@@ -33,6 +33,7 @@ static char *DEFAULT_NAME = "disjoint";
3333struct ctl disjoint_ctl_root ;
3434static UTIL_ONCE_FLAG ctl_initialized = UTIL_ONCE_FLAG_INIT ;
3535
36+ // CTL: name attribute
3637static int CTL_READ_HANDLER (name )(void * ctx , umf_ctl_query_source_t source ,
3738 void * arg , size_t size ,
3839 umf_ctl_index_utlist_t * indexes ,
@@ -66,8 +67,30 @@ static int CTL_WRITE_HANDLER(name)(void *ctx, umf_ctl_query_source_t source,
6667 return 0 ;
6768}
6869
69- static const umf_ctl_node_t CTL_NODE (disjoint )[] = {CTL_LEAF_RW (name ),
70- CTL_NODE_END };
70+ // CTL: allocation counters
71+ static uint64_t allocation_balance = 0 ;
72+
73+ static int CTL_READ_HANDLER (allocation_balance )(
74+ void * ctx , umf_ctl_query_source_t source , void * arg , size_t size ,
75+ umf_ctl_index_utlist_t * indexes , const char * extra_name ,
76+ umf_ctl_query_type_t queryType ) {
77+ (void )ctx , (void )source , (void )size , (void )indexes , (void )extra_name ,
78+ (void )queryType ;
79+ // Calculate from pool buckets
80+ disjoint_pool_t * pool = (disjoint_pool_t * )ctx ;
81+ printf ("Calculating allocation balance for pool: %p\n" , (void * )pool );
82+ if (arg == NULL ) {
83+ return -1 ;
84+ }
85+ uint64_t * balance = (uint64_t * )arg ;
86+ * balance = 0 ;
87+ utils_atomic_load_acquire_u64 (& allocation_balance , balance );
88+
89+ return 0 ;
90+ }
91+
92+ static const umf_ctl_node_t CTL_NODE (disjoint )[] = {
93+ CTL_LEAF_RW (name ), CTL_LEAF_RO (allocation_balance ), CTL_NODE_END };
7194
7295static void initialize_disjoint_ctl (void ) {
7396 CTL_REGISTER_MODULE (& disjoint_ctl_root , disjoint );
@@ -579,7 +602,6 @@ static void *disjoint_pool_allocate(disjoint_pool_t *pool, size_t size) {
579602 }
580603
581604 void * ptr = NULL ;
582-
583605 if (size > pool -> params .max_poolable_size ) {
584606 umf_result_t ret =
585607 umfMemoryProviderAlloc (pool -> provider , size , 0 , & ptr );
@@ -755,7 +777,7 @@ umf_result_t disjoint_pool_initialize(umf_memory_provider_handle_t provider,
755777void * disjoint_pool_malloc (void * pool , size_t size ) {
756778 disjoint_pool_t * hPool = (disjoint_pool_t * )pool ;
757779 void * ptr = disjoint_pool_allocate (hPool , size );
758-
780+ utils_atomic_increment_u64 ( & allocation_balance );
759781 return ptr ;
760782}
761783
@@ -939,8 +961,9 @@ umf_result_t disjoint_pool_free(void *pool, void *ptr) {
939961 if (ret != UMF_RESULT_SUCCESS ) {
940962 TLS_last_allocation_error = ret ;
941963 LOG_ERR ("deallocation from the memory provider failed" );
964+ } else {
965+ utils_atomic_decrement_u64 (& allocation_balance );
942966 }
943-
944967 return ret ;
945968 }
946969
@@ -971,6 +994,9 @@ umf_result_t disjoint_pool_free(void *pool, void *ptr) {
971994 critnib_release (disjoint_pool -> known_slabs , ref_slab );
972995
973996 if (disjoint_pool -> params .pool_trace > 1 ) {
997+ printf ("Freeing %8zu %s bytes from %s -> %p\n" , bucket -> size ,
998+ disjoint_pool -> params .name , (to_pool ? "pool" : "provider" ),
999+ unaligned_ptr );
9741000 bucket -> free_count ++ ;
9751001 }
9761002
@@ -985,7 +1011,7 @@ umf_result_t disjoint_pool_free(void *pool, void *ptr) {
9851011 disjoint_pool_get_limits (disjoint_pool )-> total_size , name ,
9861012 disjoint_pool -> params .cur_pool_size );
9871013 }
988-
1014+ utils_atomic_decrement_u64 ( & allocation_balance );
9891015 return UMF_RESULT_SUCCESS ;
9901016}
9911017
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