1 /*
2 * Copyright (c) 2020 Intel Corporation
3 *
4 * SPDX-License-Identifier: Apache-2.0
5 */
6 #include <zephyr/logging/log.h>
7 #include <zephyr/sys/p4wq.h>
8 #include <zephyr/kernel.h>
9 #include <zephyr/init.h>
10 #include <zephyr/sys/iterable_sections.h>
11 /* private kernel APIs */
12 #include <ksched.h>
13 #include <wait_q.h>
14
15 LOG_MODULE_REGISTER(p4wq, CONFIG_LOG_DEFAULT_LEVEL);
16
17 struct device;
18
set_prio(struct k_thread * th,struct k_p4wq_work * item)19 static void set_prio(struct k_thread *th, struct k_p4wq_work *item)
20 {
21 __ASSERT_NO_MSG(!IS_ENABLED(CONFIG_SMP) || !z_is_thread_queued(th));
22 th->base.prio = item->priority;
23 th->base.prio_deadline = item->deadline;
24 }
25
rb_lessthan(struct rbnode * a,struct rbnode * b)26 static bool rb_lessthan(struct rbnode *a, struct rbnode *b)
27 {
28 struct k_p4wq_work *aw = CONTAINER_OF(a, struct k_p4wq_work, rbnode);
29 struct k_p4wq_work *bw = CONTAINER_OF(b, struct k_p4wq_work, rbnode);
30
31 if (aw->priority != bw->priority) {
32 return aw->priority > bw->priority;
33 }
34
35 if (aw->deadline != bw->deadline) {
36 return aw->deadline - bw->deadline > 0;
37 }
38
39 return (uintptr_t)a < (uintptr_t)b;
40 }
41
thread_set_requeued(struct k_thread * th)42 static void thread_set_requeued(struct k_thread *th)
43 {
44 th->base.user_options |= K_CALLBACK_STATE;
45 }
46
thread_clear_requeued(struct k_thread * th)47 static void thread_clear_requeued(struct k_thread *th)
48 {
49 th->base.user_options &= ~K_CALLBACK_STATE;
50 }
51
thread_was_requeued(struct k_thread * th)52 static bool thread_was_requeued(struct k_thread *th)
53 {
54 return !!(th->base.user_options & K_CALLBACK_STATE);
55 }
56
57 /* Slightly different semantics: rb_lessthan must be perfectly
58 * symmetric (to produce a single tree structure) and will use the
59 * pointer value to break ties where priorities are equal, here we
60 * tolerate equality as meaning "not lessthan"
61 */
item_lessthan(struct k_p4wq_work * a,struct k_p4wq_work * b)62 static inline bool item_lessthan(struct k_p4wq_work *a, struct k_p4wq_work *b)
63 {
64 if (a->priority > b->priority) {
65 return true;
66 } else if ((a->priority == b->priority) &&
67 (a->deadline != b->deadline)) {
68 return a->deadline - b->deadline > 0;
69 } else {
70 ;
71 }
72 return false;
73 }
74
p4wq_loop(void * p0,void * p1,void * p2)75 static FUNC_NORETURN void p4wq_loop(void *p0, void *p1, void *p2)
76 {
77 ARG_UNUSED(p1);
78 ARG_UNUSED(p2);
79 struct k_p4wq *queue = p0;
80 k_spinlock_key_t k = k_spin_lock(&queue->lock);
81
82 while (true) {
83 struct rbnode *r = rb_get_max(&queue->queue);
84
85 if (r) {
86 struct k_p4wq_work *w
87 = CONTAINER_OF(r, struct k_p4wq_work, rbnode);
88
89 rb_remove(&queue->queue, r);
90 w->thread = arch_current_thread();
91 sys_dlist_append(&queue->active, &w->dlnode);
92 set_prio(arch_current_thread(), w);
93 thread_clear_requeued(arch_current_thread());
94
95 k_spin_unlock(&queue->lock, k);
96
97 w->handler(w);
98
99 k = k_spin_lock(&queue->lock);
100
101 /* Remove from the active list only if it
102 * wasn't resubmitted already
103 */
104 if (!thread_was_requeued(arch_current_thread())) {
105 sys_dlist_remove(&w->dlnode);
106 w->thread = NULL;
107 k_sem_give(&w->done_sem);
108 }
109 } else {
110 z_pend_curr(&queue->lock, k, &queue->waitq, K_FOREVER);
111 k = k_spin_lock(&queue->lock);
112 }
113 }
114 }
115
116 /* Must be called to regain ownership of the work item */
k_p4wq_wait(struct k_p4wq_work * work,k_timeout_t timeout)117 int k_p4wq_wait(struct k_p4wq_work *work, k_timeout_t timeout)
118 {
119 if (work->sync) {
120 return k_sem_take(&work->done_sem, timeout);
121 }
122
123 return k_sem_count_get(&work->done_sem) ? 0 : -EBUSY;
124 }
125
k_p4wq_init(struct k_p4wq * queue)126 void k_p4wq_init(struct k_p4wq *queue)
127 {
128 memset(queue, 0, sizeof(*queue));
129 z_waitq_init(&queue->waitq);
130 queue->queue.lessthan_fn = rb_lessthan;
131 sys_dlist_init(&queue->active);
132 }
133
k_p4wq_add_thread(struct k_p4wq * queue,struct k_thread * thread,k_thread_stack_t * stack,size_t stack_size)134 void k_p4wq_add_thread(struct k_p4wq *queue, struct k_thread *thread,
135 k_thread_stack_t *stack,
136 size_t stack_size)
137 {
138 k_thread_create(thread, stack, stack_size,
139 p4wq_loop, queue, NULL, NULL,
140 K_HIGHEST_THREAD_PRIO, 0,
141 queue->flags & K_P4WQ_DELAYED_START ? K_FOREVER : K_NO_WAIT);
142 }
143
static_init(void)144 static int static_init(void)
145 {
146
147 STRUCT_SECTION_FOREACH(k_p4wq_initparam, pp) {
148 for (int i = 0; i < pp->num; i++) {
149 uintptr_t ssz = K_THREAD_STACK_LEN(pp->stack_size);
150 struct k_p4wq *q = pp->flags & K_P4WQ_QUEUE_PER_THREAD ?
151 pp->queue + i : pp->queue;
152
153 if (!i || (pp->flags & K_P4WQ_QUEUE_PER_THREAD)) {
154 k_p4wq_init(q);
155 }
156
157 q->flags = pp->flags;
158
159 /*
160 * If the user wants to specify CPU affinity, we have to
161 * delay starting threads until that has been done
162 */
163 if (q->flags & K_P4WQ_USER_CPU_MASK) {
164 q->flags |= K_P4WQ_DELAYED_START;
165 }
166
167 k_p4wq_add_thread(q, &pp->threads[i],
168 &pp->stacks[ssz * i],
169 pp->stack_size);
170
171 #ifdef CONFIG_SCHED_CPU_MASK
172 if (pp->flags & K_P4WQ_USER_CPU_MASK) {
173 int ret = k_thread_cpu_mask_clear(&pp->threads[i]);
174
175 if (ret < 0) {
176 LOG_ERR("Couldn't clear CPU mask: %d", ret);
177 }
178 }
179 #endif
180 }
181 }
182
183 return 0;
184 }
185
k_p4wq_enable_static_thread(struct k_p4wq * queue,struct k_thread * thread,uint32_t cpu_mask)186 void k_p4wq_enable_static_thread(struct k_p4wq *queue, struct k_thread *thread,
187 uint32_t cpu_mask)
188 {
189 #ifdef CONFIG_SCHED_CPU_MASK
190 if (queue->flags & K_P4WQ_USER_CPU_MASK) {
191 unsigned int i;
192
193 while ((i = find_lsb_set(cpu_mask))) {
194 int ret = k_thread_cpu_mask_enable(thread, i - 1);
195
196 if (ret < 0) {
197 LOG_ERR("Couldn't set CPU mask for %u: %d", i, ret);
198 }
199 cpu_mask &= ~BIT(i - 1);
200 }
201 }
202 #endif
203
204 if (queue->flags & K_P4WQ_DELAYED_START) {
205 k_thread_start(thread);
206 }
207 }
208
209 /* We spawn a bunch of high priority threads, use the "SMP" initlevel
210 * so they can initialize in parallel instead of serially on the main
211 * CPU.
212 */
213 SYS_INIT(static_init, APPLICATION, 99);
214
k_p4wq_submit(struct k_p4wq * queue,struct k_p4wq_work * item)215 void k_p4wq_submit(struct k_p4wq *queue, struct k_p4wq_work *item)
216 {
217 k_spinlock_key_t k = k_spin_lock(&queue->lock);
218
219 /* Input is a delta time from now (to match
220 * k_thread_deadline_set()), but we store and use the absolute
221 * cycle count.
222 */
223 item->deadline += k_cycle_get_32();
224
225 /* Resubmission from within handler? Remove from active list */
226 if (item->thread == arch_current_thread()) {
227 sys_dlist_remove(&item->dlnode);
228 thread_set_requeued(arch_current_thread());
229 item->thread = NULL;
230 } else {
231 k_sem_init(&item->done_sem, 0, 1);
232 }
233 __ASSERT_NO_MSG(item->thread == NULL);
234
235 rb_insert(&queue->queue, &item->rbnode);
236 item->queue = queue;
237
238 /* If there were other items already ahead of it in the queue,
239 * then we don't need to revisit active thread state and can
240 * return.
241 */
242 if (rb_get_max(&queue->queue) != &item->rbnode) {
243 goto out;
244 }
245
246 /* Check the list of active (running or preempted) items, if
247 * there are at least an "active target" of those that are
248 * higher priority than the new item, then no one needs to be
249 * preempted and we can return.
250 */
251 struct k_p4wq_work *wi;
252 uint32_t n_beaten_by = 0, active_target = arch_num_cpus();
253
254 SYS_DLIST_FOR_EACH_CONTAINER(&queue->active, wi, dlnode) {
255 /*
256 * item_lessthan(a, b) == true means a has lower priority than b
257 * !item_lessthan(a, b) counts all work items with higher or
258 * equal priority
259 */
260 if (!item_lessthan(wi, item)) {
261 n_beaten_by++;
262 }
263 }
264
265 if (n_beaten_by >= active_target) {
266 /* Too many already have higher priority, not preempting */
267 goto out;
268 }
269
270 /* Grab a thread, set its priority and queue it. If there are
271 * no threads available to unpend, this is a soft runtime
272 * error: we are breaking our promise about run order.
273 * Complain.
274 */
275 struct k_thread *th = z_unpend_first_thread(&queue->waitq);
276
277 if (th == NULL) {
278 LOG_WRN("Out of worker threads, priority guarantee violated");
279 goto out;
280 }
281
282 set_prio(th, item);
283 z_ready_thread(th);
284 z_reschedule(&queue->lock, k);
285
286 return;
287
288 out:
289 k_spin_unlock(&queue->lock, k);
290 }
291
k_p4wq_cancel(struct k_p4wq * queue,struct k_p4wq_work * item)292 bool k_p4wq_cancel(struct k_p4wq *queue, struct k_p4wq_work *item)
293 {
294 k_spinlock_key_t k = k_spin_lock(&queue->lock);
295 bool ret = rb_contains(&queue->queue, &item->rbnode);
296
297 if (ret) {
298 rb_remove(&queue->queue, &item->rbnode);
299 k_sem_give(&item->done_sem);
300 }
301
302 k_spin_unlock(&queue->lock, k);
303 return ret;
304 }
305