a020bb21aa
- Layout reorganisation to enhance portability. The driver now has a relatively MI 'core' and a FreeBSD-specific layer over the top. Since the NetBSD people have already done their own port, this is largely just to help me with the BSD/OS port. - Request ID allocation changed to improve performance (I'd been considering switching to this approach after having failed to come up with a better way to dynamically allocate request IDs, and seeing Andy Doran use it in the NetBSD port of the driver convinced me that I was wasting my time doing it any other way). Now we just allocate all the requests up front. - Maximum request count bumped back to 255 after characterisation of a firmware issue (off-by-one causing it to crash with 256 outstanding commands). - Control interface implemented. This allows 3ware's '3dm' utility to talk to the controller. 3dm will be available from 3ware shortly. - Controller soft-reset feature added; if the controller signals a firmware or protocol error, the controller will be reset and all outstanding commands will be retried.
275 lines
9.2 KiB
C
275 lines
9.2 KiB
C
/*-
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* Copyright (c) 2000 Michael Smith
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* Copyright (c) 2000 BSDi
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* 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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* 1. 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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* 2. 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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*
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* THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
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* ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
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* IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
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* ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
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* FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
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* DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
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* OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
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* HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
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* LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
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* OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
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* SUCH DAMAGE.
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*
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* $FreeBSD$
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*/
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#ifdef TWE_DEBUG
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#define debug(level, fmt, args...) \
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do { \
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if (level <= TWE_DEBUG) printf("%s: " fmt "\n", __FUNCTION__ , ##args); \
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} while(0)
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#define debug_called(level) \
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do { \
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if (level <= TWE_DEBUG) printf(__FUNCTION__ ": called\n"); \
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} while(0)
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#else
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#define debug(level, fmt, args...)
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#define debug_called(level)
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#endif
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/*
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* Structure describing a logical unit as attached to the controller
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*/
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struct twe_drive
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{
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/* unit properties */
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u_int32_t td_size;
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int td_cylinders;
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int td_heads;
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int td_sectors;
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int td_unit;
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/* unit state and type */
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u_int8_t td_state;
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u_int8_t td_type;
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/* handle for attached driver */
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device_t td_disk;
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};
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/*
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* Per-command control structure.
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*
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* Note that due to alignment constraints on the tc_command field, this *must* be 64-byte aligned.
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* We achieve this by placing the command at the beginning of the structure, and using malloc()
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* to allocate each structure.
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*/
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struct twe_request
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{
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/* controller command */
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TWE_Command tr_command; /* command as submitted to controller */
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/* command payload */
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void *tr_data; /* data buffer */
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void *tr_realdata; /* copy of real data buffer pointer for alignment fixup */
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size_t tr_length;
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TAILQ_ENTRY(twe_request) tr_link; /* list linkage */
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struct twe_softc *tr_sc; /* controller that owns us */
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int tr_status; /* command status */
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#define TWE_CMD_SETUP 0 /* being assembled */
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#define TWE_CMD_BUSY 1 /* submitted to controller */
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#define TWE_CMD_COMPLETE 2 /* completed by controller (maybe with error) */
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#define TWE_CMD_FAILED 3 /* failed submission to controller */
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int tr_flags;
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#define TWE_CMD_DATAIN (1<<0)
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#define TWE_CMD_DATAOUT (1<<1)
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#define TWE_CMD_ALIGNBUF (1<<2) /* data in bio is misaligned, have to copy to/from private buffer */
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#define TWE_CMD_SLEEPER (1<<3) /* owner is sleeping on this command */
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void (* tr_complete)(struct twe_request *tr); /* completion handler */
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void *tr_private; /* submitter-private data or wait channel */
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TWE_PLATFORM_REQUEST /* platform-specific request elements */
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};
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/*
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* Per-controller state.
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*/
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struct twe_softc
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{
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/* controller queues and arrays */
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TAILQ_HEAD(, twe_request) twe_free; /* command structures available for reuse */
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twe_bioq twe_bioq; /* outstanding I/O operations */
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TAILQ_HEAD(, twe_request) twe_ready; /* requests ready for the controller */
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TAILQ_HEAD(, twe_request) twe_busy; /* requests busy in the controller */
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TAILQ_HEAD(, twe_request) twe_complete; /* active commands (busy or waiting for completion) */
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struct twe_request *twe_lookup[TWE_Q_LENGTH]; /* commands indexed by request ID */
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struct twe_drive twe_drive[TWE_MAX_UNITS]; /* attached drives */
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/* asynchronous event handling */
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u_int16_t twe_aen_queue[TWE_Q_LENGTH]; /* AENs queued for userland tool(s) */
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int twe_aen_head, twe_aen_tail; /* ringbuffer pointers for AEN queue */
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int twe_wait_aen; /* wait-for-aen notification */
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/* controller status */
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int twe_state;
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#define TWE_STATE_INTEN (1<<0) /* interrupts have been enabled */
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#define TWE_STATE_SHUTDOWN (1<<1) /* controller is shut down */
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#define TWE_STATE_OPEN (1<<2) /* control device is open */
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#define TWE_STATE_SUSPEND (1<<3) /* controller is suspended */
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int twe_host_id;
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#ifdef TWE_PERFORMANCE_MONITOR
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struct twe_qstat twe_qstat[TWEQ_COUNT]; /* queue statistics */
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#endif
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TWE_PLATFORM_SOFTC /* platform-specific softc elements */
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};
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/*
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* Interface betwen driver core and platform-dependant code.
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*/
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extern int twe_setup(struct twe_softc *sc); /* do early driver/controller setup */
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extern void twe_init(struct twe_softc *sc); /* init controller */
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extern void twe_deinit(struct twe_softc *sc); /* stop controller */
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extern void twe_intr(struct twe_softc *sc); /* hardware interrupt signalled */
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extern int twe_submit_bio(struct twe_softc *sc,
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twe_bio *bp); /* pass bio to core */
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extern int twe_ioctl(struct twe_softc *sc, int cmd,
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void *addr); /* handle user request */
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extern void twe_describe_controller(struct twe_softc *sc); /* print controller info */
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extern void twe_print_controller(struct twe_softc *sc);
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extern void twe_enable_interrupts(struct twe_softc *sc); /* enable controller interrupts */
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extern void twe_disable_interrupts(struct twe_softc *sc); /* disable controller interrupts */
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extern void twe_attach_drive(struct twe_softc *sc,
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struct twe_drive *dr); /* attach drive when found in twe_init */
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extern void twed_intr(twe_bio *bp); /* return bio from core */
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extern struct twe_request *twe_allocate_request(struct twe_softc *sc); /* allocate request structure */
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extern void twe_free_request(struct twe_request *tr); /* free request structure */
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extern void twe_map_request(struct twe_request *tr); /* make request visible to controller, do s/g */
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extern void twe_unmap_request(struct twe_request *tr); /* cleanup after transfer, unmap */
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/********************************************************************************
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* Queue primitives
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*/
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#ifdef TWE_PERFORMANCE_MONITOR
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# define TWEQ_ADD(sc, qname) \
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do { \
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struct twe_qstat *qs = &(sc)->twe_qstat[qname]; \
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\
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qs->q_length++; \
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if (qs->q_length > qs->q_max) \
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qs->q_max = qs->q_length; \
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} while(0)
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# define TWEQ_REMOVE(sc, qname) (sc)->twe_qstat[qname].q_length--
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# define TWEQ_INIT(sc, qname) \
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do { \
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sc->twe_qstat[qname].q_length = 0; \
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sc->twe_qstat[qname].q_max = 0; \
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} while(0)
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#else
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# define TWEQ_ADD(sc, qname)
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# define TWEQ_REMOVE(sc, qname)
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# define TWEQ_INIT(sc, qname)
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#endif
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#define TWEQ_REQUEST_QUEUE(name, index) \
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static __inline void \
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twe_initq_ ## name (struct twe_softc *sc) \
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{ \
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TAILQ_INIT(&sc->twe_ ## name); \
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TWEQ_INIT(sc, index); \
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} \
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static __inline void \
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twe_enqueue_ ## name (struct twe_request *tr) \
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{ \
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int s; \
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\
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s = splbio(); \
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TAILQ_INSERT_TAIL(&tr->tr_sc->twe_ ## name, tr, tr_link); \
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TWEQ_ADD(tr->tr_sc, index); \
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splx(s); \
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} \
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static __inline void \
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twe_requeue_ ## name (struct twe_request *tr) \
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{ \
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int s; \
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\
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s = splbio(); \
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TAILQ_INSERT_HEAD(&tr->tr_sc->twe_ ## name, tr, tr_link); \
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TWEQ_ADD(tr->tr_sc, index); \
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splx(s); \
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} \
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static __inline struct twe_request * \
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twe_dequeue_ ## name (struct twe_softc *sc) \
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{ \
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struct twe_request *tr; \
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int s; \
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\
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s = splbio(); \
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if ((tr = TAILQ_FIRST(&sc->twe_ ## name)) != NULL) { \
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TAILQ_REMOVE(&sc->twe_ ## name, tr, tr_link); \
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TWEQ_REMOVE(sc, index); \
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} \
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splx(s); \
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return(tr); \
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} \
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static __inline void \
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twe_remove_ ## name (struct twe_request *tr) \
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{ \
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int s; \
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\
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s = splbio(); \
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TAILQ_REMOVE(&tr->tr_sc->twe_ ## name, tr, tr_link); \
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TWEQ_REMOVE(tr->tr_sc, index); \
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splx(s); \
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}
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TWEQ_REQUEST_QUEUE(free, TWEQ_FREE)
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TWEQ_REQUEST_QUEUE(ready, TWEQ_READY)
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TWEQ_REQUEST_QUEUE(busy, TWEQ_BUSY)
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TWEQ_REQUEST_QUEUE(complete, TWEQ_COMPLETE)
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/*
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* outstanding bio queue
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*/
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static __inline void
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twe_initq_bio(struct twe_softc *sc)
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{
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TWE_BIO_QINIT(sc->twe_bioq);
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TWEQ_INIT(sc, TWEQ_BIO);
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}
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static __inline void
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twe_enqueue_bio(struct twe_softc *sc, struct bio *bp)
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{
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int s;
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s = splbio();
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TWE_BIO_QINSERT(sc->twe_bioq, bp);
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TWEQ_ADD(sc, TWEQ_BIO);
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splx(s);
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}
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static __inline struct bio *
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twe_dequeue_bio(struct twe_softc *sc)
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{
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int s;
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struct bio *bp;
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s = splbio();
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if ((bp = TWE_BIO_QFIRST(sc->twe_bioq)) != NULL) {
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TWE_BIO_QREMOVE(sc->twe_bioq, bp);
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TWEQ_REMOVE(sc, TWEQ_BIO);
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}
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splx(s);
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return(bp);
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}
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