The next commit will make mode_t 32-bits, ino_t 64-bits, nlink_t 32-bits, and off_t 64-bits. However, in the protocol there is no room for that. When analyzing the usage of these data types we can see that of mode_t we currently use 15 bits and that future flags (if copied from NetBSD) are only of importance to VFS and not to the actual file system on disk. Therefore we can get away with keeping the protocol version of mode_t (pmode_t) 16 bits. At this point it is unlikely that MINIX will support file systems that can hold more than 2^32 files. Keeping the protocol version of ino_t (pino_t) 32-bits and exposing it as 64-bits to the rest of the system is fine. uid_t and gid_t are already 32-bits, but in behind the scenes they're 16-bits. This is sufficient since we don't support uid/gids larger than 2^16-1. off_t will become 64-bits, but the protocol had room reserved for that since it was revised years ago. So to make the difference clear between what the protocol supports and what is exposed to the system, we define protocol version of these data types. Change-Id: Ifb883aafb222142e69d6dcc3049a47170b78b3ee
366 lines
12 KiB
C
366 lines
12 KiB
C
/* Created (MFS based):
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* February 2010 (Evgeniy Ivanov)
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*/
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#include "fs.h"
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#include <sys/stat.h>
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#include <string.h>
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#include <assert.h>
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#include <minix/com.h>
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#include "buf.h"
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#include "inode.h"
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#include "super.h"
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#include <minix/vfsif.h>
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static struct inode *new_node(struct inode *ldirp, char *string, pmode_t
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bits, block_t z0);
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/*===========================================================================*
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* fs_create *
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*===========================================================================*/
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int fs_create()
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{
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phys_bytes len;
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int r;
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struct inode *ldirp;
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struct inode *rip;
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pmode_t omode;
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char lastc[NAME_MAX + 1];
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/* Read request message */
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omode = (pmode_t) fs_m_in.REQ_MODE;
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caller_uid = (uid_t) fs_m_in.REQ_UID;
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caller_gid = (gid_t) fs_m_in.REQ_GID;
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/* Try to make the file. */
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/* Copy the last component (i.e., file name) */
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len = fs_m_in.REQ_PATH_LEN; /* including trailing '\0' */
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if (len > NAME_MAX + 1 || len > EXT2_NAME_MAX + 1)
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return(ENAMETOOLONG);
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err_code = sys_safecopyfrom(VFS_PROC_NR, (cp_grant_id_t) fs_m_in.REQ_GRANT,
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(vir_bytes) 0, (vir_bytes) lastc, (size_t) len);
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if (err_code != OK) return err_code;
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NUL(lastc, len, sizeof(lastc));
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/* Get last directory inode (i.e., directory that will hold the new inode) */
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if ((ldirp = get_inode(fs_dev, (pino_t) fs_m_in.REQ_INODE_NR)) == NULL)
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return(ENOENT);
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/* Create a new inode by calling new_node(). */
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rip = new_node(ldirp, lastc, omode, NO_BLOCK);
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r = err_code;
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/* If an error occurred, release inode. */
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if (r != OK) {
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put_inode(ldirp);
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put_inode(rip);
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return(r);
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}
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/* Reply message */
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fs_m_out.RES_INODE_NR = rip->i_num;
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fs_m_out.RES_MODE = rip->i_mode;
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fs_m_out.RES_FILE_SIZE_LO = rip->i_size;
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/* This values are needed for the execution */
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fs_m_out.RES_UID = rip->i_uid;
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fs_m_out.RES_GID = rip->i_gid;
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/* Drop parent dir */
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put_inode(ldirp);
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return(OK);
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}
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/*===========================================================================*
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* fs_mknod *
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*===========================================================================*/
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int fs_mknod()
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{
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struct inode *ip, *ldirp;
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char lastc[NAME_MAX + 1];
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phys_bytes len;
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/* Copy the last component and set up caller's user and group id */
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len = fs_m_in.REQ_PATH_LEN; /* including trailing '\0' */
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if (len > NAME_MAX + 1 || len > EXT2_NAME_MAX + 1)
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return(ENAMETOOLONG);
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err_code = sys_safecopyfrom(VFS_PROC_NR, (cp_grant_id_t) fs_m_in.REQ_GRANT,
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(vir_bytes) 0, (vir_bytes) lastc, (size_t) len);
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if (err_code != OK) return err_code;
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NUL(lastc, len, sizeof(lastc));
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caller_uid = (uid_t) fs_m_in.REQ_UID;
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caller_gid = (gid_t) fs_m_in.REQ_GID;
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/* Get last directory inode */
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if((ldirp = get_inode(fs_dev, (pino_t) fs_m_in.REQ_INODE_NR)) == NULL)
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return(ENOENT);
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/* Try to create the new node */
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ip = new_node(ldirp, lastc, (pmode_t) fs_m_in.REQ_MODE,
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(block_t) fs_m_in.REQ_DEV);
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put_inode(ip);
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put_inode(ldirp);
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return(err_code);
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}
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/*===========================================================================*
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* fs_mkdir *
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*===========================================================================*/
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int fs_mkdir()
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{
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int r1, r2; /* status codes */
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pino_t dot, dotdot; /* inode numbers for . and .. */
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struct inode *rip, *ldirp;
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char lastc[NAME_MAX + 1]; /* last component */
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phys_bytes len;
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/* Copy the last component and set up caller's user and group id */
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len = fs_m_in.REQ_PATH_LEN; /* including trailing '\0' */
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if (len > NAME_MAX + 1 || len > EXT2_NAME_MAX + 1)
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return(ENAMETOOLONG);
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err_code = sys_safecopyfrom(VFS_PROC_NR, (cp_grant_id_t) fs_m_in.REQ_GRANT,
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(vir_bytes) 0, (vir_bytes) lastc, (phys_bytes) len);
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if(err_code != OK) return(err_code);
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NUL(lastc, len, sizeof(lastc));
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caller_uid = (uid_t) fs_m_in.REQ_UID;
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caller_gid = (gid_t) fs_m_in.REQ_GID;
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/* Get last directory inode */
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if((ldirp = get_inode(fs_dev, (pino_t) fs_m_in.REQ_INODE_NR)) == NULL)
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return(ENOENT);
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/* Next make the inode. If that fails, return error code. */
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rip = new_node(ldirp, lastc, (pino_t) fs_m_in.REQ_MODE, (block_t) 0);
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if(rip == NULL || err_code == EEXIST) {
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put_inode(rip); /* can't make dir: it already exists */
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put_inode(ldirp);
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return(err_code);
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}
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/* Get the inode numbers for . and .. to enter in the directory. */
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dotdot = ldirp->i_num; /* parent's inode number */
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dot = rip->i_num; /* inode number of the new dir itself */
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/* Now make dir entries for . and .. unless the disk is completely full. */
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/* Use dot1 and dot2, so the mode of the directory isn't important. */
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rip->i_mode = (pmode_t) fs_m_in.REQ_MODE; /* set mode */
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/* enter . in the new dir*/
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r1 = search_dir(rip, dot1, &dot, ENTER, IGN_PERM, I_DIRECTORY);
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/* enter .. in the new dir */
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r2 = search_dir(rip, dot2, &dotdot, ENTER, IGN_PERM, I_DIRECTORY);
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/* If both . and .. were successfully entered, increment the link counts. */
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if (r1 == OK && r2 == OK) {
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/* Normal case. It was possible to enter . and .. in the new dir. */
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rip->i_links_count++; /* this accounts for . */
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ldirp->i_links_count++; /* this accounts for .. */
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ldirp->i_dirt = IN_DIRTY; /* mark parent's inode as dirty */
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} else {
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/* It was not possible to enter . or .. probably disk was full -
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* links counts haven't been touched. */
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if (search_dir(ldirp, lastc, NULL, DELETE, IGN_PERM, 0) != OK)
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panic("Dir disappeared ", rip->i_num);
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rip->i_links_count--; /* undo the increment done in new_node() */
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}
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rip->i_dirt = IN_DIRTY; /* either way, i_links_count has changed */
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put_inode(ldirp); /* return the inode of the parent dir */
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put_inode(rip); /* return the inode of the newly made dir */
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return(err_code); /* new_node() always sets 'err_code' */
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}
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/*===========================================================================*
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* fs_slink *
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*===========================================================================*/
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int fs_slink()
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{
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phys_bytes len;
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struct inode *sip; /* inode containing symbolic link */
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struct inode *ldirp; /* directory containing link */
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register int r; /* error code */
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char string[NAME_MAX]; /* last component of the new dir's path name */
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char* link_target_buf = NULL; /* either sip->i_block or bp->b_data */
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struct buf *bp = NULL; /* disk buffer for link */
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caller_uid = (uid_t) fs_m_in.REQ_UID;
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caller_gid = (gid_t) fs_m_in.REQ_GID;
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/* Copy the link name's last component */
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len = fs_m_in.REQ_PATH_LEN;
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if (len > NAME_MAX || len > EXT2_NAME_MAX)
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return(ENAMETOOLONG);
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r = sys_safecopyfrom(VFS_PROC_NR, (cp_grant_id_t) fs_m_in.REQ_GRANT,
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(vir_bytes) 0, (vir_bytes) string, (size_t) len);
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if (r != OK) return(r);
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NUL(string, len, sizeof(string));
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/* Temporarily open the dir. */
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if( (ldirp = get_inode(fs_dev, (pino_t) fs_m_in.REQ_INODE_NR)) == NULL)
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return(EINVAL);
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/* Create the inode for the symlink. */
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sip = new_node(ldirp, string, (pmode_t) (I_SYMBOLIC_LINK | RWX_MODES),
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(block_t) 0);
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/* If we can then create fast symlink (store it in inode),
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* Otherwise allocate a disk block for the contents of the symlink and
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* copy contents of symlink (the name pointed to) into first disk block. */
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if( (r = err_code) == OK) {
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if ( (fs_m_in.REQ_MEM_SIZE + 1) > sip->i_sp->s_block_size) {
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r = ENAMETOOLONG;
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} else if ((fs_m_in.REQ_MEM_SIZE + 1) <= MAX_FAST_SYMLINK_LENGTH) {
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r = sys_safecopyfrom(VFS_PROC_NR,
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(cp_grant_id_t) fs_m_in.REQ_GRANT3,
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(vir_bytes) 0, (vir_bytes) sip->i_block,
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(vir_bytes) fs_m_in.REQ_MEM_SIZE);
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sip->i_dirt = IN_DIRTY;
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link_target_buf = (char*) sip->i_block;
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} else {
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if ((bp = new_block(sip, (off_t) 0)) != NULL) {
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sys_safecopyfrom(VFS_PROC_NR,
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(cp_grant_id_t) fs_m_in.REQ_GRANT3,
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(vir_bytes) 0, (vir_bytes) b_data(bp),
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(vir_bytes) fs_m_in.REQ_MEM_SIZE);
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lmfs_markdirty(bp);
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link_target_buf = b_data(bp);
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} else {
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r = err_code;
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}
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}
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if (r == OK) {
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assert(link_target_buf);
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link_target_buf[fs_m_in.REQ_MEM_SIZE] = '\0';
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sip->i_size = (off_t) strlen(link_target_buf);
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if (sip->i_size != fs_m_in.REQ_MEM_SIZE) {
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/* This can happen if the user provides a buffer
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* with a \0 in it. This can cause a lot of trouble
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* when the symlink is used later. We could just use
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* the strlen() value, but we want to let the user
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* know he did something wrong. ENAMETOOLONG doesn't
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* exactly describe the error, but there is no
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* ENAMETOOWRONG.
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*/
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r = ENAMETOOLONG;
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}
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}
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put_block(bp, DIRECTORY_BLOCK); /* put_block() accepts NULL. */
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if(r != OK) {
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sip->i_links_count = NO_LINK;
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if (search_dir(ldirp, string, NULL, DELETE, IGN_PERM, 0) != OK)
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panic("Symbolic link vanished");
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}
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}
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/* put_inode() accepts NULL as a noop, so the below are safe. */
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put_inode(sip);
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put_inode(ldirp);
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return(r);
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}
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/*===========================================================================*
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* new_node *
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*===========================================================================*/
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static struct inode *new_node(struct inode *ldirp,
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char *string, pmode_t bits, block_t b0)
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{
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/* New_node() is called by fs_open(), fs_mknod(), and fs_mkdir().
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* In all cases it allocates a new inode, makes a directory entry for it in
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* the ldirp directory with string name, and initializes it.
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* It returns a pointer to the inode if it can do this;
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* otherwise it returns NULL. It always sets 'err_code'
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* to an appropriate value (OK or an error code).
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*/
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register struct inode *rip;
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register int r;
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if (ldirp->i_links_count == NO_LINK) { /* Dir does not actually exist */
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err_code = ENOENT;
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return(NULL);
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}
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/* Get final component of the path. */
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rip = advance(ldirp, string, IGN_PERM);
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if (S_ISDIR(bits) && (ldirp->i_links_count >= USHRT_MAX ||
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ldirp->i_links_count >= LINK_MAX)) {
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/* New entry is a directory, alas we can't give it a ".." */
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put_inode(rip);
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err_code = EMLINK;
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return(NULL);
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}
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if ( rip == NULL && err_code == ENOENT) {
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/* Last path component does not exist. Make new directory entry. */
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if ( (rip = alloc_inode(ldirp, bits)) == NULL) {
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/* Can't creat new inode: out of inodes. */
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return(NULL);
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}
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/* Force inode to the disk before making directory entry to make
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* the system more robust in the face of a crash: an inode with
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* no directory entry is much better than the opposite.
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*/
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rip->i_links_count++;
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rip->i_block[0] = b0; /* major/minor device numbers */
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rw_inode(rip, WRITING); /* force inode to disk now */
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/* New inode acquired. Try to make directory entry. */
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if ((r=search_dir(ldirp, string, &rip->i_num, ENTER, IGN_PERM,
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rip->i_mode & I_TYPE)) != OK) {
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rip->i_links_count--; /* pity, have to free disk inode */
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rip->i_dirt = IN_DIRTY; /* dirty inodes are written out */
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put_inode(rip); /* this call frees the inode */
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err_code = r;
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return(NULL);
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}
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} else if (err_code == EENTERMOUNT || err_code == ELEAVEMOUNT) {
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r = EEXIST;
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} else {
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/* Either last component exists, or there is some problem. */
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if (rip != NULL)
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r = EEXIST;
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else
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r = err_code;
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}
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/* The caller has to return the directory inode (*ldirp). */
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err_code = r;
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return(rip);
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}
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/*===========================================================================*
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* fs_inhibread *
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*===========================================================================*/
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int fs_inhibread()
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{
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struct inode *rip;
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if((rip = find_inode(fs_dev, (pino_t) fs_m_in.REQ_INODE_NR)) == NULL)
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return(EINVAL);
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/* inhibit read ahead */
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rip->i_seek = ISEEK;
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return(OK);
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}
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