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subr_pcu.c revision 1.20.6.1
      1  1.20.6.1       snj /*	$NetBSD: subr_pcu.c,v 1.20.6.1 2017/10/24 09:14:59 snj Exp $	*/
      2       1.1     rmind 
      3       1.1     rmind /*-
      4      1.18     rmind  * Copyright (c) 2011, 2014 The NetBSD Foundation, Inc.
      5       1.1     rmind  * All rights reserved.
      6       1.1     rmind  *
      7       1.1     rmind  * This code is derived from software contributed to The NetBSD Foundation
      8       1.1     rmind  * by Mindaugas Rasiukevicius.
      9       1.1     rmind  *
     10       1.1     rmind  * Redistribution and use in source and binary forms, with or without
     11       1.1     rmind  * modification, are permitted provided that the following conditions
     12       1.1     rmind  * are met:
     13       1.1     rmind  * 1. Redistributions of source code must retain the above copyright
     14       1.1     rmind  *    notice, this list of conditions and the following disclaimer.
     15       1.1     rmind  * 2. Redistributions in binary form must reproduce the above copyright
     16       1.1     rmind  *    notice, this list of conditions and the following disclaimer in the
     17       1.1     rmind  *    documentation and/or other materials provided with the distribution.
     18       1.1     rmind  *
     19       1.1     rmind  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     20       1.1     rmind  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     21       1.1     rmind  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     22       1.1     rmind  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     23       1.1     rmind  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     24       1.1     rmind  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     25       1.1     rmind  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     26       1.1     rmind  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     27       1.1     rmind  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     28       1.1     rmind  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     29       1.1     rmind  * POSSIBILITY OF SUCH DAMAGE.
     30       1.1     rmind  */
     31       1.1     rmind 
     32       1.1     rmind /*
     33       1.1     rmind  * Per CPU Unit (PCU) - is an interface to manage synchronization of any
     34       1.1     rmind  * per CPU context (unit) tied with LWP context.  Typical use: FPU state.
     35       1.1     rmind  *
     36       1.1     rmind  * Concurrency notes:
     37       1.1     rmind  *
     38       1.1     rmind  *	PCU state may be loaded only by the current LWP, that is, curlwp.
     39       1.1     rmind  *	Therefore, only LWP itself can set a CPU for lwp_t::l_pcu_cpu[id].
     40       1.1     rmind  *
     41      1.18     rmind  *	There are some important rules about operation calls.  The request
     42      1.18     rmind  *	for a PCU release can be from a) the owner LWP (regardless whether
     43      1.18     rmind  *	the PCU state is on the current CPU or remote CPU) b) any other LWP
     44      1.18     rmind  *	running on that CPU (in such case, the owner LWP is on a remote CPU
     45      1.18     rmind  *	or sleeping).
     46      1.18     rmind  *
     47      1.18     rmind  *	In any case, the PCU state can *only* be changed from the current
     48      1.18     rmind  *	CPU.  If said PCU state is on the remote CPU, a cross-call will be
     49      1.18     rmind  *	sent by the owner LWP.  Therefore struct cpu_info::ci_pcu_curlwp[id]
     50      1.18     rmind  *	may only be changed by the current CPU and lwp_t::l_pcu_cpu[id] may
     51      1.18     rmind  *	only be cleared by the CPU which has the PCU state loaded.
     52       1.1     rmind  */
     53       1.1     rmind 
     54       1.1     rmind #include <sys/cdefs.h>
     55  1.20.6.1       snj __KERNEL_RCSID(0, "$NetBSD: subr_pcu.c,v 1.20.6.1 2017/10/24 09:14:59 snj Exp $");
     56       1.1     rmind 
     57       1.1     rmind #include <sys/param.h>
     58       1.1     rmind #include <sys/cpu.h>
     59       1.1     rmind #include <sys/lwp.h>
     60       1.1     rmind #include <sys/pcu.h>
     61      1.19     rmind #include <sys/ipi.h>
     62       1.1     rmind 
     63       1.3      matt #if PCU_UNIT_COUNT > 0
     64       1.3      matt 
     65      1.13      matt static inline void pcu_do_op(const pcu_ops_t *, lwp_t * const, const int);
     66      1.13      matt static void pcu_lwp_op(const pcu_ops_t *, lwp_t *, const int);
     67      1.13      matt 
     68      1.18     rmind /*
     69      1.18     rmind  * Internal PCU commands for the pcu_do_op() function.
     70      1.18     rmind  */
     71      1.18     rmind #define	PCU_CMD_SAVE		0x01	/* save PCU state to the LWP */
     72      1.18     rmind #define	PCU_CMD_RELEASE		0x02	/* release PCU state on the CPU */
     73      1.13      matt 
     74      1.18     rmind /*
     75      1.19     rmind  * Message structure for another CPU passed via ipi(9).
     76      1.18     rmind  */
     77      1.18     rmind typedef struct {
     78      1.18     rmind 	const pcu_ops_t *pcu;
     79      1.18     rmind 	lwp_t *		owner;
     80      1.18     rmind 	const int	flags;
     81      1.19     rmind } pcu_ipi_msg_t;
     82      1.19     rmind 
     83      1.19     rmind /*
     84      1.19     rmind  * PCU IPIs run at IPL_HIGH (aka IPL_PCU in this code).
     85      1.19     rmind  */
     86      1.19     rmind #define	splpcu		splhigh
     87       1.1     rmind 
     88      1.18     rmind /* PCU operations structure provided by the MD code. */
     89      1.18     rmind extern const pcu_ops_t * const pcu_ops_md_defs[];
     90       1.4     rmind 
     91      1.11      yamt /*
     92      1.11      yamt  * pcu_switchpoint: release PCU state if the LWP is being run on another CPU.
     93      1.19     rmind  * This routine is called on each context switch by by mi_switch().
     94      1.11      yamt  */
     95       1.1     rmind void
     96       1.4     rmind pcu_switchpoint(lwp_t *l)
     97       1.1     rmind {
     98      1.18     rmind 	const uint32_t pcu_valid = l->l_pcu_valid;
     99      1.19     rmind 	int s;
    100       1.1     rmind 
    101      1.12      matt 	KASSERTMSG(l == curlwp, "l %p != curlwp %p", l, curlwp);
    102       1.4     rmind 
    103      1.18     rmind 	if (__predict_true(pcu_valid == 0)) {
    104       1.4     rmind 		/* PCUs are not in use. */
    105       1.4     rmind 		return;
    106       1.4     rmind 	}
    107      1.19     rmind 	s = splpcu();
    108      1.13      matt 	for (u_int id = 0; id < PCU_UNIT_COUNT; id++) {
    109      1.18     rmind 		if ((pcu_valid & (1U << id)) == 0) {
    110       1.4     rmind 			continue;
    111       1.4     rmind 		}
    112       1.5      matt 		struct cpu_info * const pcu_ci = l->l_pcu_cpu[id];
    113  1.20.6.1       snj 		if (pcu_ci == l->l_cpu) {
    114  1.20.6.1       snj 			KASSERT(pcu_ci->ci_pcu_curlwp[id] == l);
    115       1.4     rmind 			continue;
    116       1.4     rmind 		}
    117       1.4     rmind 		const pcu_ops_t * const pcu = pcu_ops_md_defs[id];
    118      1.18     rmind 		pcu->pcu_state_release(l);
    119       1.4     rmind 	}
    120      1.19     rmind 	splx(s);
    121       1.1     rmind }
    122       1.1     rmind 
    123      1.11      yamt /*
    124      1.11      yamt  * pcu_discard_all: discard PCU state of the given LWP.
    125      1.11      yamt  *
    126      1.11      yamt  * Used by exec and LWP exit.
    127      1.11      yamt  */
    128       1.7      matt void
    129       1.7      matt pcu_discard_all(lwp_t *l)
    130       1.7      matt {
    131      1.18     rmind 	const uint32_t pcu_valid = l->l_pcu_valid;
    132       1.7      matt 
    133      1.18     rmind 	KASSERT(l == curlwp || ((l->l_flag & LW_SYSTEM) && pcu_valid == 0));
    134       1.7      matt 
    135      1.18     rmind 	if (__predict_true(pcu_valid == 0)) {
    136       1.7      matt 		/* PCUs are not in use. */
    137       1.7      matt 		return;
    138       1.7      matt 	}
    139       1.7      matt 	for (u_int id = 0; id < PCU_UNIT_COUNT; id++) {
    140      1.18     rmind 		if ((pcu_valid & (1U << id)) == 0) {
    141       1.7      matt 			continue;
    142       1.7      matt 		}
    143       1.7      matt 		if (__predict_true(l->l_pcu_cpu[id] == NULL)) {
    144       1.7      matt 			continue;
    145       1.7      matt 		}
    146       1.7      matt 		const pcu_ops_t * const pcu = pcu_ops_md_defs[id];
    147      1.18     rmind 		pcu_lwp_op(pcu, l, PCU_CMD_RELEASE);
    148       1.7      matt 	}
    149      1.18     rmind 	l->l_pcu_valid = 0;
    150       1.7      matt }
    151       1.7      matt 
    152      1.11      yamt /*
    153      1.11      yamt  * pcu_save_all: save PCU state of the given LWP so that eg. coredump can
    154      1.11      yamt  * examine it.
    155      1.11      yamt  */
    156       1.7      matt void
    157       1.7      matt pcu_save_all(lwp_t *l)
    158       1.7      matt {
    159      1.18     rmind 	const uint32_t pcu_valid = l->l_pcu_valid;
    160      1.18     rmind 	int flags = PCU_CMD_SAVE;
    161      1.18     rmind 
    162      1.18     rmind 	/* If LW_WCORE, we are also releasing the state. */
    163      1.18     rmind 	if (__predict_false(l->l_flag & LW_WCORE)) {
    164      1.18     rmind 		flags |= PCU_CMD_RELEASE;
    165      1.18     rmind 	}
    166       1.7      matt 
    167       1.9      matt 	/*
    168       1.9      matt 	 * Normally we save for the current LWP, but sometimes we get called
    169       1.9      matt 	 * with a different LWP (forking a system LWP or doing a coredump of
    170       1.9      matt 	 * a process with multiple threads) and we need to deal with that.
    171       1.9      matt 	 */
    172      1.18     rmind 	KASSERT(l == curlwp || (((l->l_flag & LW_SYSTEM) ||
    173      1.18     rmind 	    (curlwp->l_proc == l->l_proc && l->l_stat == LSSUSPENDED)) &&
    174      1.18     rmind 	    pcu_valid == 0));
    175       1.7      matt 
    176      1.18     rmind 	if (__predict_true(pcu_valid == 0)) {
    177       1.7      matt 		/* PCUs are not in use. */
    178       1.7      matt 		return;
    179       1.7      matt 	}
    180       1.7      matt 	for (u_int id = 0; id < PCU_UNIT_COUNT; id++) {
    181      1.18     rmind 		if ((pcu_valid & (1U << id)) == 0) {
    182       1.7      matt 			continue;
    183       1.7      matt 		}
    184       1.7      matt 		if (__predict_true(l->l_pcu_cpu[id] == NULL)) {
    185       1.7      matt 			continue;
    186       1.7      matt 		}
    187       1.7      matt 		const pcu_ops_t * const pcu = pcu_ops_md_defs[id];
    188       1.9      matt 		pcu_lwp_op(pcu, l, flags);
    189       1.7      matt 	}
    190       1.7      matt }
    191       1.7      matt 
    192       1.1     rmind /*
    193       1.4     rmind  * pcu_do_op: save/release PCU state on the current CPU.
    194       1.1     rmind  *
    195      1.19     rmind  * => Must be called at IPL_PCU or from the interrupt.
    196       1.1     rmind  */
    197       1.4     rmind static inline void
    198       1.4     rmind pcu_do_op(const pcu_ops_t *pcu, lwp_t * const l, const int flags)
    199       1.4     rmind {
    200       1.4     rmind 	struct cpu_info * const ci = curcpu();
    201       1.4     rmind 	const u_int id = pcu->pcu_id;
    202      1.18     rmind 
    203      1.18     rmind 	KASSERT(l->l_pcu_cpu[id] == ci);
    204      1.18     rmind 
    205      1.18     rmind 	if (flags & PCU_CMD_SAVE) {
    206      1.18     rmind 		pcu->pcu_state_save(l);
    207      1.18     rmind 	}
    208      1.18     rmind 	if (flags & PCU_CMD_RELEASE) {
    209      1.18     rmind 		pcu->pcu_state_release(l);
    210       1.4     rmind 		ci->ci_pcu_curlwp[id] = NULL;
    211       1.4     rmind 		l->l_pcu_cpu[id] = NULL;
    212       1.4     rmind 	}
    213       1.4     rmind }
    214       1.4     rmind 
    215       1.4     rmind /*
    216      1.19     rmind  * pcu_cpu_ipi: helper routine to call pcu_do_op() via ipi(9).
    217       1.4     rmind  */
    218       1.1     rmind static void
    219      1.19     rmind pcu_cpu_ipi(void *arg)
    220       1.1     rmind {
    221      1.19     rmind 	const pcu_ipi_msg_t *pcu_msg = arg;
    222      1.18     rmind 	const pcu_ops_t *pcu = pcu_msg->pcu;
    223       1.1     rmind 	const u_int id = pcu->pcu_id;
    224      1.18     rmind 	lwp_t *l = pcu_msg->owner;
    225       1.4     rmind 
    226      1.18     rmind 	KASSERT(pcu_msg->owner != NULL);
    227       1.1     rmind 
    228      1.18     rmind 	if (curcpu()->ci_pcu_curlwp[id] != l) {
    229      1.18     rmind 		/*
    230      1.18     rmind 		 * Different ownership: another LWP raced with us and
    231      1.18     rmind 		 * perform save and release.  There is nothing to do.
    232      1.18     rmind 		 */
    233      1.18     rmind 		KASSERT(l->l_pcu_cpu[id] == NULL);
    234       1.1     rmind 		return;
    235       1.1     rmind 	}
    236      1.18     rmind 	pcu_do_op(pcu, l, pcu_msg->flags);
    237       1.1     rmind }
    238       1.1     rmind 
    239       1.1     rmind /*
    240       1.1     rmind  * pcu_lwp_op: perform PCU state save, release or both operations on LWP.
    241       1.1     rmind  */
    242       1.1     rmind static void
    243      1.13      matt pcu_lwp_op(const pcu_ops_t *pcu, lwp_t *l, const int flags)
    244       1.1     rmind {
    245       1.1     rmind 	const u_int id = pcu->pcu_id;
    246       1.1     rmind 	struct cpu_info *ci;
    247       1.1     rmind 	int s;
    248       1.1     rmind 
    249       1.1     rmind 	/*
    250       1.1     rmind 	 * Caller should have re-checked if there is any state to manage.
    251       1.1     rmind 	 * Block the interrupts and inspect again, since cross-call sent
    252       1.1     rmind 	 * by remote CPU could have changed the state.
    253       1.1     rmind 	 */
    254      1.19     rmind 	s = splpcu();
    255       1.1     rmind 	ci = l->l_pcu_cpu[id];
    256       1.1     rmind 	if (ci == curcpu()) {
    257       1.1     rmind 		/*
    258       1.1     rmind 		 * State is on the current CPU - just perform the operations.
    259       1.1     rmind 		 */
    260       1.6      matt 		KASSERTMSG(ci->ci_pcu_curlwp[id] == l,
    261      1.10       jym 		    "%s: cpu%u: pcu_curlwp[%u] (%p) != l (%p)",
    262      1.10       jym 		     __func__, cpu_index(ci), id, ci->ci_pcu_curlwp[id], l);
    263       1.4     rmind 		pcu_do_op(pcu, l, flags);
    264       1.1     rmind 		splx(s);
    265       1.1     rmind 		return;
    266       1.1     rmind 	}
    267       1.1     rmind 	if (__predict_false(ci == NULL)) {
    268       1.1     rmind 		/* Cross-call has won the race - no state to manage. */
    269      1.19     rmind 		splx(s);
    270       1.1     rmind 		return;
    271       1.1     rmind 	}
    272       1.1     rmind 
    273       1.1     rmind 	/*
    274      1.18     rmind 	 * The state is on the remote CPU: perform the operation(s) there.
    275       1.1     rmind 	 */
    276      1.19     rmind 	pcu_ipi_msg_t pcu_msg = { .pcu = pcu, .owner = l, .flags = flags };
    277      1.19     rmind 	ipi_msg_t ipi_msg = { .func = pcu_cpu_ipi, .arg = &pcu_msg };
    278      1.19     rmind 	ipi_unicast(&ipi_msg, ci);
    279      1.19     rmind 	splx(s);
    280      1.19     rmind 
    281      1.19     rmind 	/* Wait for completion. */
    282      1.19     rmind 	ipi_wait(&ipi_msg);
    283       1.1     rmind 
    284      1.18     rmind 	KASSERT((flags & PCU_CMD_RELEASE) == 0 || l->l_pcu_cpu[id] == NULL);
    285       1.1     rmind }
    286       1.1     rmind 
    287       1.1     rmind /*
    288       1.1     rmind  * pcu_load: load/initialize the PCU state of current LWP on current CPU.
    289       1.1     rmind  */
    290       1.1     rmind void
    291       1.1     rmind pcu_load(const pcu_ops_t *pcu)
    292       1.1     rmind {
    293      1.18     rmind 	lwp_t *oncpu_lwp, * const l = curlwp;
    294       1.1     rmind 	const u_int id = pcu->pcu_id;
    295       1.1     rmind 	struct cpu_info *ci, *curci;
    296       1.1     rmind 	int s;
    297       1.1     rmind 
    298       1.1     rmind 	KASSERT(!cpu_intr_p() && !cpu_softintr_p());
    299       1.1     rmind 
    300      1.19     rmind 	s = splpcu();
    301       1.1     rmind 	curci = curcpu();
    302       1.1     rmind 	ci = l->l_pcu_cpu[id];
    303       1.1     rmind 
    304       1.1     rmind 	/* Does this CPU already have our PCU state loaded? */
    305       1.1     rmind 	if (ci == curci) {
    306      1.19     rmind 		/*
    307      1.19     rmind 		 * Fault reoccurred while the PCU state is loaded and
    308      1.19     rmind 		 * therefore PCU should be reenabled.  This happens
    309      1.19     rmind 		 * if LWP is context switched to another CPU and then
    310      1.19     rmind 		 * switched back to the original CPU while the state
    311      1.19     rmind 		 * on that CPU has not been changed by other LWPs.
    312      1.19     rmind 		 *
    313      1.19     rmind 		 * It may also happen due to instruction "bouncing" on
    314      1.19     rmind 		 * some architectures.
    315      1.19     rmind 		 */
    316       1.1     rmind 		KASSERT(curci->ci_pcu_curlwp[id] == l);
    317      1.20       chs 		KASSERT(pcu_valid_p(pcu, l));
    318      1.18     rmind 		pcu->pcu_state_load(l, PCU_VALID | PCU_REENABLE);
    319       1.1     rmind 		splx(s);
    320       1.1     rmind 		return;
    321       1.1     rmind 	}
    322       1.1     rmind 
    323       1.1     rmind 	/* If PCU state of this LWP is on the remote CPU - save it there. */
    324       1.1     rmind 	if (ci) {
    325      1.19     rmind 		pcu_ipi_msg_t pcu_msg = { .pcu = pcu, .owner = l,
    326      1.19     rmind 		    .flags = PCU_CMD_SAVE | PCU_CMD_RELEASE };
    327      1.19     rmind 		ipi_msg_t ipi_msg = { .func = pcu_cpu_ipi, .arg = &pcu_msg };
    328      1.19     rmind 		ipi_unicast(&ipi_msg, ci);
    329       1.1     rmind 		splx(s);
    330      1.18     rmind 
    331      1.19     rmind 		/*
    332      1.19     rmind 		 * Wait for completion, re-enter IPL_PCU and re-fetch
    333      1.19     rmind 		 * the current CPU.
    334      1.19     rmind 		 */
    335      1.19     rmind 		ipi_wait(&ipi_msg);
    336      1.19     rmind 		s = splpcu();
    337       1.1     rmind 		curci = curcpu();
    338       1.1     rmind 	}
    339       1.1     rmind 	KASSERT(l->l_pcu_cpu[id] == NULL);
    340       1.1     rmind 
    341       1.1     rmind 	/* Save the PCU state on the current CPU, if there is any. */
    342      1.18     rmind 	if ((oncpu_lwp = curci->ci_pcu_curlwp[id]) != NULL) {
    343      1.18     rmind 		pcu_do_op(pcu, oncpu_lwp, PCU_CMD_SAVE | PCU_CMD_RELEASE);
    344      1.18     rmind 		KASSERT(curci->ci_pcu_curlwp[id] == NULL);
    345      1.18     rmind 	}
    346       1.1     rmind 
    347       1.1     rmind 	/*
    348       1.1     rmind 	 * Finally, load the state for this LWP on this CPU.  Indicate to
    349      1.18     rmind 	 * the load function whether PCU state was valid before this call.
    350       1.1     rmind 	 */
    351      1.18     rmind 	const bool valid = ((1U << id) & l->l_pcu_valid) != 0;
    352      1.18     rmind 	pcu->pcu_state_load(l, valid ? PCU_VALID : 0);
    353      1.18     rmind 	curci->ci_pcu_curlwp[id] = l;
    354      1.18     rmind 	l->l_pcu_cpu[id] = curci;
    355      1.18     rmind 	l->l_pcu_valid |= (1U << id);
    356       1.1     rmind 	splx(s);
    357       1.1     rmind }
    358       1.1     rmind 
    359       1.1     rmind /*
    360      1.20       chs  * pcu_discard: discard the PCU state of the given LWP.  If "valid"
    361      1.18     rmind  * parameter is true, then keep considering the PCU state as valid.
    362       1.1     rmind  */
    363       1.1     rmind void
    364      1.20       chs pcu_discard(const pcu_ops_t *pcu, lwp_t *l, bool valid)
    365       1.1     rmind {
    366       1.1     rmind 	const u_int id = pcu->pcu_id;
    367       1.1     rmind 
    368       1.1     rmind 	KASSERT(!cpu_intr_p() && !cpu_softintr_p());
    369       1.1     rmind 
    370      1.18     rmind 	if (__predict_false(valid)) {
    371      1.18     rmind 		l->l_pcu_valid |= (1U << id);
    372      1.18     rmind 	} else {
    373      1.18     rmind 		l->l_pcu_valid &= ~(1U << id);
    374      1.18     rmind 	}
    375       1.1     rmind 	if (__predict_true(l->l_pcu_cpu[id] == NULL)) {
    376       1.1     rmind 		return;
    377       1.1     rmind 	}
    378      1.18     rmind 	pcu_lwp_op(pcu, l, PCU_CMD_RELEASE);
    379       1.1     rmind }
    380       1.1     rmind 
    381       1.1     rmind /*
    382       1.1     rmind  * pcu_save_lwp: save PCU state to the given LWP.
    383       1.1     rmind  */
    384       1.1     rmind void
    385      1.20       chs pcu_save(const pcu_ops_t *pcu, lwp_t *l)
    386       1.1     rmind {
    387       1.1     rmind 	const u_int id = pcu->pcu_id;
    388       1.1     rmind 
    389       1.1     rmind 	KASSERT(!cpu_intr_p() && !cpu_softintr_p());
    390       1.1     rmind 
    391       1.1     rmind 	if (__predict_true(l->l_pcu_cpu[id] == NULL)) {
    392       1.1     rmind 		return;
    393       1.1     rmind 	}
    394      1.18     rmind 	pcu_lwp_op(pcu, l, PCU_CMD_SAVE | PCU_CMD_RELEASE);
    395       1.1     rmind }
    396       1.1     rmind 
    397       1.1     rmind /*
    398      1.18     rmind  * pcu_save_all_on_cpu: save all PCU states on the current CPU.
    399      1.15  drochner  */
    400      1.15  drochner void
    401      1.15  drochner pcu_save_all_on_cpu(void)
    402      1.15  drochner {
    403      1.18     rmind 	int s;
    404      1.15  drochner 
    405      1.19     rmind 	s = splpcu();
    406      1.15  drochner 	for (u_int id = 0; id < PCU_UNIT_COUNT; id++) {
    407      1.18     rmind 		const pcu_ops_t * const pcu = pcu_ops_md_defs[id];
    408      1.18     rmind 		lwp_t *l;
    409      1.18     rmind 
    410      1.18     rmind 		if ((l = curcpu()->ci_pcu_curlwp[id]) != NULL) {
    411      1.18     rmind 			pcu_do_op(pcu, l, PCU_CMD_SAVE | PCU_CMD_RELEASE);
    412      1.18     rmind 		}
    413      1.15  drochner 	}
    414      1.18     rmind 	splx(s);
    415      1.15  drochner }
    416      1.15  drochner 
    417      1.15  drochner /*
    418      1.18     rmind  * pcu_valid_p: return true if PCU state is considered valid.  Generally,
    419      1.18     rmind  * it always becomes "valid" when pcu_load() is called.
    420       1.1     rmind  */
    421       1.1     rmind bool
    422      1.20       chs pcu_valid_p(const pcu_ops_t *pcu, const lwp_t *l)
    423       1.1     rmind {
    424       1.1     rmind 	const u_int id = pcu->pcu_id;
    425       1.1     rmind 
    426      1.18     rmind 	return (l->l_pcu_valid & (1U << id)) != 0;
    427       1.1     rmind }
    428       1.3      matt 
    429       1.3      matt #endif /* PCU_UNIT_COUNT > 0 */
    430