if (bh != NULL)
return bh->b_data;
else {
- pr_warn("hpfs_map_sector: read error\n");
+ pr_warn("%s(): read error\n", __func__);
return NULL;
}
}
set_buffer_uptodate(bh);
return bh->b_data;
} else {
- pr_warn("hpfs_get_sector: getblk failed\n");
+ pr_warn("%s(): getblk failed\n", __func__);
return NULL;
}
}
cond_resched();
if (secno & 3) {
- pr_warn("hpfs_map_4sectors: unaligned read\n");
+ pr_warn("%s(): unaligned read\n", __func__);
return NULL;
}
qbh->data = data = kmalloc(2048, GFP_NOFS);
if (!data) {
- pr_warn("hpfs_map_4sectors: out of memory\n");
+ pr_warn("%s(): out of memory\n", __func__);
goto bail4;
}
hpfs_lock_assert(s);
if (secno & 3) {
- pr_warn("hpfs_get_4sectors: unaligned read\n");
+ pr_warn("%s(): unaligned read\n", __func__);
return NULL;
}
}
if (!(qbh->data = kmalloc(2048, GFP_NOFS))) {
- pr_warn("hpfs_get_4sectors: out of memory\n");
+ pr_warn("%s(): out of memory\n", __func__);
goto bail4;
}
return qbh->data;
if (de == fde) return ((loff_t) le32_to_cpu(d->self) << 4) | (loff_t)i;
i++;
}
- pr_info("get_pos: not_found\n");
+ pr_info("%s(): not_found\n", __func__);
return ((loff_t)le32_to_cpu(d->self) << 4) | (loff_t)1;
}
if ((*p & ~0x3f) == (d & ~0x3f) && (*p & 0x3f) >= (d & 0x3f)) {
int n = (*p & 0x3f) + c;
if (n > 0x3f)
- pr_warn("hpfs_pos_ins: %08x + %d\n",
- (int)*p, (int)c >> 8);
+ pr_warn("%s(): %08x + %d\n",
+ __func__, (int)*p, (int)c >> 8);
else
*p = (*p & ~0x3f) | n;
}
if ((*p & ~0x3f) == (d & ~0x3f) && (*p & 0x3f) >= (d & 0x3f)) {
int n = (*p & 0x3f) - c;
if (n < 1)
- pr_warn("hpfs_pos_ins: %08x - %d\n",
- (int)*p, (int)c >> 8);
+ pr_warn("%s(): %08x - %d\n",
+ __func__, (int)*p, (int)c >> 8);
else
*p = (*p & ~0x3f) | n;
}
}
go_up:
if (namelen >= 256) {
- hpfs_error(i->i_sb, "hpfs_add_to_dnode: namelen == %d", namelen);
+ hpfs_error(i->i_sb, "%s(): namelen == %d", __func__, namelen);
kfree(nd);
kfree(nname);
return 1;