum_size);
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315 } // f( b->head()->is_Loop() )
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316 } // for( i <= last_block )
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317 } // if( MaxLoopPad < OptoLoopAlignment-1 )
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318 }
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319
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320 //----------------------Shorten_branches---------------------------------------
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321 // The architecture description provides short branch variants for some long
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322 // branch instructions. Replace eligible long branches with short branches.
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323 void Compile::Shorten_branches(Label *labels, int& code_size, int& reloc_size, int& stub_size, int& const_size) {
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324
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325 // fill in the nop array for bundling computations
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326 MachNode *_nop_list[Bundle::_nop_count];
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327 Bundle::initialize_nops(_nop_list, this);
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328
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329 // ------------------
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330 // Compute size of each block, method size, and relocation information size
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331 uint *jmp_end = NEW_RESOURCE_ARRAY(uint,_cfg->_num_blocks);
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332 uint *blk_starts = NEW_RESOURCE_ARRAY(uint,_cfg->_num_blocks+1);
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333 DEBUG_ONLY( uint *jmp_target = NEW_RESOURCE_ARRAY(uint,_cfg->_num_blocks); )
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334 blk_starts[0] = 0;
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335
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336 // Initialize the sizes to 0
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337 code_size = 0; // Size in bytes of generated code
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338 stub_size = 0; // Size in bytes of all stub entries
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339 // Size in bytes of all relocation entries, including those in local stubs.
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340 // Start with 2-bytes of reloc info for the unvalidated entry point
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341 reloc_size = 1; // Number of relocation entries
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342 const_size = 0; // size of fp constants in words
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343
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344 // Make three passes. The first computes pessimistic blk_starts,
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345 // relative jmp_end, reloc_size and const_size information.
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346 // The second performs short branch substitution using the pessimistic
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347 // sizing. The third inserts nops where needed.
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348
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349 Node *nj; // tmp
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350
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351 // Step one, perform a pessimistic sizing pass.
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352 uint i;
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353 uint min_offset_from_last_call = 1; // init to a positive value
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354 uint nop_size = (new (this) MachNopNode())->size(_regalloc);
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355 for( i=0; i<_cfg->_num_blocks; i++ ) { // For all blocks
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356 Block *b = _cfg->_blocks[i];
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357
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358 // Sum all instruction sizes to compute block size
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359 uint last_inst = b->_nodes.size();
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360 uint blk_size = 0;
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361 for( uint j = 0; j<last_inst; j++ ) {
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362 nj = b->_nodes[j];
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363 uint inst_size = nj->size(_regalloc);
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364 blk_size += inst_size;
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365 // Handle machine instruction nodes
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366 if( nj->is_Mach() ) {
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367 MachNode *mach = nj->as_Mach();
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368 blk_size += (mach->alignment_required() - 1) * relocInfo::addr_unit(); // assume worst case padding
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369 reloc_size += mach->reloc();
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370 const_size += mach->const_size();
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371 if( mach->is_MachCall() ) {
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372 MachCallNode *mcall = mach->as_MachCall();
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373 // This destination address is NOT PC-relative
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374
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375 mcall->method_set((intptr_t)mcall->entry_point());
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376
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377 if( mcall->is_MachCallJava() && mcall->as_MachCallJava()->_method ) {
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378 stub_size += size_java_to_interp();
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379 reloc_size += reloc_java_to_interp();
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380 }
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381 } else if (mach->is_MachSafePoint()) {
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382 // If call/safepoint are adjacent, account for possible
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383 // nop to disambiguate the two safepoints.
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384 if (min_offset_from_last_call == 0) {
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385 blk_size += nop_size;
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386 }
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387 }
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388 }
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389 min_offset_from_last_call += inst_size;
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390 // Remember end of call offset
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391 if (nj->is_MachCall() && nj->as_MachCall()->is_safepoint_node()) {
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392 min_offset_from_last_call = 0;
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393 }
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394 }
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395
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396 // During short branch replacement, we store the relative (to blk_starts)
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397 // end of jump in jmp_end, rather than the absolute end of jump. This
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398 // is so that we do not need to recompute sizes of all nodes when we compute
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399 // correct blk_starts in our next sizing pass.
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400 jmp_end[i] = blk_size;
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401 DEBUG_ONLY( jmp_target[i] = 0; )
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402
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403 // When the next block starts a loop, we may insert pad NOP
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404 // instructions. Since we cannot know our future alignment,
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405 // assume the worst.
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406 if( i<_cfg->_num_blocks-1 ) {
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407 Block *nb = _cfg->_blocks[i+1];
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408 int max_loop_pad = nb->code_alignment()-relocInfo::addr_unit();
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409 if( max_loop_pad > 0 ) {
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410 assert(is_power_of_2(max_loop_pad+relocInfo::addr_unit()), "");
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411 blk_size += max_loop_pad;
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412 }
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413 }
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414
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415 // Save block size; update total method size
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416 blk_starts[i+1] = blk_starts[i]+blk_size;
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417 }
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418
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419 // Step two, replace eligible long jumps.
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420
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421 // Note: this will only get the long branches within short branch
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422 // range. Another pass might detect more branches that became
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423 // candidates because the shortening in the first pass exposed
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424 // more opportunities. Unfortunately, this would require
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425 // recomputing the starting and ending positions for the blocks
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426 for( i=0; i<_cfg->_num_blocks; i++ ) {
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427 Block *b = _cfg->_blocks[i];
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428
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429 int j;
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430 // Find the branch; ignore trailing NOPs.
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431 for( j = b->_nodes.size()-1; j>=0; j-- ) {
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432 nj = b->_nodes[j];
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433 if( !nj->is_Mach() || nj->as_Mach()->ideal_Opcode() != Op_Con )
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diff changeset
434 break;
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parents:
diff changeset
435 }
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parents:
diff changeset
436
a61af66fc99e Initial load
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parents:
diff changeset
437 if (j >= 0) {
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parents:
diff changeset
438 if( nj->is_Mach() && nj->as_Mach()->may_be_short_branch() ) {
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parents:
diff changeset
439 MachNode *mach = nj->as_Mach();
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parents:
diff changeset
440 // This requires the TRUE branch target be in succs[0]
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parents:
diff changeset
441 uint bnum = b->non_connector_successor(0)->_pre_order;
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parents:
diff changeset
442 uintptr_t target = blk_starts[bnum];
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parents:
diff changeset
443 if( mach->is_pc_relative() ) {
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parents:
diff changeset
444 int offset = target-(blk_starts[i] + jmp_end[i]);
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parents:
diff changeset
445 if (_matcher->is_short_branch_offset(offset)) {
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parents:
diff changeset
446 // We've got a winner. Replace this branch.
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parents:
diff changeset
447 MachNode *replacement = mach->short_branch_version(this);
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parents:
diff changeset
448 b->_nodes.map(j, replacement);
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parents:
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449
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parents:
diff changeset
450 // Update the jmp_end size to save time in our
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parents:
diff changeset
451 // next pass.
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diff changeset
452 jmp_end[i] -= (mach->size(_regalloc) - replacement->size(_regalloc));
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diff changeset
453 DEBUG_ONLY( jmp_target[i] = bnum; );
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parents:
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454 }
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parents:
diff changeset
455 } else {
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456 #ifndef PRODUCT
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457 mach->dump(3);
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458 #endif
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diff changeset
459 Unimplemented();
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parents:
diff changeset
460 }
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parents:
diff changeset
461 }
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parents:
diff changeset
462 }
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parents:
diff changeset
463 }
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parents:
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464
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parents:
diff changeset
465 // Compute the size of first NumberOfLoopInstrToAlign instructions at head
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parents:
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466 // of a loop. It is used to determine the padding for loop alignment.
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467 compute_loop_first_inst_sizes();
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468
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parents:
diff changeset
469 // Step 3, compute the offsets of all the labels
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diff changeset
470 uint last_call_adr = max_uint;
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471 for( i=0; i<_cfg->_num_blocks; i++ ) { // For all blocks
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parents:
diff changeset
472 // copy the offset of the beginning to the corresponding label
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diff changeset
473 assert(labels[i].is_unused(), "cannot patch at this point");
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diff changeset
474 labels[i].bind_loc(blk_starts[i], CodeBuffer::SECT_INSTS);
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parents:
diff changeset
475
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parents:
diff changeset
476 // insert padding for any instructions that need it
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parents:
diff changeset
477 Block *b = _cfg->_blocks[i];
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parents:
diff changeset
478 uint last_inst = b->_nodes.size();
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diff changeset
479 uint adr = blk_starts[i];
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parents:
diff changeset
480 for( uint j = 0; j<last_inst; j++ ) {
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parents:
diff changeset
481 nj = b->_nodes[j];
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parents:
diff changeset
482 if( nj->is_Mach() ) {
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parents:
diff changeset
483 int padding = nj->as_Mach()->compute_padding(adr);
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parents:
diff changeset
484 // If call/safepoint are adjacent insert a nop (5010568)
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parents:
diff changeset
485 if (padding == 0 && nj->is_MachSafePoint() && !nj->is_MachCall() &&
a61af66fc99e Initial load
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parents:
diff changeset
486 adr == last_call_adr ) {
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parents:
diff changeset
487 padding = nop_size;
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parents:
diff changeset
488 }
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parents:
diff changeset
489 if(padding > 0) {
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parents:
diff changeset
490 assert((padding % nop_size) == 0, "padding is not a multiple of NOP size");
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parents:
diff changeset
491 int nops_cnt = padding / nop_size;
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parents:
diff changeset
492 MachNode *nop = new (this) MachNopNode(nops_cnt);
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parents:
diff changeset
493 b->_nodes.insert(j++, nop);
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parents:
diff changeset
494 _cfg->_bbs.map( nop->_idx, b );
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parents:
diff changeset
495 adr += padding;
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parents:
diff changeset
496 last_inst++;
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parents:
diff changeset
497 }
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parents:
diff changeset
498 }
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parents:
diff changeset
499 adr += nj->size(_regalloc);
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parents:
diff changeset
500
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parents:
diff changeset
501 // Remember end of call offset
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parents:
diff changeset
502 if (nj->is_MachCall() && nj->as_MachCall()->is_safepoint_node()) {
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parents:
diff changeset
503 last_call_adr = adr;
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parents:
diff changeset
504 }
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parents:
diff changeset
505 }
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parents:
diff changeset
506
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parents:
diff changeset
507 if ( i != _cfg->_num_blocks-1) {
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parents:
diff changeset
508 // Get the size of the block
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parents:
diff changeset
509 uint blk_size = adr - blk_starts[i];
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parents:
diff changeset
510
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parents:
diff changeset
511 // When the next block starts a loop, we may insert pad NOP
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parents:
diff changeset
512 // instructions.
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parents:
diff changeset
513 Block *nb = _cfg->_blocks[i+1];
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parents:
diff changeset
514 int current_offset = blk_starts[i] + blk_size;
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parents:
diff changeset
515 current_offset += nb->alignment_padding(current_offset);
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parents:
diff changeset
516 // Save block size; update total method size
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parents:
diff changeset
517 blk_starts[i+1] = current_offset;
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parents:
diff changeset
518 }
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parents:
diff changeset
519 }
a61af66fc99e Initial load
duke
parents:
diff changeset
520
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parents:
diff changeset
521 #ifdef ASSERT
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parents:
diff changeset
522 for( i=0; i<_cfg->_num_blocks; i++ ) { // For all blocks
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parents:
diff changeset
523 if( jmp_target[i] != 0 ) {
a61af66fc99e Initial load
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parents:
diff changeset
524 int offset = blk_starts[jmp_target[i]]-(blk_starts[i] + jmp_end[i]);
a61af66fc99e Initial load
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parents:
diff changeset
525 if (!_matcher->is_short_branch_offset(offset)) {
a61af66fc99e Initial load
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parents:
diff changeset
526 tty->print_cr("target (%d) - jmp_end(%d) = offset (%d), jmp_block B%d, target_block B%d", blk_starts[jmp_target[i]], blk_starts[i] + jmp_end[i], offset, i, jmp_target[i]);
a61af66fc99e Initial load
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parents:
diff changeset
527 }
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parents:
diff changeset
528 assert(_matcher->is_short_branch_offset(offset), "Displacement too large for short jmp");
a61af66fc99e Initial load
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parents:
diff changeset
529 }
a61af66fc99e Initial load
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parents:
diff changeset
530 }
a61af66fc99e Initial load
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parents:
diff changeset
531 #endif
a61af66fc99e Initial load
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parents:
diff changeset
532
a61af66fc99e Initial load
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parents:
diff changeset
533 // ------------------
a61af66fc99e Initial load
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parents:
diff changeset
534 // Compute size for code buffer
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parents:
diff changeset
535 code_size = blk_starts[i-1] + jmp_end[i-1];
a61af66fc99e Initial load
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parents:
diff changeset
536
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parents:
diff changeset
537 // Relocation records
a61af66fc99e Initial load
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parents:
diff changeset
538 reloc_size += 1; // Relo entry for exception handler
a61af66fc99e Initial load
duke
parents:
diff changeset
539
a61af66fc99e Initial load
duke
parents:
diff changeset
540 // Adjust reloc_size to number of record of relocation info
a61af66fc99e Initial load
duke
parents:
diff changeset
541 // Min is 2 bytes, max is probably 6 or 8, with a tax up to 25% for
a61af66fc99e Initial load
duke
parents:
diff changeset
542 // a relocation index.
a61af66fc99e Initial load
duke
parents:
diff changeset
543 // The CodeBuffer will expand the locs array if this estimate is too low.
a61af66fc99e Initial load
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parents:
diff changeset
544 reloc_size *= 10 / sizeof(relocInfo);
a61af66fc99e Initial load
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parents:
diff changeset
545
a61af66fc99e Initial load
duke
parents:
diff changeset
546 // Adjust const_size to number of bytes
a61af66fc99e Initial load
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parents:
diff changeset
547 const_size *= 2*jintSize; // both float and double take two words per entry
a61af66fc99e Initial load
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parents:
diff changeset
548
a61af66fc99e Initial load
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parents:
diff changeset
549 }
a61af66fc99e Initial load
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parents:
diff changeset
550
a61af66fc99e Initial load
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parents:
diff changeset
551 //------------------------------FillLocArray-----------------------------------
a61af66fc99e Initial load
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parents:
diff changeset
552 // Create a bit of debug info and append it to the array. The mapping is from
a61af66fc99e Initial load
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parents:
diff changeset
553 // Java local or expression stack to constant, register or stack-slot. For
a61af66fc99e Initial load
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parents:
diff changeset
554 // doubles, insert 2 mappings and return 1 (to tell the caller that the next
a61af66fc99e Initial load
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parents:
diff changeset
555 // entry has been taken care of and caller should skip it).
a61af66fc99e Initial load
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parents:
diff changeset
556 static LocationValue *new_loc_value( PhaseRegAlloc *ra, OptoReg::Name regnum, Location::Type l_type ) {
a61af66fc99e Initial load
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parents:
diff changeset
557 // This should never have accepted Bad before
a61af66fc99e Initial load
duke
parents:
diff changeset
558 assert(OptoReg::is_valid(regnum), "location must be valid");
a61af66fc99e Initial load
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parents:
diff changeset
559 return (OptoReg::is_reg(regnum))
a61af66fc99e Initial load
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parents:
diff changeset
560 ? new LocationValue(Location::new_reg_loc(l_type, OptoReg::as_VMReg(regnum)) )
a61af66fc99e Initial load
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parents:
diff changeset
561 : new LocationValue(Location::new_stk_loc(l_type, ra->reg2offset(regnum)));
a61af66fc99e Initial load
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parents:
diff changeset
562 }
a61af66fc99e Initial load
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parents:
diff changeset
563
63
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
564
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
565 ObjectValue*
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
566 Compile::sv_for_node_id(GrowableArray<ScopeValue*> *objs, int id) {
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
567 for (int i = 0; i < objs->length(); i++) {
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
568 assert(objs->at(i)->is_object(), "corrupt object cache");
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
569 ObjectValue* sv = (ObjectValue*) objs->at(i);
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
570 if (sv->id() == id) {
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
571 return sv;
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
572 }
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
573 }
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
574 // Otherwise..
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
575 return NULL;
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
576 }
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
577
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
578 void Compile::set_sv_for_object_node(GrowableArray<ScopeValue*> *objs,
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
579 ObjectValue* sv ) {
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
580 assert(sv_for_node_id(objs, sv->id()) == NULL, "Precondition");
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
581 objs->append(sv);
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
582 }
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
583
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
584
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
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parents: 28
diff changeset
585 void Compile::FillLocArray( int idx, MachSafePointNode* sfpt, Node *local,
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
586 GrowableArray<ScopeValue*> *array,
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
587 GrowableArray<ScopeValue*> *objs ) {
0
a61af66fc99e Initial load
duke
parents:
diff changeset
588 assert( local, "use _top instead of null" );
a61af66fc99e Initial load
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parents:
diff changeset
589 if (array->length() != idx) {
a61af66fc99e Initial load
duke
parents:
diff changeset
590 assert(array->length() == idx + 1, "Unexpected array count");
a61af66fc99e Initial load
duke
parents:
diff changeset
591 // Old functionality:
a61af66fc99e Initial load
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parents:
diff changeset
592 // return
a61af66fc99e Initial load
duke
parents:
diff changeset
593 // New functionality:
a61af66fc99e Initial load
duke
parents:
diff changeset
594 // Assert if the local is not top. In product mode let the new node
a61af66fc99e Initial load
duke
parents:
diff changeset
595 // override the old entry.
a61af66fc99e Initial load
duke
parents:
diff changeset
596 assert(local == top(), "LocArray collision");
a61af66fc99e Initial load
duke
parents:
diff changeset
597 if (local == top()) {
a61af66fc99e Initial load
duke
parents:
diff changeset
598 return;
a61af66fc99e Initial load
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parents:
diff changeset
599 }
a61af66fc99e Initial load
duke
parents:
diff changeset
600 array->pop();
a61af66fc99e Initial load
duke
parents:
diff changeset
601 }
a61af66fc99e Initial load
duke
parents:
diff changeset
602 const Type *t = local->bottom_type();
a61af66fc99e Initial load
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parents:
diff changeset
603
63
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
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parents: 28
diff changeset
604 // Is it a safepoint scalar object node?
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
605 if (local->is_SafePointScalarObject()) {
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
606 SafePointScalarObjectNode* spobj = local->as_SafePointScalarObject();
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
607
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
608 ObjectValue* sv = Compile::sv_for_node_id(objs, spobj->_idx);
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
609 if (sv == NULL) {
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
610 ciKlass* cik = t->is_oopptr()->klass();
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
611 assert(cik->is_instance_klass() ||
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
612 cik->is_array_klass(), "Not supported allocation.");
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
613 sv = new ObjectValue(spobj->_idx,
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
614 new ConstantOopWriteValue(cik->encoding()));
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
615 Compile::set_sv_for_object_node(objs, sv);
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
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parents: 28
diff changeset
616
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
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diff changeset
617 uint first_ind = spobj->first_index();
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
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parents: 28
diff changeset
618 for (uint i = 0; i < spobj->n_fields(); i++) {
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
619 Node* fld_node = sfpt->in(first_ind+i);
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
620 (void)FillLocArray(sv->field_values()->length(), sfpt, fld_node, sv->field_values(), objs);
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
621 }
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
622 }
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
623 array->append(sv);
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
624 return;
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
625 }
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
626
0
a61af66fc99e Initial load
duke
parents:
diff changeset
627 // Grab the register number for the local
a61af66fc99e Initial load
duke
parents:
diff changeset
628 OptoReg::Name regnum = _regalloc->get_reg_first(local);
a61af66fc99e Initial load
duke
parents:
diff changeset
629 if( OptoReg::is_valid(regnum) ) {// Got a register/stack?
a61af66fc99e Initial load
duke
parents:
diff changeset
630 // Record the double as two float registers.
a61af66fc99e Initial load
duke
parents:
diff changeset
631 // The register mask for such a value always specifies two adjacent
a61af66fc99e Initial load
duke
parents:
diff changeset
632 // float registers, with the lower register number even.
a61af66fc99e Initial load
duke
parents:
diff changeset
633 // Normally, the allocation of high and low words to these registers
a61af66fc99e Initial load
duke
parents:
diff changeset
634 // is irrelevant, because nearly all operations on register pairs
a61af66fc99e Initial load
duke
parents:
diff changeset
635 // (e.g., StoreD) treat them as a single unit.
a61af66fc99e Initial load
duke
parents:
diff changeset
636 // Here, we assume in addition that the words in these two registers
a61af66fc99e Initial load
duke
parents:
diff changeset
637 // stored "naturally" (by operations like StoreD and double stores
a61af66fc99e Initial load
duke
parents:
diff changeset
638 // within the interpreter) such that the lower-numbered register
a61af66fc99e Initial load
duke
parents:
diff changeset
639 // is written to the lower memory address. This may seem like
a61af66fc99e Initial load
duke
parents:
diff changeset
640 // a machine dependency, but it is not--it is a requirement on
a61af66fc99e Initial load
duke
parents:
diff changeset
641 // the author of the <arch>.ad file to ensure that, for every
a61af66fc99e Initial load
duke
parents:
diff changeset
642 // even/odd double-register pair to which a double may be allocated,
a61af66fc99e Initial load
duke
parents:
diff changeset
643 // the word in the even single-register is stored to the first
a61af66fc99e Initial load
duke
parents:
diff changeset
644 // memory word. (Note that register numbers are completely
a61af66fc99e Initial load
duke
parents:
diff changeset
645 // arbitrary, and are not tied to any machine-level encodings.)
a61af66fc99e Initial load
duke
parents:
diff changeset
646 #ifdef _LP64
a61af66fc99e Initial load
duke
parents:
diff changeset
647 if( t->base() == Type::DoubleBot || t->base() == Type::DoubleCon ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
648 array->append(new ConstantIntValue(0));
a61af66fc99e Initial load
duke
parents:
diff changeset
649 array->append(new_loc_value( _regalloc, regnum, Location::dbl ));
a61af66fc99e Initial load
duke
parents:
diff changeset
650 } else if ( t->base() == Type::Long ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
651 array->append(new ConstantIntValue(0));
a61af66fc99e Initial load
duke
parents:
diff changeset
652 array->append(new_loc_value( _regalloc, regnum, Location::lng ));
a61af66fc99e Initial load
duke
parents:
diff changeset
653 } else if ( t->base() == Type::RawPtr ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
654 // jsr/ret return address which must be restored into a the full
a61af66fc99e Initial load
duke
parents:
diff changeset
655 // width 64-bit stack slot.
a61af66fc99e Initial load
duke
parents:
diff changeset
656 array->append(new_loc_value( _regalloc, regnum, Location::lng ));
a61af66fc99e Initial load
duke
parents:
diff changeset
657 }
a61af66fc99e Initial load
duke
parents:
diff changeset
658 #else //_LP64
a61af66fc99e Initial load
duke
parents:
diff changeset
659 #ifdef SPARC
a61af66fc99e Initial load
duke
parents:
diff changeset
660 if (t->base() == Type::Long && OptoReg::is_reg(regnum)) {
a61af66fc99e Initial load
duke
parents:
diff changeset
661 // For SPARC we have to swap high and low words for
a61af66fc99e Initial load
duke
parents:
diff changeset
662 // long values stored in a single-register (g0-g7).
a61af66fc99e Initial load
duke
parents:
diff changeset
663 array->append(new_loc_value( _regalloc, regnum , Location::normal ));
a61af66fc99e Initial load
duke
parents:
diff changeset
664 array->append(new_loc_value( _regalloc, OptoReg::add(regnum,1), Location::normal ));
a61af66fc99e Initial load
duke
parents:
diff changeset
665 } else
a61af66fc99e Initial load
duke
parents:
diff changeset
666 #endif //SPARC
a61af66fc99e Initial load
duke
parents:
diff changeset
667 if( t->base() == Type::DoubleBot || t->base() == Type::DoubleCon || t->base() == Type::Long ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
668 // Repack the double/long as two jints.
a61af66fc99e Initial load
duke
parents:
diff changeset
669 // The convention the interpreter uses is that the second local
a61af66fc99e Initial load
duke
parents:
diff changeset
670 // holds the first raw word of the native double representation.
a61af66fc99e Initial load
duke
parents:
diff changeset
671 // This is actually reasonable, since locals and stack arrays
a61af66fc99e Initial load
duke
parents:
diff changeset
672 // grow downwards in all implementations.
a61af66fc99e Initial load
duke
parents:
diff changeset
673 // (If, on some machine, the interpreter's Java locals or stack
a61af66fc99e Initial load
duke
parents:
diff changeset
674 // were to grow upwards, the embedded doubles would be word-swapped.)
a61af66fc99e Initial load
duke
parents:
diff changeset
675 array->append(new_loc_value( _regalloc, OptoReg::add(regnum,1), Location::normal ));
a61af66fc99e Initial load
duke
parents:
diff changeset
676 array->append(new_loc_value( _regalloc, regnum , Location::normal ));
a61af66fc99e Initial load
duke
parents:
diff changeset
677 }
a61af66fc99e Initial load
duke
parents:
diff changeset
678 #endif //_LP64
a61af66fc99e Initial load
duke
parents:
diff changeset
679 else if( (t->base() == Type::FloatBot || t->base() == Type::FloatCon) &&
a61af66fc99e Initial load
duke
parents:
diff changeset
680 OptoReg::is_reg(regnum) ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
681 array->append(new_loc_value( _regalloc, regnum, Matcher::float_in_double
a61af66fc99e Initial load
duke
parents:
diff changeset
682 ? Location::float_in_dbl : Location::normal ));
a61af66fc99e Initial load
duke
parents:
diff changeset
683 } else if( t->base() == Type::Int && OptoReg::is_reg(regnum) ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
684 array->append(new_loc_value( _regalloc, regnum, Matcher::int_in_long
a61af66fc99e Initial load
duke
parents:
diff changeset
685 ? Location::int_in_long : Location::normal ));
a61af66fc99e Initial load
duke
parents:
diff changeset
686 } else {
a61af66fc99e Initial load
duke
parents:
diff changeset
687 array->append(new_loc_value( _regalloc, regnum, _regalloc->is_oop(local) ? Location::oop : Location::normal ));
a61af66fc99e Initial load
duke
parents:
diff changeset
688 }
a61af66fc99e Initial load
duke
parents:
diff changeset
689 return;
a61af66fc99e Initial load
duke
parents:
diff changeset
690 }
a61af66fc99e Initial load
duke
parents:
diff changeset
691
a61af66fc99e Initial load
duke
parents:
diff changeset
692 // No register. It must be constant data.
a61af66fc99e Initial load
duke
parents:
diff changeset
693 switch (t->base()) {
a61af66fc99e Initial load
duke
parents:
diff changeset
694 case Type::Half: // Second half of a double
a61af66fc99e Initial load
duke
parents:
diff changeset
695 ShouldNotReachHere(); // Caller should skip 2nd halves
a61af66fc99e Initial load
duke
parents:
diff changeset
696 break;
a61af66fc99e Initial load
duke
parents:
diff changeset
697 case Type::AnyPtr:
a61af66fc99e Initial load
duke
parents:
diff changeset
698 array->append(new ConstantOopWriteValue(NULL));
a61af66fc99e Initial load
duke
parents:
diff changeset
699 break;
a61af66fc99e Initial load
duke
parents:
diff changeset
700 case Type::AryPtr:
a61af66fc99e Initial load
duke
parents:
diff changeset
701 case Type::InstPtr:
a61af66fc99e Initial load
duke
parents:
diff changeset
702 case Type::KlassPtr: // fall through
a61af66fc99e Initial load
duke
parents:
diff changeset
703 array->append(new ConstantOopWriteValue(t->isa_oopptr()->const_oop()->encoding()));
a61af66fc99e Initial load
duke
parents:
diff changeset
704 break;
a61af66fc99e Initial load
duke
parents:
diff changeset
705 case Type::Int:
a61af66fc99e Initial load
duke
parents:
diff changeset
706 array->append(new ConstantIntValue(t->is_int()->get_con()));
a61af66fc99e Initial load
duke
parents:
diff changeset
707 break;
a61af66fc99e Initial load
duke
parents:
diff changeset
708 case Type::RawPtr:
a61af66fc99e Initial load
duke
parents:
diff changeset
709 // A return address (T_ADDRESS).
a61af66fc99e Initial load
duke
parents:
diff changeset
710 assert((intptr_t)t->is_ptr()->get_con() < (intptr_t)0x10000, "must be a valid BCI");
a61af66fc99e Initial load
duke
parents:
diff changeset
711 #ifdef _LP64
a61af66fc99e Initial load
duke
parents:
diff changeset
712 // Must be restored to the full-width 64-bit stack slot.
a61af66fc99e Initial load
duke
parents:
diff changeset
713 array->append(new ConstantLongValue(t->is_ptr()->get_con()));
a61af66fc99e Initial load
duke
parents:
diff changeset
714 #else
a61af66fc99e Initial load
duke
parents:
diff changeset
715 array->append(new ConstantIntValue(t->is_ptr()->get_con()));
a61af66fc99e Initial load
duke
parents:
diff changeset
716 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
717 break;
a61af66fc99e Initial load
duke
parents:
diff changeset
718 case Type::FloatCon: {
a61af66fc99e Initial load
duke
parents:
diff changeset
719 float f = t->is_float_constant()->getf();
a61af66fc99e Initial load
duke
parents:
diff changeset
720 array->append(new ConstantIntValue(jint_cast(f)));
a61af66fc99e Initial load
duke
parents:
diff changeset
721 break;
a61af66fc99e Initial load
duke
parents:
diff changeset
722 }
a61af66fc99e Initial load
duke
parents:
diff changeset
723 case Type::DoubleCon: {
a61af66fc99e Initial load
duke
parents:
diff changeset
724 jdouble d = t->is_double_constant()->getd();
a61af66fc99e Initial load
duke
parents:
diff changeset
725 #ifdef _LP64
a61af66fc99e Initial load
duke
parents:
diff changeset
726 array->append(new ConstantIntValue(0));
a61af66fc99e Initial load
duke
parents:
diff changeset
727 array->append(new ConstantDoubleValue(d));
a61af66fc99e Initial load
duke
parents:
diff changeset
728 #else
a61af66fc99e Initial load
duke
parents:
diff changeset
729 // Repack the double as two jints.
a61af66fc99e Initial load
duke
parents:
diff changeset
730 // The convention the interpreter uses is that the second local
a61af66fc99e Initial load
duke
parents:
diff changeset
731 // holds the first raw word of the native double representation.
a61af66fc99e Initial load
duke
parents:
diff changeset
732 // This is actually reasonable, since locals and stack arrays
a61af66fc99e Initial load
duke
parents:
diff changeset
733 // grow downwards in all implementations.
a61af66fc99e Initial load
duke
parents:
diff changeset
734 // (If, on some machine, the interpreter's Java locals or stack
a61af66fc99e Initial load
duke
parents:
diff changeset
735 // were to grow upwards, the embedded doubles would be word-swapped.)
a61af66fc99e Initial load
duke
parents:
diff changeset
736 jint *dp = (jint*)&d;
a61af66fc99e Initial load
duke
parents:
diff changeset
737 array->append(new ConstantIntValue(dp[1]));
a61af66fc99e Initial load
duke
parents:
diff changeset
738 array->append(new ConstantIntValue(dp[0]));
a61af66fc99e Initial load
duke
parents:
diff changeset
739 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
740 break;
a61af66fc99e Initial load
duke
parents:
diff changeset
741 }
a61af66fc99e Initial load
duke
parents:
diff changeset
742 case Type::Long: {
a61af66fc99e Initial load
duke
parents:
diff changeset
743 jlong d = t->is_long()->get_con();
a61af66fc99e Initial load
duke
parents:
diff changeset
744 #ifdef _LP64
a61af66fc99e Initial load
duke
parents:
diff changeset
745 array->append(new ConstantIntValue(0));
a61af66fc99e Initial load
duke
parents:
diff changeset
746 array->append(new ConstantLongValue(d));
a61af66fc99e Initial load
duke
parents:
diff changeset
747 #else
a61af66fc99e Initial load
duke
parents:
diff changeset
748 // Repack the long as two jints.
a61af66fc99e Initial load
duke
parents:
diff changeset
749 // The convention the interpreter uses is that the second local
a61af66fc99e Initial load
duke
parents:
diff changeset
750 // holds the first raw word of the native double representation.
a61af66fc99e Initial load
duke
parents:
diff changeset
751 // This is actually reasonable, since locals and stack arrays
a61af66fc99e Initial load
duke
parents:
diff changeset
752 // grow downwards in all implementations.
a61af66fc99e Initial load
duke
parents:
diff changeset
753 // (If, on some machine, the interpreter's Java locals or stack
a61af66fc99e Initial load
duke
parents:
diff changeset
754 // were to grow upwards, the embedded doubles would be word-swapped.)
a61af66fc99e Initial load
duke
parents:
diff changeset
755 jint *dp = (jint*)&d;
a61af66fc99e Initial load
duke
parents:
diff changeset
756 array->append(new ConstantIntValue(dp[1]));
a61af66fc99e Initial load
duke
parents:
diff changeset
757 array->append(new ConstantIntValue(dp[0]));
a61af66fc99e Initial load
duke
parents:
diff changeset
758 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
759 break;
a61af66fc99e Initial load
duke
parents:
diff changeset
760 }
a61af66fc99e Initial load
duke
parents:
diff changeset
761 case Type::Top: // Add an illegal value here
a61af66fc99e Initial load
duke
parents:
diff changeset
762 array->append(new LocationValue(Location()));
a61af66fc99e Initial load
duke
parents:
diff changeset
763 break;
a61af66fc99e Initial load
duke
parents:
diff changeset
764 default:
a61af66fc99e Initial load
duke
parents:
diff changeset
765 ShouldNotReachHere();
a61af66fc99e Initial load
duke
parents:
diff changeset
766 break;
a61af66fc99e Initial load
duke
parents:
diff changeset
767 }
a61af66fc99e Initial load
duke
parents:
diff changeset
768 }
a61af66fc99e Initial load
duke
parents:
diff changeset
769
a61af66fc99e Initial load
duke
parents:
diff changeset
770 // Determine if this node starts a bundle
a61af66fc99e Initial load
duke
parents:
diff changeset
771 bool Compile::starts_bundle(const Node *n) const {
a61af66fc99e Initial load
duke
parents:
diff changeset
772 return (_node_bundling_limit > n->_idx &&
a61af66fc99e Initial load
duke
parents:
diff changeset
773 _node_bundling_base[n->_idx].starts_bundle());
a61af66fc99e Initial load
duke
parents:
diff changeset
774 }
a61af66fc99e Initial load
duke
parents:
diff changeset
775
a61af66fc99e Initial load
duke
parents:
diff changeset
776 //--------------------------Process_OopMap_Node--------------------------------
a61af66fc99e Initial load
duke
parents:
diff changeset
777 void Compile::Process_OopMap_Node(MachNode *mach, int current_offset) {
a61af66fc99e Initial load
duke
parents:
diff changeset
778
a61af66fc99e Initial load
duke
parents:
diff changeset
779 // Handle special safepoint nodes for synchronization
a61af66fc99e Initial load
duke
parents:
diff changeset
780 MachSafePointNode *sfn = mach->as_MachSafePoint();
a61af66fc99e Initial load
duke
parents:
diff changeset
781 MachCallNode *mcall;
a61af66fc99e Initial load
duke
parents:
diff changeset
782
a61af66fc99e Initial load
duke
parents:
diff changeset
783 #ifdef ENABLE_ZAP_DEAD_LOCALS
a61af66fc99e Initial load
duke
parents:
diff changeset
784 assert( is_node_getting_a_safepoint(mach), "logic does not match; false negative");
a61af66fc99e Initial load
duke
parents:
diff changeset
785 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
786
a61af66fc99e Initial load
duke
parents:
diff changeset
787 int safepoint_pc_offset = current_offset;
a61af66fc99e Initial load
duke
parents:
diff changeset
788
a61af66fc99e Initial load
duke
parents:
diff changeset
789 // Add the safepoint in the DebugInfoRecorder
a61af66fc99e Initial load
duke
parents:
diff changeset
790 if( !mach->is_MachCall() ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
791 mcall = NULL;
a61af66fc99e Initial load
duke
parents:
diff changeset
792 debug_info()->add_safepoint(safepoint_pc_offset, sfn->_oop_map);
a61af66fc99e Initial load
duke
parents:
diff changeset
793 } else {
a61af66fc99e Initial load
duke
parents:
diff changeset
794 mcall = mach->as_MachCall();
a61af66fc99e Initial load
duke
parents:
diff changeset
795 safepoint_pc_offset += mcall->ret_addr_offset();
a61af66fc99e Initial load
duke
parents:
diff changeset
796 debug_info()->add_safepoint(safepoint_pc_offset, mcall->_oop_map);
a61af66fc99e Initial load
duke
parents:
diff changeset
797 }
a61af66fc99e Initial load
duke
parents:
diff changeset
798
a61af66fc99e Initial load
duke
parents:
diff changeset
799 // Loop over the JVMState list to add scope information
a61af66fc99e Initial load
duke
parents:
diff changeset
800 // Do not skip safepoints with a NULL method, they need monitor info
a61af66fc99e Initial load
duke
parents:
diff changeset
801 JVMState* youngest_jvms = sfn->jvms();
a61af66fc99e Initial load
duke
parents:
diff changeset
802 int max_depth = youngest_jvms->depth();
a61af66fc99e Initial load
duke
parents:
diff changeset
803
63
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
804 // Allocate the object pool for scalar-replaced objects -- the map from
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
805 // small-integer keys (which can be recorded in the local and ostack
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
806 // arrays) to descriptions of the object state.
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
807 GrowableArray<ScopeValue*> *objs = new GrowableArray<ScopeValue*>();
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
808
0
a61af66fc99e Initial load
duke
parents:
diff changeset
809 // Visit scopes from oldest to youngest.
a61af66fc99e Initial load
duke
parents:
diff changeset
810 for (int depth = 1; depth <= max_depth; depth++) {
a61af66fc99e Initial load
duke
parents:
diff changeset
811 JVMState* jvms = youngest_jvms->of_depth(depth);
a61af66fc99e Initial load
duke
parents:
diff changeset
812 int idx;
a61af66fc99e Initial load
duke
parents:
diff changeset
813 ciMethod* method = jvms->has_method() ? jvms->method() : NULL;
a61af66fc99e Initial load
duke
parents:
diff changeset
814 // Safepoints that do not have method() set only provide oop-map and monitor info
a61af66fc99e Initial load
duke
parents:
diff changeset
815 // to support GC; these do not support deoptimization.
a61af66fc99e Initial load
duke
parents:
diff changeset
816 int num_locs = (method == NULL) ? 0 : jvms->loc_size();
a61af66fc99e Initial load
duke
parents:
diff changeset
817 int num_exps = (method == NULL) ? 0 : jvms->stk_size();
a61af66fc99e Initial load
duke
parents:
diff changeset
818 int num_mon = jvms->nof_monitors();
a61af66fc99e Initial load
duke
parents:
diff changeset
819 assert(method == NULL || jvms->bci() < 0 || num_locs == method->max_locals(),
a61af66fc99e Initial load
duke
parents:
diff changeset
820 "JVMS local count must match that of the method");
a61af66fc99e Initial load
duke
parents:
diff changeset
821
a61af66fc99e Initial load
duke
parents:
diff changeset
822 // Add Local and Expression Stack Information
a61af66fc99e Initial load
duke
parents:
diff changeset
823
a61af66fc99e Initial load
duke
parents:
diff changeset
824 // Insert locals into the locarray
a61af66fc99e Initial load
duke
parents:
diff changeset
825 GrowableArray<ScopeValue*> *locarray = new GrowableArray<ScopeValue*>(num_locs);
a61af66fc99e Initial load
duke
parents:
diff changeset
826 for( idx = 0; idx < num_locs; idx++ ) {
63
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
827 FillLocArray( idx, sfn, sfn->local(jvms, idx), locarray, objs );
0
a61af66fc99e Initial load
duke
parents:
diff changeset
828 }
a61af66fc99e Initial load
duke
parents:
diff changeset
829
a61af66fc99e Initial load
duke
parents:
diff changeset
830 // Insert expression stack entries into the exparray
a61af66fc99e Initial load
duke
parents:
diff changeset
831 GrowableArray<ScopeValue*> *exparray = new GrowableArray<ScopeValue*>(num_exps);
a61af66fc99e Initial load
duke
parents:
diff changeset
832 for( idx = 0; idx < num_exps; idx++ ) {
63
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
833 FillLocArray( idx, sfn, sfn->stack(jvms, idx), exparray, objs );
0
a61af66fc99e Initial load
duke
parents:
diff changeset
834 }
a61af66fc99e Initial load
duke
parents:
diff changeset
835
a61af66fc99e Initial load
duke
parents:
diff changeset
836 // Add in mappings of the monitors
a61af66fc99e Initial load
duke
parents:
diff changeset
837 assert( !method ||
a61af66fc99e Initial load
duke
parents:
diff changeset
838 !method->is_synchronized() ||
a61af66fc99e Initial load
duke
parents:
diff changeset
839 method->is_native() ||
a61af66fc99e Initial load
duke
parents:
diff changeset
840 num_mon > 0 ||
a61af66fc99e Initial load
duke
parents:
diff changeset
841 !GenerateSynchronizationCode,
a61af66fc99e Initial load
duke
parents:
diff changeset
842 "monitors must always exist for synchronized methods");
a61af66fc99e Initial load
duke
parents:
diff changeset
843
a61af66fc99e Initial load
duke
parents:
diff changeset
844 // Build the growable array of ScopeValues for exp stack
a61af66fc99e Initial load
duke
parents:
diff changeset
845 GrowableArray<MonitorValue*> *monarray = new GrowableArray<MonitorValue*>(num_mon);
a61af66fc99e Initial load
duke
parents:
diff changeset
846
a61af66fc99e Initial load
duke
parents:
diff changeset
847 // Loop over monitors and insert into array
a61af66fc99e Initial load
duke
parents:
diff changeset
848 for(idx = 0; idx < num_mon; idx++) {
a61af66fc99e Initial load
duke
parents:
diff changeset
849 // Grab the node that defines this monitor
a61af66fc99e Initial load
duke
parents:
diff changeset
850 Node* box_node;
a61af66fc99e Initial load
duke
parents:
diff changeset
851 Node* obj_node;
a61af66fc99e Initial load
duke
parents:
diff changeset
852 box_node = sfn->monitor_box(jvms, idx);
a61af66fc99e Initial load
duke
parents:
diff changeset
853 obj_node = sfn->monitor_obj(jvms, idx);
a61af66fc99e Initial load
duke
parents:
diff changeset
854
a61af66fc99e Initial load
duke
parents:
diff changeset
855 // Create ScopeValue for object
a61af66fc99e Initial load
duke
parents:
diff changeset
856 ScopeValue *scval = NULL;
63
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
857
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
858 if( obj_node->is_SafePointScalarObject() ) {
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
859 SafePointScalarObjectNode* spobj = obj_node->as_SafePointScalarObject();
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
860 scval = Compile::sv_for_node_id(objs, spobj->_idx);
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
861 if (scval == NULL) {
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
862 const Type *t = obj_node->bottom_type();
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
863 ciKlass* cik = t->is_oopptr()->klass();
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
864 assert(cik->is_instance_klass() ||
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
865 cik->is_array_klass(), "Not supported allocation.");
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
866 ObjectValue* sv = new ObjectValue(spobj->_idx,
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
867 new ConstantOopWriteValue(cik->encoding()));
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
868 Compile::set_sv_for_object_node(objs, sv);
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
869
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
870 uint first_ind = spobj->first_index();
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
871 for (uint i = 0; i < spobj->n_fields(); i++) {
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
872 Node* fld_node = sfn->in(first_ind+i);
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
873 (void)FillLocArray(sv->field_values()->length(), sfn, fld_node, sv->field_values(), objs);
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
874 }
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
875 scval = sv;
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
876 }
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
877 } else if( !obj_node->is_Con() ) {
0
a61af66fc99e Initial load
duke
parents:
diff changeset
878 OptoReg::Name obj_reg = _regalloc->get_reg_first(obj_node);
a61af66fc99e Initial load
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parents:
diff changeset
879 scval = new_loc_value( _regalloc, obj_reg, Location::oop );
a61af66fc99e Initial load
duke
parents:
diff changeset
880 } else {
a61af66fc99e Initial load
duke
parents:
diff changeset
881 scval = new ConstantOopWriteValue(obj_node->bottom_type()->is_instptr()->const_oop()->encoding());
a61af66fc99e Initial load
duke
parents:
diff changeset
882 }
a61af66fc99e Initial load
duke
parents:
diff changeset
883
a61af66fc99e Initial load
duke
parents:
diff changeset
884 OptoReg::Name box_reg = BoxLockNode::stack_slot(box_node);
66
6dbf1a175d6b 6672848: (Escape Analysis) improve lock elimination with EA
kvn
parents: 63
diff changeset
885 Location basic_lock = Location::new_stk_loc(Location::normal,_regalloc->reg2offset(box_reg));
6dbf1a175d6b 6672848: (Escape Analysis) improve lock elimination with EA
kvn
parents: 63
diff changeset
886 monarray->append(new MonitorValue(scval, basic_lock, box_node->as_BoxLock()->is_eliminated()));
0
a61af66fc99e Initial load
duke
parents:
diff changeset
887 }
a61af66fc99e Initial load
duke
parents:
diff changeset
888
63
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
889 // We dump the object pool first, since deoptimization reads it in first.
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
890 debug_info()->dump_object_pool(objs);
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
891
0
a61af66fc99e Initial load
duke
parents:
diff changeset
892 // Build first class objects to pass to scope
a61af66fc99e Initial load
duke
parents:
diff changeset
893 DebugToken *locvals = debug_info()->create_scope_values(locarray);
a61af66fc99e Initial load
duke
parents:
diff changeset
894 DebugToken *expvals = debug_info()->create_scope_values(exparray);
a61af66fc99e Initial load
duke
parents:
diff changeset
895 DebugToken *monvals = debug_info()->create_monitor_values(monarray);
a61af66fc99e Initial load
duke
parents:
diff changeset
896
a61af66fc99e Initial load
duke
parents:
diff changeset
897 // Make method available for all Safepoints
a61af66fc99e Initial load
duke
parents:
diff changeset
898 ciMethod* scope_method = method ? method : _method;
a61af66fc99e Initial load
duke
parents:
diff changeset
899 // Describe the scope here
a61af66fc99e Initial load
duke
parents:
diff changeset
900 assert(jvms->bci() >= InvocationEntryBci && jvms->bci() <= 0x10000, "must be a valid or entry BCI");
63
eac007780a58 6671807: (Escape Analysis) Add new ideal node to represent the state of a scalarized object at a safepoint
kvn
parents: 28
diff changeset
901 // Now we can describe the scope.
0
a61af66fc99e Initial load
duke
parents:
diff changeset
902 debug_info()->describe_scope(safepoint_pc_offset,scope_method,jvms->bci(),locvals,expvals,monvals);
a61af66fc99e Initial load
duke
parents:
diff changeset
903 } // End jvms loop
a61af66fc99e Initial load
duke
parents:
diff changeset
904
a61af66fc99e Initial load
duke
parents:
diff changeset
905 // Mark the end of the scope set.
a61af66fc99e Initial load
duke
parents:
diff changeset
906 debug_info()->end_safepoint(safepoint_pc_offset);
a61af66fc99e Initial load
duke
parents:
diff changeset
907 }
a61af66fc99e Initial load
duke
parents:
diff changeset
908
a61af66fc99e Initial load
duke
parents:
diff changeset
909
a61af66fc99e Initial load
duke
parents:
diff changeset
910
a61af66fc99e Initial load
duke
parents:
diff changeset
911 // A simplified version of Process_OopMap_Node, to handle non-safepoints.
a61af66fc99e Initial load
duke
parents:
diff changeset
912 class NonSafepointEmitter {
a61af66fc99e Initial load
duke
parents:
diff changeset
913 Compile* C;
a61af66fc99e Initial load
duke
parents:
diff changeset
914 JVMState* _pending_jvms;
a61af66fc99e Initial load
duke
parents:
diff changeset
915 int _pending_offset;
a61af66fc99e Initial load
duke
parents:
diff changeset
916
a61af66fc99e Initial load
duke
parents:
diff changeset
917 void emit_non_safepoint();
a61af66fc99e Initial load
duke
parents:
diff changeset
918
a61af66fc99e Initial load
duke
parents:
diff changeset
919 public:
a61af66fc99e Initial load
duke
parents:
diff changeset
920 NonSafepointEmitter(Compile* compile) {
a61af66fc99e Initial load
duke
parents:
diff changeset
921 this->C = compile;
a61af66fc99e Initial load
duke
parents:
diff changeset
922 _pending_jvms = NULL;
a61af66fc99e Initial load
duke
parents:
diff changeset
923 _pending_offset = 0;
a61af66fc99e Initial load
duke
parents:
diff changeset
924 }
a61af66fc99e Initial load
duke
parents:
diff changeset
925
a61af66fc99e Initial load
duke
parents:
diff changeset
926 void observe_instruction(Node* n, int pc_offset) {
a61af66fc99e Initial load
duke
parents:
diff changeset
927 if (!C->debug_info()->recording_non_safepoints()) return;
a61af66fc99e Initial load
duke
parents:
diff changeset
928
a61af66fc99e Initial load
duke
parents:
diff changeset
929 Node_Notes* nn = C->node_notes_at(n->_idx);
a61af66fc99e Initial load
duke
parents:
diff changeset
930 if (nn == NULL || nn->jvms() == NULL) return;
a61af66fc99e Initial load
duke
parents:
diff changeset
931 if (_pending_jvms != NULL &&
a61af66fc99e Initial load
duke
parents:
diff changeset
932 _pending_jvms->same_calls_as(nn->jvms())) {
a61af66fc99e Initial load
duke
parents:
diff changeset
933 // Repeated JVMS? Stretch it up here.
a61af66fc99e Initial load
duke
parents:
diff changeset
934 _pending_offset = pc_offset;
a61af66fc99e Initial load
duke
parents:
diff changeset
935 } else {
a61af66fc99e Initial load
duke
parents:
diff changeset
936 if (_pending_jvms != NULL &&
a61af66fc99e Initial load
duke
parents:
diff changeset
937 _pending_offset < pc_offset) {
a61af66fc99e Initial load
duke
parents:
diff changeset
938 emit_non_safepoint();
a61af66fc99e Initial load
duke
parents:
diff changeset
939 }
a61af66fc99e Initial load
duke
parents:
diff changeset
940 _pending_jvms = NULL;
a61af66fc99e Initial load
duke
parents:
diff changeset
941 if (pc_offset > C->debug_info()->last_pc_offset()) {
a61af66fc99e Initial load
duke
parents:
diff changeset
942 // This is the only way _pending_jvms can become non-NULL:
a61af66fc99e Initial load
duke
parents:
diff changeset
943 _pending_jvms = nn->jvms();
a61af66fc99e Initial load
duke
parents:
diff changeset
944 _pending_offset = pc_offset;
a61af66fc99e Initial load
duke
parents:
diff changeset
945 }
a61af66fc99e Initial load
duke
parents:
diff changeset
946 }
a61af66fc99e Initial load
duke
parents:
diff changeset
947 }
a61af66fc99e Initial load
duke
parents:
diff changeset
948
a61af66fc99e Initial load
duke
parents:
diff changeset
949 // Stay out of the way of real safepoints:
a61af66fc99e Initial load
duke
parents:
diff changeset
950 void observe_safepoint(JVMState* jvms, int pc_offset) {
a61af66fc99e Initial load
duke
parents:
diff changeset
951 if (_pending_jvms != NULL &&
a61af66fc99e Initial load
duke
parents:
diff changeset
952 !_pending_jvms->same_calls_as(jvms) &&
a61af66fc99e Initial load
duke
parents:
diff changeset
953 _pending_offset < pc_offset) {
a61af66fc99e Initial load
duke
parents:
diff changeset
954 emit_non_safepoint();
a61af66fc99e Initial load
duke
parents:
diff changeset
955 }
a61af66fc99e Initial load
duke
parents:
diff changeset
956 _pending_jvms = NULL;
a61af66fc99e Initial load
duke
parents:
diff changeset
957 }
a61af66fc99e Initial load
duke
parents:
diff changeset
958
a61af66fc99e Initial load
duke
parents:
diff changeset
959 void flush_at_end() {
a61af66fc99e Initial load
duke
parents:
diff changeset
960 if (_pending_jvms != NULL) {
a61af66fc99e Initial load
duke
parents:
diff changeset
961 emit_non_safepoint();
a61af66fc99e Initial load
duke
parents:
diff changeset
962 }
a61af66fc99e Initial load
duke
parents:
diff changeset
963 _pending_jvms = NULL;
a61af66fc99e Initial load
duke
parents:
diff changeset
964 }
a61af66fc99e Initial load
duke
parents:
diff changeset
965 };
a61af66fc99e Initial load
duke
parents:
diff changeset
966
a61af66fc99e Initial load
duke
parents:
diff changeset
967 void NonSafepointEmitter::emit_non_safepoint() {
a61af66fc99e Initial load
duke
parents:
diff changeset
968 JVMState* youngest_jvms = _pending_jvms;
a61af66fc99e Initial load
duke
parents:
diff changeset
969 int pc_offset = _pending_offset;
a61af66fc99e Initial load
duke
parents:
diff changeset
970
a61af66fc99e Initial load
duke
parents:
diff changeset
971 // Clear it now:
a61af66fc99e Initial load
duke
parents:
diff changeset
972 _pending_jvms = NULL;
a61af66fc99e Initial load
duke
parents:
diff changeset
973
a61af66fc99e Initial load
duke
parents:
diff changeset
974 DebugInformationRecorder* debug_info = C->debug_info();
a61af66fc99e Initial load
duke
parents:
diff changeset
975 assert(debug_info->recording_non_safepoints(), "sanity");
a61af66fc99e Initial load
duke
parents:
diff changeset
976
a61af66fc99e Initial load
duke
parents:
diff changeset
977 debug_info->add_non_safepoint(pc_offset);
a61af66fc99e Initial load
duke
parents:
diff changeset
978 int max_depth = youngest_jvms->depth();
a61af66fc99e Initial load
duke
parents:
diff changeset
979
a61af66fc99e Initial load
duke
parents:
diff changeset
980 // Visit scopes from oldest to youngest.
a61af66fc99e Initial load
duke
parents:
diff changeset
981 for (int depth = 1; depth <= max_depth; depth++) {
a61af66fc99e Initial load
duke
parents:
diff changeset
982 JVMState* jvms = youngest_jvms->of_depth(depth);
a61af66fc99e Initial load
duke
parents:
diff changeset
983 ciMethod* method = jvms->has_method() ? jvms->method() : NULL;
a61af66fc99e Initial load
duke
parents:
diff changeset
984 debug_info->describe_scope(pc_offset, method, jvms->bci());
a61af66fc99e Initial load
duke
parents:
diff changeset
985 }
a61af66fc99e Initial load
duke
parents:
diff changeset
986
a61af66fc99e Initial load
duke
parents:
diff changeset
987 // Mark the end of the scope set.
a61af66fc99e Initial load
duke
parents:
diff changeset
988 debug_info->end_non_safepoint(pc_offset);
a61af66fc99e Initial load
duke
parents:
diff changeset
989 }
a61af66fc99e Initial load
duke
parents:
diff changeset
990
a61af66fc99e Initial load
duke
parents:
diff changeset
991
a61af66fc99e Initial load
duke
parents:
diff changeset
992
a61af66fc99e Initial load
duke
parents:
diff changeset
993 // helper for Fill_buffer bailout logic
a61af66fc99e Initial load
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parents:
diff changeset
994 static void turn_off_compiler(Compile* C) {
a61af66fc99e Initial load
duke
parents:
diff changeset
995 if (CodeCache::unallocated_capacity() >= CodeCacheMinimumFreeSpace*10) {
a61af66fc99e Initial load
duke
parents:
diff changeset
996 // Do not turn off compilation if a single giant method has
a61af66fc99e Initial load
duke
parents:
diff changeset
997 // blown the code cache size.
a61af66fc99e Initial load
duke
parents:
diff changeset
998 C->record_failure("excessive request to CodeCache");
a61af66fc99e Initial load
duke
parents:
diff changeset
999 } else {
28
67914967a4b5 6650373: Assert in methodOopDesc::make_adapters()
kvn
parents: 0
diff changeset
1000 // Let CompilerBroker disable further compilations.
0
a61af66fc99e Initial load
duke
parents:
diff changeset
1001 C->record_failure("CodeCache is full");
a61af66fc99e Initial load
duke
parents:
diff changeset
1002 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1003 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1004
a61af66fc99e Initial load
duke
parents:
diff changeset
1005
a61af66fc99e Initial load
duke
parents:
diff changeset
1006 //------------------------------Fill_buffer------------------------------------
a61af66fc99e Initial load
duke
parents:
diff changeset
1007 void Compile::Fill_buffer() {
a61af66fc99e Initial load
duke
parents:
diff changeset
1008
a61af66fc99e Initial load
duke
parents:
diff changeset
1009 // Set the initially allocated size
a61af66fc99e Initial load
duke
parents:
diff changeset
1010 int code_req = initial_code_capacity;
a61af66fc99e Initial load
duke
parents:
diff changeset
1011 int locs_req = initial_locs_capacity;
a61af66fc99e Initial load
duke
parents:
diff changeset
1012 int stub_req = TraceJumps ? initial_stub_capacity * 10 : initial_stub_capacity;
a61af66fc99e Initial load
duke
parents:
diff changeset
1013 int const_req = initial_const_capacity;
a61af66fc99e Initial load
duke
parents:
diff changeset
1014 bool labels_not_set = true;
a61af66fc99e Initial load
duke
parents:
diff changeset
1015
a61af66fc99e Initial load
duke
parents:
diff changeset
1016 int pad_req = NativeCall::instruction_size;
a61af66fc99e Initial load
duke
parents:
diff changeset
1017 // The extra spacing after the code is necessary on some platforms.
a61af66fc99e Initial load
duke
parents:
diff changeset
1018 // Sometimes we need to patch in a jump after the last instruction,
a61af66fc99e Initial load
duke
parents:
diff changeset
1019 // if the nmethod has been deoptimized. (See 4932387, 4894843.)
a61af66fc99e Initial load
duke
parents:
diff changeset
1020
a61af66fc99e Initial load
duke
parents:
diff changeset
1021 uint i;
a61af66fc99e Initial load
duke
parents:
diff changeset
1022 // Compute the byte offset where we can store the deopt pc.
a61af66fc99e Initial load
duke
parents:
diff changeset
1023 if (fixed_slots() != 0) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1024 _orig_pc_slot_offset_in_bytes = _regalloc->reg2offset(OptoReg::stack2reg(_orig_pc_slot));
a61af66fc99e Initial load
duke
parents:
diff changeset
1025 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1026
a61af66fc99e Initial load
duke
parents:
diff changeset
1027 // Compute prolog code size
a61af66fc99e Initial load
duke
parents:
diff changeset
1028 _method_size = 0;
a61af66fc99e Initial load
duke
parents:
diff changeset
1029 _frame_slots = OptoReg::reg2stack(_matcher->_old_SP)+_regalloc->_framesize;
a61af66fc99e Initial load
duke
parents:
diff changeset
1030 #ifdef IA64
a61af66fc99e Initial load
duke
parents:
diff changeset
1031 if (save_argument_registers()) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1032 // 4815101: this is a stub with implicit and unknown precision fp args.
a61af66fc99e Initial load
duke
parents:
diff changeset
1033 // The usual spill mechanism can only generate stfd's in this case, which
a61af66fc99e Initial load
duke
parents:
diff changeset
1034 // doesn't work if the fp reg to spill contains a single-precision denorm.
a61af66fc99e Initial load
duke
parents:
diff changeset
1035 // Instead, we hack around the normal spill mechanism using stfspill's and
a61af66fc99e Initial load
duke
parents:
diff changeset
1036 // ldffill's in the MachProlog and MachEpilog emit methods. We allocate
a61af66fc99e Initial load
duke
parents:
diff changeset
1037 // space here for the fp arg regs (f8-f15) we're going to thusly spill.
a61af66fc99e Initial load
duke
parents:
diff changeset
1038 //
a61af66fc99e Initial load
duke
parents:
diff changeset
1039 // If we ever implement 16-byte 'registers' == stack slots, we can
a61af66fc99e Initial load
duke
parents:
diff changeset
1040 // get rid of this hack and have SpillCopy generate stfspill/ldffill
a61af66fc99e Initial load
duke
parents:
diff changeset
1041 // instead of stfd/stfs/ldfd/ldfs.
a61af66fc99e Initial load
duke
parents:
diff changeset
1042 _frame_slots += 8*(16/BytesPerInt);
a61af66fc99e Initial load
duke
parents:
diff changeset
1043 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1044 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
1045 assert( _frame_slots >= 0 && _frame_slots < 1000000, "sanity check" );
a61af66fc99e Initial load
duke
parents:
diff changeset
1046
a61af66fc99e Initial load
duke
parents:
diff changeset
1047 // Create an array of unused labels, one for each basic block
a61af66fc99e Initial load
duke
parents:
diff changeset
1048 Label *blk_labels = NEW_RESOURCE_ARRAY(Label, _cfg->_num_blocks+1);
a61af66fc99e Initial load
duke
parents:
diff changeset
1049
a61af66fc99e Initial load
duke
parents:
diff changeset
1050 for( i=0; i <= _cfg->_num_blocks; i++ ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1051 blk_labels[i].init();
a61af66fc99e Initial load
duke
parents:
diff changeset
1052 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1053
a61af66fc99e Initial load
duke
parents:
diff changeset
1054 // If this machine supports different size branch offsets, then pre-compute
a61af66fc99e Initial load
duke
parents:
diff changeset
1055 // the length of the blocks
a61af66fc99e Initial load
duke
parents:
diff changeset
1056 if( _matcher->is_short_branch_offset(0) ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1057 Shorten_branches(blk_labels, code_req, locs_req, stub_req, const_req);
a61af66fc99e Initial load
duke
parents:
diff changeset
1058 labels_not_set = false;
a61af66fc99e Initial load
duke
parents:
diff changeset
1059 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1060
a61af66fc99e Initial load
duke
parents:
diff changeset
1061 // nmethod and CodeBuffer count stubs & constants as part of method's code.
a61af66fc99e Initial load
duke
parents:
diff changeset
1062 int exception_handler_req = size_exception_handler();
a61af66fc99e Initial load
duke
parents:
diff changeset
1063 int deopt_handler_req = size_deopt_handler();
a61af66fc99e Initial load
duke
parents:
diff changeset
1064 exception_handler_req += MAX_stubs_size; // add marginal slop for handler
a61af66fc99e Initial load
duke
parents:
diff changeset
1065 deopt_handler_req += MAX_stubs_size; // add marginal slop for handler
a61af66fc99e Initial load
duke
parents:
diff changeset
1066 stub_req += MAX_stubs_size; // ensure per-stub margin
a61af66fc99e Initial load
duke
parents:
diff changeset
1067 code_req += MAX_inst_size; // ensure per-instruction margin
a61af66fc99e Initial load
duke
parents:
diff changeset
1068 if (StressCodeBuffers)
a61af66fc99e Initial load
duke
parents:
diff changeset
1069 code_req = const_req = stub_req = exception_handler_req = deopt_handler_req = 0x10; // force expansion
a61af66fc99e Initial load
duke
parents:
diff changeset
1070 int total_req = code_req + pad_req + stub_req + exception_handler_req + deopt_handler_req + const_req;
a61af66fc99e Initial load
duke
parents:
diff changeset
1071 CodeBuffer* cb = code_buffer();
a61af66fc99e Initial load
duke
parents:
diff changeset
1072 cb->initialize(total_req, locs_req);
a61af66fc99e Initial load
duke
parents:
diff changeset
1073
a61af66fc99e Initial load
duke
parents:
diff changeset
1074 // Have we run out of code space?
a61af66fc99e Initial load
duke
parents:
diff changeset
1075 if (cb->blob() == NULL) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1076 turn_off_compiler(this);
a61af66fc99e Initial load
duke
parents:
diff changeset
1077 return;
a61af66fc99e Initial load
duke
parents:
diff changeset
1078 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1079 // Configure the code buffer.
a61af66fc99e Initial load
duke
parents:
diff changeset
1080 cb->initialize_consts_size(const_req);
a61af66fc99e Initial load
duke
parents:
diff changeset
1081 cb->initialize_stubs_size(stub_req);
a61af66fc99e Initial load
duke
parents:
diff changeset
1082 cb->initialize_oop_recorder(env()->oop_recorder());
a61af66fc99e Initial load
duke
parents:
diff changeset
1083
a61af66fc99e Initial load
duke
parents:
diff changeset
1084 // fill in the nop array for bundling computations
a61af66fc99e Initial load
duke
parents:
diff changeset
1085 MachNode *_nop_list[Bundle::_nop_count];
a61af66fc99e Initial load
duke
parents:
diff changeset
1086 Bundle::initialize_nops(_nop_list, this);
a61af66fc99e Initial load
duke
parents:
diff changeset
1087
a61af66fc99e Initial load
duke
parents:
diff changeset
1088 // Create oopmap set.
a61af66fc99e Initial load
duke
parents:
diff changeset
1089 _oop_map_set = new OopMapSet();
a61af66fc99e Initial load
duke
parents:
diff changeset
1090
a61af66fc99e Initial load
duke
parents:
diff changeset
1091 // !!!!! This preserves old handling of oopmaps for now
a61af66fc99e Initial load
duke
parents:
diff changeset
1092 debug_info()->set_oopmaps(_oop_map_set);
a61af66fc99e Initial load
duke
parents:
diff changeset
1093
a61af66fc99e Initial load
duke
parents:
diff changeset
1094 // Count and start of implicit null check instructions
a61af66fc99e Initial load
duke
parents:
diff changeset
1095 uint inct_cnt = 0;
a61af66fc99e Initial load
duke
parents:
diff changeset
1096 uint *inct_starts = NEW_RESOURCE_ARRAY(uint, _cfg->_num_blocks+1);
a61af66fc99e Initial load
duke
parents:
diff changeset
1097
a61af66fc99e Initial load
duke
parents:
diff changeset
1098 // Count and start of calls
a61af66fc99e Initial load
duke
parents:
diff changeset
1099 uint *call_returns = NEW_RESOURCE_ARRAY(uint, _cfg->_num_blocks+1);
a61af66fc99e Initial load
duke
parents:
diff changeset
1100
a61af66fc99e Initial load
duke
parents:
diff changeset
1101 uint return_offset = 0;
a61af66fc99e Initial load
duke
parents:
diff changeset
1102 MachNode *nop = new (this) MachNopNode();
a61af66fc99e Initial load
duke
parents:
diff changeset
1103
a61af66fc99e Initial load
duke
parents:
diff changeset
1104 int previous_offset = 0;
a61af66fc99e Initial load
duke
parents:
diff changeset
1105 int current_offset = 0;
a61af66fc99e Initial load
duke
parents:
diff changeset
1106 int last_call_offset = -1;
a61af66fc99e Initial load
duke
parents:
diff changeset
1107
a61af66fc99e Initial load
duke
parents:
diff changeset
1108 // Create an array of unused labels, one for each basic block, if printing is enabled
a61af66fc99e Initial load
duke
parents:
diff changeset
1109 #ifndef PRODUCT
a61af66fc99e Initial load
duke
parents:
diff changeset
1110 int *node_offsets = NULL;
a61af66fc99e Initial load
duke
parents:
diff changeset
1111 uint node_offset_limit = unique();
a61af66fc99e Initial load
duke
parents:
diff changeset
1112
a61af66fc99e Initial load
duke
parents:
diff changeset
1113
a61af66fc99e Initial load
duke
parents:
diff changeset
1114 if ( print_assembly() )
a61af66fc99e Initial load
duke
parents:
diff changeset
1115 node_offsets = NEW_RESOURCE_ARRAY(int, node_offset_limit);
a61af66fc99e Initial load
duke
parents:
diff changeset
1116 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
1117
a61af66fc99e Initial load
duke
parents:
diff changeset
1118 NonSafepointEmitter non_safepoints(this); // emit non-safepoints lazily
a61af66fc99e Initial load
duke
parents:
diff changeset
1119
a61af66fc99e Initial load
duke
parents:
diff changeset
1120 // ------------------
a61af66fc99e Initial load
duke
parents:
diff changeset
1121 // Now fill in the code buffer
a61af66fc99e Initial load
duke
parents:
diff changeset
1122 Node *delay_slot = NULL;
a61af66fc99e Initial load
duke
parents:
diff changeset
1123
a61af66fc99e Initial load
duke
parents:
diff changeset
1124 for( i=0; i < _cfg->_num_blocks; i++ ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1125 Block *b = _cfg->_blocks[i];
a61af66fc99e Initial load
duke
parents:
diff changeset
1126
a61af66fc99e Initial load
duke
parents:
diff changeset
1127 Node *head = b->head();
a61af66fc99e Initial load
duke
parents:
diff changeset
1128
a61af66fc99e Initial load
duke
parents:
diff changeset
1129 // If this block needs to start aligned (i.e, can be reached other
a61af66fc99e Initial load
duke
parents:
diff changeset
1130 // than by falling-thru from the previous block), then force the
a61af66fc99e Initial load
duke
parents:
diff changeset
1131 // start of a new bundle.
a61af66fc99e Initial load
duke
parents:
diff changeset
1132 if( Pipeline::requires_bundling() && starts_bundle(head) )
a61af66fc99e Initial load
duke
parents:
diff changeset
1133 cb->flush_bundle(true);
a61af66fc99e Initial load
duke
parents:
diff changeset
1134
a61af66fc99e Initial load
duke
parents:
diff changeset
1135 // Define the label at the beginning of the basic block
a61af66fc99e Initial load
duke
parents:
diff changeset
1136 if( labels_not_set )
a61af66fc99e Initial load
duke
parents:
diff changeset
1137 MacroAssembler(cb).bind( blk_labels[b->_pre_order] );
a61af66fc99e Initial load
duke
parents:
diff changeset
1138
a61af66fc99e Initial load
duke
parents:
diff changeset
1139 else
a61af66fc99e Initial load
duke
parents:
diff changeset
1140 assert( blk_labels[b->_pre_order].loc_pos() == cb->code_size(),
a61af66fc99e Initial load
duke
parents:
diff changeset
1141 "label position does not match code offset" );
a61af66fc99e Initial load
duke
parents:
diff changeset
1142
a61af66fc99e Initial load
duke
parents:
diff changeset
1143 uint last_inst = b->_nodes.size();
a61af66fc99e Initial load
duke
parents:
diff changeset
1144
a61af66fc99e Initial load
duke
parents:
diff changeset
1145 // Emit block normally, except for last instruction.
a61af66fc99e Initial load
duke
parents:
diff changeset
1146 // Emit means "dump code bits into code buffer".
a61af66fc99e Initial load
duke
parents:
diff changeset
1147 for( uint j = 0; j<last_inst; j++ ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1148
a61af66fc99e Initial load
duke
parents:
diff changeset
1149 // Get the node
a61af66fc99e Initial load
duke
parents:
diff changeset
1150 Node* n = b->_nodes[j];
a61af66fc99e Initial load
duke
parents:
diff changeset
1151
a61af66fc99e Initial load
duke
parents:
diff changeset
1152 // See if delay slots are supported
a61af66fc99e Initial load
duke
parents:
diff changeset
1153 if (valid_bundle_info(n) &&
a61af66fc99e Initial load
duke
parents:
diff changeset
1154 node_bundling(n)->used_in_unconditional_delay()) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1155 assert(delay_slot == NULL, "no use of delay slot node");
a61af66fc99e Initial load
duke
parents:
diff changeset
1156 assert(n->size(_regalloc) == Pipeline::instr_unit_size(), "delay slot instruction wrong size");
a61af66fc99e Initial load
duke
parents:
diff changeset
1157
a61af66fc99e Initial load
duke
parents:
diff changeset
1158 delay_slot = n;
a61af66fc99e Initial load
duke
parents:
diff changeset
1159 continue;
a61af66fc99e Initial load
duke
parents:
diff changeset
1160 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1161
a61af66fc99e Initial load
duke
parents:
diff changeset
1162 // If this starts a new instruction group, then flush the current one
a61af66fc99e Initial load
duke
parents:
diff changeset
1163 // (but allow split bundles)
a61af66fc99e Initial load
duke
parents:
diff changeset
1164 if( Pipeline::requires_bundling() && starts_bundle(n) )
a61af66fc99e Initial load
duke
parents:
diff changeset
1165 cb->flush_bundle(false);
a61af66fc99e Initial load
duke
parents:
diff changeset
1166
a61af66fc99e Initial load
duke
parents:
diff changeset
1167 // The following logic is duplicated in the code ifdeffed for
a61af66fc99e Initial load
duke
parents:
diff changeset
1168 // ENABLE_ZAP_DEAD_LOCALS which apppears above in this file. It
a61af66fc99e Initial load
duke
parents:
diff changeset
1169 // should be factored out. Or maybe dispersed to the nodes?
a61af66fc99e Initial load
duke
parents:
diff changeset
1170
a61af66fc99e Initial load
duke
parents:
diff changeset
1171 // Special handling for SafePoint/Call Nodes
a61af66fc99e Initial load
duke
parents:
diff changeset
1172 bool is_mcall = false;
a61af66fc99e Initial load
duke
parents:
diff changeset
1173 if( n->is_Mach() ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1174 MachNode *mach = n->as_Mach();
a61af66fc99e Initial load
duke
parents:
diff changeset
1175 is_mcall = n->is_MachCall();
a61af66fc99e Initial load
duke
parents:
diff changeset
1176 bool is_sfn = n->is_MachSafePoint();
a61af66fc99e Initial load
duke
parents:
diff changeset
1177
a61af66fc99e Initial load
duke
parents:
diff changeset
1178 // If this requires all previous instructions be flushed, then do so
a61af66fc99e Initial load
duke
parents:
diff changeset
1179 if( is_sfn || is_mcall || mach->alignment_required() != 1) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1180 cb->flush_bundle(true);
a61af66fc99e Initial load
duke
parents:
diff changeset
1181 current_offset = cb->code_size();
a61af66fc99e Initial load
duke
parents:
diff changeset
1182 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1183
a61af66fc99e Initial load
duke
parents:
diff changeset
1184 // align the instruction if necessary
a61af66fc99e Initial load
duke
parents:
diff changeset
1185 int nop_size = nop->size(_regalloc);
a61af66fc99e Initial load
duke
parents:
diff changeset
1186 int padding = mach->compute_padding(current_offset);
a61af66fc99e Initial load
duke
parents:
diff changeset
1187 // Make sure safepoint node for polling is distinct from a call's
a61af66fc99e Initial load
duke
parents:
diff changeset
1188 // return by adding a nop if needed.
a61af66fc99e Initial load
duke
parents:
diff changeset
1189 if (is_sfn && !is_mcall && padding == 0 && current_offset == last_call_offset ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1190 padding = nop_size;
a61af66fc99e Initial load
duke
parents:
diff changeset
1191 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1192 assert( labels_not_set || padding == 0, "instruction should already be aligned")
a61af66fc99e Initial load
duke
parents:
diff changeset
1193
a61af66fc99e Initial load
duke
parents:
diff changeset
1194 if(padding > 0) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1195 assert((padding % nop_size) == 0, "padding is not a multiple of NOP size");
a61af66fc99e Initial load
duke
parents:
diff changeset
1196 int nops_cnt = padding / nop_size;
a61af66fc99e Initial load
duke
parents:
diff changeset
1197 MachNode *nop = new (this) MachNopNode(nops_cnt);
a61af66fc99e Initial load
duke
parents:
diff changeset
1198 b->_nodes.insert(j++, nop);
a61af66fc99e Initial load
duke
parents:
diff changeset
1199 last_inst++;
a61af66fc99e Initial load
duke
parents:
diff changeset
1200 _cfg->_bbs.map( nop->_idx, b );
a61af66fc99e Initial load
duke
parents:
diff changeset
1201 nop->emit(*cb, _regalloc);
a61af66fc99e Initial load
duke
parents:
diff changeset
1202 cb->flush_bundle(true);
a61af66fc99e Initial load
duke
parents:
diff changeset
1203 current_offset = cb->code_size();
a61af66fc99e Initial load
duke
parents:
diff changeset
1204 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1205
a61af66fc99e Initial load
duke
parents:
diff changeset
1206 // Remember the start of the last call in a basic block
a61af66fc99e Initial load
duke
parents:
diff changeset
1207 if (is_mcall) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1208 MachCallNode *mcall = mach->as_MachCall();
a61af66fc99e Initial load
duke
parents:
diff changeset
1209
a61af66fc99e Initial load
duke
parents:
diff changeset
1210 // This destination address is NOT PC-relative
a61af66fc99e Initial load
duke
parents:
diff changeset
1211 mcall->method_set((intptr_t)mcall->entry_point());
a61af66fc99e Initial load
duke
parents:
diff changeset
1212
a61af66fc99e Initial load
duke
parents:
diff changeset
1213 // Save the return address
a61af66fc99e Initial load
duke
parents:
diff changeset
1214 call_returns[b->_pre_order] = current_offset + mcall->ret_addr_offset();
a61af66fc99e Initial load
duke
parents:
diff changeset
1215
a61af66fc99e Initial load
duke
parents:
diff changeset
1216 if (!mcall->is_safepoint_node()) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1217 is_mcall = false;
a61af66fc99e Initial load
duke
parents:
diff changeset
1218 is_sfn = false;
a61af66fc99e Initial load
duke
parents:
diff changeset
1219 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1220 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1221
a61af66fc99e Initial load
duke
parents:
diff changeset
1222 // sfn will be valid whenever mcall is valid now because of inheritance
a61af66fc99e Initial load
duke
parents:
diff changeset
1223 if( is_sfn || is_mcall ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1224
a61af66fc99e Initial load
duke
parents:
diff changeset
1225 // Handle special safepoint nodes for synchronization
a61af66fc99e Initial load
duke
parents:
diff changeset
1226 if( !is_mcall ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1227 MachSafePointNode *sfn = mach->as_MachSafePoint();
a61af66fc99e Initial load
duke
parents:
diff changeset
1228 // !!!!! Stubs only need an oopmap right now, so bail out
a61af66fc99e Initial load
duke
parents:
diff changeset
1229 if( sfn->jvms()->method() == NULL) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1230 // Write the oopmap directly to the code blob??!!
a61af66fc99e Initial load
duke
parents:
diff changeset
1231 # ifdef ENABLE_ZAP_DEAD_LOCALS
a61af66fc99e Initial load
duke
parents:
diff changeset
1232 assert( !is_node_getting_a_safepoint(sfn), "logic does not match; false positive");
a61af66fc99e Initial load
duke
parents:
diff changeset
1233 # endif
a61af66fc99e Initial load
duke
parents:
diff changeset
1234 continue;
a61af66fc99e Initial load
duke
parents:
diff changeset
1235 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1236 } // End synchronization
a61af66fc99e Initial load
duke
parents:
diff changeset
1237
a61af66fc99e Initial load
duke
parents:
diff changeset
1238 non_safepoints.observe_safepoint(mach->as_MachSafePoint()->jvms(),
a61af66fc99e Initial load
duke
parents:
diff changeset
1239 current_offset);
a61af66fc99e Initial load
duke
parents:
diff changeset
1240 Process_OopMap_Node(mach, current_offset);
a61af66fc99e Initial load
duke
parents:
diff changeset
1241 } // End if safepoint
a61af66fc99e Initial load
duke
parents:
diff changeset
1242
a61af66fc99e Initial load
duke
parents:
diff changeset
1243 // If this is a null check, then add the start of the previous instruction to the list
a61af66fc99e Initial load
duke
parents:
diff changeset
1244 else if( mach->is_MachNullCheck() ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1245 inct_starts[inct_cnt++] = previous_offset;
a61af66fc99e Initial load
duke
parents:
diff changeset
1246 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1247
a61af66fc99e Initial load
duke
parents:
diff changeset
1248 // If this is a branch, then fill in the label with the target BB's label
a61af66fc99e Initial load
duke
parents:
diff changeset
1249 else if ( mach->is_Branch() ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1250
a61af66fc99e Initial load
duke
parents:
diff changeset
1251 if ( mach->ideal_Opcode() == Op_Jump ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1252 for (uint h = 0; h < b->_num_succs; h++ ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1253 Block* succs_block = b->_succs[h];
a61af66fc99e Initial load
duke
parents:
diff changeset
1254 for (uint j = 1; j < succs_block->num_preds(); j++) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1255 Node* jpn = succs_block->pred(j);
a61af66fc99e Initial load
duke
parents:
diff changeset
1256 if ( jpn->is_JumpProj() && jpn->in(0) == mach ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1257 uint block_num = succs_block->non_connector()->_pre_order;
a61af66fc99e Initial load
duke
parents:
diff changeset
1258 Label *blkLabel = &blk_labels[block_num];
a61af66fc99e Initial load
duke
parents:
diff changeset
1259 mach->add_case_label(jpn->as_JumpProj()->proj_no(), blkLabel);
a61af66fc99e Initial load
duke
parents:
diff changeset
1260 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1261 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1262 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1263 } else {
a61af66fc99e Initial load
duke
parents:
diff changeset
1264 // For Branchs
a61af66fc99e Initial load
duke
parents:
diff changeset
1265 // This requires the TRUE branch target be in succs[0]
a61af66fc99e Initial load
duke
parents:
diff changeset
1266 uint block_num = b->non_connector_successor(0)->_pre_order;
a61af66fc99e Initial load
duke
parents:
diff changeset
1267 mach->label_set( blk_labels[block_num], block_num );
a61af66fc99e Initial load
duke
parents:
diff changeset
1268 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1269 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1270
a61af66fc99e Initial load
duke
parents:
diff changeset
1271 #ifdef ASSERT
a61af66fc99e Initial load
duke
parents:
diff changeset
1272 // Check that oop-store preceeds the card-mark
a61af66fc99e Initial load
duke
parents:
diff changeset
1273 else if( mach->ideal_Opcode() == Op_StoreCM ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1274 uint storeCM_idx = j;
a61af66fc99e Initial load
duke
parents:
diff changeset
1275 Node *oop_store = mach->in(mach->_cnt); // First precedence edge
a61af66fc99e Initial load
duke
parents:
diff changeset
1276 assert( oop_store != NULL, "storeCM expects a precedence edge");
a61af66fc99e Initial load
duke
parents:
diff changeset
1277 uint i4;
a61af66fc99e Initial load
duke
parents:
diff changeset
1278 for( i4 = 0; i4 < last_inst; ++i4 ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1279 if( b->_nodes[i4] == oop_store ) break;
a61af66fc99e Initial load
duke
parents:
diff changeset
1280 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1281 // Note: This test can provide a false failure if other precedence
a61af66fc99e Initial load
duke
parents:
diff changeset
1282 // edges have been added to the storeCMNode.
a61af66fc99e Initial load
duke
parents:
diff changeset
1283 assert( i4 == last_inst || i4 < storeCM_idx, "CM card-mark executes before oop-store");
a61af66fc99e Initial load
duke
parents:
diff changeset
1284 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1285 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
1286
a61af66fc99e Initial load
duke
parents:
diff changeset
1287 else if( !n->is_Proj() ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1288 // Remember the begining of the previous instruction, in case
a61af66fc99e Initial load
duke
parents:
diff changeset
1289 // it's followed by a flag-kill and a null-check. Happens on
a61af66fc99e Initial load
duke
parents:
diff changeset
1290 // Intel all the time, with add-to-memory kind of opcodes.
a61af66fc99e Initial load
duke
parents:
diff changeset
1291 previous_offset = current_offset;
a61af66fc99e Initial load
duke
parents:
diff changeset
1292 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1293 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1294
a61af66fc99e Initial load
duke
parents:
diff changeset
1295 // Verify that there is sufficient space remaining
a61af66fc99e Initial load
duke
parents:
diff changeset
1296 cb->insts()->maybe_expand_to_ensure_remaining(MAX_inst_size);
a61af66fc99e Initial load
duke
parents:
diff changeset
1297 if (cb->blob() == NULL) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1298 turn_off_compiler(this);
a61af66fc99e Initial load
duke
parents:
diff changeset
1299 return;
a61af66fc99e Initial load
duke
parents:
diff changeset
1300 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1301
a61af66fc99e Initial load
duke
parents:
diff changeset
1302 // Save the offset for the listing
a61af66fc99e Initial load
duke
parents:
diff changeset
1303 #ifndef PRODUCT
a61af66fc99e Initial load
duke
parents:
diff changeset
1304 if( node_offsets && n->_idx < node_offset_limit )
a61af66fc99e Initial load
duke
parents:
diff changeset
1305 node_offsets[n->_idx] = cb->code_size();
a61af66fc99e Initial load
duke
parents:
diff changeset
1306 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
1307
a61af66fc99e Initial load
duke
parents:
diff changeset
1308 // "Normal" instruction case
a61af66fc99e Initial load
duke
parents:
diff changeset
1309 n->emit(*cb, _regalloc);
a61af66fc99e Initial load
duke
parents:
diff changeset
1310 current_offset = cb->code_size();
a61af66fc99e Initial load
duke
parents:
diff changeset
1311 non_safepoints.observe_instruction(n, current_offset);
a61af66fc99e Initial load
duke
parents:
diff changeset
1312
a61af66fc99e Initial load
duke
parents:
diff changeset
1313 // mcall is last "call" that can be a safepoint
a61af66fc99e Initial load
duke
parents:
diff changeset
1314 // record it so we can see if a poll will directly follow it
a61af66fc99e Initial load
duke
parents:
diff changeset
1315 // in which case we'll need a pad to make the PcDesc sites unique
a61af66fc99e Initial load
duke
parents:
diff changeset
1316 // see 5010568. This can be slightly inaccurate but conservative
a61af66fc99e Initial load
duke
parents:
diff changeset
1317 // in the case that return address is not actually at current_offset.
a61af66fc99e Initial load
duke
parents:
diff changeset
1318 // This is a small price to pay.
a61af66fc99e Initial load
duke
parents:
diff changeset
1319
a61af66fc99e Initial load
duke
parents:
diff changeset
1320 if (is_mcall) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1321 last_call_offset = current_offset;
a61af66fc99e Initial load
duke
parents:
diff changeset
1322 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1323
a61af66fc99e Initial load
duke
parents:
diff changeset
1324 // See if this instruction has a delay slot
a61af66fc99e Initial load
duke
parents:
diff changeset
1325 if ( valid_bundle_info(n) && node_bundling(n)->use_unconditional_delay()) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1326 assert(delay_slot != NULL, "expecting delay slot node");
a61af66fc99e Initial load
duke
parents:
diff changeset
1327
a61af66fc99e Initial load
duke
parents:
diff changeset
1328 // Back up 1 instruction
a61af66fc99e Initial load
duke
parents:
diff changeset
1329 cb->set_code_end(
a61af66fc99e Initial load
duke
parents:
diff changeset
1330 cb->code_end()-Pipeline::instr_unit_size());
a61af66fc99e Initial load
duke
parents:
diff changeset
1331
a61af66fc99e Initial load
duke
parents:
diff changeset
1332 // Save the offset for the listing
a61af66fc99e Initial load
duke
parents:
diff changeset
1333 #ifndef PRODUCT
a61af66fc99e Initial load
duke
parents:
diff changeset
1334 if( node_offsets && delay_slot->_idx < node_offset_limit )
a61af66fc99e Initial load
duke
parents:
diff changeset
1335 node_offsets[delay_slot->_idx] = cb->code_size();
a61af66fc99e Initial load
duke
parents:
diff changeset
1336 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
1337
a61af66fc99e Initial load
duke
parents:
diff changeset
1338 // Support a SafePoint in the delay slot
a61af66fc99e Initial load
duke
parents:
diff changeset
1339 if( delay_slot->is_MachSafePoint() ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1340 MachNode *mach = delay_slot->as_Mach();
a61af66fc99e Initial load
duke
parents:
diff changeset
1341 // !!!!! Stubs only need an oopmap right now, so bail out
a61af66fc99e Initial load
duke
parents:
diff changeset
1342 if( !mach->is_MachCall() && mach->as_MachSafePoint()->jvms()->method() == NULL ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1343 // Write the oopmap directly to the code blob??!!
a61af66fc99e Initial load
duke
parents:
diff changeset
1344 # ifdef ENABLE_ZAP_DEAD_LOCALS
a61af66fc99e Initial load
duke
parents:
diff changeset
1345 assert( !is_node_getting_a_safepoint(mach), "logic does not match; false positive");
a61af66fc99e Initial load
duke
parents:
diff changeset
1346 # endif
a61af66fc99e Initial load
duke
parents:
diff changeset
1347 delay_slot = NULL;
a61af66fc99e Initial load
duke
parents:
diff changeset
1348 continue;
a61af66fc99e Initial load
duke
parents:
diff changeset
1349 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1350
a61af66fc99e Initial load
duke
parents:
diff changeset
1351 int adjusted_offset = current_offset - Pipeline::instr_unit_size();
a61af66fc99e Initial load
duke
parents:
diff changeset
1352 non_safepoints.observe_safepoint(mach->as_MachSafePoint()->jvms(),
a61af66fc99e Initial load
duke
parents:
diff changeset
1353 adjusted_offset);
a61af66fc99e Initial load
duke
parents:
diff changeset
1354 // Generate an OopMap entry
a61af66fc99e Initial load
duke
parents:
diff changeset
1355 Process_OopMap_Node(mach, adjusted_offset);
a61af66fc99e Initial load
duke
parents:
diff changeset
1356 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1357
a61af66fc99e Initial load
duke
parents:
diff changeset
1358 // Insert the delay slot instruction
a61af66fc99e Initial load
duke
parents:
diff changeset
1359 delay_slot->emit(*cb, _regalloc);
a61af66fc99e Initial load
duke
parents:
diff changeset
1360
a61af66fc99e Initial load
duke
parents:
diff changeset
1361 // Don't reuse it
a61af66fc99e Initial load
duke
parents:
diff changeset
1362 delay_slot = NULL;
a61af66fc99e Initial load
duke
parents:
diff changeset
1363 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1364
a61af66fc99e Initial load
duke
parents:
diff changeset
1365 } // End for all instructions in block
a61af66fc99e Initial load
duke
parents:
diff changeset
1366
a61af66fc99e Initial load
duke
parents:
diff changeset
1367 // If the next block _starts_ a loop, pad this block out to align
a61af66fc99e Initial load
duke
parents:
diff changeset
1368 // the loop start a little. Helps prevent pipe stalls at loop starts
a61af66fc99e Initial load
duke
parents:
diff changeset
1369 int nop_size = (new (this) MachNopNode())->size(_regalloc);
a61af66fc99e Initial load
duke
parents:
diff changeset
1370 if( i<_cfg->_num_blocks-1 ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1371 Block *nb = _cfg->_blocks[i+1];
a61af66fc99e Initial load
duke
parents:
diff changeset
1372 uint padding = nb->alignment_padding(current_offset);
a61af66fc99e Initial load
duke
parents:
diff changeset
1373 if( padding > 0 ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1374 MachNode *nop = new (this) MachNopNode(padding / nop_size);
a61af66fc99e Initial load
duke
parents:
diff changeset
1375 b->_nodes.insert( b->_nodes.size(), nop );
a61af66fc99e Initial load
duke
parents:
diff changeset
1376 _cfg->_bbs.map( nop->_idx, b );
a61af66fc99e Initial load
duke
parents:
diff changeset
1377 nop->emit(*cb, _regalloc);
a61af66fc99e Initial load
duke
parents:
diff changeset
1378 current_offset = cb->code_size();
a61af66fc99e Initial load
duke
parents:
diff changeset
1379 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1380 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1381
a61af66fc99e Initial load
duke
parents:
diff changeset
1382 } // End of for all blocks
a61af66fc99e Initial load
duke
parents:
diff changeset
1383
a61af66fc99e Initial load
duke
parents:
diff changeset
1384 non_safepoints.flush_at_end();
a61af66fc99e Initial load
duke
parents:
diff changeset
1385
a61af66fc99e Initial load
duke
parents:
diff changeset
1386 // Offset too large?
a61af66fc99e Initial load
duke
parents:
diff changeset
1387 if (failing()) return;
a61af66fc99e Initial load
duke
parents:
diff changeset
1388
a61af66fc99e Initial load
duke
parents:
diff changeset
1389 // Define a pseudo-label at the end of the code
a61af66fc99e Initial load
duke
parents:
diff changeset
1390 MacroAssembler(cb).bind( blk_labels[_cfg->_num_blocks] );
a61af66fc99e Initial load
duke
parents:
diff changeset
1391
a61af66fc99e Initial load
duke
parents:
diff changeset
1392 // Compute the size of the first block
a61af66fc99e Initial load
duke
parents:
diff changeset
1393 _first_block_size = blk_labels[1].loc_pos() - blk_labels[0].loc_pos();
a61af66fc99e Initial load
duke
parents:
diff changeset
1394
a61af66fc99e Initial load
duke
parents:
diff changeset
1395 assert(cb->code_size() < 500000, "method is unreasonably large");
a61af66fc99e Initial load
duke
parents:
diff changeset
1396
a61af66fc99e Initial load
duke
parents:
diff changeset
1397 // ------------------
a61af66fc99e Initial load
duke
parents:
diff changeset
1398
a61af66fc99e Initial load
duke
parents:
diff changeset
1399 #ifndef PRODUCT
a61af66fc99e Initial load
duke
parents:
diff changeset
1400 // Information on the size of the method, without the extraneous code
a61af66fc99e Initial load
duke
parents:
diff changeset
1401 Scheduling::increment_method_size(cb->code_size());
a61af66fc99e Initial load
duke
parents:
diff changeset
1402 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
1403
a61af66fc99e Initial load
duke
parents:
diff changeset
1404 // ------------------
a61af66fc99e Initial load
duke
parents:
diff changeset
1405 // Fill in exception table entries.
a61af66fc99e Initial load
duke
parents:
diff changeset
1406 FillExceptionTables(inct_cnt, call_returns, inct_starts, blk_labels);
a61af66fc99e Initial load
duke
parents:
diff changeset
1407
a61af66fc99e Initial load
duke
parents:
diff changeset
1408 // Only java methods have exception handlers and deopt handlers
a61af66fc99e Initial load
duke
parents:
diff changeset
1409 if (_method) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1410 // Emit the exception handler code.
a61af66fc99e Initial load
duke
parents:
diff changeset
1411 _code_offsets.set_value(CodeOffsets::Exceptions, emit_exception_handler(*cb));
a61af66fc99e Initial load
duke
parents:
diff changeset
1412 // Emit the deopt handler code.
a61af66fc99e Initial load
duke
parents:
diff changeset
1413 _code_offsets.set_value(CodeOffsets::Deopt, emit_deopt_handler(*cb));
a61af66fc99e Initial load
duke
parents:
diff changeset
1414 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1415
a61af66fc99e Initial load
duke
parents:
diff changeset
1416 // One last check for failed CodeBuffer::expand:
a61af66fc99e Initial load
duke
parents:
diff changeset
1417 if (cb->blob() == NULL) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1418 turn_off_compiler(this);
a61af66fc99e Initial load
duke
parents:
diff changeset
1419 return;
a61af66fc99e Initial load
duke
parents:
diff changeset
1420 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1421
a61af66fc99e Initial load
duke
parents:
diff changeset
1422 #ifndef PRODUCT
a61af66fc99e Initial load
duke
parents:
diff changeset
1423 // Dump the assembly code, including basic-block numbers
a61af66fc99e Initial load
duke
parents:
diff changeset
1424 if (print_assembly()) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1425 ttyLocker ttyl; // keep the following output all in one block
a61af66fc99e Initial load
duke
parents:
diff changeset
1426 if (!VMThread::should_terminate()) { // test this under the tty lock
a61af66fc99e Initial load
duke
parents:
diff changeset
1427 // This output goes directly to the tty, not the compiler log.
a61af66fc99e Initial load
duke
parents:
diff changeset
1428 // To enable tools to match it up with the compilation activity,
a61af66fc99e Initial load
duke
parents:
diff changeset
1429 // be sure to tag this tty output with the compile ID.
a61af66fc99e Initial load
duke
parents:
diff changeset
1430 if (xtty != NULL) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1431 xtty->head("opto_assembly compile_id='%d'%s", compile_id(),
a61af66fc99e Initial load
duke
parents:
diff changeset
1432 is_osr_compilation() ? " compile_kind='osr'" :
a61af66fc99e Initial load
duke
parents:
diff changeset
1433 "");
a61af66fc99e Initial load
duke
parents:
diff changeset
1434 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1435 if (method() != NULL) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1436 method()->print_oop();
a61af66fc99e Initial load
duke
parents:
diff changeset
1437 print_codes();
a61af66fc99e Initial load
duke
parents:
diff changeset
1438 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1439 dump_asm(node_offsets, node_offset_limit);
a61af66fc99e Initial load
duke
parents:
diff changeset
1440 if (xtty != NULL) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1441 xtty->tail("opto_assembly");
a61af66fc99e Initial load
duke
parents:
diff changeset
1442 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1443 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1444 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1445 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
1446
a61af66fc99e Initial load
duke
parents:
diff changeset
1447 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1448
a61af66fc99e Initial load
duke
parents:
diff changeset
1449 void Compile::FillExceptionTables(uint cnt, uint *call_returns, uint *inct_starts, Label *blk_labels) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1450 _inc_table.set_size(cnt);
a61af66fc99e Initial load
duke
parents:
diff changeset
1451
a61af66fc99e Initial load
duke
parents:
diff changeset
1452 uint inct_cnt = 0;
a61af66fc99e Initial load
duke
parents:
diff changeset
1453 for( uint i=0; i<_cfg->_num_blocks; i++ ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1454 Block *b = _cfg->_blocks[i];
a61af66fc99e Initial load
duke
parents:
diff changeset
1455 Node *n = NULL;
a61af66fc99e Initial load
duke
parents:
diff changeset
1456 int j;
a61af66fc99e Initial load
duke
parents:
diff changeset
1457
a61af66fc99e Initial load
duke
parents:
diff changeset
1458 // Find the branch; ignore trailing NOPs.
a61af66fc99e Initial load
duke
parents:
diff changeset
1459 for( j = b->_nodes.size()-1; j>=0; j-- ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1460 n = b->_nodes[j];
a61af66fc99e Initial load
duke
parents:
diff changeset
1461 if( !n->is_Mach() || n->as_Mach()->ideal_Opcode() != Op_Con )
a61af66fc99e Initial load
duke
parents:
diff changeset
1462 break;
a61af66fc99e Initial load
duke
parents:
diff changeset
1463 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1464
a61af66fc99e Initial load
duke
parents:
diff changeset
1465 // If we didn't find anything, continue
a61af66fc99e Initial load
duke
parents:
diff changeset
1466 if( j < 0 ) continue;
a61af66fc99e Initial load
duke
parents:
diff changeset
1467
a61af66fc99e Initial load
duke
parents:
diff changeset
1468 // Compute ExceptionHandlerTable subtable entry and add it
a61af66fc99e Initial load
duke
parents:
diff changeset
1469 // (skip empty blocks)
a61af66fc99e Initial load
duke
parents:
diff changeset
1470 if( n->is_Catch() ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1471
a61af66fc99e Initial load
duke
parents:
diff changeset
1472 // Get the offset of the return from the call
a61af66fc99e Initial load
duke
parents:
diff changeset
1473 uint call_return = call_returns[b->_pre_order];
a61af66fc99e Initial load
duke
parents:
diff changeset
1474 #ifdef ASSERT
a61af66fc99e Initial load
duke
parents:
diff changeset
1475 assert( call_return > 0, "no call seen for this basic block" );
a61af66fc99e Initial load
duke
parents:
diff changeset
1476 while( b->_nodes[--j]->Opcode() == Op_MachProj ) ;
a61af66fc99e Initial load
duke
parents:
diff changeset
1477 assert( b->_nodes[j]->is_Call(), "CatchProj must follow call" );
a61af66fc99e Initial load
duke
parents:
diff changeset
1478 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
1479 // last instruction is a CatchNode, find it's CatchProjNodes
a61af66fc99e Initial load
duke
parents:
diff changeset
1480 int nof_succs = b->_num_succs;
a61af66fc99e Initial load
duke
parents:
diff changeset
1481 // allocate space
a61af66fc99e Initial load
duke
parents:
diff changeset
1482 GrowableArray<intptr_t> handler_bcis(nof_succs);
a61af66fc99e Initial load
duke
parents:
diff changeset
1483 GrowableArray<intptr_t> handler_pcos(nof_succs);
a61af66fc99e Initial load
duke
parents:
diff changeset
1484 // iterate through all successors
a61af66fc99e Initial load
duke
parents:
diff changeset
1485 for (int j = 0; j < nof_succs; j++) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1486 Block* s = b->_succs[j];
a61af66fc99e Initial load
duke
parents:
diff changeset
1487 bool found_p = false;
a61af66fc99e Initial load
duke
parents:
diff changeset
1488 for( uint k = 1; k < s->num_preds(); k++ ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1489 Node *pk = s->pred(k);
a61af66fc99e Initial load
duke
parents:
diff changeset
1490 if( pk->is_CatchProj() && pk->in(0) == n ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1491 const CatchProjNode* p = pk->as_CatchProj();
a61af66fc99e Initial load
duke
parents:
diff changeset
1492 found_p = true;
a61af66fc99e Initial load
duke
parents:
diff changeset
1493 // add the corresponding handler bci & pco information
a61af66fc99e Initial load
duke
parents:
diff changeset
1494 if( p->_con != CatchProjNode::fall_through_index ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1495 // p leads to an exception handler (and is not fall through)
a61af66fc99e Initial load
duke
parents:
diff changeset
1496 assert(s == _cfg->_blocks[s->_pre_order],"bad numbering");
a61af66fc99e Initial load
duke
parents:
diff changeset
1497 // no duplicates, please
a61af66fc99e Initial load
duke
parents:
diff changeset
1498 if( !handler_bcis.contains(p->handler_bci()) ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1499 uint block_num = s->non_connector()->_pre_order;
a61af66fc99e Initial load
duke
parents:
diff changeset
1500 handler_bcis.append(p->handler_bci());
a61af66fc99e Initial load
duke
parents:
diff changeset
1501 handler_pcos.append(blk_labels[block_num].loc_pos());
a61af66fc99e Initial load
duke
parents:
diff changeset
1502 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1503 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1504 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1505 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1506 assert(found_p, "no matching predecessor found");
a61af66fc99e Initial load
duke
parents:
diff changeset
1507 // Note: Due to empty block removal, one block may have
a61af66fc99e Initial load
duke
parents:
diff changeset
1508 // several CatchProj inputs, from the same Catch.
a61af66fc99e Initial load
duke
parents:
diff changeset
1509 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1510
a61af66fc99e Initial load
duke
parents:
diff changeset
1511 // Set the offset of the return from the call
a61af66fc99e Initial load
duke
parents:
diff changeset
1512 _handler_table.add_subtable(call_return, &handler_bcis, NULL, &handler_pcos);
a61af66fc99e Initial load
duke
parents:
diff changeset
1513 continue;
a61af66fc99e Initial load
duke
parents:
diff changeset
1514 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1515
a61af66fc99e Initial load
duke
parents:
diff changeset
1516 // Handle implicit null exception table updates
a61af66fc99e Initial load
duke
parents:
diff changeset
1517 if( n->is_MachNullCheck() ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1518 uint block_num = b->non_connector_successor(0)->_pre_order;
a61af66fc99e Initial load
duke
parents:
diff changeset
1519 _inc_table.append( inct_starts[inct_cnt++], blk_labels[block_num].loc_pos() );
a61af66fc99e Initial load
duke
parents:
diff changeset
1520 continue;
a61af66fc99e Initial load
duke
parents:
diff changeset
1521 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1522 } // End of for all blocks fill in exception table entries
a61af66fc99e Initial load
duke
parents:
diff changeset
1523 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1524
a61af66fc99e Initial load
duke
parents:
diff changeset
1525 // Static Variables
a61af66fc99e Initial load
duke
parents:
diff changeset
1526 #ifndef PRODUCT
a61af66fc99e Initial load
duke
parents:
diff changeset
1527 uint Scheduling::_total_nop_size = 0;
a61af66fc99e Initial load
duke
parents:
diff changeset
1528 uint Scheduling::_total_method_size = 0;
a61af66fc99e Initial load
duke
parents:
diff changeset
1529 uint Scheduling::_total_branches = 0;
a61af66fc99e Initial load
duke
parents:
diff changeset
1530 uint Scheduling::_total_unconditional_delays = 0;
a61af66fc99e Initial load
duke
parents:
diff changeset
1531 uint Scheduling::_total_instructions_per_bundle[Pipeline::_max_instrs_per_cycle+1];
a61af66fc99e Initial load
duke
parents:
diff changeset
1532 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
1533
a61af66fc99e Initial load
duke
parents:
diff changeset
1534 // Initializer for class Scheduling
a61af66fc99e Initial load
duke
parents:
diff changeset
1535
a61af66fc99e Initial load
duke
parents:
diff changeset
1536 Scheduling::Scheduling(Arena *arena, Compile &compile)
a61af66fc99e Initial load
duke
parents:
diff changeset
1537 : _arena(arena),
a61af66fc99e Initial load
duke
parents:
diff changeset
1538 _cfg(compile.cfg()),
a61af66fc99e Initial load
duke
parents:
diff changeset
1539 _bbs(compile.cfg()->_bbs),
a61af66fc99e Initial load
duke
parents:
diff changeset
1540 _regalloc(compile.regalloc()),
a61af66fc99e Initial load
duke
parents:
diff changeset
1541 _reg_node(arena),
a61af66fc99e Initial load
duke
parents:
diff changeset
1542 _bundle_instr_count(0),
a61af66fc99e Initial load
duke
parents:
diff changeset
1543 _bundle_cycle_number(0),
a61af66fc99e Initial load
duke
parents:
diff changeset
1544 _scheduled(arena),
a61af66fc99e Initial load
duke
parents:
diff changeset
1545 _available(arena),
a61af66fc99e Initial load
duke
parents:
diff changeset
1546 _next_node(NULL),
a61af66fc99e Initial load
duke
parents:
diff changeset
1547 _bundle_use(0, 0, resource_count, &_bundle_use_elements[0]),
a61af66fc99e Initial load
duke
parents:
diff changeset
1548 _pinch_free_list(arena)
a61af66fc99e Initial load
duke
parents:
diff changeset
1549 #ifndef PRODUCT
a61af66fc99e Initial load
duke
parents:
diff changeset
1550 , _branches(0)
a61af66fc99e Initial load
duke
parents:
diff changeset
1551 , _unconditional_delays(0)
a61af66fc99e Initial load
duke
parents:
diff changeset
1552 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
1553 {
a61af66fc99e Initial load
duke
parents:
diff changeset
1554 // Create a MachNopNode
a61af66fc99e Initial load
duke
parents:
diff changeset
1555 _nop = new (&compile) MachNopNode();
a61af66fc99e Initial load
duke
parents:
diff changeset
1556
a61af66fc99e Initial load
duke
parents:
diff changeset
1557 // Now that the nops are in the array, save the count
a61af66fc99e Initial load
duke
parents:
diff changeset
1558 // (but allow entries for the nops)
a61af66fc99e Initial load
duke
parents:
diff changeset
1559 _node_bundling_limit = compile.unique();
a61af66fc99e Initial load
duke
parents:
diff changeset
1560 uint node_max = _regalloc->node_regs_max_index();
a61af66fc99e Initial load
duke
parents:
diff changeset
1561
a61af66fc99e Initial load
duke
parents:
diff changeset
1562 compile.set_node_bundling_limit(_node_bundling_limit);
a61af66fc99e Initial load
duke
parents:
diff changeset
1563
a61af66fc99e Initial load
duke
parents:
diff changeset
1564 // This one is persistant within the Compile class
a61af66fc99e Initial load
duke
parents:
diff changeset
1565 _node_bundling_base = NEW_ARENA_ARRAY(compile.comp_arena(), Bundle, node_max);
a61af66fc99e Initial load
duke
parents:
diff changeset
1566
a61af66fc99e Initial load
duke
parents:
diff changeset
1567 // Allocate space for fixed-size arrays
a61af66fc99e Initial load
duke
parents:
diff changeset
1568 _node_latency = NEW_ARENA_ARRAY(arena, unsigned short, node_max);
a61af66fc99e Initial load
duke
parents:
diff changeset
1569 _uses = NEW_ARENA_ARRAY(arena, short, node_max);
a61af66fc99e Initial load
duke
parents:
diff changeset
1570 _current_latency = NEW_ARENA_ARRAY(arena, unsigned short, node_max);
a61af66fc99e Initial load
duke
parents:
diff changeset
1571
a61af66fc99e Initial load
duke
parents:
diff changeset
1572 // Clear the arrays
a61af66fc99e Initial load
duke
parents:
diff changeset
1573 memset(_node_bundling_base, 0, node_max * sizeof(Bundle));
a61af66fc99e Initial load
duke
parents:
diff changeset
1574 memset(_node_latency, 0, node_max * sizeof(unsigned short));
a61af66fc99e Initial load
duke
parents:
diff changeset
1575 memset(_uses, 0, node_max * sizeof(short));
a61af66fc99e Initial load
duke
parents:
diff changeset
1576 memset(_current_latency, 0, node_max * sizeof(unsigned short));
a61af66fc99e Initial load
duke
parents:
diff changeset
1577
a61af66fc99e Initial load
duke
parents:
diff changeset
1578 // Clear the bundling information
a61af66fc99e Initial load
duke
parents:
diff changeset
1579 memcpy(_bundle_use_elements,
a61af66fc99e Initial load
duke
parents:
diff changeset
1580 Pipeline_Use::elaborated_elements,
a61af66fc99e Initial load
duke
parents:
diff changeset
1581 sizeof(Pipeline_Use::elaborated_elements));
a61af66fc99e Initial load
duke
parents:
diff changeset
1582
a61af66fc99e Initial load
duke
parents:
diff changeset
1583 // Get the last node
a61af66fc99e Initial load
duke
parents:
diff changeset
1584 Block *bb = _cfg->_blocks[_cfg->_blocks.size()-1];
a61af66fc99e Initial load
duke
parents:
diff changeset
1585
a61af66fc99e Initial load
duke
parents:
diff changeset
1586 _next_node = bb->_nodes[bb->_nodes.size()-1];
a61af66fc99e Initial load
duke
parents:
diff changeset
1587 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1588
a61af66fc99e Initial load
duke
parents:
diff changeset
1589 #ifndef PRODUCT
a61af66fc99e Initial load
duke
parents:
diff changeset
1590 // Scheduling destructor
a61af66fc99e Initial load
duke
parents:
diff changeset
1591 Scheduling::~Scheduling() {
a61af66fc99e Initial load
duke
parents:
diff changeset
1592 _total_branches += _branches;
a61af66fc99e Initial load
duke
parents:
diff changeset
1593 _total_unconditional_delays += _unconditional_delays;
a61af66fc99e Initial load
duke
parents:
diff changeset
1594 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1595 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
1596
a61af66fc99e Initial load
duke
parents:
diff changeset
1597 // Step ahead "i" cycles
a61af66fc99e Initial load
duke
parents:
diff changeset
1598 void Scheduling::step(uint i) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1599
a61af66fc99e Initial load
duke
parents:
diff changeset
1600 Bundle *bundle = node_bundling(_next_node);
a61af66fc99e Initial load
duke
parents:
diff changeset
1601 bundle->set_starts_bundle();
a61af66fc99e Initial load
duke
parents:
diff changeset
1602
a61af66fc99e Initial load
duke
parents:
diff changeset
1603 // Update the bundle record, but leave the flags information alone
a61af66fc99e Initial load
duke
parents:
diff changeset
1604 if (_bundle_instr_count > 0) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1605 bundle->set_instr_count(_bundle_instr_count);
a61af66fc99e Initial load
duke
parents:
diff changeset
1606 bundle->set_resources_used(_bundle_use.resourcesUsed());
a61af66fc99e Initial load
duke
parents:
diff changeset
1607 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1608
a61af66fc99e Initial load
duke
parents:
diff changeset
1609 // Update the state information
a61af66fc99e Initial load
duke
parents:
diff changeset
1610 _bundle_instr_count = 0;
a61af66fc99e Initial load
duke
parents:
diff changeset
1611 _bundle_cycle_number += i;
a61af66fc99e Initial load
duke
parents:
diff changeset
1612 _bundle_use.step(i);
a61af66fc99e Initial load
duke
parents:
diff changeset
1613 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1614
a61af66fc99e Initial load
duke
parents:
diff changeset
1615 void Scheduling::step_and_clear() {
a61af66fc99e Initial load
duke
parents:
diff changeset
1616 Bundle *bundle = node_bundling(_next_node);
a61af66fc99e Initial load
duke
parents:
diff changeset
1617 bundle->set_starts_bundle();
a61af66fc99e Initial load
duke
parents:
diff changeset
1618
a61af66fc99e Initial load
duke
parents:
diff changeset
1619 // Update the bundle record
a61af66fc99e Initial load
duke
parents:
diff changeset
1620 if (_bundle_instr_count > 0) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1621 bundle->set_instr_count(_bundle_instr_count);
a61af66fc99e Initial load
duke
parents:
diff changeset
1622 bundle->set_resources_used(_bundle_use.resourcesUsed());
a61af66fc99e Initial load
duke
parents:
diff changeset
1623
a61af66fc99e Initial load
duke
parents:
diff changeset
1624 _bundle_cycle_number += 1;
a61af66fc99e Initial load
duke
parents:
diff changeset
1625 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1626
a61af66fc99e Initial load
duke
parents:
diff changeset
1627 // Clear the bundling information
a61af66fc99e Initial load
duke
parents:
diff changeset
1628 _bundle_instr_count = 0;
a61af66fc99e Initial load
duke
parents:
diff changeset
1629 _bundle_use.reset();
a61af66fc99e Initial load
duke
parents:
diff changeset
1630
a61af66fc99e Initial load
duke
parents:
diff changeset
1631 memcpy(_bundle_use_elements,
a61af66fc99e Initial load
duke
parents:
diff changeset
1632 Pipeline_Use::elaborated_elements,
a61af66fc99e Initial load
duke
parents:
diff changeset
1633 sizeof(Pipeline_Use::elaborated_elements));
a61af66fc99e Initial load
duke
parents:
diff changeset
1634 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1635
a61af66fc99e Initial load
duke
parents:
diff changeset
1636 //------------------------------ScheduleAndBundle------------------------------
a61af66fc99e Initial load
duke
parents:
diff changeset
1637 // Perform instruction scheduling and bundling over the sequence of
a61af66fc99e Initial load
duke
parents:
diff changeset
1638 // instructions in backwards order.
a61af66fc99e Initial load
duke
parents:
diff changeset
1639 void Compile::ScheduleAndBundle() {
a61af66fc99e Initial load
duke
parents:
diff changeset
1640
a61af66fc99e Initial load
duke
parents:
diff changeset
1641 // Don't optimize this if it isn't a method
a61af66fc99e Initial load
duke
parents:
diff changeset
1642 if (!_method)
a61af66fc99e Initial load
duke
parents:
diff changeset
1643 return;
a61af66fc99e Initial load
duke
parents:
diff changeset
1644
a61af66fc99e Initial load
duke
parents:
diff changeset
1645 // Don't optimize this if scheduling is disabled
a61af66fc99e Initial load
duke
parents:
diff changeset
1646 if (!do_scheduling())
a61af66fc99e Initial load
duke
parents:
diff changeset
1647 return;
a61af66fc99e Initial load
duke
parents:
diff changeset
1648
a61af66fc99e Initial load
duke
parents:
diff changeset
1649 NOT_PRODUCT( TracePhase t2("isched", &_t_instrSched, TimeCompiler); )
a61af66fc99e Initial load
duke
parents:
diff changeset
1650
a61af66fc99e Initial load
duke
parents:
diff changeset
1651 // Create a data structure for all the scheduling information
a61af66fc99e Initial load
duke
parents:
diff changeset
1652 Scheduling scheduling(Thread::current()->resource_area(), *this);
a61af66fc99e Initial load
duke
parents:
diff changeset
1653
a61af66fc99e Initial load
duke
parents:
diff changeset
1654 // Walk backwards over each basic block, computing the needed alignment
a61af66fc99e Initial load
duke
parents:
diff changeset
1655 // Walk over all the basic blocks
a61af66fc99e Initial load
duke
parents:
diff changeset
1656 scheduling.DoScheduling();
a61af66fc99e Initial load
duke
parents:
diff changeset
1657 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1658
a61af66fc99e Initial load
duke
parents:
diff changeset
1659 //------------------------------ComputeLocalLatenciesForward-------------------
a61af66fc99e Initial load
duke
parents:
diff changeset
1660 // Compute the latency of all the instructions. This is fairly simple,
a61af66fc99e Initial load
duke
parents:
diff changeset
1661 // because we already have a legal ordering. Walk over the instructions
a61af66fc99e Initial load
duke
parents:
diff changeset
1662 // from first to last, and compute the latency of the instruction based
a61af66fc99e Initial load
duke
parents:
diff changeset
1663 // on the latency of the preceeding instruction(s).
a61af66fc99e Initial load
duke
parents:
diff changeset
1664 void Scheduling::ComputeLocalLatenciesForward(const Block *bb) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1665 #ifndef PRODUCT
a61af66fc99e Initial load
duke
parents:
diff changeset
1666 if (_cfg->C->trace_opto_output())
a61af66fc99e Initial load
duke
parents:
diff changeset
1667 tty->print("# -> ComputeLocalLatenciesForward\n");
a61af66fc99e Initial load
duke
parents:
diff changeset
1668 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
1669
a61af66fc99e Initial load
duke
parents:
diff changeset
1670 // Walk over all the schedulable instructions
a61af66fc99e Initial load
duke
parents:
diff changeset
1671 for( uint j=_bb_start; j < _bb_end; j++ ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1672
a61af66fc99e Initial load
duke
parents:
diff changeset
1673 // This is a kludge, forcing all latency calculations to start at 1.
a61af66fc99e Initial load
duke
parents:
diff changeset
1674 // Used to allow latency 0 to force an instruction to the beginning
a61af66fc99e Initial load
duke
parents:
diff changeset
1675 // of the bb
a61af66fc99e Initial load
duke
parents:
diff changeset
1676 uint latency = 1;
a61af66fc99e Initial load
duke
parents:
diff changeset
1677 Node *use = bb->_nodes[j];
a61af66fc99e Initial load
duke
parents:
diff changeset
1678 uint nlen = use->len();
a61af66fc99e Initial load
duke
parents:
diff changeset
1679
a61af66fc99e Initial load
duke
parents:
diff changeset
1680 // Walk over all the inputs
a61af66fc99e Initial load
duke
parents:
diff changeset
1681 for ( uint k=0; k < nlen; k++ ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1682 Node *def = use->in(k);
a61af66fc99e Initial load
duke
parents:
diff changeset
1683 if (!def)
a61af66fc99e Initial load
duke
parents:
diff changeset
1684 continue;
a61af66fc99e Initial load
duke
parents:
diff changeset
1685
a61af66fc99e Initial load
duke
parents:
diff changeset
1686 uint l = _node_latency[def->_idx] + use->latency(k);
a61af66fc99e Initial load
duke
parents:
diff changeset
1687 if (latency < l)
a61af66fc99e Initial load
duke
parents:
diff changeset
1688 latency = l;
a61af66fc99e Initial load
duke
parents:
diff changeset
1689 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1690
a61af66fc99e Initial load
duke
parents:
diff changeset
1691 _node_latency[use->_idx] = latency;
a61af66fc99e Initial load
duke
parents:
diff changeset
1692
a61af66fc99e Initial load
duke
parents:
diff changeset
1693 #ifndef PRODUCT
a61af66fc99e Initial load
duke
parents:
diff changeset
1694 if (_cfg->C->trace_opto_output()) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1695 tty->print("# latency %4d: ", latency);
a61af66fc99e Initial load
duke
parents:
diff changeset
1696 use->dump();
a61af66fc99e Initial load
duke
parents:
diff changeset
1697 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1698 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
1699 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1700
a61af66fc99e Initial load
duke
parents:
diff changeset
1701 #ifndef PRODUCT
a61af66fc99e Initial load
duke
parents:
diff changeset
1702 if (_cfg->C->trace_opto_output())
a61af66fc99e Initial load
duke
parents:
diff changeset
1703 tty->print("# <- ComputeLocalLatenciesForward\n");
a61af66fc99e Initial load
duke
parents:
diff changeset
1704 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
1705
a61af66fc99e Initial load
duke
parents:
diff changeset
1706 } // end ComputeLocalLatenciesForward
a61af66fc99e Initial load
duke
parents:
diff changeset
1707
a61af66fc99e Initial load
duke
parents:
diff changeset
1708 // See if this node fits into the present instruction bundle
a61af66fc99e Initial load
duke
parents:
diff changeset
1709 bool Scheduling::NodeFitsInBundle(Node *n) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1710 uint n_idx = n->_idx;
a61af66fc99e Initial load
duke
parents:
diff changeset
1711
a61af66fc99e Initial load
duke
parents:
diff changeset
1712 // If this is the unconditional delay instruction, then it fits
a61af66fc99e Initial load
duke
parents:
diff changeset
1713 if (n == _unconditional_delay_slot) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1714 #ifndef PRODUCT
a61af66fc99e Initial load
duke
parents:
diff changeset
1715 if (_cfg->C->trace_opto_output())
a61af66fc99e Initial load
duke
parents:
diff changeset
1716 tty->print("# NodeFitsInBundle [%4d]: TRUE; is in unconditional delay slot\n", n->_idx);
a61af66fc99e Initial load
duke
parents:
diff changeset
1717 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
1718 return (true);
a61af66fc99e Initial load
duke
parents:
diff changeset
1719 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1720
a61af66fc99e Initial load
duke
parents:
diff changeset
1721 // If the node cannot be scheduled this cycle, skip it
a61af66fc99e Initial load
duke
parents:
diff changeset
1722 if (_current_latency[n_idx] > _bundle_cycle_number) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1723 #ifndef PRODUCT
a61af66fc99e Initial load
duke
parents:
diff changeset
1724 if (_cfg->C->trace_opto_output())
a61af66fc99e Initial load
duke
parents:
diff changeset
1725 tty->print("# NodeFitsInBundle [%4d]: FALSE; latency %4d > %d\n",
a61af66fc99e Initial load
duke
parents:
diff changeset
1726 n->_idx, _current_latency[n_idx], _bundle_cycle_number);
a61af66fc99e Initial load
duke
parents:
diff changeset
1727 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
1728 return (false);
a61af66fc99e Initial load
duke
parents:
diff changeset
1729 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1730
a61af66fc99e Initial load
duke
parents:
diff changeset
1731 const Pipeline *node_pipeline = n->pipeline();
a61af66fc99e Initial load
duke
parents:
diff changeset
1732
a61af66fc99e Initial load
duke
parents:
diff changeset
1733 uint instruction_count = node_pipeline->instructionCount();
a61af66fc99e Initial load
duke
parents:
diff changeset
1734 if (node_pipeline->mayHaveNoCode() && n->size(_regalloc) == 0)
a61af66fc99e Initial load
duke
parents:
diff changeset
1735 instruction_count = 0;
a61af66fc99e Initial load
duke
parents:
diff changeset
1736 else if (node_pipeline->hasBranchDelay() && !_unconditional_delay_slot)
a61af66fc99e Initial load
duke
parents:
diff changeset
1737 instruction_count++;
a61af66fc99e Initial load
duke
parents:
diff changeset
1738
a61af66fc99e Initial load
duke
parents:
diff changeset
1739 if (_bundle_instr_count + instruction_count > Pipeline::_max_instrs_per_cycle) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1740 #ifndef PRODUCT
a61af66fc99e Initial load
duke
parents:
diff changeset
1741 if (_cfg->C->trace_opto_output())
a61af66fc99e Initial load
duke
parents:
diff changeset
1742 tty->print("# NodeFitsInBundle [%4d]: FALSE; too many instructions: %d > %d\n",
a61af66fc99e Initial load
duke
parents:
diff changeset
1743 n->_idx, _bundle_instr_count + instruction_count, Pipeline::_max_instrs_per_cycle);
a61af66fc99e Initial load
duke
parents:
diff changeset
1744 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
1745 return (false);
a61af66fc99e Initial load
duke
parents:
diff changeset
1746 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1747
a61af66fc99e Initial load
duke
parents:
diff changeset
1748 // Don't allow non-machine nodes to be handled this way
a61af66fc99e Initial load
duke
parents:
diff changeset
1749 if (!n->is_Mach() && instruction_count == 0)
a61af66fc99e Initial load
duke
parents:
diff changeset
1750 return (false);
a61af66fc99e Initial load
duke
parents:
diff changeset
1751
a61af66fc99e Initial load
duke
parents:
diff changeset
1752 // See if there is any overlap
a61af66fc99e Initial load
duke
parents:
diff changeset
1753 uint delay = _bundle_use.full_latency(0, node_pipeline->resourceUse());
a61af66fc99e Initial load
duke
parents:
diff changeset
1754
a61af66fc99e Initial load
duke
parents:
diff changeset
1755 if (delay > 0) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1756 #ifndef PRODUCT
a61af66fc99e Initial load
duke
parents:
diff changeset
1757 if (_cfg->C->trace_opto_output())
a61af66fc99e Initial load
duke
parents:
diff changeset
1758 tty->print("# NodeFitsInBundle [%4d]: FALSE; functional units overlap\n", n_idx);
a61af66fc99e Initial load
duke
parents:
diff changeset
1759 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
1760 return false;
a61af66fc99e Initial load
duke
parents:
diff changeset
1761 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1762
a61af66fc99e Initial load
duke
parents:
diff changeset
1763 #ifndef PRODUCT
a61af66fc99e Initial load
duke
parents:
diff changeset
1764 if (_cfg->C->trace_opto_output())
a61af66fc99e Initial load
duke
parents:
diff changeset
1765 tty->print("# NodeFitsInBundle [%4d]: TRUE\n", n_idx);
a61af66fc99e Initial load
duke
parents:
diff changeset
1766 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
1767
a61af66fc99e Initial load
duke
parents:
diff changeset
1768 return true;
a61af66fc99e Initial load
duke
parents:
diff changeset
1769 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1770
a61af66fc99e Initial load
duke
parents:
diff changeset
1771 Node * Scheduling::ChooseNodeToBundle() {
a61af66fc99e Initial load
duke
parents:
diff changeset
1772 uint siz = _available.size();
a61af66fc99e Initial load
duke
parents:
diff changeset
1773
a61af66fc99e Initial load
duke
parents:
diff changeset
1774 if (siz == 0) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1775
a61af66fc99e Initial load
duke
parents:
diff changeset
1776 #ifndef PRODUCT
a61af66fc99e Initial load
duke
parents:
diff changeset
1777 if (_cfg->C->trace_opto_output())
a61af66fc99e Initial load
duke
parents:
diff changeset
1778 tty->print("# ChooseNodeToBundle: NULL\n");
a61af66fc99e Initial load
duke
parents:
diff changeset
1779 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
1780 return (NULL);
a61af66fc99e Initial load
duke
parents:
diff changeset
1781 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1782
a61af66fc99e Initial load
duke
parents:
diff changeset
1783 // Fast path, if only 1 instruction in the bundle
a61af66fc99e Initial load
duke
parents:
diff changeset
1784 if (siz == 1) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1785 #ifndef PRODUCT
a61af66fc99e Initial load
duke
parents:
diff changeset
1786 if (_cfg->C->trace_opto_output()) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1787 tty->print("# ChooseNodeToBundle (only 1): ");
a61af66fc99e Initial load
duke
parents:
diff changeset
1788 _available[0]->dump();
a61af66fc99e Initial load
duke
parents:
diff changeset
1789 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1790 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
1791 return (_available[0]);
a61af66fc99e Initial load
duke
parents:
diff changeset
1792 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1793
a61af66fc99e Initial load
duke
parents:
diff changeset
1794 // Don't bother, if the bundle is already full
a61af66fc99e Initial load
duke
parents:
diff changeset
1795 if (_bundle_instr_count < Pipeline::_max_instrs_per_cycle) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1796 for ( uint i = 0; i < siz; i++ ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1797 Node *n = _available[i];
a61af66fc99e Initial load
duke
parents:
diff changeset
1798
a61af66fc99e Initial load
duke
parents:
diff changeset
1799 // Skip projections, we'll handle them another way
a61af66fc99e Initial load
duke
parents:
diff changeset
1800 if (n->is_Proj())
a61af66fc99e Initial load
duke
parents:
diff changeset
1801 continue;
a61af66fc99e Initial load
duke
parents:
diff changeset
1802
a61af66fc99e Initial load
duke
parents:
diff changeset
1803 // This presupposed that instructions are inserted into the
a61af66fc99e Initial load
duke
parents:
diff changeset
1804 // available list in a legality order; i.e. instructions that
a61af66fc99e Initial load
duke
parents:
diff changeset
1805 // must be inserted first are at the head of the list
a61af66fc99e Initial load
duke
parents:
diff changeset
1806 if (NodeFitsInBundle(n)) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1807 #ifndef PRODUCT
a61af66fc99e Initial load
duke
parents:
diff changeset
1808 if (_cfg->C->trace_opto_output()) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1809 tty->print("# ChooseNodeToBundle: ");
a61af66fc99e Initial load
duke
parents:
diff changeset
1810 n->dump();
a61af66fc99e Initial load
duke
parents:
diff changeset
1811 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1812 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
1813 return (n);
a61af66fc99e Initial load
duke
parents:
diff changeset
1814 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1815 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1816 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1817
a61af66fc99e Initial load
duke
parents:
diff changeset
1818 // Nothing fits in this bundle, choose the highest priority
a61af66fc99e Initial load
duke
parents:
diff changeset
1819 #ifndef PRODUCT
a61af66fc99e Initial load
duke
parents:
diff changeset
1820 if (_cfg->C->trace_opto_output()) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1821 tty->print("# ChooseNodeToBundle: ");
a61af66fc99e Initial load
duke
parents:
diff changeset
1822 _available[0]->dump();
a61af66fc99e Initial load
duke
parents:
diff changeset
1823 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1824 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
1825
a61af66fc99e Initial load
duke
parents:
diff changeset
1826 return _available[0];
a61af66fc99e Initial load
duke
parents:
diff changeset
1827 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1828
a61af66fc99e Initial load
duke
parents:
diff changeset
1829 //------------------------------AddNodeToAvailableList-------------------------
a61af66fc99e Initial load
duke
parents:
diff changeset
1830 void Scheduling::AddNodeToAvailableList(Node *n) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1831 assert( !n->is_Proj(), "projections never directly made available" );
a61af66fc99e Initial load
duke
parents:
diff changeset
1832 #ifndef PRODUCT
a61af66fc99e Initial load
duke
parents:
diff changeset
1833 if (_cfg->C->trace_opto_output()) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1834 tty->print("# AddNodeToAvailableList: ");
a61af66fc99e Initial load
duke
parents:
diff changeset
1835 n->dump();
a61af66fc99e Initial load
duke
parents:
diff changeset
1836 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1837 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
1838
a61af66fc99e Initial load
duke
parents:
diff changeset
1839 int latency = _current_latency[n->_idx];
a61af66fc99e Initial load
duke
parents:
diff changeset
1840
a61af66fc99e Initial load
duke
parents:
diff changeset
1841 // Insert in latency order (insertion sort)
a61af66fc99e Initial load
duke
parents:
diff changeset
1842 uint i;
a61af66fc99e Initial load
duke
parents:
diff changeset
1843 for ( i=0; i < _available.size(); i++ )
a61af66fc99e Initial load
duke
parents:
diff changeset
1844 if (_current_latency[_available[i]->_idx] > latency)
a61af66fc99e Initial load
duke
parents:
diff changeset
1845 break;
a61af66fc99e Initial load
duke
parents:
diff changeset
1846
a61af66fc99e Initial load
duke
parents:
diff changeset
1847 // Special Check for compares following branches
a61af66fc99e Initial load
duke
parents:
diff changeset
1848 if( n->is_Mach() && _scheduled.size() > 0 ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1849 int op = n->as_Mach()->ideal_Opcode();
a61af66fc99e Initial load
duke
parents:
diff changeset
1850 Node *last = _scheduled[0];
a61af66fc99e Initial load
duke
parents:
diff changeset
1851 if( last->is_MachIf() && last->in(1) == n &&
a61af66fc99e Initial load
duke
parents:
diff changeset
1852 ( op == Op_CmpI ||
a61af66fc99e Initial load
duke
parents:
diff changeset
1853 op == Op_CmpU ||
a61af66fc99e Initial load
duke
parents:
diff changeset
1854 op == Op_CmpP ||
a61af66fc99e Initial load
duke
parents:
diff changeset
1855 op == Op_CmpF ||
a61af66fc99e Initial load
duke
parents:
diff changeset
1856 op == Op_CmpD ||
a61af66fc99e Initial load
duke
parents:
diff changeset
1857 op == Op_CmpL ) ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1858
a61af66fc99e Initial load
duke
parents:
diff changeset
1859 // Recalculate position, moving to front of same latency
a61af66fc99e Initial load
duke
parents:
diff changeset
1860 for ( i=0 ; i < _available.size(); i++ )
a61af66fc99e Initial load
duke
parents:
diff changeset
1861 if (_current_latency[_available[i]->_idx] >= latency)
a61af66fc99e Initial load
duke
parents:
diff changeset
1862 break;
a61af66fc99e Initial load
duke
parents:
diff changeset
1863 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1864 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1865
a61af66fc99e Initial load
duke
parents:
diff changeset
1866 // Insert the node in the available list
a61af66fc99e Initial load
duke
parents:
diff changeset
1867 _available.insert(i, n);
a61af66fc99e Initial load
duke
parents:
diff changeset
1868
a61af66fc99e Initial load
duke
parents:
diff changeset
1869 #ifndef PRODUCT
a61af66fc99e Initial load
duke
parents:
diff changeset
1870 if (_cfg->C->trace_opto_output())
a61af66fc99e Initial load
duke
parents:
diff changeset
1871 dump_available();
a61af66fc99e Initial load
duke
parents:
diff changeset
1872 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
1873 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1874
a61af66fc99e Initial load
duke
parents:
diff changeset
1875 //------------------------------DecrementUseCounts-----------------------------
a61af66fc99e Initial load
duke
parents:
diff changeset
1876 void Scheduling::DecrementUseCounts(Node *n, const Block *bb) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1877 for ( uint i=0; i < n->len(); i++ ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1878 Node *def = n->in(i);
a61af66fc99e Initial load
duke
parents:
diff changeset
1879 if (!def) continue;
a61af66fc99e Initial load
duke
parents:
diff changeset
1880 if( def->is_Proj() ) // If this is a machine projection, then
a61af66fc99e Initial load
duke
parents:
diff changeset
1881 def = def->in(0); // propagate usage thru to the base instruction
a61af66fc99e Initial load
duke
parents:
diff changeset
1882
a61af66fc99e Initial load
duke
parents:
diff changeset
1883 if( _bbs[def->_idx] != bb ) // Ignore if not block-local
a61af66fc99e Initial load
duke
parents:
diff changeset
1884 continue;
a61af66fc99e Initial load
duke
parents:
diff changeset
1885
a61af66fc99e Initial load
duke
parents:
diff changeset
1886 // Compute the latency
a61af66fc99e Initial load
duke
parents:
diff changeset
1887 uint l = _bundle_cycle_number + n->latency(i);
a61af66fc99e Initial load
duke
parents:
diff changeset
1888 if (_current_latency[def->_idx] < l)
a61af66fc99e Initial load
duke
parents:
diff changeset
1889 _current_latency[def->_idx] = l;
a61af66fc99e Initial load
duke
parents:
diff changeset
1890
a61af66fc99e Initial load
duke
parents:
diff changeset
1891 // If this does not have uses then schedule it
a61af66fc99e Initial load
duke
parents:
diff changeset
1892 if ((--_uses[def->_idx]) == 0)
a61af66fc99e Initial load
duke
parents:
diff changeset
1893 AddNodeToAvailableList(def);
a61af66fc99e Initial load
duke
parents:
diff changeset
1894 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1895 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1896
a61af66fc99e Initial load
duke
parents:
diff changeset
1897 //------------------------------AddNodeToBundle--------------------------------
a61af66fc99e Initial load
duke
parents:
diff changeset
1898 void Scheduling::AddNodeToBundle(Node *n, const Block *bb) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1899 #ifndef PRODUCT
a61af66fc99e Initial load
duke
parents:
diff changeset
1900 if (_cfg->C->trace_opto_output()) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1901 tty->print("# AddNodeToBundle: ");
a61af66fc99e Initial load
duke
parents:
diff changeset
1902 n->dump();
a61af66fc99e Initial load
duke
parents:
diff changeset
1903 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1904 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
1905
a61af66fc99e Initial load
duke
parents:
diff changeset
1906 // Remove this from the available list
a61af66fc99e Initial load
duke
parents:
diff changeset
1907 uint i;
a61af66fc99e Initial load
duke
parents:
diff changeset
1908 for (i = 0; i < _available.size(); i++)
a61af66fc99e Initial load
duke
parents:
diff changeset
1909 if (_available[i] == n)
a61af66fc99e Initial load
duke
parents:
diff changeset
1910 break;
a61af66fc99e Initial load
duke
parents:
diff changeset
1911 assert(i < _available.size(), "entry in _available list not found");
a61af66fc99e Initial load
duke
parents:
diff changeset
1912 _available.remove(i);
a61af66fc99e Initial load
duke
parents:
diff changeset
1913
a61af66fc99e Initial load
duke
parents:
diff changeset
1914 // See if this fits in the current bundle
a61af66fc99e Initial load
duke
parents:
diff changeset
1915 const Pipeline *node_pipeline = n->pipeline();
a61af66fc99e Initial load
duke
parents:
diff changeset
1916 const Pipeline_Use& node_usage = node_pipeline->resourceUse();
a61af66fc99e Initial load
duke
parents:
diff changeset
1917
a61af66fc99e Initial load
duke
parents:
diff changeset
1918 // Check for instructions to be placed in the delay slot. We
a61af66fc99e Initial load
duke
parents:
diff changeset
1919 // do this before we actually schedule the current instruction,
a61af66fc99e Initial load
duke
parents:
diff changeset
1920 // because the delay slot follows the current instruction.
a61af66fc99e Initial load
duke
parents:
diff changeset
1921 if (Pipeline::_branch_has_delay_slot &&
a61af66fc99e Initial load
duke
parents:
diff changeset
1922 node_pipeline->hasBranchDelay() &&
a61af66fc99e Initial load
duke
parents:
diff changeset
1923 !_unconditional_delay_slot) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1924
a61af66fc99e Initial load
duke
parents:
diff changeset
1925 uint siz = _available.size();
a61af66fc99e Initial load
duke
parents:
diff changeset
1926
a61af66fc99e Initial load
duke
parents:
diff changeset
1927 // Conditional branches can support an instruction that
a61af66fc99e Initial load
duke
parents:
diff changeset
1928 // is unconditionally executed and not dependant by the
a61af66fc99e Initial load
duke
parents:
diff changeset
1929 // branch, OR a conditionally executed instruction if
a61af66fc99e Initial load
duke
parents:
diff changeset
1930 // the branch is taken. In practice, this means that
a61af66fc99e Initial load
duke
parents:
diff changeset
1931 // the first instruction at the branch target is
a61af66fc99e Initial load
duke
parents:
diff changeset
1932 // copied to the delay slot, and the branch goes to
a61af66fc99e Initial load
duke
parents:
diff changeset
1933 // the instruction after that at the branch target
a61af66fc99e Initial load
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parents:
diff changeset
1934 if ( n->is_Mach() && n->is_Branch() ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1935
a61af66fc99e Initial load
duke
parents:
diff changeset
1936 assert( !n->is_MachNullCheck(), "should not look for delay slot for Null Check" );
a61af66fc99e Initial load
duke
parents:
diff changeset
1937 assert( !n->is_Catch(), "should not look for delay slot for Catch" );
a61af66fc99e Initial load
duke
parents:
diff changeset
1938
a61af66fc99e Initial load
duke
parents:
diff changeset
1939 #ifndef PRODUCT
a61af66fc99e Initial load
duke
parents:
diff changeset
1940 _branches++;
a61af66fc99e Initial load
duke
parents:
diff changeset
1941 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
1942
a61af66fc99e Initial load
duke
parents:
diff changeset
1943 // At least 1 instruction is on the available list
a61af66fc99e Initial load
duke
parents:
diff changeset
1944 // that is not dependant on the branch
a61af66fc99e Initial load
duke
parents:
diff changeset
1945 for (uint i = 0; i < siz; i++) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1946 Node *d = _available[i];
a61af66fc99e Initial load
duke
parents:
diff changeset
1947 const Pipeline *avail_pipeline = d->pipeline();
a61af66fc99e Initial load
duke
parents:
diff changeset
1948
a61af66fc99e Initial load
duke
parents:
diff changeset
1949 // Don't allow safepoints in the branch shadow, that will
a61af66fc99e Initial load
duke
parents:
diff changeset
1950 // cause a number of difficulties
a61af66fc99e Initial load
duke
parents:
diff changeset
1951 if ( avail_pipeline->instructionCount() == 1 &&
a61af66fc99e Initial load
duke
parents:
diff changeset
1952 !avail_pipeline->hasMultipleBundles() &&
a61af66fc99e Initial load
duke
parents:
diff changeset
1953 !avail_pipeline->hasBranchDelay() &&
a61af66fc99e Initial load
duke
parents:
diff changeset
1954 Pipeline::instr_has_unit_size() &&
a61af66fc99e Initial load
duke
parents:
diff changeset
1955 d->size(_regalloc) == Pipeline::instr_unit_size() &&
a61af66fc99e Initial load
duke
parents:
diff changeset
1956 NodeFitsInBundle(d) &&
a61af66fc99e Initial load
duke
parents:
diff changeset
1957 !node_bundling(d)->used_in_delay()) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1958
a61af66fc99e Initial load
duke
parents:
diff changeset
1959 if (d->is_Mach() && !d->is_MachSafePoint()) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1960 // A node that fits in the delay slot was found, so we need to
a61af66fc99e Initial load
duke
parents:
diff changeset
1961 // set the appropriate bits in the bundle pipeline information so
a61af66fc99e Initial load
duke
parents:
diff changeset
1962 // that it correctly indicates resource usage. Later, when we
a61af66fc99e Initial load
duke
parents:
diff changeset
1963 // attempt to add this instruction to the bundle, we will skip
a61af66fc99e Initial load
duke
parents:
diff changeset
1964 // setting the resource usage.
a61af66fc99e Initial load
duke
parents:
diff changeset
1965 _unconditional_delay_slot = d;
a61af66fc99e Initial load
duke
parents:
diff changeset
1966 node_bundling(n)->set_use_unconditional_delay();
a61af66fc99e Initial load
duke
parents:
diff changeset
1967 node_bundling(d)->set_used_in_unconditional_delay();
a61af66fc99e Initial load
duke
parents:
diff changeset
1968 _bundle_use.add_usage(avail_pipeline->resourceUse());
a61af66fc99e Initial load
duke
parents:
diff changeset
1969 _current_latency[d->_idx] = _bundle_cycle_number;
a61af66fc99e Initial load
duke
parents:
diff changeset
1970 _next_node = d;
a61af66fc99e Initial load
duke
parents:
diff changeset
1971 ++_bundle_instr_count;
a61af66fc99e Initial load
duke
parents:
diff changeset
1972 #ifndef PRODUCT
a61af66fc99e Initial load
duke
parents:
diff changeset
1973 _unconditional_delays++;
a61af66fc99e Initial load
duke
parents:
diff changeset
1974 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
1975 break;
a61af66fc99e Initial load
duke
parents:
diff changeset
1976 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1977 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1978 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1979 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1980
a61af66fc99e Initial load
duke
parents:
diff changeset
1981 // No delay slot, add a nop to the usage
a61af66fc99e Initial load
duke
parents:
diff changeset
1982 if (!_unconditional_delay_slot) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1983 // See if adding an instruction in the delay slot will overflow
a61af66fc99e Initial load
duke
parents:
diff changeset
1984 // the bundle.
a61af66fc99e Initial load
duke
parents:
diff changeset
1985 if (!NodeFitsInBundle(_nop)) {
a61af66fc99e Initial load
duke
parents:
diff changeset
1986 #ifndef PRODUCT
a61af66fc99e Initial load
duke
parents:
diff changeset
1987 if (_cfg->C->trace_opto_output())
a61af66fc99e Initial load
duke
parents:
diff changeset
1988 tty->print("# *** STEP(1 instruction for delay slot) ***\n");
a61af66fc99e Initial load
duke
parents:
diff changeset
1989 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
1990 step(1);
a61af66fc99e Initial load
duke
parents:
diff changeset
1991 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1992
a61af66fc99e Initial load
duke
parents:
diff changeset
1993 _bundle_use.add_usage(_nop->pipeline()->resourceUse());
a61af66fc99e Initial load
duke
parents:
diff changeset
1994 _next_node = _nop;
a61af66fc99e Initial load
duke
parents:
diff changeset
1995 ++_bundle_instr_count;
a61af66fc99e Initial load
duke
parents:
diff changeset
1996 }
a61af66fc99e Initial load
duke
parents:
diff changeset
1997
a61af66fc99e Initial load
duke
parents:
diff changeset
1998 // See if the instruction in the delay slot requires a
a61af66fc99e Initial load
duke
parents:
diff changeset
1999 // step of the bundles
a61af66fc99e Initial load
duke
parents:
diff changeset
2000 if (!NodeFitsInBundle(n)) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2001 #ifndef PRODUCT
a61af66fc99e Initial load
duke
parents:
diff changeset
2002 if (_cfg->C->trace_opto_output())
a61af66fc99e Initial load
duke
parents:
diff changeset
2003 tty->print("# *** STEP(branch won't fit) ***\n");
a61af66fc99e Initial load
duke
parents:
diff changeset
2004 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
2005 // Update the state information
a61af66fc99e Initial load
duke
parents:
diff changeset
2006 _bundle_instr_count = 0;
a61af66fc99e Initial load
duke
parents:
diff changeset
2007 _bundle_cycle_number += 1;
a61af66fc99e Initial load
duke
parents:
diff changeset
2008 _bundle_use.step(1);
a61af66fc99e Initial load
duke
parents:
diff changeset
2009 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2010 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2011
a61af66fc99e Initial load
duke
parents:
diff changeset
2012 // Get the number of instructions
a61af66fc99e Initial load
duke
parents:
diff changeset
2013 uint instruction_count = node_pipeline->instructionCount();
a61af66fc99e Initial load
duke
parents:
diff changeset
2014 if (node_pipeline->mayHaveNoCode() && n->size(_regalloc) == 0)
a61af66fc99e Initial load
duke
parents:
diff changeset
2015 instruction_count = 0;
a61af66fc99e Initial load
duke
parents:
diff changeset
2016
a61af66fc99e Initial load
duke
parents:
diff changeset
2017 // Compute the latency information
a61af66fc99e Initial load
duke
parents:
diff changeset
2018 uint delay = 0;
a61af66fc99e Initial load
duke
parents:
diff changeset
2019
a61af66fc99e Initial load
duke
parents:
diff changeset
2020 if (instruction_count > 0 || !node_pipeline->mayHaveNoCode()) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2021 int relative_latency = _current_latency[n->_idx] - _bundle_cycle_number;
a61af66fc99e Initial load
duke
parents:
diff changeset
2022 if (relative_latency < 0)
a61af66fc99e Initial load
duke
parents:
diff changeset
2023 relative_latency = 0;
a61af66fc99e Initial load
duke
parents:
diff changeset
2024
a61af66fc99e Initial load
duke
parents:
diff changeset
2025 delay = _bundle_use.full_latency(relative_latency, node_usage);
a61af66fc99e Initial load
duke
parents:
diff changeset
2026
a61af66fc99e Initial load
duke
parents:
diff changeset
2027 // Does not fit in this bundle, start a new one
a61af66fc99e Initial load
duke
parents:
diff changeset
2028 if (delay > 0) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2029 step(delay);
a61af66fc99e Initial load
duke
parents:
diff changeset
2030
a61af66fc99e Initial load
duke
parents:
diff changeset
2031 #ifndef PRODUCT
a61af66fc99e Initial load
duke
parents:
diff changeset
2032 if (_cfg->C->trace_opto_output())
a61af66fc99e Initial load
duke
parents:
diff changeset
2033 tty->print("# *** STEP(%d) ***\n", delay);
a61af66fc99e Initial load
duke
parents:
diff changeset
2034 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
2035 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2036 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2037
a61af66fc99e Initial load
duke
parents:
diff changeset
2038 // If this was placed in the delay slot, ignore it
a61af66fc99e Initial load
duke
parents:
diff changeset
2039 if (n != _unconditional_delay_slot) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2040
a61af66fc99e Initial load
duke
parents:
diff changeset
2041 if (delay == 0) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2042 if (node_pipeline->hasMultipleBundles()) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2043 #ifndef PRODUCT
a61af66fc99e Initial load
duke
parents:
diff changeset
2044 if (_cfg->C->trace_opto_output())
a61af66fc99e Initial load
duke
parents:
diff changeset
2045 tty->print("# *** STEP(multiple instructions) ***\n");
a61af66fc99e Initial load
duke
parents:
diff changeset
2046 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
2047 step(1);
a61af66fc99e Initial load
duke
parents:
diff changeset
2048 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2049
a61af66fc99e Initial load
duke
parents:
diff changeset
2050 else if (instruction_count + _bundle_instr_count > Pipeline::_max_instrs_per_cycle) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2051 #ifndef PRODUCT
a61af66fc99e Initial load
duke
parents:
diff changeset
2052 if (_cfg->C->trace_opto_output())
a61af66fc99e Initial load
duke
parents:
diff changeset
2053 tty->print("# *** STEP(%d >= %d instructions) ***\n",
a61af66fc99e Initial load
duke
parents:
diff changeset
2054 instruction_count + _bundle_instr_count,
a61af66fc99e Initial load
duke
parents:
diff changeset
2055 Pipeline::_max_instrs_per_cycle);
a61af66fc99e Initial load
duke
parents:
diff changeset
2056 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
2057 step(1);
a61af66fc99e Initial load
duke
parents:
diff changeset
2058 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2059 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2060
a61af66fc99e Initial load
duke
parents:
diff changeset
2061 if (node_pipeline->hasBranchDelay() && !_unconditional_delay_slot)
a61af66fc99e Initial load
duke
parents:
diff changeset
2062 _bundle_instr_count++;
a61af66fc99e Initial load
duke
parents:
diff changeset
2063
a61af66fc99e Initial load
duke
parents:
diff changeset
2064 // Set the node's latency
a61af66fc99e Initial load
duke
parents:
diff changeset
2065 _current_latency[n->_idx] = _bundle_cycle_number;
a61af66fc99e Initial load
duke
parents:
diff changeset
2066
a61af66fc99e Initial load
duke
parents:
diff changeset
2067 // Now merge the functional unit information
a61af66fc99e Initial load
duke
parents:
diff changeset
2068 if (instruction_count > 0 || !node_pipeline->mayHaveNoCode())
a61af66fc99e Initial load
duke
parents:
diff changeset
2069 _bundle_use.add_usage(node_usage);
a61af66fc99e Initial load
duke
parents:
diff changeset
2070
a61af66fc99e Initial load
duke
parents:
diff changeset
2071 // Increment the number of instructions in this bundle
a61af66fc99e Initial load
duke
parents:
diff changeset
2072 _bundle_instr_count += instruction_count;
a61af66fc99e Initial load
duke
parents:
diff changeset
2073
a61af66fc99e Initial load
duke
parents:
diff changeset
2074 // Remember this node for later
a61af66fc99e Initial load
duke
parents:
diff changeset
2075 if (n->is_Mach())
a61af66fc99e Initial load
duke
parents:
diff changeset
2076 _next_node = n;
a61af66fc99e Initial load
duke
parents:
diff changeset
2077 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2078
a61af66fc99e Initial load
duke
parents:
diff changeset
2079 // It's possible to have a BoxLock in the graph and in the _bbs mapping but
a61af66fc99e Initial load
duke
parents:
diff changeset
2080 // not in the bb->_nodes array. This happens for debug-info-only BoxLocks.
a61af66fc99e Initial load
duke
parents:
diff changeset
2081 // 'Schedule' them (basically ignore in the schedule) but do not insert them
a61af66fc99e Initial load
duke
parents:
diff changeset
2082 // into the block. All other scheduled nodes get put in the schedule here.
a61af66fc99e Initial load
duke
parents:
diff changeset
2083 int op = n->Opcode();
a61af66fc99e Initial load
duke
parents:
diff changeset
2084 if( (op == Op_Node && n->req() == 0) || // anti-dependence node OR
a61af66fc99e Initial load
duke
parents:
diff changeset
2085 (op != Op_Node && // Not an unused antidepedence node and
a61af66fc99e Initial load
duke
parents:
diff changeset
2086 // not an unallocated boxlock
a61af66fc99e Initial load
duke
parents:
diff changeset
2087 (OptoReg::is_valid(_regalloc->get_reg_first(n)) || op != Op_BoxLock)) ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2088
a61af66fc99e Initial load
duke
parents:
diff changeset
2089 // Push any trailing projections
a61af66fc99e Initial load
duke
parents:
diff changeset
2090 if( bb->_nodes[bb->_nodes.size()-1] != n ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2091 for (DUIterator_Fast imax, i = n->fast_outs(imax); i < imax; i++) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2092 Node *foi = n->fast_out(i);
a61af66fc99e Initial load
duke
parents:
diff changeset
2093 if( foi->is_Proj() )
a61af66fc99e Initial load
duke
parents:
diff changeset
2094 _scheduled.push(foi);
a61af66fc99e Initial load
duke
parents:
diff changeset
2095 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2096 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2097
a61af66fc99e Initial load
duke
parents:
diff changeset
2098 // Put the instruction in the schedule list
a61af66fc99e Initial load
duke
parents:
diff changeset
2099 _scheduled.push(n);
a61af66fc99e Initial load
duke
parents:
diff changeset
2100 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2101
a61af66fc99e Initial load
duke
parents:
diff changeset
2102 #ifndef PRODUCT
a61af66fc99e Initial load
duke
parents:
diff changeset
2103 if (_cfg->C->trace_opto_output())
a61af66fc99e Initial load
duke
parents:
diff changeset
2104 dump_available();
a61af66fc99e Initial load
duke
parents:
diff changeset
2105 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
2106
a61af66fc99e Initial load
duke
parents:
diff changeset
2107 // Walk all the definitions, decrementing use counts, and
a61af66fc99e Initial load
duke
parents:
diff changeset
2108 // if a definition has a 0 use count, place it in the available list.
a61af66fc99e Initial load
duke
parents:
diff changeset
2109 DecrementUseCounts(n,bb);
a61af66fc99e Initial load
duke
parents:
diff changeset
2110 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2111
a61af66fc99e Initial load
duke
parents:
diff changeset
2112 //------------------------------ComputeUseCount--------------------------------
a61af66fc99e Initial load
duke
parents:
diff changeset
2113 // This method sets the use count within a basic block. We will ignore all
a61af66fc99e Initial load
duke
parents:
diff changeset
2114 // uses outside the current basic block. As we are doing a backwards walk,
a61af66fc99e Initial load
duke
parents:
diff changeset
2115 // any node we reach that has a use count of 0 may be scheduled. This also
a61af66fc99e Initial load
duke
parents:
diff changeset
2116 // avoids the problem of cyclic references from phi nodes, as long as phi
a61af66fc99e Initial load
duke
parents:
diff changeset
2117 // nodes are at the front of the basic block. This method also initializes
a61af66fc99e Initial load
duke
parents:
diff changeset
2118 // the available list to the set of instructions that have no uses within this
a61af66fc99e Initial load
duke
parents:
diff changeset
2119 // basic block.
a61af66fc99e Initial load
duke
parents:
diff changeset
2120 void Scheduling::ComputeUseCount(const Block *bb) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2121 #ifndef PRODUCT
a61af66fc99e Initial load
duke
parents:
diff changeset
2122 if (_cfg->C->trace_opto_output())
a61af66fc99e Initial load
duke
parents:
diff changeset
2123 tty->print("# -> ComputeUseCount\n");
a61af66fc99e Initial load
duke
parents:
diff changeset
2124 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
2125
a61af66fc99e Initial load
duke
parents:
diff changeset
2126 // Clear the list of available and scheduled instructions, just in case
a61af66fc99e Initial load
duke
parents:
diff changeset
2127 _available.clear();
a61af66fc99e Initial load
duke
parents:
diff changeset
2128 _scheduled.clear();
a61af66fc99e Initial load
duke
parents:
diff changeset
2129
a61af66fc99e Initial load
duke
parents:
diff changeset
2130 // No delay slot specified
a61af66fc99e Initial load
duke
parents:
diff changeset
2131 _unconditional_delay_slot = NULL;
a61af66fc99e Initial load
duke
parents:
diff changeset
2132
a61af66fc99e Initial load
duke
parents:
diff changeset
2133 #ifdef ASSERT
a61af66fc99e Initial load
duke
parents:
diff changeset
2134 for( uint i=0; i < bb->_nodes.size(); i++ )
a61af66fc99e Initial load
duke
parents:
diff changeset
2135 assert( _uses[bb->_nodes[i]->_idx] == 0, "_use array not clean" );
a61af66fc99e Initial load
duke
parents:
diff changeset
2136 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
2137
a61af66fc99e Initial load
duke
parents:
diff changeset
2138 // Force the _uses count to never go to zero for unscheduable pieces
a61af66fc99e Initial load
duke
parents:
diff changeset
2139 // of the block
a61af66fc99e Initial load
duke
parents:
diff changeset
2140 for( uint k = 0; k < _bb_start; k++ )
a61af66fc99e Initial load
duke
parents:
diff changeset
2141 _uses[bb->_nodes[k]->_idx] = 1;
a61af66fc99e Initial load
duke
parents:
diff changeset
2142 for( uint l = _bb_end; l < bb->_nodes.size(); l++ )
a61af66fc99e Initial load
duke
parents:
diff changeset
2143 _uses[bb->_nodes[l]->_idx] = 1;
a61af66fc99e Initial load
duke
parents:
diff changeset
2144
a61af66fc99e Initial load
duke
parents:
diff changeset
2145 // Iterate backwards over the instructions in the block. Don't count the
a61af66fc99e Initial load
duke
parents:
diff changeset
2146 // branch projections at end or the block header instructions.
a61af66fc99e Initial load
duke
parents:
diff changeset
2147 for( uint j = _bb_end-1; j >= _bb_start; j-- ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2148 Node *n = bb->_nodes[j];
a61af66fc99e Initial load
duke
parents:
diff changeset
2149 if( n->is_Proj() ) continue; // Projections handled another way
a61af66fc99e Initial load
duke
parents:
diff changeset
2150
a61af66fc99e Initial load
duke
parents:
diff changeset
2151 // Account for all uses
a61af66fc99e Initial load
duke
parents:
diff changeset
2152 for ( uint k = 0; k < n->len(); k++ ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2153 Node *inp = n->in(k);
a61af66fc99e Initial load
duke
parents:
diff changeset
2154 if (!inp) continue;
a61af66fc99e Initial load
duke
parents:
diff changeset
2155 assert(inp != n, "no cycles allowed" );
a61af66fc99e Initial load
duke
parents:
diff changeset
2156 if( _bbs[inp->_idx] == bb ) { // Block-local use?
a61af66fc99e Initial load
duke
parents:
diff changeset
2157 if( inp->is_Proj() ) // Skip through Proj's
a61af66fc99e Initial load
duke
parents:
diff changeset
2158 inp = inp->in(0);
a61af66fc99e Initial load
duke
parents:
diff changeset
2159 ++_uses[inp->_idx]; // Count 1 block-local use
a61af66fc99e Initial load
duke
parents:
diff changeset
2160 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2161 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2162
a61af66fc99e Initial load
duke
parents:
diff changeset
2163 // If this instruction has a 0 use count, then it is available
a61af66fc99e Initial load
duke
parents:
diff changeset
2164 if (!_uses[n->_idx]) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2165 _current_latency[n->_idx] = _bundle_cycle_number;
a61af66fc99e Initial load
duke
parents:
diff changeset
2166 AddNodeToAvailableList(n);
a61af66fc99e Initial load
duke
parents:
diff changeset
2167 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2168
a61af66fc99e Initial load
duke
parents:
diff changeset
2169 #ifndef PRODUCT
a61af66fc99e Initial load
duke
parents:
diff changeset
2170 if (_cfg->C->trace_opto_output()) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2171 tty->print("# uses: %3d: ", _uses[n->_idx]);
a61af66fc99e Initial load
duke
parents:
diff changeset
2172 n->dump();
a61af66fc99e Initial load
duke
parents:
diff changeset
2173 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2174 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
2175 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2176
a61af66fc99e Initial load
duke
parents:
diff changeset
2177 #ifndef PRODUCT
a61af66fc99e Initial load
duke
parents:
diff changeset
2178 if (_cfg->C->trace_opto_output())
a61af66fc99e Initial load
duke
parents:
diff changeset
2179 tty->print("# <- ComputeUseCount\n");
a61af66fc99e Initial load
duke
parents:
diff changeset
2180 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
2181 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2182
a61af66fc99e Initial load
duke
parents:
diff changeset
2183 // This routine performs scheduling on each basic block in reverse order,
a61af66fc99e Initial load
duke
parents:
diff changeset
2184 // using instruction latencies and taking into account function unit
a61af66fc99e Initial load
duke
parents:
diff changeset
2185 // availability.
a61af66fc99e Initial load
duke
parents:
diff changeset
2186 void Scheduling::DoScheduling() {
a61af66fc99e Initial load
duke
parents:
diff changeset
2187 #ifndef PRODUCT
a61af66fc99e Initial load
duke
parents:
diff changeset
2188 if (_cfg->C->trace_opto_output())
a61af66fc99e Initial load
duke
parents:
diff changeset
2189 tty->print("# -> DoScheduling\n");
a61af66fc99e Initial load
duke
parents:
diff changeset
2190 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
2191
a61af66fc99e Initial load
duke
parents:
diff changeset
2192 Block *succ_bb = NULL;
a61af66fc99e Initial load
duke
parents:
diff changeset
2193 Block *bb;
a61af66fc99e Initial load
duke
parents:
diff changeset
2194
a61af66fc99e Initial load
duke
parents:
diff changeset
2195 // Walk over all the basic blocks in reverse order
a61af66fc99e Initial load
duke
parents:
diff changeset
2196 for( int i=_cfg->_num_blocks-1; i >= 0; succ_bb = bb, i-- ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2197 bb = _cfg->_blocks[i];
a61af66fc99e Initial load
duke
parents:
diff changeset
2198
a61af66fc99e Initial load
duke
parents:
diff changeset
2199 #ifndef PRODUCT
a61af66fc99e Initial load
duke
parents:
diff changeset
2200 if (_cfg->C->trace_opto_output()) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2201 tty->print("# Schedule BB#%03d (initial)\n", i);
a61af66fc99e Initial load
duke
parents:
diff changeset
2202 for (uint j = 0; j < bb->_nodes.size(); j++)
a61af66fc99e Initial load
duke
parents:
diff changeset
2203 bb->_nodes[j]->dump();
a61af66fc99e Initial load
duke
parents:
diff changeset
2204 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2205 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
2206
a61af66fc99e Initial load
duke
parents:
diff changeset
2207 // On the head node, skip processing
a61af66fc99e Initial load
duke
parents:
diff changeset
2208 if( bb == _cfg->_broot )
a61af66fc99e Initial load
duke
parents:
diff changeset
2209 continue;
a61af66fc99e Initial load
duke
parents:
diff changeset
2210
a61af66fc99e Initial load
duke
parents:
diff changeset
2211 // Skip empty, connector blocks
a61af66fc99e Initial load
duke
parents:
diff changeset
2212 if (bb->is_connector())
a61af66fc99e Initial load
duke
parents:
diff changeset
2213 continue;
a61af66fc99e Initial load
duke
parents:
diff changeset
2214
a61af66fc99e Initial load
duke
parents:
diff changeset
2215 // If the following block is not the sole successor of
a61af66fc99e Initial load
duke
parents:
diff changeset
2216 // this one, then reset the pipeline information
a61af66fc99e Initial load
duke
parents:
diff changeset
2217 if (bb->_num_succs != 1 || bb->non_connector_successor(0) != succ_bb) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2218 #ifndef PRODUCT
a61af66fc99e Initial load
duke
parents:
diff changeset
2219 if (_cfg->C->trace_opto_output()) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2220 tty->print("*** bundle start of next BB, node %d, for %d instructions\n",
a61af66fc99e Initial load
duke
parents:
diff changeset
2221 _next_node->_idx, _bundle_instr_count);
a61af66fc99e Initial load
duke
parents:
diff changeset
2222 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2223 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
2224 step_and_clear();
a61af66fc99e Initial load
duke
parents:
diff changeset
2225 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2226
a61af66fc99e Initial load
duke
parents:
diff changeset
2227 // Leave untouched the starting instruction, any Phis, a CreateEx node
a61af66fc99e Initial load
duke
parents:
diff changeset
2228 // or Top. bb->_nodes[_bb_start] is the first schedulable instruction.
a61af66fc99e Initial load
duke
parents:
diff changeset
2229 _bb_end = bb->_nodes.size()-1;
a61af66fc99e Initial load
duke
parents:
diff changeset
2230 for( _bb_start=1; _bb_start <= _bb_end; _bb_start++ ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2231 Node *n = bb->_nodes[_bb_start];
a61af66fc99e Initial load
duke
parents:
diff changeset
2232 // Things not matched, like Phinodes and ProjNodes don't get scheduled.
a61af66fc99e Initial load
duke
parents:
diff changeset
2233 // Also, MachIdealNodes do not get scheduled
a61af66fc99e Initial load
duke
parents:
diff changeset
2234 if( !n->is_Mach() ) continue; // Skip non-machine nodes
a61af66fc99e Initial load
duke
parents:
diff changeset
2235 MachNode *mach = n->as_Mach();
a61af66fc99e Initial load
duke
parents:
diff changeset
2236 int iop = mach->ideal_Opcode();
a61af66fc99e Initial load
duke
parents:
diff changeset
2237 if( iop == Op_CreateEx ) continue; // CreateEx is pinned
a61af66fc99e Initial load
duke
parents:
diff changeset
2238 if( iop == Op_Con ) continue; // Do not schedule Top
a61af66fc99e Initial load
duke
parents:
diff changeset
2239 if( iop == Op_Node && // Do not schedule PhiNodes, ProjNodes
a61af66fc99e Initial load
duke
parents:
diff changeset
2240 mach->pipeline() == MachNode::pipeline_class() &&
a61af66fc99e Initial load
duke
parents:
diff changeset
2241 !n->is_SpillCopy() ) // Breakpoints, Prolog, etc
a61af66fc99e Initial load
duke
parents:
diff changeset
2242 continue;
a61af66fc99e Initial load
duke
parents:
diff changeset
2243 break; // Funny loop structure to be sure...
a61af66fc99e Initial load
duke
parents:
diff changeset
2244 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2245 // Compute last "interesting" instruction in block - last instruction we
a61af66fc99e Initial load
duke
parents:
diff changeset
2246 // might schedule. _bb_end points just after last schedulable inst. We
a61af66fc99e Initial load
duke
parents:
diff changeset
2247 // normally schedule conditional branches (despite them being forced last
a61af66fc99e Initial load
duke
parents:
diff changeset
2248 // in the block), because they have delay slots we can fill. Calls all
a61af66fc99e Initial load
duke
parents:
diff changeset
2249 // have their delay slots filled in the template expansions, so we don't
a61af66fc99e Initial load
duke
parents:
diff changeset
2250 // bother scheduling them.
a61af66fc99e Initial load
duke
parents:
diff changeset
2251 Node *last = bb->_nodes[_bb_end];
a61af66fc99e Initial load
duke
parents:
diff changeset
2252 if( last->is_Catch() ||
a61af66fc99e Initial load
duke
parents:
diff changeset
2253 (last->is_Mach() && last->as_Mach()->ideal_Opcode() == Op_Halt) ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2254 // There must be a prior call. Skip it.
a61af66fc99e Initial load
duke
parents:
diff changeset
2255 while( !bb->_nodes[--_bb_end]->is_Call() ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2256 assert( bb->_nodes[_bb_end]->is_Proj(), "skipping projections after expected call" );
a61af66fc99e Initial load
duke
parents:
diff changeset
2257 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2258 } else if( last->is_MachNullCheck() ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2259 // Backup so the last null-checked memory instruction is
a61af66fc99e Initial load
duke
parents:
diff changeset
2260 // outside the schedulable range. Skip over the nullcheck,
a61af66fc99e Initial load
duke
parents:
diff changeset
2261 // projection, and the memory nodes.
a61af66fc99e Initial load
duke
parents:
diff changeset
2262 Node *mem = last->in(1);
a61af66fc99e Initial load
duke
parents:
diff changeset
2263 do {
a61af66fc99e Initial load
duke
parents:
diff changeset
2264 _bb_end--;
a61af66fc99e Initial load
duke
parents:
diff changeset
2265 } while (mem != bb->_nodes[_bb_end]);
a61af66fc99e Initial load
duke
parents:
diff changeset
2266 } else {
a61af66fc99e Initial load
duke
parents:
diff changeset
2267 // Set _bb_end to point after last schedulable inst.
a61af66fc99e Initial load
duke
parents:
diff changeset
2268 _bb_end++;
a61af66fc99e Initial load
duke
parents:
diff changeset
2269 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2270
a61af66fc99e Initial load
duke
parents:
diff changeset
2271 assert( _bb_start <= _bb_end, "inverted block ends" );
a61af66fc99e Initial load
duke
parents:
diff changeset
2272
a61af66fc99e Initial load
duke
parents:
diff changeset
2273 // Compute the register antidependencies for the basic block
a61af66fc99e Initial load
duke
parents:
diff changeset
2274 ComputeRegisterAntidependencies(bb);
a61af66fc99e Initial load
duke
parents:
diff changeset
2275 if (_cfg->C->failing()) return; // too many D-U pinch points
a61af66fc99e Initial load
duke
parents:
diff changeset
2276
a61af66fc99e Initial load
duke
parents:
diff changeset
2277 // Compute intra-bb latencies for the nodes
a61af66fc99e Initial load
duke
parents:
diff changeset
2278 ComputeLocalLatenciesForward(bb);
a61af66fc99e Initial load
duke
parents:
diff changeset
2279
a61af66fc99e Initial load
duke
parents:
diff changeset
2280 // Compute the usage within the block, and set the list of all nodes
a61af66fc99e Initial load
duke
parents:
diff changeset
2281 // in the block that have no uses within the block.
a61af66fc99e Initial load
duke
parents:
diff changeset
2282 ComputeUseCount(bb);
a61af66fc99e Initial load
duke
parents:
diff changeset
2283
a61af66fc99e Initial load
duke
parents:
diff changeset
2284 // Schedule the remaining instructions in the block
a61af66fc99e Initial load
duke
parents:
diff changeset
2285 while ( _available.size() > 0 ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2286 Node *n = ChooseNodeToBundle();
a61af66fc99e Initial load
duke
parents:
diff changeset
2287 AddNodeToBundle(n,bb);
a61af66fc99e Initial load
duke
parents:
diff changeset
2288 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2289
a61af66fc99e Initial load
duke
parents:
diff changeset
2290 assert( _scheduled.size() == _bb_end - _bb_start, "wrong number of instructions" );
a61af66fc99e Initial load
duke
parents:
diff changeset
2291 #ifdef ASSERT
a61af66fc99e Initial load
duke
parents:
diff changeset
2292 for( uint l = _bb_start; l < _bb_end; l++ ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2293 Node *n = bb->_nodes[l];
a61af66fc99e Initial load
duke
parents:
diff changeset
2294 uint m;
a61af66fc99e Initial load
duke
parents:
diff changeset
2295 for( m = 0; m < _bb_end-_bb_start; m++ )
a61af66fc99e Initial load
duke
parents:
diff changeset
2296 if( _scheduled[m] == n )
a61af66fc99e Initial load
duke
parents:
diff changeset
2297 break;
a61af66fc99e Initial load
duke
parents:
diff changeset
2298 assert( m < _bb_end-_bb_start, "instruction missing in schedule" );
a61af66fc99e Initial load
duke
parents:
diff changeset
2299 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2300 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
2301
a61af66fc99e Initial load
duke
parents:
diff changeset
2302 // Now copy the instructions (in reverse order) back to the block
a61af66fc99e Initial load
duke
parents:
diff changeset
2303 for ( uint k = _bb_start; k < _bb_end; k++ )
a61af66fc99e Initial load
duke
parents:
diff changeset
2304 bb->_nodes.map(k, _scheduled[_bb_end-k-1]);
a61af66fc99e Initial load
duke
parents:
diff changeset
2305
a61af66fc99e Initial load
duke
parents:
diff changeset
2306 #ifndef PRODUCT
a61af66fc99e Initial load
duke
parents:
diff changeset
2307 if (_cfg->C->trace_opto_output()) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2308 tty->print("# Schedule BB#%03d (final)\n", i);
a61af66fc99e Initial load
duke
parents:
diff changeset
2309 uint current = 0;
a61af66fc99e Initial load
duke
parents:
diff changeset
2310 for (uint j = 0; j < bb->_nodes.size(); j++) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2311 Node *n = bb->_nodes[j];
a61af66fc99e Initial load
duke
parents:
diff changeset
2312 if( valid_bundle_info(n) ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2313 Bundle *bundle = node_bundling(n);
a61af66fc99e Initial load
duke
parents:
diff changeset
2314 if (bundle->instr_count() > 0 || bundle->flags() > 0) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2315 tty->print("*** Bundle: ");
a61af66fc99e Initial load
duke
parents:
diff changeset
2316 bundle->dump();
a61af66fc99e Initial load
duke
parents:
diff changeset
2317 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2318 n->dump();
a61af66fc99e Initial load
duke
parents:
diff changeset
2319 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2320 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2321 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2322 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
2323 #ifdef ASSERT
a61af66fc99e Initial load
duke
parents:
diff changeset
2324 verify_good_schedule(bb,"after block local scheduling");
a61af66fc99e Initial load
duke
parents:
diff changeset
2325 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
2326 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2327
a61af66fc99e Initial load
duke
parents:
diff changeset
2328 #ifndef PRODUCT
a61af66fc99e Initial load
duke
parents:
diff changeset
2329 if (_cfg->C->trace_opto_output())
a61af66fc99e Initial load
duke
parents:
diff changeset
2330 tty->print("# <- DoScheduling\n");
a61af66fc99e Initial load
duke
parents:
diff changeset
2331 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
2332
a61af66fc99e Initial load
duke
parents:
diff changeset
2333 // Record final node-bundling array location
a61af66fc99e Initial load
duke
parents:
diff changeset
2334 _regalloc->C->set_node_bundling_base(_node_bundling_base);
a61af66fc99e Initial load
duke
parents:
diff changeset
2335
a61af66fc99e Initial load
duke
parents:
diff changeset
2336 } // end DoScheduling
a61af66fc99e Initial load
duke
parents:
diff changeset
2337
a61af66fc99e Initial load
duke
parents:
diff changeset
2338 //------------------------------verify_good_schedule---------------------------
a61af66fc99e Initial load
duke
parents:
diff changeset
2339 // Verify that no live-range used in the block is killed in the block by a
a61af66fc99e Initial load
duke
parents:
diff changeset
2340 // wrong DEF. This doesn't verify live-ranges that span blocks.
a61af66fc99e Initial load
duke
parents:
diff changeset
2341
a61af66fc99e Initial load
duke
parents:
diff changeset
2342 // Check for edge existence. Used to avoid adding redundant precedence edges.
a61af66fc99e Initial load
duke
parents:
diff changeset
2343 static bool edge_from_to( Node *from, Node *to ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2344 for( uint i=0; i<from->len(); i++ )
a61af66fc99e Initial load
duke
parents:
diff changeset
2345 if( from->in(i) == to )
a61af66fc99e Initial load
duke
parents:
diff changeset
2346 return true;
a61af66fc99e Initial load
duke
parents:
diff changeset
2347 return false;
a61af66fc99e Initial load
duke
parents:
diff changeset
2348 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2349
a61af66fc99e Initial load
duke
parents:
diff changeset
2350 #ifdef ASSERT
a61af66fc99e Initial load
duke
parents:
diff changeset
2351 //------------------------------verify_do_def----------------------------------
a61af66fc99e Initial load
duke
parents:
diff changeset
2352 void Scheduling::verify_do_def( Node *n, OptoReg::Name def, const char *msg ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2353 // Check for bad kills
a61af66fc99e Initial load
duke
parents:
diff changeset
2354 if( OptoReg::is_valid(def) ) { // Ignore stores & control flow
a61af66fc99e Initial load
duke
parents:
diff changeset
2355 Node *prior_use = _reg_node[def];
a61af66fc99e Initial load
duke
parents:
diff changeset
2356 if( prior_use && !edge_from_to(prior_use,n) ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2357 tty->print("%s = ",OptoReg::as_VMReg(def)->name());
a61af66fc99e Initial load
duke
parents:
diff changeset
2358 n->dump();
a61af66fc99e Initial load
duke
parents:
diff changeset
2359 tty->print_cr("...");
a61af66fc99e Initial load
duke
parents:
diff changeset
2360 prior_use->dump();
a61af66fc99e Initial load
duke
parents:
diff changeset
2361 assert_msg(edge_from_to(prior_use,n),msg);
a61af66fc99e Initial load
duke
parents:
diff changeset
2362 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2363 _reg_node.map(def,NULL); // Kill live USEs
a61af66fc99e Initial load
duke
parents:
diff changeset
2364 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2365 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2366
a61af66fc99e Initial load
duke
parents:
diff changeset
2367 //------------------------------verify_good_schedule---------------------------
a61af66fc99e Initial load
duke
parents:
diff changeset
2368 void Scheduling::verify_good_schedule( Block *b, const char *msg ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2369
a61af66fc99e Initial load
duke
parents:
diff changeset
2370 // Zap to something reasonable for the verify code
a61af66fc99e Initial load
duke
parents:
diff changeset
2371 _reg_node.clear();
a61af66fc99e Initial load
duke
parents:
diff changeset
2372
a61af66fc99e Initial load
duke
parents:
diff changeset
2373 // Walk over the block backwards. Check to make sure each DEF doesn't
a61af66fc99e Initial load
duke
parents:
diff changeset
2374 // kill a live value (other than the one it's supposed to). Add each
a61af66fc99e Initial load
duke
parents:
diff changeset
2375 // USE to the live set.
a61af66fc99e Initial load
duke
parents:
diff changeset
2376 for( uint i = b->_nodes.size()-1; i >= _bb_start; i-- ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2377 Node *n = b->_nodes[i];
a61af66fc99e Initial load
duke
parents:
diff changeset
2378 int n_op = n->Opcode();
a61af66fc99e Initial load
duke
parents:
diff changeset
2379 if( n_op == Op_MachProj && n->ideal_reg() == MachProjNode::fat_proj ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2380 // Fat-proj kills a slew of registers
a61af66fc99e Initial load
duke
parents:
diff changeset
2381 RegMask rm = n->out_RegMask();// Make local copy
a61af66fc99e Initial load
duke
parents:
diff changeset
2382 while( rm.is_NotEmpty() ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2383 OptoReg::Name kill = rm.find_first_elem();
a61af66fc99e Initial load
duke
parents:
diff changeset
2384 rm.Remove(kill);
a61af66fc99e Initial load
duke
parents:
diff changeset
2385 verify_do_def( n, kill, msg );
a61af66fc99e Initial load
duke
parents:
diff changeset
2386 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2387 } else if( n_op != Op_Node ) { // Avoid brand new antidependence nodes
a61af66fc99e Initial load
duke
parents:
diff changeset
2388 // Get DEF'd registers the normal way
a61af66fc99e Initial load
duke
parents:
diff changeset
2389 verify_do_def( n, _regalloc->get_reg_first(n), msg );
a61af66fc99e Initial load
duke
parents:
diff changeset
2390 verify_do_def( n, _regalloc->get_reg_second(n), msg );
a61af66fc99e Initial load
duke
parents:
diff changeset
2391 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2392
a61af66fc99e Initial load
duke
parents:
diff changeset
2393 // Now make all USEs live
a61af66fc99e Initial load
duke
parents:
diff changeset
2394 for( uint i=1; i<n->req(); i++ ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2395 Node *def = n->in(i);
a61af66fc99e Initial load
duke
parents:
diff changeset
2396 assert(def != 0, "input edge required");
a61af66fc99e Initial load
duke
parents:
diff changeset
2397 OptoReg::Name reg_lo = _regalloc->get_reg_first(def);
a61af66fc99e Initial load
duke
parents:
diff changeset
2398 OptoReg::Name reg_hi = _regalloc->get_reg_second(def);
a61af66fc99e Initial load
duke
parents:
diff changeset
2399 if( OptoReg::is_valid(reg_lo) ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2400 assert_msg(!_reg_node[reg_lo] || edge_from_to(_reg_node[reg_lo],def), msg );
a61af66fc99e Initial load
duke
parents:
diff changeset
2401 _reg_node.map(reg_lo,n);
a61af66fc99e Initial load
duke
parents:
diff changeset
2402 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2403 if( OptoReg::is_valid(reg_hi) ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2404 assert_msg(!_reg_node[reg_hi] || edge_from_to(_reg_node[reg_hi],def), msg );
a61af66fc99e Initial load
duke
parents:
diff changeset
2405 _reg_node.map(reg_hi,n);
a61af66fc99e Initial load
duke
parents:
diff changeset
2406 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2407 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2408
a61af66fc99e Initial load
duke
parents:
diff changeset
2409 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2410
a61af66fc99e Initial load
duke
parents:
diff changeset
2411 // Zap to something reasonable for the Antidependence code
a61af66fc99e Initial load
duke
parents:
diff changeset
2412 _reg_node.clear();
a61af66fc99e Initial load
duke
parents:
diff changeset
2413 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2414 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
2415
a61af66fc99e Initial load
duke
parents:
diff changeset
2416 // Conditionally add precedence edges. Avoid putting edges on Projs.
a61af66fc99e Initial load
duke
parents:
diff changeset
2417 static void add_prec_edge_from_to( Node *from, Node *to ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2418 if( from->is_Proj() ) { // Put precedence edge on Proj's input
a61af66fc99e Initial load
duke
parents:
diff changeset
2419 assert( from->req() == 1 && (from->len() == 1 || from->in(1)==0), "no precedence edges on projections" );
a61af66fc99e Initial load
duke
parents:
diff changeset
2420 from = from->in(0);
a61af66fc99e Initial load
duke
parents:
diff changeset
2421 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2422 if( from != to && // No cycles (for things like LD L0,[L0+4] )
a61af66fc99e Initial load
duke
parents:
diff changeset
2423 !edge_from_to( from, to ) ) // Avoid duplicate edge
a61af66fc99e Initial load
duke
parents:
diff changeset
2424 from->add_prec(to);
a61af66fc99e Initial load
duke
parents:
diff changeset
2425 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2426
a61af66fc99e Initial load
duke
parents:
diff changeset
2427 //------------------------------anti_do_def------------------------------------
a61af66fc99e Initial load
duke
parents:
diff changeset
2428 void Scheduling::anti_do_def( Block *b, Node *def, OptoReg::Name def_reg, int is_def ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2429 if( !OptoReg::is_valid(def_reg) ) // Ignore stores & control flow
a61af66fc99e Initial load
duke
parents:
diff changeset
2430 return;
a61af66fc99e Initial load
duke
parents:
diff changeset
2431
a61af66fc99e Initial load
duke
parents:
diff changeset
2432 Node *pinch = _reg_node[def_reg]; // Get pinch point
a61af66fc99e Initial load
duke
parents:
diff changeset
2433 if( !pinch || _bbs[pinch->_idx] != b || // No pinch-point yet?
a61af66fc99e Initial load
duke
parents:
diff changeset
2434 is_def ) { // Check for a true def (not a kill)
a61af66fc99e Initial load
duke
parents:
diff changeset
2435 _reg_node.map(def_reg,def); // Record def/kill as the optimistic pinch-point
a61af66fc99e Initial load
duke
parents:
diff changeset
2436 return;
a61af66fc99e Initial load
duke
parents:
diff changeset
2437 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2438
a61af66fc99e Initial load
duke
parents:
diff changeset
2439 Node *kill = def; // Rename 'def' to more descriptive 'kill'
a61af66fc99e Initial load
duke
parents:
diff changeset
2440 debug_only( def = (Node*)0xdeadbeef; )
a61af66fc99e Initial load
duke
parents:
diff changeset
2441
a61af66fc99e Initial load
duke
parents:
diff changeset
2442 // After some number of kills there _may_ be a later def
a61af66fc99e Initial load
duke
parents:
diff changeset
2443 Node *later_def = NULL;
a61af66fc99e Initial load
duke
parents:
diff changeset
2444
a61af66fc99e Initial load
duke
parents:
diff changeset
2445 // Finding a kill requires a real pinch-point.
a61af66fc99e Initial load
duke
parents:
diff changeset
2446 // Check for not already having a pinch-point.
a61af66fc99e Initial load
duke
parents:
diff changeset
2447 // Pinch points are Op_Node's.
a61af66fc99e Initial load
duke
parents:
diff changeset
2448 if( pinch->Opcode() != Op_Node ) { // Or later-def/kill as pinch-point?
a61af66fc99e Initial load
duke
parents:
diff changeset
2449 later_def = pinch; // Must be def/kill as optimistic pinch-point
a61af66fc99e Initial load
duke
parents:
diff changeset
2450 if ( _pinch_free_list.size() > 0) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2451 pinch = _pinch_free_list.pop();
a61af66fc99e Initial load
duke
parents:
diff changeset
2452 } else {
a61af66fc99e Initial load
duke
parents:
diff changeset
2453 pinch = new (_cfg->C, 1) Node(1); // Pinch point to-be
a61af66fc99e Initial load
duke
parents:
diff changeset
2454 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2455 if (pinch->_idx >= _regalloc->node_regs_max_index()) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2456 _cfg->C->record_method_not_compilable("too many D-U pinch points");
a61af66fc99e Initial load
duke
parents:
diff changeset
2457 return;
a61af66fc99e Initial load
duke
parents:
diff changeset
2458 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2459 _bbs.map(pinch->_idx,b); // Pretend it's valid in this block (lazy init)
a61af66fc99e Initial load
duke
parents:
diff changeset
2460 _reg_node.map(def_reg,pinch); // Record pinch-point
a61af66fc99e Initial load
duke
parents:
diff changeset
2461 //_regalloc->set_bad(pinch->_idx); // Already initialized this way.
a61af66fc99e Initial load
duke
parents:
diff changeset
2462 if( later_def->outcnt() == 0 || later_def->ideal_reg() == MachProjNode::fat_proj ) { // Distinguish def from kill
a61af66fc99e Initial load
duke
parents:
diff changeset
2463 pinch->init_req(0, _cfg->C->top()); // set not NULL for the next call
a61af66fc99e Initial load
duke
parents:
diff changeset
2464 add_prec_edge_from_to(later_def,pinch); // Add edge from kill to pinch
a61af66fc99e Initial load
duke
parents:
diff changeset
2465 later_def = NULL; // and no later def
a61af66fc99e Initial load
duke
parents:
diff changeset
2466 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2467 pinch->set_req(0,later_def); // Hook later def so we can find it
a61af66fc99e Initial load
duke
parents:
diff changeset
2468 } else { // Else have valid pinch point
a61af66fc99e Initial load
duke
parents:
diff changeset
2469 if( pinch->in(0) ) // If there is a later-def
a61af66fc99e Initial load
duke
parents:
diff changeset
2470 later_def = pinch->in(0); // Get it
a61af66fc99e Initial load
duke
parents:
diff changeset
2471 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2472
a61af66fc99e Initial load
duke
parents:
diff changeset
2473 // Add output-dependence edge from later def to kill
a61af66fc99e Initial load
duke
parents:
diff changeset
2474 if( later_def ) // If there is some original def
a61af66fc99e Initial load
duke
parents:
diff changeset
2475 add_prec_edge_from_to(later_def,kill); // Add edge from def to kill
a61af66fc99e Initial load
duke
parents:
diff changeset
2476
a61af66fc99e Initial load
duke
parents:
diff changeset
2477 // See if current kill is also a use, and so is forced to be the pinch-point.
a61af66fc99e Initial load
duke
parents:
diff changeset
2478 if( pinch->Opcode() == Op_Node ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2479 Node *uses = kill->is_Proj() ? kill->in(0) : kill;
a61af66fc99e Initial load
duke
parents:
diff changeset
2480 for( uint i=1; i<uses->req(); i++ ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2481 if( _regalloc->get_reg_first(uses->in(i)) == def_reg ||
a61af66fc99e Initial load
duke
parents:
diff changeset
2482 _regalloc->get_reg_second(uses->in(i)) == def_reg ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2483 // Yes, found a use/kill pinch-point
a61af66fc99e Initial load
duke
parents:
diff changeset
2484 pinch->set_req(0,NULL); //
a61af66fc99e Initial load
duke
parents:
diff changeset
2485 pinch->replace_by(kill); // Move anti-dep edges up
a61af66fc99e Initial load
duke
parents:
diff changeset
2486 pinch = kill;
a61af66fc99e Initial load
duke
parents:
diff changeset
2487 _reg_node.map(def_reg,pinch);
a61af66fc99e Initial load
duke
parents:
diff changeset
2488 return;
a61af66fc99e Initial load
duke
parents:
diff changeset
2489 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2490 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2491 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2492
a61af66fc99e Initial load
duke
parents:
diff changeset
2493 // Add edge from kill to pinch-point
a61af66fc99e Initial load
duke
parents:
diff changeset
2494 add_prec_edge_from_to(kill,pinch);
a61af66fc99e Initial load
duke
parents:
diff changeset
2495 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2496
a61af66fc99e Initial load
duke
parents:
diff changeset
2497 //------------------------------anti_do_use------------------------------------
a61af66fc99e Initial load
duke
parents:
diff changeset
2498 void Scheduling::anti_do_use( Block *b, Node *use, OptoReg::Name use_reg ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2499 if( !OptoReg::is_valid(use_reg) ) // Ignore stores & control flow
a61af66fc99e Initial load
duke
parents:
diff changeset
2500 return;
a61af66fc99e Initial load
duke
parents:
diff changeset
2501 Node *pinch = _reg_node[use_reg]; // Get pinch point
a61af66fc99e Initial load
duke
parents:
diff changeset
2502 // Check for no later def_reg/kill in block
a61af66fc99e Initial load
duke
parents:
diff changeset
2503 if( pinch && _bbs[pinch->_idx] == b &&
a61af66fc99e Initial load
duke
parents:
diff changeset
2504 // Use has to be block-local as well
a61af66fc99e Initial load
duke
parents:
diff changeset
2505 _bbs[use->_idx] == b ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2506 if( pinch->Opcode() == Op_Node && // Real pinch-point (not optimistic?)
a61af66fc99e Initial load
duke
parents:
diff changeset
2507 pinch->req() == 1 ) { // pinch not yet in block?
a61af66fc99e Initial load
duke
parents:
diff changeset
2508 pinch->del_req(0); // yank pointer to later-def, also set flag
a61af66fc99e Initial load
duke
parents:
diff changeset
2509 // Insert the pinch-point in the block just after the last use
a61af66fc99e Initial load
duke
parents:
diff changeset
2510 b->_nodes.insert(b->find_node(use)+1,pinch);
a61af66fc99e Initial load
duke
parents:
diff changeset
2511 _bb_end++; // Increase size scheduled region in block
a61af66fc99e Initial load
duke
parents:
diff changeset
2512 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2513
a61af66fc99e Initial load
duke
parents:
diff changeset
2514 add_prec_edge_from_to(pinch,use);
a61af66fc99e Initial load
duke
parents:
diff changeset
2515 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2516 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2517
a61af66fc99e Initial load
duke
parents:
diff changeset
2518 //------------------------------ComputeRegisterAntidependences-----------------
a61af66fc99e Initial load
duke
parents:
diff changeset
2519 // We insert antidependences between the reads and following write of
a61af66fc99e Initial load
duke
parents:
diff changeset
2520 // allocated registers to prevent illegal code motion. Hopefully, the
a61af66fc99e Initial load
duke
parents:
diff changeset
2521 // number of added references should be fairly small, especially as we
a61af66fc99e Initial load
duke
parents:
diff changeset
2522 // are only adding references within the current basic block.
a61af66fc99e Initial load
duke
parents:
diff changeset
2523 void Scheduling::ComputeRegisterAntidependencies(Block *b) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2524
a61af66fc99e Initial load
duke
parents:
diff changeset
2525 #ifdef ASSERT
a61af66fc99e Initial load
duke
parents:
diff changeset
2526 verify_good_schedule(b,"before block local scheduling");
a61af66fc99e Initial load
duke
parents:
diff changeset
2527 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
2528
a61af66fc99e Initial load
duke
parents:
diff changeset
2529 // A valid schedule, for each register independently, is an endless cycle
a61af66fc99e Initial load
duke
parents:
diff changeset
2530 // of: a def, then some uses (connected to the def by true dependencies),
a61af66fc99e Initial load
duke
parents:
diff changeset
2531 // then some kills (defs with no uses), finally the cycle repeats with a new
a61af66fc99e Initial load
duke
parents:
diff changeset
2532 // def. The uses are allowed to float relative to each other, as are the
a61af66fc99e Initial load
duke
parents:
diff changeset
2533 // kills. No use is allowed to slide past a kill (or def). This requires
a61af66fc99e Initial load
duke
parents:
diff changeset
2534 // antidependencies between all uses of a single def and all kills that
a61af66fc99e Initial load
duke
parents:
diff changeset
2535 // follow, up to the next def. More edges are redundant, because later defs
a61af66fc99e Initial load
duke
parents:
diff changeset
2536 // & kills are already serialized with true or antidependencies. To keep
a61af66fc99e Initial load
duke
parents:
diff changeset
2537 // the edge count down, we add a 'pinch point' node if there's more than
a61af66fc99e Initial load
duke
parents:
diff changeset
2538 // one use or more than one kill/def.
a61af66fc99e Initial load
duke
parents:
diff changeset
2539
a61af66fc99e Initial load
duke
parents:
diff changeset
2540 // We add dependencies in one bottom-up pass.
a61af66fc99e Initial load
duke
parents:
diff changeset
2541
a61af66fc99e Initial load
duke
parents:
diff changeset
2542 // For each instruction we handle it's DEFs/KILLs, then it's USEs.
a61af66fc99e Initial load
duke
parents:
diff changeset
2543
a61af66fc99e Initial load
duke
parents:
diff changeset
2544 // For each DEF/KILL, we check to see if there's a prior DEF/KILL for this
a61af66fc99e Initial load
duke
parents:
diff changeset
2545 // register. If not, we record the DEF/KILL in _reg_node, the
a61af66fc99e Initial load
duke
parents:
diff changeset
2546 // register-to-def mapping. If there is a prior DEF/KILL, we insert a
a61af66fc99e Initial load
duke
parents:
diff changeset
2547 // "pinch point", a new Node that's in the graph but not in the block.
a61af66fc99e Initial load
duke
parents:
diff changeset
2548 // We put edges from the prior and current DEF/KILLs to the pinch point.
a61af66fc99e Initial load
duke
parents:
diff changeset
2549 // We put the pinch point in _reg_node. If there's already a pinch point
a61af66fc99e Initial load
duke
parents:
diff changeset
2550 // we merely add an edge from the current DEF/KILL to the pinch point.
a61af66fc99e Initial load
duke
parents:
diff changeset
2551
a61af66fc99e Initial load
duke
parents:
diff changeset
2552 // After doing the DEF/KILLs, we handle USEs. For each used register, we
a61af66fc99e Initial load
duke
parents:
diff changeset
2553 // put an edge from the pinch point to the USE.
a61af66fc99e Initial load
duke
parents:
diff changeset
2554
a61af66fc99e Initial load
duke
parents:
diff changeset
2555 // To be expedient, the _reg_node array is pre-allocated for the whole
a61af66fc99e Initial load
duke
parents:
diff changeset
2556 // compilation. _reg_node is lazily initialized; it either contains a NULL,
a61af66fc99e Initial load
duke
parents:
diff changeset
2557 // or a valid def/kill/pinch-point, or a leftover node from some prior
a61af66fc99e Initial load
duke
parents:
diff changeset
2558 // block. Leftover node from some prior block is treated like a NULL (no
a61af66fc99e Initial load
duke
parents:
diff changeset
2559 // prior def, so no anti-dependence needed). Valid def is distinguished by
a61af66fc99e Initial load
duke
parents:
diff changeset
2560 // it being in the current block.
a61af66fc99e Initial load
duke
parents:
diff changeset
2561 bool fat_proj_seen = false;
a61af66fc99e Initial load
duke
parents:
diff changeset
2562 uint last_safept = _bb_end-1;
a61af66fc99e Initial load
duke
parents:
diff changeset
2563 Node* end_node = (_bb_end-1 >= _bb_start) ? b->_nodes[last_safept] : NULL;
a61af66fc99e Initial load
duke
parents:
diff changeset
2564 Node* last_safept_node = end_node;
a61af66fc99e Initial load
duke
parents:
diff changeset
2565 for( uint i = _bb_end-1; i >= _bb_start; i-- ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2566 Node *n = b->_nodes[i];
a61af66fc99e Initial load
duke
parents:
diff changeset
2567 int is_def = n->outcnt(); // def if some uses prior to adding precedence edges
a61af66fc99e Initial load
duke
parents:
diff changeset
2568 if( n->Opcode() == Op_MachProj && n->ideal_reg() == MachProjNode::fat_proj ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2569 // Fat-proj kills a slew of registers
a61af66fc99e Initial load
duke
parents:
diff changeset
2570 // This can add edges to 'n' and obscure whether or not it was a def,
a61af66fc99e Initial load
duke
parents:
diff changeset
2571 // hence the is_def flag.
a61af66fc99e Initial load
duke
parents:
diff changeset
2572 fat_proj_seen = true;
a61af66fc99e Initial load
duke
parents:
diff changeset
2573 RegMask rm = n->out_RegMask();// Make local copy
a61af66fc99e Initial load
duke
parents:
diff changeset
2574 while( rm.is_NotEmpty() ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2575 OptoReg::Name kill = rm.find_first_elem();
a61af66fc99e Initial load
duke
parents:
diff changeset
2576 rm.Remove(kill);
a61af66fc99e Initial load
duke
parents:
diff changeset
2577 anti_do_def( b, n, kill, is_def );
a61af66fc99e Initial load
duke
parents:
diff changeset
2578 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2579 } else {
a61af66fc99e Initial load
duke
parents:
diff changeset
2580 // Get DEF'd registers the normal way
a61af66fc99e Initial load
duke
parents:
diff changeset
2581 anti_do_def( b, n, _regalloc->get_reg_first(n), is_def );
a61af66fc99e Initial load
duke
parents:
diff changeset
2582 anti_do_def( b, n, _regalloc->get_reg_second(n), is_def );
a61af66fc99e Initial load
duke
parents:
diff changeset
2583 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2584
a61af66fc99e Initial load
duke
parents:
diff changeset
2585 // Check each register used by this instruction for a following DEF/KILL
a61af66fc99e Initial load
duke
parents:
diff changeset
2586 // that must occur afterward and requires an anti-dependence edge.
a61af66fc99e Initial load
duke
parents:
diff changeset
2587 for( uint j=0; j<n->req(); j++ ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2588 Node *def = n->in(j);
a61af66fc99e Initial load
duke
parents:
diff changeset
2589 if( def ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2590 assert( def->Opcode() != Op_MachProj || def->ideal_reg() != MachProjNode::fat_proj, "" );
a61af66fc99e Initial load
duke
parents:
diff changeset
2591 anti_do_use( b, n, _regalloc->get_reg_first(def) );
a61af66fc99e Initial load
duke
parents:
diff changeset
2592 anti_do_use( b, n, _regalloc->get_reg_second(def) );
a61af66fc99e Initial load
duke
parents:
diff changeset
2593 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2594 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2595 // Do not allow defs of new derived values to float above GC
a61af66fc99e Initial load
duke
parents:
diff changeset
2596 // points unless the base is definitely available at the GC point.
a61af66fc99e Initial load
duke
parents:
diff changeset
2597
a61af66fc99e Initial load
duke
parents:
diff changeset
2598 Node *m = b->_nodes[i];
a61af66fc99e Initial load
duke
parents:
diff changeset
2599
a61af66fc99e Initial load
duke
parents:
diff changeset
2600 // Add precedence edge from following safepoint to use of derived pointer
a61af66fc99e Initial load
duke
parents:
diff changeset
2601 if( last_safept_node != end_node &&
a61af66fc99e Initial load
duke
parents:
diff changeset
2602 m != last_safept_node) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2603 for (uint k = 1; k < m->req(); k++) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2604 const Type *t = m->in(k)->bottom_type();
a61af66fc99e Initial load
duke
parents:
diff changeset
2605 if( t->isa_oop_ptr() &&
a61af66fc99e Initial load
duke
parents:
diff changeset
2606 t->is_ptr()->offset() != 0 ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2607 last_safept_node->add_prec( m );
a61af66fc99e Initial load
duke
parents:
diff changeset
2608 break;
a61af66fc99e Initial load
duke
parents:
diff changeset
2609 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2610 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2611 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2612
a61af66fc99e Initial load
duke
parents:
diff changeset
2613 if( n->jvms() ) { // Precedence edge from derived to safept
a61af66fc99e Initial load
duke
parents:
diff changeset
2614 // Check if last_safept_node was moved by pinch-point insertion in anti_do_use()
a61af66fc99e Initial load
duke
parents:
diff changeset
2615 if( b->_nodes[last_safept] != last_safept_node ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2616 last_safept = b->find_node(last_safept_node);
a61af66fc99e Initial load
duke
parents:
diff changeset
2617 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2618 for( uint j=last_safept; j > i; j-- ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2619 Node *mach = b->_nodes[j];
a61af66fc99e Initial load
duke
parents:
diff changeset
2620 if( mach->is_Mach() && mach->as_Mach()->ideal_Opcode() == Op_AddP )
a61af66fc99e Initial load
duke
parents:
diff changeset
2621 mach->add_prec( n );
a61af66fc99e Initial load
duke
parents:
diff changeset
2622 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2623 last_safept = i;
a61af66fc99e Initial load
duke
parents:
diff changeset
2624 last_safept_node = m;
a61af66fc99e Initial load
duke
parents:
diff changeset
2625 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2626 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2627
a61af66fc99e Initial load
duke
parents:
diff changeset
2628 if (fat_proj_seen) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2629 // Garbage collect pinch nodes that were not consumed.
a61af66fc99e Initial load
duke
parents:
diff changeset
2630 // They are usually created by a fat kill MachProj for a call.
a61af66fc99e Initial load
duke
parents:
diff changeset
2631 garbage_collect_pinch_nodes();
a61af66fc99e Initial load
duke
parents:
diff changeset
2632 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2633 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2634
a61af66fc99e Initial load
duke
parents:
diff changeset
2635 //------------------------------garbage_collect_pinch_nodes-------------------------------
a61af66fc99e Initial load
duke
parents:
diff changeset
2636
a61af66fc99e Initial load
duke
parents:
diff changeset
2637 // Garbage collect pinch nodes for reuse by other blocks.
a61af66fc99e Initial load
duke
parents:
diff changeset
2638 //
a61af66fc99e Initial load
duke
parents:
diff changeset
2639 // The block scheduler's insertion of anti-dependence
a61af66fc99e Initial load
duke
parents:
diff changeset
2640 // edges creates many pinch nodes when the block contains
a61af66fc99e Initial load
duke
parents:
diff changeset
2641 // 2 or more Calls. A pinch node is used to prevent a
a61af66fc99e Initial load
duke
parents:
diff changeset
2642 // combinatorial explosion of edges. If a set of kills for a
a61af66fc99e Initial load
duke
parents:
diff changeset
2643 // register is anti-dependent on a set of uses (or defs), rather
a61af66fc99e Initial load
duke
parents:
diff changeset
2644 // than adding an edge in the graph between each pair of kill
a61af66fc99e Initial load
duke
parents:
diff changeset
2645 // and use (or def), a pinch is inserted between them:
a61af66fc99e Initial load
duke
parents:
diff changeset
2646 //
a61af66fc99e Initial load
duke
parents:
diff changeset
2647 // use1 use2 use3
a61af66fc99e Initial load
duke
parents:
diff changeset
2648 // \ | /
a61af66fc99e Initial load
duke
parents:
diff changeset
2649 // \ | /
a61af66fc99e Initial load
duke
parents:
diff changeset
2650 // pinch
a61af66fc99e Initial load
duke
parents:
diff changeset
2651 // / | \
a61af66fc99e Initial load
duke
parents:
diff changeset
2652 // / | \
a61af66fc99e Initial load
duke
parents:
diff changeset
2653 // kill1 kill2 kill3
a61af66fc99e Initial load
duke
parents:
diff changeset
2654 //
a61af66fc99e Initial load
duke
parents:
diff changeset
2655 // One pinch node is created per register killed when
a61af66fc99e Initial load
duke
parents:
diff changeset
2656 // the second call is encountered during a backwards pass
a61af66fc99e Initial load
duke
parents:
diff changeset
2657 // over the block. Most of these pinch nodes are never
a61af66fc99e Initial load
duke
parents:
diff changeset
2658 // wired into the graph because the register is never
a61af66fc99e Initial load
duke
parents:
diff changeset
2659 // used or def'ed in the block.
a61af66fc99e Initial load
duke
parents:
diff changeset
2660 //
a61af66fc99e Initial load
duke
parents:
diff changeset
2661 void Scheduling::garbage_collect_pinch_nodes() {
a61af66fc99e Initial load
duke
parents:
diff changeset
2662 #ifndef PRODUCT
a61af66fc99e Initial load
duke
parents:
diff changeset
2663 if (_cfg->C->trace_opto_output()) tty->print("Reclaimed pinch nodes:");
a61af66fc99e Initial load
duke
parents:
diff changeset
2664 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
2665 int trace_cnt = 0;
a61af66fc99e Initial load
duke
parents:
diff changeset
2666 for (uint k = 0; k < _reg_node.Size(); k++) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2667 Node* pinch = _reg_node[k];
a61af66fc99e Initial load
duke
parents:
diff changeset
2668 if (pinch != NULL && pinch->Opcode() == Op_Node &&
a61af66fc99e Initial load
duke
parents:
diff changeset
2669 // no predecence input edges
a61af66fc99e Initial load
duke
parents:
diff changeset
2670 (pinch->req() == pinch->len() || pinch->in(pinch->req()) == NULL) ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2671 cleanup_pinch(pinch);
a61af66fc99e Initial load
duke
parents:
diff changeset
2672 _pinch_free_list.push(pinch);
a61af66fc99e Initial load
duke
parents:
diff changeset
2673 _reg_node.map(k, NULL);
a61af66fc99e Initial load
duke
parents:
diff changeset
2674 #ifndef PRODUCT
a61af66fc99e Initial load
duke
parents:
diff changeset
2675 if (_cfg->C->trace_opto_output()) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2676 trace_cnt++;
a61af66fc99e Initial load
duke
parents:
diff changeset
2677 if (trace_cnt > 40) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2678 tty->print("\n");
a61af66fc99e Initial load
duke
parents:
diff changeset
2679 trace_cnt = 0;
a61af66fc99e Initial load
duke
parents:
diff changeset
2680 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2681 tty->print(" %d", pinch->_idx);
a61af66fc99e Initial load
duke
parents:
diff changeset
2682 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2683 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
2684 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2685 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2686 #ifndef PRODUCT
a61af66fc99e Initial load
duke
parents:
diff changeset
2687 if (_cfg->C->trace_opto_output()) tty->print("\n");
a61af66fc99e Initial load
duke
parents:
diff changeset
2688 #endif
a61af66fc99e Initial load
duke
parents:
diff changeset
2689 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2690
a61af66fc99e Initial load
duke
parents:
diff changeset
2691 // Clean up a pinch node for reuse.
a61af66fc99e Initial load
duke
parents:
diff changeset
2692 void Scheduling::cleanup_pinch( Node *pinch ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2693 assert (pinch && pinch->Opcode() == Op_Node && pinch->req() == 1, "just checking");
a61af66fc99e Initial load
duke
parents:
diff changeset
2694
a61af66fc99e Initial load
duke
parents:
diff changeset
2695 for (DUIterator_Last imin, i = pinch->last_outs(imin); i >= imin; ) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2696 Node* use = pinch->last_out(i);
a61af66fc99e Initial load
duke
parents:
diff changeset
2697 uint uses_found = 0;
a61af66fc99e Initial load
duke
parents:
diff changeset
2698 for (uint j = use->req(); j < use->len(); j++) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2699 if (use->in(j) == pinch) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2700 use->rm_prec(j);
a61af66fc99e Initial load
duke
parents:
diff changeset
2701 uses_found++;
a61af66fc99e Initial load
duke
parents:
diff changeset
2702 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2703 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2704 assert(uses_found > 0, "must be a precedence edge");
a61af66fc99e Initial load
duke
parents:
diff changeset
2705 i -= uses_found; // we deleted 1 or more copies of this edge
a61af66fc99e Initial load
duke
parents:
diff changeset
2706 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2707 // May have a later_def entry
a61af66fc99e Initial load
duke
parents:
diff changeset
2708 pinch->set_req(0, NULL);
a61af66fc99e Initial load
duke
parents:
diff changeset
2709 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2710
a61af66fc99e Initial load
duke
parents:
diff changeset
2711 //------------------------------print_statistics-------------------------------
a61af66fc99e Initial load
duke
parents:
diff changeset
2712 #ifndef PRODUCT
a61af66fc99e Initial load
duke
parents:
diff changeset
2713
a61af66fc99e Initial load
duke
parents:
diff changeset
2714 void Scheduling::dump_available() const {
a61af66fc99e Initial load
duke
parents:
diff changeset
2715 tty->print("#Availist ");
a61af66fc99e Initial load
duke
parents:
diff changeset
2716 for (uint i = 0; i < _available.size(); i++)
a61af66fc99e Initial load
duke
parents:
diff changeset
2717 tty->print(" N%d/l%d", _available[i]->_idx,_current_latency[_available[i]->_idx]);
a61af66fc99e Initial load
duke
parents:
diff changeset
2718 tty->cr();
a61af66fc99e Initial load
duke
parents:
diff changeset
2719 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2720
a61af66fc99e Initial load
duke
parents:
diff changeset
2721 // Print Scheduling Statistics
a61af66fc99e Initial load
duke
parents:
diff changeset
2722 void Scheduling::print_statistics() {
a61af66fc99e Initial load
duke
parents:
diff changeset
2723 // Print the size added by nops for bundling
a61af66fc99e Initial load
duke
parents:
diff changeset
2724 tty->print("Nops added %d bytes to total of %d bytes",
a61af66fc99e Initial load
duke
parents:
diff changeset
2725 _total_nop_size, _total_method_size);
a61af66fc99e Initial load
duke
parents:
diff changeset
2726 if (_total_method_size > 0)
a61af66fc99e Initial load
duke
parents:
diff changeset
2727 tty->print(", for %.2f%%",
a61af66fc99e Initial load
duke
parents:
diff changeset
2728 ((double)_total_nop_size) / ((double) _total_method_size) * 100.0);
a61af66fc99e Initial load
duke
parents:
diff changeset
2729 tty->print("\n");
a61af66fc99e Initial load
duke
parents:
diff changeset
2730
a61af66fc99e Initial load
duke
parents:
diff changeset
2731 // Print the number of branch shadows filled
a61af66fc99e Initial load
duke
parents:
diff changeset
2732 if (Pipeline::_branch_has_delay_slot) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2733 tty->print("Of %d branches, %d had unconditional delay slots filled",
a61af66fc99e Initial load
duke
parents:
diff changeset
2734 _total_branches, _total_unconditional_delays);
a61af66fc99e Initial load
duke
parents:
diff changeset
2735 if (_total_branches > 0)
a61af66fc99e Initial load
duke
parents:
diff changeset
2736 tty->print(", for %.2f%%",
a61af66fc99e Initial load
duke
parents:
diff changeset
2737 ((double)_total_unconditional_delays) / ((double)_total_branches) * 100.0);
a61af66fc99e Initial load
duke
parents:
diff changeset
2738 tty->print("\n");
a61af66fc99e Initial load
duke
parents:
diff changeset
2739 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2740
a61af66fc99e Initial load
duke
parents:
diff changeset
2741 uint total_instructions = 0, total_bundles = 0;
a61af66fc99e Initial load
duke
parents:
diff changeset
2742
a61af66fc99e Initial load
duke
parents:
diff changeset
2743 for (uint i = 1; i <= Pipeline::_max_instrs_per_cycle; i++) {
a61af66fc99e Initial load
duke
parents:
diff changeset
2744 uint bundle_count = _total_instructions_per_bundle[i];
a61af66fc99e Initial load
duke
parents:
diff changeset
2745 total_instructions += bundle_count * i;
a61af66fc99e Initial load
duke
parents:
diff changeset
2746 total_bundles += bundle_count;
a61af66fc99e Initial load
duke
parents:
diff changeset
2747 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2748
a61af66fc99e Initial load
duke
parents:
diff changeset
2749 if (total_bundles > 0)
a61af66fc99e Initial load
duke
parents:
diff changeset
2750 tty->print("Average ILP (excluding nops) is %.2f\n",
a61af66fc99e Initial load
duke
parents:
diff changeset
2751 ((double)total_instructions) / ((double)total_bundles));
a61af66fc99e Initial load
duke
parents:
diff changeset
2752 }
a61af66fc99e Initial load
duke
parents:
diff changeset
2753 #endif