Files
lifting-bits-remill/tests/AArch64/PrintSaveState.cpp
Peter Goodman 026ea1afec Issue 150 lift bin dir (#167)
* Added semantics and tests for SDIV

* Semantics and tests for SCVTF.

* Working on integer to/from float conversion bugs related to managing the fpu status register.

* Switch to using the check float function wrapper

* Remove unintentional call to fetestexcept

* Adding in a compiler reordering barrier.

* Added inline assembly that will force clang's optimizer to give up and filed a clang bug

* Adds some trailing spaces into some files. Re-enables all aarch64 tests.

* Added semantics and tests for SDIV

* Semantics and tests for SCVTF.

* Switch to using the check float function wrapper

* Remove unintentional call to fetestexcept

* Added inline assembly that will force clang's optimizer to give up and filed a clang bug

* Adds some trailing spaces into some files. Re-enables all aarch64 tests.

* Bringing the aarch64 branch back in line with master.

* Adds in a test and ISEL for LDR_BL_LDST_REGOFF, and fixes up the instructions in some SMOV and UMOV tests.

* Various fixes and some minor debugging aids for aarch64

* Resets the fenv before running lifted code.

* All existing aarch64 tests should now pass.
2017-11-29 22:53:58 -05:00

181 lines
7.9 KiB
C++

/*
* Copyright (c) 2017 Trail of Bits, Inc.
*
* Licensed under the Apache License, Version 2.0 (the "License");
* you may not use this file except in compliance with the License.
* You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*/
#include <cstddef>
#include <cstdio>
#define ADDRESS_SIZE_BITS 64
#include "remill/Arch/AArch64/Runtime/State.h"
int main(void) {
printf("/* Auto-generated file! Don't modify! */\n\n");
// X28 - State *
// General purpose regs (except x28, which contains State *).
printf("str x0, [x28, #%lu]\n", offsetof(State, gpr.x0));
printf("str x1, [x28, #%lu]\n", offsetof(State, gpr.x1));
printf("str x2, [x28, #%lu]\n", offsetof(State, gpr.x2));
printf("str x3, [x28, #%lu]\n", offsetof(State, gpr.x3));
printf("str x4, [x28, #%lu]\n", offsetof(State, gpr.x4));
printf("str x5, [x28, #%lu]\n", offsetof(State, gpr.x5));
printf("str x6, [x28, #%lu]\n", offsetof(State, gpr.x6));
printf("str x7, [x28, #%lu]\n", offsetof(State, gpr.x7));
printf("str x8, [x28, #%lu]\n", offsetof(State, gpr.x8));
printf("str x9, [x28, #%lu]\n", offsetof(State, gpr.x9));
printf("str x10, [x28, #%lu]\n", offsetof(State, gpr.x10));
printf("str x11, [x28, #%lu]\n", offsetof(State, gpr.x11));
printf("str x12, [x28, #%lu]\n", offsetof(State, gpr.x12));
printf("str x13, [x28, #%lu]\n", offsetof(State, gpr.x13));
printf("str x14, [x28, #%lu]\n", offsetof(State, gpr.x14));
printf("str x15, [x28, #%lu]\n", offsetof(State, gpr.x15));
printf("str x16, [x28, #%lu]\n", offsetof(State, gpr.x16));
printf("str x17, [x28, #%lu]\n", offsetof(State, gpr.x17));
printf("str x18, [x28, #%lu]\n", offsetof(State, gpr.x18));
printf("str x19, [x28, #%lu]\n", offsetof(State, gpr.x19));
printf("str x20, [x28, #%lu]\n", offsetof(State, gpr.x20));
printf("str x21, [x28, #%lu]\n", offsetof(State, gpr.x21));
printf("str x22, [x28, #%lu]\n", offsetof(State, gpr.x22));
printf("str x23, [x28, #%lu]\n", offsetof(State, gpr.x23));
printf("str x24, [x28, #%lu]\n", offsetof(State, gpr.x24));
printf("str x25, [x28, #%lu]\n", offsetof(State, gpr.x25));
printf("str x26, [x28, #%lu]\n", offsetof(State, gpr.x26));
printf("str x27, [x28, #%lu]\n", offsetof(State, gpr.x27));
printf("str x29, [x28, #%lu]\n", offsetof(State, gpr.x29));
printf("str x30, [x28, #%lu]\n", offsetof(State, gpr.x30));
// Save the stack pointer.
printf("mov x29, sp\n");
printf("str x29, [x28, #%lu]\n", offsetof(State, gpr.sp));
printf("mov x29, #1\n");
// Save the N flag.
printf("strb w29, [x28, #%lu]\n", offsetof(State, sr.n));
printf("b.mi 1f\n");
printf("strb wzr, [x28, #%lu]\n", offsetof(State, sr.n));
printf("1:\n");
// Save the Z flag.
printf("strb w29, [x28, #%lu]\n", offsetof(State, sr.z));
printf("b.eq 1f\n");
printf("strb wzr, [x28, #%lu]\n", offsetof(State, sr.z));
printf("1:\n");
// Save the C flag.
printf("strb w29, [x28, #%lu]\n", offsetof(State, sr.c));
printf("b.cs 1f\n");
printf("strb wzr, [x28, #%lu]\n", offsetof(State, sr.c));
printf("1:\n");
// Save the V flag.
printf("strb w29, [x28, #%lu]\n", offsetof(State, sr.v));
printf("b.vs 1f\n");
printf("strb wzr, [x28, #%lu]\n", offsetof(State, sr.v));
printf("1:\n");
// Save the real version of the nzvc reg.
printf("mrs x1, nzcv\n");
printf("str x1, [x28, #%lu]\n", offsetof(State, nzcv));
// Floating point condition register.
printf("mrs x1, fpcr\n");
printf("str x1, [x28, #%lu]\n", offsetof(State, fpcr));
// Floating point status register.
printf("mrs x1, fpsr\n");
printf("str x1, [x28, #%lu]\n", offsetof(State, fpsr));
// Save the cumulative invalid operation flag from the FPSR into the SR.
printf("ubfx x29, x1, #0, #1\n");
printf("strb w29, [x28, #%lu]\n", offsetof(State, sr.ioc));
// Save the cumulative overflow flag from the FPSR into the SR.
printf("ubfx x29, x1, #2, #1\n");
printf("strb w29, [x28, #%lu]\n", offsetof(State, sr.ofc));
// Save the cumulative underflow flag from the FPSR into the SR.
printf("ubfx x29, x1, #3, #1\n");
printf("strb w29, [x28, #%lu]\n", offsetof(State, sr.ufc));
// Save the cumulative inexact flag from the FPSR into the SR.
printf("ubfx x29, x1, #4, #1\n");
printf("strb w29, [x28, #%lu]\n", offsetof(State, sr.ixc));
// Save the cumulative input denormal flag from the FPSR into the SR.
printf("ubfx x29, x1, #6, #1\n");
printf("strb w29, [x28, #%lu]\n", offsetof(State, sr.idc));
// Restore x29.
printf("ldr x29, [x28, #%lu]\n", offsetof(State, gpr.x29));
// User-space thread pointer register.
printf("mrs x1, tpidr_el0\n");
printf("str x1, [x28, #%lu]\n", offsetof(State, sr.tpidr_el0));
// Secondary user space thread pointer register that is read-only from
// user space.
printf("mrs x1, tpidrro_el0\n");
printf("str x1, [x28, #%lu]\n", offsetof(State, sr.tpidrro_el0));
// SIMD regs.
auto base = offsetof(State, simd.v[0].dqwords);
printf("add x1, x28, #%lu\n", base);
printf("stur q0, [x1, #%lu]\n", offsetof(State, simd.v[0].dqwords) - base);
printf("stur q1, [x1, #%lu]\n", offsetof(State, simd.v[1].dqwords) - base);
printf("stur q2, [x1, #%lu]\n", offsetof(State, simd.v[2].dqwords) - base);
printf("stur q3, [x1, #%lu]\n", offsetof(State, simd.v[3].dqwords) - base);
printf("stur q4, [x1, #%lu]\n", offsetof(State, simd.v[4].dqwords) - base);
printf("stur q5, [x1, #%lu]\n", offsetof(State, simd.v[5].dqwords) - base);
printf("stur q6, [x1, #%lu]\n", offsetof(State, simd.v[6].dqwords) - base);
printf("stur q7, [x1, #%lu]\n", offsetof(State, simd.v[7].dqwords) - base);
printf("stur q8, [x1, #%lu]\n", offsetof(State, simd.v[8].dqwords) - base);
printf("stur q9, [x1, #%lu]\n", offsetof(State, simd.v[9].dqwords) - base);
printf("stur q10, [x1, #%lu]\n", offsetof(State, simd.v[10].dqwords) - base);
printf("stur q11, [x1, #%lu]\n", offsetof(State, simd.v[11].dqwords) - base);
printf("stur q12, [x1, #%lu]\n", offsetof(State, simd.v[12].dqwords) - base);
printf("stur q13, [x1, #%lu]\n", offsetof(State, simd.v[13].dqwords) - base);
printf("stur q14, [x1, #%lu]\n", offsetof(State, simd.v[14].dqwords) - base);
printf("stur q15, [x1, #%lu]\n", offsetof(State, simd.v[15].dqwords) - base);
base = offsetof(State, simd.v[16].dqwords);
printf("add x1, x28, #%lu\n", base);
printf("stur q16, [x1, #%lu]\n", offsetof(State, simd.v[16].dqwords) - base);
printf("stur q17, [x1, #%lu]\n", offsetof(State, simd.v[17].dqwords) - base);
printf("stur q18, [x1, #%lu]\n", offsetof(State, simd.v[18].dqwords) - base);
printf("stur q19, [x1, #%lu]\n", offsetof(State, simd.v[19].dqwords) - base);
printf("stur q20, [x1, #%lu]\n", offsetof(State, simd.v[20].dqwords) - base);
printf("stur q21, [x1, #%lu]\n", offsetof(State, simd.v[21].dqwords) - base);
printf("stur q22, [x1, #%lu]\n", offsetof(State, simd.v[22].dqwords) - base);
printf("stur q23, [x1, #%lu]\n", offsetof(State, simd.v[23].dqwords) - base);
printf("stur q24, [x1, #%lu]\n", offsetof(State, simd.v[24].dqwords) - base);
printf("stur q25, [x1, #%lu]\n", offsetof(State, simd.v[25].dqwords) - base);
printf("stur q26, [x1, #%lu]\n", offsetof(State, simd.v[26].dqwords) - base);
printf("stur q27, [x1, #%lu]\n", offsetof(State, simd.v[27].dqwords) - base);
printf("stur q28, [x1, #%lu]\n", offsetof(State, simd.v[28].dqwords) - base);
printf("stur q29, [x1, #%lu]\n", offsetof(State, simd.v[29].dqwords) - base);
printf("stur q30, [x1, #%lu]\n", offsetof(State, simd.v[30].dqwords) - base);
printf("stur q31, [x1, #%lu]\n", offsetof(State, simd.v[31].dqwords) - base);
// Restore stolen `x1`.
printf("ldr x1, [x28, #%lu]\n", offsetof(State, gpr.x1));
return 0;
}