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3 Commits

Author SHA1 Message Date
TianlongLiang
d9d1bff7a1
Merge 6f98c8f21b into 17be90d8f0 2025-07-11 02:12:58 +00:00
TL
6f98c8f21b leave api name unchanged so don't break API 2025-07-11 10:11:55 +08:00
TianlongLiang
61cc3e851c
Fix typos in runtime timer
* Fix typos in runtime timer

* Fix typos in comments
2025-07-10 10:06:14 +08:00
3 changed files with 11 additions and 11 deletions

View File

@ -59,7 +59,7 @@ b_memcpy_wa(void *s1, unsigned int s1max, const void *s2, unsigned int n)
*dest++ = *p_byte_read++; *dest++ = *p_byte_read++;
} }
} }
/* read meaning word(s) */ /* read remaining word(s) */
else { else {
if ((char *)p + 4 >= src + n) { if ((char *)p + 4 >= src + n) {
for (ps = (char *)p; ps < src + n; ps++) { for (ps = (char *)p; ps < src + n; ps++) {

View File

@ -170,7 +170,7 @@ bh_free_msg(bh_queue_node *msg)
return; return;
} }
// note: sometime we just use the payload pointer for a integer value // note: sometimes we just use the payload pointer for an integer value
// len!=0 is the only indicator about the body is an allocated buffer. // len!=0 is the only indicator about the body is an allocated buffer.
if (msg->body && msg->len) if (msg->body && msg->len)
bh_queue_free(msg->body); bh_queue_free(msg->body);

View File

@ -44,22 +44,22 @@ bh_get_tick_ms()
uint32 uint32
bh_get_elpased_ms(uint32 *last_system_clock) bh_get_elpased_ms(uint32 *last_system_clock)
{ {
uint32 elpased_ms; uint32 elapsed_ms;
/* attention: the bh_get_tick_ms() return 64 bits integer, but /* attention: the bh_get_tick_ms() returns a 64-bit integer, but
the bh_get_elpased_ms() is designed to use 32 bits clock count */ bh_get_elpased_ms() is designed to use a 32-bit clock count */
uint32 now = (uint32)bh_get_tick_ms(); uint32 now = (uint32)bh_get_tick_ms();
/* system clock overrun */ /* system clock overrun */
if (now < *last_system_clock) { if (now < *last_system_clock) {
PRINT("system clock overrun!\n"); PRINT("system clock overrun!\n");
elpased_ms = now + (UINT32_MAX - *last_system_clock) + 1; elapsed_ms = now + (UINT32_MAX - *last_system_clock) + 1;
} }
else { else {
elpased_ms = now - *last_system_clock; elapsed_ms = now - *last_system_clock;
} }
*last_system_clock = now; *last_system_clock = now;
return elpased_ms; return elapsed_ms;
} }
static app_timer_t * static app_timer_t *
@ -162,7 +162,7 @@ reschedule_timer(timer_ctx_t ctx, app_timer_t *timer)
prev->id); prev->id);
} }
else { else {
/* insert at the begin */ /* insert at the beginning */
bh_assert(ctx->app_timers == NULL); bh_assert(ctx->app_timers == NULL);
ctx->app_timers = timer; ctx->app_timers = timer;
PRINT("rescheduled timer [%d] as first\n", timer->id); PRINT("rescheduled timer [%d] as first\n", timer->id);
@ -213,7 +213,7 @@ release_timer_list(app_timer_t **p_list)
timer_ctx_t timer_ctx_t
create_timer_ctx(timer_callback_f timer_handler, create_timer_ctx(timer_callback_f timer_handler,
check_timer_expiry_f expiery_checker, int prealloc_num, check_timer_expiry_f expiry_checker, int prealloc_num,
unsigned int owner) unsigned int owner)
{ {
timer_ctx_t ctx = (timer_ctx_t)BH_MALLOC(sizeof(struct _timer_ctx)); timer_ctx_t ctx = (timer_ctx_t)BH_MALLOC(sizeof(struct _timer_ctx));
@ -225,7 +225,7 @@ create_timer_ctx(timer_callback_f timer_handler,
ctx->timer_callback = timer_handler; ctx->timer_callback = timer_handler;
ctx->pre_allocated = prealloc_num; ctx->pre_allocated = prealloc_num;
ctx->refresh_checker = expiery_checker; ctx->refresh_checker = expiry_checker;
ctx->owner = owner; ctx->owner = owner;
while (prealloc_num > 0) { while (prealloc_num > 0) {