301 lines
8.0 KiB
C++
301 lines
8.0 KiB
C++
/*
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* Copyright © 2012 Intel 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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#include <stdlib.h>
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#include <stdio.h>
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#include <stdbool.h>
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#include "util/ralloc.h"
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#include "brw_eu.h"
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static bool
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test_compact_instruction(struct brw_codegen *p, brw_inst src)
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{
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brw_compact_inst dst;
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memset(&dst, 0xd0, sizeof(dst));
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if (brw_try_compact_instruction(p->devinfo, &dst, &src)) {
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brw_inst uncompacted;
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brw_uncompact_instruction(p->devinfo, &uncompacted, &dst);
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if (memcmp(&uncompacted, &src, sizeof(src))) {
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brw_debug_compact_uncompact(p->devinfo, &src, &uncompacted);
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return false;
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}
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} else {
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brw_compact_inst unchanged;
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memset(&unchanged, 0xd0, sizeof(unchanged));
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/* It's not supposed to change dst unless it compacted. */
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if (memcmp(&unchanged, &dst, sizeof(dst))) {
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fprintf(stderr, "Failed to compact, but dst changed\n");
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fprintf(stderr, " Instruction: ");
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brw_disassemble_inst(stderr, p->devinfo, &src, false);
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return false;
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}
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}
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return true;
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}
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/**
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* When doing fuzz testing, pad bits won't round-trip.
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*
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* This sort of a superset of skip_bit, which is testing for changing bits that
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* aren't worth testing for fuzzing. We also just want to clear bits that
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* become meaningless once fuzzing twiddles a related bit.
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*/
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static void
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clear_pad_bits(const struct gen_device_info *devinfo, brw_inst *inst)
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{
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if (brw_inst_opcode(devinfo, inst) != BRW_OPCODE_SEND &&
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brw_inst_opcode(devinfo, inst) != BRW_OPCODE_SENDC &&
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brw_inst_opcode(devinfo, inst) != BRW_OPCODE_BREAK &&
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brw_inst_opcode(devinfo, inst) != BRW_OPCODE_CONTINUE &&
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brw_inst_src0_reg_file(devinfo, inst) != BRW_IMMEDIATE_VALUE &&
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brw_inst_src1_reg_file(devinfo, inst) != BRW_IMMEDIATE_VALUE) {
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brw_inst_set_bits(inst, 127, 111, 0);
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}
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}
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static bool
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skip_bit(const struct gen_device_info *devinfo, brw_inst *src, int bit)
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{
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/* pad bit */
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if (bit == 7)
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return true;
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/* The compact bit -- uncompacted can't have it set. */
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if (bit == 29)
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return true;
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/* pad bit */
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if (bit == 47)
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return true;
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/* pad bits */
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if (bit >= 90 && bit <= 95)
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return true;
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/* sometimes these are pad bits. */
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if (brw_inst_opcode(devinfo, src) != BRW_OPCODE_SEND &&
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brw_inst_opcode(devinfo, src) != BRW_OPCODE_SENDC &&
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brw_inst_opcode(devinfo, src) != BRW_OPCODE_BREAK &&
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brw_inst_opcode(devinfo, src) != BRW_OPCODE_CONTINUE &&
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brw_inst_src0_reg_file(devinfo, src) != BRW_IMMEDIATE_VALUE &&
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brw_inst_src1_reg_file(devinfo, src) != BRW_IMMEDIATE_VALUE &&
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bit >= 121) {
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return true;
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}
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return false;
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}
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static bool
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test_fuzz_compact_instruction(struct brw_codegen *p, brw_inst src)
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{
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for (int bit0 = 0; bit0 < 128; bit0++) {
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if (skip_bit(p->devinfo, &src, bit0))
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continue;
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for (int bit1 = 0; bit1 < 128; bit1++) {
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brw_inst instr = src;
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uint32_t *bits = (uint32_t *)&instr;
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if (skip_bit(p->devinfo, &src, bit1))
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continue;
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bits[bit0 / 32] ^= (1 << (bit0 & 31));
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bits[bit1 / 32] ^= (1 << (bit1 & 31));
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clear_pad_bits(p->devinfo, &instr);
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if (!test_compact_instruction(p, instr)) {
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printf(" twiddled bits for fuzzing %d, %d\n", bit0, bit1);
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return false;
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}
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}
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}
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return true;
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}
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static void
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gen_ADD_GRF_GRF_GRF(struct brw_codegen *p)
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{
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struct brw_reg g0 = brw_vec8_grf(0, 0);
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struct brw_reg g2 = brw_vec8_grf(2, 0);
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struct brw_reg g4 = brw_vec8_grf(4, 0);
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brw_ADD(p, g0, g2, g4);
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}
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static void
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gen_ADD_GRF_GRF_IMM(struct brw_codegen *p)
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{
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struct brw_reg g0 = brw_vec8_grf(0, 0);
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struct brw_reg g2 = brw_vec8_grf(2, 0);
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brw_ADD(p, g0, g2, brw_imm_f(1.0));
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}
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static void
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gen_ADD_GRF_GRF_IMM_d(struct brw_codegen *p)
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{
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struct brw_reg g0 = retype(brw_vec8_grf(0, 0), BRW_REGISTER_TYPE_D);
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struct brw_reg g2 = retype(brw_vec8_grf(2, 0), BRW_REGISTER_TYPE_D);
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brw_ADD(p, g0, g2, brw_imm_d(1));
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}
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static void
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gen_MOV_GRF_GRF(struct brw_codegen *p)
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{
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struct brw_reg g0 = brw_vec8_grf(0, 0);
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struct brw_reg g2 = brw_vec8_grf(2, 0);
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brw_MOV(p, g0, g2);
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}
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static void
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gen_ADD_MRF_GRF_GRF(struct brw_codegen *p)
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{
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struct brw_reg m6 = brw_vec8_reg(BRW_MESSAGE_REGISTER_FILE, 6, 0);
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struct brw_reg g2 = brw_vec8_grf(2, 0);
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struct brw_reg g4 = brw_vec8_grf(4, 0);
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brw_ADD(p, m6, g2, g4);
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}
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static void
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gen_ADD_vec1_GRF_GRF_GRF(struct brw_codegen *p)
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{
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struct brw_reg g0 = brw_vec1_grf(0, 0);
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struct brw_reg g2 = brw_vec1_grf(2, 0);
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struct brw_reg g4 = brw_vec1_grf(4, 0);
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brw_ADD(p, g0, g2, g4);
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}
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static void
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gen_PLN_MRF_GRF_GRF(struct brw_codegen *p)
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{
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struct brw_reg m6 = brw_vec8_reg(BRW_MESSAGE_REGISTER_FILE, 6, 0);
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struct brw_reg interp = brw_vec1_grf(2, 0);
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struct brw_reg g4 = brw_vec8_grf(4, 0);
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brw_PLN(p, m6, interp, g4);
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}
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static void
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gen_f0_0_MOV_GRF_GRF(struct brw_codegen *p)
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{
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struct brw_reg g0 = brw_vec8_grf(0, 0);
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struct brw_reg g2 = brw_vec8_grf(2, 0);
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brw_push_insn_state(p);
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brw_set_default_predicate_control(p, true);
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brw_MOV(p, g0, g2);
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brw_pop_insn_state(p);
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}
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/* The handling of f0.1 vs f0.0 changes between gen6 and gen7. Explicitly test
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* it, so that we run the fuzzing can run over all the other bits that might
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* interact with it.
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*/
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static void
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gen_f0_1_MOV_GRF_GRF(struct brw_codegen *p)
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{
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struct brw_reg g0 = brw_vec8_grf(0, 0);
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struct brw_reg g2 = brw_vec8_grf(2, 0);
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brw_push_insn_state(p);
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brw_set_default_predicate_control(p, true);
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brw_inst *mov = brw_MOV(p, g0, g2);
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brw_inst_set_flag_subreg_nr(p->devinfo, mov, 1);
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brw_pop_insn_state(p);
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}
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struct {
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void (*func)(struct brw_codegen *p);
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} tests[] = {
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{ gen_MOV_GRF_GRF },
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{ gen_ADD_GRF_GRF_GRF },
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{ gen_ADD_GRF_GRF_IMM },
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{ gen_ADD_GRF_GRF_IMM_d },
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{ gen_ADD_MRF_GRF_GRF },
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{ gen_ADD_vec1_GRF_GRF_GRF },
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{ gen_PLN_MRF_GRF_GRF },
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{ gen_f0_0_MOV_GRF_GRF },
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{ gen_f0_1_MOV_GRF_GRF },
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};
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static bool
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run_tests(const struct gen_device_info *devinfo)
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{
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brw_init_compaction_tables(devinfo);
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bool fail = false;
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for (unsigned i = 0; i < ARRAY_SIZE(tests); i++) {
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for (int align_16 = 0; align_16 <= 1; align_16++) {
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struct brw_codegen *p = rzalloc(NULL, struct brw_codegen);
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brw_init_codegen(devinfo, p, p);
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brw_set_default_predicate_control(p, BRW_PREDICATE_NONE);
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if (align_16)
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brw_set_default_access_mode(p, BRW_ALIGN_16);
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else
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brw_set_default_access_mode(p, BRW_ALIGN_1);
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tests[i].func(p);
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assert(p->nr_insn == 1);
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if (!test_compact_instruction(p, p->store[0])) {
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fail = true;
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continue;
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}
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if (!test_fuzz_compact_instruction(p, p->store[0])) {
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fail = true;
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continue;
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}
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ralloc_free(p);
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}
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}
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return fail;
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}
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int
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main(int argc, char **argv)
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{
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struct gen_device_info *devinfo = (struct gen_device_info *)calloc(1, sizeof(*devinfo));
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devinfo->gen = 6;
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bool fail = false;
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for (devinfo->gen = 6; devinfo->gen <= 7; devinfo->gen++) {
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fail |= run_tests(devinfo);
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}
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return fail;
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}
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