RISC-V: hwprobe: Introduce which-cpus flag
Introduce the first flag for the hwprobe syscall. The flag basically reverses its behavior, i.e. instead of populating the values of keys for a given set of cpus, the set of cpus after the call is the result of finding a set which supports the values of the keys. In order to do this, we implement a pair compare function which takes the type of value (a single value vs. a bitmask of booleans) into consideration. We also implement vdso support for the new flag. Signed-off-by: Andrew Jones <ajones@ventanamicro.com> Reviewed-by: Evan Green <evan@rivosinc.com> Link: https://lore.kernel.org/r/20231122164700.127954-9-ajones@ventanamicro.com Signed-off-by: Palmer Dabbelt <palmer@rivosinc.com>
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5 changed files with 204 additions and 14 deletions
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@ -25,8 +25,21 @@ arch, impl), the returned value will only be valid if all CPUs in the given set
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have the same value. Otherwise -1 will be returned. For boolean-like keys, the
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have the same value. Otherwise -1 will be returned. For boolean-like keys, the
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value returned will be a logical AND of the values for the specified CPUs.
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value returned will be a logical AND of the values for the specified CPUs.
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Usermode can supply NULL for ``cpus`` and 0 for ``cpusetsize`` as a shortcut for
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Usermode can supply NULL for ``cpus`` and 0 for ``cpusetsize`` as a shortcut for
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all online CPUs. There are currently no flags, this value must be zero for
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all online CPUs. The currently supported flags are:
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future compatibility.
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* :c:macro:`RISCV_HWPROBE_WHICH_CPUS`: This flag basically reverses the behavior
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of sys_riscv_hwprobe(). Instead of populating the values of keys for a given
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set of CPUs, the values of each key are given and the set of CPUs is reduced
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by sys_riscv_hwprobe() to only those which match each of the key-value pairs.
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How matching is done depends on the key type. For value-like keys, matching
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means to be the exact same as the value. For boolean-like keys, matching
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means the result of a logical AND of the pair's value with the CPU's value is
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exactly the same as the pair's value. Additionally, when ``cpus`` is an empty
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set, then it is initialized to all online CPUs which fit within it, i.e. the
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CPU set returned is the reduction of all the online CPUs which can be
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represented with a CPU set of size ``cpusetsize``.
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All other flags are reserved for future compatibility and must be zero.
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On success 0 is returned, on failure a negative error code is returned.
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On success 0 is returned, on failure a negative error code is returned.
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@ -15,4 +15,28 @@ static inline bool riscv_hwprobe_key_is_valid(__s64 key)
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return key >= 0 && key <= RISCV_HWPROBE_MAX_KEY;
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return key >= 0 && key <= RISCV_HWPROBE_MAX_KEY;
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}
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}
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static inline bool hwprobe_key_is_bitmask(__s64 key)
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{
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switch (key) {
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case RISCV_HWPROBE_KEY_BASE_BEHAVIOR:
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case RISCV_HWPROBE_KEY_IMA_EXT_0:
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case RISCV_HWPROBE_KEY_CPUPERF_0:
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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 inline bool riscv_hwprobe_pair_cmp(struct riscv_hwprobe *pair,
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struct riscv_hwprobe *other_pair)
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{
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if (pair->key != other_pair->key)
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return false;
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if (hwprobe_key_is_bitmask(pair->key))
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return (pair->value & other_pair->value) == other_pair->value;
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return pair->value == other_pair->value;
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}
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#endif
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#endif
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@ -40,4 +40,7 @@ struct riscv_hwprobe {
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#define RISCV_HWPROBE_KEY_ZICBOZ_BLOCK_SIZE 6
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#define RISCV_HWPROBE_KEY_ZICBOZ_BLOCK_SIZE 6
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/* Increase RISCV_HWPROBE_MAX_KEY when adding items. */
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/* Increase RISCV_HWPROBE_MAX_KEY when adding items. */
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/* Flags */
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#define RISCV_HWPROBE_WHICH_CPUS (1 << 0)
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#endif
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#endif
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@ -179,10 +179,10 @@ static void hwprobe_one_pair(struct riscv_hwprobe *pair,
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}
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}
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}
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}
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static int do_riscv_hwprobe(struct riscv_hwprobe __user *pairs,
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static int hwprobe_get_values(struct riscv_hwprobe __user *pairs,
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size_t pair_count, size_t cpusetsize,
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size_t pair_count, size_t cpusetsize,
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unsigned long __user *cpus_user,
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unsigned long __user *cpus_user,
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unsigned int flags)
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unsigned int flags)
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{
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{
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size_t out;
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size_t out;
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int ret;
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int ret;
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@ -236,6 +236,92 @@ static int do_riscv_hwprobe(struct riscv_hwprobe __user *pairs,
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return 0;
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return 0;
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}
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}
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static int hwprobe_get_cpus(struct riscv_hwprobe __user *pairs,
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size_t pair_count, size_t cpusetsize,
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unsigned long __user *cpus_user,
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unsigned int flags)
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{
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cpumask_t cpus, one_cpu;
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bool clear_all = false;
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size_t i;
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int ret;
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if (flags != RISCV_HWPROBE_WHICH_CPUS)
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return -EINVAL;
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if (!cpusetsize || !cpus_user)
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return -EINVAL;
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if (cpusetsize > cpumask_size())
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cpusetsize = cpumask_size();
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ret = copy_from_user(&cpus, cpus_user, cpusetsize);
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if (ret)
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return -EFAULT;
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if (cpumask_empty(&cpus))
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cpumask_copy(&cpus, cpu_online_mask);
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cpumask_and(&cpus, &cpus, cpu_online_mask);
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cpumask_clear(&one_cpu);
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for (i = 0; i < pair_count; i++) {
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struct riscv_hwprobe pair, tmp;
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int cpu;
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ret = copy_from_user(&pair, &pairs[i], sizeof(pair));
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if (ret)
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return -EFAULT;
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if (!riscv_hwprobe_key_is_valid(pair.key)) {
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clear_all = true;
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pair = (struct riscv_hwprobe){ .key = -1, };
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ret = copy_to_user(&pairs[i], &pair, sizeof(pair));
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if (ret)
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return -EFAULT;
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}
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if (clear_all)
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continue;
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tmp = (struct riscv_hwprobe){ .key = pair.key, };
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for_each_cpu(cpu, &cpus) {
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cpumask_set_cpu(cpu, &one_cpu);
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hwprobe_one_pair(&tmp, &one_cpu);
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if (!riscv_hwprobe_pair_cmp(&tmp, &pair))
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cpumask_clear_cpu(cpu, &cpus);
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cpumask_clear_cpu(cpu, &one_cpu);
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}
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}
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if (clear_all)
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cpumask_clear(&cpus);
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ret = copy_to_user(cpus_user, &cpus, cpusetsize);
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if (ret)
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return -EFAULT;
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return 0;
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}
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static int do_riscv_hwprobe(struct riscv_hwprobe __user *pairs,
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size_t pair_count, size_t cpusetsize,
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unsigned long __user *cpus_user,
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unsigned int flags)
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{
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if (flags & RISCV_HWPROBE_WHICH_CPUS)
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return hwprobe_get_cpus(pairs, pair_count, cpusetsize,
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cpus_user, flags);
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return hwprobe_get_values(pairs, pair_count, cpusetsize,
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cpus_user, flags);
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}
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#ifdef CONFIG_MMU
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#ifdef CONFIG_MMU
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static int __init init_hwprobe_vdso_data(void)
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static int __init init_hwprobe_vdso_data(void)
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@ -3,6 +3,7 @@
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* Copyright 2023 Rivos, Inc
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* Copyright 2023 Rivos, Inc
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*/
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*/
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#include <linux/string.h>
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#include <linux/types.h>
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#include <linux/types.h>
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#include <vdso/datapage.h>
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#include <vdso/datapage.h>
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#include <vdso/helpers.h>
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#include <vdso/helpers.h>
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@ -11,14 +12,9 @@ extern int riscv_hwprobe(struct riscv_hwprobe *pairs, size_t pair_count,
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size_t cpusetsize, unsigned long *cpus,
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size_t cpusetsize, unsigned long *cpus,
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unsigned int flags);
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unsigned int flags);
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/* Add a prototype to avoid -Wmissing-prototypes warning. */
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static int riscv_vdso_get_values(struct riscv_hwprobe *pairs, size_t pair_count,
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int __vdso_riscv_hwprobe(struct riscv_hwprobe *pairs, size_t pair_count,
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size_t cpusetsize, unsigned long *cpus,
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size_t cpusetsize, unsigned long *cpus,
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unsigned int flags)
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unsigned int flags);
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int __vdso_riscv_hwprobe(struct riscv_hwprobe *pairs, size_t pair_count,
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size_t cpusetsize, unsigned long *cpus,
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unsigned int flags)
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{
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{
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const struct vdso_data *vd = __arch_get_vdso_data();
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const struct vdso_data *vd = __arch_get_vdso_data();
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const struct arch_vdso_data *avd = &vd->arch_data;
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const struct arch_vdso_data *avd = &vd->arch_data;
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@ -50,3 +46,71 @@ int __vdso_riscv_hwprobe(struct riscv_hwprobe *pairs, size_t pair_count,
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return 0;
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return 0;
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}
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}
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static int riscv_vdso_get_cpus(struct riscv_hwprobe *pairs, size_t pair_count,
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size_t cpusetsize, unsigned long *cpus,
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unsigned int flags)
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{
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const struct vdso_data *vd = __arch_get_vdso_data();
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const struct arch_vdso_data *avd = &vd->arch_data;
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struct riscv_hwprobe *p = pairs;
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struct riscv_hwprobe *end = pairs + pair_count;
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unsigned char *c = (unsigned char *)cpus;
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bool empty_cpus = true;
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bool clear_all = false;
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int i;
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if (!cpusetsize || !cpus)
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return -EINVAL;
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for (i = 0; i < cpusetsize; i++) {
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if (c[i]) {
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empty_cpus = false;
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break;
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}
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}
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if (empty_cpus || flags != RISCV_HWPROBE_WHICH_CPUS || !avd->homogeneous_cpus)
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return riscv_hwprobe(pairs, pair_count, cpusetsize, cpus, flags);
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while (p < end) {
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if (riscv_hwprobe_key_is_valid(p->key)) {
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struct riscv_hwprobe t = {
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.key = p->key,
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.value = avd->all_cpu_hwprobe_values[p->key],
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};
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if (!riscv_hwprobe_pair_cmp(&t, p))
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clear_all = true;
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} else {
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clear_all = true;
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p->key = -1;
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p->value = 0;
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}
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p++;
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}
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if (clear_all) {
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for (i = 0; i < cpusetsize; i++)
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c[i] = 0;
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}
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return 0;
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}
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/* Add a prototype to avoid -Wmissing-prototypes warning. */
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int __vdso_riscv_hwprobe(struct riscv_hwprobe *pairs, size_t pair_count,
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size_t cpusetsize, unsigned long *cpus,
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unsigned int flags);
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int __vdso_riscv_hwprobe(struct riscv_hwprobe *pairs, size_t pair_count,
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size_t cpusetsize, unsigned long *cpus,
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unsigned int flags)
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{
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if (flags & RISCV_HWPROBE_WHICH_CPUS)
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return riscv_vdso_get_cpus(pairs, pair_count, cpusetsize,
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cpus, flags);
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return riscv_vdso_get_values(pairs, pair_count, cpusetsize,
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cpus, flags);
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}
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