236 lines
7.4 KiB
C
236 lines
7.4 KiB
C
/* This file contains the code for performing four system calls relating to
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* status and directories.
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*
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* The entry points into this file are
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* do_chdir: perform the CHDIR system call
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* do_chroot: perform the CHROOT system call
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* do_stat: perform the STAT system call
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* do_fstat: perform the FSTAT system call
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* do_fstatfs: perform the FSTATFS system call
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*/
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#include "fs.h"
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#include <sys/stat.h>
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#include <sys/statfs.h>
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#include <minix/com.h>
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#include "file.h"
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#include "fproc.h"
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#include "inode.h"
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#include "param.h"
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#include "super.h"
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FORWARD _PROTOTYPE( int change, (struct inode **iip, char *name_ptr, int len));
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FORWARD _PROTOTYPE( int change_into, (struct inode **iip, struct inode *ip));
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FORWARD _PROTOTYPE( int stat_inode, (struct inode *rip, struct filp *fil_ptr,
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char *user_addr) );
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/*===========================================================================*
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* do_fchdir *
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*===========================================================================*/
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PUBLIC int do_fchdir()
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{
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/* Change directory on already-opened fd. */
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struct filp *rfilp;
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/* Is the file descriptor valid? */
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if ( (rfilp = get_filp(m_in.fd)) == NIL_FILP) return(err_code);
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return change_into(&fp->fp_workdir, rfilp->filp_ino);
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}
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/*===========================================================================*
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* do_chdir *
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*===========================================================================*/
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PUBLIC int do_chdir()
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{
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/* Change directory. This function is also called by MM to simulate a chdir
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* in order to do EXEC, etc. It also changes the root directory, the uids and
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* gids, and the umask.
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*/
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int r;
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register struct fproc *rfp;
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if (who == PM_PROC_NR) {
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rfp = &fproc[m_in.slot1];
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put_inode(fp->fp_rootdir);
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dup_inode(fp->fp_rootdir = rfp->fp_rootdir);
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put_inode(fp->fp_workdir);
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dup_inode(fp->fp_workdir = rfp->fp_workdir);
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/* MM uses access() to check permissions. To make this work, pretend
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* that the user's real ids are the same as the user's effective ids.
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* FS calls other than access() do not use the real ids, so are not
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* affected.
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*/
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fp->fp_realuid =
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fp->fp_effuid = rfp->fp_effuid;
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fp->fp_realgid =
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fp->fp_effgid = rfp->fp_effgid;
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fp->fp_umask = rfp->fp_umask;
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return(OK);
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}
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/* Perform the chdir(name) system call. */
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r = change(&fp->fp_workdir, m_in.name, m_in.name_length);
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return(r);
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}
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/*===========================================================================*
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* do_chroot *
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*===========================================================================*/
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PUBLIC int do_chroot()
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{
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/* Perform the chroot(name) system call. */
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register int r;
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if (!super_user) return(EPERM); /* only su may chroot() */
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r = change(&fp->fp_rootdir, m_in.name, m_in.name_length);
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return(r);
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}
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/*===========================================================================*
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* change *
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*===========================================================================*/
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PRIVATE int change(iip, name_ptr, len)
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struct inode **iip; /* pointer to the inode pointer for the dir */
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char *name_ptr; /* pointer to the directory name to change to */
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int len; /* length of the directory name string */
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{
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/* Do the actual work for chdir() and chroot(). */
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struct inode *rip;
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/* Try to open the new directory. */
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if (fetch_name(name_ptr, len, M3) != OK) return(err_code);
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if ( (rip = eat_path(user_path)) == NIL_INODE) return(err_code);
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return change_into(iip, rip);
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}
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/*===========================================================================*
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* change_into *
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*===========================================================================*/
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PRIVATE int change_into(iip, rip)
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struct inode **iip; /* pointer to the inode pointer for the dir */
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struct inode *rip; /* this is what the inode has to become */
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{
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register int r;
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/* It must be a directory and also be searchable. */
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if ( (rip->i_mode & I_TYPE) != I_DIRECTORY)
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r = ENOTDIR;
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else
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r = forbidden(rip, X_BIT); /* check if dir is searchable */
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/* If error, return inode. */
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if (r != OK) {
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put_inode(rip);
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return(r);
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}
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/* Everything is OK. Make the change. */
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put_inode(*iip); /* release the old directory */
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*iip = rip; /* acquire the new one */
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return(OK);
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}
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/*===========================================================================*
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* do_stat *
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*===========================================================================*/
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PUBLIC int do_stat()
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{
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/* Perform the stat(name, buf) system call. */
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register struct inode *rip;
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register int r;
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/* Both stat() and fstat() use the same routine to do the real work. That
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* routine expects an inode, so acquire it temporarily.
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*/
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if (fetch_name(m_in.name1, m_in.name1_length, M1) != OK) return(err_code);
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if ( (rip = eat_path(user_path)) == NIL_INODE) return(err_code);
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r = stat_inode(rip, NIL_FILP, m_in.name2); /* actually do the work.*/
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put_inode(rip); /* release the inode */
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return(r);
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}
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/*===========================================================================*
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* do_fstat *
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*===========================================================================*/
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PUBLIC int do_fstat()
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{
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/* Perform the fstat(fd, buf) system call. */
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register struct filp *rfilp;
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/* Is the file descriptor valid? */
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if ( (rfilp = get_filp(m_in.fd)) == NIL_FILP) return(err_code);
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return(stat_inode(rfilp->filp_ino, rfilp, m_in.buffer));
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}
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/*===========================================================================*
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* stat_inode *
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*===========================================================================*/
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PRIVATE int stat_inode(rip, fil_ptr, user_addr)
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register struct inode *rip; /* pointer to inode to stat */
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struct filp *fil_ptr; /* filp pointer, supplied by 'fstat' */
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char *user_addr; /* user space address where stat buf goes */
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{
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/* Common code for stat and fstat system calls. */
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struct stat statbuf;
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mode_t mo;
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int r, s;
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/* Update the atime, ctime, and mtime fields in the inode, if need be. */
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if (rip->i_update) update_times(rip);
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/* Fill in the statbuf struct. */
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mo = rip->i_mode & I_TYPE;
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s = (mo == I_CHAR_SPECIAL || mo == I_BLOCK_SPECIAL); /* true iff special */
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statbuf.st_dev = rip->i_dev;
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statbuf.st_ino = rip->i_num;
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statbuf.st_mode = rip->i_mode;
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statbuf.st_nlink = rip->i_nlinks;
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statbuf.st_uid = rip->i_uid;
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statbuf.st_gid = rip->i_gid;
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statbuf.st_rdev = (dev_t) (s ? rip->i_zone[0] : NO_DEV);
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statbuf.st_size = rip->i_size;
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if (rip->i_pipe == I_PIPE) {
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statbuf.st_mode &= ~I_REGULAR; /* wipe out I_REGULAR bit for pipes */
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if (fil_ptr != NIL_FILP && fil_ptr->filp_mode & R_BIT)
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statbuf.st_size -= fil_ptr->filp_pos;
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}
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statbuf.st_atime = rip->i_atime;
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statbuf.st_mtime = rip->i_mtime;
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statbuf.st_ctime = rip->i_ctime;
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/* Copy the struct to user space. */
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r = sys_datacopy(FS_PROC_NR, (vir_bytes) &statbuf,
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who, (vir_bytes) user_addr, (phys_bytes) sizeof(statbuf));
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return(r);
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}
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/*===========================================================================*
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* do_fstatfs *
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*===========================================================================*/
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PUBLIC int do_fstatfs()
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{
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/* Perform the fstatfs(fd, buf) system call. */
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struct statfs st;
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register struct filp *rfilp;
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int r;
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/* Is the file descriptor valid? */
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if ( (rfilp = get_filp(m_in.fd)) == NIL_FILP) return(err_code);
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st.f_bsize = rfilp->filp_ino->i_sp->s_block_size;
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r = sys_datacopy(FS_PROC_NR, (vir_bytes) &st,
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who, (vir_bytes) m_in.buffer, (phys_bytes) sizeof(st));
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return(r);
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}
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