if (error)
                return(error);
        node = bp->data;
-       INT_SET(node->btree[0].hashval, ARCH_CONVERT, blk1->hashval);
-       INT_SET(node->btree[0].before, ARCH_CONVERT, blk1->blkno);
-       INT_SET(node->btree[1].hashval, ARCH_CONVERT, blk2->hashval);
-       INT_SET(node->btree[1].before, ARCH_CONVERT, blk2->blkno);
+       node->btree[0].hashval = cpu_to_be32(blk1->hashval);
+       node->btree[0].before = cpu_to_be32(blk1->blkno);
+       node->btree[1].hashval = cpu_to_be32(blk2->hashval);
+       node->btree[1].before = cpu_to_be32(blk2->blkno);
        INT_SET(node->hdr.count, ARCH_CONVERT, 2);
 
 #ifdef DEBUG
         * Swap the nodes around if that makes it simpler.
         */
        if ((INT_GET(node1->hdr.count, ARCH_CONVERT) > 0) && (INT_GET(node2->hdr.count, ARCH_CONVERT) > 0) &&
-           ((INT_GET(node2->btree[ 0 ].hashval, ARCH_CONVERT) < INT_GET(node1->btree[ 0 ].hashval, ARCH_CONVERT)) ||
-            (INT_GET(node2->btree[ INT_GET(node2->hdr.count, ARCH_CONVERT)-1 ].hashval, ARCH_CONVERT) <
-             INT_GET(node1->btree[ INT_GET(node1->hdr.count, ARCH_CONVERT)-1 ].hashval, ARCH_CONVERT)))) {
+           ((be32_to_cpu(node2->btree[0].hashval) < be32_to_cpu(node1->btree[0].hashval)) ||
+            (be32_to_cpu(node2->btree[INT_GET(node2->hdr.count, ARCH_CONVERT)-1].hashval) <
+             be32_to_cpu(node1->btree[INT_GET(node1->hdr.count, ARCH_CONVERT)-1].hashval)))) {
                tmpnode = node1;
                node1 = node2;
                node2 = tmpnode;
         */
        node1 = blk1->bp->data;
        node2 = blk2->bp->data;
-       blk1->hashval = INT_GET(node1->btree[ INT_GET(node1->hdr.count, ARCH_CONVERT)-1 ].hashval, ARCH_CONVERT);
-       blk2->hashval = INT_GET(node2->btree[ INT_GET(node2->hdr.count, ARCH_CONVERT)-1 ].hashval, ARCH_CONVERT);
+       blk1->hashval = be32_to_cpu(node1->btree[ INT_GET(node1->hdr.count, ARCH_CONVERT)-1 ].hashval);
+       blk2->hashval = be32_to_cpu(node2->btree[ INT_GET(node2->hdr.count, ARCH_CONVERT)-1 ].hashval);
 
        /*
         * Adjust the expected index for insertion.
                tmp = (INT_GET(node->hdr.count, ARCH_CONVERT) - oldblk->index) * (uint)sizeof(*btree);
                memmove(btree + 1, btree, tmp);
        }
-       INT_SET(btree->hashval, ARCH_CONVERT, newblk->hashval);
-       INT_SET(btree->before, ARCH_CONVERT, newblk->blkno);
+       btree->hashval = cpu_to_be32(newblk->hashval);
+       btree->before = cpu_to_be32(newblk->blkno);
        xfs_da_log_buf(state->args->trans, oldblk->bp,
                XFS_DA_LOGRANGE(node, btree, tmp + sizeof(*btree)));
        INT_MOD(node->hdr.count, ARCH_CONVERT, +1);
        /*
         * Copy the last hash value from the oldblk to propagate upwards.
         */
-       oldblk->hashval = INT_GET(node->btree[ INT_GET(node->hdr.count, ARCH_CONVERT)-1 ].hashval, ARCH_CONVERT);
+       oldblk->hashval = be32_to_cpu(node->btree[ INT_GET(node->hdr.count, ARCH_CONVERT)-1 ].hashval);
 }
 
 /*========================================================================
         * Read in the (only) child block, then copy those bytes into
         * the root block's buffer and free the original child block.
         */
-       child = INT_GET(oldroot->btree[ 0 ].before, ARCH_CONVERT);
+       child = be32_to_cpu(oldroot->btree[0].before);
        ASSERT(child != 0);
        error = xfs_da_read_buf(args->trans, args->dp, child, -1, &bp,
                                             args->whichfork);
                node = blk->bp->data;
                ASSERT(be16_to_cpu(node->hdr.info.magic) == XFS_DA_NODE_MAGIC);
                btree = &node->btree[ blk->index ];
-               if (INT_GET(btree->hashval, ARCH_CONVERT) == lasthash)
+               if (be32_to_cpu(btree->hashval) == lasthash)
                        break;
                blk->hashval = lasthash;
-               INT_SET(btree->hashval, ARCH_CONVERT, lasthash);
+               btree->hashval = cpu_to_be32(lasthash);
                xfs_da_log_buf(state->args->trans, blk->bp,
                                  XFS_DA_LOGRANGE(node, btree, sizeof(*btree)));
 
-               lasthash = INT_GET(node->btree[ INT_GET(node->hdr.count, ARCH_CONVERT)-1 ].hashval, ARCH_CONVERT);
+               lasthash = be32_to_cpu(node->btree[ INT_GET(node->hdr.count, ARCH_CONVERT)-1 ].hashval);
        }
 }
 
         * Copy the last hash value from the block to propagate upwards.
         */
        btree--;
-       drop_blk->hashval = INT_GET(btree->hashval, ARCH_CONVERT);
+       drop_blk->hashval = be32_to_cpu(btree->hashval);
 }
 
 /*
         * If the dying block has lower hashvals, then move all the
         * elements in the remaining block up to make a hole.
         */
-       if ((INT_GET(drop_node->btree[ 0 ].hashval, ARCH_CONVERT) < INT_GET(save_node->btree[ 0 ].hashval, ARCH_CONVERT)) ||
-           (INT_GET(drop_node->btree[ INT_GET(drop_node->hdr.count, ARCH_CONVERT)-1 ].hashval, ARCH_CONVERT) <
-            INT_GET(save_node->btree[ INT_GET(save_node->hdr.count, ARCH_CONVERT)-1 ].hashval, ARCH_CONVERT)))
+       if ((be32_to_cpu(drop_node->btree[0].hashval) < be32_to_cpu(save_node->btree[ 0 ].hashval)) ||
+           (be32_to_cpu(drop_node->btree[INT_GET(drop_node->hdr.count, ARCH_CONVERT)-1].hashval) <
+            be32_to_cpu(save_node->btree[INT_GET(save_node->hdr.count, ARCH_CONVERT)-1 ].hashval)))
        {
                btree = &save_node->btree[ INT_GET(drop_node->hdr.count, ARCH_CONVERT) ];
                tmp = INT_GET(save_node->hdr.count, ARCH_CONVERT) * (uint)sizeof(xfs_da_node_entry_t);
        /*
         * Save the last hashval in the remaining block for upward propagation.
         */
-       save_blk->hashval = INT_GET(save_node->btree[ INT_GET(save_node->hdr.count, ARCH_CONVERT)-1 ].hashval, ARCH_CONVERT);
+       save_blk->hashval = be32_to_cpu(save_node->btree[ INT_GET(save_node->hdr.count, ARCH_CONVERT)-1 ].hashval);
 }
 
 /*========================================================================
                blk->magic = be16_to_cpu(curr->magic);
                if (blk->magic == XFS_DA_NODE_MAGIC) {
                        node = blk->bp->data;
-                       blk->hashval = INT_GET(node->btree[ INT_GET(node->hdr.count, ARCH_CONVERT)-1 ].hashval, ARCH_CONVERT);
+                       blk->hashval = be32_to_cpu(node->btree[INT_GET(node->hdr.count, ARCH_CONVERT)-1].hashval);
 
                        /*
                         * Binary search.  (note: small blocks will skip loop)
                        for (btree = &node->btree[probe]; span > 4;
                                   btree = &node->btree[probe]) {
                                span /= 2;
-                               if (INT_GET(btree->hashval, ARCH_CONVERT) < hashval)
+                               if (be32_to_cpu(btree->hashval) < hashval)
                                        probe += span;
-                               else if (INT_GET(btree->hashval, ARCH_CONVERT) > hashval)
+                               else if (be32_to_cpu(btree->hashval) > hashval)
                                        probe -= span;
                                else
                                        break;
                        }
                        ASSERT((probe >= 0) && (probe < max));
-                       ASSERT((span <= 4) || (INT_GET(btree->hashval, ARCH_CONVERT) == hashval));
+                       ASSERT((span <= 4) || (be32_to_cpu(btree->hashval) == hashval));
 
                        /*
                         * Since we may have duplicate hashval's, find the first
                         * matching hashval in the node.
                         */
-                       while ((probe > 0) && (INT_GET(btree->hashval, ARCH_CONVERT) >= hashval)) {
+                       while ((probe > 0) && (be32_to_cpu(btree->hashval) >= hashval)) {
                                btree--;
                                probe--;
                        }
-                       while ((probe < max) && (INT_GET(btree->hashval, ARCH_CONVERT) < hashval)) {
+                       while ((probe < max) && (be32_to_cpu(btree->hashval) < hashval)) {
                                btree++;
                                probe++;
                        }
                         */
                        if (probe == max) {
                                blk->index = max-1;
-                               blkno = INT_GET(node->btree[ max-1 ].before, ARCH_CONVERT);
+                               blkno = be32_to_cpu(node->btree[max-1].before);
                        } else {
                                blk->index = probe;
-                               blkno = INT_GET(btree->before, ARCH_CONVERT);
+                               blkno = be32_to_cpu(btree->before);
                        }
                }
                else if (be16_to_cpu(curr->magic) == XFS_ATTR_LEAF_MAGIC) {
        ASSERT((be16_to_cpu(node1->hdr.info.magic) == XFS_DA_NODE_MAGIC) &&
               (be16_to_cpu(node2->hdr.info.magic) == XFS_DA_NODE_MAGIC));
        if ((INT_GET(node1->hdr.count, ARCH_CONVERT) > 0) && (INT_GET(node2->hdr.count, ARCH_CONVERT) > 0) &&
-           ((INT_GET(node2->btree[ 0 ].hashval, ARCH_CONVERT) <
-             INT_GET(node1->btree[ 0 ].hashval, ARCH_CONVERT)) ||
-            (INT_GET(node2->btree[ INT_GET(node2->hdr.count, ARCH_CONVERT)-1 ].hashval, ARCH_CONVERT) <
-             INT_GET(node1->btree[ INT_GET(node1->hdr.count, ARCH_CONVERT)-1 ].hashval, ARCH_CONVERT)))) {
+           ((be32_to_cpu(node2->btree[0].hashval) <
+             be32_to_cpu(node1->btree[0].hashval)) ||
+            (be32_to_cpu(node2->btree[INT_GET(node2->hdr.count, ARCH_CONVERT)-1].hashval) <
+             be32_to_cpu(node1->btree[INT_GET(node1->hdr.count, ARCH_CONVERT)-1].hashval)))) {
                return(1);
        }
        return(0);
                *count = INT_GET(node->hdr.count, ARCH_CONVERT);
        if (!node->hdr.count)
                return(0);
-       return(INT_GET(node->btree[ INT_GET(node->hdr.count, ARCH_CONVERT)-1 ].hashval, ARCH_CONVERT));
+       return be32_to_cpu(node->btree[INT_GET(node->hdr.count, ARCH_CONVERT)-1].hashval);
 }
 
 /*
                ASSERT(be16_to_cpu(node->hdr.info.magic) == XFS_DA_NODE_MAGIC);
                if (forward && (blk->index < INT_GET(node->hdr.count, ARCH_CONVERT)-1)) {
                        blk->index++;
-                       blkno = INT_GET(node->btree[ blk->index ].before, ARCH_CONVERT);
+                       blkno = be32_to_cpu(node->btree[blk->index].before);
                        break;
                } else if (!forward && (blk->index > 0)) {
                        blk->index--;
-                       blkno = INT_GET(node->btree[ blk->index ].before, ARCH_CONVERT);
+                       blkno = be32_to_cpu(node->btree[blk->index].before);
                        break;
                }
        }
                blk->magic = be16_to_cpu(info->magic);
                if (blk->magic == XFS_DA_NODE_MAGIC) {
                        node = (xfs_da_intnode_t *)info;
-                       blk->hashval = INT_GET(node->btree[ INT_GET(node->hdr.count, ARCH_CONVERT)-1 ].hashval, ARCH_CONVERT);
+                       blk->hashval = be32_to_cpu(node->btree[INT_GET(node->hdr.count, ARCH_CONVERT)-1].hashval);
                        if (forward)
                                blk->index = 0;
                        else
                                blk->index = INT_GET(node->hdr.count, ARCH_CONVERT)-1;
-                       blkno = INT_GET(node->btree[ blk->index ].before, ARCH_CONVERT);
+                       blkno = be32_to_cpu(node->btree[blk->index].before);
                } else {
                        ASSERT(level == path->active-1);
                        blk->index = 0;
                ASSERT(be16_to_cpu(dead_info->magic) == XFS_DA_NODE_MAGIC);
                dead_node = (xfs_da_intnode_t *)dead_info;
                dead_level = INT_GET(dead_node->hdr.level, ARCH_CONVERT);
-               dead_hash = INT_GET(dead_node->btree[INT_GET(dead_node->hdr.count, ARCH_CONVERT) - 1].hashval, ARCH_CONVERT);
+               dead_hash = be32_to_cpu(dead_node->btree[INT_GET(dead_node->hdr.count, ARCH_CONVERT) - 1].hashval);
        }
        sib_buf = par_buf = NULL;
        /*
                level = INT_GET(par_node->hdr.level, ARCH_CONVERT);
                for (entno = 0;
                     entno < INT_GET(par_node->hdr.count, ARCH_CONVERT) &&
-                    INT_GET(par_node->btree[entno].hashval, ARCH_CONVERT) < dead_hash;
+                    be32_to_cpu(par_node->btree[entno].hashval) < dead_hash;
                     entno++)
                        continue;
                if (unlikely(entno == INT_GET(par_node->hdr.count, ARCH_CONVERT))) {
                        error = XFS_ERROR(EFSCORRUPTED);
                        goto done;
                }
-               par_blkno = INT_GET(par_node->btree[entno].before, ARCH_CONVERT);
+               par_blkno = be32_to_cpu(par_node->btree[entno].before);
                if (level == dead_level + 1)
                        break;
                xfs_da_brelse(tp, par_buf);
        for (;;) {
                for (;
                     entno < INT_GET(par_node->hdr.count, ARCH_CONVERT) &&
-                    INT_GET(par_node->btree[entno].before, ARCH_CONVERT) != last_blkno;
+                    be32_to_cpu(par_node->btree[entno].before) != last_blkno;
                     entno++)
                        continue;
                if (entno < INT_GET(par_node->hdr.count, ARCH_CONVERT))
        /*
         * Update the parent entry pointing to the moved block.
         */
-       INT_SET(par_node->btree[entno].before, ARCH_CONVERT, dead_blkno);
+       par_node->btree[entno].before = cpu_to_be32(dead_blkno);
        xfs_da_log_buf(tp, par_buf,
                XFS_DA_LOGRANGE(par_node, &par_node->btree[entno].before,
                                sizeof(par_node->btree[entno].before)));