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| 1 // Copyright 2012 the V8 project authors. All rights reserved. | 1 // Copyright 2012 the V8 project authors. All rights reserved. |
| 2 // Redistribution and use in source and binary forms, with or without | 2 // Redistribution and use in source and binary forms, with or without |
| 3 // modification, are permitted provided that the following conditions are | 3 // modification, are permitted provided that the following conditions are |
| 4 // met: | 4 // met: |
| 5 // | 5 // |
| 6 // * Redistributions of source code must retain the above copyright | 6 // * Redistributions of source code must retain the above copyright |
| 7 // notice, this list of conditions and the following disclaimer. | 7 // notice, this list of conditions and the following disclaimer. |
| 8 // * Redistributions in binary form must reproduce the above | 8 // * Redistributions in binary form must reproduce the above |
| 9 // copyright notice, this list of conditions and the following | 9 // copyright notice, this list of conditions and the following |
| 10 // disclaimer in the documentation and/or other materials provided | 10 // disclaimer in the documentation and/or other materials provided |
| (...skipping 6573 matching lines...) Expand 10 before | Expand all | Expand 10 after Loading... | |
| 6584 #endif | 6584 #endif |
| 6585 F5 f = FUNCTION_CAST<F5>(code->entry()); | 6585 F5 f = FUNCTION_CAST<F5>(code->entry()); |
| 6586 | 6586 |
| 6587 Object* dummy = CALL_GENERATED_CODE(isolate, f, &t[0], &t[1], 0, 0, 0); | 6587 Object* dummy = CALL_GENERATED_CODE(isolate, f, &t[0], &t[1], 0, 0, 0); |
| 6588 USE(dummy); | 6588 USE(dummy); |
| 6589 | 6589 |
| 6590 CHECK_EQ(0x5555555555555555, t[0].d0); | 6590 CHECK_EQ(0x5555555555555555, t[0].d0); |
| 6591 CHECK_EQ(0x5555555555555555, t[1].d0); | 6591 CHECK_EQ(0x5555555555555555, t[1].d0); |
| 6592 } | 6592 } |
| 6593 | 6593 |
| 6594 typedef union { | |
| 6595 uint8_t b[16]; | |
| 6596 uint16_t h[8]; | |
| 6597 uint32_t w[4]; | |
| 6598 uint64_t d[2]; | |
| 6599 } msa_reg_t; | |
| 6600 | |
| 6601 template <typename T> | |
| 6602 void run_msa_insert(int64_t rs_value, int n, msa_reg_t* w) { | |
| 6603 Isolate* isolate = CcTest::i_isolate(); | |
| 6604 HandleScope scope(isolate); | |
| 6605 | |
| 6606 MacroAssembler assm(isolate, NULL, 0, v8::internal::CodeObjectRequired::kYes); | |
| 6607 CpuFeatureScope fscope(&assm, MIPS_SIMD); | |
| 6608 | |
| 6609 __ li(t0, -1); | |
| 6610 __ li(t1, rs_value); | |
| 6611 __ fill_w(w0, t0); | |
| 6612 | |
| 6613 if (std::is_same<T, int8_t>::value) { | |
| 6614 DCHECK(n < 16); | |
| 6615 __ insert_b(w0, n, t1); | |
| 6616 } else if (std::is_same<T, int16_t>::value) { | |
| 6617 DCHECK(n < 8); | |
| 6618 __ insert_h(w0, n, t1); | |
| 6619 } else if (std::is_same<T, int32_t>::value) { | |
| 6620 DCHECK(n < 4); | |
| 6621 __ insert_w(w0, n, t1); | |
| 6622 } else if (std::is_same<T, int64_t>::value) { | |
| 6623 DCHECK(n < 2); | |
| 6624 __ insert_d(w0, n, t1); | |
| 6625 } else { | |
| 6626 UNREACHABLE(); | |
| 6627 } | |
| 6628 | |
| 6629 __ copy_u_w(t2, w0, 0); | |
| 6630 __ sw(t2, MemOperand(a0, 0)); | |
| 6631 __ copy_u_w(t2, w0, 1); | |
| 6632 __ sw(t2, MemOperand(a0, 4)); | |
| 6633 __ copy_u_w(t2, w0, 2); | |
| 6634 __ sw(t2, MemOperand(a0, 8)); | |
| 6635 __ copy_u_w(t2, w0, 3); | |
| 6636 __ sw(t2, MemOperand(a0, 12)); | |
| 6637 | |
| 6638 __ jr(ra); | |
| 6639 __ nop(); | |
| 6640 | |
| 6641 CodeDesc desc; | |
| 6642 assm.GetCode(&desc); | |
| 6643 Handle<Code> code = isolate->factory()->NewCode( | |
| 6644 desc, Code::ComputeFlags(Code::STUB), Handle<Code>()); | |
| 6645 #ifdef OBJECT_PRINT | |
| 6646 code->Print(std::cout); | |
| 6647 #endif | |
| 6648 F3 f = FUNCTION_CAST<F3>(code->entry()); | |
| 6649 | |
| 6650 (CALL_GENERATED_CODE(isolate, f, w, 0, 0, 0, 0)); | |
| 6651 } | |
| 6652 | |
| 6653 TEST(MSA_insert) { | |
| 6654 if ((kArchVariant != kMips64r6) || !CpuFeatures::IsSupported(MIPS_SIMD)) | |
| 6655 return; | |
| 6656 | |
| 6657 CcTest::InitializeVM(); | |
| 6658 | |
| 6659 struct TestCaseInsert { | |
| 6660 uint64_t input; | |
| 6661 int n; | |
| 6662 uint64_t exp_res_lo; | |
| 6663 uint64_t exp_res_hi; | |
| 6664 }; | |
| 6665 | |
| 6666 struct TestCaseInsert tc_b[] = { | |
| 6667 // input, n, exp_res_lo, exp_res_hi | |
| 6668 {0xa2, 13, 0xffffffffffffffffu, 0xffffa2ffffffffffu}, | |
| 6669 {0x73, 10, 0xffffffffffffffffu, 0xffffffffff73ffffu}, | |
| 6670 {0x3494, 5, 0xffff94ffffffffffu, 0xffffffffffffffffu}, | |
| 6671 {0xa6b8, 1, 0xffffffffffffb8ffu, 0xffffffffffffffffu}}; | |
| 6672 | |
| 6673 for (size_t i = 0; i < sizeof(tc_b) / sizeof(TestCaseInsert); ++i) { | |
| 6674 msa_reg_t res; | |
| 6675 run_msa_insert<int8_t>(tc_b[i].input, tc_b[i].n, &res); | |
| 6676 CHECK_EQ(tc_b[i].exp_res_lo, res.d[0]); | |
| 6677 CHECK_EQ(tc_b[i].exp_res_hi, res.d[1]); | |
| 6678 } | |
| 6679 | |
| 6680 struct TestCaseInsert tc_h[] = { | |
| 6681 // input, n, exp_res_lo, exp_res_hi | |
| 6682 {0x85a2, 7, 0xffffffffffffffffu, 0x85a2ffffffffffffu}, | |
| 6683 {0xe873, 5, 0xffffffffffffffffu, 0xffffffffe873ffffu}, | |
| 6684 {0x3494, 3, 0x3494ffffffffffffu, 0xffffffffffffffffu}, | |
| 6685 {0xa6b8, 1, 0xffffffffa6b8ffffu, 0xffffffffffffffffu}}; | |
| 6686 | |
| 6687 for (size_t i = 0; i < sizeof(tc_h) / sizeof(TestCaseInsert); ++i) { | |
| 6688 msa_reg_t res; | |
| 6689 run_msa_insert<int16_t>(tc_h[i].input, tc_h[i].n, &res); | |
| 6690 CHECK_EQ(tc_h[i].exp_res_lo, res.d[0]); | |
| 6691 CHECK_EQ(tc_h[i].exp_res_hi, res.d[1]); | |
| 6692 } | |
| 6693 | |
| 6694 struct TestCaseInsert tc_w[] = { | |
| 6695 // input, n, exp_res_lo, exp_res_hi | |
| 6696 {0xd2f085a2u, 3, 0xffffffffffffffffu, 0xd2f085a2ffffffffu}, | |
| 6697 {0x4567e873u, 2, 0xffffffffffffffffu, 0xffffffff4567e873u}, | |
| 6698 {0xacdb3494u, 1, 0xacdb3494ffffffffu, 0xffffffffffffffffu}, | |
| 6699 {0x89aba6b8u, 0, 0xffffffff89aba6b8u, 0xffffffffffffffffu}}; | |
| 6700 | |
| 6701 for (size_t i = 0; i < sizeof(tc_w) / sizeof(TestCaseInsert); ++i) { | |
| 6702 msa_reg_t res; | |
| 6703 run_msa_insert<int32_t>(tc_w[i].input, tc_w[i].n, &res); | |
| 6704 CHECK_EQ(tc_w[i].exp_res_lo, res.d[0]); | |
| 6705 CHECK_EQ(tc_w[i].exp_res_hi, res.d[1]); | |
| 6706 } | |
| 6707 | |
| 6708 struct TestCaseInsert tc_d[] = { | |
| 6709 // input, n, exp_res_lo, exp_res_hi | |
| 6710 {0xf35862e13e38f8b0, 1, 0xffffffffffffffffu, 0xf35862e13e38f8b0}, | |
| 6711 {0x4f41ffdef2bfe636, 0, 0x4f41ffdef2bfe636, 0xffffffffffffffffu}}; | |
| 6712 | |
| 6713 for (size_t i = 0; i < sizeof(tc_d) / sizeof(TestCaseInsert); ++i) { | |
| 6714 msa_reg_t res; | |
| 6715 run_msa_insert<int64_t>(tc_d[i].input, tc_d[i].n, &res); | |
| 6716 CHECK_EQ(tc_d[i].exp_res_lo, res.d[0]); | |
| 6717 CHECK_EQ(tc_d[i].exp_res_hi, res.d[1]); | |
| 6718 } | |
| 6719 } | |
| 6720 | |
| 6721 enum MsaI8Opcode { | |
| 6722 kANDI, | |
|
Ilija.Pavlovic1
2017/05/29 07:31:21
Move in constants-mips64.h?
dusan.simicic
2017/05/29 16:32:15
Same as for mips32.
| |
| 6723 kORI, | |
| 6724 kNORI, | |
| 6725 kXORI, | |
| 6726 kBMNZI, | |
| 6727 kBMZI, | |
| 6728 kBSELI, | |
| 6729 kSHF_B, | |
| 6730 kSHF_H, | |
| 6731 kSHF_W | |
| 6732 }; | |
| 6733 | |
| 6734 struct ExpResShf { | |
| 6735 uint8_t i8; | |
| 6736 uint64_t lo; | |
| 6737 uint64_t hi; | |
| 6738 }; | |
| 6739 | |
| 6740 void run_msa_i8(int opcode, uint64_t ws_lo, uint64_t ws_hi, uint8_t i8) { | |
| 6741 Isolate* isolate = CcTest::i_isolate(); | |
| 6742 HandleScope scope(isolate); | |
| 6743 | |
| 6744 MacroAssembler assm(isolate, NULL, 0, v8::internal::CodeObjectRequired::kYes); | |
| 6745 CpuFeatureScope fscope(&assm, MIPS_SIMD); | |
| 6746 msa_reg_t res; | |
| 6747 uint64_t wd_lo = 0xf35862e13e38f8b0; | |
| 6748 uint64_t wd_hi = 0x4f41ffdef2bfe636; | |
| 6749 | |
| 6750 #define LOAD_W_REG(lo, hi, w_reg) \ | |
| 6751 __ li(t0, lo); \ | |
| 6752 __ li(t1, hi); \ | |
| 6753 __ insert_d(w_reg, 0, t0); \ | |
| 6754 __ insert_d(w_reg, 1, t1); | |
| 6755 | |
| 6756 LOAD_W_REG(ws_lo, ws_hi, w0) | |
| 6757 | |
| 6758 switch (opcode) { | |
| 6759 case kANDI: | |
| 6760 __ andi_b(w2, w0, i8); | |
| 6761 break; | |
| 6762 case kORI: | |
| 6763 __ ori_b(w2, w0, i8); | |
| 6764 break; | |
| 6765 case kNORI: | |
| 6766 __ nori_b(w2, w0, i8); | |
| 6767 break; | |
| 6768 case kXORI: | |
| 6769 __ xori_b(w2, w0, i8); | |
| 6770 break; | |
| 6771 case kBMNZI: | |
| 6772 LOAD_W_REG(wd_lo, wd_hi, w2); | |
| 6773 __ bmnzi_b(w2, w0, i8); | |
| 6774 break; | |
| 6775 case kBMZI: | |
| 6776 LOAD_W_REG(wd_lo, wd_hi, w2); | |
| 6777 __ bmzi_b(w2, w0, i8); | |
| 6778 break; | |
| 6779 case kBSELI: | |
| 6780 LOAD_W_REG(wd_lo, wd_hi, w2); | |
| 6781 __ bseli_b(w2, w0, i8); | |
| 6782 break; | |
| 6783 case kSHF_B: | |
| 6784 __ shf_b(w2, w0, i8); | |
| 6785 break; | |
| 6786 case kSHF_H: | |
| 6787 __ shf_h(w2, w0, i8); | |
| 6788 break; | |
| 6789 case kSHF_W: | |
| 6790 __ shf_w(w2, w0, i8); | |
| 6791 break; | |
| 6792 default: | |
| 6793 UNREACHABLE(); | |
| 6794 } | |
| 6795 | |
| 6796 __ copy_u_w(t2, w2, 0); | |
| 6797 __ sw(t2, MemOperand(a0, 0)); | |
| 6798 __ copy_u_w(t2, w2, 1); | |
| 6799 __ sw(t2, MemOperand(a0, 4)); | |
| 6800 __ copy_u_w(t2, w2, 2); | |
| 6801 __ sw(t2, MemOperand(a0, 8)); | |
| 6802 __ copy_u_w(t2, w2, 3); | |
| 6803 __ sw(t2, MemOperand(a0, 12)); | |
| 6804 | |
| 6805 __ jr(ra); | |
| 6806 __ nop(); | |
| 6807 | |
| 6808 #undef LOAD_W_REG | |
| 6809 | |
| 6810 CodeDesc desc; | |
| 6811 assm.GetCode(&desc); | |
| 6812 Handle<Code> code = isolate->factory()->NewCode( | |
| 6813 desc, Code::ComputeFlags(Code::STUB), Handle<Code>()); | |
| 6814 #ifdef OBJECT_PRINT | |
| 6815 code->Print(std::cout); | |
| 6816 #endif | |
| 6817 F3 f = FUNCTION_CAST<F3>(code->entry()); | |
| 6818 | |
| 6819 (CALL_GENERATED_CODE(isolate, f, &res, 0, 0, 0, 0)); | |
| 6820 | |
| 6821 uint64_t mask = i8 * 0x0101010101010101ull; | |
| 6822 switch (opcode) { | |
| 6823 case kANDI: | |
| 6824 CHECK_EQ(ws_lo & mask, res.d[0]); | |
| 6825 CHECK_EQ(ws_hi & mask, res.d[1]); | |
| 6826 break; | |
| 6827 case kORI: | |
| 6828 CHECK_EQ(ws_lo | mask, res.d[0]); | |
| 6829 CHECK_EQ(ws_hi | mask, res.d[1]); | |
| 6830 break; | |
| 6831 case kNORI: | |
| 6832 CHECK_EQ(~(ws_lo | mask), res.d[0]); | |
| 6833 CHECK_EQ(~(ws_hi | mask), res.d[1]); | |
| 6834 break; | |
| 6835 case kXORI: | |
| 6836 CHECK_EQ(ws_lo ^ mask, res.d[0]); | |
| 6837 CHECK_EQ(ws_hi ^ mask, res.d[1]); | |
| 6838 break; | |
| 6839 case kBMNZI: | |
| 6840 CHECK_EQ((ws_lo & mask) | (wd_lo & ~mask), res.d[0]); | |
| 6841 CHECK_EQ((ws_hi & mask) | (wd_hi & ~mask), res.d[1]); | |
| 6842 break; | |
| 6843 case kBMZI: | |
| 6844 CHECK_EQ((ws_lo & ~mask) | (wd_lo & mask), res.d[0]); | |
| 6845 CHECK_EQ((ws_hi & ~mask) | (wd_hi & mask), res.d[1]); | |
| 6846 break; | |
| 6847 case kBSELI: | |
| 6848 CHECK_EQ((ws_lo & ~wd_lo) | (mask & wd_lo), res.d[0]); | |
| 6849 CHECK_EQ((ws_hi & ~wd_hi) | (mask & wd_hi), res.d[1]); | |
| 6850 break; | |
| 6851 case kSHF_B: { | |
| 6852 struct ExpResShf exp_b[] = { | |
| 6853 // i8, exp_lo, exp_hi | |
| 6854 {0xffu, 0x11111111b9b9b9b9, 0xf7f7f7f7c8c8c8c8}, | |
| 6855 {0x0u, 0x62626262dfdfdfdf, 0xd6d6d6d6c8c8c8c8}, | |
| 6856 {0xe4u, 0xf35862e13e38f8b0, 0x4f41ffdef2bfe636}, | |
| 6857 {0x1bu, 0x1b756911c3d9a7b9, 0xae94a5f79c8aefc8}, | |
| 6858 {0xb1u, 0x662b6253e8c4df12, 0x0d3ad6803f8bc88b}, | |
| 6859 {0x4eu, 0x62e1f358f8b03e38, 0xffde4f41e636f2bf}, | |
| 6860 {0x27u, 0x1b697511c3a7d9b9, 0xaea594f79cef8ac8}}; | |
| 6861 for (size_t i = 0; i < sizeof(exp_b) / sizeof(ExpResShf); ++i) { | |
| 6862 if (exp_b[i].i8 == i8) { | |
| 6863 CHECK_EQ(exp_b[i].lo, res.d[0]); | |
| 6864 CHECK_EQ(exp_b[i].hi, res.d[1]); | |
| 6865 } | |
| 6866 } | |
| 6867 } break; | |
| 6868 case kSHF_H: { | |
| 6869 struct ExpResShf exp_h[] = { | |
| 6870 // i8, exp_lo, exp_hi | |
| 6871 {0xffu, 0x1169116911691169, 0xf7a5f7a5f7a5f7a5}, | |
| 6872 {0x0u, 0x12df12df12df12df, 0x8bc88bc88bc88bc8}, | |
| 6873 {0xe4u, 0xf35862e13e38f8b0, 0x4f41ffdef2bfe636}, | |
| 6874 {0x1bu, 0xd9c3b9a7751b1169, 0x8a9cc8ef94aef7a5}, | |
| 6875 {0xb1u, 0x53622b6612dfc4e8, 0x80d63a0d8bc88b3f}, | |
| 6876 {0x4eu, 0x3e38f8b0f35862e1, 0xf2bfe6364f41ffde}, | |
| 6877 {0x27u, 0xd9c3751bb9a71169, 0x8a9c94aec8eff7a5}}; | |
| 6878 for (size_t i = 0; i < sizeof(exp_h) / sizeof(ExpResShf); ++i) { | |
| 6879 if (exp_h[i].i8 == i8) { | |
| 6880 CHECK_EQ(exp_h[i].lo, res.d[0]); | |
| 6881 CHECK_EQ(exp_h[i].hi, res.d[1]); | |
| 6882 } | |
| 6883 } | |
| 6884 } break; | |
| 6885 case kSHF_W: { | |
| 6886 struct ExpResShf exp_w[] = { | |
| 6887 // i8, exp_lo, exp_hi | |
| 6888 {0xffu, 0xf7a594aef7a594ae, 0xf7a594aef7a594ae}, | |
| 6889 {0x0u, 0xc4e812dfc4e812df, 0xc4e812dfc4e812df}, | |
| 6890 {0xe4u, 0xf35862e13e38f8b0, 0x4f41ffdef2bfe636}, | |
| 6891 {0x1bu, 0xc8ef8a9cf7a594ae, 0xb9a7d9c31169751b}, | |
| 6892 {0xb1u, 0xc4e812df2b665362, 0x8b3f8bc83a0d80d6}, | |
| 6893 {0x4eu, 0x4f41ffdef2bfe636, 0xf35862e13e38f8b0}, | |
| 6894 {0x27u, 0x1169751bf7a594ae, 0xb9a7d9c3c8ef8a9c}}; | |
| 6895 for (size_t i = 0; i < sizeof(exp_w) / sizeof(ExpResShf); ++i) { | |
| 6896 if (exp_w[i].i8 == i8) { | |
| 6897 CHECK_EQ(exp_w[i].lo, res.d[0]); | |
| 6898 CHECK_EQ(exp_w[i].hi, res.d[1]); | |
| 6899 } | |
| 6900 } | |
| 6901 } break; | |
| 6902 default: | |
| 6903 UNREACHABLE(); | |
| 6904 } | |
| 6905 } | |
| 6906 | |
| 6907 struct TestCaseMsaI8 { | |
| 6908 uint64_t input_lo; | |
| 6909 uint64_t input_hi; | |
| 6910 uint8_t i8; | |
| 6911 }; | |
| 6912 | |
| 6913 TEST(MSA_andi_ori_nori_xori) { | |
| 6914 if ((kArchVariant != kMips64r6) || !CpuFeatures::IsSupported(MIPS_SIMD)) | |
| 6915 return; | |
| 6916 | |
| 6917 CcTest::InitializeVM(); | |
| 6918 | |
| 6919 struct TestCaseMsaI8 tc[] = {// input_lo, input_hi, i8 | |
| 6920 {0x1169751bb9a7d9c3, 0xf7a594aec8ef8a9c, 0xffu}, | |
| 6921 {0x2b665362c4e812df, 0x3a0d80d68b3f8bc8, 0x0u}, | |
| 6922 {0x1169751bb9a7d9c3, 0xf7a594aec8ef8a9c, 0x3bu}, | |
| 6923 {0x2b665362c4e812df, 0x3a0d80d68b3f8bc8, 0xd9u}}; | |
| 6924 | |
| 6925 for (size_t i = 0; i < sizeof(tc) / sizeof(TestCaseMsaI8); ++i) { | |
| 6926 run_msa_i8(kANDI, tc[i].input_lo, tc[i].input_hi, tc[i].i8); | |
| 6927 run_msa_i8(kORI, tc[i].input_lo, tc[i].input_hi, tc[i].i8); | |
| 6928 run_msa_i8(kNORI, tc[i].input_lo, tc[i].input_hi, tc[i].i8); | |
| 6929 run_msa_i8(kXORI, tc[i].input_lo, tc[i].input_hi, tc[i].i8); | |
| 6930 } | |
| 6931 } | |
| 6932 | |
| 6933 TEST(MSA_bmnzi_bmzi_bseli) { | |
| 6934 if ((kArchVariant != kMips64r6) || !CpuFeatures::IsSupported(MIPS_SIMD)) | |
| 6935 return; | |
| 6936 | |
| 6937 CcTest::InitializeVM(); | |
| 6938 | |
| 6939 struct TestCaseMsaI8 tc[] = {// input_lo, input_hi, i8 | |
| 6940 {0x1169751bb9a7d9c3, 0xf7a594aec8ef8a9c, 0xffu}, | |
| 6941 {0x2b665362c4e812df, 0x3a0d80d68b3f8bc8, 0x0u}, | |
| 6942 {0x1169751bb9a7d9c3, 0xf7a594aec8ef8a9c, 0x3bu}, | |
| 6943 {0x2b665362c4e812df, 0x3a0d80d68b3f8bc8, 0xd9u}}; | |
| 6944 | |
| 6945 for (size_t i = 0; i < sizeof(tc) / sizeof(TestCaseMsaI8); ++i) { | |
| 6946 run_msa_i8(kBMNZI, tc[i].input_lo, tc[i].input_hi, tc[i].i8); | |
| 6947 run_msa_i8(kBMZI, tc[i].input_lo, tc[i].input_hi, tc[i].i8); | |
| 6948 run_msa_i8(kBSELI, tc[i].input_lo, tc[i].input_hi, tc[i].i8); | |
| 6949 } | |
| 6950 } | |
| 6951 | |
| 6952 TEST(MSA_shf) { | |
| 6953 if ((kArchVariant != kMips64r6) || !CpuFeatures::IsSupported(MIPS_SIMD)) | |
| 6954 return; | |
| 6955 | |
| 6956 CcTest::InitializeVM(); | |
| 6957 | |
| 6958 struct TestCaseMsaI8 tc[] = { | |
| 6959 // input_lo, input_hi, i8 | |
| 6960 {0x1169751bb9a7d9c3, 0xf7a594aec8ef8a9c, 0xffu}, // 3333 | |
| 6961 {0x2b665362c4e812df, 0x3a0d80d68b3f8bc8, 0x0u}, // 0000 | |
| 6962 {0xf35862e13e38f8b0, 0x4f41ffdef2bfe636, 0xe4u}, // 3210 | |
| 6963 {0x1169751bb9a7d9c3, 0xf7a594aec8ef8a9c, 0x1bu}, // 0123 | |
| 6964 {0x2b665362c4e812df, 0x3a0d80d68b3f8bc8, 0xb1u}, // 2301 | |
| 6965 {0xf35862e13e38f8b0, 0x4f41ffdef2bfe636, 0x4eu}, // 1032 | |
| 6966 {0x1169751bb9a7d9c3, 0xf7a594aec8ef8a9c, 0x27u} // 0213 | |
| 6967 }; | |
| 6968 | |
| 6969 for (size_t i = 0; i < sizeof(tc) / sizeof(TestCaseMsaI8); ++i) { | |
| 6970 run_msa_i8(kSHF_B, tc[i].input_lo, tc[i].input_hi, tc[i].i8); | |
| 6971 run_msa_i8(kSHF_H, tc[i].input_lo, tc[i].input_hi, tc[i].i8); | |
| 6972 run_msa_i8(kSHF_W, tc[i].input_lo, tc[i].input_hi, tc[i].i8); | |
| 6973 } | |
| 6974 } | |
| 6975 | |
| 6594 #undef __ | 6976 #undef __ |
| OLD | NEW |