1423f0742Spbrook /* 2423f0742Spbrook * General purpose implementation of a simple periodic countdown timer. 3423f0742Spbrook * 4423f0742Spbrook * Copyright (c) 2007 CodeSourcery. 5423f0742Spbrook * 68e31bf38SMatthew Fernandez * This code is licensed under the GNU LGPL. 7423f0742Spbrook */ 818c86e2bSPeter Maydell #include "qemu/osdep.h" 983c9f4caSPaolo Bonzini #include "hw/hw.h" 101de7afc9SPaolo Bonzini #include "qemu/timer.h" 1183c9f4caSPaolo Bonzini #include "hw/ptimer.h" 121de7afc9SPaolo Bonzini #include "qemu/host-utils.h" 138a354bd9SPavel Dovgalyuk #include "sysemu/replay.h" 14423f0742Spbrook 15423f0742Spbrook struct ptimer_state 16423f0742Spbrook { 17852f771eSJuan Quintela uint8_t enabled; /* 0 = disabled, 1 = periodic, 2 = oneshot. */ 188d05ea8aSblueswir1 uint64_t limit; 198d05ea8aSblueswir1 uint64_t delta; 20423f0742Spbrook uint32_t period_frac; 21423f0742Spbrook int64_t period; 22423f0742Spbrook int64_t last_event; 23423f0742Spbrook int64_t next_event; 24423f0742Spbrook QEMUBH *bh; 25423f0742Spbrook QEMUTimer *timer; 26423f0742Spbrook }; 27423f0742Spbrook 28423f0742Spbrook /* Use a bottom-half routine to avoid reentrancy issues. */ 29423f0742Spbrook static void ptimer_trigger(ptimer_state *s) 30423f0742Spbrook { 31423f0742Spbrook if (s->bh) { 328a354bd9SPavel Dovgalyuk replay_bh_schedule_event(s->bh); 33423f0742Spbrook } 34423f0742Spbrook } 35423f0742Spbrook 36423f0742Spbrook static void ptimer_reload(ptimer_state *s) 37423f0742Spbrook { 38e91171e3SDmitry Osipenko uint32_t period_frac = s->period_frac; 39e91171e3SDmitry Osipenko uint64_t period = s->period; 40e91171e3SDmitry Osipenko 41423f0742Spbrook if (s->delta == 0) { 42423f0742Spbrook ptimer_trigger(s); 43423f0742Spbrook s->delta = s->limit; 44423f0742Spbrook } 45423f0742Spbrook if (s->delta == 0 || s->period == 0) { 46423f0742Spbrook fprintf(stderr, "Timer with period zero, disabling\n"); 47423f0742Spbrook s->enabled = 0; 48423f0742Spbrook return; 49423f0742Spbrook } 50423f0742Spbrook 51e91171e3SDmitry Osipenko /* 52e91171e3SDmitry Osipenko * Artificially limit timeout rate to something 53e91171e3SDmitry Osipenko * achievable under QEMU. Otherwise, QEMU spends all 54e91171e3SDmitry Osipenko * its time generating timer interrupts, and there 55e91171e3SDmitry Osipenko * is no forward progress. 56e91171e3SDmitry Osipenko * About ten microseconds is the fastest that really works 57e91171e3SDmitry Osipenko * on the current generation of host machines. 58e91171e3SDmitry Osipenko */ 59e91171e3SDmitry Osipenko 60e91171e3SDmitry Osipenko if (s->enabled == 1 && (s->delta * period < 10000) && !use_icount) { 61e91171e3SDmitry Osipenko period = 10000 / s->delta; 62e91171e3SDmitry Osipenko period_frac = 0; 63e91171e3SDmitry Osipenko } 64e91171e3SDmitry Osipenko 65423f0742Spbrook s->last_event = s->next_event; 66e91171e3SDmitry Osipenko s->next_event = s->last_event + s->delta * period; 67e91171e3SDmitry Osipenko if (period_frac) { 68e91171e3SDmitry Osipenko s->next_event += ((int64_t)period_frac * s->delta) >> 32; 69423f0742Spbrook } 70bc72ad67SAlex Bligh timer_mod(s->timer, s->next_event); 71423f0742Spbrook } 72423f0742Spbrook 73423f0742Spbrook static void ptimer_tick(void *opaque) 74423f0742Spbrook { 75423f0742Spbrook ptimer_state *s = (ptimer_state *)opaque; 76423f0742Spbrook ptimer_trigger(s); 77423f0742Spbrook s->delta = 0; 78423f0742Spbrook if (s->enabled == 2) { 79423f0742Spbrook s->enabled = 0; 80423f0742Spbrook } else { 81423f0742Spbrook ptimer_reload(s); 82423f0742Spbrook } 83423f0742Spbrook } 84423f0742Spbrook 858d05ea8aSblueswir1 uint64_t ptimer_get_count(ptimer_state *s) 86423f0742Spbrook { 878d05ea8aSblueswir1 uint64_t counter; 88423f0742Spbrook 89423f0742Spbrook if (s->enabled) { 905a50307bSDmitry Osipenko int64_t now = qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL); 915a50307bSDmitry Osipenko int64_t next = s->next_event; 925a50307bSDmitry Osipenko bool expired = (now - next >= 0); 935a50307bSDmitry Osipenko bool oneshot = (s->enabled == 2); 945a50307bSDmitry Osipenko 95423f0742Spbrook /* Figure out the current counter value. */ 96*56215da3SDmitry Osipenko if (expired) { 97423f0742Spbrook /* Prevent timer underflowing if it should already have 98423f0742Spbrook triggered. */ 99423f0742Spbrook counter = 0; 100423f0742Spbrook } else { 1018d05ea8aSblueswir1 uint64_t rem; 1028d05ea8aSblueswir1 uint64_t div; 103d0a981b2Spbrook int clz1, clz2; 104d0a981b2Spbrook int shift; 105e91171e3SDmitry Osipenko uint32_t period_frac = s->period_frac; 106e91171e3SDmitry Osipenko uint64_t period = s->period; 107e91171e3SDmitry Osipenko 1085a50307bSDmitry Osipenko if (!oneshot && (s->delta * period < 10000) && !use_icount) { 109e91171e3SDmitry Osipenko period = 10000 / s->delta; 110e91171e3SDmitry Osipenko period_frac = 0; 111e91171e3SDmitry Osipenko } 112d0a981b2Spbrook 113d0a981b2Spbrook /* We need to divide time by period, where time is stored in 114d0a981b2Spbrook rem (64-bit integer) and period is stored in period/period_frac 115d0a981b2Spbrook (64.32 fixed point). 116d0a981b2Spbrook 117d0a981b2Spbrook Doing full precision division is hard, so scale values and 118d0a981b2Spbrook do a 64-bit division. The result should be rounded down, 119d0a981b2Spbrook so that the rounding error never causes the timer to go 120d0a981b2Spbrook backwards. 121d0a981b2Spbrook */ 122423f0742Spbrook 123*56215da3SDmitry Osipenko rem = next - now; 124e91171e3SDmitry Osipenko div = period; 125d0a981b2Spbrook 126d0a981b2Spbrook clz1 = clz64(rem); 127d0a981b2Spbrook clz2 = clz64(div); 128d0a981b2Spbrook shift = clz1 < clz2 ? clz1 : clz2; 129d0a981b2Spbrook 130d0a981b2Spbrook rem <<= shift; 131d0a981b2Spbrook div <<= shift; 132d0a981b2Spbrook if (shift >= 32) { 133e91171e3SDmitry Osipenko div |= ((uint64_t)period_frac << (shift - 32)); 134d0a981b2Spbrook } else { 135d0a981b2Spbrook if (shift != 0) 136e91171e3SDmitry Osipenko div |= (period_frac >> (32 - shift)); 137d0a981b2Spbrook /* Look at remaining bits of period_frac and round div up if 138d0a981b2Spbrook necessary. */ 139e91171e3SDmitry Osipenko if ((uint32_t)(period_frac << shift)) 140d0a981b2Spbrook div += 1; 141d0a981b2Spbrook } 142423f0742Spbrook counter = rem / div; 143423f0742Spbrook } 144423f0742Spbrook } else { 145423f0742Spbrook counter = s->delta; 146423f0742Spbrook } 147423f0742Spbrook return counter; 148423f0742Spbrook } 149423f0742Spbrook 1508d05ea8aSblueswir1 void ptimer_set_count(ptimer_state *s, uint64_t count) 151423f0742Spbrook { 152423f0742Spbrook s->delta = count; 153423f0742Spbrook if (s->enabled) { 154bc72ad67SAlex Bligh s->next_event = qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL); 155423f0742Spbrook ptimer_reload(s); 156423f0742Spbrook } 157423f0742Spbrook } 158423f0742Spbrook 159423f0742Spbrook void ptimer_run(ptimer_state *s, int oneshot) 160423f0742Spbrook { 161869e92b5SDmitry Osipenko bool was_disabled = !s->enabled; 162869e92b5SDmitry Osipenko 163869e92b5SDmitry Osipenko if (was_disabled && s->period == 0) { 164423f0742Spbrook fprintf(stderr, "Timer with period zero, disabling\n"); 165423f0742Spbrook return; 166423f0742Spbrook } 167423f0742Spbrook s->enabled = oneshot ? 2 : 1; 168869e92b5SDmitry Osipenko if (was_disabled) { 169bc72ad67SAlex Bligh s->next_event = qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL); 170423f0742Spbrook ptimer_reload(s); 171423f0742Spbrook } 172869e92b5SDmitry Osipenko } 173423f0742Spbrook 1748d05ea8aSblueswir1 /* Pause a timer. Note that this may cause it to "lose" time, even if it 175423f0742Spbrook is immediately restarted. */ 176423f0742Spbrook void ptimer_stop(ptimer_state *s) 177423f0742Spbrook { 178423f0742Spbrook if (!s->enabled) 179423f0742Spbrook return; 180423f0742Spbrook 181423f0742Spbrook s->delta = ptimer_get_count(s); 182bc72ad67SAlex Bligh timer_del(s->timer); 183423f0742Spbrook s->enabled = 0; 184423f0742Spbrook } 185423f0742Spbrook 186423f0742Spbrook /* Set counter increment interval in nanoseconds. */ 187423f0742Spbrook void ptimer_set_period(ptimer_state *s, int64_t period) 188423f0742Spbrook { 1897ef6e3cfSDmitry Osipenko s->delta = ptimer_get_count(s); 190423f0742Spbrook s->period = period; 191423f0742Spbrook s->period_frac = 0; 1928d05ea8aSblueswir1 if (s->enabled) { 193bc72ad67SAlex Bligh s->next_event = qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL); 1948d05ea8aSblueswir1 ptimer_reload(s); 1958d05ea8aSblueswir1 } 196423f0742Spbrook } 197423f0742Spbrook 198423f0742Spbrook /* Set counter frequency in Hz. */ 199423f0742Spbrook void ptimer_set_freq(ptimer_state *s, uint32_t freq) 200423f0742Spbrook { 2017ef6e3cfSDmitry Osipenko s->delta = ptimer_get_count(s); 202423f0742Spbrook s->period = 1000000000ll / freq; 203423f0742Spbrook s->period_frac = (1000000000ll << 32) / freq; 2048d05ea8aSblueswir1 if (s->enabled) { 205bc72ad67SAlex Bligh s->next_event = qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL); 2068d05ea8aSblueswir1 ptimer_reload(s); 2078d05ea8aSblueswir1 } 208423f0742Spbrook } 209423f0742Spbrook 210423f0742Spbrook /* Set the initial countdown value. If reload is nonzero then also set 211423f0742Spbrook count = limit. */ 2128d05ea8aSblueswir1 void ptimer_set_limit(ptimer_state *s, uint64_t limit, int reload) 213423f0742Spbrook { 214423f0742Spbrook s->limit = limit; 215423f0742Spbrook if (reload) 216423f0742Spbrook s->delta = limit; 21762ea5b0bSpbrook if (s->enabled && reload) { 218bc72ad67SAlex Bligh s->next_event = qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL); 2198d05ea8aSblueswir1 ptimer_reload(s); 2208d05ea8aSblueswir1 } 2218d05ea8aSblueswir1 } 2228d05ea8aSblueswir1 223578c4b2fSDmitry Osipenko uint64_t ptimer_get_limit(ptimer_state *s) 224578c4b2fSDmitry Osipenko { 225578c4b2fSDmitry Osipenko return s->limit; 226578c4b2fSDmitry Osipenko } 227578c4b2fSDmitry Osipenko 228852f771eSJuan Quintela const VMStateDescription vmstate_ptimer = { 22955a6e51fSBlue Swirl .name = "ptimer", 230852f771eSJuan Quintela .version_id = 1, 231852f771eSJuan Quintela .minimum_version_id = 1, 232852f771eSJuan Quintela .fields = (VMStateField[]) { 233852f771eSJuan Quintela VMSTATE_UINT8(enabled, ptimer_state), 234852f771eSJuan Quintela VMSTATE_UINT64(limit, ptimer_state), 235852f771eSJuan Quintela VMSTATE_UINT64(delta, ptimer_state), 236852f771eSJuan Quintela VMSTATE_UINT32(period_frac, ptimer_state), 237852f771eSJuan Quintela VMSTATE_INT64(period, ptimer_state), 238852f771eSJuan Quintela VMSTATE_INT64(last_event, ptimer_state), 239852f771eSJuan Quintela VMSTATE_INT64(next_event, ptimer_state), 240e720677eSPaolo Bonzini VMSTATE_TIMER_PTR(timer, ptimer_state), 241852f771eSJuan Quintela VMSTATE_END_OF_LIST() 242852f771eSJuan Quintela } 24355a6e51fSBlue Swirl }; 24455a6e51fSBlue Swirl 245423f0742Spbrook ptimer_state *ptimer_init(QEMUBH *bh) 246423f0742Spbrook { 247423f0742Spbrook ptimer_state *s; 248423f0742Spbrook 2497267c094SAnthony Liguori s = (ptimer_state *)g_malloc0(sizeof(ptimer_state)); 250423f0742Spbrook s->bh = bh; 251bc72ad67SAlex Bligh s->timer = timer_new_ns(QEMU_CLOCK_VIRTUAL, ptimer_tick, s); 252423f0742Spbrook return s; 253423f0742Spbrook } 254