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253 lines
7.1 KiB
253 lines
7.1 KiB
// Copyright 2010 the V8 project authors. All rights reserved.
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// Redistribution and use in source and binary forms, with or without
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// modification, are permitted provided that the following conditions are
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// met:
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//
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// * Redistributions of source code must retain the above copyright
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// notice, this list of conditions and the following disclaimer.
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// * Redistributions in binary form must reproduce the above
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// copyright notice, this list of conditions and the following
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// disclaimer in the documentation and/or other materials provided
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// with the distribution.
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// * Neither the name of Google Inc. nor the names of its
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// contributors may be used to endorse or promote products derived
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// from this software without specific prior written permission.
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//
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// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
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// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
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// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
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// A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
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// OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
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// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
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// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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// DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
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// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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#include "v8.h"
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#include "disassembler.h"
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#include "factory.h"
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#include "macro-assembler.h"
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#include "mips/macro-assembler-mips.h"
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#include "mips/simulator-mips.h"
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#include "cctest.h"
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using namespace v8::internal;
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// Define these function prototypes to match JSEntryFunction in execution.cc.
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typedef Object* (*F1)(int x, int p1, int p2, int p3, int p4);
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typedef Object* (*F2)(int x, int y, int p2, int p3, int p4);
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typedef Object* (*F3)(void* p, int p1, int p2, int p3, int p4);
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static v8::Persistent<v8::Context> env;
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static void InitializeVM() {
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// Disable compilation of natives.
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FLAG_disable_native_files = true;
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if (env.IsEmpty()) {
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env = v8::Context::New();
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}
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}
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#define __ assm.
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TEST(MIPS0) {
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InitializeVM();
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v8::HandleScope scope;
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MacroAssembler assm(NULL, 0);
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// Addition.
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__ addu(v0, a0, a1);
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__ jr(ra);
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__ nop();
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CodeDesc desc;
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assm.GetCode(&desc);
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Object* code = Heap::CreateCode(desc,
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NULL,
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Code::ComputeFlags(Code::STUB),
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Handle<Object>(Heap::undefined_value()));
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CHECK(code->IsCode());
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#ifdef DEBUG
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Code::cast(code)->Print();
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#endif
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F2 f = FUNCTION_CAST<F2>(Code::cast(code)->entry());
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int res = reinterpret_cast<int>(CALL_GENERATED_CODE(f, 0xab0, 0xc, 0, 0, 0));
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::printf("f() = %d\n", res);
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CHECK_EQ(0xabc, res);
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}
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TEST(MIPS1) {
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InitializeVM();
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v8::HandleScope scope;
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MacroAssembler assm(NULL, 0);
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Label L, C;
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__ mov(a1, a0);
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__ li(v0, 0);
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__ b(&C);
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__ nop();
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__ bind(&L);
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__ add(v0, v0, a1);
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__ addiu(a1, a1, -1);
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__ bind(&C);
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__ xori(v1, a1, 0);
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__ Branch(ne, &L, v1, Operand(0, RelocInfo::NONE));
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__ nop();
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__ jr(ra);
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__ nop();
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CodeDesc desc;
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assm.GetCode(&desc);
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Object* code = Heap::CreateCode(desc,
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NULL,
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Code::ComputeFlags(Code::STUB),
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Handle<Object>(Heap::undefined_value()));
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CHECK(code->IsCode());
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#ifdef DEBUG
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Code::cast(code)->Print();
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#endif
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F1 f = FUNCTION_CAST<F1>(Code::cast(code)->entry());
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int res = reinterpret_cast<int>(CALL_GENERATED_CODE(f, 50, 0, 0, 0, 0));
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::printf("f() = %d\n", res);
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CHECK_EQ(1275, res);
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}
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TEST(MIPS2) {
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InitializeVM();
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v8::HandleScope scope;
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MacroAssembler assm(NULL, 0);
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Label exit, error;
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// ----- Test all instructions.
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// Test lui, ori, and addiu, used in the li pseudo-instruction.
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// This way we can then safely load registers with chosen values.
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__ ori(t0, zero_reg, 0);
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__ lui(t0, 0x1234);
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__ ori(t0, t0, 0);
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__ ori(t0, t0, 0x0f0f);
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__ ori(t0, t0, 0xf0f0);
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__ addiu(t1, t0, 1);
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__ addiu(t2, t1, -0x10);
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// Load values in temporary registers.
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__ li(t0, 0x00000004);
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__ li(t1, 0x00001234);
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__ li(t2, 0x12345678);
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__ li(t3, 0x7fffffff);
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__ li(t4, 0xfffffffc);
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__ li(t5, 0xffffedcc);
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__ li(t6, 0xedcba988);
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__ li(t7, 0x80000000);
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// SPECIAL class.
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__ srl(v0, t2, 8); // 0x00123456
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__ sll(v0, v0, 11); // 0x91a2b000
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__ sra(v0, v0, 3); // 0xf2345600
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__ srav(v0, v0, t0); // 0xff234560
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__ sllv(v0, v0, t0); // 0xf2345600
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__ srlv(v0, v0, t0); // 0x0f234560
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__ Branch(ne, &error, v0, Operand(0x0f234560));
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__ nop();
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__ add(v0, t0, t1); // 0x00001238
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__ sub(v0, v0, t0); // 0x00001234
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__ Branch(ne, &error, v0, Operand(0x00001234));
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__ nop();
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__ addu(v1, t3, t0);
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__ Branch(ne, &error, v1, Operand(0x80000003));
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__ nop();
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__ subu(v1, t7, t0); // 0x7ffffffc
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__ Branch(ne, &error, v1, Operand(0x7ffffffc));
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__ nop();
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__ and_(v0, t1, t2); // 0x00001230
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__ or_(v0, v0, t1); // 0x00001234
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__ xor_(v0, v0, t2); // 0x1234444c
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__ nor(v0, v0, t2); // 0xedcba987
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__ Branch(ne, &error, v0, Operand(0xedcba983));
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__ nop();
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__ slt(v0, t7, t3);
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__ Branch(ne, &error, v0, Operand(0x1));
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__ nop();
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__ sltu(v0, t7, t3);
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__ Branch(ne, &error, v0, Operand(0x0));
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__ nop();
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// End of SPECIAL class.
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__ addi(v0, zero_reg, 0x7421); // 0x00007421
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__ addi(v0, v0, -0x1); // 0x00007420
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__ addiu(v0, v0, -0x20); // 0x00007400
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__ Branch(ne, &error, v0, Operand(0x00007400));
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__ nop();
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__ addiu(v1, t3, 0x1); // 0x80000000
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__ Branch(ne, &error, v1, Operand(0x80000000));
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__ nop();
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__ slti(v0, t1, 0x00002000); // 0x1
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__ slti(v0, v0, 0xffff8000); // 0x0
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__ Branch(ne, &error, v0, Operand(0x0));
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__ nop();
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__ sltiu(v0, t1, 0x00002000); // 0x1
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__ sltiu(v0, v0, 0x00008000); // 0x1
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__ Branch(ne, &error, v0, Operand(0x1));
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__ nop();
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__ andi(v0, t1, 0xf0f0); // 0x00001030
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__ ori(v0, v0, 0x8a00); // 0x00009a30
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__ xori(v0, v0, 0x83cc); // 0x000019fc
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__ Branch(ne, &error, v0, Operand(0x000019fc));
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__ nop();
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__ lui(v1, 0x8123); // 0x81230000
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__ Branch(ne, &error, v1, Operand(0x81230000));
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__ nop();
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// Everything was correctly executed. Load the expected result.
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__ li(v0, 0x31415926);
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__ b(&exit);
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__ nop();
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__ bind(&error);
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// Got an error. Return a wrong result.
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__ bind(&exit);
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__ jr(ra);
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__ nop();
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CodeDesc desc;
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assm.GetCode(&desc);
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Object* code = Heap::CreateCode(desc,
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NULL,
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Code::ComputeFlags(Code::STUB),
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Handle<Object>(Heap::undefined_value()));
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CHECK(code->IsCode());
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#ifdef DEBUG
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Code::cast(code)->Print();
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#endif
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F2 f = FUNCTION_CAST<F2>(Code::cast(code)->entry());
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int res = reinterpret_cast<int>(CALL_GENERATED_CODE(f, 0xab0, 0xc, 0, 0, 0));
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::printf("f() = %d\n", res);
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CHECK_EQ(0x31415926, res);
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}
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#undef __
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