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      1 /*
      2  * CDDL HEADER START
      3  *
      4  * The contents of this file are subject to the terms of the
      5  * Common Development and Distribution License (the "License").
      6  * You may not use this file except in compliance with the License.
      7  *
      8  * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE
      9  * or http://www.opensolaris.org/os/licensing.
     10  * See the License for the specific language governing permissions
     11  * and limitations under the License.
     12  *
     13  * When distributing Covered Code, include this CDDL HEADER in each
     14  * file and include the License file at usr/src/OPENSOLARIS.LICENSE.
     15  * If applicable, add the following below this CDDL HEADER, with the
     16  * fields enclosed by brackets "[]" replaced with your own identifying
     17  * information: Portions Copyright [yyyy] [name of copyright owner]
     18  *
     19  * CDDL HEADER END
     20  */
     21 /*
     22  * Copyright 2008 Sun Microsystems, Inc.  All rights reserved.
     23  * Use is subject to license terms.
     24  */
     25 
     26 #ifndef _SYS_LOCKSTAT_H
     27 #define	_SYS_LOCKSTAT_H
     28 
     29 #pragma ident	"%Z%%M%	%I%	%E% SMI"
     30 
     31 #include <sys/dtrace.h>
     32 
     33 #ifdef	__cplusplus
     34 extern "C" {
     35 #endif
     36 
     37 #define	LS_MUTEX_ENTER_ACQUIRE		0
     38 #define	LS_MUTEX_ENTER_BLOCK		1
     39 #define	LS_MUTEX_ENTER_SPIN		2
     40 #define	LS_MUTEX_EXIT_RELEASE		3
     41 #define	LS_MUTEX_DESTROY_RELEASE	4
     42 #define	LS_MUTEX_TRYENTER_ACQUIRE	5
     43 #define	LS_LOCK_SET_ACQUIRE		6
     44 #define	LS_LOCK_SET_SPIN		7
     45 #define	LS_LOCK_SET_SPL_ACQUIRE		8
     46 #define	LS_LOCK_SET_SPL_SPIN		9
     47 #define	LS_LOCK_TRY_ACQUIRE		10
     48 #define	LS_LOCK_CLEAR_RELEASE		11
     49 #define	LS_LOCK_CLEAR_SPLX_RELEASE	12
     50 #define	LS_CLOCK_UNLOCK_RELEASE		13
     51 #define	LS_RW_ENTER_ACQUIRE		14
     52 #define	LS_RW_ENTER_BLOCK		15
     53 #define	LS_RW_EXIT_RELEASE		16
     54 #define	LS_RW_TRYENTER_ACQUIRE		17
     55 #define	LS_RW_TRYUPGRADE_UPGRADE	18
     56 #define	LS_RW_DOWNGRADE_DOWNGRADE	19
     57 #define	LS_THREAD_LOCK_ACQUIRE		20
     58 #define	LS_THREAD_LOCK_SPIN		21
     59 #define	LS_THREAD_LOCK_HIGH_ACQUIRE	22
     60 #define	LS_THREAD_LOCK_HIGH_SPIN	23
     61 #define	LS_TURNSTILE_INTERLOCK_SPIN	24
     62 #define	LS_NPROBES			25
     63 
     64 #define	LS_MUTEX_ENTER			"mutex_enter"
     65 #define	LS_MUTEX_EXIT			"mutex_exit"
     66 #define	LS_MUTEX_DESTROY		"mutex_destroy"
     67 #define	LS_MUTEX_TRYENTER		"mutex_tryenter"
     68 #define	LS_LOCK_SET			"lock_set"
     69 #define	LS_LOCK_SET_SPL			"lock_set_spl"
     70 #define	LS_LOCK_TRY			"lock_try"
     71 #define	LS_LOCK_CLEAR			"lock_clear"
     72 #define	LS_LOCK_CLEAR_SPLX		"lock_clear_splx"
     73 #define	LS_CLOCK_UNLOCK			"CLOCK_UNLOCK"
     74 #define	LS_RW_ENTER			"rw_enter"
     75 #define	LS_RW_EXIT			"rw_exit"
     76 #define	LS_RW_TRYENTER			"rw_tryenter"
     77 #define	LS_RW_TRYUPGRADE		"rw_tryupgrade"
     78 #define	LS_RW_DOWNGRADE			"rw_downgrade"
     79 #define	LS_THREAD_LOCK			"thread_lock"
     80 #define	LS_THREAD_LOCK_HIGH		"thread_lock_high"
     81 
     82 #define	LS_ACQUIRE			"acquire"
     83 #define	LS_RELEASE			"release"
     84 #define	LS_SPIN				"spin"
     85 #define	LS_BLOCK			"block"
     86 #define	LS_UPGRADE			"upgrade"
     87 #define	LS_DOWNGRADE			"downgrade"
     88 
     89 #define	LS_TYPE_ADAPTIVE		"adaptive"
     90 #define	LS_TYPE_SPIN			"spin"
     91 #define	LS_TYPE_THREAD			"thread"
     92 #define	LS_TYPE_RW			"rw"
     93 
     94 #define	LSA_ACQUIRE			(LS_TYPE_ADAPTIVE "-" LS_ACQUIRE)
     95 #define	LSA_RELEASE			(LS_TYPE_ADAPTIVE "-" LS_RELEASE)
     96 #define	LSA_SPIN			(LS_TYPE_ADAPTIVE "-" LS_SPIN)
     97 #define	LSA_BLOCK			(LS_TYPE_ADAPTIVE "-" LS_BLOCK)
     98 #define	LSS_ACQUIRE			(LS_TYPE_SPIN "-" LS_ACQUIRE)
     99 #define	LSS_RELEASE			(LS_TYPE_SPIN "-" LS_RELEASE)
    100 #define	LSS_SPIN			(LS_TYPE_SPIN "-" LS_SPIN)
    101 #define	LSR_ACQUIRE			(LS_TYPE_RW "-" LS_ACQUIRE)
    102 #define	LSR_RELEASE			(LS_TYPE_RW "-" LS_RELEASE)
    103 #define	LSR_BLOCK			(LS_TYPE_RW "-" LS_BLOCK)
    104 #define	LSR_UPGRADE			(LS_TYPE_RW "-" LS_UPGRADE)
    105 #define	LSR_DOWNGRADE			(LS_TYPE_RW "-" LS_DOWNGRADE)
    106 #define	LST_SPIN			(LS_TYPE_THREAD "-" LS_SPIN)
    107 
    108 #ifndef _ASM
    109 
    110 #include <sys/types.h>
    111 #include <sys/inttypes.h>
    112 #include <sys/systm.h>
    113 #include <sys/atomic.h>
    114 
    115 #ifdef _KERNEL
    116 
    117 /*
    118  * Platform-independent kernel support for the lockstat driver.
    119  */
    120 extern dtrace_id_t lockstat_probemap[LS_NPROBES];
    121 extern void (*lockstat_probe)(dtrace_id_t, uintptr_t, uintptr_t,
    122     uintptr_t, uintptr_t, uintptr_t);
    123 
    124 extern int lockstat_active_threads(void);
    125 extern int lockstat_depth(void);
    126 extern void lockstat_hot_patch(void);
    127 
    128 /*
    129  * Macros to record lockstat probes.
    130  */
    131 
    132 /* used for 32 bit systems to avoid overflow */
    133 #if defined(_ILP32)
    134 #define	CLAMP32(x)	((x) > UINT_MAX ? UINT_MAX : (x))
    135 #else
    136 #define	CLAMP32(x)	(x)
    137 #endif
    138 
    139 #define	LOCKSTAT_RECORD4(probe, lp, arg0, arg1, arg2, arg3)		\
    140 	if (lockstat_probemap[(probe)]) {				\
    141 		dtrace_id_t id;						\
    142 		curthread->t_lockstat++;				\
    143 		membar_enter();						\
    144 		if ((id = lockstat_probemap[(probe)]) != 0)		\
    145 			(*lockstat_probe)(id, (uintptr_t)(lp), (arg0),	\
    146 			    (arg1), (arg2), (arg3));			\
    147 		curthread->t_lockstat--;				\
    148 	}
    149 
    150 #define	LOCKSTAT_RECORD(probe, lp, arg)	\
    151 	LOCKSTAT_RECORD4(probe, lp, arg, 0, 0, 0)
    152 
    153 #define	LOCKSTAT_RECORD0(probe, lp)	\
    154 	LOCKSTAT_RECORD4(probe, lp, 0, 0, 0, 0)
    155 
    156 /*
    157  * Return timestamp for start of busy-waiting (for spin probes)
    158  */
    159 #define	LOCKSTAT_START_TIME(probe)	(			\
    160 	lockstat_probemap[(probe)] ? gethrtime_waitfree() : 0	\
    161 )
    162 
    163 /*
    164  * Record elapsed time since LOCKSTAT_START_TIME was called if the
    165  * probe is enabled at start and end, else return 0. t_start must
    166  * be the value returned by LOCKSTAT_START_TIME.
    167  */
    168 #define	LOCKSTAT_RECORD_TIME(probe, lp, t_start)		\
    169 	if (lockstat_probemap[(probe)]) {				\
    170 		dtrace_id_t id;						\
    171 		hrtime_t t_spin = (t_start);				\
    172 		curthread->t_lockstat++;				\
    173 		membar_enter();						\
    174 		if ((id = lockstat_probemap[(probe)]) != 0) {		\
    175 			if (t_spin) {					\
    176 				t_spin = gethrtime_waitfree() - t_spin;	\
    177 				t_spin = CLAMP32(t_spin);		\
    178 			} 						\
    179 			(*lockstat_probe)(id, (uintptr_t)(lp), t_spin,	\
    180 			0, 0, 0);					\
    181 		} 							\
    182 		curthread->t_lockstat--;				\
    183 	}
    184 
    185 
    186 #endif /* _KERNEL */
    187 
    188 #endif /* _ASM */
    189 
    190 #ifdef	__cplusplus
    191 }
    192 #endif
    193 
    194 #endif	/* _SYS_LOCKSTAT_H */
    195