1 /*
   2  * Copyright (c) 2004, 2020, Oracle and/or its affiliates. All rights reserved.
   3  * Copyright (c) 2014, Red Hat Inc. All rights reserved.
   4  * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
   5  *
   6  * This code is free software; you can redistribute it and/or modify it
   7  * under the terms of the GNU General Public License version 2 only, as
   8  * published by the Free Software Foundation.
   9  *
  10  * This code is distributed in the hope that it will be useful, but WITHOUT
  11  * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
  12  * FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License
  13  * version 2 for more details (a copy is included in the LICENSE file that
  14  * accompanied this code).
  15  *
  16  * You should have received a copy of the GNU General Public License version
  17  * 2 along with this work; if not, write to the Free Software Foundation,
  18  * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
  19  *
  20  * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
  21  * or visit www.oracle.com if you need additional information or have any
  22  * questions.
  23  *
  24  */
  25 
  26 #include "precompiled.hpp"
  27 #include "asm/macroAssembler.hpp"
  28 #include "gc/shared/barrierSet.hpp"
  29 #include "gc/shared/barrierSetAssembler.hpp"
  30 #include "memory/resourceArea.hpp"
  31 #include "prims/jniFastGetField.hpp"
  32 #include "prims/jvm_misc.hpp"
  33 #include "runtime/safepoint.hpp"
  34 
  35 #define __ masm->
  36 
  37 #define BUFFER_SIZE 30*wordSize
  38 
  39 // Instead of issuing a LoadLoad barrier we create an address
  40 // dependency between loads; this might be more efficient.
  41 
  42 // Common register usage:
  43 // r0/v0:      result
  44 // c_rarg0:    jni env
  45 // c_rarg1:    obj
  46 // c_rarg2:    jfield id
  47 
  48 static const Register robj          = r3;
  49 static const Register rcounter      = r4;
  50 static const Register roffset       = r5;
  51 static const Register rcounter_addr = r6;
  52 static const Register result        = r7;
  53 
  54 address JNI_FastGetField::generate_fast_get_int_field0(BasicType type) {
  55   const char *name;
  56   switch (type) {
  57     case T_BOOLEAN: name = "jni_fast_GetBooleanField"; break;
  58     case T_BYTE:    name = "jni_fast_GetByteField";    break;
  59     case T_CHAR:    name = "jni_fast_GetCharField";    break;
  60     case T_SHORT:   name = "jni_fast_GetShortField";   break;
  61     case T_INT:     name = "jni_fast_GetIntField";     break;
  62     case T_LONG:    name = "jni_fast_GetLongField";    break;
  63     case T_FLOAT:   name = "jni_fast_GetFloatField";   break;
  64     case T_DOUBLE:  name = "jni_fast_GetDoubleField";  break;
  65     default:        ShouldNotReachHere();
  66       name = NULL;  // unreachable
  67   }
  68   ResourceMark rm;
  69   BufferBlob* blob = BufferBlob::create(name, BUFFER_SIZE);
  70   CodeBuffer cbuf(blob);
  71   MacroAssembler* masm = new MacroAssembler(&cbuf);
  72   address fast_entry = __ pc();
  73 
  74   Label slow;
  75 
  76   uint64_t offset;
  77   __ adrp(rcounter_addr,
  78           SafepointSynchronize::safepoint_counter_addr(), offset);
  79   Address safepoint_counter_addr(rcounter_addr, offset);
  80   __ ldrw(rcounter, safepoint_counter_addr);
  81   __ tbnz(rcounter, 0, slow);
  82 
  83   // It doesn't need to issue a full barrier here even if the field
  84   // is volatile, since it has already used "ldar" for it.
  85   if (JvmtiExport::can_post_field_access()) {
  86     // Using barrier to order wrt. JVMTI check and load of result.
  87     __ membar(Assembler::LoadLoad);
  88 
  89     // Check to see if a field access watch has been set before we
  90     // take the fast path.
  91     uint64_t offset2;
  92     __ adrp(result,
  93             ExternalAddress((address) JvmtiExport::get_field_access_count_addr()),
  94             offset2);
  95     __ ldrw(result, Address(result, offset2));
  96     __ cbnzw(result, slow);
  97 
  98     __ mov(robj, c_rarg1);
  99   } else {
 100     // Using address dependency to order wrt. load of result.
 101     __ eor(robj, c_rarg1, rcounter);
 102     __ eor(robj, robj, rcounter);         // obj, since
 103                                           // robj ^ rcounter ^ rcounter == robj
 104                                           // robj is address dependent on rcounter.
 105   }
 106 
 107   // Both robj and rscratch1 are clobbered by try_resolve_jobject_in_native.
 108   BarrierSetAssembler* bs = BarrierSet::barrier_set()->barrier_set_assembler();
 109   bs->try_resolve_jobject_in_native(masm, c_rarg0, robj, rscratch1, slow);
 110 
 111   __ lsr(roffset, c_rarg2, 2);                // offset
 112   __ add(result, robj, roffset);
 113 
 114   assert(count < LIST_CAPACITY, "LIST_CAPACITY too small");
 115   speculative_load_pclist[count] = __ pc();   // Used by the segfault handler
 116   // Using acquire: Order JVMTI check and load of result wrt. succeeding check
 117   // (LoadStore for volatile field).
 118   switch (type) {
 119     case T_BOOLEAN: __ ldarb(result, result); break;
 120     case T_BYTE:    __ ldarb(result, result); __ sxtb(result, result); break;
 121     case T_CHAR:    __ ldarh(result, result); break;
 122     case T_SHORT:   __ ldarh(result, result); __ sxth(result, result); break;
 123     case T_FLOAT:   __ ldarw(result, result); break;
 124     case T_INT:     __ ldarw(result, result); __ sxtw(result, result); break;
 125     case T_DOUBLE:
 126     case T_LONG:    __ ldar (result, result); break;
 127     default:        ShouldNotReachHere();
 128   }
 129 
 130   __ ldrw(rscratch1, safepoint_counter_addr);
 131   __ cmpw(rcounter, rscratch1);
 132   __ br (Assembler::NE, slow);
 133 
 134   switch (type) {
 135     case T_FLOAT:   __ fmovs(v0, result); break;
 136     case T_DOUBLE:  __ fmovd(v0, result); break;
 137     default:        __ mov(r0, result);   break;
 138   }
 139   __ ret(lr);
 140 
 141   slowcase_entry_pclist[count++] = __ pc();
 142   __ bind(slow);
 143   address slow_case_addr;
 144   switch (type) {
 145     case T_BOOLEAN: slow_case_addr = jni_GetBooleanField_addr(); break;
 146     case T_BYTE:    slow_case_addr = jni_GetByteField_addr();    break;
 147     case T_CHAR:    slow_case_addr = jni_GetCharField_addr();    break;
 148     case T_SHORT:   slow_case_addr = jni_GetShortField_addr();   break;
 149     case T_INT:     slow_case_addr = jni_GetIntField_addr();     break;
 150     case T_LONG:    slow_case_addr = jni_GetLongField_addr();    break;
 151     case T_FLOAT:   slow_case_addr = jni_GetFloatField_addr();   break;
 152     case T_DOUBLE:  slow_case_addr = jni_GetDoubleField_addr();  break;
 153     default:        ShouldNotReachHere();
 154       slow_case_addr = NULL;  // unreachable
 155   }
 156 
 157   {
 158     __ enter();
 159     __ lea(rscratch1, ExternalAddress(slow_case_addr));
 160     __ blr(rscratch1);
 161     __ maybe_isb();
 162     __ leave();
 163     __ ret(lr);
 164   }
 165   __ flush ();
 166 
 167   return fast_entry;
 168 }
 169 
 170 address JNI_FastGetField::generate_fast_get_boolean_field() {
 171   return generate_fast_get_int_field0(T_BOOLEAN);
 172 }
 173 
 174 address JNI_FastGetField::generate_fast_get_byte_field() {
 175   return generate_fast_get_int_field0(T_BYTE);
 176 }
 177 
 178 address JNI_FastGetField::generate_fast_get_char_field() {
 179   return generate_fast_get_int_field0(T_CHAR);
 180 }
 181 
 182 address JNI_FastGetField::generate_fast_get_short_field() {
 183   return generate_fast_get_int_field0(T_SHORT);
 184 }
 185 
 186 address JNI_FastGetField::generate_fast_get_int_field() {
 187   return generate_fast_get_int_field0(T_INT);
 188 }
 189 
 190 address JNI_FastGetField::generate_fast_get_long_field() {
 191   return generate_fast_get_int_field0(T_LONG);
 192 }
 193 
 194 address JNI_FastGetField::generate_fast_get_float_field() {
 195   return generate_fast_get_int_field0(T_FLOAT);
 196 }
 197 
 198 address JNI_FastGetField::generate_fast_get_double_field() {
 199   return generate_fast_get_int_field0(T_DOUBLE);
 200 }