On 26/08/05 10:28PM, Darrick J. Wong wrote:
> On Mon, Aug 03, 2026 at 02:29:37AM +0000, John Groves wrote:
> > From: John Groves <[email protected]>
> > 
> > Add the iomap resolver that maps a file offset to a (daxdev, offset) pair:
> > famfs_meta_to_dax_offset() for simple extent lists and
> > famfs_meta_to_dax_offset_interleaved() for striped files, backed by the
> > per-daxdev health check (famfs_dax_err) and table lookup
> > (famfs_daxdev_for_index), plus famfs_iomap_begin() and famfs_iomap_ops.
> > 
> > Wire it into the read, write and fault paths by replacing their
> > NULL /*&famfs_iomap_ops*/ stub with &famfs_iomap_ops, so dax_iomap_rw() and
> > dax_iomap_fault() now resolve through famfs.
> > 
> > Signed-off-by: John Groves <[email protected]>
> > ---
> >  fs/famfs/famfs_file.c | 298 +++++++++++++++++++++++++++++++++++++++++-
> >  1 file changed, 295 insertions(+), 3 deletions(-)
> > 
> > diff --git a/fs/famfs/famfs_file.c b/fs/famfs/famfs_file.c
> > index d710c8a0c923..e7f271ce6d03 100644
> > --- a/fs/famfs/famfs_file.c
> > +++ b/fs/famfs/famfs_file.c
> > @@ -320,6 +320,298 @@ famfs_file_ioctl(struct file *file, unsigned int cmd, 
> > unsigned long arg)
> >     return rc;
> >  }
> >  
> > +/*********************************************************************
> > + * iomap_operations
> > + *
> > + * This stuff uses the iomap (dax-related) helpers to resolve file offsets 
> > to
> > + * offsets within a dax device.
> > + */
> > +
> > +static ssize_t famfs_file_invalid(struct inode *inode);
> > +
> > +/* Check the health of a daxdev table slot */
> > +static int famfs_dax_err(struct famfs_daxdev *dd)
> > +{
> > +   if (!dd->valid) {
> > +           pr_debug("%s: daxdev=%s invalid\n", __func__, dd->name);
> > +           return -EIO;
> > +   }
> > +   if (dd->dax_err) {
> > +           pr_debug("%s: daxdev=%s dax_err\n", __func__, dd->name);
> > +           return -EIO;
> > +   }
> > +   if (dd->error) {
> > +           pr_debug("%s: daxdev=%s memory error\n", __func__, dd->name);
> > +           return -EHWPOISON;
> > +   }
> > +   return 0;
> > +}
> > +
> > +/*
> > + * famfs_daxdev_from_index() - resolve an extent's dev_index to a 
> > health-checked
> > + * dax_device from the table. On success returns the dax_device and sets
> > + * *errp = 0; on failure returns NULL and sets *errp (< 0).
> > + */
> > +static struct dax_device *
> > +famfs_daxdev_from_index(struct famfs_fs_info *fsi, u64 dev_index, int 
> > *errp)
> > +{
> > +   struct famfs_dax_devlist *devlist = fsi->dax_devlist;
> > +   struct famfs_daxdev *dd;
> > +   int rc;
> > +
> > +   if (!devlist || dev_index >= devlist->nslots) {
> > +           pr_debug("%s: dev_index %llu out of range\n",
> > +                   __func__, dev_index);
> > +           *errp = -EIO;
> > +           return NULL;
> > +   }
> > +   dd = &devlist->devlist[dev_index];
> > +   rc = famfs_dax_err(dd);
> > +   if (rc) {
> > +           *errp = rc;
> > +           return NULL;
> > +   }
> > +   *errp = 0;
> > +   return dd->devp;
> > +}
> > +
> > +static int
> > +famfs_meta_to_dax_offset_interleaved(struct inode *inode, struct iomap 
> > *iomap,
> > +                    loff_t file_offset, off_t len, unsigned int flags)
> > +{
> > +   struct famfs_fs_info  *fsi = inode->i_sb->s_fs_info;
> > +   struct famfs_file_meta *meta = inode->i_private;
> > +   loff_t local_offset = file_offset;
> > +   int rc;
> > +   int i;
> > +
> > +   /* This function is only for extent_type FAMFS_IOC_EXT_INTERLEAVE */
> > +   if (meta->fm_extent_type != FAMFS_IOC_EXT_INTERLEAVE) {
> > +           pr_debug("%s: bad extent type\n", __func__);
> > +           goto err_out;
> > +   }
> > +
> > +   if (fsi->deverror || famfs_file_invalid(inode))
> > +           goto err_out;
> > +
> > +   iomap->offset = file_offset;
> > +
> > +   for (i = 0; i < meta->fm_niext; i++) {
> > +           struct famfs_meta_interleaved_ext *fei = &meta->ie[i];
> > +           u64 chunk_size = fei->fie_chunk_size;
> > +           u64 nstrips = fei->fie_nstrips;
> > +           u64 ext_size = fei->fie_nbytes;
> > +
> > +           ext_size = min_t(u64, ext_size, meta->file_size);
> > +
> > +           if (ext_size == 0)
> > +                   goto err_out;
> > +
> > +           /* Is the data is in this striped extent? */
> > +           if (local_offset < ext_size) {
> > +                   u64 chunk_num       = local_offset / chunk_size;
> > +                   u64 chunk_offset    = local_offset % chunk_size;
> > +                   u64 stripe_num      = chunk_num / nstrips;
> > +                   u64 strip_num       = chunk_num % nstrips;
> > +                   u64 chunk_remainder = chunk_size - chunk_offset;
> > +                   u64 strip_offset    = chunk_offset + (stripe_num * 
> > chunk_size);
> > +                   struct famfs_meta_simple_ext *strip = 
> > &fei->ie_strips[strip_num];
> > +                   struct dax_device *daxdev;
> > +
> > +                   /*
> > +                    * MAP_CREATE only checks that the strips' combined
> > +                    * length covers the file, not that each strip is large
> > +                    * enough for the chunks striped onto it. Guard against 
> > a
> > +                    * malformed fmap with an undersized strip so we never
> > +                    * resolve to a dax offset past the strip's extent.
> > +                    */
> > +                   if (strip_offset >= strip->ext_len)
> > +                           goto err_out;
> > +
> > +                   daxdev = famfs_daxdev_from_index(fsi, strip->dev_index, 
> > &rc);
> 
> Ok so here you check the dax dev index is valid.

Right-o

> 
> > +                   if (!daxdev) {
> > +                           meta->error = true;
> > +                           return rc;
> 
> What is rc at this point?

Passed by reference to famfs_daxdev_from_index(), just above, and always stored
by that function.

> 
> > +                   }
> > +
> > +                   iomap->addr    = strip->ext_offset + strip_offset;
> > +                   iomap->offset  = file_offset;
> > +                   iomap->length  = min_t(loff_t, len, chunk_remainder);
> > +                   iomap->length  = min_t(loff_t, iomap->length,
> > +                                          strip->ext_len - strip_offset);
> > +                   iomap->dax_dev = daxdev;
> > +                   iomap->type    = IOMAP_MAPPED;
> > +                   iomap->flags   = flags;
> > +
> > +                   return 0;
> > +           }
> > +           local_offset -= ext_size; /* offset is beyond this striped 
> > extent */
> > +   }
> > +
> > + err_out:
> > +   /*
> > +    * We fell out the end of the extent list (access past EOF) or the file
> > +    * is invalid. Return -EIO: iomap requires a non-zero-length mapping on
> > +    * success (iomap_iter_done() warns on length == 0), so signal the error
> > +    * rather than returning a zero-length IOMAP_MAPPED.
> > +    */
> > +   pr_debug("%s: could not resolve file_offset %lld (past EOF?)\n",
> > +            __func__, (long long)file_offset);
> > +
> > +   iomap->addr    = 0; /* there is no valid dax device offset */
> > +   iomap->offset  = file_offset; /* file offset */
> > +   iomap->length  = 0;
> > +   iomap->dax_dev = famfs_daxdev_from_index(fsi, 0, &rc);
> > +   iomap->type    = IOMAP_MAPPED;
> > +   iomap->flags   = flags;
> > +
> > +   return -EIO;
> 
> Ah ok this answers my question about what happens if there are sparse
> holes at the end.

Famfs files are never sparse, so the fmap size is always >= i_size unless
there's a bug. So this "doesn't happen", but if somebody got away with 
truncating longer or overwriting i_size, you could land here with EIO. 

> 
> > +}
> > +
> > +/**
> > + * famfs_meta_to_dax_offset() - Resolve (file, offset, len) to (daxdev, 
> > offset, len)
> > + *
> > + * This function is called by famfs_iomap_begin() to resolve an offset in a
> > + * file to an offset in a dax device. This is upcalled from dax from calls 
> > to
> > + * both  * dax_iomap_fault() and dax_iomap_rw(). Dax finishes the job 
> > resolving
> > + * a fault to a specific physical page (the fault case) or doing a memcpy
> > + * variant (the rw case)
> > + *
> > + * Pages can be PTE (4k), PMD (2MiB) or (theoretically) PuD (1GiB)
> > + * (these sizes are for X86; may vary on other cpu architectures
> > + *
> > + * @inode:  The file where the fault occurred
> > + * @iomap:       To be filled in to indicate where to find the right 
> > memory,
> > + *               relative  to a dax device.
> > + * @file_offset: Within the file where the fault occurred (will be page 
> > boundary)
> > + * @len:         The length of the faulted mapping (will be a page 
> > multiple)
> > + *               (will be trimmed in *iomap if it's disjoint in the extent 
> > list)
> > + * @flags:
> > + *
> > + * Return values: 0. (info is returned in a modified @iomap struct)
> > + */
> > +static int
> > +famfs_meta_to_dax_offset(struct inode *inode, struct iomap *iomap,
> > +                    loff_t file_offset, off_t len, unsigned int flags)
> > +{
> > +   struct famfs_fs_info  *fsi = inode->i_sb->s_fs_info;
> > +   struct famfs_file_meta *meta = inode->i_private;
> > +   loff_t local_offset = file_offset;
> > +   int rc;
> > +   int i;
> > +
> > +   if (fsi->deverror || famfs_file_invalid(inode))
> > +           goto err_out;
> > +
> > +   if (meta->fm_extent_type == FAMFS_IOC_EXT_INTERLEAVE)
> > +           return famfs_meta_to_dax_offset_interleaved(inode,
> > +                                   iomap, file_offset, len, flags);
> > +
> > +   if (meta->fm_extent_type != FAMFS_IOC_EXT_SIMPLE)
> > +           goto err_out;
> > +
> > +   iomap->offset = file_offset;
> > +
> > +   for (i = 0; i < meta->fm_nextents; i++) {
> > +           loff_t dax_ext_offset = meta->se[i].ext_offset;
> > +           loff_t dax_ext_len    = meta->se[i].ext_len;
> > +
> > +           if ((dax_ext_offset == 0) &&
> > +               (meta->file_type != FAMFS_SUPERBLOCK))
> > +                   pr_warn("%s: zero offset on non-superblock file!!\n",
> > +                           __func__);
> > +
> > +           /* local_offset is the offset minus the size of extents skipped
> > +            * so far; If local_offset < dax_ext_len, the data of interest
> > +            * starts in this extent
> > +            */
> > +           if (local_offset < dax_ext_len) {
> > +                   loff_t ext_len_remainder = dax_ext_len - local_offset;
> > +                   struct dax_device *daxdev;
> > +
> > +                   daxdev = famfs_daxdev_from_index(fsi,
> > +                                           meta->se[i].dev_index, &rc);
> > +                   if (!daxdev) {
> > +                           meta->error = true;
> > +                           return rc;
> > +                   }
> > +
> > +                   /*
> > +                    * OK, we found the file metadata extent where this
> > +                    * data begins
> > +                    * @local_offset      - The offset within the current
> > +                    *                      extent
> > +                    * @ext_len_remainder - Remaining length of ext after
> > +                    *                      skipping local_offset
> > +                    * Outputs:
> > +                    * iomap->addr:   the offset within the dax device where
> > +                    *                the  data starts
> > +                    * iomap->offset: the file offset
> > +                    * iomap->length: the valid length resolved here
> > +                    */
> > +                   iomap->addr    = dax_ext_offset + local_offset;
> > +                   iomap->offset  = file_offset;
> > +                   iomap->length  = min_t(loff_t, len, ext_len_remainder);
> > +                   iomap->dax_dev = daxdev;
> > +                   iomap->type    = IOMAP_MAPPED;
> > +                   iomap->flags   = flags;
> > +
> > +                   return 0;
> > +           }
> > +           local_offset -= dax_ext_len; /* Get ready for the next extent */
> > +   }
> > +
> > + err_out:
> > +   /*
> > +    * We fell out the end of the extent list (access past EOF) or the file
> > +    * is in an invalid state. Return -EIO: iomap requires a non-zero-length
> > +    * mapping on success (iomap_iter_done() warns on length == 0), so 
> > signal
> > +    * the error rather than returning a zero-length IOMAP_MAPPED. dax turns
> > +    * this into a short read/write or a SIGBUS.
> > +    */
> > +   pr_debug("%s: could not resolve file_offset %lld (past EOF?)\n",
> > +            __func__, (long long)file_offset);
> > +
> > +   iomap->addr    = 0; /* there is no valid dax device offset */
> > +   iomap->offset  = file_offset; /* file offset */
> > +   iomap->length  = 0;
> > +   iomap->dax_dev = famfs_daxdev_from_index(fsi, 0, &rc);
> > +   iomap->type    = IOMAP_MAPPED;
> > +   iomap->flags   = flags;
> 
> Er... iomap->flags is supposed to get IOMAP_F_ extent state flags, but
> are you passing the IOMAP_ operation flags into this function?
> 
> --D

Thank you! That's an actual bug which dates back years. The correct value 
here is 0, as none of the IOMAP_F flags apply to famfs. Guessing maybe 
flags was already, or didn't contain anything matching IOMAP_F bits that 
dax_iomap used...

Gonna delete the lines that set iomap->flags, since the struct has been 
zeroed in each case.

Apparently (Darrick > AI), because AI saw this a bunch of times and never
caught it!

Thanks!

John

<snip>


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