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sys_pipe.c revision 1.145
      1  1.145  jdolecek /*	$NetBSD: sys_pipe.c,v 1.145 2018/05/19 11:39:37 jdolecek Exp $	*/
      2   1.35        pk 
      3   1.35        pk /*-
      4  1.106        ad  * Copyright (c) 2003, 2007, 2008, 2009 The NetBSD Foundation, Inc.
      5   1.35        pk  * All rights reserved.
      6   1.35        pk  *
      7   1.35        pk  * This code is derived from software contributed to The NetBSD Foundation
      8   1.80        ad  * by Paul Kranenburg, and by Andrew Doran.
      9   1.35        pk  *
     10   1.35        pk  * Redistribution and use in source and binary forms, with or without
     11   1.35        pk  * modification, are permitted provided that the following conditions
     12   1.35        pk  * are met:
     13   1.35        pk  * 1. Redistributions of source code must retain the above copyright
     14   1.35        pk  *    notice, this list of conditions and the following disclaimer.
     15   1.35        pk  * 2. Redistributions in binary form must reproduce the above copyright
     16   1.35        pk  *    notice, this list of conditions and the following disclaimer in the
     17   1.35        pk  *    documentation and/or other materials provided with the distribution.
     18   1.35        pk  *
     19   1.35        pk  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     20   1.35        pk  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     21   1.35        pk  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     22   1.35        pk  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     23   1.35        pk  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     24   1.35        pk  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     25   1.35        pk  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     26   1.35        pk  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     27   1.35        pk  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     28   1.35        pk  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     29   1.35        pk  * POSSIBILITY OF SUCH DAMAGE.
     30   1.35        pk  */
     31    1.2  jdolecek 
     32    1.1  jdolecek /*
     33    1.1  jdolecek  * Copyright (c) 1996 John S. Dyson
     34    1.1  jdolecek  * All rights reserved.
     35    1.1  jdolecek  *
     36    1.1  jdolecek  * Redistribution and use in source and binary forms, with or without
     37    1.1  jdolecek  * modification, are permitted provided that the following conditions
     38    1.1  jdolecek  * are met:
     39    1.1  jdolecek  * 1. Redistributions of source code must retain the above copyright
     40    1.1  jdolecek  *    notice immediately at the beginning of the file, without modification,
     41    1.1  jdolecek  *    this list of conditions, and the following disclaimer.
     42    1.1  jdolecek  * 2. Redistributions in binary form must reproduce the above copyright
     43    1.1  jdolecek  *    notice, this list of conditions and the following disclaimer in the
     44    1.1  jdolecek  *    documentation and/or other materials provided with the distribution.
     45    1.1  jdolecek  * 3. Absolutely no warranty of function or purpose is made by the author
     46    1.1  jdolecek  *    John S. Dyson.
     47    1.1  jdolecek  * 4. Modifications may be freely made to this file if the above conditions
     48    1.1  jdolecek  *    are met.
     49    1.1  jdolecek  */
     50    1.1  jdolecek 
     51    1.1  jdolecek /*
     52    1.1  jdolecek  * This file contains a high-performance replacement for the socket-based
     53  1.106        ad  * pipes scheme originally used.  It does not support all features of
     54  1.106        ad  * sockets, but does do everything that pipes normally do.
     55    1.2  jdolecek  *
     56    1.1  jdolecek  * This code has two modes of operation, a small write mode and a large
     57    1.1  jdolecek  * write mode.  The small write mode acts like conventional pipes with
     58    1.1  jdolecek  * a kernel buffer.  If the buffer is less than PIPE_MINDIRECT, then the
     59    1.1  jdolecek  * "normal" pipe buffering is done.  If the buffer is between PIPE_MINDIRECT
     60   1.35        pk  * and PIPE_SIZE in size it is mapped read-only into the kernel address space
     61   1.35        pk  * using the UVM page loan facility from where the receiving process can copy
     62   1.35        pk  * the data directly from the pages in the sending process.
     63    1.1  jdolecek  *
     64    1.1  jdolecek  * The constant PIPE_MINDIRECT is chosen to make sure that buffering will
     65    1.1  jdolecek  * happen for small transfers so that the system will not spend all of
     66    1.1  jdolecek  * its time context switching.  PIPE_SIZE is constrained by the
     67    1.1  jdolecek  * amount of kernel virtual memory.
     68    1.1  jdolecek  */
     69   1.19     lukem 
     70   1.19     lukem #include <sys/cdefs.h>
     71  1.145  jdolecek __KERNEL_RCSID(0, "$NetBSD: sys_pipe.c,v 1.145 2018/05/19 11:39:37 jdolecek Exp $");
     72    1.2  jdolecek 
     73    1.1  jdolecek #include <sys/param.h>
     74    1.1  jdolecek #include <sys/systm.h>
     75    1.2  jdolecek #include <sys/proc.h>
     76    1.1  jdolecek #include <sys/fcntl.h>
     77    1.1  jdolecek #include <sys/file.h>
     78    1.1  jdolecek #include <sys/filedesc.h>
     79    1.1  jdolecek #include <sys/filio.h>
     80   1.24  jdolecek #include <sys/kernel.h>
     81    1.1  jdolecek #include <sys/ttycom.h>
     82    1.1  jdolecek #include <sys/stat.h>
     83    1.1  jdolecek #include <sys/poll.h>
     84    1.2  jdolecek #include <sys/signalvar.h>
     85    1.2  jdolecek #include <sys/vnode.h>
     86    1.2  jdolecek #include <sys/uio.h>
     87    1.2  jdolecek #include <sys/select.h>
     88    1.2  jdolecek #include <sys/mount.h>
     89    1.2  jdolecek #include <sys/syscallargs.h>
     90    1.2  jdolecek #include <sys/sysctl.h>
     91   1.72      elad #include <sys/kauth.h>
     92   1.90        ad #include <sys/atomic.h>
     93   1.90        ad #include <sys/pipe.h>
     94    1.2  jdolecek 
     95  1.115     rmind /*
     96  1.115     rmind  * Use this to disable direct I/O and decrease the code size:
     97  1.115     rmind  * #define PIPE_NODIRECT
     98  1.115     rmind  */
     99  1.115     rmind 
    100  1.119     rmind /* XXX Disabled for now; rare hangs switching between direct/buffered */
    101  1.119     rmind #define PIPE_NODIRECT
    102  1.119     rmind 
    103  1.145  jdolecek #ifndef PIPE_NODIRECT
    104  1.145  jdolecek #include <uvm/uvm.h>
    105  1.145  jdolecek #endif
    106  1.145  jdolecek 
    107  1.113     rmind static int	pipe_read(file_t *, off_t *, struct uio *, kauth_cred_t, int);
    108  1.113     rmind static int	pipe_write(file_t *, off_t *, struct uio *, kauth_cred_t, int);
    109  1.113     rmind static int	pipe_close(file_t *);
    110  1.113     rmind static int	pipe_poll(file_t *, int);
    111  1.114     rmind static int	pipe_kqfilter(file_t *, struct knote *);
    112  1.113     rmind static int	pipe_stat(file_t *, struct stat *);
    113  1.113     rmind static int	pipe_ioctl(file_t *, u_long, void *);
    114  1.127       dsl static void	pipe_restart(file_t *);
    115    1.1  jdolecek 
    116   1.62  christos static const struct fileops pipeops = {
    117  1.142  christos 	.fo_name = "pipe",
    118  1.109        ad 	.fo_read = pipe_read,
    119  1.109        ad 	.fo_write = pipe_write,
    120  1.109        ad 	.fo_ioctl = pipe_ioctl,
    121  1.109        ad 	.fo_fcntl = fnullop_fcntl,
    122  1.109        ad 	.fo_poll = pipe_poll,
    123  1.109        ad 	.fo_stat = pipe_stat,
    124  1.109        ad 	.fo_close = pipe_close,
    125  1.109        ad 	.fo_kqfilter = pipe_kqfilter,
    126  1.127       dsl 	.fo_restart = pipe_restart,
    127   1.35        pk };
    128    1.1  jdolecek 
    129    1.1  jdolecek /*
    130    1.1  jdolecek  * Default pipe buffer size(s), this can be kind-of large now because pipe
    131    1.1  jdolecek  * space is pageable.  The pipe code will try to maintain locality of
    132    1.1  jdolecek  * reference for performance reasons, so small amounts of outstanding I/O
    133    1.1  jdolecek  * will not wipe the cache.
    134    1.1  jdolecek  */
    135  1.113     rmind #define	MINPIPESIZE	(PIPE_SIZE / 3)
    136  1.113     rmind #define	MAXPIPESIZE	(2 * PIPE_SIZE / 3)
    137    1.1  jdolecek 
    138    1.1  jdolecek /*
    139    1.1  jdolecek  * Maximum amount of kva for pipes -- this is kind-of a soft limit, but
    140    1.1  jdolecek  * is there so that on large systems, we don't exhaust it.
    141    1.1  jdolecek  */
    142  1.113     rmind #define	MAXPIPEKVA	(8 * 1024 * 1024)
    143  1.113     rmind static u_int	maxpipekva = MAXPIPEKVA;
    144    1.1  jdolecek 
    145    1.1  jdolecek /*
    146    1.1  jdolecek  * Limit for direct transfers, we cannot, of course limit
    147    1.1  jdolecek  * the amount of kva for pipes in general though.
    148    1.1  jdolecek  */
    149  1.113     rmind #define	LIMITPIPEKVA	(16 * 1024 * 1024)
    150  1.113     rmind static u_int	limitpipekva = LIMITPIPEKVA;
    151    1.1  jdolecek 
    152    1.1  jdolecek /*
    153    1.1  jdolecek  * Limit the number of "big" pipes
    154    1.1  jdolecek  */
    155  1.113     rmind #define	LIMITBIGPIPES	32
    156  1.113     rmind static u_int	maxbigpipes = LIMITBIGPIPES;
    157  1.113     rmind static u_int	nbigpipe = 0;
    158    1.1  jdolecek 
    159    1.2  jdolecek /*
    160    1.2  jdolecek  * Amount of KVA consumed by pipe buffers.
    161    1.2  jdolecek  */
    162  1.113     rmind static u_int	amountpipekva = 0;
    163   1.34   thorpej 
    164  1.122       dsl static void	pipeclose(struct pipe *);
    165  1.113     rmind static void	pipe_free_kmem(struct pipe *);
    166  1.122       dsl static int	pipe_create(struct pipe **, pool_cache_t);
    167  1.139      matt static int	pipelock(struct pipe *, bool);
    168  1.113     rmind static inline void pipeunlock(struct pipe *);
    169  1.113     rmind static void	pipeselwakeup(struct pipe *, struct pipe *, int);
    170    1.1  jdolecek #ifndef PIPE_NODIRECT
    171  1.113     rmind static int	pipe_direct_write(file_t *, struct pipe *, struct uio *);
    172    1.1  jdolecek #endif
    173  1.113     rmind static int	pipespace(struct pipe *, int);
    174  1.113     rmind static int	pipe_ctor(void *, void *, int);
    175  1.113     rmind static void	pipe_dtor(void *, void *);
    176    1.2  jdolecek 
    177    1.2  jdolecek #ifndef PIPE_NODIRECT
    178  1.113     rmind static int	pipe_loan_alloc(struct pipe *, int);
    179  1.113     rmind static void	pipe_loan_free(struct pipe *);
    180    1.2  jdolecek #endif /* PIPE_NODIRECT */
    181    1.2  jdolecek 
    182  1.113     rmind static pool_cache_t	pipe_wr_cache;
    183  1.113     rmind static pool_cache_t	pipe_rd_cache;
    184   1.82        ad 
    185   1.82        ad void
    186   1.82        ad pipe_init(void)
    187   1.82        ad {
    188   1.82        ad 
    189  1.106        ad 	/* Writer side is not automatically allocated KVA. */
    190  1.106        ad 	pipe_wr_cache = pool_cache_init(sizeof(struct pipe), 0, 0, 0, "pipewr",
    191  1.106        ad 	    NULL, IPL_NONE, pipe_ctor, pipe_dtor, NULL);
    192  1.106        ad 	KASSERT(pipe_wr_cache != NULL);
    193  1.106        ad 
    194  1.106        ad 	/* Reader side gets preallocated KVA. */
    195  1.106        ad 	pipe_rd_cache = pool_cache_init(sizeof(struct pipe), 0, 0, 0, "piperd",
    196  1.106        ad 	    NULL, IPL_NONE, pipe_ctor, pipe_dtor, (void *)1);
    197  1.106        ad 	KASSERT(pipe_rd_cache != NULL);
    198   1.90        ad }
    199   1.90        ad 
    200   1.90        ad static int
    201  1.106        ad pipe_ctor(void *arg, void *obj, int flags)
    202   1.90        ad {
    203  1.106        ad 	struct pipe *pipe;
    204  1.106        ad 	vaddr_t va;
    205  1.106        ad 
    206  1.106        ad 	pipe = obj;
    207   1.90        ad 
    208  1.106        ad 	memset(pipe, 0, sizeof(struct pipe));
    209  1.106        ad 	if (arg != NULL) {
    210  1.106        ad 		/* Preallocate space. */
    211  1.107     enami 		va = uvm_km_alloc(kernel_map, PIPE_SIZE, 0,
    212  1.107     enami 		    UVM_KMF_PAGEABLE | UVM_KMF_WAITVA);
    213  1.107     enami 		KASSERT(va != 0);
    214  1.106        ad 		pipe->pipe_kmem = va;
    215  1.106        ad 		atomic_add_int(&amountpipekva, PIPE_SIZE);
    216  1.106        ad 	}
    217  1.128  pgoyette 	cv_init(&pipe->pipe_rcv, "pipe_rd");
    218  1.128  pgoyette 	cv_init(&pipe->pipe_wcv, "pipe_wr");
    219  1.128  pgoyette 	cv_init(&pipe->pipe_draincv, "pipe_drn");
    220  1.128  pgoyette 	cv_init(&pipe->pipe_lkcv, "pipe_lk");
    221  1.106        ad 	selinit(&pipe->pipe_sel);
    222  1.106        ad 	pipe->pipe_state = PIPE_SIGNALR;
    223   1.90        ad 
    224   1.90        ad 	return 0;
    225   1.90        ad }
    226   1.90        ad 
    227   1.90        ad static void
    228  1.106        ad pipe_dtor(void *arg, void *obj)
    229   1.90        ad {
    230  1.106        ad 	struct pipe *pipe;
    231   1.90        ad 
    232  1.106        ad 	pipe = obj;
    233   1.90        ad 
    234  1.106        ad 	cv_destroy(&pipe->pipe_rcv);
    235  1.106        ad 	cv_destroy(&pipe->pipe_wcv);
    236  1.106        ad 	cv_destroy(&pipe->pipe_draincv);
    237  1.106        ad 	cv_destroy(&pipe->pipe_lkcv);
    238  1.106        ad 	seldestroy(&pipe->pipe_sel);
    239  1.106        ad 	if (pipe->pipe_kmem != 0) {
    240  1.106        ad 		uvm_km_free(kernel_map, pipe->pipe_kmem, PIPE_SIZE,
    241  1.106        ad 		    UVM_KMF_PAGEABLE);
    242  1.106        ad 		atomic_add_int(&amountpipekva, -PIPE_SIZE);
    243  1.106        ad 	}
    244   1.82        ad }
    245   1.82        ad 
    246    1.1  jdolecek /*
    247    1.1  jdolecek  * The pipe system call for the DTYPE_PIPE type of pipes
    248    1.1  jdolecek  */
    249    1.2  jdolecek int
    250  1.143     kamil pipe1(struct lwp *l, int *fildes, int flags)
    251    1.1  jdolecek {
    252   1.53       dsl 	struct pipe *rpipe, *wpipe;
    253  1.113     rmind 	file_t *rf, *wf;
    254    1.1  jdolecek 	int fd, error;
    255   1.99        ad 	proc_t *p;
    256    1.2  jdolecek 
    257  1.135  christos 	if (flags & ~(O_CLOEXEC|O_NONBLOCK|O_NOSIGPIPE))
    258  1.132  christos 		return EINVAL;
    259   1.99        ad 	p = curproc;
    260    1.6  jdolecek 	rpipe = wpipe = NULL;
    261  1.133       apb 	if ((error = pipe_create(&rpipe, pipe_rd_cache)) ||
    262  1.133       apb 	    (error = pipe_create(&wpipe, pipe_wr_cache))) {
    263  1.122       dsl 		goto free2;
    264    1.6  jdolecek 	}
    265  1.122       dsl 	rpipe->pipe_lock = mutex_obj_alloc(MUTEX_DEFAULT, IPL_NONE);
    266  1.122       dsl 	wpipe->pipe_lock = rpipe->pipe_lock;
    267  1.122       dsl 	mutex_obj_hold(wpipe->pipe_lock);
    268    1.6  jdolecek 
    269   1.99        ad 	error = fd_allocfile(&rf, &fd);
    270    1.2  jdolecek 	if (error)
    271    1.2  jdolecek 		goto free2;
    272  1.143     kamil 	fildes[0] = fd;
    273  1.136    martin 
    274  1.136    martin 	error = fd_allocfile(&wf, &fd);
    275  1.136    martin 	if (error)
    276  1.136    martin 		goto free3;
    277  1.143     kamil 	fildes[1] = fd;
    278  1.136    martin 
    279  1.130  christos 	rf->f_flag = FREAD | flags;
    280    1.2  jdolecek 	rf->f_type = DTYPE_PIPE;
    281  1.140      matt 	rf->f_pipe = rpipe;
    282    1.2  jdolecek 	rf->f_ops = &pipeops;
    283  1.143     kamil 	fd_set_exclose(l, fildes[0], (flags & O_CLOEXEC) != 0);
    284    1.2  jdolecek 
    285  1.130  christos 	wf->f_flag = FWRITE | flags;
    286    1.2  jdolecek 	wf->f_type = DTYPE_PIPE;
    287  1.140      matt 	wf->f_pipe = wpipe;
    288    1.2  jdolecek 	wf->f_ops = &pipeops;
    289  1.143     kamil 	fd_set_exclose(l, fildes[1], (flags & O_CLOEXEC) != 0);
    290    1.2  jdolecek 
    291    1.2  jdolecek 	rpipe->pipe_peer = wpipe;
    292    1.2  jdolecek 	wpipe->pipe_peer = rpipe;
    293    1.1  jdolecek 
    294  1.143     kamil 	fd_affix(p, rf, fildes[0]);
    295  1.143     kamil 	fd_affix(p, wf, fildes[1]);
    296    1.1  jdolecek 	return (0);
    297    1.2  jdolecek free3:
    298  1.143     kamil 	fd_abort(p, rf, fildes[0]);
    299    1.2  jdolecek free2:
    300  1.122       dsl 	pipeclose(wpipe);
    301  1.122       dsl 	pipeclose(rpipe);
    302    1.2  jdolecek 
    303    1.2  jdolecek 	return (error);
    304    1.1  jdolecek }
    305    1.1  jdolecek 
    306    1.1  jdolecek /*
    307    1.1  jdolecek  * Allocate kva for pipe circular buffer, the space is pageable
    308    1.1  jdolecek  * This routine will 'realloc' the size of a pipe safely, if it fails
    309    1.1  jdolecek  * it will retain the old buffer.
    310    1.1  jdolecek  * If it fails it will return ENOMEM.
    311    1.1  jdolecek  */
    312    1.1  jdolecek static int
    313   1.68   thorpej pipespace(struct pipe *pipe, int size)
    314    1.1  jdolecek {
    315   1.79  christos 	void *buffer;
    316  1.106        ad 
    317    1.2  jdolecek 	/*
    318  1.106        ad 	 * Allocate pageable virtual address space.  Physical memory is
    319   1.35        pk 	 * allocated on demand.
    320    1.2  jdolecek 	 */
    321  1.106        ad 	if (size == PIPE_SIZE && pipe->pipe_kmem != 0) {
    322  1.106        ad 		buffer = (void *)pipe->pipe_kmem;
    323  1.106        ad 	} else {
    324  1.106        ad 		buffer = (void *)uvm_km_alloc(kernel_map, round_page(size),
    325  1.106        ad 		    0, UVM_KMF_PAGEABLE);
    326  1.106        ad 		if (buffer == NULL)
    327  1.106        ad 			return (ENOMEM);
    328  1.106        ad 		atomic_add_int(&amountpipekva, size);
    329  1.106        ad 	}
    330    1.1  jdolecek 
    331    1.1  jdolecek 	/* free old resources if we're resizing */
    332   1.35        pk 	pipe_free_kmem(pipe);
    333   1.35        pk 	pipe->pipe_buffer.buffer = buffer;
    334   1.35        pk 	pipe->pipe_buffer.size = size;
    335   1.35        pk 	pipe->pipe_buffer.in = 0;
    336   1.35        pk 	pipe->pipe_buffer.out = 0;
    337   1.35        pk 	pipe->pipe_buffer.cnt = 0;
    338    1.1  jdolecek 	return (0);
    339    1.1  jdolecek }
    340    1.1  jdolecek 
    341    1.1  jdolecek /*
    342   1.35        pk  * Initialize and allocate VM and memory for pipe.
    343    1.1  jdolecek  */
    344    1.1  jdolecek static int
    345  1.122       dsl pipe_create(struct pipe **pipep, pool_cache_t cache)
    346    1.1  jdolecek {
    347   1.35        pk 	struct pipe *pipe;
    348    1.1  jdolecek 	int error;
    349    1.1  jdolecek 
    350  1.106        ad 	pipe = pool_cache_get(cache, PR_WAITOK);
    351  1.107     enami 	KASSERT(pipe != NULL);
    352  1.106        ad 	*pipep = pipe;
    353  1.106        ad 	error = 0;
    354  1.111  christos 	getnanotime(&pipe->pipe_btime);
    355  1.111  christos 	pipe->pipe_atime = pipe->pipe_mtime = pipe->pipe_btime;
    356  1.122       dsl 	pipe->pipe_lock = NULL;
    357  1.106        ad 	if (cache == pipe_rd_cache) {
    358  1.106        ad 		error = pipespace(pipe, PIPE_SIZE);
    359  1.106        ad 	} else {
    360  1.106        ad 		pipe->pipe_buffer.buffer = NULL;
    361  1.106        ad 		pipe->pipe_buffer.size = 0;
    362  1.106        ad 		pipe->pipe_buffer.in = 0;
    363  1.106        ad 		pipe->pipe_buffer.out = 0;
    364  1.106        ad 		pipe->pipe_buffer.cnt = 0;
    365  1.106        ad 	}
    366  1.106        ad 	return error;
    367    1.1  jdolecek }
    368    1.1  jdolecek 
    369    1.1  jdolecek /*
    370   1.35        pk  * Lock a pipe for I/O, blocking other access
    371   1.35        pk  * Called with pipe spin lock held.
    372    1.1  jdolecek  */
    373   1.35        pk static int
    374  1.139      matt pipelock(struct pipe *pipe, bool catch_p)
    375    1.1  jdolecek {
    376   1.80        ad 	int error;
    377    1.1  jdolecek 
    378   1.90        ad 	KASSERT(mutex_owned(pipe->pipe_lock));
    379   1.35        pk 
    380   1.67      yamt 	while (pipe->pipe_state & PIPE_LOCKFL) {
    381   1.67      yamt 		pipe->pipe_state |= PIPE_LWANT;
    382  1.139      matt 		if (catch_p) {
    383   1.90        ad 			error = cv_wait_sig(&pipe->pipe_lkcv, pipe->pipe_lock);
    384   1.80        ad 			if (error != 0)
    385   1.80        ad 				return error;
    386   1.80        ad 		} else
    387   1.90        ad 			cv_wait(&pipe->pipe_lkcv, pipe->pipe_lock);
    388    1.1  jdolecek 	}
    389   1.67      yamt 
    390   1.67      yamt 	pipe->pipe_state |= PIPE_LOCKFL;
    391   1.67      yamt 
    392   1.67      yamt 	return 0;
    393    1.1  jdolecek }
    394    1.1  jdolecek 
    395    1.1  jdolecek /*
    396    1.1  jdolecek  * unlock a pipe I/O lock
    397    1.1  jdolecek  */
    398   1.70     perry static inline void
    399   1.68   thorpej pipeunlock(struct pipe *pipe)
    400    1.1  jdolecek {
    401   1.24  jdolecek 
    402   1.67      yamt 	KASSERT(pipe->pipe_state & PIPE_LOCKFL);
    403   1.67      yamt 
    404   1.67      yamt 	pipe->pipe_state &= ~PIPE_LOCKFL;
    405   1.67      yamt 	if (pipe->pipe_state & PIPE_LWANT) {
    406   1.67      yamt 		pipe->pipe_state &= ~PIPE_LWANT;
    407   1.80        ad 		cv_broadcast(&pipe->pipe_lkcv);
    408   1.67      yamt 	}
    409    1.1  jdolecek }
    410    1.1  jdolecek 
    411    1.2  jdolecek /*
    412    1.2  jdolecek  * Select/poll wakup. This also sends SIGIO to peer connected to
    413    1.2  jdolecek  * 'sigpipe' side of pipe.
    414    1.2  jdolecek  */
    415   1.35        pk static void
    416   1.68   thorpej pipeselwakeup(struct pipe *selp, struct pipe *sigp, int code)
    417    1.1  jdolecek {
    418   1.43  jdolecek 	int band;
    419   1.27  jdolecek 
    420   1.43  jdolecek 	switch (code) {
    421   1.42  christos 	case POLL_IN:
    422   1.43  jdolecek 		band = POLLIN|POLLRDNORM;
    423   1.42  christos 		break;
    424   1.42  christos 	case POLL_OUT:
    425   1.43  jdolecek 		band = POLLOUT|POLLWRNORM;
    426   1.42  christos 		break;
    427   1.42  christos 	case POLL_HUP:
    428   1.43  jdolecek 		band = POLLHUP;
    429   1.42  christos 		break;
    430   1.42  christos 	case POLL_ERR:
    431   1.43  jdolecek 		band = POLLERR;
    432   1.42  christos 		break;
    433   1.42  christos 	default:
    434   1.45  christos 		band = 0;
    435   1.42  christos #ifdef DIAGNOSTIC
    436   1.42  christos 		printf("bad siginfo code %d in pipe notification.\n", code);
    437   1.42  christos #endif
    438   1.42  christos 		break;
    439   1.42  christos 	}
    440   1.43  jdolecek 
    441   1.98     rmind 	selnotify(&selp->pipe_sel, band, NOTE_SUBMIT);
    442   1.98     rmind 
    443   1.98     rmind 	if (sigp == NULL || (sigp->pipe_state & PIPE_ASYNC) == 0)
    444   1.98     rmind 		return;
    445   1.98     rmind 
    446   1.44  christos 	fownsignal(sigp->pipe_pgid, SIGIO, code, band, selp);
    447    1.1  jdolecek }
    448    1.1  jdolecek 
    449    1.2  jdolecek static int
    450  1.113     rmind pipe_read(file_t *fp, off_t *offset, struct uio *uio, kauth_cred_t cred,
    451   1.77      yamt     int flags)
    452    1.1  jdolecek {
    453  1.140      matt 	struct pipe *rpipe = fp->f_pipe;
    454   1.35        pk 	struct pipebuf *bp = &rpipe->pipe_buffer;
    455   1.95        ad 	kmutex_t *lock = rpipe->pipe_lock;
    456    1.1  jdolecek 	int error;
    457    1.2  jdolecek 	size_t nread = 0;
    458    1.2  jdolecek 	size_t size;
    459    1.2  jdolecek 	size_t ocnt;
    460  1.127       dsl 	unsigned int wakeup_state = 0;
    461    1.1  jdolecek 
    462   1.95        ad 	mutex_enter(lock);
    463    1.1  jdolecek 	++rpipe->pipe_busy;
    464   1.35        pk 	ocnt = bp->cnt;
    465   1.28  jdolecek 
    466   1.35        pk again:
    467  1.139      matt 	error = pipelock(rpipe, true);
    468    1.1  jdolecek 	if (error)
    469    1.1  jdolecek 		goto unlocked_error;
    470    1.2  jdolecek 
    471    1.1  jdolecek 	while (uio->uio_resid) {
    472    1.1  jdolecek 		/*
    473  1.113     rmind 		 * Normal pipe buffer receive.
    474    1.1  jdolecek 		 */
    475   1.35        pk 		if (bp->cnt > 0) {
    476   1.35        pk 			size = bp->size - bp->out;
    477   1.35        pk 			if (size > bp->cnt)
    478   1.35        pk 				size = bp->cnt;
    479    1.2  jdolecek 			if (size > uio->uio_resid)
    480    1.2  jdolecek 				size = uio->uio_resid;
    481    1.1  jdolecek 
    482   1.95        ad 			mutex_exit(lock);
    483   1.79  christos 			error = uiomove((char *)bp->buffer + bp->out, size, uio);
    484   1.95        ad 			mutex_enter(lock);
    485    1.1  jdolecek 			if (error)
    486    1.1  jdolecek 				break;
    487    1.1  jdolecek 
    488   1.35        pk 			bp->out += size;
    489   1.35        pk 			if (bp->out >= bp->size)
    490   1.35        pk 				bp->out = 0;
    491    1.1  jdolecek 
    492   1.35        pk 			bp->cnt -= size;
    493    1.1  jdolecek 
    494    1.1  jdolecek 			/*
    495    1.1  jdolecek 			 * If there is no more to read in the pipe, reset
    496    1.1  jdolecek 			 * its pointers to the beginning.  This improves
    497    1.1  jdolecek 			 * cache hit stats.
    498    1.1  jdolecek 			 */
    499   1.35        pk 			if (bp->cnt == 0) {
    500   1.35        pk 				bp->in = 0;
    501   1.35        pk 				bp->out = 0;
    502    1.1  jdolecek 			}
    503    1.1  jdolecek 			nread += size;
    504   1.85        ad 			continue;
    505   1.85        ad 		}
    506   1.85        ad 
    507    1.1  jdolecek #ifndef PIPE_NODIRECT
    508   1.85        ad 		if ((rpipe->pipe_state & PIPE_DIRECTR) != 0) {
    509  1.137      matt 			struct pipemapping * const rmap = &rpipe->pipe_map;
    510   1.35        pk 			/*
    511   1.35        pk 			 * Direct copy, bypassing a kernel buffer.
    512   1.35        pk 			 */
    513  1.113     rmind 			void *va;
    514   1.35        pk 
    515   1.35        pk 			KASSERT(rpipe->pipe_state & PIPE_DIRECTW);
    516   1.35        pk 
    517  1.137      matt 			size = rmap->cnt;
    518    1.2  jdolecek 			if (size > uio->uio_resid)
    519    1.2  jdolecek 				size = uio->uio_resid;
    520    1.1  jdolecek 
    521  1.137      matt 			va = (char *)rmap->kva + rmap->pos;
    522   1.95        ad 			mutex_exit(lock);
    523    1.1  jdolecek 			error = uiomove(va, size, uio);
    524   1.95        ad 			mutex_enter(lock);
    525    1.1  jdolecek 			if (error)
    526    1.1  jdolecek 				break;
    527    1.1  jdolecek 			nread += size;
    528  1.137      matt 			rmap->pos += size;
    529  1.137      matt 			rmap->cnt -= size;
    530  1.137      matt 			if (rmap->cnt == 0) {
    531   1.35        pk 				rpipe->pipe_state &= ~PIPE_DIRECTR;
    532   1.97      yamt 				cv_broadcast(&rpipe->pipe_wcv);
    533    1.1  jdolecek 			}
    534   1.85        ad 			continue;
    535   1.85        ad 		}
    536    1.1  jdolecek #endif
    537   1.85        ad 		/*
    538   1.85        ad 		 * Break if some data was read.
    539   1.85        ad 		 */
    540   1.90        ad 		if (nread > 0)
    541   1.85        ad 			break;
    542    1.1  jdolecek 
    543   1.85        ad 		/*
    544  1.113     rmind 		 * Detect EOF condition.
    545  1.113     rmind 		 * Read returns 0 on EOF, no need to set error.
    546   1.85        ad 		 */
    547  1.124       dsl 		if (rpipe->pipe_state & PIPE_EOF)
    548   1.85        ad 			break;
    549   1.36        pk 
    550   1.85        ad 		/*
    551  1.113     rmind 		 * Don't block on non-blocking I/O.
    552   1.85        ad 		 */
    553   1.85        ad 		if (fp->f_flag & FNONBLOCK) {
    554   1.85        ad 			error = EAGAIN;
    555   1.85        ad 			break;
    556   1.85        ad 		}
    557    1.1  jdolecek 
    558   1.85        ad 		/*
    559   1.85        ad 		 * Unlock the pipe buffer for our remaining processing.
    560   1.85        ad 		 * We will either break out with an error or we will
    561   1.85        ad 		 * sleep and relock to loop.
    562   1.85        ad 		 */
    563   1.85        ad 		pipeunlock(rpipe);
    564    1.2  jdolecek 
    565   1.85        ad 		/*
    566   1.85        ad 		 * Re-check to see if more direct writes are pending.
    567   1.85        ad 		 */
    568   1.85        ad 		if ((rpipe->pipe_state & PIPE_DIRECTR) != 0)
    569   1.85        ad 			goto again;
    570    1.1  jdolecek 
    571  1.125       dsl #if 1   /* XXX (dsl) I'm sure these aren't needed here ... */
    572   1.85        ad 		/*
    573   1.85        ad 		 * We want to read more, wake up select/poll.
    574   1.85        ad 		 */
    575  1.105      yamt 		pipeselwakeup(rpipe, rpipe->pipe_peer, POLL_OUT);
    576   1.35        pk 
    577   1.85        ad 		/*
    578   1.85        ad 		 * If the "write-side" is blocked, wake it up now.
    579   1.85        ad 		 */
    580   1.97      yamt 		cv_broadcast(&rpipe->pipe_wcv);
    581  1.125       dsl #endif
    582  1.125       dsl 
    583  1.127       dsl 		if (wakeup_state & PIPE_RESTART) {
    584  1.125       dsl 			error = ERESTART;
    585  1.125       dsl 			goto unlocked_error;
    586  1.125       dsl 		}
    587    1.2  jdolecek 
    588   1.85        ad 		/* Now wait until the pipe is filled */
    589   1.97      yamt 		error = cv_wait_sig(&rpipe->pipe_rcv, lock);
    590   1.85        ad 		if (error != 0)
    591   1.85        ad 			goto unlocked_error;
    592  1.127       dsl 		wakeup_state = rpipe->pipe_state;
    593   1.85        ad 		goto again;
    594    1.1  jdolecek 	}
    595   1.35        pk 
    596   1.35        pk 	if (error == 0)
    597  1.111  christos 		getnanotime(&rpipe->pipe_atime);
    598    1.1  jdolecek 	pipeunlock(rpipe);
    599    1.1  jdolecek 
    600    1.1  jdolecek unlocked_error:
    601    1.1  jdolecek 	--rpipe->pipe_busy;
    602   1.97      yamt 	if (rpipe->pipe_busy == 0) {
    603  1.127       dsl 		rpipe->pipe_state &= ~PIPE_RESTART;
    604   1.97      yamt 		cv_broadcast(&rpipe->pipe_draincv);
    605   1.97      yamt 	}
    606   1.97      yamt 	if (bp->cnt < MINPIPESIZE) {
    607   1.97      yamt 		cv_broadcast(&rpipe->pipe_wcv);
    608    1.1  jdolecek 	}
    609    1.1  jdolecek 
    610    1.2  jdolecek 	/*
    611    1.2  jdolecek 	 * If anything was read off the buffer, signal to the writer it's
    612    1.2  jdolecek 	 * possible to write more data. Also send signal if we are here for the
    613    1.2  jdolecek 	 * first time after last write.
    614    1.2  jdolecek 	 */
    615   1.35        pk 	if ((bp->size - bp->cnt) >= PIPE_BUF
    616   1.35        pk 	    && (ocnt != bp->cnt || (rpipe->pipe_state & PIPE_SIGNALR))) {
    617   1.66  christos 		pipeselwakeup(rpipe, rpipe->pipe_peer, POLL_OUT);
    618    1.2  jdolecek 		rpipe->pipe_state &= ~PIPE_SIGNALR;
    619    1.2  jdolecek 	}
    620    1.1  jdolecek 
    621   1.95        ad 	mutex_exit(lock);
    622    1.1  jdolecek 	return (error);
    623    1.1  jdolecek }
    624    1.1  jdolecek 
    625    1.2  jdolecek #ifndef PIPE_NODIRECT
    626    1.2  jdolecek /*
    627    1.2  jdolecek  * Allocate structure for loan transfer.
    628    1.2  jdolecek  */
    629   1.18       chs static int
    630   1.68   thorpej pipe_loan_alloc(struct pipe *wpipe, int npages)
    631    1.2  jdolecek {
    632  1.137      matt 	struct pipemapping * const wmap = &wpipe->pipe_map;
    633  1.137      matt 	const vsize_t len = ptoa(npages);
    634   1.18       chs 
    635   1.95        ad 	atomic_add_int(&amountpipekva, len);
    636  1.137      matt 	wmap->kva = uvm_km_alloc(kernel_map, len, 0,
    637  1.137      matt 	    UVM_KMF_COLORMATCH | UVM_KMF_VAONLY | UVM_KMF_WAITVA);
    638  1.137      matt 	if (wmap->kva == 0) {
    639   1.95        ad 		atomic_add_int(&amountpipekva, -len);
    640    1.2  jdolecek 		return (ENOMEM);
    641   1.95        ad 	}
    642    1.2  jdolecek 
    643  1.137      matt 	wmap->npages = npages;
    644  1.137      matt 	wmap->pgs = kmem_alloc(npages * sizeof(struct vm_page *), KM_SLEEP);
    645    1.2  jdolecek 	return (0);
    646    1.2  jdolecek }
    647    1.2  jdolecek 
    648    1.2  jdolecek /*
    649    1.2  jdolecek  * Free resources allocated for loan transfer.
    650    1.2  jdolecek  */
    651    1.2  jdolecek static void
    652   1.68   thorpej pipe_loan_free(struct pipe *wpipe)
    653    1.2  jdolecek {
    654  1.137      matt 	struct pipemapping * const wmap = &wpipe->pipe_map;
    655  1.137      matt 	const vsize_t len = ptoa(wmap->npages);
    656   1.18       chs 
    657  1.137      matt 	uvm_km_free(kernel_map, wmap->kva, len, UVM_KMF_VAONLY);
    658  1.137      matt 	wmap->kva = 0;
    659   1.90        ad 	atomic_add_int(&amountpipekva, -len);
    660  1.137      matt 	kmem_free(wmap->pgs, wmap->npages * sizeof(struct vm_page *));
    661  1.137      matt 	wmap->pgs = NULL;
    662  1.137      matt #if 0
    663  1.137      matt 	wmap->npages = 0;
    664  1.137      matt 	wmap->pos = 0;
    665  1.137      matt 	wmap->cnt = 0;
    666  1.137      matt #endif
    667    1.2  jdolecek }
    668    1.2  jdolecek 
    669    1.2  jdolecek /*
    670    1.2  jdolecek  * NetBSD direct write, using uvm_loan() mechanism.
    671    1.2  jdolecek  * This implements the pipe buffer write mechanism.  Note that only
    672    1.2  jdolecek  * a direct write OR a normal pipe write can be pending at any given time.
    673    1.2  jdolecek  * If there are any characters in the pipe buffer, the direct write will
    674    1.2  jdolecek  * be deferred until the receiving process grabs all of the bytes from
    675    1.2  jdolecek  * the pipe buffer.  Then the direct mapping write is set-up.
    676   1.35        pk  *
    677   1.35        pk  * Called with the long-term pipe lock held.
    678    1.2  jdolecek  */
    679   1.18       chs static int
    680  1.113     rmind pipe_direct_write(file_t *fp, struct pipe *wpipe, struct uio *uio)
    681    1.2  jdolecek {
    682  1.137      matt 	struct pipemapping * const wmap = &wpipe->pipe_map;
    683  1.137      matt 	kmutex_t * const lock = wpipe->pipe_lock;
    684   1.18       chs 	struct vm_page **pgs;
    685  1.115     rmind 	vaddr_t bbase, base, bend;
    686    1.2  jdolecek 	vsize_t blen, bcnt;
    687  1.115     rmind 	int error, npages;
    688    1.5  jdolecek 	voff_t bpos;
    689  1.137      matt 	u_int starting_color;
    690    1.5  jdolecek 
    691   1.90        ad 	KASSERT(mutex_owned(wpipe->pipe_lock));
    692  1.137      matt 	KASSERT(wmap->cnt == 0);
    693    1.2  jdolecek 
    694   1.95        ad 	mutex_exit(lock);
    695   1.90        ad 
    696    1.2  jdolecek 	/*
    697   1.14  jdolecek 	 * Handle first PIPE_CHUNK_SIZE bytes of buffer. Deal with buffers
    698   1.14  jdolecek 	 * not aligned to PAGE_SIZE.
    699    1.5  jdolecek 	 */
    700   1.14  jdolecek 	bbase = (vaddr_t)uio->uio_iov->iov_base;
    701    1.5  jdolecek 	base = trunc_page(bbase);
    702   1.14  jdolecek 	bend = round_page(bbase + uio->uio_iov->iov_len);
    703    1.5  jdolecek 	blen = bend - base;
    704    1.5  jdolecek 	bpos = bbase - base;
    705    1.5  jdolecek 
    706    1.5  jdolecek 	if (blen > PIPE_DIRECT_CHUNK) {
    707    1.5  jdolecek 		blen = PIPE_DIRECT_CHUNK;
    708    1.5  jdolecek 		bend = base + blen;
    709    1.5  jdolecek 		bcnt = PIPE_DIRECT_CHUNK - bpos;
    710   1.18       chs 	} else {
    711   1.14  jdolecek 		bcnt = uio->uio_iov->iov_len;
    712   1.18       chs 	}
    713  1.137      matt 	npages = atop(blen);
    714  1.137      matt 	starting_color = atop(base) & uvmexp.colormask;
    715    1.5  jdolecek 
    716    1.5  jdolecek 	/*
    717    1.5  jdolecek 	 * Free the old kva if we need more pages than we have
    718    1.5  jdolecek 	 * allocated.
    719    1.2  jdolecek 	 */
    720  1.137      matt 	if (wmap->kva != 0 && starting_color + npages > wmap->npages)
    721    1.5  jdolecek 		pipe_loan_free(wpipe);
    722    1.2  jdolecek 
    723    1.5  jdolecek 	/* Allocate new kva. */
    724  1.137      matt 	if (wmap->kva == 0) {
    725  1.137      matt 		error = pipe_loan_alloc(wpipe, starting_color + npages);
    726   1.90        ad 		if (error) {
    727   1.95        ad 			mutex_enter(lock);
    728   1.35        pk 			return (error);
    729   1.90        ad 		}
    730   1.18       chs 	}
    731   1.18       chs 
    732    1.5  jdolecek 	/* Loan the write buffer memory from writer process */
    733  1.137      matt 	pgs = wmap->pgs + starting_color;
    734   1.71      yamt 	error = uvm_loan(&uio->uio_vmspace->vm_map, base, blen,
    735   1.35        pk 			 pgs, UVM_LOAN_TOPAGE);
    736   1.18       chs 	if (error) {
    737   1.35        pk 		pipe_loan_free(wpipe);
    738   1.95        ad 		mutex_enter(lock);
    739   1.61      yamt 		return (ENOMEM); /* so that caller fallback to ordinary write */
    740   1.18       chs 	}
    741   1.18       chs 
    742  1.145  jdolecek  	/* Enter the loaned pages to kva */
    743  1.145  jdolecek  	vaddr_t kva = wpipe->pipe_map.kva;
    744  1.145  jdolecek  	for (int j = 0; j < npages; j++, kva += PAGE_SIZE) {
    745  1.145  jdolecek  		pmap_kenter_pa(kva, VM_PAGE_TO_PHYS(pgs[j]), VM_PROT_READ, 0);
    746  1.145  jdolecek  	}
    747  1.145  jdolecek  	pmap_update(pmap_kernel());
    748    1.2  jdolecek 
    749   1.35        pk 	/* Now we can put the pipe in direct write mode */
    750  1.137      matt 	wmap->pos = bpos + ptoa(starting_color);
    751  1.137      matt 	wmap->cnt = bcnt;
    752   1.35        pk 
    753   1.35        pk 	/*
    754   1.85        ad 	 * But before we can let someone do a direct read, we
    755   1.85        ad 	 * have to wait until the pipe is drained.  Release the
    756   1.85        ad 	 * pipe lock while we wait.
    757   1.35        pk 	 */
    758   1.95        ad 	mutex_enter(lock);
    759   1.85        ad 	wpipe->pipe_state |= PIPE_DIRECTW;
    760   1.35        pk 	pipeunlock(wpipe);
    761   1.35        pk 
    762   1.35        pk 	while (error == 0 && wpipe->pipe_buffer.cnt > 0) {
    763   1.97      yamt 		cv_broadcast(&wpipe->pipe_rcv);
    764   1.97      yamt 		error = cv_wait_sig(&wpipe->pipe_wcv, lock);
    765   1.35        pk 		if (error == 0 && wpipe->pipe_state & PIPE_EOF)
    766    1.5  jdolecek 			error = EPIPE;
    767   1.35        pk 	}
    768   1.35        pk 
    769   1.35        pk 	/* Pipe is drained; next read will off the direct buffer */
    770   1.35        pk 	wpipe->pipe_state |= PIPE_DIRECTR;
    771   1.35        pk 
    772   1.35        pk 	/* Wait until the reader is done */
    773   1.35        pk 	while (error == 0 && (wpipe->pipe_state & PIPE_DIRECTR)) {
    774   1.97      yamt 		cv_broadcast(&wpipe->pipe_rcv);
    775   1.66  christos 		pipeselwakeup(wpipe, wpipe, POLL_IN);
    776   1.97      yamt 		error = cv_wait_sig(&wpipe->pipe_wcv, lock);
    777   1.35        pk 		if (error == 0 && wpipe->pipe_state & PIPE_EOF)
    778   1.35        pk 			error = EPIPE;
    779    1.5  jdolecek 	}
    780    1.5  jdolecek 
    781   1.35        pk 	/* Take pipe out of direct write mode */
    782   1.35        pk 	wpipe->pipe_state &= ~(PIPE_DIRECTW | PIPE_DIRECTR);
    783    1.2  jdolecek 
    784   1.35        pk 	/* Acquire the pipe lock and cleanup */
    785  1.139      matt 	(void)pipelock(wpipe, false);
    786   1.95        ad 	mutex_exit(lock);
    787   1.85        ad 
    788   1.21       chs 	if (pgs != NULL) {
    789  1.145  jdolecek 		pmap_kremove(wpipe->pipe_map.kva, blen);
    790  1.145  jdolecek 		pmap_update(pmap_kernel());
    791   1.18       chs 		uvm_unloan(pgs, npages, UVM_LOAN_TOPAGE);
    792   1.21       chs 	}
    793    1.5  jdolecek 	if (error || amountpipekva > maxpipekva)
    794    1.5  jdolecek 		pipe_loan_free(wpipe);
    795    1.5  jdolecek 
    796   1.95        ad 	mutex_enter(lock);
    797   1.15  jdolecek 	if (error) {
    798   1.66  christos 		pipeselwakeup(wpipe, wpipe, POLL_ERR);
    799    1.2  jdolecek 
    800    1.5  jdolecek 		/*
    801   1.15  jdolecek 		 * If nothing was read from what we offered, return error
    802   1.18       chs 		 * straight on. Otherwise update uio resid first. Caller
    803   1.15  jdolecek 		 * will deal with the error condition, returning short
    804   1.15  jdolecek 		 * write, error, or restarting the write(2) as appropriate.
    805    1.5  jdolecek 		 */
    806  1.137      matt 		if (wmap->cnt == bcnt) {
    807  1.137      matt 			wmap->cnt = 0;
    808   1.97      yamt 			cv_broadcast(&wpipe->pipe_wcv);
    809   1.15  jdolecek 			return (error);
    810    1.2  jdolecek 		}
    811    1.2  jdolecek 
    812  1.145  jdolecek 		bcnt -= wmap->cnt;
    813    1.5  jdolecek 	}
    814    1.2  jdolecek 
    815   1.18       chs 	uio->uio_resid -= bcnt;
    816    1.8  jdolecek 	/* uio_offset not updated, not set/used for write(2) */
    817   1.18       chs 	uio->uio_iov->iov_base = (char *)uio->uio_iov->iov_base + bcnt;
    818   1.14  jdolecek 	uio->uio_iov->iov_len -= bcnt;
    819   1.14  jdolecek 	if (uio->uio_iov->iov_len == 0) {
    820   1.14  jdolecek 		uio->uio_iov++;
    821   1.14  jdolecek 		uio->uio_iovcnt--;
    822   1.14  jdolecek 	}
    823    1.2  jdolecek 
    824  1.137      matt 	wmap->cnt = 0;
    825   1.15  jdolecek 	return (error);
    826    1.2  jdolecek }
    827    1.2  jdolecek #endif /* !PIPE_NODIRECT */
    828    1.2  jdolecek 
    829    1.2  jdolecek static int
    830  1.113     rmind pipe_write(file_t *fp, off_t *offset, struct uio *uio, kauth_cred_t cred,
    831   1.77      yamt     int flags)
    832    1.1  jdolecek {
    833    1.1  jdolecek 	struct pipe *wpipe, *rpipe;
    834   1.35        pk 	struct pipebuf *bp;
    835   1.95        ad 	kmutex_t *lock;
    836   1.35        pk 	int error;
    837  1.127       dsl 	unsigned int wakeup_state = 0;
    838    1.1  jdolecek 
    839   1.35        pk 	/* We want to write to our peer */
    840  1.140      matt 	rpipe = fp->f_pipe;
    841   1.95        ad 	lock = rpipe->pipe_lock;
    842   1.90        ad 	error = 0;
    843   1.35        pk 
    844   1.95        ad 	mutex_enter(lock);
    845    1.1  jdolecek 	wpipe = rpipe->pipe_peer;
    846    1.1  jdolecek 
    847    1.1  jdolecek 	/*
    848   1.35        pk 	 * Detect loss of pipe read side, issue SIGPIPE if lost.
    849    1.1  jdolecek 	 */
    850   1.95        ad 	if (wpipe == NULL || (wpipe->pipe_state & PIPE_EOF) != 0) {
    851   1.95        ad 		mutex_exit(lock);
    852   1.90        ad 		return EPIPE;
    853   1.24  jdolecek 	}
    854    1.1  jdolecek 	++wpipe->pipe_busy;
    855    1.1  jdolecek 
    856   1.35        pk 	/* Aquire the long-term pipe lock */
    857  1.139      matt 	if ((error = pipelock(wpipe, true)) != 0) {
    858   1.35        pk 		--wpipe->pipe_busy;
    859   1.93      yamt 		if (wpipe->pipe_busy == 0) {
    860  1.127       dsl 			wpipe->pipe_state &= ~PIPE_RESTART;
    861   1.97      yamt 			cv_broadcast(&wpipe->pipe_draincv);
    862   1.35        pk 		}
    863   1.95        ad 		mutex_exit(lock);
    864   1.35        pk 		return (error);
    865   1.35        pk 	}
    866   1.35        pk 
    867   1.35        pk 	bp = &wpipe->pipe_buffer;
    868   1.35        pk 
    869    1.1  jdolecek 	/*
    870   1.35        pk 	 * If it is advantageous to resize the pipe buffer, do so.
    871    1.1  jdolecek 	 */
    872    1.1  jdolecek 	if ((uio->uio_resid > PIPE_SIZE) &&
    873   1.35        pk 	    (nbigpipe < maxbigpipes) &&
    874    1.2  jdolecek #ifndef PIPE_NODIRECT
    875   1.35        pk 	    (wpipe->pipe_state & PIPE_DIRECTW) == 0 &&
    876    1.2  jdolecek #endif
    877   1.35        pk 	    (bp->size <= PIPE_SIZE) && (bp->cnt == 0)) {
    878    1.1  jdolecek 
    879   1.35        pk 		if (pipespace(wpipe, BIG_PIPE_SIZE) == 0)
    880   1.90        ad 			atomic_inc_uint(&nbigpipe);
    881   1.24  jdolecek 	}
    882    1.1  jdolecek 
    883    1.1  jdolecek 	while (uio->uio_resid) {
    884   1.26   thorpej 		size_t space;
    885    1.1  jdolecek 
    886    1.1  jdolecek #ifndef PIPE_NODIRECT
    887    1.1  jdolecek 		/*
    888   1.35        pk 		 * Pipe buffered writes cannot be coincidental with
    889   1.35        pk 		 * direct writes.  Also, only one direct write can be
    890   1.35        pk 		 * in progress at any one time.  We wait until the currently
    891   1.35        pk 		 * executing direct write is completed before continuing.
    892   1.35        pk 		 *
    893   1.35        pk 		 * We break out if a signal occurs or the reader goes away.
    894   1.35        pk 		 */
    895   1.35        pk 		while (error == 0 && wpipe->pipe_state & PIPE_DIRECTW) {
    896   1.97      yamt 			cv_broadcast(&wpipe->pipe_rcv);
    897   1.35        pk 			pipeunlock(wpipe);
    898   1.97      yamt 			error = cv_wait_sig(&wpipe->pipe_wcv, lock);
    899  1.139      matt 			(void)pipelock(wpipe, false);
    900   1.35        pk 			if (wpipe->pipe_state & PIPE_EOF)
    901   1.35        pk 				error = EPIPE;
    902   1.35        pk 		}
    903   1.35        pk 		if (error)
    904   1.35        pk 			break;
    905   1.35        pk 
    906   1.35        pk 		/*
    907    1.1  jdolecek 		 * If the transfer is large, we can gain performance if
    908    1.1  jdolecek 		 * we do process-to-process copies directly.
    909    1.1  jdolecek 		 * If the write is non-blocking, we don't use the
    910    1.1  jdolecek 		 * direct write mechanism.
    911    1.1  jdolecek 		 *
    912    1.1  jdolecek 		 * The direct write mechanism will detect the reader going
    913    1.1  jdolecek 		 * away on us.
    914    1.1  jdolecek 		 */
    915   1.14  jdolecek 		if ((uio->uio_iov->iov_len >= PIPE_MINDIRECT) &&
    916    1.1  jdolecek 		    (fp->f_flag & FNONBLOCK) == 0 &&
    917  1.145  jdolecek 		    (wpipe->pipe_map.kva || (amountpipekva < limitpipekva))) {
    918   1.42  christos 			error = pipe_direct_write(fp, wpipe, uio);
    919    1.5  jdolecek 
    920    1.5  jdolecek 			/*
    921   1.49       wiz 			 * Break out if error occurred, unless it's ENOMEM.
    922   1.14  jdolecek 			 * ENOMEM means we failed to allocate some resources
    923   1.14  jdolecek 			 * for direct write, so we just fallback to ordinary
    924   1.14  jdolecek 			 * write. If the direct write was successful,
    925   1.14  jdolecek 			 * process rest of data via ordinary write.
    926    1.5  jdolecek 			 */
    927   1.35        pk 			if (error == 0)
    928   1.14  jdolecek 				continue;
    929   1.14  jdolecek 
    930    1.5  jdolecek 			if (error != ENOMEM)
    931    1.1  jdolecek 				break;
    932    1.1  jdolecek 		}
    933    1.2  jdolecek #endif /* PIPE_NODIRECT */
    934    1.1  jdolecek 
    935   1.35        pk 		space = bp->size - bp->cnt;
    936    1.1  jdolecek 
    937    1.1  jdolecek 		/* Writes of size <= PIPE_BUF must be atomic. */
    938   1.14  jdolecek 		if ((space < uio->uio_resid) && (uio->uio_resid <= PIPE_BUF))
    939    1.1  jdolecek 			space = 0;
    940    1.1  jdolecek 
    941   1.16   mycroft 		if (space > 0) {
    942    1.2  jdolecek 			int size;	/* Transfer size */
    943    1.2  jdolecek 			int segsize;	/* first segment to transfer */
    944    1.2  jdolecek 
    945    1.2  jdolecek 			/*
    946    1.2  jdolecek 			 * Transfer size is minimum of uio transfer
    947    1.2  jdolecek 			 * and free space in pipe buffer.
    948    1.2  jdolecek 			 */
    949    1.2  jdolecek 			if (space > uio->uio_resid)
    950    1.2  jdolecek 				size = uio->uio_resid;
    951    1.2  jdolecek 			else
    952    1.2  jdolecek 				size = space;
    953    1.2  jdolecek 			/*
    954   1.63     perry 			 * First segment to transfer is minimum of
    955    1.2  jdolecek 			 * transfer size and contiguous space in
    956    1.2  jdolecek 			 * pipe buffer.  If first segment to transfer
    957    1.2  jdolecek 			 * is less than the transfer size, we've got
    958    1.2  jdolecek 			 * a wraparound in the buffer.
    959    1.2  jdolecek 			 */
    960   1.35        pk 			segsize = bp->size - bp->in;
    961    1.2  jdolecek 			if (segsize > size)
    962    1.2  jdolecek 				segsize = size;
    963   1.18       chs 
    964    1.2  jdolecek 			/* Transfer first segment */
    965   1.95        ad 			mutex_exit(lock);
    966   1.79  christos 			error = uiomove((char *)bp->buffer + bp->in, segsize,
    967   1.79  christos 			    uio);
    968   1.18       chs 
    969    1.2  jdolecek 			if (error == 0 && segsize < size) {
    970   1.63     perry 				/*
    971    1.2  jdolecek 				 * Transfer remaining part now, to
    972    1.2  jdolecek 				 * support atomic writes.  Wraparound
    973    1.2  jdolecek 				 * happened.
    974    1.2  jdolecek 				 */
    975  1.113     rmind 				KASSERT(bp->in + segsize == bp->size);
    976   1.79  christos 				error = uiomove(bp->buffer,
    977   1.79  christos 				    size - segsize, uio);
    978    1.2  jdolecek 			}
    979   1.95        ad 			mutex_enter(lock);
    980   1.35        pk 			if (error)
    981   1.35        pk 				break;
    982   1.35        pk 
    983   1.35        pk 			bp->in += size;
    984   1.35        pk 			if (bp->in >= bp->size) {
    985  1.113     rmind 				KASSERT(bp->in == size - segsize + bp->size);
    986   1.35        pk 				bp->in = size - segsize;
    987   1.35        pk 			}
    988   1.18       chs 
    989   1.35        pk 			bp->cnt += size;
    990  1.113     rmind 			KASSERT(bp->cnt <= bp->size);
    991  1.127       dsl 			wakeup_state = 0;
    992    1.1  jdolecek 		} else {
    993    1.1  jdolecek 			/*
    994    1.1  jdolecek 			 * If the "read-side" has been blocked, wake it up now.
    995    1.1  jdolecek 			 */
    996   1.97      yamt 			cv_broadcast(&wpipe->pipe_rcv);
    997    1.1  jdolecek 
    998    1.1  jdolecek 			/*
    999  1.113     rmind 			 * Don't block on non-blocking I/O.
   1000    1.1  jdolecek 			 */
   1001    1.1  jdolecek 			if (fp->f_flag & FNONBLOCK) {
   1002    1.1  jdolecek 				error = EAGAIN;
   1003    1.1  jdolecek 				break;
   1004    1.1  jdolecek 			}
   1005    1.1  jdolecek 
   1006    1.1  jdolecek 			/*
   1007    1.1  jdolecek 			 * We have no more space and have something to offer,
   1008    1.1  jdolecek 			 * wake up select/poll.
   1009    1.1  jdolecek 			 */
   1010   1.35        pk 			if (bp->cnt)
   1011  1.105      yamt 				pipeselwakeup(wpipe, wpipe, POLL_IN);
   1012    1.1  jdolecek 
   1013  1.127       dsl 			if (wakeup_state & PIPE_RESTART) {
   1014  1.125       dsl 				error = ERESTART;
   1015  1.125       dsl 				break;
   1016  1.125       dsl 			}
   1017  1.125       dsl 
   1018   1.35        pk 			pipeunlock(wpipe);
   1019   1.97      yamt 			error = cv_wait_sig(&wpipe->pipe_wcv, lock);
   1020  1.139      matt 			(void)pipelock(wpipe, false);
   1021    1.1  jdolecek 			if (error != 0)
   1022    1.1  jdolecek 				break;
   1023    1.1  jdolecek 			/*
   1024    1.1  jdolecek 			 * If read side wants to go away, we just issue a signal
   1025    1.1  jdolecek 			 * to ourselves.
   1026    1.1  jdolecek 			 */
   1027    1.1  jdolecek 			if (wpipe->pipe_state & PIPE_EOF) {
   1028    1.1  jdolecek 				error = EPIPE;
   1029    1.1  jdolecek 				break;
   1030   1.18       chs 			}
   1031  1.127       dsl 			wakeup_state = wpipe->pipe_state;
   1032    1.1  jdolecek 		}
   1033    1.1  jdolecek 	}
   1034    1.1  jdolecek 
   1035    1.1  jdolecek 	--wpipe->pipe_busy;
   1036   1.97      yamt 	if (wpipe->pipe_busy == 0) {
   1037  1.127       dsl 		wpipe->pipe_state &= ~PIPE_RESTART;
   1038   1.97      yamt 		cv_broadcast(&wpipe->pipe_draincv);
   1039   1.97      yamt 	}
   1040   1.97      yamt 	if (bp->cnt > 0) {
   1041   1.97      yamt 		cv_broadcast(&wpipe->pipe_rcv);
   1042    1.1  jdolecek 	}
   1043    1.1  jdolecek 
   1044    1.1  jdolecek 	/*
   1045    1.1  jdolecek 	 * Don't return EPIPE if I/O was successful
   1046    1.1  jdolecek 	 */
   1047   1.35        pk 	if (error == EPIPE && bp->cnt == 0 && uio->uio_resid == 0)
   1048    1.1  jdolecek 		error = 0;
   1049    1.1  jdolecek 
   1050    1.1  jdolecek 	if (error == 0)
   1051  1.110  christos 		getnanotime(&wpipe->pipe_mtime);
   1052    1.1  jdolecek 
   1053    1.1  jdolecek 	/*
   1054    1.2  jdolecek 	 * We have something to offer, wake up select/poll.
   1055  1.137      matt 	 * wmap->cnt is always 0 in this point (direct write
   1056   1.14  jdolecek 	 * is only done synchronously), so check only wpipe->pipe_buffer.cnt
   1057    1.1  jdolecek 	 */
   1058   1.35        pk 	if (bp->cnt)
   1059  1.105      yamt 		pipeselwakeup(wpipe, wpipe, POLL_IN);
   1060    1.1  jdolecek 
   1061    1.2  jdolecek 	/*
   1062    1.2  jdolecek 	 * Arrange for next read(2) to do a signal.
   1063    1.2  jdolecek 	 */
   1064    1.2  jdolecek 	wpipe->pipe_state |= PIPE_SIGNALR;
   1065    1.2  jdolecek 
   1066   1.35        pk 	pipeunlock(wpipe);
   1067   1.95        ad 	mutex_exit(lock);
   1068    1.1  jdolecek 	return (error);
   1069    1.1  jdolecek }
   1070    1.1  jdolecek 
   1071    1.1  jdolecek /*
   1072  1.113     rmind  * We implement a very minimal set of ioctls for compatibility with sockets.
   1073    1.1  jdolecek  */
   1074    1.1  jdolecek int
   1075  1.113     rmind pipe_ioctl(file_t *fp, u_long cmd, void *data)
   1076    1.1  jdolecek {
   1077  1.140      matt 	struct pipe *pipe = fp->f_pipe;
   1078   1.95        ad 	kmutex_t *lock = pipe->pipe_lock;
   1079    1.1  jdolecek 
   1080    1.1  jdolecek 	switch (cmd) {
   1081    1.1  jdolecek 
   1082    1.1  jdolecek 	case FIONBIO:
   1083    1.1  jdolecek 		return (0);
   1084    1.1  jdolecek 
   1085    1.1  jdolecek 	case FIOASYNC:
   1086   1.95        ad 		mutex_enter(lock);
   1087    1.1  jdolecek 		if (*(int *)data) {
   1088   1.35        pk 			pipe->pipe_state |= PIPE_ASYNC;
   1089    1.1  jdolecek 		} else {
   1090   1.35        pk 			pipe->pipe_state &= ~PIPE_ASYNC;
   1091    1.1  jdolecek 		}
   1092   1.95        ad 		mutex_exit(lock);
   1093    1.1  jdolecek 		return (0);
   1094    1.1  jdolecek 
   1095    1.1  jdolecek 	case FIONREAD:
   1096   1.95        ad 		mutex_enter(lock);
   1097    1.2  jdolecek #ifndef PIPE_NODIRECT
   1098   1.35        pk 		if (pipe->pipe_state & PIPE_DIRECTW)
   1099   1.35        pk 			*(int *)data = pipe->pipe_map.cnt;
   1100    1.1  jdolecek 		else
   1101    1.2  jdolecek #endif
   1102   1.35        pk 			*(int *)data = pipe->pipe_buffer.cnt;
   1103   1.95        ad 		mutex_exit(lock);
   1104    1.1  jdolecek 		return (0);
   1105    1.1  jdolecek 
   1106   1.59  wrstuden 	case FIONWRITE:
   1107   1.59  wrstuden 		/* Look at other side */
   1108   1.59  wrstuden 		pipe = pipe->pipe_peer;
   1109   1.95        ad 		mutex_enter(lock);
   1110   1.59  wrstuden #ifndef PIPE_NODIRECT
   1111   1.59  wrstuden 		if (pipe->pipe_state & PIPE_DIRECTW)
   1112   1.59  wrstuden 			*(int *)data = pipe->pipe_map.cnt;
   1113   1.59  wrstuden 		else
   1114   1.59  wrstuden #endif
   1115   1.59  wrstuden 			*(int *)data = pipe->pipe_buffer.cnt;
   1116   1.95        ad 		mutex_exit(lock);
   1117   1.59  wrstuden 		return (0);
   1118   1.59  wrstuden 
   1119   1.59  wrstuden 	case FIONSPACE:
   1120   1.59  wrstuden 		/* Look at other side */
   1121   1.59  wrstuden 		pipe = pipe->pipe_peer;
   1122   1.95        ad 		mutex_enter(lock);
   1123   1.59  wrstuden #ifndef PIPE_NODIRECT
   1124   1.59  wrstuden 		/*
   1125   1.59  wrstuden 		 * If we're in direct-mode, we don't really have a
   1126   1.59  wrstuden 		 * send queue, and any other write will block. Thus
   1127   1.59  wrstuden 		 * zero seems like the best answer.
   1128   1.59  wrstuden 		 */
   1129   1.59  wrstuden 		if (pipe->pipe_state & PIPE_DIRECTW)
   1130   1.59  wrstuden 			*(int *)data = 0;
   1131   1.59  wrstuden 		else
   1132   1.59  wrstuden #endif
   1133   1.59  wrstuden 			*(int *)data = pipe->pipe_buffer.size -
   1134   1.82        ad 			    pipe->pipe_buffer.cnt;
   1135   1.95        ad 		mutex_exit(lock);
   1136   1.59  wrstuden 		return (0);
   1137   1.59  wrstuden 
   1138    1.2  jdolecek 	case TIOCSPGRP:
   1139   1.43  jdolecek 	case FIOSETOWN:
   1140   1.99        ad 		return fsetown(&pipe->pipe_pgid, cmd, data);
   1141    1.2  jdolecek 
   1142    1.2  jdolecek 	case TIOCGPGRP:
   1143   1.43  jdolecek 	case FIOGETOWN:
   1144   1.99        ad 		return fgetown(pipe->pipe_pgid, cmd, data);
   1145    1.1  jdolecek 
   1146    1.1  jdolecek 	}
   1147   1.25    atatat 	return (EPASSTHROUGH);
   1148    1.1  jdolecek }
   1149    1.1  jdolecek 
   1150    1.1  jdolecek int
   1151  1.113     rmind pipe_poll(file_t *fp, int events)
   1152    1.1  jdolecek {
   1153  1.140      matt 	struct pipe *rpipe = fp->f_pipe;
   1154    1.1  jdolecek 	struct pipe *wpipe;
   1155   1.35        pk 	int eof = 0;
   1156    1.1  jdolecek 	int revents = 0;
   1157    1.1  jdolecek 
   1158   1.90        ad 	mutex_enter(rpipe->pipe_lock);
   1159    1.1  jdolecek 	wpipe = rpipe->pipe_peer;
   1160   1.35        pk 
   1161    1.1  jdolecek 	if (events & (POLLIN | POLLRDNORM))
   1162    1.2  jdolecek 		if ((rpipe->pipe_buffer.cnt > 0) ||
   1163    1.2  jdolecek #ifndef PIPE_NODIRECT
   1164   1.35        pk 		    (rpipe->pipe_state & PIPE_DIRECTR) ||
   1165    1.2  jdolecek #endif
   1166    1.1  jdolecek 		    (rpipe->pipe_state & PIPE_EOF))
   1167    1.1  jdolecek 			revents |= events & (POLLIN | POLLRDNORM);
   1168    1.1  jdolecek 
   1169   1.35        pk 	eof |= (rpipe->pipe_state & PIPE_EOF);
   1170   1.35        pk 
   1171   1.35        pk 	if (wpipe == NULL)
   1172   1.35        pk 		revents |= events & (POLLOUT | POLLWRNORM);
   1173   1.35        pk 	else {
   1174   1.35        pk 		if (events & (POLLOUT | POLLWRNORM))
   1175   1.35        pk 			if ((wpipe->pipe_state & PIPE_EOF) || (
   1176    1.2  jdolecek #ifndef PIPE_NODIRECT
   1177   1.35        pk 			     (wpipe->pipe_state & PIPE_DIRECTW) == 0 &&
   1178    1.2  jdolecek #endif
   1179   1.35        pk 			     (wpipe->pipe_buffer.size - wpipe->pipe_buffer.cnt) >= PIPE_BUF))
   1180   1.35        pk 				revents |= events & (POLLOUT | POLLWRNORM);
   1181    1.1  jdolecek 
   1182   1.35        pk 		eof |= (wpipe->pipe_state & PIPE_EOF);
   1183   1.35        pk 	}
   1184   1.35        pk 
   1185   1.35        pk 	if (wpipe == NULL || eof)
   1186    1.1  jdolecek 		revents |= POLLHUP;
   1187    1.1  jdolecek 
   1188    1.1  jdolecek 	if (revents == 0) {
   1189   1.35        pk 		if (events & (POLLIN | POLLRDNORM))
   1190   1.99        ad 			selrecord(curlwp, &rpipe->pipe_sel);
   1191    1.1  jdolecek 
   1192   1.35        pk 		if (events & (POLLOUT | POLLWRNORM))
   1193   1.99        ad 			selrecord(curlwp, &wpipe->pipe_sel);
   1194    1.1  jdolecek 	}
   1195   1.90        ad 	mutex_exit(rpipe->pipe_lock);
   1196    1.1  jdolecek 
   1197    1.1  jdolecek 	return (revents);
   1198    1.1  jdolecek }
   1199    1.1  jdolecek 
   1200    1.1  jdolecek static int
   1201  1.113     rmind pipe_stat(file_t *fp, struct stat *ub)
   1202    1.1  jdolecek {
   1203  1.140      matt 	struct pipe *pipe = fp->f_pipe;
   1204    1.1  jdolecek 
   1205  1.112  christos 	mutex_enter(pipe->pipe_lock);
   1206  1.110  christos 	memset(ub, 0, sizeof(*ub));
   1207   1.32  jdolecek 	ub->st_mode = S_IFIFO | S_IRUSR | S_IWUSR;
   1208    1.1  jdolecek 	ub->st_blksize = pipe->pipe_buffer.size;
   1209   1.64  christos 	if (ub->st_blksize == 0 && pipe->pipe_peer)
   1210   1.64  christos 		ub->st_blksize = pipe->pipe_peer->pipe_buffer.size;
   1211    1.1  jdolecek 	ub->st_size = pipe->pipe_buffer.cnt;
   1212    1.2  jdolecek 	ub->st_blocks = (ub->st_size) ? 1 : 0;
   1213  1.110  christos 	ub->st_atimespec = pipe->pipe_atime;
   1214  1.110  christos 	ub->st_mtimespec = pipe->pipe_mtime;
   1215  1.111  christos 	ub->st_ctimespec = ub->st_birthtimespec = pipe->pipe_btime;
   1216   1.72      elad 	ub->st_uid = kauth_cred_geteuid(fp->f_cred);
   1217   1.72      elad 	ub->st_gid = kauth_cred_getegid(fp->f_cred);
   1218   1.82        ad 
   1219    1.1  jdolecek 	/*
   1220    1.1  jdolecek 	 * Left as 0: st_dev, st_ino, st_nlink, st_rdev, st_flags, st_gen.
   1221    1.1  jdolecek 	 * XXX (st_dev, st_ino) should be unique.
   1222    1.1  jdolecek 	 */
   1223  1.112  christos 	mutex_exit(pipe->pipe_lock);
   1224  1.112  christos 	return 0;
   1225    1.1  jdolecek }
   1226    1.1  jdolecek 
   1227    1.1  jdolecek static int
   1228  1.113     rmind pipe_close(file_t *fp)
   1229    1.1  jdolecek {
   1230  1.140      matt 	struct pipe *pipe = fp->f_pipe;
   1231    1.1  jdolecek 
   1232  1.140      matt 	fp->f_pipe = NULL;
   1233  1.122       dsl 	pipeclose(pipe);
   1234    1.1  jdolecek 	return (0);
   1235    1.1  jdolecek }
   1236    1.1  jdolecek 
   1237    1.1  jdolecek static void
   1238  1.127       dsl pipe_restart(file_t *fp)
   1239  1.123       dsl {
   1240  1.140      matt 	struct pipe *pipe = fp->f_pipe;
   1241  1.123       dsl 
   1242  1.124       dsl 	/*
   1243  1.124       dsl 	 * Unblock blocked reads/writes in order to allow close() to complete.
   1244  1.127       dsl 	 * System calls return ERESTART so that the fd is revalidated.
   1245  1.127       dsl 	 * (Partial writes return the transfer length.)
   1246  1.124       dsl 	 */
   1247  1.123       dsl 	mutex_enter(pipe->pipe_lock);
   1248  1.127       dsl 	pipe->pipe_state |= PIPE_RESTART;
   1249  1.127       dsl 	/* Wakeup both cvs, maybe we only need one, but maybe there are some
   1250  1.127       dsl 	 * other paths where wakeup is needed, and it saves deciding which! */
   1251  1.123       dsl 	cv_broadcast(&pipe->pipe_rcv);
   1252  1.123       dsl 	cv_broadcast(&pipe->pipe_wcv);
   1253  1.123       dsl 	mutex_exit(pipe->pipe_lock);
   1254  1.123       dsl }
   1255  1.123       dsl 
   1256  1.123       dsl static void
   1257   1.68   thorpej pipe_free_kmem(struct pipe *pipe)
   1258    1.1  jdolecek {
   1259    1.1  jdolecek 
   1260   1.35        pk 	if (pipe->pipe_buffer.buffer != NULL) {
   1261  1.106        ad 		if (pipe->pipe_buffer.size > PIPE_SIZE) {
   1262   1.90        ad 			atomic_dec_uint(&nbigpipe);
   1263  1.106        ad 		}
   1264  1.106        ad 		if (pipe->pipe_buffer.buffer != (void *)pipe->pipe_kmem) {
   1265  1.106        ad 			uvm_km_free(kernel_map,
   1266  1.106        ad 			    (vaddr_t)pipe->pipe_buffer.buffer,
   1267  1.106        ad 			    pipe->pipe_buffer.size, UVM_KMF_PAGEABLE);
   1268  1.106        ad 			atomic_add_int(&amountpipekva,
   1269  1.106        ad 			    -pipe->pipe_buffer.size);
   1270  1.106        ad 		}
   1271   1.35        pk 		pipe->pipe_buffer.buffer = NULL;
   1272    1.1  jdolecek 	}
   1273    1.1  jdolecek #ifndef PIPE_NODIRECT
   1274   1.35        pk 	if (pipe->pipe_map.kva != 0) {
   1275   1.35        pk 		pipe_loan_free(pipe);
   1276   1.35        pk 		pipe->pipe_map.cnt = 0;
   1277   1.35        pk 		pipe->pipe_map.pos = 0;
   1278   1.35        pk 		pipe->pipe_map.npages = 0;
   1279    1.1  jdolecek 	}
   1280    1.2  jdolecek #endif /* !PIPE_NODIRECT */
   1281    1.1  jdolecek }
   1282    1.1  jdolecek 
   1283    1.1  jdolecek /*
   1284  1.113     rmind  * Shutdown the pipe.
   1285    1.1  jdolecek  */
   1286    1.1  jdolecek static void
   1287  1.122       dsl pipeclose(struct pipe *pipe)
   1288    1.1  jdolecek {
   1289   1.95        ad 	kmutex_t *lock;
   1290    1.1  jdolecek 	struct pipe *ppipe;
   1291    1.1  jdolecek 
   1292   1.35        pk 	if (pipe == NULL)
   1293    1.2  jdolecek 		return;
   1294   1.99        ad 
   1295   1.99        ad 	KASSERT(cv_is_valid(&pipe->pipe_rcv));
   1296   1.99        ad 	KASSERT(cv_is_valid(&pipe->pipe_wcv));
   1297   1.99        ad 	KASSERT(cv_is_valid(&pipe->pipe_draincv));
   1298   1.99        ad 	KASSERT(cv_is_valid(&pipe->pipe_lkcv));
   1299   1.99        ad 
   1300   1.95        ad 	lock = pipe->pipe_lock;
   1301  1.122       dsl 	if (lock == NULL)
   1302  1.122       dsl 		/* Must have failed during create */
   1303  1.122       dsl 		goto free_resources;
   1304  1.122       dsl 
   1305   1.95        ad 	mutex_enter(lock);
   1306   1.66  christos 	pipeselwakeup(pipe, pipe, POLL_HUP);
   1307    1.1  jdolecek 
   1308    1.2  jdolecek 	/*
   1309    1.2  jdolecek 	 * If the other side is blocked, wake it up saying that
   1310    1.2  jdolecek 	 * we want to close it down.
   1311    1.2  jdolecek 	 */
   1312   1.66  christos 	pipe->pipe_state |= PIPE_EOF;
   1313   1.82        ad 	if (pipe->pipe_busy) {
   1314   1.82        ad 		while (pipe->pipe_busy) {
   1315   1.97      yamt 			cv_broadcast(&pipe->pipe_wcv);
   1316   1.97      yamt 			cv_wait_sig(&pipe->pipe_draincv, lock);
   1317   1.82        ad 		}
   1318    1.2  jdolecek 	}
   1319    1.1  jdolecek 
   1320    1.2  jdolecek 	/*
   1321  1.113     rmind 	 * Disconnect from peer.
   1322    1.2  jdolecek 	 */
   1323   1.35        pk 	if ((ppipe = pipe->pipe_peer) != NULL) {
   1324   1.66  christos 		pipeselwakeup(ppipe, ppipe, POLL_HUP);
   1325    1.2  jdolecek 		ppipe->pipe_state |= PIPE_EOF;
   1326   1.97      yamt 		cv_broadcast(&ppipe->pipe_rcv);
   1327    1.2  jdolecek 		ppipe->pipe_peer = NULL;
   1328    1.1  jdolecek 	}
   1329   1.35        pk 
   1330  1.108     enami 	/*
   1331  1.108     enami 	 * Any knote objects still left in the list are
   1332  1.108     enami 	 * the one attached by peer.  Since no one will
   1333  1.108     enami 	 * traverse this list, we just clear it.
   1334  1.108     enami 	 */
   1335  1.108     enami 	SLIST_INIT(&pipe->pipe_sel.sel_klist);
   1336  1.108     enami 
   1337   1.67      yamt 	KASSERT((pipe->pipe_state & PIPE_LOCKFL) == 0);
   1338   1.95        ad 	mutex_exit(lock);
   1339  1.122       dsl 	mutex_obj_free(lock);
   1340   1.35        pk 
   1341    1.2  jdolecek 	/*
   1342  1.113     rmind 	 * Free resources.
   1343    1.2  jdolecek 	 */
   1344  1.122       dsl     free_resources:
   1345  1.106        ad 	pipe->pipe_pgid = 0;
   1346  1.106        ad 	pipe->pipe_state = PIPE_SIGNALR;
   1347   1.35        pk 	pipe_free_kmem(pipe);
   1348  1.106        ad 	if (pipe->pipe_kmem != 0) {
   1349  1.106        ad 		pool_cache_put(pipe_rd_cache, pipe);
   1350  1.106        ad 	} else {
   1351  1.106        ad 		pool_cache_put(pipe_wr_cache, pipe);
   1352  1.106        ad 	}
   1353    1.1  jdolecek }
   1354    1.1  jdolecek 
   1355   1.27  jdolecek static void
   1356   1.27  jdolecek filt_pipedetach(struct knote *kn)
   1357    1.1  jdolecek {
   1358   1.92        ad 	struct pipe *pipe;
   1359   1.92        ad 	kmutex_t *lock;
   1360   1.92        ad 
   1361  1.140      matt 	pipe = ((file_t *)kn->kn_obj)->f_pipe;
   1362   1.92        ad 	lock = pipe->pipe_lock;
   1363    1.1  jdolecek 
   1364   1.92        ad 	mutex_enter(lock);
   1365   1.82        ad 
   1366   1.27  jdolecek 	switch(kn->kn_filter) {
   1367    1.1  jdolecek 	case EVFILT_WRITE:
   1368  1.113     rmind 		/* Need the peer structure, not our own. */
   1369   1.35        pk 		pipe = pipe->pipe_peer;
   1370   1.27  jdolecek 
   1371  1.113     rmind 		/* If reader end already closed, just return. */
   1372   1.82        ad 		if (pipe == NULL) {
   1373   1.92        ad 			mutex_exit(lock);
   1374   1.27  jdolecek 			return;
   1375   1.82        ad 		}
   1376   1.27  jdolecek 
   1377    1.1  jdolecek 		break;
   1378    1.1  jdolecek 	default:
   1379  1.113     rmind 		/* Nothing to do. */
   1380   1.29  kristerw 		break;
   1381    1.1  jdolecek 	}
   1382   1.24  jdolecek 
   1383  1.113     rmind 	KASSERT(kn->kn_hook == pipe);
   1384   1.35        pk 	SLIST_REMOVE(&pipe->pipe_sel.sel_klist, kn, knote, kn_selnext);
   1385   1.92        ad 	mutex_exit(lock);
   1386    1.1  jdolecek }
   1387    1.1  jdolecek 
   1388    1.1  jdolecek static int
   1389    1.1  jdolecek filt_piperead(struct knote *kn, long hint)
   1390    1.1  jdolecek {
   1391  1.140      matt 	struct pipe *rpipe = ((file_t *)kn->kn_obj)->f_pipe;
   1392   1.82        ad 	struct pipe *wpipe;
   1393   1.82        ad 
   1394   1.83        ad 	if ((hint & NOTE_SUBMIT) == 0) {
   1395   1.90        ad 		mutex_enter(rpipe->pipe_lock);
   1396   1.83        ad 	}
   1397   1.82        ad 	wpipe = rpipe->pipe_peer;
   1398   1.83        ad 	kn->kn_data = rpipe->pipe_buffer.cnt;
   1399    1.1  jdolecek 
   1400    1.1  jdolecek 	if ((kn->kn_data == 0) && (rpipe->pipe_state & PIPE_DIRECTW))
   1401    1.1  jdolecek 		kn->kn_data = rpipe->pipe_map.cnt;
   1402    1.1  jdolecek 
   1403    1.1  jdolecek 	if ((rpipe->pipe_state & PIPE_EOF) ||
   1404    1.1  jdolecek 	    (wpipe == NULL) || (wpipe->pipe_state & PIPE_EOF)) {
   1405   1.24  jdolecek 		kn->kn_flags |= EV_EOF;
   1406   1.83        ad 		if ((hint & NOTE_SUBMIT) == 0) {
   1407   1.90        ad 			mutex_exit(rpipe->pipe_lock);
   1408   1.83        ad 		}
   1409    1.1  jdolecek 		return (1);
   1410    1.1  jdolecek 	}
   1411   1.83        ad 
   1412   1.83        ad 	if ((hint & NOTE_SUBMIT) == 0) {
   1413   1.90        ad 		mutex_exit(rpipe->pipe_lock);
   1414   1.83        ad 	}
   1415    1.1  jdolecek 	return (kn->kn_data > 0);
   1416    1.1  jdolecek }
   1417    1.1  jdolecek 
   1418    1.1  jdolecek static int
   1419    1.1  jdolecek filt_pipewrite(struct knote *kn, long hint)
   1420    1.1  jdolecek {
   1421  1.140      matt 	struct pipe *rpipe = ((file_t *)kn->kn_obj)->f_pipe;
   1422   1.82        ad 	struct pipe *wpipe;
   1423   1.82        ad 
   1424   1.83        ad 	if ((hint & NOTE_SUBMIT) == 0) {
   1425   1.90        ad 		mutex_enter(rpipe->pipe_lock);
   1426   1.83        ad 	}
   1427   1.82        ad 	wpipe = rpipe->pipe_peer;
   1428    1.1  jdolecek 
   1429    1.1  jdolecek 	if ((wpipe == NULL) || (wpipe->pipe_state & PIPE_EOF)) {
   1430    1.1  jdolecek 		kn->kn_data = 0;
   1431   1.63     perry 		kn->kn_flags |= EV_EOF;
   1432   1.83        ad 		if ((hint & NOTE_SUBMIT) == 0) {
   1433   1.90        ad 			mutex_exit(rpipe->pipe_lock);
   1434   1.83        ad 		}
   1435    1.1  jdolecek 		return (1);
   1436    1.1  jdolecek 	}
   1437    1.1  jdolecek 	kn->kn_data = wpipe->pipe_buffer.size - wpipe->pipe_buffer.cnt;
   1438    1.1  jdolecek 	if (wpipe->pipe_state & PIPE_DIRECTW)
   1439    1.1  jdolecek 		kn->kn_data = 0;
   1440    1.1  jdolecek 
   1441   1.83        ad 	if ((hint & NOTE_SUBMIT) == 0) {
   1442   1.90        ad 		mutex_exit(rpipe->pipe_lock);
   1443   1.83        ad 	}
   1444    1.1  jdolecek 	return (kn->kn_data >= PIPE_BUF);
   1445    1.1  jdolecek }
   1446   1.27  jdolecek 
   1447  1.141      maya static const struct filterops pipe_rfiltops = {
   1448  1.141      maya 	.f_isfd = 1,
   1449  1.141      maya 	.f_attach = NULL,
   1450  1.141      maya 	.f_detach = filt_pipedetach,
   1451  1.141      maya 	.f_event = filt_piperead,
   1452  1.141      maya };
   1453  1.141      maya 
   1454  1.141      maya static const struct filterops pipe_wfiltops = {
   1455  1.141      maya 	.f_isfd = 1,
   1456  1.141      maya 	.f_attach = NULL,
   1457  1.141      maya 	.f_detach = filt_pipedetach,
   1458  1.141      maya 	.f_event = filt_pipewrite,
   1459  1.141      maya };
   1460   1.27  jdolecek 
   1461   1.27  jdolecek static int
   1462  1.113     rmind pipe_kqfilter(file_t *fp, struct knote *kn)
   1463   1.27  jdolecek {
   1464   1.35        pk 	struct pipe *pipe;
   1465   1.92        ad 	kmutex_t *lock;
   1466   1.27  jdolecek 
   1467  1.140      matt 	pipe = ((file_t *)kn->kn_obj)->f_pipe;
   1468   1.92        ad 	lock = pipe->pipe_lock;
   1469   1.92        ad 
   1470   1.92        ad 	mutex_enter(lock);
   1471   1.82        ad 
   1472   1.27  jdolecek 	switch (kn->kn_filter) {
   1473   1.27  jdolecek 	case EVFILT_READ:
   1474   1.27  jdolecek 		kn->kn_fop = &pipe_rfiltops;
   1475   1.27  jdolecek 		break;
   1476   1.27  jdolecek 	case EVFILT_WRITE:
   1477   1.27  jdolecek 		kn->kn_fop = &pipe_wfiltops;
   1478   1.35        pk 		pipe = pipe->pipe_peer;
   1479   1.35        pk 		if (pipe == NULL) {
   1480  1.113     rmind 			/* Other end of pipe has been closed. */
   1481   1.92        ad 			mutex_exit(lock);
   1482   1.27  jdolecek 			return (EBADF);
   1483   1.27  jdolecek 		}
   1484   1.27  jdolecek 		break;
   1485   1.27  jdolecek 	default:
   1486   1.92        ad 		mutex_exit(lock);
   1487   1.88     pooka 		return (EINVAL);
   1488   1.27  jdolecek 	}
   1489   1.82        ad 
   1490   1.35        pk 	kn->kn_hook = pipe;
   1491   1.35        pk 	SLIST_INSERT_HEAD(&pipe->pipe_sel.sel_klist, kn, kn_selnext);
   1492   1.92        ad 	mutex_exit(lock);
   1493   1.82        ad 
   1494   1.27  jdolecek 	return (0);
   1495   1.27  jdolecek }
   1496    1.2  jdolecek 
   1497    1.2  jdolecek /*
   1498    1.2  jdolecek  * Handle pipe sysctls.
   1499    1.2  jdolecek  */
   1500   1.47    atatat SYSCTL_SETUP(sysctl_kern_pipe_setup, "sysctl kern.pipe subtree setup")
   1501   1.47    atatat {
   1502   1.47    atatat 
   1503   1.54    atatat 	sysctl_createv(clog, 0, NULL, NULL,
   1504   1.54    atatat 		       CTLFLAG_PERMANENT,
   1505   1.56    atatat 		       CTLTYPE_NODE, "pipe",
   1506   1.56    atatat 		       SYSCTL_DESCR("Pipe settings"),
   1507   1.47    atatat 		       NULL, 0, NULL, 0,
   1508   1.47    atatat 		       CTL_KERN, KERN_PIPE, CTL_EOL);
   1509   1.47    atatat 
   1510   1.54    atatat 	sysctl_createv(clog, 0, NULL, NULL,
   1511   1.54    atatat 		       CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
   1512   1.56    atatat 		       CTLTYPE_INT, "maxkvasz",
   1513   1.56    atatat 		       SYSCTL_DESCR("Maximum amount of kernel memory to be "
   1514   1.56    atatat 				    "used for pipes"),
   1515   1.47    atatat 		       NULL, 0, &maxpipekva, 0,
   1516   1.47    atatat 		       CTL_KERN, KERN_PIPE, KERN_PIPE_MAXKVASZ, CTL_EOL);
   1517   1.54    atatat 	sysctl_createv(clog, 0, NULL, NULL,
   1518   1.54    atatat 		       CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
   1519   1.56    atatat 		       CTLTYPE_INT, "maxloankvasz",
   1520   1.56    atatat 		       SYSCTL_DESCR("Limit for direct transfers via page loan"),
   1521   1.47    atatat 		       NULL, 0, &limitpipekva, 0,
   1522   1.47    atatat 		       CTL_KERN, KERN_PIPE, KERN_PIPE_LIMITKVA, CTL_EOL);
   1523   1.54    atatat 	sysctl_createv(clog, 0, NULL, NULL,
   1524   1.54    atatat 		       CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
   1525   1.56    atatat 		       CTLTYPE_INT, "maxbigpipes",
   1526   1.56    atatat 		       SYSCTL_DESCR("Maximum number of \"big\" pipes"),
   1527   1.47    atatat 		       NULL, 0, &maxbigpipes, 0,
   1528   1.47    atatat 		       CTL_KERN, KERN_PIPE, KERN_PIPE_MAXBIGPIPES, CTL_EOL);
   1529   1.54    atatat 	sysctl_createv(clog, 0, NULL, NULL,
   1530   1.54    atatat 		       CTLFLAG_PERMANENT,
   1531   1.56    atatat 		       CTLTYPE_INT, "nbigpipes",
   1532   1.56    atatat 		       SYSCTL_DESCR("Number of \"big\" pipes"),
   1533   1.47    atatat 		       NULL, 0, &nbigpipe, 0,
   1534   1.47    atatat 		       CTL_KERN, KERN_PIPE, KERN_PIPE_NBIGPIPES, CTL_EOL);
   1535   1.54    atatat 	sysctl_createv(clog, 0, NULL, NULL,
   1536   1.54    atatat 		       CTLFLAG_PERMANENT,
   1537   1.56    atatat 		       CTLTYPE_INT, "kvasize",
   1538   1.56    atatat 		       SYSCTL_DESCR("Amount of kernel memory consumed by pipe "
   1539   1.56    atatat 				    "buffers"),
   1540   1.47    atatat 		       NULL, 0, &amountpipekva, 0,
   1541   1.47    atatat 		       CTL_KERN, KERN_PIPE, KERN_PIPE_KVASIZE, CTL_EOL);
   1542    1.2  jdolecek }
   1543