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RISC-V: selftests: Add CBO tests
Add hwprobe test for Zicboz and its block size. Also, when Zicboz is present, test that cbo.zero may be issued and works. Additionally provide a command line option that enables testing that the Zicbom instructions cause SIGILL and also that cbo.zero causes SIGILL when Zicboz it's not present. The SIGILL tests require "opt-in" with a command line option because the RISC-V ISA does not require unimplemented standard opcodes to issue illegal-instruction exceptions (but hopefully most platforms do). Pinning the test to a subset of cpus with taskset will also restrict the hwprobe calls to that set. Signed-off-by: Andrew Jones <ajones@ventanamicro.com> Reviewed-by: Xiao Wang <xiao.w.wang@intel.com> Link: https://lore.kernel.org/r/20230918131518.56803-14-ajones@ventanamicro.com Signed-off-by: Palmer Dabbelt <palmer@rivosinc.com>
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@ -2,9 +2,14 @@
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# Copyright (C) 2021 ARM Limited
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# Originally tools/testing/arm64/abi/Makefile
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TEST_GEN_PROGS := hwprobe
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CFLAGS += -I$(top_srcdir)/tools/include
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TEST_GEN_PROGS := hwprobe cbo
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include ../../lib.mk
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$(OUTPUT)/hwprobe: hwprobe.c sys_hwprobe.S
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$(CC) -static -o$@ $(CFLAGS) $(LDFLAGS) $^
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$(OUTPUT)/cbo: cbo.c sys_hwprobe.S
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$(CC) -static -o$@ $(CFLAGS) $(LDFLAGS) $^
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tools/testing/selftests/riscv/hwprobe/cbo.c
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tools/testing/selftests/riscv/hwprobe/cbo.c
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// SPDX-License-Identifier: GPL-2.0-only
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/*
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* Copyright (c) 2023 Ventana Micro Systems Inc.
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*
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* Run with 'taskset -c <cpu-list> cbo' to only execute hwprobe on a
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* subset of cpus, as well as only executing the tests on those cpus.
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*/
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#define _GNU_SOURCE
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#include <stdbool.h>
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#include <stdint.h>
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#include <string.h>
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#include <sched.h>
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#include <signal.h>
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#include <assert.h>
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#include <linux/compiler.h>
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#include <linux/kernel.h>
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#include <asm/ucontext.h>
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#include "hwprobe.h"
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#include "../../kselftest.h"
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#define MK_CBO(fn) cpu_to_le32((fn) << 20 | 10 << 15 | 2 << 12 | 0 << 7 | 15)
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static char mem[4096] __aligned(4096) = { [0 ... 4095] = 0xa5 };
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static bool illegal_insn;
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static void sigill_handler(int sig, siginfo_t *info, void *context)
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{
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unsigned long *regs = (unsigned long *)&((ucontext_t *)context)->uc_mcontext;
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uint32_t insn = *(uint32_t *)regs[0];
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assert(insn == MK_CBO(regs[11]));
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illegal_insn = true;
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regs[0] += 4;
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}
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static void cbo_insn(char *base, int fn)
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{
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uint32_t insn = MK_CBO(fn);
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asm volatile(
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"mv a0, %0\n"
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"li a1, %1\n"
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".4byte %2\n"
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: : "r" (base), "i" (fn), "i" (insn) : "a0", "a1", "memory");
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}
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static void cbo_inval(char *base) { cbo_insn(base, 0); }
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static void cbo_clean(char *base) { cbo_insn(base, 1); }
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static void cbo_flush(char *base) { cbo_insn(base, 2); }
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static void cbo_zero(char *base) { cbo_insn(base, 4); }
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static void test_no_zicbom(void *arg)
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{
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ksft_print_msg("Testing Zicbom instructions remain privileged\n");
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illegal_insn = false;
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cbo_clean(&mem[0]);
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ksft_test_result(illegal_insn, "No cbo.clean\n");
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illegal_insn = false;
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cbo_flush(&mem[0]);
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ksft_test_result(illegal_insn, "No cbo.flush\n");
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illegal_insn = false;
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cbo_inval(&mem[0]);
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ksft_test_result(illegal_insn, "No cbo.inval\n");
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}
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static void test_no_zicboz(void *arg)
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{
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ksft_print_msg("No Zicboz, testing cbo.zero remains privileged\n");
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illegal_insn = false;
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cbo_zero(&mem[0]);
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ksft_test_result(illegal_insn, "No cbo.zero\n");
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}
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static bool is_power_of_2(__u64 n)
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{
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return n != 0 && (n & (n - 1)) == 0;
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}
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static void test_zicboz(void *arg)
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{
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struct riscv_hwprobe pair = {
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.key = RISCV_HWPROBE_KEY_ZICBOZ_BLOCK_SIZE,
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};
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cpu_set_t *cpus = (cpu_set_t *)arg;
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__u64 block_size;
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int i, j;
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long rc;
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rc = riscv_hwprobe(&pair, 1, sizeof(cpu_set_t), (unsigned long *)cpus, 0);
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block_size = pair.value;
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ksft_test_result(rc == 0 && pair.key == RISCV_HWPROBE_KEY_ZICBOZ_BLOCK_SIZE &&
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is_power_of_2(block_size), "Zicboz block size\n");
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ksft_print_msg("Zicboz block size: %ld\n", block_size);
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illegal_insn = false;
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cbo_zero(&mem[block_size]);
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ksft_test_result(!illegal_insn, "cbo.zero\n");
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if (illegal_insn || !is_power_of_2(block_size)) {
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ksft_test_result_skip("cbo.zero check\n");
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return;
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}
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assert(block_size <= 1024);
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for (i = 0; i < 4096 / block_size; ++i) {
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if (i % 2)
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cbo_zero(&mem[i * block_size]);
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}
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for (i = 0; i < 4096 / block_size; ++i) {
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char expected = i % 2 ? 0x0 : 0xa5;
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for (j = 0; j < block_size; ++j) {
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if (mem[i * block_size + j] != expected) {
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ksft_test_result_fail("cbo.zero check\n");
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ksft_print_msg("cbo.zero check: mem[%d] != 0x%x\n",
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i * block_size + j, expected);
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return;
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}
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}
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}
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ksft_test_result_pass("cbo.zero check\n");
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}
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static void check_no_zicboz_cpus(cpu_set_t *cpus)
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{
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struct riscv_hwprobe pair = {
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.key = RISCV_HWPROBE_KEY_IMA_EXT_0,
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};
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cpu_set_t one_cpu;
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int i = 0, c = 0;
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long rc;
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while (i++ < CPU_COUNT(cpus)) {
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while (!CPU_ISSET(c, cpus))
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++c;
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CPU_ZERO(&one_cpu);
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CPU_SET(c, &one_cpu);
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rc = riscv_hwprobe(&pair, 1, sizeof(cpu_set_t), (unsigned long *)&one_cpu, 0);
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assert(rc == 0 && pair.key == RISCV_HWPROBE_KEY_IMA_EXT_0);
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if (pair.value & RISCV_HWPROBE_EXT_ZICBOZ)
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ksft_exit_fail_msg("Zicboz is only present on a subset of harts.\n"
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"Use taskset to select a set of harts where Zicboz\n"
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"presence (present or not) is consistent for each hart\n");
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++c;
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}
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}
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enum {
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TEST_ZICBOZ,
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TEST_NO_ZICBOZ,
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TEST_NO_ZICBOM,
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};
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static struct test_info {
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bool enabled;
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unsigned int nr_tests;
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void (*test_fn)(void *arg);
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} tests[] = {
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[TEST_ZICBOZ] = { .nr_tests = 3, test_zicboz },
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[TEST_NO_ZICBOZ] = { .nr_tests = 1, test_no_zicboz },
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[TEST_NO_ZICBOM] = { .nr_tests = 3, test_no_zicbom },
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};
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int main(int argc, char **argv)
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{
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struct sigaction act = {
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.sa_sigaction = &sigill_handler,
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.sa_flags = SA_SIGINFO,
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};
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struct riscv_hwprobe pair;
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unsigned int plan = 0;
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cpu_set_t cpus;
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long rc;
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int i;
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if (argc > 1 && !strcmp(argv[1], "--sigill")) {
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rc = sigaction(SIGILL, &act, NULL);
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assert(rc == 0);
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tests[TEST_NO_ZICBOZ].enabled = true;
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tests[TEST_NO_ZICBOM].enabled = true;
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}
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rc = sched_getaffinity(0, sizeof(cpu_set_t), &cpus);
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assert(rc == 0);
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ksft_print_header();
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pair.key = RISCV_HWPROBE_KEY_IMA_EXT_0;
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rc = riscv_hwprobe(&pair, 1, sizeof(cpu_set_t), (unsigned long *)&cpus, 0);
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if (rc < 0)
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ksft_exit_fail_msg("hwprobe() failed with %d\n", rc);
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assert(rc == 0 && pair.key == RISCV_HWPROBE_KEY_IMA_EXT_0);
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if (pair.value & RISCV_HWPROBE_EXT_ZICBOZ) {
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tests[TEST_ZICBOZ].enabled = true;
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tests[TEST_NO_ZICBOZ].enabled = false;
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} else {
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check_no_zicboz_cpus(&cpus);
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}
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for (i = 0; i < ARRAY_SIZE(tests); ++i)
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plan += tests[i].enabled ? tests[i].nr_tests : 0;
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if (plan == 0)
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ksft_print_msg("No tests enabled.\n");
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else
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ksft_set_plan(plan);
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for (i = 0; i < ARRAY_SIZE(tests); ++i) {
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if (tests[i].enabled)
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tests[i].test_fn(&cpus);
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}
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ksft_finished();
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}
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// SPDX-License-Identifier: GPL-2.0-only
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#include <stddef.h>
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#include <asm/hwprobe.h>
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#include "hwprobe.h"
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#include "../../kselftest.h"
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/*
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* Rather than relying on having a new enough libc to define this, just do it
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* ourselves. This way we don't need to be coupled to a new-enough libc to
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* contain the call.
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*/
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long riscv_hwprobe(struct riscv_hwprobe *pairs, size_t pair_count,
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size_t cpu_count, unsigned long *cpus, unsigned int flags);
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int main(int argc, char **argv)
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{
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struct riscv_hwprobe pairs[8];
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tools/testing/selftests/riscv/hwprobe/hwprobe.h
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tools/testing/selftests/riscv/hwprobe/hwprobe.h
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/* SPDX-License-Identifier: GPL-2.0-only */
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#ifndef SELFTEST_RISCV_HWPROBE_H
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#define SELFTEST_RISCV_HWPROBE_H
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#include <stddef.h>
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#include <asm/hwprobe.h>
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/*
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* Rather than relying on having a new enough libc to define this, just do it
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* ourselves. This way we don't need to be coupled to a new-enough libc to
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* contain the call.
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*/
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long riscv_hwprobe(struct riscv_hwprobe *pairs, size_t pair_count,
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size_t cpu_count, unsigned long *cpus, unsigned int flags);
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#endif
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