1 /* 2 * Copyright (c) 2015, 2019, Oracle and/or its affiliates. All rights reserved. 3 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER. 4 * 5 * This code is free software; you can redistribute it and/or modify it 6 * under the terms of the GNU General Public License version 2 only, as 7 * published by the Free Software Foundation. 8 * 9 * This code is distributed in the hope that it will be useful, but WITHOUT 10 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or 11 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License 12 * version 2 for more details (a copy is included in the LICENSE file that 13 * accompanied this code). 14 * 15 * You should have received a copy of the GNU General Public License version 16 * 2 along with this work; if not, write to the Free Software Foundation, 17 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA. 18 * 19 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA 20 * or visit www.oracle.com if you need additional information or have any 21 * questions. 22 */ 23 24 #include "precompiled.hpp" 25 #include "c1/c1_LIR.hpp" 26 #include "c1/c1_LIRGenerator.hpp" 27 #include "c1/c1_CodeStubs.hpp" 28 #include "gc/z/c1/zBarrierSetC1.hpp" 29 #include "gc/z/zBarrierSet.hpp" 30 #include "gc/z/zBarrierSetAssembler.hpp" 31 #include "gc/z/zThreadLocalData.hpp" 32 #include "utilities/macros.hpp" 33 34 ZLoadBarrierStubC1::ZLoadBarrierStubC1(LIRAccess& access, LIR_Opr ref, address runtime_stub) : 35 _decorators(access.decorators()), 36 _ref_addr(access.resolved_addr()), 37 _ref(ref), 38 _tmp(LIR_OprFact::illegalOpr), 39 _runtime_stub(runtime_stub) { 40 41 assert(_ref_addr->is_address(), "Must be an address"); 42 assert(_ref->is_register(), "Must be a register"); 43 44 // Allocate tmp register if needed 45 if (_ref_addr->as_address_ptr()->index()->is_valid() || 46 _ref_addr->as_address_ptr()->disp() != 0) { 47 // Has index or displacement, need tmp register to load address into 48 _tmp = access.gen()->new_pointer_register(); 49 } 50 } 51 52 DecoratorSet ZLoadBarrierStubC1::decorators() const { 53 return _decorators; 54 } 55 56 LIR_Opr ZLoadBarrierStubC1::ref() const { 57 return _ref; 58 } 59 60 LIR_Opr ZLoadBarrierStubC1::ref_addr() const { 61 return _ref_addr; 62 } 63 64 LIR_Opr ZLoadBarrierStubC1::tmp() const { 65 return _tmp; 66 } 67 68 address ZLoadBarrierStubC1::runtime_stub() const { 69 return _runtime_stub; 70 } 71 72 void ZLoadBarrierStubC1::visit(LIR_OpVisitState* visitor) { 73 visitor->do_slow_case(); 74 visitor->do_input(_ref_addr); 75 visitor->do_output(_ref); 76 if (_tmp->is_valid()) { 77 visitor->do_temp(_tmp); 78 } 79 } 80 81 void ZLoadBarrierStubC1::emit_code(LIR_Assembler* ce) { 82 ZBarrierSet::assembler()->generate_c1_load_barrier_stub(ce, this); 83 } 84 85 #ifndef PRODUCT 86 void ZLoadBarrierStubC1::print_name(outputStream* out) const { 87 out->print("ZLoadBarrierStubC1"); 88 } 89 #endif // PRODUCT 90 91 class LIR_OpZLoadBarrierTest : public LIR_Op { 92 private: 93 LIR_Opr _opr; 94 95 public: 96 LIR_OpZLoadBarrierTest(LIR_Opr opr) : 97 LIR_Op(), 98 _opr(opr) {} 99 100 virtual void visit(LIR_OpVisitState* state) { 101 state->do_input(_opr); 102 } 103 104 virtual void emit_code(LIR_Assembler* ce) { 105 ZBarrierSet::assembler()->generate_c1_load_barrier_test(ce, _opr); 106 } 107 108 virtual void print_instr(outputStream* out) const { 109 _opr->print(out); 110 out->print(" "); 111 } 112 113 #ifndef PRODUCT 114 virtual const char* name() const { 115 return "lir_z_load_barrier_test"; 116 } 117 #endif // PRODUCT 118 }; 119 120 static bool barrier_needed(LIRAccess& access) { 121 return ZBarrierSet::barrier_needed(access.decorators(), access.type()); 122 } 123 124 ZBarrierSetC1::ZBarrierSetC1() : 125 _load_barrier_on_oop_field_preloaded_runtime_stub(NULL), 126 _load_barrier_on_weak_oop_field_preloaded_runtime_stub(NULL) {} 127 128 address ZBarrierSetC1::load_barrier_on_oop_field_preloaded_runtime_stub(DecoratorSet decorators) const { 129 assert((decorators & ON_PHANTOM_OOP_REF) == 0, "Unsupported decorator"); 130 //assert((decorators & ON_UNKNOWN_OOP_REF) == 0, "Unsupported decorator"); 131 132 if ((decorators & ON_WEAK_OOP_REF) != 0) { 133 return _load_barrier_on_weak_oop_field_preloaded_runtime_stub; 134 } else { 135 return _load_barrier_on_oop_field_preloaded_runtime_stub; 136 } 137 } 138 139 #ifdef ASSERT 140 #define __ access.gen()->lir(__FILE__, __LINE__)-> 141 #else 142 #define __ access.gen()->lir()-> 143 #endif 144 145 void ZBarrierSetC1::load_barrier(LIRAccess& access, LIR_Opr result) const { 146 // Fast path 147 __ append(new LIR_OpZLoadBarrierTest(result)); 148 149 // Slow path 150 const address runtime_stub = load_barrier_on_oop_field_preloaded_runtime_stub(access.decorators()); 151 CodeStub* const stub = new ZLoadBarrierStubC1(access, result, runtime_stub); 152 __ branch(lir_cond_notEqual, stub); 153 __ branch_destination(stub->continuation()); 154 } 155 156 LIR_Opr ZBarrierSetC1::resolve_address(LIRAccess& access, bool resolve_in_register) { 157 // We must resolve in register when patching. This is to avoid 158 // having a patch area in the load barrier stub, since the call 159 // into the runtime to patch will not have the proper oop map. 160 const bool patch_before_barrier = barrier_needed(access) && (access.decorators() & C1_NEEDS_PATCHING) != 0; 161 return BarrierSetC1::resolve_address(access, resolve_in_register || patch_before_barrier); 162 } 163 164 #undef __ 165 166 void ZBarrierSetC1::load_at_resolved(LIRAccess& access, LIR_Opr result) { 167 BarrierSetC1::load_at_resolved(access, result); 168 169 if (barrier_needed(access)) { 170 load_barrier(access, result); 171 } 172 } 173 174 static void pre_load_barrier(LIRAccess& access) { 175 DecoratorSet decorators = access.decorators(); 176 177 // Downgrade access to MO_UNORDERED 178 decorators = (decorators & ~MO_DECORATOR_MASK) | MO_UNORDERED; 179 180 // Remove ACCESS_WRITE 181 decorators = (decorators & ~ACCESS_WRITE); 182 183 // Generate synthetic load at 184 access.gen()->access_load_at(decorators, 185 access.type(), 186 access.base().item(), 187 access.offset().opr(), 188 access.gen()->new_register(access.type()), 189 NULL /* patch_emit_info */, 190 NULL /* load_emit_info */); 191 } 192 193 LIR_Opr ZBarrierSetC1::atomic_xchg_at_resolved(LIRAccess& access, LIRItem& value) { 194 if (barrier_needed(access)) { 195 pre_load_barrier(access); 196 } 197 198 return BarrierSetC1::atomic_xchg_at_resolved(access, value); 199 } 200 201 LIR_Opr ZBarrierSetC1::atomic_cmpxchg_at_resolved(LIRAccess& access, LIRItem& cmp_value, LIRItem& new_value) { 202 if (barrier_needed(access)) { 203 pre_load_barrier(access); 204 } 205 206 return BarrierSetC1::atomic_cmpxchg_at_resolved(access, cmp_value, new_value); 207 } 208 209 class ZLoadBarrierRuntimeStubCodeGenClosure : public StubAssemblerCodeGenClosure { 210 private: 211 const DecoratorSet _decorators; 212 213 public: 214 ZLoadBarrierRuntimeStubCodeGenClosure(DecoratorSet decorators) : 215 _decorators(decorators) {} 216 217 virtual OopMapSet* generate_code(StubAssembler* sasm) { 218 ZBarrierSet::assembler()->generate_c1_load_barrier_runtime_stub(sasm, _decorators); 219 return NULL; 220 } 221 }; 222 223 static address generate_c1_runtime_stub(BufferBlob* blob, DecoratorSet decorators, const char* name) { 224 ZLoadBarrierRuntimeStubCodeGenClosure cl(decorators); 225 CodeBlob* const code_blob = Runtime1::generate_blob(blob, -1 /* stub_id */, name, false /* expect_oop_map*/, &cl); 226 return code_blob->code_begin(); 227 } 228 229 void ZBarrierSetC1::generate_c1_runtime_stubs(BufferBlob* blob) { 230 _load_barrier_on_oop_field_preloaded_runtime_stub = 231 generate_c1_runtime_stub(blob, ON_STRONG_OOP_REF, "load_barrier_on_oop_field_preloaded_runtime_stub"); 232 _load_barrier_on_weak_oop_field_preloaded_runtime_stub = 233 generate_c1_runtime_stub(blob, ON_WEAK_OOP_REF, "load_barrier_on_weak_oop_field_preloaded_runtime_stub"); 234 }