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192 lines
8.1 KiB
C++
192 lines
8.1 KiB
C++
/*
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* Copyright (c) 2015, 2019, Oracle and/or its affiliates. All rights reserved.
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* DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
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*
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* This code is free software; you can redistribute it and/or modify it
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* under the terms of the GNU General Public License version 2 only, as
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* published by the Free Software Foundation.
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*
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* This code is distributed in the hope that it will be useful, but WITHOUT
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* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
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* version 2 for more details (a copy is included in the LICENSE file that
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* accompanied this code).
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*
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* You should have received a copy of the GNU General Public License version
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* 2 along with this work; if not, write to the Free Software Foundation,
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* Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
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*
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* Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
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* or visit www.oracle.com if you need additional information or have any
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* questions.
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*/
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#include "precompiled.hpp"
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#include "asm/macroAssembler.hpp"
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#include "jvmci/jvmci.hpp"
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#include "jvmci/jvmciCodeInstaller.hpp"
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#include "jvmci/jvmciRuntime.hpp"
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#include "jvmci/jvmciCompilerToVM.hpp"
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#include "jvmci/jvmciJavaClasses.hpp"
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#include "oops/oop.inline.hpp"
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#include "runtime/handles.inline.hpp"
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#include "runtime/jniHandles.hpp"
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#include "runtime/sharedRuntime.hpp"
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#include "vmreg_aarch64.inline.hpp"
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jint CodeInstaller::pd_next_offset(NativeInstruction* inst, jint pc_offset, JVMCI_TRAPS) {
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if (inst->is_call() || inst->is_jump() || inst->is_blr()) {
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return pc_offset + NativeCall::instruction_size;
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} else if (inst->is_general_jump()) {
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return pc_offset + NativeGeneralJump::instruction_size;
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} else if (NativeInstruction::is_adrp_at((address)inst)) {
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// adrp; add; blr
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return pc_offset + 3 * NativeInstruction::instruction_size;
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} else {
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JVMCI_ERROR_0("unsupported type of instruction for call site");
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}
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}
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void CodeInstaller::pd_patch_OopConstant(int pc_offset, Handle& obj, bool compressed, JVMCI_TRAPS) {
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address pc = _instructions->start() + pc_offset;
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#ifdef ASSERT
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{
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NativeInstruction *insn = nativeInstruction_at(pc);
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if (compressed) {
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// Mov narrow constant: movz n << 16, movk
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assert(Instruction_aarch64::extract(insn->encoding(), 31, 21) == 0b11010010101 &&
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nativeInstruction_at(pc+4)->is_movk(), "wrong insn in patch");
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} else {
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// Move wide constant: movz n, movk, movk.
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assert(nativeInstruction_at(pc+4)->is_movk()
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&& nativeInstruction_at(pc+8)->is_movk(), "wrong insn in patch");
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}
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}
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#endif // ASSERT
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jobject value = JNIHandles::make_local(obj());
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MacroAssembler::patch_oop(pc, cast_from_oop<address>(obj()));
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int oop_index = _oop_recorder->find_index(value);
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RelocationHolder rspec = oop_Relocation::spec(oop_index);
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_instructions->relocate(pc, rspec);
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}
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void CodeInstaller::pd_patch_MetaspaceConstant(int pc_offset, HotSpotCompiledCodeStream* stream, u1 tag, JVMCI_TRAPS) {
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address pc = _instructions->start() + pc_offset;
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if (tag == PATCH_NARROW_KLASS) {
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narrowKlass narrowOop = record_narrow_metadata_reference(_instructions, pc, stream, tag, JVMCI_CHECK);
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MacroAssembler::patch_narrow_klass(pc, narrowOop);
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JVMCI_event_3("relocating (narrow metaspace constant) at " PTR_FORMAT "/0x%x", p2i(pc), narrowOop);
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} else {
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NativeMovConstReg* move = nativeMovConstReg_at(pc);
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void* reference = record_metadata_reference(_instructions, pc, stream, tag, JVMCI_CHECK);
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move->set_data((intptr_t) reference);
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JVMCI_event_3("relocating (metaspace constant) at " PTR_FORMAT "/" PTR_FORMAT, p2i(pc), p2i(reference));
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}
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}
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void CodeInstaller::pd_patch_DataSectionReference(int pc_offset, int data_offset, JVMCI_TRAPS) {
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address pc = _instructions->start() + pc_offset;
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NativeInstruction* inst = nativeInstruction_at(pc);
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if (inst->is_adr_aligned() || inst->is_ldr_literal()
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|| (NativeInstruction::maybe_cpool_ref(pc))) {
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address dest = _constants->start() + data_offset;
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_instructions->relocate(pc, section_word_Relocation::spec((address) dest, CodeBuffer::SECT_CONSTS));
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JVMCI_event_3("relocating at " PTR_FORMAT " (+%d) with destination at %d", p2i(pc), pc_offset, data_offset);
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} else {
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JVMCI_ERROR("unknown load or move instruction at " PTR_FORMAT, p2i(pc));
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}
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}
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void CodeInstaller::pd_relocate_ForeignCall(NativeInstruction* inst, jlong foreign_call_destination, JVMCI_TRAPS) {
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address pc = (address) inst;
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if (inst->is_call()) {
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NativeCall* call = nativeCall_at(pc);
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call->set_destination((address) foreign_call_destination);
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_instructions->relocate(call->instruction_address(), runtime_call_Relocation::spec());
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} else if (inst->is_jump()) {
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NativeJump* jump = nativeJump_at(pc);
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jump->set_jump_destination((address) foreign_call_destination);
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_instructions->relocate(jump->instruction_address(), runtime_call_Relocation::spec());
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} else if (inst->is_general_jump()) {
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NativeGeneralJump* jump = nativeGeneralJump_at(pc);
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jump->set_jump_destination((address) foreign_call_destination);
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_instructions->relocate(jump->instruction_address(), runtime_call_Relocation::spec());
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} else if (NativeInstruction::is_adrp_at((address)inst)) {
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// adrp; add; blr
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MacroAssembler::pd_patch_instruction_size((address)inst,
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(address)foreign_call_destination);
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} else {
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JVMCI_ERROR("unknown call or jump instruction at " PTR_FORMAT, p2i(pc));
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}
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JVMCI_event_3("relocating (foreign call) at " PTR_FORMAT, p2i(inst));
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}
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void CodeInstaller::pd_relocate_JavaMethod(CodeBuffer &cbuf, methodHandle& method, jint pc_offset, JVMCI_TRAPS) {
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switch (_next_call_type) {
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case INLINE_INVOKE:
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break;
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case INVOKEVIRTUAL:
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case INVOKEINTERFACE: {
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assert(!method->is_static(), "cannot call static method with invokeinterface");
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NativeCall* call = nativeCall_at(_instructions->start() + pc_offset);
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_instructions->relocate(call->instruction_address(), virtual_call_Relocation::spec(_invoke_mark_pc));
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call->trampoline_jump(cbuf, SharedRuntime::get_resolve_virtual_call_stub());
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break;
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}
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case INVOKESTATIC: {
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assert(method->is_static(), "cannot call non-static method with invokestatic");
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NativeCall* call = nativeCall_at(_instructions->start() + pc_offset);
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_instructions->relocate(call->instruction_address(), relocInfo::static_call_type);
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call->trampoline_jump(cbuf, SharedRuntime::get_resolve_static_call_stub());
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break;
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}
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case INVOKESPECIAL: {
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assert(!method->is_static(), "cannot call static method with invokespecial");
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NativeCall* call = nativeCall_at(_instructions->start() + pc_offset);
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_instructions->relocate(call->instruction_address(), relocInfo::opt_virtual_call_type);
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call->trampoline_jump(cbuf, SharedRuntime::get_resolve_opt_virtual_call_stub());
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break;
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}
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default:
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JVMCI_ERROR("invalid _next_call_type value");
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break;
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}
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}
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void CodeInstaller::pd_relocate_poll(address pc, jint mark, JVMCI_TRAPS) {
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switch (mark) {
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case POLL_NEAR:
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JVMCI_ERROR("unimplemented");
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break;
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case POLL_FAR:
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_instructions->relocate(pc, relocInfo::poll_type);
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break;
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case POLL_RETURN_NEAR:
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JVMCI_ERROR("unimplemented");
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break;
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case POLL_RETURN_FAR:
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_instructions->relocate(pc, relocInfo::poll_return_type);
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break;
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default:
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JVMCI_ERROR("invalid mark value");
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break;
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}
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}
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// convert JVMCI register indices (as used in oop maps) to HotSpot registers
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VMReg CodeInstaller::get_hotspot_reg(jint jvmci_reg, JVMCI_TRAPS) {
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if (jvmci_reg < RegisterImpl::number_of_registers) {
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return as_Register(jvmci_reg)->as_VMReg();
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} else {
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jint floatRegisterNumber = jvmci_reg - RegisterImpl::number_of_declared_registers;
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if (floatRegisterNumber >= 0 && floatRegisterNumber < FloatRegisterImpl::number_of_registers) {
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return as_FloatRegister(floatRegisterNumber)->as_VMReg();
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}
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JVMCI_ERROR_NULL("invalid register number: %d", jvmci_reg);
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}
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}
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bool CodeInstaller::is_general_purpose_reg(VMReg hotspotRegister) {
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return !hotspotRegister->is_FloatRegister();
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}
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