s390: move cacheinfo sysfs to generic cacheinfo infrastructure
This patch removes the redundant sysfs cacheinfo code by reusing
the newly introduced generic cacheinfo infrastructure through the
commit 246246cbde ("drivers: base: support cpu cache information
interface to userspace via sysfs")
Signed-off-by: Sudeep Holla <sudeep.holla@arm.com>
Signed-off-by: Heiko Carstens <heiko.carstens@de.ibm.com>
Signed-off-by: Martin Schwidefsky <schwidefsky@de.ibm.com>
	
	
This commit is contained in:
		
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				commit
				
					
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					 1 changed files with 97 additions and 301 deletions
				
			
		| 
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			@ -5,37 +5,11 @@
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 *    Author(s): Heiko Carstens <heiko.carstens@de.ibm.com>
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 */
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#include <linux/notifier.h>
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#include <linux/seq_file.h>
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#include <linux/init.h>
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#include <linux/list.h>
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#include <linux/slab.h>
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#include <linux/cpu.h>
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#include <linux/cacheinfo.h>
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#include <asm/facility.h>
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struct cache {
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	unsigned long size;
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	unsigned int line_size;
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	unsigned int associativity;
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	unsigned int nr_sets;
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	unsigned int level   : 3;
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	unsigned int type    : 2;
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	unsigned int private : 1;
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	struct list_head list;
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};
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struct cache_dir {
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	struct kobject *kobj;
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	struct cache_index_dir *index;
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};
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struct cache_index_dir {
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	struct kobject kobj;
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	int cpu;
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	struct cache *cache;
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	struct cache_index_dir *next;
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};
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enum {
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	CACHE_SCOPE_NOTEXISTS,
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	CACHE_SCOPE_PRIVATE,
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						 | 
				
			
			@ -44,10 +18,10 @@ enum {
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};
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enum {
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	CACHE_TYPE_SEPARATE,
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	CACHE_TYPE_DATA,
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	CACHE_TYPE_INSTRUCTION,
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	CACHE_TYPE_UNIFIED,
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	CTYPE_SEPARATE,
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	CTYPE_DATA,
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	CTYPE_INSTRUCTION,
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	CTYPE_UNIFIED,
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};
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enum {
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			@ -70,39 +44,59 @@ struct cache_info {
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};
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#define CACHE_MAX_LEVEL 8
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union cache_topology {
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	struct cache_info ci[CACHE_MAX_LEVEL];
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	unsigned long long raw;
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};
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static const char * const cache_type_string[] = {
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	"Data",
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	"",
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	"Instruction",
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	"Data",
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	"",
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	"Unified",
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};
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static struct cache_dir *cache_dir_cpu[NR_CPUS];
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static LIST_HEAD(cache_list);
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static const enum cache_type cache_type_map[] = {
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	[CTYPE_SEPARATE] = CACHE_TYPE_SEPARATE,
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	[CTYPE_DATA] = CACHE_TYPE_DATA,
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	[CTYPE_INSTRUCTION] = CACHE_TYPE_INST,
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	[CTYPE_UNIFIED] = CACHE_TYPE_UNIFIED,
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};
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void show_cacheinfo(struct seq_file *m)
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{
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	struct cache *cache;
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	int index = 0;
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	int cpu = smp_processor_id(), idx;
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	struct cpu_cacheinfo *this_cpu_ci = get_cpu_cacheinfo(cpu);
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	struct cacheinfo *cache;
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	list_for_each_entry(cache, &cache_list, list) {
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		seq_printf(m, "cache%-11d: ", index);
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	for (idx = 0; idx < this_cpu_ci->num_leaves; idx++) {
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		cache = this_cpu_ci->info_list + idx;
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		seq_printf(m, "cache%-11d: ", idx);
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		seq_printf(m, "level=%d ", cache->level);
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		seq_printf(m, "type=%s ", cache_type_string[cache->type]);
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		seq_printf(m, "scope=%s ", cache->private ? "Private" : "Shared");
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		seq_printf(m, "size=%luK ", cache->size >> 10);
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		seq_printf(m, "line_size=%u ", cache->line_size);
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		seq_printf(m, "associativity=%d", cache->associativity);
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		seq_printf(m, "scope=%s ",
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			   cache->disable_sysfs ? "Shared" : "Private");
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		seq_printf(m, "size=%dK ", cache->size >> 10);
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		seq_printf(m, "line_size=%u ", cache->coherency_line_size);
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		seq_printf(m, "associativity=%d", cache->ways_of_associativity);
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		seq_puts(m, "\n");
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		index++;
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	}
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}
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static inline enum cache_type get_cache_type(struct cache_info *ci, int level)
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{
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	if (level >= CACHE_MAX_LEVEL)
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		return CACHE_TYPE_NOCACHE;
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	ci += level;
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	if (ci->scope != CACHE_SCOPE_SHARED && ci->scope != CACHE_SCOPE_PRIVATE)
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		return CACHE_TYPE_NOCACHE;
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	return cache_type_map[ci->type];
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}
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static inline unsigned long ecag(int ai, int li, int ti)
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{
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	unsigned long cmd, val;
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						 | 
				
			
			@ -113,277 +107,79 @@ static inline unsigned long ecag(int ai, int li, int ti)
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	return val;
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}
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static int __init cache_add(int level, int private, int type)
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static void ci_leaf_init(struct cacheinfo *this_leaf, int private,
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			 enum cache_type type, unsigned int level)
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{
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	struct cache *cache;
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	int ti;
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	int ti, num_sets;
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	int cpu = smp_processor_id();
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	cache = kzalloc(sizeof(*cache), GFP_KERNEL);
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	if (!cache)
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		return -ENOMEM;
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	if (type == CACHE_TYPE_INSTRUCTION)
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	if (type == CACHE_TYPE_INST)
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		ti = CACHE_TI_INSTRUCTION;
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	else
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		ti = CACHE_TI_UNIFIED;
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	cache->size = ecag(EXTRACT_SIZE, level, ti);
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	cache->line_size = ecag(EXTRACT_LINE_SIZE, level, ti);
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	cache->associativity = ecag(EXTRACT_ASSOCIATIVITY, level, ti);
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	cache->nr_sets = cache->size / cache->associativity;
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	cache->nr_sets /= cache->line_size;
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	cache->private = private;
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	cache->level = level + 1;
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	cache->type = type - 1;
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	list_add_tail(&cache->list, &cache_list);
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	return 0;
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	this_leaf->level = level + 1;
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	this_leaf->type = type;
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	this_leaf->coherency_line_size = ecag(EXTRACT_LINE_SIZE, level, ti);
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	this_leaf->ways_of_associativity = ecag(EXTRACT_ASSOCIATIVITY,
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						level, ti);
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	this_leaf->size = ecag(EXTRACT_SIZE, level, ti);
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	num_sets = this_leaf->size / this_leaf->coherency_line_size;
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	num_sets /= this_leaf->ways_of_associativity;
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	this_leaf->number_of_sets = num_sets;
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	cpumask_set_cpu(cpu, &this_leaf->shared_cpu_map);
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	if (!private)
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		this_leaf->disable_sysfs = true;
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}
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static void __init cache_build_info(void)
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int init_cache_level(unsigned int cpu)
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{
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	struct cache *cache, *next;
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	struct cpu_cacheinfo *this_cpu_ci = get_cpu_cacheinfo(cpu);
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	unsigned int level = 0, leaves = 0;
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	union cache_topology ct;
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	int level, private, rc;
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	enum cache_type ctype;
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	if (!this_cpu_ci)
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		return -EINVAL;
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	ct.raw = ecag(EXTRACT_TOPOLOGY, 0, 0);
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	for (level = 0; level < CACHE_MAX_LEVEL; level++) {
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		switch (ct.ci[level].scope) {
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		case CACHE_SCOPE_SHARED:
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			private = 0;
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	do {
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		ctype = get_cache_type(&ct.ci[0], level);
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		if (ctype == CACHE_TYPE_NOCACHE)
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			break;
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		case CACHE_SCOPE_PRIVATE:
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			private = 1;
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			break;
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		default:
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			return;
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		}
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		if (ct.ci[level].type == CACHE_TYPE_SEPARATE) {
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			rc  = cache_add(level, private, CACHE_TYPE_DATA);
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			rc |= cache_add(level, private, CACHE_TYPE_INSTRUCTION);
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		/* Separate instruction and data caches */
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		leaves += (ctype == CACHE_TYPE_SEPARATE) ? 2 : 1;
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	} while (++level < CACHE_MAX_LEVEL);
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	this_cpu_ci->num_levels = level;
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	this_cpu_ci->num_leaves = leaves;
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	return 0;
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}
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int populate_cache_leaves(unsigned int cpu)
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{
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	unsigned int level, idx, pvt;
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	union cache_topology ct;
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	enum cache_type ctype;
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	struct cpu_cacheinfo *this_cpu_ci = get_cpu_cacheinfo(cpu);
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	struct cacheinfo *this_leaf = this_cpu_ci->info_list;
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	ct.raw = ecag(EXTRACT_TOPOLOGY, 0, 0);
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	for (idx = 0, level = 0; level < this_cpu_ci->num_levels &&
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	     idx < this_cpu_ci->num_leaves; idx++, level++) {
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		if (!this_leaf)
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			return -EINVAL;
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		pvt = (ct.ci[level].scope == CACHE_SCOPE_PRIVATE) ? 1 : 0;
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		ctype = get_cache_type(&ct.ci[0], level);
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		if (ctype == CACHE_TYPE_SEPARATE) {
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			ci_leaf_init(this_leaf++, pvt, CACHE_TYPE_DATA, level);
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			ci_leaf_init(this_leaf++, pvt, CACHE_TYPE_INST, level);
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		} else {
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			rc = cache_add(level, private, ct.ci[level].type);
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			ci_leaf_init(this_leaf++, pvt, ctype, level);
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		}
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		if (rc)
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			goto error;
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	}
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	return;
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error:
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	list_for_each_entry_safe(cache, next, &cache_list, list) {
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		list_del(&cache->list);
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		kfree(cache);
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	}
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}
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static struct cache_dir *cache_create_cache_dir(int cpu)
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{
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	struct cache_dir *cache_dir;
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	struct kobject *kobj = NULL;
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	struct device *dev;
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	dev = get_cpu_device(cpu);
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	if (!dev)
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		goto out;
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	kobj = kobject_create_and_add("cache", &dev->kobj);
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	if (!kobj)
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		goto out;
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	cache_dir = kzalloc(sizeof(*cache_dir), GFP_KERNEL);
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	if (!cache_dir)
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		goto out;
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	cache_dir->kobj = kobj;
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	cache_dir_cpu[cpu] = cache_dir;
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	return cache_dir;
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out:
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	kobject_put(kobj);
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	return NULL;
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}
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static struct cache_index_dir *kobj_to_cache_index_dir(struct kobject *kobj)
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{
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	return container_of(kobj, struct cache_index_dir, kobj);
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}
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static void cache_index_release(struct kobject *kobj)
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{
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	struct cache_index_dir *index;
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	index = kobj_to_cache_index_dir(kobj);
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	kfree(index);
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}
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static ssize_t cache_index_show(struct kobject *kobj,
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				struct attribute *attr, char *buf)
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{
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	struct kobj_attribute *kobj_attr;
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	kobj_attr = container_of(attr, struct kobj_attribute, attr);
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	return kobj_attr->show(kobj, kobj_attr, buf);
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}
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#define DEFINE_CACHE_ATTR(_name, _format, _value)			\
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static ssize_t cache_##_name##_show(struct kobject *kobj,		\
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				    struct kobj_attribute *attr,	\
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				    char *buf)				\
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{									\
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	struct cache_index_dir *index;					\
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									\
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	index = kobj_to_cache_index_dir(kobj);				\
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	return sprintf(buf, _format, _value);				\
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}									\
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static struct kobj_attribute cache_##_name##_attr =			\
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	__ATTR(_name, 0444, cache_##_name##_show, NULL);
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DEFINE_CACHE_ATTR(size, "%luK\n", index->cache->size >> 10);
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DEFINE_CACHE_ATTR(coherency_line_size, "%u\n", index->cache->line_size);
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DEFINE_CACHE_ATTR(number_of_sets, "%u\n", index->cache->nr_sets);
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DEFINE_CACHE_ATTR(ways_of_associativity, "%u\n", index->cache->associativity);
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DEFINE_CACHE_ATTR(type, "%s\n", cache_type_string[index->cache->type]);
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DEFINE_CACHE_ATTR(level, "%d\n", index->cache->level);
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static ssize_t shared_cpu_map_func(struct kobject *kobj, int type, char *buf)
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		||||
{
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		||||
	struct cache_index_dir *index;
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	int len;
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	index = kobj_to_cache_index_dir(kobj);
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	len = type ?
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		cpulist_scnprintf(buf, PAGE_SIZE - 2, cpumask_of(index->cpu)) :
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		cpumask_scnprintf(buf, PAGE_SIZE - 2, cpumask_of(index->cpu));
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		||||
	len += sprintf(&buf[len], "\n");
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	return len;
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		||||
}
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		||||
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static ssize_t shared_cpu_map_show(struct kobject *kobj,
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				   struct kobj_attribute *attr, char *buf)
 | 
			
		||||
{
 | 
			
		||||
	return shared_cpu_map_func(kobj, 0, buf);
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		||||
}
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static struct kobj_attribute cache_shared_cpu_map_attr =
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	__ATTR(shared_cpu_map, 0444, shared_cpu_map_show, NULL);
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static ssize_t shared_cpu_list_show(struct kobject *kobj,
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				    struct kobj_attribute *attr, char *buf)
 | 
			
		||||
{
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	return shared_cpu_map_func(kobj, 1, buf);
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		||||
}
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static struct kobj_attribute cache_shared_cpu_list_attr =
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	__ATTR(shared_cpu_list, 0444, shared_cpu_list_show, NULL);
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		||||
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		||||
static struct attribute *cache_index_default_attrs[] = {
 | 
			
		||||
	&cache_type_attr.attr,
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	&cache_size_attr.attr,
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	&cache_number_of_sets_attr.attr,
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	&cache_ways_of_associativity_attr.attr,
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		||||
	&cache_level_attr.attr,
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	&cache_coherency_line_size_attr.attr,
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	&cache_shared_cpu_map_attr.attr,
 | 
			
		||||
	&cache_shared_cpu_list_attr.attr,
 | 
			
		||||
	NULL,
 | 
			
		||||
};
 | 
			
		||||
 | 
			
		||||
static const struct sysfs_ops cache_index_ops = {
 | 
			
		||||
	.show = cache_index_show,
 | 
			
		||||
};
 | 
			
		||||
 | 
			
		||||
static struct kobj_type cache_index_type = {
 | 
			
		||||
	.sysfs_ops = &cache_index_ops,
 | 
			
		||||
	.release = cache_index_release,
 | 
			
		||||
	.default_attrs = cache_index_default_attrs,
 | 
			
		||||
};
 | 
			
		||||
 | 
			
		||||
static int cache_create_index_dir(struct cache_dir *cache_dir,
 | 
			
		||||
				  struct cache *cache, int index, int cpu)
 | 
			
		||||
{
 | 
			
		||||
	struct cache_index_dir *index_dir;
 | 
			
		||||
	int rc;
 | 
			
		||||
 | 
			
		||||
	index_dir = kzalloc(sizeof(*index_dir), GFP_KERNEL);
 | 
			
		||||
	if (!index_dir)
 | 
			
		||||
		return -ENOMEM;
 | 
			
		||||
	index_dir->cache = cache;
 | 
			
		||||
	index_dir->cpu = cpu;
 | 
			
		||||
	rc = kobject_init_and_add(&index_dir->kobj, &cache_index_type,
 | 
			
		||||
				  cache_dir->kobj, "index%d", index);
 | 
			
		||||
	if (rc)
 | 
			
		||||
		goto out;
 | 
			
		||||
	index_dir->next = cache_dir->index;
 | 
			
		||||
	cache_dir->index = index_dir;
 | 
			
		||||
	return 0;
 | 
			
		||||
out:
 | 
			
		||||
	kfree(index_dir);
 | 
			
		||||
	return rc;
 | 
			
		||||
}
 | 
			
		||||
 | 
			
		||||
static int cache_add_cpu(int cpu)
 | 
			
		||||
{
 | 
			
		||||
	struct cache_dir *cache_dir;
 | 
			
		||||
	struct cache *cache;
 | 
			
		||||
	int rc, index = 0;
 | 
			
		||||
 | 
			
		||||
	if (list_empty(&cache_list))
 | 
			
		||||
		return 0;
 | 
			
		||||
	cache_dir = cache_create_cache_dir(cpu);
 | 
			
		||||
	if (!cache_dir)
 | 
			
		||||
		return -ENOMEM;
 | 
			
		||||
	list_for_each_entry(cache, &cache_list, list) {
 | 
			
		||||
		if (!cache->private)
 | 
			
		||||
			break;
 | 
			
		||||
		rc = cache_create_index_dir(cache_dir, cache, index, cpu);
 | 
			
		||||
		if (rc)
 | 
			
		||||
			return rc;
 | 
			
		||||
		index++;
 | 
			
		||||
	}
 | 
			
		||||
	return 0;
 | 
			
		||||
}
 | 
			
		||||
 | 
			
		||||
static void cache_remove_cpu(int cpu)
 | 
			
		||||
{
 | 
			
		||||
	struct cache_index_dir *index, *next;
 | 
			
		||||
	struct cache_dir *cache_dir;
 | 
			
		||||
 | 
			
		||||
	cache_dir = cache_dir_cpu[cpu];
 | 
			
		||||
	if (!cache_dir)
 | 
			
		||||
		return;
 | 
			
		||||
	index = cache_dir->index;
 | 
			
		||||
	while (index) {
 | 
			
		||||
		next = index->next;
 | 
			
		||||
		kobject_put(&index->kobj);
 | 
			
		||||
		index = next;
 | 
			
		||||
	}
 | 
			
		||||
	kobject_put(cache_dir->kobj);
 | 
			
		||||
	kfree(cache_dir);
 | 
			
		||||
	cache_dir_cpu[cpu] = NULL;
 | 
			
		||||
}
 | 
			
		||||
 | 
			
		||||
static int cache_hotplug(struct notifier_block *nfb, unsigned long action,
 | 
			
		||||
			 void *hcpu)
 | 
			
		||||
{
 | 
			
		||||
	int cpu = (long)hcpu;
 | 
			
		||||
	int rc = 0;
 | 
			
		||||
 | 
			
		||||
	switch (action & ~CPU_TASKS_FROZEN) {
 | 
			
		||||
	case CPU_ONLINE:
 | 
			
		||||
		rc = cache_add_cpu(cpu);
 | 
			
		||||
		if (rc)
 | 
			
		||||
			cache_remove_cpu(cpu);
 | 
			
		||||
		break;
 | 
			
		||||
	case CPU_DEAD:
 | 
			
		||||
		cache_remove_cpu(cpu);
 | 
			
		||||
		break;
 | 
			
		||||
	}
 | 
			
		||||
	return rc ? NOTIFY_BAD : NOTIFY_OK;
 | 
			
		||||
}
 | 
			
		||||
 | 
			
		||||
static int __init cache_init(void)
 | 
			
		||||
{
 | 
			
		||||
	int cpu;
 | 
			
		||||
 | 
			
		||||
	if (!test_facility(34))
 | 
			
		||||
		return 0;
 | 
			
		||||
	cache_build_info();
 | 
			
		||||
 | 
			
		||||
	cpu_notifier_register_begin();
 | 
			
		||||
	for_each_online_cpu(cpu)
 | 
			
		||||
		cache_add_cpu(cpu);
 | 
			
		||||
	__hotcpu_notifier(cache_hotplug, 0);
 | 
			
		||||
	cpu_notifier_register_done();
 | 
			
		||||
	return 0;
 | 
			
		||||
}
 | 
			
		||||
device_initcall(cache_init);
 | 
			
		||||
| 
						 | 
				
			
			
 | 
			
		|||
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