previous
low_char = previous(pattern);
previous(expression) |= BRACKET;
!HMAC_Final(&hmac, previous, NULL))
memcpy(out_key + done, previous, todo);
explicit_bzero(previous, sizeof(previous));
uint8_t previous[EVP_MAX_MD_SIZE];
!HMAC_Update(&hmac, previous, digest_len)))
const struct tls13_handshake_action *previous)
return current->sender != previous->sender;
"p", 0, 0, previous, "previous", "move cursor back one record",
void previous(DB *, char **);
short previous;
previous = -1;
if (previous == -1) {
msqptr->last.msg_last_index = previous;
previous = msghdr_index;
compute_stats(struct devstat *current, struct devstat *previous,
((previous) ? (previous->bytes_written +
previous->bytes_read) : 0);
((previous) ?
(previous->num_reads +
previous->num_writes +
previous->num_other) : 0);
compute_stats_read(struct devstat *current, struct devstat *previous,
(previous ? previous->bytes_read : 0);
(previous ? previous->num_reads : 0);
compute_stats_write(struct devstat *current, struct devstat *previous,
(previous ? previous->bytes_written : 0);
(previous ? previous->num_writes : 0);
int compute_stats(struct devstat *current, struct devstat *previous,
int compute_stats_read(struct devstat *current, struct devstat *previous,
int compute_stats_write(struct devstat *current, struct devstat *previous,
_thr_cancel_leave(pthread_t curthread, int previous)
if (!(previous & THR_CANCEL_AT_POINT))
hash_member *previous = NULL;
previous = memberptr;
previous->next = memberptr = memberptr->next;
previous = memberptr;
.previous \
.previous \
struct drm_bridge *previous)
if (previous && (!previous->dev || previous->encoder != encoder))
if (previous)
previous->next = bridge;
u32 previous = 0;
if (curr < previous) {
i, j, curr, previous);
previous = curr;
u32 previous = 0;
if (curr < previous) {
i, curr, previous);
previous = curr;
struct ilk_wm_values *previous = &dev_priv->wm.hw;
if (dirty & WM_DIRTY_LP(3) && previous->wm_lp[2] & WM1_LP_SR_EN) {
previous->wm_lp[2] &= ~WM1_LP_SR_EN;
I915_WRITE(WM3_LP_ILK, previous->wm_lp[2]);
if (dirty & WM_DIRTY_LP(2) && previous->wm_lp[1] & WM1_LP_SR_EN) {
previous->wm_lp[1] &= ~WM1_LP_SR_EN;
I915_WRITE(WM2_LP_ILK, previous->wm_lp[1]);
if (dirty & WM_DIRTY_LP(1) && previous->wm_lp[0] & WM1_LP_SR_EN) {
previous->wm_lp[0] &= ~WM1_LP_SR_EN;
I915_WRITE(WM1_LP_ILK, previous->wm_lp[0]);
struct ilk_wm_values *previous = &dev_priv->wm.hw;
dirty = ilk_compute_wm_dirty(dev_priv, previous, results);
previous->wm_lp_spr[0] != results->wm_lp_spr[0])
if (dirty & WM_DIRTY_LP(2) && previous->wm_lp_spr[1] != results->wm_lp_spr[1])
if (dirty & WM_DIRTY_LP(3) && previous->wm_lp_spr[2] != results->wm_lp_spr[2])
if (dirty & WM_DIRTY_LP(1) && previous->wm_lp[0] != results->wm_lp[0])
if (dirty & WM_DIRTY_LP(2) && previous->wm_lp[1] != results->wm_lp[1])
if (dirty & WM_DIRTY_LP(3) && previous->wm_lp[2] != results->wm_lp[2])
struct drm_bridge *previous);
struct msg *previous;
previous = NULL;
if (previous == NULL) {
previous;
previous = msghdr;
struct rm_class *p, *head, *previous;
p = previous = head;
previous->next_ = cl->next_;
previous = p;
struct noise_keypair *kp, *next, *current, *previous;
previous = atomic_load_ptr(&r->r_keypair_previous);
noise_keypair_drop(previous);
noise_keypair_drop(previous);
struct links_entry *previous;
new_buckets[hash]->previous = le;
le->previous = NULL;
if (le->previous != NULL)
le->previous->next = le->next;
le->next->previous = le->previous;
le->previous = NULL;
buckets[hash]->previous = le;
node_move_after(struct node *n, struct node *previous)
n->n_parent = previous->n_parent;
TAILQ_INSERT_AFTER(&previous->n_parent->n_children, previous, n, n_next);