1b8021494Sopenharmony_ci// Copyright 2016, VIXL authors 2b8021494Sopenharmony_ci// All rights reserved. 3b8021494Sopenharmony_ci// 4b8021494Sopenharmony_ci// Redistribution and use in source and binary forms, with or without 5b8021494Sopenharmony_ci// modification, are permitted provided that the following conditions are met: 6b8021494Sopenharmony_ci// 7b8021494Sopenharmony_ci// * Redistributions of source code must retain the above copyright notice, 8b8021494Sopenharmony_ci// this list of conditions and the following disclaimer. 9b8021494Sopenharmony_ci// * Redistributions in binary form must reproduce the above copyright notice, 10b8021494Sopenharmony_ci// this list of conditions and the following disclaimer in the documentation 11b8021494Sopenharmony_ci// and/or other materials provided with the distribution. 12b8021494Sopenharmony_ci// * Neither the name of ARM Limited nor the names of its contributors may be 13b8021494Sopenharmony_ci// used to endorse or promote products derived from this software without 14b8021494Sopenharmony_ci// specific prior written permission. 15b8021494Sopenharmony_ci// 16b8021494Sopenharmony_ci// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS CONTRIBUTORS "AS IS" AND 17b8021494Sopenharmony_ci// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED 18b8021494Sopenharmony_ci// WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE 19b8021494Sopenharmony_ci// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE 20b8021494Sopenharmony_ci// FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 21b8021494Sopenharmony_ci// DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR 22b8021494Sopenharmony_ci// SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER 23b8021494Sopenharmony_ci// CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, 24b8021494Sopenharmony_ci// OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE 25b8021494Sopenharmony_ci// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 26b8021494Sopenharmony_ci 27b8021494Sopenharmony_ci 28b8021494Sopenharmony_ci// ----------------------------------------------------------------------------- 29b8021494Sopenharmony_ci// This file is auto generated from the 30b8021494Sopenharmony_ci// test/aarch32/config/template-simulator-aarch32.cc.in template file using 31b8021494Sopenharmony_ci// tools/generate_tests.py. 32b8021494Sopenharmony_ci// 33b8021494Sopenharmony_ci// PLEASE DO NOT EDIT. 34b8021494Sopenharmony_ci// ----------------------------------------------------------------------------- 35b8021494Sopenharmony_ci 36b8021494Sopenharmony_ci 37b8021494Sopenharmony_ci#include "test-runner.h" 38b8021494Sopenharmony_ci 39b8021494Sopenharmony_ci#include "test-utils.h" 40b8021494Sopenharmony_ci#include "test-utils-aarch32.h" 41b8021494Sopenharmony_ci 42b8021494Sopenharmony_ci#include "aarch32/assembler-aarch32.h" 43b8021494Sopenharmony_ci#include "aarch32/disasm-aarch32.h" 44b8021494Sopenharmony_ci#include "aarch32/macro-assembler-aarch32.h" 45b8021494Sopenharmony_ci 46b8021494Sopenharmony_ci#define __ masm. 47b8021494Sopenharmony_ci#define BUF_SIZE (4096) 48b8021494Sopenharmony_ci 49b8021494Sopenharmony_ci#ifdef VIXL_INCLUDE_SIMULATOR_AARCH32 50b8021494Sopenharmony_ci// Run tests with the simulator. 51b8021494Sopenharmony_ci 52b8021494Sopenharmony_ci#define SETUP() MacroAssembler masm(BUF_SIZE) 53b8021494Sopenharmony_ci 54b8021494Sopenharmony_ci#define START() masm.GetBuffer()->Reset() 55b8021494Sopenharmony_ci 56b8021494Sopenharmony_ci#define END() \ 57b8021494Sopenharmony_ci __ Hlt(0); \ 58b8021494Sopenharmony_ci __ FinalizeCode(); 59b8021494Sopenharmony_ci 60b8021494Sopenharmony_ci// TODO: Run the tests in the simulator. 61b8021494Sopenharmony_ci#define RUN() 62b8021494Sopenharmony_ci 63b8021494Sopenharmony_ci#else // ifdef VIXL_INCLUDE_SIMULATOR_AARCH32. 64b8021494Sopenharmony_ci 65b8021494Sopenharmony_ci#define SETUP() \ 66b8021494Sopenharmony_ci MacroAssembler masm(BUF_SIZE); \ 67b8021494Sopenharmony_ci UseScratchRegisterScope harness_scratch; 68b8021494Sopenharmony_ci 69b8021494Sopenharmony_ci#define START() \ 70b8021494Sopenharmony_ci harness_scratch.Open(&masm); \ 71b8021494Sopenharmony_ci harness_scratch.ExcludeAll(); \ 72b8021494Sopenharmony_ci masm.GetBuffer()->Reset(); \ 73b8021494Sopenharmony_ci __ Push(r4); \ 74b8021494Sopenharmony_ci __ Push(r5); \ 75b8021494Sopenharmony_ci __ Push(r6); \ 76b8021494Sopenharmony_ci __ Push(r7); \ 77b8021494Sopenharmony_ci __ Push(r8); \ 78b8021494Sopenharmony_ci __ Push(r9); \ 79b8021494Sopenharmony_ci __ Push(r10); \ 80b8021494Sopenharmony_ci __ Push(r11); \ 81b8021494Sopenharmony_ci __ Push(lr); \ 82b8021494Sopenharmony_ci harness_scratch.Include(ip); 83b8021494Sopenharmony_ci 84b8021494Sopenharmony_ci#define END() \ 85b8021494Sopenharmony_ci harness_scratch.Exclude(ip); \ 86b8021494Sopenharmony_ci __ Pop(lr); \ 87b8021494Sopenharmony_ci __ Pop(r11); \ 88b8021494Sopenharmony_ci __ Pop(r10); \ 89b8021494Sopenharmony_ci __ Pop(r9); \ 90b8021494Sopenharmony_ci __ Pop(r8); \ 91b8021494Sopenharmony_ci __ Pop(r7); \ 92b8021494Sopenharmony_ci __ Pop(r6); \ 93b8021494Sopenharmony_ci __ Pop(r5); \ 94b8021494Sopenharmony_ci __ Pop(r4); \ 95b8021494Sopenharmony_ci __ Bx(lr); \ 96b8021494Sopenharmony_ci __ FinalizeCode(); \ 97b8021494Sopenharmony_ci harness_scratch.Close(); 98b8021494Sopenharmony_ci 99b8021494Sopenharmony_ci#define RUN() \ 100b8021494Sopenharmony_ci { \ 101b8021494Sopenharmony_ci int pcs_offset = masm.IsUsingT32() ? 1 : 0; \ 102b8021494Sopenharmony_ci masm.GetBuffer()->SetExecutable(); \ 103b8021494Sopenharmony_ci ExecuteMemory(masm.GetBuffer()->GetStartAddress<byte*>(), \ 104b8021494Sopenharmony_ci masm.GetSizeOfCodeGenerated(), \ 105b8021494Sopenharmony_ci pcs_offset); \ 106b8021494Sopenharmony_ci masm.GetBuffer()->SetWritable(); \ 107b8021494Sopenharmony_ci } 108b8021494Sopenharmony_ci 109b8021494Sopenharmony_ci#endif // ifdef VIXL_INCLUDE_SIMULATOR_AARCH32 110b8021494Sopenharmony_ci 111b8021494Sopenharmony_cinamespace vixl { 112b8021494Sopenharmony_cinamespace aarch32 { 113b8021494Sopenharmony_ci 114b8021494Sopenharmony_ci// List of instruction encodings: 115b8021494Sopenharmony_ci#define FOREACH_INSTRUCTION(M) \ 116b8021494Sopenharmony_ci M(Sxtb) \ 117b8021494Sopenharmony_ci M(Sxtb16) \ 118b8021494Sopenharmony_ci M(Sxth) \ 119b8021494Sopenharmony_ci M(Uxtb) \ 120b8021494Sopenharmony_ci M(Uxtb16) \ 121b8021494Sopenharmony_ci M(Uxth) 122b8021494Sopenharmony_ci 123b8021494Sopenharmony_ci 124b8021494Sopenharmony_ci// The following definitions are defined again in each generated test, therefore 125b8021494Sopenharmony_ci// we need to place them in an anonymous namespace. It expresses that they are 126b8021494Sopenharmony_ci// local to this file only, and the compiler is not allowed to share these types 127b8021494Sopenharmony_ci// across test files during template instantiation. Specifically, `Operands` and 128b8021494Sopenharmony_ci// `Inputs` have various layouts across generated tests so they absolutely 129b8021494Sopenharmony_ci// cannot be shared. 130b8021494Sopenharmony_ci 131b8021494Sopenharmony_ci#ifdef VIXL_INCLUDE_TARGET_T32 132b8021494Sopenharmony_cinamespace { 133b8021494Sopenharmony_ci 134b8021494Sopenharmony_ci// Values to be passed to the assembler to produce the instruction under test. 135b8021494Sopenharmony_cistruct Operands { 136b8021494Sopenharmony_ci Condition cond; 137b8021494Sopenharmony_ci Register rd; 138b8021494Sopenharmony_ci Register rn; 139b8021494Sopenharmony_ci ShiftType ror; 140b8021494Sopenharmony_ci uint32_t amount; 141b8021494Sopenharmony_ci}; 142b8021494Sopenharmony_ci 143b8021494Sopenharmony_ci// Input data to feed to the instruction. 144b8021494Sopenharmony_cistruct Inputs { 145b8021494Sopenharmony_ci uint32_t apsr; 146b8021494Sopenharmony_ci uint32_t rd; 147b8021494Sopenharmony_ci uint32_t rn; 148b8021494Sopenharmony_ci}; 149b8021494Sopenharmony_ci 150b8021494Sopenharmony_ci// This structure contains all input data needed to test one specific encoding. 151b8021494Sopenharmony_ci// It used to generate a loop over an instruction. 152b8021494Sopenharmony_cistruct TestLoopData { 153b8021494Sopenharmony_ci // The `operands` fields represents the values to pass to the assembler to 154b8021494Sopenharmony_ci // produce the instruction. 155b8021494Sopenharmony_ci Operands operands; 156b8021494Sopenharmony_ci // Description of the operands, used for error reporting. 157b8021494Sopenharmony_ci const char* operands_description; 158b8021494Sopenharmony_ci // Unique identifier, used for generating traces. 159b8021494Sopenharmony_ci const char* identifier; 160b8021494Sopenharmony_ci // Array of values to be fed to the instruction. 161b8021494Sopenharmony_ci size_t input_size; 162b8021494Sopenharmony_ci const Inputs* inputs; 163b8021494Sopenharmony_ci}; 164b8021494Sopenharmony_ci 165b8021494Sopenharmony_cistatic const Inputs kCondition[] = {{NFlag, 0xabababab, 0xabababab}, 166b8021494Sopenharmony_ci {ZFlag, 0xabababab, 0xabababab}, 167b8021494Sopenharmony_ci {CFlag, 0xabababab, 0xabababab}, 168b8021494Sopenharmony_ci {VFlag, 0xabababab, 0xabababab}, 169b8021494Sopenharmony_ci {NZFlag, 0xabababab, 0xabababab}, 170b8021494Sopenharmony_ci {NCFlag, 0xabababab, 0xabababab}, 171b8021494Sopenharmony_ci {NVFlag, 0xabababab, 0xabababab}, 172b8021494Sopenharmony_ci {ZCFlag, 0xabababab, 0xabababab}, 173b8021494Sopenharmony_ci {ZVFlag, 0xabababab, 0xabababab}, 174b8021494Sopenharmony_ci {CVFlag, 0xabababab, 0xabababab}, 175b8021494Sopenharmony_ci {NZCFlag, 0xabababab, 0xabababab}, 176b8021494Sopenharmony_ci {NZVFlag, 0xabababab, 0xabababab}, 177b8021494Sopenharmony_ci {NCVFlag, 0xabababab, 0xabababab}, 178b8021494Sopenharmony_ci {ZCVFlag, 0xabababab, 0xabababab}, 179b8021494Sopenharmony_ci {NZCVFlag, 0xabababab, 0xabababab}}; 180b8021494Sopenharmony_ci 181b8021494Sopenharmony_cistatic const Inputs kRdIsRn[] = 182b8021494Sopenharmony_ci {{NoFlag, 0x00000000, 0x00000000}, {NoFlag, 0x00000001, 0x00000001}, 183b8021494Sopenharmony_ci {NoFlag, 0x00000002, 0x00000002}, {NoFlag, 0x00000020, 0x00000020}, 184b8021494Sopenharmony_ci {NoFlag, 0x0000007d, 0x0000007d}, {NoFlag, 0x0000007e, 0x0000007e}, 185b8021494Sopenharmony_ci {NoFlag, 0x0000007f, 0x0000007f}, {NoFlag, 0x00007ffd, 0x00007ffd}, 186b8021494Sopenharmony_ci {NoFlag, 0x00007ffe, 0x00007ffe}, {NoFlag, 0x00007fff, 0x00007fff}, 187b8021494Sopenharmony_ci {NoFlag, 0x33333333, 0x33333333}, {NoFlag, 0x55555555, 0x55555555}, 188b8021494Sopenharmony_ci {NoFlag, 0x7ffffffd, 0x7ffffffd}, {NoFlag, 0x7ffffffe, 0x7ffffffe}, 189b8021494Sopenharmony_ci {NoFlag, 0x7fffffff, 0x7fffffff}, {NoFlag, 0x80000000, 0x80000000}, 190b8021494Sopenharmony_ci {NoFlag, 0x80000001, 0x80000001}, {NoFlag, 0xaaaaaaaa, 0xaaaaaaaa}, 191b8021494Sopenharmony_ci {NoFlag, 0xcccccccc, 0xcccccccc}, {NoFlag, 0xffff8000, 0xffff8000}, 192b8021494Sopenharmony_ci {NoFlag, 0xffff8001, 0xffff8001}, {NoFlag, 0xffff8002, 0xffff8002}, 193b8021494Sopenharmony_ci {NoFlag, 0xffff8003, 0xffff8003}, {NoFlag, 0xffffff80, 0xffffff80}, 194b8021494Sopenharmony_ci {NoFlag, 0xffffff81, 0xffffff81}, {NoFlag, 0xffffff82, 0xffffff82}, 195b8021494Sopenharmony_ci {NoFlag, 0xffffff83, 0xffffff83}, {NoFlag, 0xffffffe0, 0xffffffe0}, 196b8021494Sopenharmony_ci {NoFlag, 0xfffffffd, 0xfffffffd}, {NoFlag, 0xfffffffe, 0xfffffffe}, 197b8021494Sopenharmony_ci {NoFlag, 0xffffffff, 0xffffffff}}; 198b8021494Sopenharmony_ci 199b8021494Sopenharmony_cistatic const Inputs kRdIsNotRn[] = 200b8021494Sopenharmony_ci {{NoFlag, 0x00000002, 0xcccccccc}, {NoFlag, 0x7ffffffd, 0x00007ffe}, 201b8021494Sopenharmony_ci {NoFlag, 0xffffff80, 0x00000020}, {NoFlag, 0xaaaaaaaa, 0xaaaaaaaa}, 202b8021494Sopenharmony_ci {NoFlag, 0x33333333, 0xffffff82}, {NoFlag, 0xffff8001, 0x7ffffffe}, 203b8021494Sopenharmony_ci {NoFlag, 0xfffffffd, 0x00007ffe}, {NoFlag, 0xffffff80, 0x80000000}, 204b8021494Sopenharmony_ci {NoFlag, 0x00000001, 0x33333333}, {NoFlag, 0xcccccccc, 0x7ffffffe}, 205b8021494Sopenharmony_ci {NoFlag, 0x00000000, 0xcccccccc}, {NoFlag, 0x00000000, 0x55555555}, 206b8021494Sopenharmony_ci {NoFlag, 0xffffffff, 0xffffffff}, {NoFlag, 0x0000007e, 0xffff8002}, 207b8021494Sopenharmony_ci {NoFlag, 0x80000000, 0x7ffffffd}, {NoFlag, 0xffffff81, 0x0000007e}, 208b8021494Sopenharmony_ci {NoFlag, 0x0000007f, 0xffff8001}, {NoFlag, 0xffffffe0, 0x00007ffd}, 209b8021494Sopenharmony_ci {NoFlag, 0xffff8003, 0x00000002}, {NoFlag, 0xffffff83, 0x55555555}, 210b8021494Sopenharmony_ci {NoFlag, 0xffffff83, 0xffffff80}, {NoFlag, 0xffffff81, 0xffff8000}, 211b8021494Sopenharmony_ci {NoFlag, 0x00000020, 0x7ffffffe}, {NoFlag, 0xffffffe0, 0x00000000}, 212b8021494Sopenharmony_ci {NoFlag, 0x7fffffff, 0x0000007e}, {NoFlag, 0x80000001, 0xffffffff}, 213b8021494Sopenharmony_ci {NoFlag, 0x00000001, 0x80000001}, {NoFlag, 0x00000002, 0x0000007f}, 214b8021494Sopenharmony_ci {NoFlag, 0x7fffffff, 0xcccccccc}, {NoFlag, 0x80000001, 0x00007ffe}, 215b8021494Sopenharmony_ci {NoFlag, 0xffff8002, 0x0000007e}, {NoFlag, 0x00007ffe, 0xcccccccc}, 216b8021494Sopenharmony_ci {NoFlag, 0x80000000, 0xffff8002}, {NoFlag, 0xffffff83, 0x7ffffffe}, 217b8021494Sopenharmony_ci {NoFlag, 0xffff8001, 0x00000001}, {NoFlag, 0xffffff81, 0x00000020}, 218b8021494Sopenharmony_ci {NoFlag, 0xfffffffe, 0xffff8001}, {NoFlag, 0xffffffff, 0xfffffffe}, 219b8021494Sopenharmony_ci {NoFlag, 0xcccccccc, 0x55555555}, {NoFlag, 0x00000020, 0xffffff83}, 220b8021494Sopenharmony_ci {NoFlag, 0xffffff83, 0xffff8001}, {NoFlag, 0xffffff83, 0xffff8000}, 221b8021494Sopenharmony_ci {NoFlag, 0x00007fff, 0x00000002}, {NoFlag, 0x55555555, 0xffff8000}, 222b8021494Sopenharmony_ci {NoFlag, 0x80000001, 0xffffff81}, {NoFlag, 0x00000002, 0x00000000}, 223b8021494Sopenharmony_ci {NoFlag, 0x33333333, 0xffffff81}, {NoFlag, 0xffff8001, 0xffffff82}, 224b8021494Sopenharmony_ci {NoFlag, 0xcccccccc, 0xffff8003}, {NoFlag, 0xffff8003, 0x7ffffffd}, 225b8021494Sopenharmony_ci {NoFlag, 0x0000007d, 0x00007ffe}, {NoFlag, 0xffffff80, 0x0000007d}, 226b8021494Sopenharmony_ci {NoFlag, 0xaaaaaaaa, 0x00007ffd}, {NoFlag, 0x80000000, 0xffffff82}, 227b8021494Sopenharmony_ci {NoFlag, 0x00000002, 0x7ffffffe}, {NoFlag, 0x00000002, 0xffffff83}, 228b8021494Sopenharmony_ci {NoFlag, 0x55555555, 0x00000002}, {NoFlag, 0xffffffff, 0xffffff82}, 229b8021494Sopenharmony_ci {NoFlag, 0xaaaaaaaa, 0x00000020}, {NoFlag, 0x00000001, 0xffffff82}, 230b8021494Sopenharmony_ci {NoFlag, 0x0000007f, 0xffffff82}, {NoFlag, 0x7ffffffd, 0xaaaaaaaa}, 231b8021494Sopenharmony_ci {NoFlag, 0x00007ffe, 0x00000001}, {NoFlag, 0xfffffffd, 0xffffffe0}, 232b8021494Sopenharmony_ci {NoFlag, 0xffffff81, 0xffffff83}, {NoFlag, 0x0000007d, 0x00000000}, 233b8021494Sopenharmony_ci {NoFlag, 0x0000007d, 0xffff8000}, {NoFlag, 0xffffff81, 0x7fffffff}, 234b8021494Sopenharmony_ci {NoFlag, 0xffffffff, 0x80000000}, {NoFlag, 0x00000000, 0x00000001}, 235b8021494Sopenharmony_ci {NoFlag, 0x55555555, 0xffffff82}, {NoFlag, 0x00007ffe, 0x00007ffe}, 236b8021494Sopenharmony_ci {NoFlag, 0x80000001, 0xfffffffd}, {NoFlag, 0x00007fff, 0x33333333}, 237b8021494Sopenharmony_ci {NoFlag, 0x00007fff, 0x80000000}, {NoFlag, 0xcccccccc, 0x00007fff}, 238b8021494Sopenharmony_ci {NoFlag, 0xfffffffe, 0xffffffe0}, {NoFlag, 0x7ffffffe, 0x0000007f}, 239b8021494Sopenharmony_ci {NoFlag, 0x00007ffd, 0xffff8001}, {NoFlag, 0x00000002, 0x00000001}, 240b8021494Sopenharmony_ci {NoFlag, 0x80000000, 0xffffffff}, {NoFlag, 0xffffff83, 0xcccccccc}, 241b8021494Sopenharmony_ci {NoFlag, 0xffff8002, 0x7ffffffe}, {NoFlag, 0xaaaaaaaa, 0x00000000}, 242b8021494Sopenharmony_ci {NoFlag, 0xffffff80, 0xcccccccc}, {NoFlag, 0x33333333, 0xffffff83}, 243b8021494Sopenharmony_ci {NoFlag, 0x0000007e, 0xffffffe0}, {NoFlag, 0x0000007e, 0x00007fff}, 244b8021494Sopenharmony_ci {NoFlag, 0x0000007f, 0x00000002}, {NoFlag, 0x7ffffffe, 0xcccccccc}, 245b8021494Sopenharmony_ci {NoFlag, 0x0000007d, 0xffffff80}, {NoFlag, 0x00007fff, 0x00000020}, 246b8021494Sopenharmony_ci {NoFlag, 0x7ffffffe, 0xfffffffe}, {NoFlag, 0xfffffffe, 0xffffff81}, 247b8021494Sopenharmony_ci {NoFlag, 0xffffffff, 0x0000007f}, {NoFlag, 0xffff8002, 0x7ffffffd}, 248b8021494Sopenharmony_ci {NoFlag, 0xffff8001, 0xfffffffe}, {NoFlag, 0x33333333, 0xffff8002}, 249b8021494Sopenharmony_ci {NoFlag, 0x00000000, 0xffffffff}, {NoFlag, 0x33333333, 0xffffff80}, 250b8021494Sopenharmony_ci {NoFlag, 0x0000007f, 0x00007fff}, {NoFlag, 0xffffffff, 0xffff8001}, 251b8021494Sopenharmony_ci {NoFlag, 0x7fffffff, 0xffff8002}, {NoFlag, 0x7ffffffd, 0xffffff83}, 252b8021494Sopenharmony_ci {NoFlag, 0x7fffffff, 0x0000007f}, {NoFlag, 0xffffff83, 0xfffffffe}, 253b8021494Sopenharmony_ci {NoFlag, 0x7ffffffe, 0xffff8003}, {NoFlag, 0xffff8002, 0xffff8002}, 254b8021494Sopenharmony_ci {NoFlag, 0x80000001, 0x0000007f}, {NoFlag, 0x00000020, 0x00000002}, 255b8021494Sopenharmony_ci {NoFlag, 0xffffff82, 0xffff8001}, {NoFlag, 0xffffffff, 0x00000001}, 256b8021494Sopenharmony_ci {NoFlag, 0xffffff80, 0xffff8002}, {NoFlag, 0xffff8003, 0x7fffffff}, 257b8021494Sopenharmony_ci {NoFlag, 0xffffffff, 0xffff8000}, {NoFlag, 0xffff8002, 0x00007ffd}, 258b8021494Sopenharmony_ci {NoFlag, 0x00000020, 0xffffff81}, {NoFlag, 0x00000001, 0x55555555}, 259b8021494Sopenharmony_ci {NoFlag, 0x7ffffffe, 0x00000020}, {NoFlag, 0x80000000, 0x00000001}, 260b8021494Sopenharmony_ci {NoFlag, 0x00007ffd, 0xffff8002}, {NoFlag, 0x7fffffff, 0xfffffffe}, 261b8021494Sopenharmony_ci {NoFlag, 0xcccccccc, 0x00007ffd}, {NoFlag, 0x00000000, 0xfffffffd}, 262b8021494Sopenharmony_ci {NoFlag, 0xffff8003, 0xffffff80}, {NoFlag, 0x80000001, 0xffffff80}, 263b8021494Sopenharmony_ci {NoFlag, 0xffffffff, 0xffff8002}, {NoFlag, 0x00007ffe, 0xffff8002}, 264b8021494Sopenharmony_ci {NoFlag, 0xffffff80, 0x00007ffe}, {NoFlag, 0x80000001, 0xffff8001}, 265b8021494Sopenharmony_ci {NoFlag, 0x0000007f, 0xffffff80}, {NoFlag, 0xffffff81, 0x80000000}, 266b8021494Sopenharmony_ci {NoFlag, 0x00007fff, 0x00007ffe}, {NoFlag, 0x33333333, 0xffff8000}, 267b8021494Sopenharmony_ci {NoFlag, 0x33333333, 0x00007fff}, {NoFlag, 0x00000000, 0x0000007d}, 268b8021494Sopenharmony_ci {NoFlag, 0x80000001, 0x00000000}, {NoFlag, 0xffffffff, 0x55555555}, 269b8021494Sopenharmony_ci {NoFlag, 0x80000001, 0x80000000}, {NoFlag, 0xffffffff, 0xffffff80}, 270b8021494Sopenharmony_ci {NoFlag, 0xffffff81, 0xffff8003}, {NoFlag, 0x55555555, 0x80000001}, 271b8021494Sopenharmony_ci {NoFlag, 0x7fffffff, 0xffff8001}, {NoFlag, 0xffffff83, 0x00000002}, 272b8021494Sopenharmony_ci {NoFlag, 0x0000007e, 0xffffff81}, {NoFlag, 0x80000000, 0xffff8001}, 273b8021494Sopenharmony_ci {NoFlag, 0xffffff80, 0xfffffffe}, {NoFlag, 0x0000007e, 0xfffffffd}, 274b8021494Sopenharmony_ci {NoFlag, 0xffffffe0, 0xffffffff}, {NoFlag, 0x55555555, 0x80000000}, 275b8021494Sopenharmony_ci {NoFlag, 0x0000007d, 0x80000001}, {NoFlag, 0xffffffe0, 0x7ffffffd}, 276b8021494Sopenharmony_ci {NoFlag, 0x00000000, 0x00000000}, {NoFlag, 0x55555555, 0x00000001}, 277b8021494Sopenharmony_ci {NoFlag, 0x00007ffd, 0x7fffffff}, {NoFlag, 0x55555555, 0xffffffff}, 278b8021494Sopenharmony_ci {NoFlag, 0xffff8003, 0x00007fff}, {NoFlag, 0xffffff82, 0x00007fff}, 279b8021494Sopenharmony_ci {NoFlag, 0x33333333, 0x55555555}, {NoFlag, 0x00000020, 0x33333333}, 280b8021494Sopenharmony_ci {NoFlag, 0x7ffffffe, 0xfffffffd}, {NoFlag, 0x7ffffffe, 0x00000001}, 281b8021494Sopenharmony_ci {NoFlag, 0xffffff83, 0xffffffe0}, {NoFlag, 0xfffffffe, 0xaaaaaaaa}, 282b8021494Sopenharmony_ci {NoFlag, 0xffff8002, 0x33333333}, {NoFlag, 0xffff8002, 0xffff8003}, 283b8021494Sopenharmony_ci {NoFlag, 0x33333333, 0x7fffffff}, {NoFlag, 0xfffffffd, 0xffffff83}, 284b8021494Sopenharmony_ci {NoFlag, 0x00000000, 0xffff8000}, {NoFlag, 0xffffff82, 0x55555555}, 285b8021494Sopenharmony_ci {NoFlag, 0xffffff82, 0xffffff81}, {NoFlag, 0xcccccccc, 0xfffffffe}, 286b8021494Sopenharmony_ci {NoFlag, 0xfffffffd, 0x7fffffff}, {NoFlag, 0x00007fff, 0x7fffffff}, 287b8021494Sopenharmony_ci {NoFlag, 0xffffff83, 0xffff8003}, {NoFlag, 0xfffffffe, 0xffffffff}, 288b8021494Sopenharmony_ci {NoFlag, 0x7ffffffd, 0x00007ffd}, {NoFlag, 0x7ffffffd, 0x00007fff}, 289b8021494Sopenharmony_ci {NoFlag, 0x00007ffd, 0xffffffff}, {NoFlag, 0x00000001, 0xffff8003}, 290b8021494Sopenharmony_ci {NoFlag, 0xffffff80, 0xfffffffd}, {NoFlag, 0x33333333, 0x80000000}, 291b8021494Sopenharmony_ci {NoFlag, 0xffff8001, 0x00000020}, {NoFlag, 0xcccccccc, 0x00000002}, 292b8021494Sopenharmony_ci {NoFlag, 0x00000000, 0x00000002}, {NoFlag, 0x0000007d, 0x00007fff}, 293b8021494Sopenharmony_ci {NoFlag, 0xcccccccc, 0x00000001}, {NoFlag, 0xffffff83, 0x00007fff}, 294b8021494Sopenharmony_ci {NoFlag, 0x80000001, 0x00000020}, {NoFlag, 0xffff8003, 0xffffffe0}, 295b8021494Sopenharmony_ci {NoFlag, 0x00007ffd, 0xaaaaaaaa}, {NoFlag, 0x33333333, 0xffff8001}, 296b8021494Sopenharmony_ci {NoFlag, 0xffffff83, 0x80000001}, {NoFlag, 0xffff8000, 0xffff8000}, 297b8021494Sopenharmony_ci {NoFlag, 0x00007ffe, 0xffff8001}, {NoFlag, 0x7ffffffd, 0x00000000}, 298b8021494Sopenharmony_ci {NoFlag, 0x00007ffe, 0x33333333}, {NoFlag, 0xffff8001, 0xffffff80}, 299b8021494Sopenharmony_ci {NoFlag, 0xfffffffe, 0x55555555}, {NoFlag, 0xffffff82, 0xffffffff}}; 300b8021494Sopenharmony_ci 301b8021494Sopenharmony_cistatic const Inputs kRotations[] = 302b8021494Sopenharmony_ci {{NoFlag, 0xabababab, 0x00000000}, {NoFlag, 0xabababab, 0x00000001}, 303b8021494Sopenharmony_ci {NoFlag, 0xabababab, 0x00000002}, {NoFlag, 0xabababab, 0x00000020}, 304b8021494Sopenharmony_ci {NoFlag, 0xabababab, 0x0000007d}, {NoFlag, 0xabababab, 0x0000007e}, 305b8021494Sopenharmony_ci {NoFlag, 0xabababab, 0x0000007f}, {NoFlag, 0xabababab, 0x00007ffd}, 306b8021494Sopenharmony_ci {NoFlag, 0xabababab, 0x00007ffe}, {NoFlag, 0xabababab, 0x00007fff}, 307b8021494Sopenharmony_ci {NoFlag, 0xabababab, 0x33333333}, {NoFlag, 0xabababab, 0x55555555}, 308b8021494Sopenharmony_ci {NoFlag, 0xabababab, 0x7ffffffd}, {NoFlag, 0xabababab, 0x7ffffffe}, 309b8021494Sopenharmony_ci {NoFlag, 0xabababab, 0x7fffffff}, {NoFlag, 0xabababab, 0x80000000}, 310b8021494Sopenharmony_ci {NoFlag, 0xabababab, 0x80000001}, {NoFlag, 0xabababab, 0xaaaaaaaa}, 311b8021494Sopenharmony_ci {NoFlag, 0xabababab, 0xcccccccc}, {NoFlag, 0xabababab, 0xffff8000}, 312b8021494Sopenharmony_ci {NoFlag, 0xabababab, 0xffff8001}, {NoFlag, 0xabababab, 0xffff8002}, 313b8021494Sopenharmony_ci {NoFlag, 0xabababab, 0xffff8003}, {NoFlag, 0xabababab, 0xffffff80}, 314b8021494Sopenharmony_ci {NoFlag, 0xabababab, 0xffffff81}, {NoFlag, 0xabababab, 0xffffff82}, 315b8021494Sopenharmony_ci {NoFlag, 0xabababab, 0xffffff83}, {NoFlag, 0xabababab, 0xffffffe0}, 316b8021494Sopenharmony_ci {NoFlag, 0xabababab, 0xfffffffd}, {NoFlag, 0xabababab, 0xfffffffe}, 317b8021494Sopenharmony_ci {NoFlag, 0xabababab, 0xffffffff}}; 318b8021494Sopenharmony_ci 319b8021494Sopenharmony_ci 320b8021494Sopenharmony_ci// A loop will be generated for each element of this array. 321b8021494Sopenharmony_ciconst TestLoopData kTests[] = {{{eq, r0, r0, ROR, 0}, 322b8021494Sopenharmony_ci "eq r0 r0 ROR 0", 323b8021494Sopenharmony_ci "Condition_eq_r0_r0_ROR_0", 324b8021494Sopenharmony_ci ARRAY_SIZE(kCondition), 325b8021494Sopenharmony_ci kCondition}, 326b8021494Sopenharmony_ci {{ne, r0, r0, ROR, 0}, 327b8021494Sopenharmony_ci "ne r0 r0 ROR 0", 328b8021494Sopenharmony_ci "Condition_ne_r0_r0_ROR_0", 329b8021494Sopenharmony_ci ARRAY_SIZE(kCondition), 330b8021494Sopenharmony_ci kCondition}, 331b8021494Sopenharmony_ci {{cs, r0, r0, ROR, 0}, 332b8021494Sopenharmony_ci "cs r0 r0 ROR 0", 333b8021494Sopenharmony_ci "Condition_cs_r0_r0_ROR_0", 334b8021494Sopenharmony_ci ARRAY_SIZE(kCondition), 335b8021494Sopenharmony_ci kCondition}, 336b8021494Sopenharmony_ci {{cc, r0, r0, ROR, 0}, 337b8021494Sopenharmony_ci "cc r0 r0 ROR 0", 338b8021494Sopenharmony_ci "Condition_cc_r0_r0_ROR_0", 339b8021494Sopenharmony_ci ARRAY_SIZE(kCondition), 340b8021494Sopenharmony_ci kCondition}, 341b8021494Sopenharmony_ci {{mi, r0, r0, ROR, 0}, 342b8021494Sopenharmony_ci "mi r0 r0 ROR 0", 343b8021494Sopenharmony_ci "Condition_mi_r0_r0_ROR_0", 344b8021494Sopenharmony_ci ARRAY_SIZE(kCondition), 345b8021494Sopenharmony_ci kCondition}, 346b8021494Sopenharmony_ci {{pl, r0, r0, ROR, 0}, 347b8021494Sopenharmony_ci "pl r0 r0 ROR 0", 348b8021494Sopenharmony_ci "Condition_pl_r0_r0_ROR_0", 349b8021494Sopenharmony_ci ARRAY_SIZE(kCondition), 350b8021494Sopenharmony_ci kCondition}, 351b8021494Sopenharmony_ci {{vs, r0, r0, ROR, 0}, 352b8021494Sopenharmony_ci "vs r0 r0 ROR 0", 353b8021494Sopenharmony_ci "Condition_vs_r0_r0_ROR_0", 354b8021494Sopenharmony_ci ARRAY_SIZE(kCondition), 355b8021494Sopenharmony_ci kCondition}, 356b8021494Sopenharmony_ci {{vc, r0, r0, ROR, 0}, 357b8021494Sopenharmony_ci "vc r0 r0 ROR 0", 358b8021494Sopenharmony_ci "Condition_vc_r0_r0_ROR_0", 359b8021494Sopenharmony_ci ARRAY_SIZE(kCondition), 360b8021494Sopenharmony_ci kCondition}, 361b8021494Sopenharmony_ci {{hi, r0, r0, ROR, 0}, 362b8021494Sopenharmony_ci "hi r0 r0 ROR 0", 363b8021494Sopenharmony_ci "Condition_hi_r0_r0_ROR_0", 364b8021494Sopenharmony_ci ARRAY_SIZE(kCondition), 365b8021494Sopenharmony_ci kCondition}, 366b8021494Sopenharmony_ci {{ls, r0, r0, ROR, 0}, 367b8021494Sopenharmony_ci "ls r0 r0 ROR 0", 368b8021494Sopenharmony_ci "Condition_ls_r0_r0_ROR_0", 369b8021494Sopenharmony_ci ARRAY_SIZE(kCondition), 370b8021494Sopenharmony_ci kCondition}, 371b8021494Sopenharmony_ci {{ge, r0, r0, ROR, 0}, 372b8021494Sopenharmony_ci "ge r0 r0 ROR 0", 373b8021494Sopenharmony_ci "Condition_ge_r0_r0_ROR_0", 374b8021494Sopenharmony_ci ARRAY_SIZE(kCondition), 375b8021494Sopenharmony_ci kCondition}, 376b8021494Sopenharmony_ci {{lt, r0, r0, ROR, 0}, 377b8021494Sopenharmony_ci "lt r0 r0 ROR 0", 378b8021494Sopenharmony_ci "Condition_lt_r0_r0_ROR_0", 379b8021494Sopenharmony_ci ARRAY_SIZE(kCondition), 380b8021494Sopenharmony_ci kCondition}, 381b8021494Sopenharmony_ci {{gt, r0, r0, ROR, 0}, 382b8021494Sopenharmony_ci "gt r0 r0 ROR 0", 383b8021494Sopenharmony_ci "Condition_gt_r0_r0_ROR_0", 384b8021494Sopenharmony_ci ARRAY_SIZE(kCondition), 385b8021494Sopenharmony_ci kCondition}, 386b8021494Sopenharmony_ci {{le, r0, r0, ROR, 0}, 387b8021494Sopenharmony_ci "le r0 r0 ROR 0", 388b8021494Sopenharmony_ci "Condition_le_r0_r0_ROR_0", 389b8021494Sopenharmony_ci ARRAY_SIZE(kCondition), 390b8021494Sopenharmony_ci kCondition}, 391b8021494Sopenharmony_ci {{al, r0, r0, ROR, 0}, 392b8021494Sopenharmony_ci "al r0 r0 ROR 0", 393b8021494Sopenharmony_ci "Condition_al_r0_r0_ROR_0", 394b8021494Sopenharmony_ci ARRAY_SIZE(kCondition), 395b8021494Sopenharmony_ci kCondition}, 396b8021494Sopenharmony_ci {{al, r0, r0, ROR, 0}, 397b8021494Sopenharmony_ci "al r0 r0 ROR 0", 398b8021494Sopenharmony_ci "RdIsRn_al_r0_r0_ROR_0", 399b8021494Sopenharmony_ci ARRAY_SIZE(kRdIsRn), 400b8021494Sopenharmony_ci kRdIsRn}, 401b8021494Sopenharmony_ci {{al, r1, r1, ROR, 0}, 402b8021494Sopenharmony_ci "al r1 r1 ROR 0", 403b8021494Sopenharmony_ci "RdIsRn_al_r1_r1_ROR_0", 404b8021494Sopenharmony_ci ARRAY_SIZE(kRdIsRn), 405b8021494Sopenharmony_ci kRdIsRn}, 406b8021494Sopenharmony_ci {{al, r2, r2, ROR, 0}, 407b8021494Sopenharmony_ci "al r2 r2 ROR 0", 408b8021494Sopenharmony_ci "RdIsRn_al_r2_r2_ROR_0", 409b8021494Sopenharmony_ci ARRAY_SIZE(kRdIsRn), 410b8021494Sopenharmony_ci kRdIsRn}, 411b8021494Sopenharmony_ci {{al, r3, r3, ROR, 0}, 412b8021494Sopenharmony_ci "al r3 r3 ROR 0", 413b8021494Sopenharmony_ci "RdIsRn_al_r3_r3_ROR_0", 414b8021494Sopenharmony_ci ARRAY_SIZE(kRdIsRn), 415b8021494Sopenharmony_ci kRdIsRn}, 416b8021494Sopenharmony_ci {{al, r4, r4, ROR, 0}, 417b8021494Sopenharmony_ci "al r4 r4 ROR 0", 418b8021494Sopenharmony_ci "RdIsRn_al_r4_r4_ROR_0", 419b8021494Sopenharmony_ci ARRAY_SIZE(kRdIsRn), 420b8021494Sopenharmony_ci kRdIsRn}, 421b8021494Sopenharmony_ci {{al, r5, r5, ROR, 0}, 422b8021494Sopenharmony_ci "al r5 r5 ROR 0", 423b8021494Sopenharmony_ci "RdIsRn_al_r5_r5_ROR_0", 424b8021494Sopenharmony_ci ARRAY_SIZE(kRdIsRn), 425b8021494Sopenharmony_ci kRdIsRn}, 426b8021494Sopenharmony_ci {{al, r6, r6, ROR, 0}, 427b8021494Sopenharmony_ci "al r6 r6 ROR 0", 428b8021494Sopenharmony_ci "RdIsRn_al_r6_r6_ROR_0", 429b8021494Sopenharmony_ci ARRAY_SIZE(kRdIsRn), 430b8021494Sopenharmony_ci kRdIsRn}, 431b8021494Sopenharmony_ci {{al, r7, r7, ROR, 0}, 432b8021494Sopenharmony_ci "al r7 r7 ROR 0", 433b8021494Sopenharmony_ci "RdIsRn_al_r7_r7_ROR_0", 434b8021494Sopenharmony_ci ARRAY_SIZE(kRdIsRn), 435b8021494Sopenharmony_ci kRdIsRn}, 436b8021494Sopenharmony_ci {{al, r8, r8, ROR, 0}, 437b8021494Sopenharmony_ci "al r8 r8 ROR 0", 438b8021494Sopenharmony_ci "RdIsRn_al_r8_r8_ROR_0", 439b8021494Sopenharmony_ci ARRAY_SIZE(kRdIsRn), 440b8021494Sopenharmony_ci kRdIsRn}, 441b8021494Sopenharmony_ci {{al, r9, r9, ROR, 0}, 442b8021494Sopenharmony_ci "al r9 r9 ROR 0", 443b8021494Sopenharmony_ci "RdIsRn_al_r9_r9_ROR_0", 444b8021494Sopenharmony_ci ARRAY_SIZE(kRdIsRn), 445b8021494Sopenharmony_ci kRdIsRn}, 446b8021494Sopenharmony_ci {{al, r10, r10, ROR, 0}, 447b8021494Sopenharmony_ci "al r10 r10 ROR 0", 448b8021494Sopenharmony_ci "RdIsRn_al_r10_r10_ROR_0", 449b8021494Sopenharmony_ci ARRAY_SIZE(kRdIsRn), 450b8021494Sopenharmony_ci kRdIsRn}, 451b8021494Sopenharmony_ci {{al, r11, r11, ROR, 0}, 452b8021494Sopenharmony_ci "al r11 r11 ROR 0", 453b8021494Sopenharmony_ci "RdIsRn_al_r11_r11_ROR_0", 454b8021494Sopenharmony_ci ARRAY_SIZE(kRdIsRn), 455b8021494Sopenharmony_ci kRdIsRn}, 456b8021494Sopenharmony_ci {{al, r12, r12, ROR, 0}, 457b8021494Sopenharmony_ci "al r12 r12 ROR 0", 458b8021494Sopenharmony_ci "RdIsRn_al_r12_r12_ROR_0", 459b8021494Sopenharmony_ci ARRAY_SIZE(kRdIsRn), 460b8021494Sopenharmony_ci kRdIsRn}, 461b8021494Sopenharmony_ci {{al, r14, r14, ROR, 0}, 462b8021494Sopenharmony_ci "al r14 r14 ROR 0", 463b8021494Sopenharmony_ci "RdIsRn_al_r14_r14_ROR_0", 464b8021494Sopenharmony_ci ARRAY_SIZE(kRdIsRn), 465b8021494Sopenharmony_ci kRdIsRn}, 466b8021494Sopenharmony_ci {{al, r1, r8, ROR, 0}, 467b8021494Sopenharmony_ci "al r1 r8 ROR 0", 468b8021494Sopenharmony_ci "RdIsNotRn_al_r1_r8_ROR_0", 469b8021494Sopenharmony_ci ARRAY_SIZE(kRdIsNotRn), 470b8021494Sopenharmony_ci kRdIsNotRn}, 471b8021494Sopenharmony_ci {{al, r7, r4, ROR, 0}, 472b8021494Sopenharmony_ci "al r7 r4 ROR 0", 473b8021494Sopenharmony_ci "RdIsNotRn_al_r7_r4_ROR_0", 474b8021494Sopenharmony_ci ARRAY_SIZE(kRdIsNotRn), 475b8021494Sopenharmony_ci kRdIsNotRn}, 476b8021494Sopenharmony_ci {{al, r14, r10, ROR, 0}, 477b8021494Sopenharmony_ci "al r14 r10 ROR 0", 478b8021494Sopenharmony_ci "RdIsNotRn_al_r14_r10_ROR_0", 479b8021494Sopenharmony_ci ARRAY_SIZE(kRdIsNotRn), 480b8021494Sopenharmony_ci kRdIsNotRn}, 481b8021494Sopenharmony_ci {{al, r10, r6, ROR, 0}, 482b8021494Sopenharmony_ci "al r10 r6 ROR 0", 483b8021494Sopenharmony_ci "RdIsNotRn_al_r10_r6_ROR_0", 484b8021494Sopenharmony_ci ARRAY_SIZE(kRdIsNotRn), 485b8021494Sopenharmony_ci kRdIsNotRn}, 486b8021494Sopenharmony_ci {{al, r6, r5, ROR, 0}, 487b8021494Sopenharmony_ci "al r6 r5 ROR 0", 488b8021494Sopenharmony_ci "RdIsNotRn_al_r6_r5_ROR_0", 489b8021494Sopenharmony_ci ARRAY_SIZE(kRdIsNotRn), 490b8021494Sopenharmony_ci kRdIsNotRn}, 491b8021494Sopenharmony_ci {{al, r12, r2, ROR, 0}, 492b8021494Sopenharmony_ci "al r12 r2 ROR 0", 493b8021494Sopenharmony_ci "RdIsNotRn_al_r12_r2_ROR_0", 494b8021494Sopenharmony_ci ARRAY_SIZE(kRdIsNotRn), 495b8021494Sopenharmony_ci kRdIsNotRn}, 496b8021494Sopenharmony_ci {{al, r0, r11, ROR, 0}, 497b8021494Sopenharmony_ci "al r0 r11 ROR 0", 498b8021494Sopenharmony_ci "RdIsNotRn_al_r0_r11_ROR_0", 499b8021494Sopenharmony_ci ARRAY_SIZE(kRdIsNotRn), 500b8021494Sopenharmony_ci kRdIsNotRn}, 501b8021494Sopenharmony_ci {{al, r10, r14, ROR, 0}, 502b8021494Sopenharmony_ci "al r10 r14 ROR 0", 503b8021494Sopenharmony_ci "RdIsNotRn_al_r10_r14_ROR_0", 504b8021494Sopenharmony_ci ARRAY_SIZE(kRdIsNotRn), 505b8021494Sopenharmony_ci kRdIsNotRn}, 506b8021494Sopenharmony_ci {{al, r0, r5, ROR, 0}, 507b8021494Sopenharmony_ci "al r0 r5 ROR 0", 508b8021494Sopenharmony_ci "RdIsNotRn_al_r0_r5_ROR_0", 509b8021494Sopenharmony_ci ARRAY_SIZE(kRdIsNotRn), 510b8021494Sopenharmony_ci kRdIsNotRn}, 511b8021494Sopenharmony_ci {{al, r0, r3, ROR, 0}, 512b8021494Sopenharmony_ci "al r0 r3 ROR 0", 513b8021494Sopenharmony_ci "RdIsNotRn_al_r0_r3_ROR_0", 514b8021494Sopenharmony_ci ARRAY_SIZE(kRdIsNotRn), 515b8021494Sopenharmony_ci kRdIsNotRn}, 516b8021494Sopenharmony_ci {{al, r0, r1, ROR, 0}, 517b8021494Sopenharmony_ci "al r0 r1 ROR 0", 518b8021494Sopenharmony_ci "Rotations_al_r0_r1_ROR_0", 519b8021494Sopenharmony_ci ARRAY_SIZE(kRotations), 520b8021494Sopenharmony_ci kRotations}, 521b8021494Sopenharmony_ci {{al, r0, r1, ROR, 8}, 522b8021494Sopenharmony_ci "al r0 r1 ROR 8", 523b8021494Sopenharmony_ci "Rotations_al_r0_r1_ROR_8", 524b8021494Sopenharmony_ci ARRAY_SIZE(kRotations), 525b8021494Sopenharmony_ci kRotations}, 526b8021494Sopenharmony_ci {{al, r0, r1, ROR, 16}, 527b8021494Sopenharmony_ci "al r0 r1 ROR 16", 528b8021494Sopenharmony_ci "Rotations_al_r0_r1_ROR_16", 529b8021494Sopenharmony_ci ARRAY_SIZE(kRotations), 530b8021494Sopenharmony_ci kRotations}, 531b8021494Sopenharmony_ci {{al, r0, r1, ROR, 24}, 532b8021494Sopenharmony_ci "al r0 r1 ROR 24", 533b8021494Sopenharmony_ci "Rotations_al_r0_r1_ROR_24", 534b8021494Sopenharmony_ci ARRAY_SIZE(kRotations), 535b8021494Sopenharmony_ci kRotations}}; 536b8021494Sopenharmony_ci 537b8021494Sopenharmony_ci// We record all inputs to the instructions as outputs. This way, we also check 538b8021494Sopenharmony_ci// that what shouldn't change didn't change. 539b8021494Sopenharmony_cistruct TestResult { 540b8021494Sopenharmony_ci size_t output_size; 541b8021494Sopenharmony_ci const Inputs* outputs; 542b8021494Sopenharmony_ci}; 543b8021494Sopenharmony_ci 544b8021494Sopenharmony_ci// These headers each contain an array of `TestResult` with the reference output 545b8021494Sopenharmony_ci// values. The reference arrays are names `kReference{mnemonic}`. 546b8021494Sopenharmony_ci#include "aarch32/traces/simulator-cond-rd-operand-rn-ror-amount-sxtb-t32.h" 547b8021494Sopenharmony_ci#include "aarch32/traces/simulator-cond-rd-operand-rn-ror-amount-sxtb16-t32.h" 548b8021494Sopenharmony_ci#include "aarch32/traces/simulator-cond-rd-operand-rn-ror-amount-sxth-t32.h" 549b8021494Sopenharmony_ci#include "aarch32/traces/simulator-cond-rd-operand-rn-ror-amount-uxtb-t32.h" 550b8021494Sopenharmony_ci#include "aarch32/traces/simulator-cond-rd-operand-rn-ror-amount-uxtb16-t32.h" 551b8021494Sopenharmony_ci#include "aarch32/traces/simulator-cond-rd-operand-rn-ror-amount-uxth-t32.h" 552b8021494Sopenharmony_ci 553b8021494Sopenharmony_ci 554b8021494Sopenharmony_ci// The maximum number of errors to report in detail for each test. 555b8021494Sopenharmony_ciconst unsigned kErrorReportLimit = 8; 556b8021494Sopenharmony_ci 557b8021494Sopenharmony_citypedef void (MacroAssembler::*Fn)(Condition cond, 558b8021494Sopenharmony_ci Register rd, 559b8021494Sopenharmony_ci const Operand& op); 560b8021494Sopenharmony_ci 561b8021494Sopenharmony_civoid TestHelper(Fn instruction, 562b8021494Sopenharmony_ci const char* mnemonic, 563b8021494Sopenharmony_ci const TestResult reference[]) { 564b8021494Sopenharmony_ci SETUP(); 565b8021494Sopenharmony_ci masm.UseT32(); 566b8021494Sopenharmony_ci START(); 567b8021494Sopenharmony_ci 568b8021494Sopenharmony_ci // Data to compare to `reference`. 569b8021494Sopenharmony_ci TestResult* results[ARRAY_SIZE(kTests)]; 570b8021494Sopenharmony_ci 571b8021494Sopenharmony_ci // Test cases for memory bound instructions may allocate a buffer and save its 572b8021494Sopenharmony_ci // address in this array. 573b8021494Sopenharmony_ci byte* scratch_memory_buffers[ARRAY_SIZE(kTests)]; 574b8021494Sopenharmony_ci 575b8021494Sopenharmony_ci // Generate a loop for each element in `kTests`. Each loop tests one specific 576b8021494Sopenharmony_ci // instruction. 577b8021494Sopenharmony_ci for (unsigned i = 0; i < ARRAY_SIZE(kTests); i++) { 578b8021494Sopenharmony_ci // Allocate results on the heap for this test. 579b8021494Sopenharmony_ci results[i] = new TestResult; 580b8021494Sopenharmony_ci results[i]->outputs = new Inputs[kTests[i].input_size]; 581b8021494Sopenharmony_ci results[i]->output_size = kTests[i].input_size; 582b8021494Sopenharmony_ci 583b8021494Sopenharmony_ci size_t input_stride = sizeof(kTests[i].inputs[0]) * kTests[i].input_size; 584b8021494Sopenharmony_ci VIXL_ASSERT(IsUint32(input_stride)); 585b8021494Sopenharmony_ci 586b8021494Sopenharmony_ci scratch_memory_buffers[i] = NULL; 587b8021494Sopenharmony_ci 588b8021494Sopenharmony_ci Label loop; 589b8021494Sopenharmony_ci UseScratchRegisterScope scratch_registers(&masm); 590b8021494Sopenharmony_ci // Include all registers from r0 ro r12. 591b8021494Sopenharmony_ci scratch_registers.Include(RegisterList(0x1fff)); 592b8021494Sopenharmony_ci 593b8021494Sopenharmony_ci // Values to pass to the macro-assembler. 594b8021494Sopenharmony_ci Condition cond = kTests[i].operands.cond; 595b8021494Sopenharmony_ci Register rd = kTests[i].operands.rd; 596b8021494Sopenharmony_ci Register rn = kTests[i].operands.rn; 597b8021494Sopenharmony_ci ShiftType ror = kTests[i].operands.ror; 598b8021494Sopenharmony_ci uint32_t amount = kTests[i].operands.amount; 599b8021494Sopenharmony_ci Operand op(rn, ror, amount); 600b8021494Sopenharmony_ci scratch_registers.Exclude(rd); 601b8021494Sopenharmony_ci scratch_registers.Exclude(rn); 602b8021494Sopenharmony_ci 603b8021494Sopenharmony_ci // Allocate reserved registers for our own use. 604b8021494Sopenharmony_ci Register input_ptr = scratch_registers.Acquire(); 605b8021494Sopenharmony_ci Register input_end = scratch_registers.Acquire(); 606b8021494Sopenharmony_ci Register result_ptr = scratch_registers.Acquire(); 607b8021494Sopenharmony_ci 608b8021494Sopenharmony_ci // Initialize `input_ptr` to the first element and `input_end` the address 609b8021494Sopenharmony_ci // after the array. 610b8021494Sopenharmony_ci __ Mov(input_ptr, Operand::From(kTests[i].inputs)); 611b8021494Sopenharmony_ci __ Add(input_end, input_ptr, static_cast<uint32_t>(input_stride)); 612b8021494Sopenharmony_ci __ Mov(result_ptr, Operand::From(results[i]->outputs)); 613b8021494Sopenharmony_ci __ Bind(&loop); 614b8021494Sopenharmony_ci 615b8021494Sopenharmony_ci { 616b8021494Sopenharmony_ci UseScratchRegisterScope temp_registers(&masm); 617b8021494Sopenharmony_ci Register nzcv_bits = temp_registers.Acquire(); 618b8021494Sopenharmony_ci Register saved_q_bit = temp_registers.Acquire(); 619b8021494Sopenharmony_ci // Save the `Q` bit flag. 620b8021494Sopenharmony_ci __ Mrs(saved_q_bit, APSR); 621b8021494Sopenharmony_ci __ And(saved_q_bit, saved_q_bit, QFlag); 622b8021494Sopenharmony_ci // Set the `NZCV` and `Q` flags together. 623b8021494Sopenharmony_ci __ Ldr(nzcv_bits, MemOperand(input_ptr, offsetof(Inputs, apsr))); 624b8021494Sopenharmony_ci __ Orr(nzcv_bits, nzcv_bits, saved_q_bit); 625b8021494Sopenharmony_ci __ Msr(APSR_nzcvq, nzcv_bits); 626b8021494Sopenharmony_ci } 627b8021494Sopenharmony_ci __ Ldr(rd, MemOperand(input_ptr, offsetof(Inputs, rd))); 628b8021494Sopenharmony_ci __ Ldr(rn, MemOperand(input_ptr, offsetof(Inputs, rn))); 629b8021494Sopenharmony_ci 630b8021494Sopenharmony_ci (masm.*instruction)(cond, rd, op); 631b8021494Sopenharmony_ci 632b8021494Sopenharmony_ci { 633b8021494Sopenharmony_ci UseScratchRegisterScope temp_registers(&masm); 634b8021494Sopenharmony_ci Register nzcv_bits = temp_registers.Acquire(); 635b8021494Sopenharmony_ci __ Mrs(nzcv_bits, APSR); 636b8021494Sopenharmony_ci // Only record the NZCV bits. 637b8021494Sopenharmony_ci __ And(nzcv_bits, nzcv_bits, NZCVFlag); 638b8021494Sopenharmony_ci __ Str(nzcv_bits, MemOperand(result_ptr, offsetof(Inputs, apsr))); 639b8021494Sopenharmony_ci } 640b8021494Sopenharmony_ci __ Str(rd, MemOperand(result_ptr, offsetof(Inputs, rd))); 641b8021494Sopenharmony_ci __ Str(rn, MemOperand(result_ptr, offsetof(Inputs, rn))); 642b8021494Sopenharmony_ci 643b8021494Sopenharmony_ci // Advance the result pointer. 644b8021494Sopenharmony_ci __ Add(result_ptr, result_ptr, Operand::From(sizeof(kTests[i].inputs[0]))); 645b8021494Sopenharmony_ci // Loop back until `input_ptr` is lower than `input_base`. 646b8021494Sopenharmony_ci __ Add(input_ptr, input_ptr, Operand::From(sizeof(kTests[i].inputs[0]))); 647b8021494Sopenharmony_ci __ Cmp(input_ptr, input_end); 648b8021494Sopenharmony_ci __ B(ne, &loop); 649b8021494Sopenharmony_ci } 650b8021494Sopenharmony_ci 651b8021494Sopenharmony_ci END(); 652b8021494Sopenharmony_ci 653b8021494Sopenharmony_ci RUN(); 654b8021494Sopenharmony_ci 655b8021494Sopenharmony_ci if (Test::generate_test_trace()) { 656b8021494Sopenharmony_ci // Print the results. 657b8021494Sopenharmony_ci for (size_t i = 0; i < ARRAY_SIZE(kTests); i++) { 658b8021494Sopenharmony_ci printf("const Inputs kOutputs_%s_%s[] = {\n", 659b8021494Sopenharmony_ci mnemonic, 660b8021494Sopenharmony_ci kTests[i].identifier); 661b8021494Sopenharmony_ci for (size_t j = 0; j < results[i]->output_size; j++) { 662b8021494Sopenharmony_ci printf(" { "); 663b8021494Sopenharmony_ci printf("0x%08" PRIx32, results[i]->outputs[j].apsr); 664b8021494Sopenharmony_ci printf(", "); 665b8021494Sopenharmony_ci printf("0x%08" PRIx32, results[i]->outputs[j].rd); 666b8021494Sopenharmony_ci printf(", "); 667b8021494Sopenharmony_ci printf("0x%08" PRIx32, results[i]->outputs[j].rn); 668b8021494Sopenharmony_ci printf(" },\n"); 669b8021494Sopenharmony_ci } 670b8021494Sopenharmony_ci printf("};\n"); 671b8021494Sopenharmony_ci } 672b8021494Sopenharmony_ci printf("const TestResult kReference%s[] = {\n", mnemonic); 673b8021494Sopenharmony_ci for (size_t i = 0; i < ARRAY_SIZE(kTests); i++) { 674b8021494Sopenharmony_ci printf(" {\n"); 675b8021494Sopenharmony_ci printf(" ARRAY_SIZE(kOutputs_%s_%s),\n", 676b8021494Sopenharmony_ci mnemonic, 677b8021494Sopenharmony_ci kTests[i].identifier); 678b8021494Sopenharmony_ci printf(" kOutputs_%s_%s,\n", mnemonic, kTests[i].identifier); 679b8021494Sopenharmony_ci printf(" },\n"); 680b8021494Sopenharmony_ci } 681b8021494Sopenharmony_ci printf("};\n"); 682b8021494Sopenharmony_ci } else if (kCheckSimulatorTestResults) { 683b8021494Sopenharmony_ci // Check the results. 684b8021494Sopenharmony_ci unsigned total_error_count = 0; 685b8021494Sopenharmony_ci for (size_t i = 0; i < ARRAY_SIZE(kTests); i++) { 686b8021494Sopenharmony_ci bool instruction_has_errors = false; 687b8021494Sopenharmony_ci for (size_t j = 0; j < kTests[i].input_size; j++) { 688b8021494Sopenharmony_ci uint32_t apsr = results[i]->outputs[j].apsr; 689b8021494Sopenharmony_ci uint32_t rd = results[i]->outputs[j].rd; 690b8021494Sopenharmony_ci uint32_t rn = results[i]->outputs[j].rn; 691b8021494Sopenharmony_ci uint32_t apsr_input = kTests[i].inputs[j].apsr; 692b8021494Sopenharmony_ci uint32_t rd_input = kTests[i].inputs[j].rd; 693b8021494Sopenharmony_ci uint32_t rn_input = kTests[i].inputs[j].rn; 694b8021494Sopenharmony_ci uint32_t apsr_ref = reference[i].outputs[j].apsr; 695b8021494Sopenharmony_ci uint32_t rd_ref = reference[i].outputs[j].rd; 696b8021494Sopenharmony_ci uint32_t rn_ref = reference[i].outputs[j].rn; 697b8021494Sopenharmony_ci 698b8021494Sopenharmony_ci if (((apsr != apsr_ref) || (rd != rd_ref) || (rn != rn_ref)) && 699b8021494Sopenharmony_ci (++total_error_count <= kErrorReportLimit)) { 700b8021494Sopenharmony_ci // Print the instruction once even if it triggered multiple failures. 701b8021494Sopenharmony_ci if (!instruction_has_errors) { 702b8021494Sopenharmony_ci printf("Error(s) when testing \"%s %s\":\n", 703b8021494Sopenharmony_ci mnemonic, 704b8021494Sopenharmony_ci kTests[i].operands_description); 705b8021494Sopenharmony_ci instruction_has_errors = true; 706b8021494Sopenharmony_ci } 707b8021494Sopenharmony_ci // Print subsequent errors. 708b8021494Sopenharmony_ci printf(" Input: "); 709b8021494Sopenharmony_ci printf("0x%08" PRIx32, apsr_input); 710b8021494Sopenharmony_ci printf(", "); 711b8021494Sopenharmony_ci printf("0x%08" PRIx32, rd_input); 712b8021494Sopenharmony_ci printf(", "); 713b8021494Sopenharmony_ci printf("0x%08" PRIx32, rn_input); 714b8021494Sopenharmony_ci printf("\n"); 715b8021494Sopenharmony_ci printf(" Expected: "); 716b8021494Sopenharmony_ci printf("0x%08" PRIx32, apsr_ref); 717b8021494Sopenharmony_ci printf(", "); 718b8021494Sopenharmony_ci printf("0x%08" PRIx32, rd_ref); 719b8021494Sopenharmony_ci printf(", "); 720b8021494Sopenharmony_ci printf("0x%08" PRIx32, rn_ref); 721b8021494Sopenharmony_ci printf("\n"); 722b8021494Sopenharmony_ci printf(" Found: "); 723b8021494Sopenharmony_ci printf("0x%08" PRIx32, apsr); 724b8021494Sopenharmony_ci printf(", "); 725b8021494Sopenharmony_ci printf("0x%08" PRIx32, rd); 726b8021494Sopenharmony_ci printf(", "); 727b8021494Sopenharmony_ci printf("0x%08" PRIx32, rn); 728b8021494Sopenharmony_ci printf("\n\n"); 729b8021494Sopenharmony_ci } 730b8021494Sopenharmony_ci } 731b8021494Sopenharmony_ci } 732b8021494Sopenharmony_ci 733b8021494Sopenharmony_ci if (total_error_count > kErrorReportLimit) { 734b8021494Sopenharmony_ci printf("%u other errors follow.\n", 735b8021494Sopenharmony_ci total_error_count - kErrorReportLimit); 736b8021494Sopenharmony_ci } 737b8021494Sopenharmony_ci VIXL_CHECK(total_error_count == 0); 738b8021494Sopenharmony_ci } else { 739b8021494Sopenharmony_ci VIXL_WARNING("Assembled the code, but did not run anything.\n"); 740b8021494Sopenharmony_ci } 741b8021494Sopenharmony_ci 742b8021494Sopenharmony_ci for (size_t i = 0; i < ARRAY_SIZE(kTests); i++) { 743b8021494Sopenharmony_ci delete[] results[i]->outputs; 744b8021494Sopenharmony_ci delete results[i]; 745b8021494Sopenharmony_ci delete[] scratch_memory_buffers[i]; 746b8021494Sopenharmony_ci } 747b8021494Sopenharmony_ci} 748b8021494Sopenharmony_ci 749b8021494Sopenharmony_ci// Instantiate tests for each instruction in the list. 750b8021494Sopenharmony_ci// TODO: Remove this limitation by having a sandboxing mechanism. 751b8021494Sopenharmony_ci#if defined(VIXL_HOST_POINTER_32) 752b8021494Sopenharmony_ci#define TEST(mnemonic) \ 753b8021494Sopenharmony_ci void Test_##mnemonic() { \ 754b8021494Sopenharmony_ci TestHelper(&MacroAssembler::mnemonic, #mnemonic, kReference##mnemonic); \ 755b8021494Sopenharmony_ci } \ 756b8021494Sopenharmony_ci Test test_##mnemonic( \ 757b8021494Sopenharmony_ci "AARCH32_SIMULATOR_COND_RD_OPERAND_RN_ROR_AMOUNT_" #mnemonic "_T32", \ 758b8021494Sopenharmony_ci &Test_##mnemonic); 759b8021494Sopenharmony_ci#else 760b8021494Sopenharmony_ci#define TEST(mnemonic) \ 761b8021494Sopenharmony_ci void Test_##mnemonic() { \ 762b8021494Sopenharmony_ci VIXL_WARNING("This test can only run on a 32-bit host.\n"); \ 763b8021494Sopenharmony_ci USE(TestHelper); \ 764b8021494Sopenharmony_ci } \ 765b8021494Sopenharmony_ci Test test_##mnemonic( \ 766b8021494Sopenharmony_ci "AARCH32_SIMULATOR_COND_RD_OPERAND_RN_ROR_AMOUNT_" #mnemonic "_T32", \ 767b8021494Sopenharmony_ci &Test_##mnemonic); 768b8021494Sopenharmony_ci#endif 769b8021494Sopenharmony_ci 770b8021494Sopenharmony_ciFOREACH_INSTRUCTION(TEST) 771b8021494Sopenharmony_ci#undef TEST 772b8021494Sopenharmony_ci 773b8021494Sopenharmony_ci} // namespace 774b8021494Sopenharmony_ci#endif 775b8021494Sopenharmony_ci 776b8021494Sopenharmony_ci} // namespace aarch32 777b8021494Sopenharmony_ci} // namespace vixl 778