/*
* Updated: Hewlett-Packard <paul.moore@hp.com>
*
- * Added ebitmap_export() and ebitmap_import()
+ * Added support to import/export the NetLabel category bitmap
*
* (c) Copyright Hewlett-Packard Development Company, L.P., 2006
*/
+/*
+ * Updated: KaiGai Kohei <kaigai@ak.jp.nec.com>
+ * Applied standard bit operations to improve bitmap scanning.
+ */
#include <linux/kernel.h>
#include <linux/slab.h>
#include <linux/errno.h>
+#include <net/netlabel.h>
#include "ebitmap.h"
#include "policydb.h"
n2 = e2->node;
while (n1 && n2 &&
(n1->startbit == n2->startbit) &&
- (n1->map == n2->map)) {
+ !memcmp(n1->maps, n2->maps, EBITMAP_SIZE / 8)) {
n1 = n1->next;
n2 = n2->next;
}
return -ENOMEM;
}
new->startbit = n->startbit;
- new->map = n->map;
+ memcpy(new->maps, n->maps, EBITMAP_SIZE / 8);
new->next = NULL;
if (prev)
prev->next = new;
return 0;
}
+#ifdef CONFIG_NETLABEL
/**
- * ebitmap_export - Export an ebitmap to a unsigned char bitmap string
- * @src: the ebitmap to export
- * @dst: the resulting bitmap string
- * @dst_len: length of dst in bytes
+ * ebitmap_netlbl_export - Export an ebitmap into a NetLabel category bitmap
+ * @ebmap: the ebitmap to export
+ * @catmap: the NetLabel category bitmap
*
* Description:
- * Allocate a buffer at least src->highbit bits long and export the extensible
- * bitmap into the buffer. The bitmap string will be in little endian format,
- * i.e. LSB first. The value returned in dst_len may not the true size of the
- * buffer as the length of the buffer is rounded up to a multiple of MAPTYPE.
- * The caller must free the buffer when finished. Returns zero on success,
- * negative values on failure.
+ * Export a SELinux extensibile bitmap into a NetLabel category bitmap.
+ * Returns zero on success, negative values on error.
*
*/
-int ebitmap_export(const struct ebitmap *src,
- unsigned char **dst,
- size_t *dst_len)
+int ebitmap_netlbl_export(struct ebitmap *ebmap,
+ struct netlbl_lsm_secattr_catmap **catmap)
{
- size_t bitmap_len;
- unsigned char *bitmap;
- struct ebitmap_node *iter_node;
- MAPTYPE node_val;
- size_t bitmap_byte;
- unsigned char bitmask;
-
- bitmap_len = src->highbit / 8;
- if (src->highbit % 7)
- bitmap_len += 1;
- if (bitmap_len == 0)
- return -EINVAL;
-
- bitmap = kzalloc((bitmap_len & ~(sizeof(MAPTYPE) - 1)) +
- sizeof(MAPTYPE),
- GFP_ATOMIC);
- if (bitmap == NULL)
- return -ENOMEM;
+ struct ebitmap_node *e_iter = ebmap->node;
+ struct netlbl_lsm_secattr_catmap *c_iter;
+ u32 cmap_idx, cmap_sft;
+ int i;
+
+ /* NetLabel's NETLBL_CATMAP_MAPTYPE is defined as an array of u64,
+ * however, it is not always compatible with an array of unsigned long
+ * in ebitmap_node.
+ * In addition, you should pay attention the following implementation
+ * assumes unsigned long has a width equal with or less than 64-bit.
+ */
+
+ if (e_iter == NULL) {
+ *catmap = NULL;
+ return 0;
+ }
- iter_node = src->node;
- do {
- bitmap_byte = iter_node->startbit / 8;
- bitmask = 0x80;
- node_val = iter_node->map;
- do {
- if (bitmask == 0) {
- bitmap_byte++;
- bitmask = 0x80;
+ c_iter = netlbl_secattr_catmap_alloc(GFP_ATOMIC);
+ if (c_iter == NULL)
+ return -ENOMEM;
+ *catmap = c_iter;
+ c_iter->startbit = e_iter->startbit & ~(NETLBL_CATMAP_SIZE - 1);
+
+ while (e_iter != NULL) {
+ for (i = 0; i < EBITMAP_UNIT_NUMS; i++) {
+ unsigned int delta, e_startbit, c_endbit;
+
+ e_startbit = e_iter->startbit + i * EBITMAP_UNIT_SIZE;
+ c_endbit = c_iter->startbit + NETLBL_CATMAP_SIZE;
+ if (e_startbit >= c_endbit) {
+ c_iter->next
+ = netlbl_secattr_catmap_alloc(GFP_ATOMIC);
+ if (c_iter->next == NULL)
+ goto netlbl_export_failure;
+ c_iter = c_iter->next;
+ c_iter->startbit
+ = e_startbit & ~(NETLBL_CATMAP_SIZE - 1);
}
- if (node_val & (MAPTYPE)0x01)
- bitmap[bitmap_byte] |= bitmask;
- node_val >>= 1;
- bitmask >>= 1;
- } while (node_val > 0);
- iter_node = iter_node->next;
- } while (iter_node);
-
- *dst = bitmap;
- *dst_len = bitmap_len;
+ delta = e_startbit - c_iter->startbit;
+ cmap_idx = delta / NETLBL_CATMAP_MAPSIZE;
+ cmap_sft = delta % NETLBL_CATMAP_MAPSIZE;
+ c_iter->bitmap[cmap_idx]
+ |= e_iter->maps[cmap_idx] << cmap_sft;
+ }
+ e_iter = e_iter->next;
+ }
+
return 0;
+
+netlbl_export_failure:
+ netlbl_secattr_catmap_free(*catmap);
+ return -ENOMEM;
}
/**
- * ebitmap_import - Import an unsigned char bitmap string into an ebitmap
- * @src: the bitmap string
- * @src_len: the bitmap length in bytes
- * @dst: the empty ebitmap
+ * ebitmap_netlbl_import - Import a NetLabel category bitmap into an ebitmap
+ * @ebmap: the ebitmap to import
+ * @catmap: the NetLabel category bitmap
*
* Description:
- * This function takes a little endian bitmap string in src and imports it into
- * the ebitmap pointed to by dst. Returns zero on success, negative values on
- * failure.
+ * Import a NetLabel category bitmap into a SELinux extensibile bitmap.
+ * Returns zero on success, negative values on error.
*
*/
-int ebitmap_import(const unsigned char *src,
- size_t src_len,
- struct ebitmap *dst)
+int ebitmap_netlbl_import(struct ebitmap *ebmap,
+ struct netlbl_lsm_secattr_catmap *catmap)
{
- size_t src_off = 0;
- size_t node_limit;
- struct ebitmap_node *node_new;
- struct ebitmap_node *node_last = NULL;
- u32 i_byte;
- u32 i_bit;
- unsigned char src_byte;
-
- while (src_off < src_len) {
- if (src_len - src_off >= sizeof(MAPTYPE)) {
- if (*(MAPTYPE *)&src[src_off] == 0) {
- src_off += sizeof(MAPTYPE);
+ struct ebitmap_node *e_iter = NULL;
+ struct ebitmap_node *emap_prev = NULL;
+ struct netlbl_lsm_secattr_catmap *c_iter = catmap;
+ u32 c_idx, c_pos, e_idx, e_sft;
+
+ /* NetLabel's NETLBL_CATMAP_MAPTYPE is defined as an array of u64,
+ * however, it is not always compatible with an array of unsigned long
+ * in ebitmap_node.
+ * In addition, you should pay attention the following implementation
+ * assumes unsigned long has a width equal with or less than 64-bit.
+ */
+
+ do {
+ for (c_idx = 0; c_idx < NETLBL_CATMAP_MAPCNT; c_idx++) {
+ unsigned int delta;
+ u64 map = c_iter->bitmap[c_idx];
+
+ if (!map)
continue;
- }
- node_limit = sizeof(MAPTYPE);
- } else {
- for (src_byte = 0, i_byte = src_off;
- i_byte < src_len && src_byte == 0;
- i_byte++)
- src_byte |= src[i_byte];
- if (src_byte == 0)
- break;
- node_limit = src_len - src_off;
- }
- node_new = kzalloc(sizeof(*node_new), GFP_ATOMIC);
- if (unlikely(node_new == NULL)) {
- ebitmap_destroy(dst);
- return -ENOMEM;
- }
- node_new->startbit = src_off * 8;
- for (i_byte = 0; i_byte < node_limit; i_byte++) {
- src_byte = src[src_off++];
- for (i_bit = i_byte * 8; src_byte != 0; i_bit++) {
- if (src_byte & 0x80)
- node_new->map |= MAPBIT << i_bit;
- src_byte <<= 1;
+ c_pos = c_iter->startbit
+ + c_idx * NETLBL_CATMAP_MAPSIZE;
+ if (!e_iter
+ || c_pos >= e_iter->startbit + EBITMAP_SIZE) {
+ e_iter = kzalloc(sizeof(*e_iter), GFP_ATOMIC);
+ if (!e_iter)
+ goto netlbl_import_failure;
+ e_iter->startbit
+ = c_pos - (c_pos % EBITMAP_SIZE);
+ if (emap_prev == NULL)
+ ebmap->node = e_iter;
+ else
+ emap_prev->next = e_iter;
+ emap_prev = e_iter;
+ }
+ delta = c_pos - e_iter->startbit;
+ e_idx = delta / EBITMAP_UNIT_SIZE;
+ e_sft = delta % EBITMAP_UNIT_SIZE;
+ while (map) {
+ e_iter->maps[e_idx++] |= map & (-1UL);
+ map = EBITMAP_SHIFT_UNIT_SIZE(map);
}
}
-
- if (node_last != NULL)
- node_last->next = node_new;
- else
- dst->node = node_new;
- node_last = node_new;
- }
-
- if (likely(node_last != NULL))
- dst->highbit = node_last->startbit + MAPSIZE;
+ c_iter = c_iter->next;
+ } while (c_iter != NULL);
+ if (e_iter != NULL)
+ ebmap->highbit = e_iter->startbit + EBITMAP_SIZE;
else
- ebitmap_init(dst);
+ ebitmap_destroy(ebmap);
return 0;
+
+netlbl_import_failure:
+ ebitmap_destroy(ebmap);
+ return -ENOMEM;
}
+#endif /* CONFIG_NETLABEL */
int ebitmap_contains(struct ebitmap *e1, struct ebitmap *e2)
{
struct ebitmap_node *n1, *n2;
+ int i;
if (e1->highbit < e2->highbit)
return 0;
n1 = n1->next;
continue;
}
- if ((n1->map & n2->map) != n2->map)
- return 0;
+ for (i = 0; i < EBITMAP_UNIT_NUMS; i++) {
+ if ((n1->maps[i] & n2->maps[i]) != n2->maps[i])
+ return 0;
+ }
n1 = n1->next;
n2 = n2->next;
n = e->node;
while (n && (n->startbit <= bit)) {
- if ((n->startbit + MAPSIZE) > bit) {
- if (n->map & (MAPBIT << (bit - n->startbit)))
- return 1;
- else
- return 0;
- }
+ if ((n->startbit + EBITMAP_SIZE) > bit)
+ return ebitmap_node_get_bit(n, bit);
n = n->next;
}
prev = NULL;
n = e->node;
while (n && n->startbit <= bit) {
- if ((n->startbit + MAPSIZE) > bit) {
+ if ((n->startbit + EBITMAP_SIZE) > bit) {
if (value) {
- n->map |= (MAPBIT << (bit - n->startbit));
+ ebitmap_node_set_bit(n, bit);
} else {
- n->map &= ~(MAPBIT << (bit - n->startbit));
- if (!n->map) {
- /* drop this node from the bitmap */
-
- if (!n->next) {
- /*
- * this was the highest map
- * within the bitmap
- */
- if (prev)
- e->highbit = prev->startbit + MAPSIZE;
- else
- e->highbit = 0;
- }
+ unsigned int s;
+
+ ebitmap_node_clr_bit(n, bit);
+
+ s = find_first_bit(n->maps, EBITMAP_SIZE);
+ if (s < EBITMAP_SIZE)
+ return 0;
+
+ /* drop this node from the bitmap */
+ if (!n->next) {
+ /*
+ * this was the highest map
+ * within the bitmap
+ */
if (prev)
- prev->next = n->next;
+ e->highbit = prev->startbit
+ + EBITMAP_SIZE;
else
- e->node = n->next;
-
- kfree(n);
+ e->highbit = 0;
}
+ if (prev)
+ prev->next = n->next;
+ else
+ e->node = n->next;
+ kfree(n);
}
return 0;
}
if (!new)
return -ENOMEM;
- new->startbit = bit & ~(MAPSIZE - 1);
- new->map = (MAPBIT << (bit - new->startbit));
+ new->startbit = bit - (bit % EBITMAP_SIZE);
+ ebitmap_node_set_bit(new, bit);
if (!n)
/* this node will be the highest map within the bitmap */
- e->highbit = new->startbit + MAPSIZE;
+ e->highbit = new->startbit + EBITMAP_SIZE;
if (prev) {
new->next = prev->next;
int ebitmap_read(struct ebitmap *e, void *fp)
{
- int rc;
- struct ebitmap_node *n, *l;
+ struct ebitmap_node *n = NULL;
+ u32 mapunit, count, startbit, index;
+ u64 map;
__le32 buf[3];
- u32 mapsize, count, i;
- __le64 map;
+ int rc, i;
ebitmap_init(e);
if (rc < 0)
goto out;
- mapsize = le32_to_cpu(buf[0]);
+ mapunit = le32_to_cpu(buf[0]);
e->highbit = le32_to_cpu(buf[1]);
count = le32_to_cpu(buf[2]);
- if (mapsize != MAPSIZE) {
+ if (mapunit != sizeof(u64) * 8) {
printk(KERN_ERR "security: ebitmap: map size %u does not "
- "match my size %Zd (high bit was %d)\n", mapsize,
- MAPSIZE, e->highbit);
+ "match my size %Zd (high bit was %d)\n",
+ mapunit, sizeof(u64) * 8, e->highbit);
goto bad;
}
+
+ /* round up e->highbit */
+ e->highbit += EBITMAP_SIZE - 1;
+ e->highbit -= (e->highbit % EBITMAP_SIZE);
+
if (!e->highbit) {
e->node = NULL;
goto ok;
}
- if (e->highbit & (MAPSIZE - 1)) {
- printk(KERN_ERR "security: ebitmap: high bit (%d) is not a "
- "multiple of the map size (%Zd)\n", e->highbit, MAPSIZE);
- goto bad;
- }
- l = NULL;
+
for (i = 0; i < count; i++) {
- rc = next_entry(buf, fp, sizeof(u32));
+ rc = next_entry(&startbit, fp, sizeof(u32));
if (rc < 0) {
printk(KERN_ERR "security: ebitmap: truncated map\n");
goto bad;
}
- n = kzalloc(sizeof(*n), GFP_KERNEL);
- if (!n) {
- printk(KERN_ERR "security: ebitmap: out of memory\n");
- rc = -ENOMEM;
- goto bad;
- }
-
- n->startbit = le32_to_cpu(buf[0]);
+ startbit = le32_to_cpu(startbit);
- if (n->startbit & (MAPSIZE - 1)) {
+ if (startbit & (mapunit - 1)) {
printk(KERN_ERR "security: ebitmap start bit (%d) is "
- "not a multiple of the map size (%Zd)\n",
- n->startbit, MAPSIZE);
- goto bad_free;
+ "not a multiple of the map unit size (%u)\n",
+ startbit, mapunit);
+ goto bad;
}
- if (n->startbit > (e->highbit - MAPSIZE)) {
+ if (startbit > e->highbit - mapunit) {
printk(KERN_ERR "security: ebitmap start bit (%d) is "
- "beyond the end of the bitmap (%Zd)\n",
- n->startbit, (e->highbit - MAPSIZE));
- goto bad_free;
+ "beyond the end of the bitmap (%u)\n",
+ startbit, (e->highbit - mapunit));
+ goto bad;
}
+
+ if (!n || startbit >= n->startbit + EBITMAP_SIZE) {
+ struct ebitmap_node *tmp;
+ tmp = kzalloc(sizeof(*tmp), GFP_KERNEL);
+ if (!tmp) {
+ printk(KERN_ERR
+ "security: ebitmap: out of memory\n");
+ rc = -ENOMEM;
+ goto bad;
+ }
+ /* round down */
+ tmp->startbit = startbit - (startbit % EBITMAP_SIZE);
+ if (n) {
+ n->next = tmp;
+ } else {
+ e->node = tmp;
+ }
+ n = tmp;
+ } else if (startbit <= n->startbit) {
+ printk(KERN_ERR "security: ebitmap: start bit %d"
+ " comes after start bit %d\n",
+ startbit, n->startbit);
+ goto bad;
+ }
+
rc = next_entry(&map, fp, sizeof(u64));
if (rc < 0) {
printk(KERN_ERR "security: ebitmap: truncated map\n");
- goto bad_free;
+ goto bad;
}
- n->map = le64_to_cpu(map);
+ map = le64_to_cpu(map);
- if (!n->map) {
- printk(KERN_ERR "security: ebitmap: null map in "
- "ebitmap (startbit %d)\n", n->startbit);
- goto bad_free;
+ index = (startbit - n->startbit) / EBITMAP_UNIT_SIZE;
+ while (map) {
+ n->maps[index++] = map & (-1UL);
+ map = EBITMAP_SHIFT_UNIT_SIZE(map);
}
- if (l) {
- if (n->startbit <= l->startbit) {
- printk(KERN_ERR "security: ebitmap: start "
- "bit %d comes after start bit %d\n",
- n->startbit, l->startbit);
- goto bad_free;
- }
- l->next = n;
- } else
- e->node = n;
-
- l = n;
}
-
ok:
rc = 0;
out:
return rc;
-bad_free:
- kfree(n);
bad:
if (!rc)
rc = -EINVAL;