The check_bsf() macro uses assert(mutex_trylock(&bsf_lock)) and assumes bsf_lock is locked afterwards. This breaks when compiling with NOASSERTS="yes". Also: macro to function transition.
		
			
				
	
	
		
			360 lines
		
	
	
		
			9.1 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			360 lines
		
	
	
		
			9.1 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
/* This file contains the heart of the mechanism used to read (and write)
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 * files.  Read and write requests are split up into chunks that do not cross
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 * block boundaries.  Each chunk is then processed in turn.  Reads on special
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 * files are also detected and handled.
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 *
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 * The entry points into this file are
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 *   do_read:	 perform the READ system call by calling read_write
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 *   do_getdents: read entries from a directory (GETDENTS)
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 *   read_write: actually do the work of READ and WRITE
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 *
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 */
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#include "fs.h"
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#include <fcntl.h>
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#include <unistd.h>
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#include <minix/com.h>
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#include <minix/u64.h>
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#include "file.h"
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#include "fproc.h"
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#include "scratchpad.h"
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#include "param.h"
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#include <dirent.h>
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#include <assert.h>
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#include <minix/vfsif.h>
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#include "vnode.h"
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#include "vmnt.h"
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/*===========================================================================*
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 *				do_read					     *
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 *===========================================================================*/
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int do_read()
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{
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  return(do_read_write(READING));
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}
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/*===========================================================================*
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 *				lock_bsf				     *
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 *===========================================================================*/
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void lock_bsf(void)
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{
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  struct fproc *org_fp;
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  struct worker_thread *org_self;
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  if (mutex_trylock(&bsf_lock) == 0)
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	return;
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  org_fp = fp;
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  org_self = self;
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  if (mutex_lock(&bsf_lock) != 0)
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	panic("unable to lock block special file lock");
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  fp = org_fp;
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  self = org_self;
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}
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/*===========================================================================*
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 *				unlock_bsf				     *
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 *===========================================================================*/
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void unlock_bsf(void)
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{
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  if (mutex_unlock(&bsf_lock) != 0)
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	panic("failed to unlock block special file lock");
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}
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/*===========================================================================*
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 *				check_bsf				     *
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 *===========================================================================*/
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void check_bsf_lock(void)
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{
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	int r = mutex_trylock(&bsf_lock);
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	if (r == -EBUSY)
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		panic("bsf_lock locked");
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	else if (r != 0)
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		panic("bsf_lock weird state");
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	/* r == 0 */
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	unlock_bsf();
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}
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/*===========================================================================*
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 *				do_read_write				     *
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 *===========================================================================*/
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int do_read_write(rw_flag)
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int rw_flag;			/* READING or WRITING */
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{
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/* Perform read(fd, buffer, nbytes) or write(fd, buffer, nbytes) call. */
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  struct filp *f;
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  tll_access_t locktype;
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  int r;
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  scratch(fp).file.fd_nr = job_m_in.fd;
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  scratch(fp).io.io_buffer = job_m_in.buffer;
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  scratch(fp).io.io_nbytes = (size_t) job_m_in.nbytes;
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  locktype = (rw_flag == READING) ? VNODE_READ : VNODE_WRITE;
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  if ((f = get_filp(scratch(fp).file.fd_nr, locktype)) == NULL)
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	return(err_code);
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  if (((f->filp_mode) & (rw_flag == READING ? R_BIT : W_BIT)) == 0) {
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	unlock_filp(f);
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	return(f->filp_mode == FILP_CLOSED ? EIO : EBADF);
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  }
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  if (scratch(fp).io.io_nbytes == 0) {
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	unlock_filp(f);
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	return(0);	/* so char special files need not check for 0*/
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  }
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  r = read_write(rw_flag, f, scratch(fp).io.io_buffer, scratch(fp).io.io_nbytes,
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		 who_e);
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  unlock_filp(f);
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  return(r);
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}
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/*===========================================================================*
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 *				read_write				     *
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 *===========================================================================*/
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int read_write(int rw_flag, struct filp *f, char *buf, size_t size,
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		      endpoint_t for_e)
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{
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  register struct vnode *vp;
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  u64_t position, res_pos, new_pos;
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  unsigned int cum_io, cum_io_incr, res_cum_io;
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  int op, oflags, r;
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  position = f->filp_pos;
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  oflags = f->filp_flags;
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  vp = f->filp_vno;
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  r = OK;
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  cum_io = 0;
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  if (size > SSIZE_MAX) return(EINVAL);
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  if (S_ISFIFO(vp->v_mode)) {
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	if (fp->fp_cum_io_partial != 0) {
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		panic("VFS: read_write: fp_cum_io_partial not clear");
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	}
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	r = rw_pipe(rw_flag, for_e, f, buf, size);
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	return(r);
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  }
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  op = (rw_flag == READING ? VFS_DEV_READ : VFS_DEV_WRITE);
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  if (S_ISCHR(vp->v_mode)) {	/* Character special files. */
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	dev_t dev;
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	int suspend_reopen;
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	if (vp->v_sdev == NO_DEV)
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		panic("VFS: read_write tries to access char dev NO_DEV");
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	suspend_reopen = (f->filp_state & FS_NEEDS_REOPEN);
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	dev = (dev_t) vp->v_sdev;
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	r = dev_io(op, dev, for_e, buf, position, size, oflags,
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		   suspend_reopen);
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	if (r >= 0) {
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		cum_io = r;
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		position = add64ul(position, r);
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		r = OK;
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	}
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  } else if (S_ISBLK(vp->v_mode)) {	/* Block special files. */
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	if (vp->v_sdev == NO_DEV)
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		panic("VFS: read_write tries to access block dev NO_DEV");
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	lock_bsf();
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	r = req_breadwrite(vp->v_bfs_e, for_e, vp->v_sdev, position, size,
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			   buf, rw_flag, &res_pos, &res_cum_io);
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	if (r == OK) {
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		position = res_pos;
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		cum_io += res_cum_io;
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	}
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	unlock_bsf();
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  } else {				/* Regular files */
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	if (rw_flag == WRITING) {
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		/* Check for O_APPEND flag. */
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		if (oflags & O_APPEND) position = cvul64(vp->v_size);
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	}
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	/* Issue request */
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	r = req_readwrite(vp->v_fs_e, vp->v_inode_nr, position, rw_flag, for_e,
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			  buf, size, &new_pos, &cum_io_incr);
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	if (r >= 0) {
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		if (ex64hi(new_pos))
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			panic("read_write: bad new pos");
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		position = new_pos;
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		cum_io += cum_io_incr;
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	}
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  }
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  /* On write, update file size and access time. */
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  if (rw_flag == WRITING) {
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	if (S_ISREG(vp->v_mode) || S_ISDIR(vp->v_mode)) {
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		if (cmp64ul(position, vp->v_size) > 0) {
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			if (ex64hi(position) != 0) {
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				panic("read_write: file size too big ");
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			}
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			vp->v_size = ex64lo(position);
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		}
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	}
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  }
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  f->filp_pos = position;
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  if (r == OK) return(cum_io);
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  return(r);
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}
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/*===========================================================================*
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 *				do_getdents				     *
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 *===========================================================================*/
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int do_getdents()
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{
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/* Perform the getdents(fd, buf, size) system call. */
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  int r = OK;
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  u64_t new_pos;
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  register struct filp *rfilp;
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  scratch(fp).file.fd_nr = job_m_in.fd;
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  scratch(fp).io.io_buffer = job_m_in.buffer;
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  scratch(fp).io.io_nbytes = (size_t) job_m_in.nbytes;
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  /* Is the file descriptor valid? */
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  if ( (rfilp = get_filp(scratch(fp).file.fd_nr, VNODE_READ)) == NULL)
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	return(err_code);
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  if (!(rfilp->filp_mode & R_BIT))
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	r = EBADF;
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  else if (!S_ISDIR(rfilp->filp_vno->v_mode))
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	r = EBADF;
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  if (r == OK) {
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	if (ex64hi(rfilp->filp_pos) != 0)
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		panic("do_getdents: can't handle large offsets");
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	r = req_getdents(rfilp->filp_vno->v_fs_e, rfilp->filp_vno->v_inode_nr,
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			 rfilp->filp_pos, scratch(fp).io.io_buffer,
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			 scratch(fp).io.io_nbytes, &new_pos,0);
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	if (r > 0) rfilp->filp_pos = new_pos;
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  }
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  unlock_filp(rfilp);
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  return(r);
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}
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/*===========================================================================*
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 *				rw_pipe					     *
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 *===========================================================================*/
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int rw_pipe(rw_flag, usr_e, f, buf, req_size)
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int rw_flag;			/* READING or WRITING */
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endpoint_t usr_e;
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struct filp *f;
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char *buf;
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size_t req_size;
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{
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  int r, oflags, partial_pipe = 0;
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  size_t size, cum_io, cum_io_incr;
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  struct vnode *vp;
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  u64_t position, new_pos;
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  /* Must make sure we're operating on locked filp and vnode */
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  assert(tll_islocked(&f->filp_vno->v_lock));
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  assert(mutex_trylock(&f->filp_lock) == -EDEADLK);
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  oflags = f->filp_flags;
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  vp = f->filp_vno;
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  position = cvu64((rw_flag == READING) ? vp->v_pipe_rd_pos :
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							vp->v_pipe_wr_pos);
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  /* fp->fp_cum_io_partial is only nonzero when doing partial writes */
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  cum_io = fp->fp_cum_io_partial;
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  r = pipe_check(vp, rw_flag, oflags, req_size, position, 0);
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  if (r <= 0) {
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	if (r == SUSPEND) pipe_suspend(f, buf, req_size);
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	return(r);
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  }
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  size = r;
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  if (size < req_size) partial_pipe = 1;
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  /* Truncate read request at size. */
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  if((rw_flag == READING) &&
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	cmp64ul(add64ul(position, size), vp->v_size) > 0) {
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	/* Position always should fit in an off_t (LONG_MAX). */
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	off_t pos32;
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	assert(cmp64ul(position, LONG_MAX) <= 0);
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	pos32 = cv64ul(position);
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	assert(pos32 >= 0);
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	assert(pos32 <= LONG_MAX);
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	size = vp->v_size - pos32;
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  }
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  if (vp->v_mapfs_e == 0)
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	panic("unmapped pipe");
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  r = req_readwrite(vp->v_mapfs_e, vp->v_mapinode_nr, position, rw_flag, usr_e,
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		    buf, size, &new_pos, &cum_io_incr);
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  if (r >= 0) {
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	if (ex64hi(new_pos))
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		panic("rw_pipe: bad new pos");
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	position = new_pos;
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	cum_io += cum_io_incr;
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	buf += cum_io_incr;
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	req_size -= cum_io_incr;
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  }
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  /* On write, update file size and access time. */
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  if (rw_flag == WRITING) {
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	if (cmp64ul(position, vp->v_size) > 0) {
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		if (ex64hi(position) != 0) {
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			panic("read_write: file size too big for v_size");
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		}
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		vp->v_size = ex64lo(position);
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	}
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  } else {
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	if (cmp64ul(position, vp->v_size) >= 0) {
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		/* Reset pipe pointers */
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		vp->v_size = 0;
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		vp->v_pipe_rd_pos= 0;
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		vp->v_pipe_wr_pos= 0;
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		position = cvu64(0);
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	}
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  }
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  if (rw_flag == READING)
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	vp->v_pipe_rd_pos= cv64ul(position);
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  else
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	vp->v_pipe_wr_pos= cv64ul(position);
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  if (r == OK) {
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	if (partial_pipe) {
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		/* partial write on pipe with */
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		/* O_NONBLOCK, return write count */
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		if (!(oflags & O_NONBLOCK)) {
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			/* partial write on pipe with req_size > PIPE_SIZE,
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			 * non-atomic
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			 */
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			fp->fp_cum_io_partial = cum_io;
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			pipe_suspend(f, buf, req_size);
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			return(SUSPEND);
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		}
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	}
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	fp->fp_cum_io_partial = 0;
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	return(cum_io);
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  }
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  return(r);
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}
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