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1 jermar 1
/*
2336 mencl 2
 * Copyright (C) 2001-2004 Jakub Jermar
1 jermar 3
 * All rights reserved.
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 *
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 * Redistribution and use in source and binary forms, with or without
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 * modification, are permitted provided that the following conditions
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 * are met:
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 *
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 * - Redistributions of source code must retain the above copyright
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 *   notice, this list of conditions and the following disclaimer.
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 * - Redistributions in binary form must reproduce the above copyright
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 *   notice, this list of conditions and the following disclaimer in the
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 *   documentation and/or other materials provided with the distribution.
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 * - The name of the author may not be used to endorse or promote products
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 *   derived from this software without specific prior written permission.
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 *
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 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
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 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
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 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
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 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
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 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
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 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
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 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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 */
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1731 jermar 29
/** @addtogroup time
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 * @{
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 */
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1264 jermar 33
/**
1702 cejka 34
 * @file
1264 jermar 35
 * @brief   Timeout management functions.
36
 */
37
 
1 jermar 38
#include <time/timeout.h>
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#include <arch/types.h>
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#include <config.h>
68 decky 41
#include <panic.h>
1 jermar 42
#include <synch/spinlock.h>
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#include <func.h>
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#include <cpu.h>
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#include <arch/asm.h>
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#include <arch.h>
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2336 mencl 48
 
107 decky 49
/** Initialize timeouts
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 *
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 * Initialize kernel timeouts.
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 *
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 */
1 jermar 54
void timeout_init(void)
55
{
552 palkovsky 56
    spinlock_initialize(&CPU->timeoutlock, "timeout_lock");
2336 mencl 57
 
58
#ifdef CONFIG_TIMEOUT_EXTAVL_TREE
59
    extavltree_create(&CPU->timeout_active_tree);
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#else
15 jermar 61
    list_initialize(&CPU->timeout_active_head);
2336 mencl 62
#endif
1 jermar 63
}
64
 
65
 
411 jermar 66
/** Reinitialize timeout
107 decky 67
 *
411 jermar 68
 * Initialize all members except the lock.
107 decky 69
 *
411 jermar 70
 * @param t Timeout to be initialized.
107 decky 71
 *
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 */
1 jermar 73
void timeout_reinitialize(timeout_t *t)
74
{
75
    t->cpu = NULL;
76
    t->handler = NULL;
77
    t->arg = NULL;
2336 mencl 78
 
79
#ifdef CONFIG_TIMEOUT_EXTAVL_TREE
80
    extavltree_node_initialize(&t->node);
81
#else
82
    t->ticks = 0;
1 jermar 83
    link_initialize(&t->link);
2336 mencl 84
#endif
1 jermar 85
}
86
 
107 decky 87
 
411 jermar 88
/** Initialize timeout
107 decky 89
 *
411 jermar 90
 * Initialize all members including the lock.
107 decky 91
 *
411 jermar 92
 * @param t Timeout to be initialized.
107 decky 93
 *
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 */
1 jermar 95
void timeout_initialize(timeout_t *t)
96
{
552 palkovsky 97
    spinlock_initialize(&t->lock, "timeout_t_lock");
1 jermar 98
    timeout_reinitialize(t);
99
}
100
 
2336 mencl 101
#ifdef CONFIG_TIMEOUT_EXTAVL_TREE
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/** Register timeout
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 *
104
 * Insert timeout handler f (with argument arg)
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 * to timeout list and make it execute in
106
 * time microseconds (or slightly more).
107
 *
108
 * @param t    Timeout structure.
109
 * @param time Number of usec in the future to execute
110
 *             the handler.
111
 * @param f    Timeout handler function.
112
 * @param arg  Timeout handler argument.
113
 *
114
 */
115
void timeout_register(timeout_t *t, uint64_t time, timeout_handler_t f, void *arg)
116
{
117
    ipl_t ipl;
107 decky 118
 
2336 mencl 119
    ipl = interrupts_disable();
120
    spinlock_lock(&CPU->timeoutlock);
121
    spinlock_lock(&t->lock);
122
 
123
    if (t->cpu)
124
        panic("t->cpu != 0");
125
 
126
    t->cpu = CPU;
127
 
128
    //tiky nejsou, musim zmenit klice primo v uzlech
129
 
130
    t->handler = f;
131
    t->arg = arg;
132
 
133
    extavltree_insert(&CPU->timeout_active_tree,&t->node);
134
 
135
    spinlock_unlock(&t->lock);
136
    spinlock_unlock(&CPU->timeoutlock);
137
    interrupts_restore(ipl);
138
}
139
 
140
 
141
/** Unregister timeout
142
 *
143
 * Remove timeout from timeout list.
144
 *
145
 * @param t Timeout to unregister.
146
 *
147
 * @return true on success, false on failure.
148
 */
149
bool timeout_unregister(timeout_t *t)
150
{
151
    ipl_t ipl;
152
 
153
grab_locks:
154
    ipl = interrupts_disable();
155
    spinlock_lock(&t->lock);
156
    if (!t->cpu) {
157
        spinlock_unlock(&t->lock);
158
        interrupts_restore(ipl);
159
        return false;
160
    }
161
    if (!spinlock_trylock(&t->cpu->timeoutlock)) {
162
        spinlock_unlock(&t->lock);
163
        interrupts_restore(ipl);       
164
        goto grab_locks;
165
    }
166
 
167
    /*
168
     * Now we know for sure that t hasn't been activated yet
169
     * and is lurking in t->cpu->timeout_active_head queue.
170
     */
171
 
172
    extavltree_delete(&CPU->timeout_active_tree,&t->node);
173
 
174
    spinlock_unlock(&t->cpu->timeoutlock);
175
 
176
    timeout_reinitialize(t);
177
    spinlock_unlock(&t->lock);
178
 
179
    interrupts_restore(ipl);
180
    return true;
181
}
182
 
183
#else
184
 
411 jermar 185
/** Register timeout
107 decky 186
 *
411 jermar 187
 * Insert timeout handler f (with argument arg)
188
 * to timeout list and make it execute in
107 decky 189
 * time microseconds (or slightly more).
190
 *
411 jermar 191
 * @param t    Timeout structure.
404 jermar 192
 * @param time Number of usec in the future to execute
107 decky 193
 *             the handler.
194
 * @param f    Timeout handler function.
195
 * @param arg  Timeout handler argument.
196
 *
1 jermar 197
 */
1780 jermar 198
void timeout_register(timeout_t *t, uint64_t time, timeout_handler_t f, void *arg)
1 jermar 199
{
659 jermar 200
    timeout_t *hlp = NULL;
1 jermar 201
    link_t *l, *m;
413 jermar 202
    ipl_t ipl;
1780 jermar 203
    uint64_t sum;
1 jermar 204
 
413 jermar 205
    ipl = interrupts_disable();
15 jermar 206
    spinlock_lock(&CPU->timeoutlock);
1 jermar 207
    spinlock_lock(&t->lock);
125 jermar 208
 
1 jermar 209
    if (t->cpu)
103 jermar 210
        panic("t->cpu != 0");
1 jermar 211
 
15 jermar 212
    t->cpu = CPU;
1 jermar 213
    t->ticks = us2ticks(time);
214
 
215
    t->handler = f;
216
    t->arg = arg;
125 jermar 217
 
1 jermar 218
    /*
219
     * Insert t into the active timeouts list according to t->ticks.
220
     */
221
    sum = 0;
15 jermar 222
    l = CPU->timeout_active_head.next;
223
    while (l != &CPU->timeout_active_head) {
1 jermar 224
        hlp = list_get_instance(l, timeout_t, link);
225
        spinlock_lock(&hlp->lock);
226
        if (t->ticks < sum + hlp->ticks) {
227
            spinlock_unlock(&hlp->lock);
228
            break;
229
        }
230
        sum += hlp->ticks;
231
        spinlock_unlock(&hlp->lock);
232
        l = l->next;
233
    }
239 vana 234
 
1 jermar 235
    m = l->prev;
236
    list_prepend(&t->link, m); /* avoid using l->prev */
237
 
238
    /*
239
     * Adjust t->ticks according to ticks accumulated in h's predecessors.
240
     */
241
    t->ticks -= sum;
242
 
243
    /*
244
     * Decrease ticks of t's immediate succesor by t->ticks.
245
     */
15 jermar 246
    if (l != &CPU->timeout_active_head) {
1 jermar 247
        spinlock_lock(&hlp->lock);
248
        hlp->ticks -= t->ticks;
249
        spinlock_unlock(&hlp->lock);
250
    }
251
 
252
    spinlock_unlock(&t->lock);
15 jermar 253
    spinlock_unlock(&CPU->timeoutlock);
413 jermar 254
    interrupts_restore(ipl);
1 jermar 255
}
256
 
107 decky 257
 
411 jermar 258
/** Unregister timeout
107 decky 259
 *
260
 * Remove timeout from timeout list.
261
 *
262
 * @param t Timeout to unregister.
263
 *
411 jermar 264
 * @return true on success, false on failure.
107 decky 265
 */
411 jermar 266
bool timeout_unregister(timeout_t *t)
1 jermar 267
{
268
    timeout_t *hlp;
269
    link_t *l;
413 jermar 270
    ipl_t ipl;
1 jermar 271
 
272
grab_locks:
413 jermar 273
    ipl = interrupts_disable();
1 jermar 274
    spinlock_lock(&t->lock);
275
    if (!t->cpu) {
276
        spinlock_unlock(&t->lock);
413 jermar 277
        interrupts_restore(ipl);
411 jermar 278
        return false;
1 jermar 279
    }
280
    if (!spinlock_trylock(&t->cpu->timeoutlock)) {
281
        spinlock_unlock(&t->lock);
2336 mencl 282
        interrupts_restore(ipl);       
1 jermar 283
        goto grab_locks;
284
    }
285
 
286
    /*
287
     * Now we know for sure that t hasn't been activated yet
288
     * and is lurking in t->cpu->timeout_active_head queue.
289
     */
290
 
291
    l = t->link.next;
292
    if (l != &t->cpu->timeout_active_head) {
293
        hlp = list_get_instance(l, timeout_t, link);
294
        spinlock_lock(&hlp->lock);
295
        hlp->ticks += t->ticks;
296
        spinlock_unlock(&hlp->lock);
297
    }
298
 
299
    list_remove(&t->link);
300
    spinlock_unlock(&t->cpu->timeoutlock);
301
 
302
    timeout_reinitialize(t);
303
    spinlock_unlock(&t->lock);
304
 
413 jermar 305
    interrupts_restore(ipl);
411 jermar 306
    return true;
1 jermar 307
}
1702 cejka 308
 
2336 mencl 309
#endif
1731 jermar 310
/** @}
1702 cejka 311
 */