x86/intel_rdt: Cleanup namespace to support RDT monitoring
Few of the data-structures have generic names although they are RDT allocation specific. Rename them to be allocation specific to accommodate RDT monitoring. E.g. s/enabled/alloc_enabled/ No functional change. Signed-off-by: Vikas Shivappa <vikas.shivappa@linux.intel.com> Signed-off-by: Thomas Gleixner <tglx@linutronix.de> Cc: ravi.v.shankar@intel.com Cc: tony.luck@intel.com Cc: fenghua.yu@intel.com Cc: peterz@infradead.org Cc: eranian@google.com Cc: vikas.shivappa@intel.com Cc: ak@linux.intel.com Cc: davidcc@google.com Cc: reinette.chatre@intel.com Link: http://lkml.kernel.org/r/1501017287-28083-7-git-send-email-vikas.shivappa@linux.intel.com
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@ -27,7 +27,7 @@ struct intel_pqr_state {
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DECLARE_PER_CPU(struct intel_pqr_state, pqr_state);
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DECLARE_PER_CPU_READ_MOSTLY(int, cpu_closid);
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DECLARE_STATIC_KEY_FALSE(rdt_enable_key);
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DECLARE_STATIC_KEY_FALSE(rdt_alloc_enable_key);
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/*
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* intel_rdt_sched_in() - Writes the task's CLOSid to IA32_PQR_MSR
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@ -44,7 +44,7 @@ DECLARE_STATIC_KEY_FALSE(rdt_enable_key);
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*/
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static inline void intel_rdt_sched_in(void)
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{
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if (static_branch_likely(&rdt_enable_key)) {
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if (static_branch_likely(&rdt_alloc_enable_key)) {
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struct intel_pqr_state *state = this_cpu_ptr(&pqr_state);
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int closid;
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@ -173,8 +173,8 @@ static inline bool cache_alloc_hsw_probe(void)
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r->default_ctrl = max_cbm;
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r->cache.cbm_len = 20;
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r->cache.min_cbm_bits = 2;
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r->capable = true;
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r->enabled = true;
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r->alloc_capable = true;
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r->alloc_enabled = true;
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return true;
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}
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@ -224,8 +224,8 @@ static bool rdt_get_mem_config(struct rdt_resource *r)
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r->data_width = 3;
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rdt_get_mba_infofile(r);
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r->capable = true;
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r->enabled = true;
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r->alloc_capable = true;
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r->alloc_enabled = true;
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return true;
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}
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@ -242,8 +242,8 @@ static void rdt_get_cache_config(int idx, struct rdt_resource *r)
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r->default_ctrl = BIT_MASK(eax.split.cbm_len + 1) - 1;
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r->data_width = (r->cache.cbm_len + 3) / 4;
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rdt_get_cache_infofile(r);
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r->capable = true;
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r->enabled = true;
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r->alloc_capable = true;
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r->alloc_enabled = true;
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}
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static void rdt_get_cdp_l3_config(int type)
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@ -255,12 +255,12 @@ static void rdt_get_cdp_l3_config(int type)
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r->cache.cbm_len = r_l3->cache.cbm_len;
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r->default_ctrl = r_l3->default_ctrl;
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r->data_width = (r->cache.cbm_len + 3) / 4;
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r->capable = true;
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r->alloc_capable = true;
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/*
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* By default, CDP is disabled. CDP can be enabled by mount parameter
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* "cdp" during resctrl file system mount time.
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*/
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r->enabled = false;
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r->alloc_enabled = false;
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}
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static int get_cache_id(int cpu, int level)
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@ -422,7 +422,7 @@ static void domain_add_cpu(int cpu, struct rdt_resource *r)
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d->id = id;
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if (domain_setup_ctrlval(r, d)) {
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if (r->alloc_capable && domain_setup_ctrlval(r, d)) {
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kfree(d);
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return;
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}
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@ -464,7 +464,7 @@ static int intel_rdt_online_cpu(unsigned int cpu)
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struct rdt_resource *r;
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mutex_lock(&rdtgroup_mutex);
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for_each_capable_rdt_resource(r)
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for_each_alloc_capable_rdt_resource(r)
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domain_add_cpu(cpu, r);
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/* The cpu is set in default rdtgroup after online. */
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cpumask_set_cpu(cpu, &rdtgroup_default.cpu_mask);
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@ -480,7 +480,7 @@ static int intel_rdt_offline_cpu(unsigned int cpu)
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struct rdt_resource *r;
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mutex_lock(&rdtgroup_mutex);
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for_each_capable_rdt_resource(r)
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for_each_alloc_capable_rdt_resource(r)
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domain_remove_cpu(cpu, r);
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list_for_each_entry(rdtgrp, &rdt_all_groups, rdtgroup_list) {
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if (cpumask_test_and_clear_cpu(cpu, &rdtgrp->cpu_mask))
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@ -501,7 +501,7 @@ static __init void rdt_init_padding(void)
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struct rdt_resource *r;
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int cl;
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for_each_capable_rdt_resource(r) {
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for_each_alloc_capable_rdt_resource(r) {
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cl = strlen(r->name);
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if (cl > max_name_width)
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max_name_width = cl;
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@ -565,7 +565,7 @@ static int __init intel_rdt_late_init(void)
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return ret;
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}
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for_each_capable_rdt_resource(r)
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for_each_alloc_capable_rdt_resource(r)
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pr_info("Intel RDT %s allocation detected\n", r->name);
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return 0;
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@ -135,8 +135,8 @@ struct rdt_membw {
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/**
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* struct rdt_resource - attributes of an RDT resource
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* @enabled: Is this feature enabled on this machine
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* @capable: Is this feature available on this machine
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* @alloc_enabled: Is allocation enabled on this machine
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* @alloc_capable: Is allocation available on this machine
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* @name: Name to use in "schemata" file
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* @num_closid: Number of CLOSIDs available
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* @cache_level: Which cache level defines scope of this resource
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@ -152,8 +152,8 @@ struct rdt_membw {
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* @parse_ctrlval: Per resource function pointer to parse control values
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*/
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struct rdt_resource {
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bool enabled;
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bool capable;
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bool alloc_enabled;
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bool alloc_capable;
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char *name;
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int num_closid;
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int cache_level;
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@ -181,7 +181,7 @@ extern struct mutex rdtgroup_mutex;
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extern struct rdt_resource rdt_resources_all[];
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extern struct rdtgroup rdtgroup_default;
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DECLARE_STATIC_KEY_FALSE(rdt_enable_key);
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DECLARE_STATIC_KEY_FALSE(rdt_alloc_enable_key);
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int __init rdtgroup_init(void);
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@ -196,15 +196,15 @@ enum {
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RDT_NUM_RESOURCES,
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};
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#define for_each_capable_rdt_resource(r) \
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#define for_each_alloc_capable_rdt_resource(r) \
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for (r = rdt_resources_all; r < rdt_resources_all + RDT_NUM_RESOURCES;\
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r++) \
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if (r->capable)
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if (r->alloc_capable)
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#define for_each_enabled_rdt_resource(r) \
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#define for_each_alloc_enabled_rdt_resource(r) \
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for (r = rdt_resources_all; r < rdt_resources_all + RDT_NUM_RESOURCES;\
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r++) \
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if (r->enabled)
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if (r->alloc_enabled)
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/* CPUID.(EAX=10H, ECX=ResID=1).EAX */
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union cpuid_0x10_1_eax {
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@ -35,7 +35,7 @@
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#include <asm/intel_rdt_sched.h>
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#include "intel_rdt.h"
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DEFINE_STATIC_KEY_FALSE(rdt_enable_key);
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DEFINE_STATIC_KEY_FALSE(rdt_alloc_enable_key);
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static struct kernfs_root *rdt_root;
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struct rdtgroup rdtgroup_default;
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LIST_HEAD(rdt_all_groups);
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@ -66,7 +66,7 @@ static void closid_init(void)
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int rdt_min_closid = 32;
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/* Compute rdt_min_closid across all resources */
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for_each_enabled_rdt_resource(r)
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for_each_alloc_enabled_rdt_resource(r)
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rdt_min_closid = min(rdt_min_closid, r->num_closid);
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closid_free_map = BIT_MASK(rdt_min_closid) - 1;
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@ -638,7 +638,7 @@ static int rdtgroup_create_info_dir(struct kernfs_node *parent_kn)
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return PTR_ERR(kn_info);
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kernfs_get(kn_info);
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for_each_enabled_rdt_resource(r) {
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for_each_alloc_enabled_rdt_resource(r) {
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kn_subdir = kernfs_create_dir(kn_info, r->name,
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kn_info->mode, r);
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if (IS_ERR(kn_subdir)) {
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@ -718,14 +718,15 @@ static int cdp_enable(void)
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struct rdt_resource *r_l3 = &rdt_resources_all[RDT_RESOURCE_L3];
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int ret;
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if (!r_l3->capable || !r_l3data->capable || !r_l3code->capable)
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if (!r_l3->alloc_capable || !r_l3data->alloc_capable ||
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!r_l3code->alloc_capable)
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return -EINVAL;
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ret = set_l3_qos_cfg(r_l3, true);
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if (!ret) {
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r_l3->enabled = false;
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r_l3data->enabled = true;
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r_l3code->enabled = true;
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r_l3->alloc_enabled = false;
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r_l3data->alloc_enabled = true;
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r_l3code->alloc_enabled = true;
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}
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return ret;
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}
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@ -734,11 +735,11 @@ static void cdp_disable(void)
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{
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struct rdt_resource *r = &rdt_resources_all[RDT_RESOURCE_L3];
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r->enabled = r->capable;
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r->alloc_enabled = r->alloc_capable;
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if (rdt_resources_all[RDT_RESOURCE_L3DATA].enabled) {
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rdt_resources_all[RDT_RESOURCE_L3DATA].enabled = false;
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rdt_resources_all[RDT_RESOURCE_L3CODE].enabled = false;
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if (rdt_resources_all[RDT_RESOURCE_L3DATA].alloc_enabled) {
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rdt_resources_all[RDT_RESOURCE_L3DATA].alloc_enabled = false;
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rdt_resources_all[RDT_RESOURCE_L3CODE].alloc_enabled = false;
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set_l3_qos_cfg(r, false);
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}
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}
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@ -834,7 +835,7 @@ static struct dentry *rdt_mount(struct file_system_type *fs_type,
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/*
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* resctrl file system can only be mounted once.
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*/
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if (static_branch_unlikely(&rdt_enable_key)) {
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if (static_branch_unlikely(&rdt_alloc_enable_key)) {
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dentry = ERR_PTR(-EBUSY);
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goto out;
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}
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@ -858,7 +859,7 @@ static struct dentry *rdt_mount(struct file_system_type *fs_type,
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if (IS_ERR(dentry))
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goto out_destroy;
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static_branch_enable(&rdt_enable_key);
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static_branch_enable(&rdt_alloc_enable_key);
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goto out;
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out_destroy:
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@ -986,11 +987,11 @@ static void rdt_kill_sb(struct super_block *sb)
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mutex_lock(&rdtgroup_mutex);
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/*Put everything back to default values. */
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for_each_enabled_rdt_resource(r)
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for_each_alloc_enabled_rdt_resource(r)
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reset_all_ctrls(r);
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cdp_disable();
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rmdir_all_sub();
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static_branch_disable(&rdt_enable_key);
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static_branch_disable(&rdt_alloc_enable_key);
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kernfs_kill_sb(sb);
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mutex_unlock(&rdtgroup_mutex);
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}
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@ -1129,7 +1130,7 @@ static int rdtgroup_rmdir(struct kernfs_node *kn)
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static int rdtgroup_show_options(struct seq_file *seq, struct kernfs_root *kf)
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{
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if (rdt_resources_all[RDT_RESOURCE_L3DATA].enabled)
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if (rdt_resources_all[RDT_RESOURCE_L3DATA].alloc_enabled)
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seq_puts(seq, ",cdp");
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return 0;
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}
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@ -192,7 +192,7 @@ static int rdtgroup_parse_resource(char *resname, char *tok, int closid)
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{
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struct rdt_resource *r;
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for_each_enabled_rdt_resource(r) {
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for_each_alloc_enabled_rdt_resource(r) {
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if (!strcmp(resname, r->name) && closid < r->num_closid)
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return parse_line(tok, r);
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}
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@ -221,7 +221,7 @@ ssize_t rdtgroup_schemata_write(struct kernfs_open_file *of,
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closid = rdtgrp->closid;
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for_each_enabled_rdt_resource(r) {
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for_each_alloc_enabled_rdt_resource(r) {
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list_for_each_entry(dom, &r->domains, list)
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dom->have_new_ctrl = false;
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}
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@ -237,7 +237,7 @@ ssize_t rdtgroup_schemata_write(struct kernfs_open_file *of,
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goto out;
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}
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for_each_enabled_rdt_resource(r) {
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for_each_alloc_enabled_rdt_resource(r) {
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ret = update_domains(r, closid);
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if (ret)
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goto out;
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@ -274,7 +274,7 @@ int rdtgroup_schemata_show(struct kernfs_open_file *of,
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rdtgrp = rdtgroup_kn_lock_live(of->kn);
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if (rdtgrp) {
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closid = rdtgrp->closid;
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for_each_enabled_rdt_resource(r) {
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for_each_alloc_enabled_rdt_resource(r) {
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if (closid < r->num_closid)
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show_doms(s, r, closid);
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}
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