1 /*
   2  * Copyright (c) 2013, 2016, 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 "compiler/disassembler.hpp"
  26 #include "oops/oop.inline.hpp"
  27 #include "runtime/javaCalls.hpp"
  28 #include "runtime/sharedRuntime.hpp"
  29 #include "jvmci/jvmciEnv.hpp"
  30 #include "jvmci/jvmciCodeInstaller.hpp"
  31 #include "jvmci/jvmciJavaClasses.hpp"
  32 #include "jvmci/jvmciCompilerToVM.hpp"
  33 #include "jvmci/jvmciRuntime.hpp"
  34 #include "asm/register.hpp"
  35 #include "classfile/vmSymbols.hpp"
  36 #include "code/vmreg.hpp"
  37 #include "vmreg_x86.inline.hpp"
  38 
  39 jint CodeInstaller::pd_next_offset(NativeInstruction* inst, jint pc_offset, Handle method, TRAPS) {
  40   if (inst->is_call() || inst->is_jump()) {
  41     assert(NativeCall::instruction_size == (int)NativeJump::instruction_size, "unexpected size");
  42     return (pc_offset + NativeCall::instruction_size);
  43   } else if (inst->is_mov_literal64()) {
  44     // mov+call instruction pair
  45     jint offset = pc_offset + NativeMovConstReg::instruction_size;
  46     u_char* call = (u_char*) (_instructions->start() + offset);
  47     if (call[0] == Assembler::REX_B) {
  48       offset += 1; /* prefix byte for extended register R8-R15 */
  49       call++;
  50     }
  51     assert(call[0] == 0xFF, "expected call");
  52     offset += 2; /* opcode byte + modrm byte */
  53     return (offset);
  54   } else if (inst->is_call_reg()) {
  55     // the inlined vtable stub contains a "call register" instruction
  56     assert(method.not_null(), "only valid for virtual calls");
  57     return (pc_offset + ((NativeCallReg *) inst)->next_instruction_offset());
  58   } else if (inst->is_cond_jump()) {
  59     address pc = (address) (inst);
  60     return pc_offset + (jint) (Assembler::locate_next_instruction(pc) - pc);
  61   } else {
  62     JVMCI_ERROR_0("unsupported type of instruction for call site");
  63   }
  64 }
  65 
  66 void CodeInstaller::pd_patch_OopConstant(int pc_offset, Handle constant, TRAPS) {
  67   address pc = _instructions->start() + pc_offset;
  68   Handle obj = HotSpotObjectConstantImpl::object(constant);
  69   jobject value = JNIHandles::make_local(obj());
  70   if (HotSpotObjectConstantImpl::compressed(constant)) {
  71 #ifdef _LP64
  72     address operand = Assembler::locate_operand(pc, Assembler::narrow_oop_operand);
  73     int oop_index = _oop_recorder->find_index(value);
  74     _instructions->relocate(pc, oop_Relocation::spec(oop_index), Assembler::narrow_oop_operand);
  75     TRACE_jvmci_3("relocating (narrow oop constant) at " PTR_FORMAT "/" PTR_FORMAT, p2i(pc), p2i(operand));
  76 #else
  77     JVMCI_ERROR("compressed oop on 32bit");
  78 #endif
  79   } else {
  80     address operand = Assembler::locate_operand(pc, Assembler::imm_operand);
  81     *((jobject*) operand) = value;
  82     _instructions->relocate(pc, oop_Relocation::spec_for_immediate(), Assembler::imm_operand);
  83     TRACE_jvmci_3("relocating (oop constant) at " PTR_FORMAT "/" PTR_FORMAT, p2i(pc), p2i(operand));
  84   }
  85 }
  86 
  87 void CodeInstaller::pd_patch_MetaspaceConstant(int pc_offset, Handle constant, TRAPS) {
  88   address pc = _instructions->start() + pc_offset;
  89   if (HotSpotMetaspaceConstantImpl::compressed(constant)) {
  90 #ifdef _LP64
  91     address operand = Assembler::locate_operand(pc, Assembler::narrow_oop_operand);
  92     *((narrowKlass*) operand) = record_narrow_metadata_reference(constant, CHECK);
  93     TRACE_jvmci_3("relocating (narrow metaspace constant) at " PTR_FORMAT "/" PTR_FORMAT, p2i(pc), p2i(operand));
  94 #else
  95     JVMCI_ERROR("compressed Klass* on 32bit");
  96 #endif
  97   } else {
  98     address operand = Assembler::locate_operand(pc, Assembler::imm_operand);
  99     *((Metadata**) operand) = record_metadata_reference(constant, CHECK);
 100     TRACE_jvmci_3("relocating (metaspace constant) at " PTR_FORMAT "/" PTR_FORMAT, p2i(pc), p2i(operand));
 101   }
 102 }
 103 
 104 void CodeInstaller::pd_patch_DataSectionReference(int pc_offset, int data_offset, TRAPS) {
 105   address pc = _instructions->start() + pc_offset;
 106 
 107   address operand = Assembler::locate_operand(pc, Assembler::disp32_operand);
 108   address next_instruction = Assembler::locate_next_instruction(pc);
 109   address dest = _constants->start() + data_offset;
 110 
 111   long disp = dest - next_instruction;
 112   assert(disp == (jint) disp, "disp doesn't fit in 32 bits");
 113   *((jint*) operand) = (jint) disp;
 114 
 115   _instructions->relocate(pc, section_word_Relocation::spec((address) dest, CodeBuffer::SECT_CONSTS), Assembler::disp32_operand);
 116   TRACE_jvmci_3("relocating at " PTR_FORMAT "/" PTR_FORMAT " with destination at " PTR_FORMAT " (%d)", p2i(pc), p2i(operand), p2i(dest), data_offset);
 117 }
 118 
 119 void CodeInstaller::pd_relocate_ForeignCall(NativeInstruction* inst, jlong foreign_call_destination, TRAPS) {
 120   address pc = (address) inst;
 121   if (inst->is_call()) {
 122     // NOTE: for call without a mov, the offset must fit a 32-bit immediate
 123     //       see also CompilerToVM.getMaxCallTargetOffset()
 124     NativeCall* call = nativeCall_at(pc);
 125     call->set_destination((address) foreign_call_destination);
 126     _instructions->relocate(call->instruction_address(), runtime_call_Relocation::spec(), Assembler::call32_operand);
 127   } else if (inst->is_mov_literal64()) {
 128     NativeMovConstReg* mov = nativeMovConstReg_at(pc);
 129     mov->set_data((intptr_t) foreign_call_destination);
 130     _instructions->relocate(mov->instruction_address(), runtime_call_Relocation::spec(), Assembler::imm_operand);
 131   } else if (inst->is_jump()) {
 132     NativeJump* jump = nativeJump_at(pc);
 133     jump->set_jump_destination((address) foreign_call_destination);
 134     _instructions->relocate(jump->instruction_address(), runtime_call_Relocation::spec(), Assembler::call32_operand);
 135   } else if (inst->is_cond_jump()) {
 136     address old_dest = nativeGeneralJump_at(pc)->jump_destination();
 137     address disp = Assembler::locate_operand(pc, Assembler::call32_operand);
 138     *(jint*) disp += ((address) foreign_call_destination) - old_dest;
 139     _instructions->relocate(pc, runtime_call_Relocation::spec(), Assembler::call32_operand);
 140   } else {
 141     JVMCI_ERROR("unsupported relocation for foreign call");
 142   }
 143 
 144   TRACE_jvmci_3("relocating (foreign call)  at " PTR_FORMAT, p2i(inst));
 145 }
 146 
 147 void CodeInstaller::pd_relocate_JavaMethod(Handle hotspot_method, jint pc_offset, TRAPS) {
 148 #ifdef ASSERT
 149   Method* method = NULL;
 150   // we need to check, this might also be an unresolved method
 151   if (hotspot_method->is_a(HotSpotResolvedJavaMethodImpl::klass())) {
 152     method = getMethodFromHotSpotMethod(hotspot_method());
 153   }
 154 #endif
 155   switch (_next_call_type) {
 156     case INLINE_INVOKE:
 157       break;
 158     case INVOKEVIRTUAL:
 159     case INVOKEINTERFACE: {
 160       assert(method == NULL || !method->is_static(), "cannot call static method with invokeinterface");
 161 
 162       NativeCall* call = nativeCall_at(_instructions->start() + pc_offset);
 163       call->set_destination(SharedRuntime::get_resolve_virtual_call_stub());
 164       _instructions->relocate(call->instruction_address(),
 165                                              virtual_call_Relocation::spec(_invoke_mark_pc),
 166                                              Assembler::call32_operand);
 167       break;
 168     }
 169     case INVOKESTATIC: {
 170       assert(method == NULL || method->is_static(), "cannot call non-static method with invokestatic");
 171 
 172       NativeCall* call = nativeCall_at(_instructions->start() + pc_offset);
 173       call->set_destination(SharedRuntime::get_resolve_static_call_stub());
 174       _instructions->relocate(call->instruction_address(),
 175                                              relocInfo::static_call_type, Assembler::call32_operand);
 176       break;
 177     }
 178     case INVOKESPECIAL: {
 179       assert(method == NULL || !method->is_static(), "cannot call static method with invokespecial");
 180       NativeCall* call = nativeCall_at(_instructions->start() + pc_offset);
 181       call->set_destination(SharedRuntime::get_resolve_opt_virtual_call_stub());
 182       _instructions->relocate(call->instruction_address(),
 183                               relocInfo::opt_virtual_call_type, Assembler::call32_operand);
 184       break;
 185     }
 186     default:
 187       JVMCI_ERROR("invalid _next_call_type value");
 188       break;
 189   }
 190 }
 191 
 192 static void relocate_poll_near(address pc) {
 193   NativeInstruction* ni = nativeInstruction_at(pc);
 194   int32_t* disp = (int32_t*) Assembler::locate_operand(pc, Assembler::disp32_operand);
 195   int32_t offset = *disp; // The Java code installed the polling page offset into the disp32 operand
 196   intptr_t new_disp = (intptr_t) (os::get_polling_page() + offset) - (intptr_t) ni;
 197   *disp = (int32_t)new_disp;
 198 }
 199 
 200 
 201 void CodeInstaller::pd_relocate_poll(address pc, jint mark, TRAPS) {
 202   switch (mark) {
 203     case POLL_NEAR: {
 204       relocate_poll_near(pc);
 205       _instructions->relocate(pc, relocInfo::poll_type, Assembler::disp32_operand);
 206       break;
 207     }
 208     case POLL_FAR:
 209       // This is a load from a register so there is no relocatable operand.
 210       // We just have to ensure that the format is not disp32_operand
 211       // so that poll_Relocation::fix_relocation_after_move does the right
 212       // thing (i.e. ignores this relocation record)
 213       _instructions->relocate(pc, relocInfo::poll_type, Assembler::imm_operand);
 214       break;
 215     case POLL_RETURN_NEAR: {
 216       relocate_poll_near(pc);
 217       _instructions->relocate(pc, relocInfo::poll_return_type, Assembler::disp32_operand);
 218       break;
 219     }
 220     case POLL_RETURN_FAR:
 221       // see comment above for POLL_FAR
 222       _instructions->relocate(pc, relocInfo::poll_return_type, Assembler::imm_operand);
 223       break;
 224     default:
 225       JVMCI_ERROR("invalid mark value: %d", mark);
 226       break;
 227   }
 228 }
 229 
 230 // convert JVMCI register indices (as used in oop maps) to HotSpot registers
 231 VMReg CodeInstaller::get_hotspot_reg(jint jvmci_reg, TRAPS) {
 232   if (jvmci_reg < RegisterImpl::number_of_registers) {
 233     return as_Register(jvmci_reg)->as_VMReg();
 234   } else {
 235     jint floatRegisterNumber = jvmci_reg - RegisterImpl::number_of_registers;
 236     if (floatRegisterNumber < XMMRegisterImpl::number_of_registers) {
 237       return as_XMMRegister(floatRegisterNumber)->as_VMReg();
 238     }
 239     JVMCI_ERROR_NULL("invalid register number: %d", jvmci_reg);
 240   }
 241 }
 242 
 243 bool CodeInstaller::is_general_purpose_reg(VMReg hotspotRegister) {
 244   return !(hotspotRegister->is_FloatRegister() || hotspotRegister->is_XMMRegister());
 245 }