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https://gitlab.freedesktop.org/mesa/mesa.git
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83 lines
3.7 KiB
C++
83 lines
3.7 KiB
C++
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/*
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* Copyright © 2020 Valve Corporation
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*
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* Permission is hereby granted, free of charge, to any person obtaining a
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* copy of this software and associated documentation files (the "Software"),
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* to deal in the Software without restriction, including without limitation
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* the rights to use, copy, modify, merge, publish, distribute, sublicense,
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* and/or sell copies of the Software, and to permit persons to whom the
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* Software is furnished to do so, subject to the following conditions:
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*
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* The above copyright notice and this permission notice (including the next
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* paragraph) shall be included in all copies or substantial portions of the
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* Software.
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*
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
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* THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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* LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
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* FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS
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* IN THE SOFTWARE.
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*
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*/
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#include "helpers.h"
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using namespace aco;
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BEGIN_TEST(optimize.neg)
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for (unsigned i = GFX9; i <= GFX10; i++) {
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//>> v1: %a, v1: %b, s1: %c, s1: %d, s2: %_:exec = p_startpgm
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if (!setup_cs("v1 v1 s1 s1", (chip_class)i))
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continue;
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//! v1: %res0 = v_mul_f32 %a, -%b
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//! p_unit_test 0, %res0
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Temp neg_b = bld.vop2(aco_opcode::v_xor_b32, bld.def(v1), Operand(0x80000000u), inputs[1]);
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writeout(0, bld.vop2(aco_opcode::v_mul_f32, bld.def(v1), inputs[0], neg_b));
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//! v1: %neg_a = v_xor_b32 0x80000000, %a
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//~gfx[6-9]! v1: %res1 = v_mul_f32 0x123456, %neg_a
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//~gfx10! v1: %res1 = v_mul_f32 0x123456, -%a
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//! p_unit_test 1, %res1
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Temp neg_a = bld.vop2(aco_opcode::v_xor_b32, bld.def(v1), Operand(0x80000000u), inputs[0]);
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writeout(1, bld.vop2(aco_opcode::v_mul_f32, bld.def(v1), Operand(0x123456u), neg_a));
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//! v1: %res2 = v_mul_f32 %a, %b
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//! p_unit_test 2, %res2
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Temp neg_neg_a = bld.vop2(aco_opcode::v_xor_b32, bld.def(v1), Operand(0x80000000u), neg_a);
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writeout(2, bld.vop2(aco_opcode::v_mul_f32, bld.def(v1), neg_neg_a, inputs[1]));
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/* we could optimize this case into just an abs(), but NIR already does this */
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//! v1: %res3 = v_mul_f32 |%neg_a|, %b
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//! p_unit_test 3, %res3
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Temp abs_neg_a = bld.vop2(aco_opcode::v_and_b32, bld.def(v1), Operand(0x7FFFFFFFu), neg_a);
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writeout(3, bld.vop2(aco_opcode::v_mul_f32, bld.def(v1), abs_neg_a, inputs[1]));
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//! v1: %res4 = v_mul_f32 -|%a|, %b
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//! p_unit_test 4, %res4
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Temp abs_a = bld.vop2(aco_opcode::v_and_b32, bld.def(v1), Operand(0x7FFFFFFFu), inputs[0]);
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Temp neg_abs_a = bld.vop2(aco_opcode::v_xor_b32, bld.def(v1), Operand(0x80000000u), abs_a);
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writeout(4, bld.vop2(aco_opcode::v_mul_f32, bld.def(v1), neg_abs_a, inputs[1]));
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//! v1: %res5 = v_mul_f32 -%a, %b row_shl:1 bound_ctrl:1
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//! p_unit_test 5, %res5
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writeout(5, bld.vop2_dpp(aco_opcode::v_mul_f32, bld.def(v1), neg_a, inputs[1], dpp_row_sl(1)));
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//! v1: %res6 = v_subrev_f32 %a, %b
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//! p_unit_test 6, %res6
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writeout(6, bld.vop2(aco_opcode::v_add_f32, bld.def(v1), neg_a, inputs[1]));
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//! v1: %res7 = v_sub_f32 %b, %a
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//! p_unit_test 7, %res7
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writeout(7, bld.vop2(aco_opcode::v_add_f32, bld.def(v1), inputs[1], neg_a));
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//! v1: %res8 = v_mul_f32 %a, -%c
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//! p_unit_test 8, %res8
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Temp neg_c = bld.vop2(aco_opcode::v_xor_b32, bld.def(v1), Operand(0x80000000u), bld.copy(bld.def(v1), inputs[2]));
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writeout(8, bld.vop2(aco_opcode::v_mul_f32, bld.def(v1), inputs[0], neg_c));
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finish_opt_test();
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}
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END_TEST
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