*/
#include <svm/fifo_segment.h>
+#include <vppinfra/mem.h>
-/**
- * Initialize fifo segment shared header
- */
-int
-fifo_segment_init (fifo_segment_t * fs)
+static inline void *
+fsh_alloc_aligned (fifo_segment_header_t *fsh, uword size, uword align)
{
- fifo_segment_header_t *fsh;
- ssvm_shared_header_t *sh;
- void *oldheap;
+ uword cur_pos, cur_pos_align, new_pos;
- sh = fs->ssvm.sh;
- oldheap = ssvm_push_heap (sh);
+ cur_pos = clib_atomic_load_relax_n (&fsh->byte_index);
+ cur_pos_align = round_pow2_u64 (cur_pos, align);
+ size = round_pow2_u64 (size, align);
+ new_pos = cur_pos_align + size;
- fsh = clib_mem_alloc (sizeof (*fsh));
- clib_memset (fsh, 0, sizeof (*fsh));
- fs->h = sh->opaque[0] = fsh;
+ if (new_pos >= fsh->max_byte_index)
+ return 0;
- ssvm_pop_heap (oldheap);
+ while (!clib_atomic_cmp_and_swap_acq_relax (&fsh->byte_index, &cur_pos,
+ &new_pos, 1 /* weak */))
+ {
+ cur_pos_align = round_pow2_u64 (cur_pos, align);
+ new_pos = cur_pos_align + size;
+ if (new_pos >= fsh->max_byte_index)
+ return 0;
+ }
+ return uword_to_pointer ((u8 *) fsh + cur_pos_align, void *);
+}
- sh->ready = 1;
- return (0);
+static inline void *
+fsh_alloc (fifo_segment_header_t *fsh, uword size)
+{
+ return fsh_alloc_aligned (fsh, size, 8);
+}
+
+static inline fifo_segment_slice_t *
+fsh_slice_get (fifo_segment_header_t * fsh, u32 slice_index)
+{
+ return &fsh->slices[slice_index];
+}
+
+static inline fifo_slice_private_t *
+fs_slice_private_get (fifo_segment_t *fs, u32 slice_index)
+{
+ ASSERT (slice_index < fs->n_slices);
+ return &fs->slices[slice_index];
+}
+
+static char *fifo_segment_mem_status_strings[] = {
+#define _(sym,str) str,
+ foreach_segment_mem_status
+#undef _
+};
+
+static inline uword
+fsh_n_free_bytes (fifo_segment_header_t * fsh)
+{
+ uword cur_pos = clib_atomic_load_relax_n (&fsh->byte_index);
+ ASSERT (fsh->max_byte_index > cur_pos);
+ return fsh->max_byte_index - cur_pos;
+}
+
+static inline void
+fsh_cached_bytes_add (fifo_segment_header_t * fsh, uword size)
+{
+ clib_atomic_fetch_add_rel (&fsh->n_cached_bytes, size);
+}
+
+static inline void
+fsh_cached_bytes_sub (fifo_segment_header_t * fsh, uword size)
+{
+ clib_atomic_fetch_sub_rel (&fsh->n_cached_bytes, size);
+}
+
+static inline uword
+fsh_n_cached_bytes (fifo_segment_header_t * fsh)
+{
+ uword n_cached = clib_atomic_load_relax_n (&fsh->n_cached_bytes);
+ return n_cached;
+}
+
+static inline void
+fsh_active_fifos_update (fifo_segment_header_t * fsh, int inc)
+{
+ clib_atomic_fetch_add_rel (&fsh->n_active_fifos, inc);
+}
+
+static inline u32
+fsh_n_active_fifos (fifo_segment_header_t * fsh)
+{
+ return clib_atomic_load_relax_n (&fsh->n_active_fifos);
+}
+
+static inline uword
+fsh_virtual_mem (fifo_segment_header_t * fsh)
+{
+ fifo_segment_slice_t *fss;
+ uword total_vm = 0;
+ int i;
+
+ for (i = 0; i < fsh->n_slices; i++)
+ {
+ fss = fsh_slice_get (fsh, i);
+ total_vm += clib_atomic_load_relax_n (&fss->virtual_mem);
+ }
+ return total_vm;
+}
+
+void
+fsh_virtual_mem_update (fifo_segment_header_t * fsh, u32 slice_index,
+ int n_bytes)
+{
+ fifo_segment_slice_t *fss = fsh_slice_get (fsh, slice_index);
+ fss->virtual_mem += n_bytes;
+}
+
+static inline void
+fss_chunk_freelist_lock (fifo_segment_slice_t *fss)
+{
+ u32 free = 0;
+ while (!clib_atomic_cmp_and_swap_acq_relax_n (&fss->chunk_lock, &free, 1, 0))
+ {
+ /* atomic load limits number of compare_exchange executions */
+ while (clib_atomic_load_relax_n (&fss->chunk_lock))
+ CLIB_PAUSE ();
+ /* on failure, compare_exchange writes (*p)->lock into free */
+ free = 0;
+ }
+}
+
+static inline void
+fss_chunk_freelist_unlock (fifo_segment_slice_t *fss)
+{
+ /* Make sure all reads/writes are complete before releasing the lock */
+ clib_atomic_release (&fss->chunk_lock);
+}
+
+static inline int
+fss_chunk_fl_index_is_valid (fifo_segment_slice_t * fss, u32 fl_index)
+{
+ return (fl_index < FS_CHUNK_VEC_LEN);
+}
+
+static void
+fss_chunk_free_list_push (fifo_segment_header_t *fsh,
+ fifo_segment_slice_t *fss, u32 fl_index,
+ svm_fifo_chunk_t *c)
+{
+ fss_chunk_freelist_lock (fss);
+ c->next = fss->free_chunks[fl_index];
+ fss->free_chunks[fl_index] = fs_chunk_sptr (fsh, c);
+ fss_chunk_freelist_unlock (fss);
+}
+
+static void
+fss_chunk_free_list_push_list (fifo_segment_header_t *fsh,
+ fifo_segment_slice_t *fss, u32 fl_index,
+ svm_fifo_chunk_t *head, svm_fifo_chunk_t *tail)
+{
+ fss_chunk_freelist_lock (fss);
+ tail->next = fss->free_chunks[fl_index];
+ fss->free_chunks[fl_index] = fs_chunk_sptr (fsh, head);
+ fss_chunk_freelist_unlock (fss);
+}
+
+static svm_fifo_chunk_t *
+fss_chunk_free_list_pop (fifo_segment_header_t *fsh, fifo_segment_slice_t *fss,
+ u32 fl_index)
+{
+ svm_fifo_chunk_t *c;
+
+ ASSERT (fss_chunk_fl_index_is_valid (fss, fl_index));
+
+ fss_chunk_freelist_lock (fss);
+
+ if (!fss->free_chunks[fl_index])
+ {
+ fss_chunk_freelist_unlock (fss);
+ return 0;
+ }
+
+ c = fs_chunk_ptr (fsh, fss->free_chunks[fl_index]);
+ fss->free_chunks[fl_index] = c->next;
+
+ fss_chunk_freelist_unlock (fss);
+
+ return c;
+}
+
+static inline void
+pfss_fifo_add_active_list (fifo_slice_private_t *pfss, svm_fifo_t *f)
+{
+ if (pfss->active_fifos)
+ {
+ pfss->active_fifos->prev = f;
+ f->next = pfss->active_fifos;
+ }
+ pfss->active_fifos = f;
+}
+
+static inline void
+pfss_fifo_del_active_list (fifo_slice_private_t *pfss, svm_fifo_t *f)
+{
+ if (f->flags & SVM_FIFO_F_LL_TRACKED)
+ {
+ if (f->prev)
+ f->prev->next = f->next;
+ else
+ pfss->active_fifos = f->next;
+ if (f->next)
+ f->next->prev = f->prev;
+ }
+}
+
+static inline uword
+fss_fl_chunk_bytes (fifo_segment_slice_t * fss)
+{
+ return clib_atomic_load_relax_n (&fss->n_fl_chunk_bytes);
+}
+
+static inline void
+fss_fl_chunk_bytes_add (fifo_segment_slice_t * fss, uword size)
+{
+ clib_atomic_fetch_add_relax (&fss->n_fl_chunk_bytes, size);
+}
+
+static inline void
+fss_fl_chunk_bytes_sub (fifo_segment_slice_t * fss, uword size)
+{
+ clib_atomic_fetch_sub_relax (&fss->n_fl_chunk_bytes, size);
}
/**
- * Create a fifo segment in process-private memory
+ * Initialize fifo segment shared header
*/
-static int
-fifo_segment_create_process_private (fifo_segment_main_t * sm,
- fifo_segment_create_args_t * a)
+int
+fifo_segment_init (fifo_segment_t * fs)
{
- u32 pagesize = clib_mem_get_page_size ();
+ u32 align = 8, offset = 2 * 4096, slices_sz, i;
+ uword max_fifo, seg_start, seg_sz;
+ fifo_segment_header_t *fsh;
ssvm_shared_header_t *sh;
- fifo_segment_t *s;
- u32 rnd_size = 0;
- u8 *heap;
+ void *seg_data;
- pool_get (sm->segments, s);
- clib_memset (s, 0, sizeof (*s));
+ /* TODO remove ssvm heap entirely */
+ sh = fs->ssvm.sh;
- rnd_size = (a->segment_size + (pagesize - 1)) & ~pagesize;
+ seg_data = (u8 *) sh + offset;
+ seg_sz = sh->ssvm_size - offset;
-#if USE_DLMALLOC == 0
- heap = mheap_alloc (0, rnd_size);
- if (heap == 0)
- {
- clib_unix_warning ("mheap alloc");
- pool_put (sm->segments, s);
- return -1;
- }
- {
- mheap_t *heap_header;
- heap_header = mheap_header (heap);
- heap_header->flags |= MHEAP_FLAG_THREAD_SAFE;
- }
-#else
- heap = create_mspace (rnd_size, 1 /* locked */ );
-#endif
+ fs->n_slices = clib_max (fs->n_slices, 1);
+ slices_sz = sizeof (fifo_segment_slice_t) * fs->n_slices;
- s->ssvm.ssvm_size = rnd_size;
- s->ssvm.i_am_master = 1;
- s->ssvm.my_pid = getpid ();
- s->ssvm.name = format (0, "%s%c", a->segment_name, 0);
- s->ssvm.requested_va = ~0;
+ seg_start = round_pow2_u64 (pointer_to_uword (seg_data), align);
+ fsh = uword_to_pointer (seg_start, void *);
+ memset (fsh, 0, sizeof (*fsh) + slices_sz);
- /* Allocate a [sic] shared memory header, in process memory... */
- sh = clib_mem_alloc_aligned (sizeof (*sh), CLIB_CACHE_LINE_BYTES);
- s->ssvm.sh = sh;
+ fsh->byte_index = sizeof (*fsh) + slices_sz;
+ fsh->max_byte_index = seg_sz;
+ fsh->n_slices = fs->n_slices;
+ max_fifo = clib_min ((seg_sz - slices_sz) / 2, FIFO_SEGMENT_MAX_FIFO_SIZE);
+ fsh->max_log2_fifo_size = min_log2 (max_fifo);
+ fsh->n_cached_bytes = 0;
+ fsh->n_reserved_bytes = fsh->byte_index;
+ ASSERT (fsh->max_byte_index <= sh->ssvm_size - offset);
- clib_memset (sh, 0, sizeof (*sh));
- sh->heap = heap;
+ fs->max_byte_index = fsh->max_byte_index;
+ fs->h = sh->opaque[0] = fsh;
- fifo_segment_init (s);
- vec_add1 (a->new_segment_indices, s - sm->segments);
+ vec_validate (fs->slices, fs->n_slices - 1);
+ for (i = 0; i < fs->n_slices; i++)
+ fs->slices[i].fifos =
+ clib_mem_bulk_init (sizeof (svm_fifo_t), CLIB_CACHE_LINE_BYTES, 32);
+ sh->ready = 1;
return (0);
}
int
fifo_segment_create (fifo_segment_main_t * sm, fifo_segment_create_args_t * a)
{
- fifo_segment_t *s;
+ fifo_segment_t *fs;
+ uword baseva;
int rv;
- if (a->segment_type == SSVM_SEGMENT_PRIVATE)
- return fifo_segment_create_process_private (sm, a);
-
/* Allocate a fresh segment */
- pool_get (sm->segments, s);
- clib_memset (s, 0, sizeof (*s));
+ pool_get_zero (sm->segments, fs);
- s->ssvm.ssvm_size = a->segment_size;
- s->ssvm.i_am_master = 1;
- s->ssvm.my_pid = getpid ();
- s->ssvm.name = format (0, "%s%c", a->segment_name, 0);
- s->ssvm.requested_va = sm->next_baseva;
+ baseva = a->segment_type == SSVM_SEGMENT_PRIVATE ? ~0ULL : sm->next_baseva;
+ fs->ssvm.ssvm_size = a->segment_size;
+ fs->ssvm.is_server = 1;
+ fs->ssvm.my_pid = getpid ();
+ fs->ssvm.name = format (0, "%s%c", a->segment_name, 0);
+ fs->ssvm.requested_va = baseva;
- if ((rv = ssvm_master_init (&s->ssvm, a->segment_type)))
+ if ((rv = ssvm_server_init (&fs->ssvm, a->segment_type)))
{
- pool_put (sm->segments, s);
+ pool_put (sm->segments, fs);
return (rv);
}
/* Note: requested_va updated due to seg base addr randomization */
- sm->next_baseva = s->ssvm.sh->ssvm_va + a->segment_size;
+ sm->next_baseva = fs->ssvm.sh->ssvm_va + fs->ssvm.ssvm_size;
- fifo_segment_init (s);
- vec_add1 (a->new_segment_indices, s - sm->segments);
+ fifo_segment_init (fs);
+ vec_add1 (a->new_segment_indices, fs - sm->segments);
return (0);
}
int
fifo_segment_attach (fifo_segment_main_t * sm, fifo_segment_create_args_t * a)
{
- fifo_segment_t *s;
+ fifo_segment_header_t *fsh;
+ fifo_segment_t *fs;
int rv;
- pool_get_zero (sm->segments, s);
+ pool_get_zero (sm->segments, fs);
- s->ssvm.ssvm_size = a->segment_size;
- s->ssvm.my_pid = getpid ();
- s->ssvm.name = format (0, "%s%c", a->segment_name, 0);
- s->ssvm.requested_va = sm->next_baseva;
+ fs->ssvm.ssvm_size = a->segment_size;
+ fs->ssvm.my_pid = getpid ();
+ fs->ssvm.name = format (0, "%s%c", a->segment_name, 0);
+ fs->ssvm.requested_va = sm->next_baseva;
if (a->segment_type == SSVM_SEGMENT_MEMFD)
- s->ssvm.fd = a->memfd_fd;
+ fs->ssvm.fd = a->memfd_fd;
else
- s->ssvm.attach_timeout = sm->timeout_in_seconds;
+ fs->ssvm.attach_timeout = sm->timeout_in_seconds;
- if ((rv = ssvm_slave_init (&s->ssvm, a->segment_type)))
+ if ((rv = ssvm_client_init (&fs->ssvm, a->segment_type)))
{
- _vec_len (s) = vec_len (s) - 1;
+ _vec_len (fs) = vec_len (fs) - 1;
return (rv);
}
/* Fish the segment header */
- s->h = s->ssvm.sh->opaque[0];
+ fsh = fs->h = fs->ssvm.sh->opaque[0];
+
+ /* Probably a segment without fifos */
+ if (!fsh)
+ goto done;
- vec_add1 (a->new_segment_indices, s - sm->segments);
+ fs->max_byte_index = fsh->max_byte_index;
+ vec_validate (fs->slices, 0);
+ fs->slices[0].fifos =
+ clib_mem_bulk_init (sizeof (svm_fifo_t), CLIB_CACHE_LINE_BYTES, 32);
+
+done:
+ vec_add1 (a->new_segment_indices, fs - sm->segments);
return (0);
}
void
fifo_segment_delete (fifo_segment_main_t * sm, fifo_segment_t * s)
{
+ fifo_segment_cleanup (s);
ssvm_delete (&s->ssvm);
clib_memset (s, 0xfe, sizeof (*s));
pool_put (sm->segments, s);
return s - sm->segments;
}
-void *
-svm_fifo_segment_heap (fifo_segment_t * seg)
-{
- return seg->ssvm.sh->heap;
-}
-
fifo_segment_t *
fifo_segment_get_segment (fifo_segment_main_t * sm, u32 segment_index)
{
void
fifo_segment_info (fifo_segment_t * seg, char **address, size_t * size)
{
- if (ssvm_type (&seg->ssvm) == SSVM_SEGMENT_PRIVATE)
- {
-#if USE_DLMALLOC == 0
- mheap_t *heap_header;
-
- *address = pointer_to_uword (seg->ssvm.sh->heap);
- heap_header = mheap_header (seg->ssvm.sh->heap);
- *size = heap_header->max_size;
-#else
- mspace_get_address_and_size (seg->ssvm.sh->heap, address, size);
-#endif
- }
- else
- {
- *address = (char *) seg->ssvm.sh->ssvm_va;
- *size = seg->ssvm.ssvm_size;
- }
+ *address = (char *) seg->ssvm.sh->ssvm_va;
+ *size = seg->ssvm.ssvm_size;
}
void
sm->timeout_in_seconds = timeout_in_seconds;
}
-static void
-fifo_init_for_segment (fifo_segment_header_t * fsh, svm_fifo_t * f,
- u32 size, u32 fl_index)
+static inline u32
+fs_freelist_for_size (u32 size)
{
- f->freelist_index = fl_index;
- f->default_chunk.start_byte = 0;
- f->default_chunk.length = size;
- f->default_chunk.next = f->start_chunk = f->end_chunk = &f->default_chunk;
- f->head_chunk = f->tail_chunk = f->ooo_enq = f->ooo_deq = f->start_chunk;
- f->next = fsh->free_fifos[fl_index];
- fsh->free_fifos[fl_index] = f;
+ if (PREDICT_FALSE (size < FIFO_SEGMENT_MIN_FIFO_SIZE))
+ return 0;
+ return clib_min (max_log2 (size) - FIFO_SEGMENT_MIN_LOG2_FIFO_SIZE,
+ FS_CHUNK_VEC_LEN - 1);
}
-static inline int
-fs_free_list_for_size (u32 size)
+static inline u32
+fs_freelist_index_to_size (u32 fl_index)
{
- return max_log2 (size) - max_log2 (FIFO_SEGMENT_MIN_FIFO_SIZE);
+ return 1 << (fl_index + FIFO_SEGMENT_MIN_LOG2_FIFO_SIZE);
}
static inline int
-fs_fifo_size_is_valid (u32 size)
+fs_chunk_size_is_valid (fifo_segment_header_t * fsh, u32 size)
{
/*
* 4K minimum. It's not likely that anything good will happen
* with a smaller FIFO.
*/
- return size >= FIFO_SEGMENT_MIN_FIFO_SIZE
- && size <= FIFO_SEGMENT_MAX_FIFO_SIZE;
+ return size >= FIFO_SEGMENT_MIN_FIFO_SIZE &&
+ size <= (1ULL << fsh->max_log2_fifo_size);
}
-static void
-allocate_new_fifo_batch (fifo_segment_header_t * fsh,
- u32 data_size_in_bytes, int chunk_size)
+svm_fifo_chunk_t *
+fs_try_alloc_multi_chunk (fifo_segment_header_t * fsh,
+ fifo_segment_slice_t * fss, u32 data_bytes)
{
- u32 size, rounded_data_size;
- int i, fl_index;
- u8 *fifos_mem;
- svm_fifo_t *f;
+ u32 fl_index, fl_size, n_alloc = 0, req_bytes = data_bytes;
+ svm_fifo_chunk_t *c, *first = 0, *next;
+
+ fl_index = fs_freelist_for_size (req_bytes);
+ if (fl_index > 0)
+ fl_index -= 1;
+
+ fl_size = fs_freelist_index_to_size (fl_index);
+
+ while (req_bytes)
+ {
+ c = fss_chunk_free_list_pop (fsh, fss, fl_index);
+ if (c)
+ {
+ c->next = fs_chunk_sptr (fsh, first);
+ first = c;
+ n_alloc += fl_size;
+ req_bytes -= clib_min (fl_size, req_bytes);
+ }
+ else
+ {
+ /* Failed to allocate with smaller chunks */
+ if (fl_index == 0)
+ {
+ /* Free all chunks if any allocated */
+ c = first;
+ while (c)
+ {
+ fl_index = fs_freelist_for_size (c->length);
+ next = fs_chunk_ptr (fsh, c->next);
+ fss_chunk_free_list_push (fsh, fss, fl_index, c);
+ c = next;
+ }
+ n_alloc = 0;
+ first = 0;
+ /* As last attempt, try allocating a chunk larger than
+ * the requested size, if possible */
+ fl_index = fs_freelist_for_size (data_bytes) + 1;
+ if (!fss_chunk_fl_index_is_valid (fss, fl_index))
+ return 0;
+ first = fss_chunk_free_list_pop (fsh, fss, fl_index);
+ if (first)
+ {
+ first->next = 0;
+ n_alloc = fs_freelist_index_to_size (fl_index);
+ goto done;
+ }
+ return 0;
+ }
+ fl_index -= 1;
+ fl_size = fl_size >> 1;
+ }
+ }
- rounded_data_size = (1 << (max_log2 (data_size_in_bytes)));
- fl_index = fs_free_list_for_size (data_size_in_bytes);
+done:
+ fss_fl_chunk_bytes_sub (fss, n_alloc);
+ fsh_cached_bytes_sub (fsh, n_alloc);
+ return first;
+}
- /* Calculate space requirement $$$ round-up data_size_in_bytes */
- size = (sizeof (*f) + rounded_data_size) * chunk_size;
+static int
+fsh_try_alloc_fifo_hdr_batch (fifo_segment_header_t * fsh,
+ fifo_segment_slice_t * fss, u32 batch_size)
+{
+ svm_fifo_shared_t *f;
+ uword size;
+ u8 *fmem;
+ int i;
- /* Allocate fifo space. May fail. */
- fifos_mem = clib_mem_alloc_aligned_at_offset (size, CLIB_CACHE_LINE_BYTES,
- 0 /* align_offset */ ,
- 0 /* os_out_of_memory */ );
+ ASSERT (batch_size != 0);
- /* Out of space.. */
- if (fifos_mem == 0)
- return;
+ size = (uword) sizeof (*f) * batch_size;
+
+ fmem = fsh_alloc_aligned (fsh, size, CLIB_CACHE_LINE_BYTES);
+ if (fmem == 0)
+ return -1;
+
+ /* Carve fifo hdr space */
+ for (i = 0; i < batch_size; i++)
+ {
+ f = (svm_fifo_shared_t *) fmem;
+ memset (f, 0, sizeof (*f));
+ f->next = fss->free_fifos;
+ fss->free_fifos = f;
+ fmem += sizeof (*f);
+ }
+
+ return 0;
+}
+
+static int
+fsh_try_alloc_chunk_batch (fifo_segment_header_t * fsh,
+ fifo_segment_slice_t * fss,
+ u32 fl_index, u32 batch_size)
+{
+ svm_fifo_chunk_t *c, *head = 0, *tail;
+ uword size, total_chunk_bytes;
+ u32 rounded_data_size;
+ u8 *cmem;
+ int i;
+
+ ASSERT (batch_size != 0);
+
+ rounded_data_size = fs_freelist_index_to_size (fl_index);
+ total_chunk_bytes = (uword) batch_size *rounded_data_size;
+ size = (uword) (sizeof (*c) + rounded_data_size) * batch_size;
+
+ cmem = fsh_alloc_aligned (fsh, size, 8 /* chunk hdr is 24B */);
+ if (cmem == 0)
+ return -1;
+
+ /* Carve fifo + chunk space */
+ tail = c = (svm_fifo_chunk_t *) cmem;
+ for (i = 0; i < batch_size; i++)
+ {
+ c->start_byte = 0;
+ c->length = rounded_data_size;
+ c->next = fs_chunk_sptr (fsh, head);
+ head = c;
+ cmem += sizeof (*c) + rounded_data_size;
+ c = (svm_fifo_chunk_t *) cmem;
+ }
+
+ fss_chunk_free_list_push_list (fsh, fss, fl_index, head, tail);
+ fss->num_chunks[fl_index] += batch_size;
+ fss_fl_chunk_bytes_add (fss, total_chunk_bytes);
+ fsh_cached_bytes_add (fsh, total_chunk_bytes);
+
+ return 0;
+}
+
+static int
+fs_try_alloc_fifo_batch (fifo_segment_header_t * fsh,
+ fifo_segment_slice_t * fss,
+ u32 fl_index, u32 batch_size)
+{
+ if (fsh_try_alloc_fifo_hdr_batch (fsh, fss, batch_size))
+ return 0;
+ return fsh_try_alloc_chunk_batch (fsh, fss, fl_index, batch_size);
+}
- /* Carve fifo space */
- for (i = 0; i < chunk_size; i++)
+static svm_fifo_shared_t *
+fsh_try_alloc_fifo_hdr (fifo_segment_header_t *fsh, fifo_segment_slice_t *fss)
+{
+ svm_fifo_shared_t *f;
+
+ if (!fss->free_fifos)
+ {
+ if (fsh_try_alloc_fifo_hdr_batch (fsh, fss,
+ FIFO_SEGMENT_ALLOC_BATCH_SIZE))
+ return 0;
+ }
+
+ f = fss->free_fifos;
+ fss->free_fifos = f->next;
+ memset (f, 0, sizeof (*f));
+ return f;
+}
+
+static svm_fifo_chunk_t *
+fsh_try_alloc_chunk (fifo_segment_header_t * fsh,
+ fifo_segment_slice_t * fss, u32 data_bytes)
+{
+ svm_fifo_chunk_t *c;
+ u32 fl_index;
+
+ fl_index = fs_freelist_for_size (data_bytes);
+
+free_list:
+ c = fss_chunk_free_list_pop (fsh, fss, fl_index);
+ if (c)
+ {
+ c->next = 0;
+ fss_fl_chunk_bytes_sub (fss, fs_freelist_index_to_size (fl_index));
+ fsh_cached_bytes_sub (fsh, fs_freelist_index_to_size (fl_index));
+ }
+ else
{
- f = (svm_fifo_t *) fifos_mem;
- fifo_init_for_segment (fsh, f, rounded_data_size, fl_index);
- fifos_mem += sizeof (*f) + rounded_data_size;
+ u32 chunk_size, batch = FIFO_SEGMENT_ALLOC_BATCH_SIZE;
+ uword n_free;
+
+ chunk_size = fs_freelist_index_to_size (fl_index);
+ n_free = fsh_n_free_bytes (fsh);
+
+ if (chunk_size <= n_free)
+ {
+ batch = chunk_size * batch <= n_free ? batch : 1;
+ if (!fsh_try_alloc_chunk_batch (fsh, fss, fl_index, batch))
+ goto free_list;
+ }
+ /* Failed to allocate larger chunk, try to allocate multi-chunk
+ * that is close to what was actually requested */
+ if (data_bytes <= fss_fl_chunk_bytes (fss))
+ {
+ c = fs_try_alloc_multi_chunk (fsh, fss, data_bytes);
+ if (c)
+ goto done;
+ batch = n_free / FIFO_SEGMENT_MIN_FIFO_SIZE;
+ if (!batch || fsh_try_alloc_chunk_batch (fsh, fss, 0, batch))
+ goto done;
+ }
+ if (data_bytes <= fss_fl_chunk_bytes (fss) + n_free)
+ {
+ u32 min_size = FIFO_SEGMENT_MIN_FIFO_SIZE;
+
+ batch = (data_bytes - fss_fl_chunk_bytes (fss)) / min_size;
+ batch = clib_min (batch + 1, n_free / min_size);
+ if (fsh_try_alloc_chunk_batch (fsh, fss, 0, batch))
+ goto done;
+ c = fs_try_alloc_multi_chunk (fsh, fss, data_bytes);
+ }
}
+
+done:
+
+ return c;
}
/**
- * Allocate fifo in fifo segment
+ * Try to allocate new fifo
+ *
+ * Tries the following steps in order:
+ * - grab fifo and chunk from freelists
+ * - batch fifo and chunk allocation
+ * - single fifo allocation
+ * - grab multiple fifo chunks from freelists
*/
-svm_fifo_t *
-fifo_segment_alloc_fifo (fifo_segment_t * fs, u32 data_bytes,
- fifo_segment_ftype_t ftype)
+static svm_fifo_shared_t *
+fs_try_alloc_fifo (fifo_segment_header_t *fsh, u32 slice_index, u32 data_bytes)
{
- fifo_segment_header_t *fsh;
- ssvm_shared_header_t *sh;
- svm_fifo_t *f = 0;
- void *oldheap;
- int fl_index;
+ fifo_segment_slice_t *fss;
+ u32 fl_index, min_size;
+ svm_fifo_chunk_t *c;
+ svm_fifo_shared_t *sf = 0;
+
+ fss = fsh_slice_get (fsh, slice_index);
+ min_size = clib_max ((fsh->pct_first_alloc * data_bytes) / 100, 4096);
+ fl_index = fs_freelist_for_size (min_size);
+
+ if (!fss_chunk_fl_index_is_valid (fss, fl_index))
+ return 0;
- if (!fs_fifo_size_is_valid (data_bytes))
+ sf = fsh_try_alloc_fifo_hdr (fsh, fss);
+ if (!sf)
+ return 0;
+
+ c = fsh_try_alloc_chunk (fsh, fss, min_size);
+ if (!c)
{
- clib_warning ("fifo size out of range %d", data_bytes);
+ sf->next = fss->free_fifos;
+ fss->free_fifos = sf;
return 0;
}
- fl_index = fs_free_list_for_size (data_bytes);
+ sf->start_chunk = fs_chunk_sptr (fsh, c);
+ while (c->next)
+ c = fs_chunk_ptr (fsh, c->next);
+ sf->end_chunk = fs_chunk_sptr (fsh, c);
+ sf->size = data_bytes;
+ sf->slice_index = slice_index;
- sh = fs->ssvm.sh;
- ssvm_lock_non_recursive (sh, 1);
+ return sf;
+}
- fsh = (fifo_segment_header_t *) sh->opaque[0];
- vec_validate_init_empty (fsh->free_fifos, fl_index, 0);
- f = fsh->free_fifos[fl_index];
+svm_fifo_chunk_t *
+fsh_alloc_chunk (fifo_segment_header_t * fsh, u32 slice_index, u32 chunk_size)
+{
+ fifo_segment_slice_t *fss;
+ svm_fifo_chunk_t *c;
- /* Try to allocate batch of fifos */
- if (PREDICT_FALSE (!f))
- {
- oldheap = ssvm_push_heap (sh);
- allocate_new_fifo_batch (fsh, data_bytes,
- FIFO_SEGMENT_ALLOC_BATCH_SIZE);
- ssvm_pop_heap (oldheap);
- f = fsh->free_fifos[fl_index];
- }
- if (PREDICT_TRUE (f != 0))
+ fss = fsh_slice_get (fsh, slice_index);
+ c = fsh_try_alloc_chunk (fsh, fss, chunk_size);
+
+ return c;
+}
+
+static void
+fsh_slice_collect_chunks (fifo_segment_header_t * fsh,
+ fifo_segment_slice_t * fss, svm_fifo_chunk_t * c)
+{
+ u32 n_collect = 0, fl_index;
+ svm_fifo_chunk_t *next;
+
+ while (c)
{
- fsh->free_fifos[fl_index] = f->next;
- /* (re)initialize the fifo, as in svm_fifo_create */
- memset (f, 0, sizeof (*f));
- svm_fifo_init (f, data_bytes);
- goto found;
+ CLIB_MEM_UNPOISON (c, sizeof (*c));
+ next = fs_chunk_ptr (fsh, c->next);
+ fl_index = fs_freelist_for_size (c->length);
+ fss_chunk_free_list_push (fsh, fss, fl_index, c);
+ n_collect += fs_freelist_index_to_size (fl_index);
+ c = next;
}
- /* Failed to allocate batch, try just one fifo. This can also fail,
- * in which case, create another segment */
- oldheap = ssvm_push_heap (sh);
- f = svm_fifo_create (data_bytes);
- ssvm_pop_heap (oldheap);
+ fss_fl_chunk_bytes_add (fss, n_collect);
+ fsh_cached_bytes_add (fsh, n_collect);
+}
+
+void
+fsh_collect_chunks (fifo_segment_header_t * fsh, u32 slice_index,
+ svm_fifo_chunk_t * c)
+{
+ fifo_segment_slice_t *fss;
+ fss = fsh_slice_get (fsh, slice_index);
+ fsh_slice_collect_chunks (fsh, fss, c);
+}
+
+svm_fifo_t *
+fs_fifo_alloc (fifo_segment_t *fs, u32 slice_index)
+{
+ fifo_slice_private_t *pfss = &fs->slices[slice_index];
+ svm_fifo_t *f;
+
+ f = clib_mem_bulk_alloc (pfss->fifos);
+ clib_memset (f, 0, sizeof (*f));
+ return f;
+}
+
+void
+fs_fifo_free (fifo_segment_t *fs, svm_fifo_t *f)
+{
+ u32 slice_index = f->shr->slice_index;
+ fifo_slice_private_t *pfss;
+
+ pfss = &fs->slices[slice_index];
+ clib_mem_bulk_free (pfss->fifos, f);
+}
+
+void
+fifo_segment_cleanup (fifo_segment_t *fs)
+{
+ int slice_index;
+ svm_msg_q_t *mq = 0;
+
+ for (slice_index = 0; slice_index < fs->n_slices; slice_index++)
+ clib_mem_bulk_destroy (fs->slices[slice_index].fifos);
+
+ vec_foreach (fs->mqs, mq)
+ vec_free (mq->rings);
+
+ vec_free (fs->mqs);
+}
+
+/**
+ * Allocate fifo in fifo segment
+ */
+svm_fifo_t *
+fifo_segment_alloc_fifo_w_slice (fifo_segment_t * fs, u32 slice_index,
+ u32 data_bytes, fifo_segment_ftype_t ftype)
+{
+ fifo_segment_header_t *fsh = fs->h;
+ fifo_slice_private_t *pfss;
+ fifo_segment_slice_t *fss;
+ svm_fifo_shared_t *sf;
+ svm_fifo_t *f = 0;
- if (PREDICT_FALSE (f == 0))
+ ASSERT (slice_index < fs->n_slices);
+
+ if (PREDICT_FALSE (data_bytes > 1 << fsh->max_log2_fifo_size))
+ return 0;
+
+ sf = fs_try_alloc_fifo (fsh, slice_index, data_bytes);
+ if (!sf)
goto done;
- f->freelist_index = fl_index;
+ f = fs_fifo_alloc (fs, slice_index);
+ f->fs_hdr = fsh;
+ f->shr = sf;
+
+ svm_fifo_init (f, data_bytes);
+
+ fss = fsh_slice_get (fsh, slice_index);
+ pfss = fs_slice_private_get (fs, slice_index);
-found:
/* If rx fifo type add to active fifos list. When cleaning up segment,
* we need a list of active sessions that should be disconnected. Since
* both rx and tx fifos keep pointers to the session, it's enough to track
* only one. */
if (ftype == FIFO_SEGMENT_RX_FIFO)
{
- if (fsh->fifos)
- {
- fsh->fifos->prev = f;
- f->next = fsh->fifos;
- }
- fsh->fifos = f;
+ pfss_fifo_add_active_list (pfss, f);
f->flags |= SVM_FIFO_F_LL_TRACKED;
}
- fsh->n_active_fifos++;
+
+ fsh_active_fifos_update (fsh, 1);
+ fss->virtual_mem += svm_fifo_size (f);
done:
- ssvm_unlock_non_recursive (sh);
return (f);
}
+svm_fifo_t *
+fifo_segment_alloc_fifo_w_shared (fifo_segment_t *fs, svm_fifo_shared_t *sf)
+{
+ svm_fifo_t *f = fs_fifo_alloc (fs, 0);
+ f->fs_hdr = fs->h;
+ f->shr = sf;
+
+ f->ooos_list_head = OOO_SEGMENT_INVALID_INDEX;
+ f->segment_index = SVM_FIFO_INVALID_INDEX;
+ f->refcnt = 1;
+ return f;
+}
+
/**
* Free fifo allocated in fifo segment
*/
void
-fifo_segment_free_fifo (fifo_segment_t * s, svm_fifo_t * f)
+fifo_segment_free_fifo (fifo_segment_t * fs, svm_fifo_t * f)
{
- fifo_segment_header_t *fsh;
- ssvm_shared_header_t *sh;
- int fl_index;
+ fifo_segment_header_t *fsh = fs->h;
+ fifo_slice_private_t *pfss;
+ fifo_segment_slice_t *fss;
+ svm_fifo_shared_t *sf;
ASSERT (f->refcnt > 0);
if (--f->refcnt > 0)
return;
- sh = s->ssvm.sh;
- fsh = (fifo_segment_header_t *) sh->opaque[0];
- fl_index = f->freelist_index;
+ /*
+ * Cleanup shared state
+ */
+
+ sf = f->shr;
+ fss = fsh_slice_get (fsh, sf->slice_index);
+ pfss = fs_slice_private_get (fs, sf->slice_index);
+
+ /* Free fifo chunks */
+ fsh_slice_collect_chunks (fsh, fss, fs_chunk_ptr (fsh, f->shr->start_chunk));
+
+ sf->start_chunk = sf->end_chunk = 0;
+ sf->head_chunk = sf->tail_chunk = 0;
+
+ /* Add to free list */
+ sf->next = fss->free_fifos;
+ fss->free_fifos = sf;
- ASSERT (fl_index < vec_len (fsh->free_fifos));
+ fss->virtual_mem -= svm_fifo_size (f);
- ssvm_lock_non_recursive (sh, 2);
+ /*
+ * Cleanup private state
+ */
/* Remove from active list. Only rx fifos are tracked */
if (f->flags & SVM_FIFO_F_LL_TRACKED)
{
- if (f->prev)
- f->prev->next = f->next;
- else
- fsh->fifos = f->next;
- if (f->next)
- f->next->prev = f->prev;
+ pfss_fifo_del_active_list (pfss, f);
f->flags &= ~SVM_FIFO_F_LL_TRACKED;
}
- /* Add to free list */
- f->next = fsh->free_fifos[fl_index];
- f->prev = 0;
- fsh->free_fifos[fl_index] = f;
+ svm_fifo_free_chunk_lookup (f);
+ svm_fifo_free_ooo_data (f);
if (CLIB_DEBUG)
{
- f->master_session_index = ~0;
+ sf->master_session_index = ~0;
f->master_thread_index = ~0;
}
- fsh->n_active_fifos--;
- ssvm_unlock_non_recursive (sh);
+ f->ooo_enq = f->ooo_deq = 0;
+ f->prev = 0;
+
+ fs_fifo_free (fs, f);
+
+ fsh_active_fifos_update (fsh, -1);
+}
+
+void
+fifo_segment_detach_fifo (fifo_segment_t * fs, svm_fifo_t * f)
+{
+ fifo_slice_private_t *pfss;
+ fifo_segment_slice_t *fss;
+ svm_fifo_chunk_t *c;
+ u32 fl_index;
+
+ ASSERT (f->refcnt == 1);
+
+ fss = fsh_slice_get (fs->h, f->shr->slice_index);
+ pfss = fs_slice_private_get (fs, f->shr->slice_index);
+ fss->virtual_mem -= svm_fifo_size (f);
+ if (f->flags & SVM_FIFO_F_LL_TRACKED)
+ pfss_fifo_del_active_list (pfss, f);
+
+ c = fs_chunk_ptr (fs->h, f->shr->start_chunk);
+ while (c)
+ {
+ fl_index = fs_freelist_for_size (c->length);
+ clib_atomic_fetch_sub_rel (&fss->num_chunks[fl_index], 1);
+ c = fs_chunk_ptr (fs->h, c->next);
+ }
+}
+
+void
+fifo_segment_attach_fifo (fifo_segment_t * fs, svm_fifo_t * f,
+ u32 slice_index)
+{
+ fifo_slice_private_t *pfss;
+ fifo_segment_slice_t *fss;
+ svm_fifo_chunk_t *c;
+ u32 fl_index;
+
+ f->shr->slice_index = slice_index;
+ fss = fsh_slice_get (fs->h, f->shr->slice_index);
+ pfss = fs_slice_private_get (fs, f->shr->slice_index);
+ fss->virtual_mem += svm_fifo_size (f);
+ if (f->flags & SVM_FIFO_F_LL_TRACKED)
+ pfss_fifo_add_active_list (pfss, f);
+
+ c = fs_chunk_ptr (fs->h, f->shr->start_chunk);
+ while (c)
+ {
+ fl_index = fs_freelist_for_size (c->length);
+ clib_atomic_fetch_add_rel (&fss->num_chunks[fl_index], 1);
+ c = fs_chunk_ptr (fs->h, c->next);
+ }
+}
+
+svm_msg_q_t *
+fifo_segment_msg_q_alloc (fifo_segment_t *fs, u32 mq_index,
+ svm_msg_q_cfg_t *cfg)
+{
+ fifo_segment_header_t *fsh = fs->h;
+ svm_msg_q_shared_t *smq;
+ svm_msg_q_t *mq;
+ void *base;
+ u32 size;
+
+ if (!fs->mqs)
+ {
+ u32 n_mqs = clib_max (fs->h->n_mqs, 1);
+ vec_validate (fs->mqs, n_mqs - 1);
+ }
+
+ size = svm_msg_q_size_to_alloc (cfg);
+ base = fsh_alloc_aligned (fsh, size, 8);
+ fsh->n_reserved_bytes += size;
+
+ smq = svm_msg_q_init (base, cfg);
+ mq = vec_elt_at_index (fs->mqs, mq_index);
+ svm_msg_q_attach (mq, smq);
+
+ return mq;
+}
+
+svm_msg_q_t *
+fifo_segment_msg_q_attach (fifo_segment_t *fs, uword offset, u32 mq_index)
+{
+ svm_msg_q_t *mq;
+
+ if (!fs->mqs)
+ {
+ u32 n_mqs = clib_max (fs->h->n_mqs, 1);
+ vec_validate (fs->mqs, n_mqs - 1);
+ }
+
+ mq = vec_elt_at_index (fs->mqs, mq_index);
+
+ if (!mq->q)
+ {
+ svm_msg_q_shared_t *smq;
+ smq = (svm_msg_q_shared_t *) ((u8 *) fs->h + offset);
+ svm_msg_q_attach (mq, smq);
+ }
+
+ ASSERT (fifo_segment_msg_q_offset (fs, mq_index) == offset);
+
+ return mq;
+}
+
+uword
+fifo_segment_msg_q_offset (fifo_segment_t *fs, u32 mq_index)
+{
+ svm_msg_q_t *mq = vec_elt_at_index (fs->mqs, mq_index);
+
+ if (mq->q == 0)
+ return ~0ULL;
+
+ return (uword) ((u8 *) mq->q - (u8 *) fs->h) - sizeof (svm_msg_q_shared_t);
+}
+
+int
+fifo_segment_prealloc_fifo_hdrs (fifo_segment_t * fs, u32 slice_index,
+ u32 batch_size)
+{
+ fifo_segment_header_t *fsh = fs->h;
+ fifo_segment_slice_t *fss;
+
+ fss = fsh_slice_get (fsh, slice_index);
+ return fsh_try_alloc_fifo_hdr_batch (fsh, fss, batch_size);
+}
+
+int
+fifo_segment_prealloc_fifo_chunks (fifo_segment_t * fs, u32 slice_index,
+ u32 chunk_size, u32 batch_size)
+{
+ fifo_segment_header_t *fsh = fs->h;
+ fifo_segment_slice_t *fss;
+ u32 fl_index;
+
+ if (!fs_chunk_size_is_valid (fsh, chunk_size))
+ {
+ clib_warning ("chunk size out of range %d", chunk_size);
+ return -1;
+ }
+
+ fl_index = fs_freelist_for_size (chunk_size);
+ fss = fsh_slice_get (fsh, slice_index);
+
+ return fsh_try_alloc_chunk_batch (fsh, fss, fl_index, batch_size);
}
/**
u32 rx_fifo_size, u32 tx_fifo_size,
u32 * n_fifo_pairs)
{
- u32 rx_rounded_data_size, tx_rounded_data_size, pair_size;
- u32 rx_fifos_size, tx_fifos_size, pairs_to_allocate;
- ssvm_shared_header_t *sh = fs->ssvm.sh;
+ u32 rx_rounded_data_size, tx_rounded_data_size, pair_size, pairs_to_alloc;
+ u32 hdrs, pairs_per_slice, alloc_now;
fifo_segment_header_t *fsh = fs->h;
- int i, rx_fl_index, tx_fl_index;
- u8 *rx_fifo_mem, *tx_fifo_mem;
+ int rx_fl_index, tx_fl_index, i;
+ fifo_segment_slice_t *fss;
uword space_available;
- void *oldheap;
- svm_fifo_t *f;
/* Parameter check */
if (rx_fifo_size == 0 || tx_fifo_size == 0 || *n_fifo_pairs == 0)
return;
- if (!fs_fifo_size_is_valid (rx_fifo_size))
+ if (!fs_chunk_size_is_valid (fsh, rx_fifo_size))
{
clib_warning ("rx fifo_size out of range %d", rx_fifo_size);
return;
}
- if (!fs_fifo_size_is_valid (tx_fifo_size))
+ if (!fs_chunk_size_is_valid (fsh, tx_fifo_size))
{
clib_warning ("tx fifo_size out of range %d", tx_fifo_size);
return;
}
rx_rounded_data_size = (1 << (max_log2 (rx_fifo_size)));
- rx_fl_index = fs_free_list_for_size (rx_fifo_size);
+ rx_fl_index = fs_freelist_for_size (rx_fifo_size);
tx_rounded_data_size = (1 << (max_log2 (tx_fifo_size)));
- tx_fl_index = fs_free_list_for_size (tx_fifo_size);
+ tx_fl_index = fs_freelist_for_size (tx_fifo_size);
+
+ hdrs = sizeof (svm_fifo_t) + sizeof (svm_fifo_chunk_t);
/* Calculate space requirements */
- pair_size = 2 * sizeof (*f) + rx_rounded_data_size + tx_rounded_data_size;
-#if USE_DLMALLOC == 0
- space_available = fs->ssvm.ssvm_size - mheap_bytes (sh->heap);
-#else
- space_available = fs->ssvm.ssvm_size - mspace_usable_size (sh->heap);
-#endif
-
- pairs_to_allocate = clib_min (space_available / pair_size, *n_fifo_pairs);
- rx_fifos_size = (sizeof (*f) + rx_rounded_data_size) * pairs_to_allocate;
- tx_fifos_size = (sizeof (*f) + tx_rounded_data_size) * pairs_to_allocate;
-
- vec_validate_init_empty (fsh->free_fifos,
- clib_max (rx_fl_index, tx_fl_index), 0);
-
- oldheap = ssvm_push_heap (sh);
-
- /* Allocate rx and tx fifo memory. May fail. */
- rx_fifo_mem = clib_mem_alloc_aligned_at_offset (rx_fifos_size,
- CLIB_CACHE_LINE_BYTES,
- 0 /* align_offset */ ,
- 0 /* os_out_of_memory */ );
- tx_fifo_mem = clib_mem_alloc_aligned_at_offset (tx_fifos_size,
- CLIB_CACHE_LINE_BYTES,
- 0 /* align_offset */ ,
- 0 /* os_out_of_memory */ );
-
- /* Make sure it worked. Clean up if it didn't... */
- if (rx_fifo_mem == 0 || tx_fifo_mem == 0)
- {
- rx_fifo_mem ? clib_mem_free (rx_fifo_mem) : clib_mem_free (tx_fifo_mem);
- clib_warning ("fifo preallocation failure: rx size %d tx size %u "
- "npairs %d", rx_fifo_size, tx_fifo_size, *n_fifo_pairs);
- ssvm_pop_heap (oldheap);
- return;
- }
+ pair_size = 2 * hdrs + rx_rounded_data_size + tx_rounded_data_size;
+ space_available = fsh_n_free_bytes (fsh);
+ pairs_to_alloc = space_available / pair_size;
+ pairs_to_alloc = clib_min (pairs_to_alloc, *n_fifo_pairs);
+ pairs_per_slice = pairs_to_alloc / fs->n_slices;
+ pairs_per_slice += pairs_to_alloc % fs->n_slices ? 1 : 0;
+
+ if (!pairs_per_slice)
+ return;
- /* Carve rx and tx fifo memory */
- for (i = 0; i < pairs_to_allocate; i++)
+ for (i = 0; i < fs->n_slices; i++)
{
- f = (svm_fifo_t *) rx_fifo_mem;
- fifo_init_for_segment (fsh, f, rx_rounded_data_size, rx_fl_index);
- rx_fifo_mem += sizeof (*f) + rx_rounded_data_size;
-
- f = (svm_fifo_t *) tx_fifo_mem;
- fifo_init_for_segment (fsh, f, tx_rounded_data_size, tx_fl_index);
- tx_fifo_mem += sizeof (*f) + tx_rounded_data_size;
+ alloc_now = clib_min (pairs_per_slice, *n_fifo_pairs);
+ if (0 == alloc_now)
+ break;
+
+ fss = fsh_slice_get (fsh, i);
+ if (fs_try_alloc_fifo_batch (fsh, fss, rx_fl_index, alloc_now))
+ clib_warning ("rx prealloc failed: pairs %u", alloc_now);
+ if (fs_try_alloc_fifo_batch (fsh, fss, tx_fl_index, alloc_now))
+ clib_warning ("tx prealloc failed: pairs %u", alloc_now);
+
+ /* Account for the pairs allocated */
+ *n_fifo_pairs -= alloc_now;
}
-
- /* Account for the pairs allocated */
- *n_fifo_pairs -= pairs_to_allocate;
- ssvm_pop_heap (oldheap);
}
/**
u32
fifo_segment_num_fifos (fifo_segment_t * fs)
{
- return fs->h->n_active_fifos;
+ return fsh_n_active_fifos (fs->h);
+}
+
+static u32
+fs_slice_num_free_fifos (fifo_segment_slice_t * fss)
+{
+ svm_fifo_shared_t *f;
+ u32 count = 0;
+
+ f = fss->free_fifos;
+ if (f == 0)
+ return 0;
+
+ while (f)
+ {
+ f = f->next;
+ count++;
+ }
+ return count;
}
u32
-fifo_segment_num_free_fifos (fifo_segment_t * fs, u32 fifo_size_in_bytes)
+fifo_segment_num_free_fifos (fifo_segment_t * fs)
{
- u32 count = 0, rounded_data_size, fl_index;
- fifo_segment_header_t *fsh;
- ssvm_shared_header_t *sh;
- svm_fifo_t *f;
- int i;
+ fifo_segment_header_t *fsh = fs->h;
+ fifo_segment_slice_t *fss;
+ int slice_index;
+ u32 count = 0;
- sh = fs->ssvm.sh;
- fsh = (fifo_segment_header_t *) sh->opaque[0];
+ for (slice_index = 0; slice_index < fs->n_slices; slice_index++)
+ {
+ fss = fsh_slice_get (fsh, slice_index);
+ count += fs_slice_num_free_fifos (fss);
+ }
+ return count;
+}
+
+static u32
+fs_slice_num_free_chunks (fifo_segment_header_t *fsh,
+ fifo_segment_slice_t *fss, u32 size)
+{
+ u32 count = 0, rounded_size, fl_index;
+ svm_fifo_chunk_t *c;
+ int i;
- /* Count all free fifos? */
- if (fifo_size_in_bytes == ~0)
+ /* Count all free chunks? */
+ if (size == ~0)
{
- for (i = 0; i < vec_len (fsh->free_fifos); i++)
+ for (i = 0; i < FS_CHUNK_VEC_LEN; i++)
{
- f = fsh->free_fifos[i];
- if (f == 0)
+ c = fs_chunk_ptr (fsh, fss->free_chunks[i]);
+ if (c == 0)
continue;
- while (f)
+ while (c)
{
- f = f->next;
+ c = fs_chunk_ptr (fsh, c->next);
count++;
}
}
return count;
}
- rounded_data_size = (1 << (max_log2 (fifo_size_in_bytes)));
- fl_index = fs_free_list_for_size (rounded_data_size);
+ rounded_size = (1 << (max_log2 (size)));
+ fl_index = fs_freelist_for_size (rounded_size);
- if (fl_index >= vec_len (fsh->free_fifos))
+ if (fl_index >= FS_CHUNK_VEC_LEN)
return 0;
- f = fsh->free_fifos[fl_index];
- if (f == 0)
+ c = fs_chunk_ptr (fsh, fss->free_chunks[fl_index]);
+ if (c == 0)
return 0;
- while (f)
+ while (c)
{
- f = f->next;
+ c = fs_chunk_ptr (fsh, c->next);
count++;
}
return count;
}
+u32
+fifo_segment_num_free_chunks (fifo_segment_t * fs, u32 size)
+{
+ fifo_segment_header_t *fsh = fs->h;
+ fifo_segment_slice_t *fss;
+ int slice_index;
+ u32 count = 0;
+
+ for (slice_index = 0; slice_index < fs->n_slices; slice_index++)
+ {
+ fss = fsh_slice_get (fsh, slice_index);
+ count += fs_slice_num_free_chunks (fsh, fss, size);
+ }
+ return count;
+}
+
+uword
+fifo_segment_size (fifo_segment_t * fs)
+{
+ return fs->h->max_byte_index - fs->h->n_reserved_bytes;
+}
+
+u8
+fsh_has_reached_mem_limit (fifo_segment_header_t * fsh)
+{
+ return (fsh->flags & FIFO_SEGMENT_F_MEM_LIMIT) ? 1 : 0;
+}
+
+void
+fsh_reset_mem_limit (fifo_segment_header_t * fsh)
+{
+ fsh->flags &= ~FIFO_SEGMENT_F_MEM_LIMIT;
+}
+
+void *
+fifo_segment_alloc (fifo_segment_t *fs, uword size)
+{
+ void *rv = fsh_alloc (fs->h, size);
+ /* Mark externally allocated bytes as reserved. This helps
+ * @ref fifo_segment_size report bytes used only for fifos */
+ fs->h->n_reserved_bytes += size;
+ return rv;
+}
+
+uword
+fifo_segment_free_bytes (fifo_segment_t * fs)
+{
+ return fsh_n_free_bytes (fs->h);
+}
+
+uword
+fifo_segment_cached_bytes (fifo_segment_t * fs)
+{
+ return fsh_n_cached_bytes (fs->h);
+}
+
+uword
+fifo_segment_available_bytes (fifo_segment_t * fs)
+{
+ return fsh_n_free_bytes (fs->h) + fsh_n_cached_bytes (fs->h);
+}
+
+uword
+fifo_segment_fl_chunk_bytes (fifo_segment_t * fs)
+{
+ fifo_segment_header_t *fsh = fs->h;
+ fifo_segment_slice_t *fss;
+ uword n_bytes = 0;
+ int slice_index;
+
+ for (slice_index = 0; slice_index < fs->n_slices; slice_index++)
+ {
+ fss = fsh_slice_get (fsh, slice_index);
+ n_bytes += fss_fl_chunk_bytes (fss);
+ }
+
+ return n_bytes;
+}
+
u8
fifo_segment_has_fifos (fifo_segment_t * fs)
{
- return fs->h->fifos != 0;
+ return (fsh_n_active_fifos (fs->h) != 0);
}
svm_fifo_t *
-fifo_segment_get_fifo_list (fifo_segment_t * fs)
+fifo_segment_get_slice_fifo_list (fifo_segment_t * fs, u32 slice_index)
+{
+ fifo_slice_private_t *pfss;
+
+ pfss = fs_slice_private_get (fs, slice_index);
+ return pfss->active_fifos;
+}
+
+u8
+fifo_segment_get_mem_usage (fifo_segment_t * fs)
+{
+ uword size, in_use;
+
+ size = fifo_segment_size (fs);
+ in_use =
+ size - fifo_segment_free_bytes (fs) - fifo_segment_cached_bytes (fs);
+ return (in_use * 100) / size;
+}
+
+fifo_segment_mem_status_t
+fifo_segment_determine_status (fifo_segment_header_t * fsh, u8 usage)
+{
+ if (!fsh->high_watermark || !fsh->low_watermark)
+ return MEMORY_PRESSURE_NO_PRESSURE;
+
+ /* once the no-memory is detected, the status continues
+ * until memory usage gets below the high watermark
+ */
+ if (fsh_has_reached_mem_limit (fsh))
+ {
+ if (usage >= fsh->high_watermark)
+ return MEMORY_PRESSURE_NO_MEMORY;
+ else
+ fsh_reset_mem_limit (fsh);
+ }
+
+ if (usage >= fsh->high_watermark)
+ return MEMORY_PRESSURE_HIGH_PRESSURE;
+
+ else if (usage >= fsh->low_watermark)
+ return MEMORY_PRESSURE_LOW_PRESSURE;
+
+ return MEMORY_PRESSURE_NO_PRESSURE;
+}
+
+fifo_segment_mem_status_t
+fifo_segment_get_mem_status (fifo_segment_t * fs)
{
- return fs->h->fifos;
+ fifo_segment_header_t *fsh = fs->h;
+ u8 usage = fifo_segment_get_mem_usage (fs);
+
+ return fifo_segment_determine_status (fsh, usage);
}
u8 *
ssvm_segment_type_t st = ssvm_type (&sp->ssvm);
if (st == SSVM_SEGMENT_PRIVATE)
- s = format (s, "%s", "private-heap");
+ s = format (s, "%s", "private");
else if (st == SSVM_SEGMENT_MEMFD)
s = format (s, "%s", "memfd");
else if (st == SSVM_SEGMENT_SHM)
u8 *
format_fifo_segment (u8 * s, va_list * args)
{
- fifo_segment_t *sp = va_arg (*args, fifo_segment_t *);
+ u32 count, indent, active_fifos, free_fifos;
+ fifo_segment_t *fs = va_arg (*args, fifo_segment_t *);
int verbose __attribute__ ((unused)) = va_arg (*args, int);
- fifo_segment_header_t *fsh = sp->h;
- u32 count, indent;
- svm_fifo_t *f;
+ uword est_chunk_bytes, est_free_seg_bytes, free_chunks;
+ uword chunk_bytes = 0, free_seg_bytes, chunk_size;
+ uword tracked_cached_bytes;
+ uword fifo_hdr = 0, reserved;
+ fifo_segment_header_t *fsh;
+ fifo_segment_slice_t *fss;
+ svm_fifo_chunk_t *c;
+ u32 slice_index;
+ char *address;
+ size_t size;
int i;
+ uword allocated, in_use, virt;
+ f64 usage;
+ fifo_segment_mem_status_t mem_st;
indent = format_get_indent (s) + 2;
-#if USE_DLMALLOC == 0
- s = format (s, "%U segment heap: %U\n", format_white_space, indent,
- format_mheap, svm_fifo_segment_heap (sp), verbose);
- s = format (s, "%U segment has %u active fifos\n",
- format_white_space, indent, fifo_segment_num_fifos (sp));
-#endif
-
- for (i = 0; i < vec_len (fsh->free_fifos); i++)
- {
- f = fsh->free_fifos[i];
- if (f == 0)
- continue;
- count = 0;
- while (f)
+
+ if (fs == 0)
+ {
+ s = format (s, "%-20s%10s%15s%15s%15s%15s", "Name", "Type",
+ "HeapSize (M)", "ActiveFifos", "FreeFifos", "Address");
+ return s;
+ }
+
+ fifo_segment_info (fs, &address, &size);
+ active_fifos = fifo_segment_num_fifos (fs);
+ free_fifos = fifo_segment_num_free_fifos (fs);
+
+ s = format (s, "%-20v%10U%15llu%15u%15u%15llx", ssvm_name (&fs->ssvm),
+ format_fifo_segment_type, fs, size >> 20ULL, active_fifos,
+ free_fifos, address);
+
+ if (!verbose)
+ return s;
+
+ fsh = fs->h;
+
+ free_chunks = fifo_segment_num_free_chunks (fs, ~0);
+ if (free_chunks)
+ s =
+ format (s, "\n\n%UFree/Allocated chunks by size:\n", format_white_space,
+ indent + 2);
+ else
+ s = format (s, "\n");
+
+ for (slice_index = 0; slice_index < fs->n_slices; slice_index++)
+ {
+ fss = fsh_slice_get (fsh, slice_index);
+ for (i = 0; i < FS_CHUNK_VEC_LEN; i++)
{
- f = f->next;
- count++;
- }
+ c = fs_chunk_ptr (fsh, fss->free_chunks[i]);
+ if (c == 0 && fss->num_chunks[i] == 0)
+ continue;
+ count = 0;
+ while (c)
+ {
+ c = fs_chunk_ptr (fsh, c->next);
+ count++;
+ }
+
+ chunk_size = fs_freelist_index_to_size (i);
+ s = format (s, "%U%-5u kB: %u/%u\n", format_white_space, indent + 2,
+ chunk_size >> 10, count, fss->num_chunks[i]);
- s = format (s, "%U%-5u Kb: %u free",
- format_white_space, indent + 2,
- 1 << (i + max_log2 (FIFO_SEGMENT_MIN_FIFO_SIZE) - 10),
- count);
+ chunk_bytes += count * chunk_size;
+ }
}
+
+ fifo_hdr = free_fifos * sizeof (svm_fifo_t);
+ est_chunk_bytes = fifo_segment_fl_chunk_bytes (fs);
+ est_free_seg_bytes = fifo_segment_free_bytes (fs);
+ free_seg_bytes = fifo_segment_free_bytes (fs);
+ tracked_cached_bytes = fifo_segment_cached_bytes (fs);
+ allocated = fifo_segment_size (fs);
+ in_use = fifo_segment_size (fs) - est_free_seg_bytes - tracked_cached_bytes;
+ usage = (100.0 * in_use) / allocated;
+ mem_st = fifo_segment_get_mem_status (fs);
+ virt = fsh_virtual_mem (fsh);
+ reserved = fsh->n_reserved_bytes;
+
+ s = format (s, "\n%Useg free bytes: %U (%lu) estimated: %U (%lu) reserved:"
+ " %U (%lu)\n", format_white_space, indent + 2,
+ format_memory_size, free_seg_bytes, free_seg_bytes,
+ format_memory_size, est_free_seg_bytes, est_free_seg_bytes,
+ format_memory_size, reserved, reserved);
+ s = format (s, "%Uchunk free bytes: %U (%lu) estimated: %U (%lu) tracked:"
+ " %U (%lu)\n", format_white_space, indent + 2,
+ format_memory_size, chunk_bytes, chunk_bytes,
+ format_memory_size, est_chunk_bytes, est_chunk_bytes,
+ format_memory_size, tracked_cached_bytes, tracked_cached_bytes);
+ s = format (s, "%Ufifo active: %u hdr free bytes: %U (%u) \n",
+ format_white_space, indent + 2, fsh->n_active_fifos,
+ format_memory_size, fifo_hdr, fifo_hdr);
+ s = format (s, "%Usegment usage: %.2f%% (%U / %U) virt: %U status: %s\n",
+ format_white_space, indent + 2, usage, format_memory_size,
+ in_use, format_memory_size, allocated, format_memory_size, virt,
+ fifo_segment_mem_status_strings[mem_st]);
+ s = format (s, "\n");
+
return s;
}