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path: root/Documentation/prio_tree.txt
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The prio_tree.c code indexes vmas using 3 different indexes:
	* heap_index  = vm_pgoff + vm_size_in_pages : end_vm_pgoff
	* radix_index = vm_pgoff : start_vm_pgoff
	* size_index = vm_size_in_pages

A regular radix-priority-search-tree indexes vmas using only heap_index and
radix_index. The conditions for indexing are:
	* ->heap_index >= ->left->heap_index &&
		->heap_index >= ->right->heap_index
	* if (->heap_index == ->left->heap_index)
		then ->radix_index < ->left->radix_index;
	* if (->heap_index == ->right->heap_index)
		then ->radix_index < ->right->radix_index;
	* nodes are hashed to left or right subtree using radix_index
	  similar to a pure binary radix tree.

A regular radix-priority-search-tree helps to store and query
intervals (vmas). However, a regular radix-priority-search-tree is only
suitable for storing vmas with different radix indices (vm_pgoff).

Therefore, the prio_tree.c extends the regular radix-priority-search-tree
to handle many vmas with the same vm_pgoff. Such vmas are handled in
2 different ways: 1) All vmas with the same radix _and_ heap indices are
linked using vm_set.list, 2) if there are many vmas with the same radix
index, but different heap indices and if the regular radix-priority-search
tree cannot index them all, we build an overflow-sub-tree that indexes such
vmas using heap and size indices instead of heap and radix indices. For
example, in the figure below some vmas with vm_pgoff = 0 (zero) are
indexed by regular radix-priority-search-tree whereas others are pushed
into an overflow-subtree. Note that all vmas in an overflow-sub-tree have
the same vm_pgoff (radix_index) and if necessary we build different
overflow-sub-trees to handle each possible radix_index. For example,
in figure we have 3 overflow-sub-trees corresponding to radix indices
0, 2, and 4.

In the final tree the first few (prio_tree_root->index_bits) levels
are indexed using heap and radix indices whereas the overflow-sub-trees below
those levels (i.e. levels prio_tree_root->index_bits + 1 and higher) are
indexed using heap and size indices. In overflow-sub-trees the size_index
is used for hashing the nodes to appropriate places.

Now, an example prio_tree:

  vmas are represented [radix_index, size_index, heap_index]
                 i.e., [start_vm_pgoff, vm_size_in_pages, end_vm_pgoff]

level  prio_tree_root->index_bits = 3
-----
												_
  0			 				[0,7,7]					 |
  							/     \					 |
				      ------------------       ------------			 |     Regular
  				     /					   \			 |  radix priority
  1		 		[1,6,7]					  [4,3,7]		 |   search tree
  				/     \					  /     \		 |
			 -------       -----			    ------       -----		 |  heap-and-radix
			/		    \			   /		      \		 |      indexed
  2		    [0,6,6]	 	   [2,5,7]		[5,2,7]		    [6,1,7]	 |
		    /     \		   /     \		/     \		    /     \	 |
  3		[0,5,5]	[1,5,6]		[2,4,6]	[3,4,7]	    [4,2,6] [5,1,6]	[6,0,6]	[7,0,7]	 |
		   /			   /		       /		   		_
                  /		          /		      /					_
  4	      [0,4,4]		      [2,3,5]		   [4,1,5]				 |
  		 /			 /		      /					 |
  5	     [0,3,3]		     [2,2,4]		  [4,0,4]				 |  Overflow-sub-trees
  		/			/							 |
  6	    [0,2,2]		    [2,1,3]							 |    heap-and-size
  	       /		       /							 |       indexed
  7	   [0,1,1]		   [2,0,2]							 |
  	      /											 |
  8	  [0,0,0]										 |
  												_

Note that we use prio_tree_root->index_bits to optimize the height
of the heap-and-radix indexed tree. Since prio_tree_root->index_bits is
set according to the maximum end_vm_pgoff mapped, we are sure that all
bits (in vm_pgoff) above prio_tree_root->index_bits are 0 (zero). Therefore,
we only use the first prio_tree_root->index_bits as radix_index.
Whenever index_bits is increased in prio_tree_expand, we shuffle the tree
to make sure that the first prio_tree_root->index_bits levels of the tree
is indexed properly using heap and radix indices.

We do not optimize the height of overflow-sub-trees using index_bits.
The reason is: there can be many such overflow-sub-trees and all of
them have to be suffled whenever the index_bits increases. This may involve
walking the whole prio_tree in prio_tree_insert->prio_tree_expand code
path which is not desirable. Hence, we do not optimize the height of the
heap-and-size indexed overflow-sub-trees using prio_tree->index_bits.
Instead the overflow sub-trees are indexed using full BITS_PER_LONG bits
of size_index. This may lead to skewed sub-trees because most of the
higher significant bits of the size_index are likely to be be 0 (zero). In
the example above, all 3 overflow-sub-trees are skewed. This may marginally
affect the performance. However, processes rarely map many vmas with the
same start_vm_pgoff but different end_vm_pgoffs. Therefore, we normally
do not require overflow-sub-trees to index all vmas.

From the above discussion it is clear that the maximum height of
a prio_tree can be prio_tree_root->index_bits + BITS_PER_LONG.
However, in most of the common cases we do not need overflow-sub-trees,
so the tree height in the common cases will be prio_tree_root->index_bits.

It is fair to mention here that the prio_tree_root->index_bits
is increased on demand, however, the index_bits is not decreased when
vmas are removed from the prio_tree. That's tricky to do. Hence, it's
left as a home work problem.


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/*
 * llc_c_ac.c - actions performed during connection state transition.
 *
 * Description:
 *   Functions in this module are implementation of connection component actions
 *   Details of actions can be found in IEEE-802.2 standard document.
 *   All functions have one connection and one event as input argument. All of
 *   them return 0 On success and 1 otherwise.
 *
 * Copyright (c) 1997 by Procom Technology, Inc.
 * 		 2001-2003 by Arnaldo Carvalho de Melo <acme@conectiva.com.br>
 *
 * This program can be redistributed or modified under the terms of the
 * GNU General Public License as published by the Free Software Foundation.
 * This program is distributed without any warranty or implied warranty
 * of merchantability or fitness for a particular purpose.
 *
 * See the GNU General Public License for more details.
 */
#include <linux/netdevice.h>
#include <linux/slab.h>
#include <net/llc_conn.h>
#include <net/llc_sap.h>
#include <net/sock.h>
#include <net/llc_c_ev.h>
#include <net/llc_c_ac.h>
#include <net/llc_c_st.h>
#include <net/llc_pdu.h>
#include <net/llc.h>


static int llc_conn_ac_inc_vs_by_1(struct sock *sk, struct sk_buff *skb);
static void llc_process_tmr_ev(struct sock *sk, struct sk_buff *skb);
static int llc_conn_ac_data_confirm(struct sock *sk, struct sk_buff *ev);

static int llc_conn_ac_inc_npta_value(struct sock *sk, struct sk_buff *skb);

static int llc_conn_ac_send_rr_rsp_f_set_ackpf(struct sock *sk,
					       struct sk_buff *skb);

static int llc_conn_ac_set_p_flag_1(struct sock *sk, struct sk_buff *skb);

#define INCORRECT 0

int llc_conn_ac_clear_remote_busy(struct sock *sk, struct sk_buff *skb)
{
	struct llc_sock *llc = llc_sk(sk);

	if (llc->remote_busy_flag) {
		u8 nr;
		struct llc_pdu_sn *pdu = llc_pdu_sn_hdr(skb);

		llc->remote_busy_flag = 0;
		del_timer(&llc->busy_state_timer.timer);
		nr = LLC_I_GET_NR(pdu);
		llc_conn_resend_i_pdu_as_cmd(sk, nr, 0);
	}
	return 0;
}

int llc_conn_ac_conn_ind(struct sock *sk, struct sk_buff *skb)
{
	struct llc_conn_state_ev *ev = llc_conn_ev(skb);

	ev->ind_prim = LLC_CONN_PRIM;
	return 0;
}

int llc_conn_ac_conn_confirm(struct sock *sk, struct sk_buff *skb)
{
	struct llc_conn_state_ev *ev = llc_conn_ev(skb);

	ev->cfm_prim = LLC_CONN_PRIM;
	return 0;
}

static int llc_conn_ac_data_confirm(struct sock *sk, struct sk_buff *skb)
{
	struct llc_conn_state_ev *ev = llc_conn_ev(skb);

	ev->cfm_prim = LLC_DATA_PRIM;
	return 0;
}

int llc_conn_ac_data_ind(struct sock *sk, struct sk_buff *skb)
{
	llc_conn_rtn_pdu(sk, skb);
	return 0;
}

int llc_conn_ac_disc_ind(struct sock *sk, struct sk_buff *skb)
{
	struct llc_conn_state_ev *ev = llc_conn_ev(skb);
	u8 reason = 0;
	int rc = 0;

	if (ev->type == LLC_CONN_EV_TYPE_PDU) {
		struct llc_pdu_un *pdu = llc_pdu_un_hdr(skb);

		if (LLC_PDU_IS_RSP(pdu) &&
		    LLC_PDU_TYPE_IS_U(pdu) &&
		    LLC_U_PDU_RSP(pdu) == LLC_2_PDU_RSP_DM)
			reason = LLC_DISC_REASON_RX_DM_RSP_PDU;
		else if (LLC_PDU_IS_CMD(pdu) &&
			   LLC_PDU_TYPE_IS_U(pdu) &&
			   LLC_U_PDU_CMD(pdu) == LLC_2_PDU_CMD_DISC)
			reason = LLC_DISC_REASON_RX_DISC_CMD_PDU;
	} else if (ev->type == LLC_CONN_EV_TYPE_ACK_TMR)
		reason = LLC_DISC_REASON_ACK_TMR_EXP;
	else
		rc = -EINVAL;
	if (!rc) {
		ev->reason   = reason;
		ev->ind_prim = LLC_DISC_PRIM;
	}
	return rc;
}

int llc_conn_ac_disc_confirm(struct sock *sk, struct sk_buff *skb)
{
	struct llc_conn_state_ev *ev = llc_conn_ev(skb);

	ev->reason   = ev->status;
	ev->cfm_prim = LLC_DISC_PRIM;
	return 0;
}

int llc_conn_ac_rst_ind(struct sock *sk, struct sk_buff *skb)
{
	u8 reason = 0;
	int rc = 1;
	struct llc_conn_state_ev *ev = llc_conn_ev(skb);
	struct llc_pdu_un *pdu = llc_pdu_un_hdr(skb);
	struct llc_sock *llc = llc_sk(sk);

	switch (ev->type) {
	case LLC_CONN_EV_TYPE_PDU:
		if (LLC_PDU_IS_RSP(pdu) &&
		    LLC_PDU_TYPE_IS_U(pdu) &&
		    LLC_U_PDU_RSP(pdu) == LLC_2_PDU_RSP_FRMR) {
			reason = LLC_RESET_REASON_LOCAL;
			rc = 0;
		} else if (LLC_PDU_IS_CMD(pdu) &&
			   LLC_PDU_TYPE_IS_U(pdu) &&
			   LLC_U_PDU_CMD(pdu) == LLC_2_PDU_CMD_SABME) {
			reason = LLC_RESET_REASON_REMOTE;
			rc = 0;
		}
		break;
	case LLC_CONN_EV_TYPE_ACK_TMR:
	case LLC_CONN_EV_TYPE_P_TMR:
	case LLC_CONN_EV_TYPE_REJ_TMR:
	case LLC_CONN_EV_TYPE_BUSY_TMR:
		if (llc->retry_count > llc->n2) {
			reason = LLC_RESET_REASON_LOCAL;
			rc = 0;
		}
		break;
	}
	if (!rc) {
		ev->reason   = reason;
		ev->ind_prim = LLC_RESET_PRIM;
	}
	return rc;
}

int llc_conn_ac_rst_confirm(struct sock *sk, struct sk_buff *skb)
{
	struct llc_conn_state_ev *ev = llc_conn_ev(skb);

	ev->reason   = 0;
	ev->cfm_prim = LLC_RESET_PRIM;
	return 0;
}

int llc_conn_ac_clear_remote_busy_if_f_eq_1(struct sock *sk,
					    struct sk_buff *skb)
{
	struct llc_pdu_sn *pdu = llc_pdu_sn_hdr(skb);

	if (LLC_PDU_IS_RSP(pdu) &&
	    LLC_PDU_TYPE_IS_I(pdu) &&
	    LLC_I_PF_IS_1(pdu) && llc_sk(sk)->ack_pf)
		llc_conn_ac_clear_remote_busy(sk, skb);
	return 0;
}

int llc_conn_ac_stop_rej_tmr_if_data_flag_eq_2(struct sock *sk,
					       struct sk_buff *skb)
{
	struct llc_sock *llc = llc_sk(sk);

	if (llc->data_flag == 2)
		del_timer(&llc->rej_sent_timer.timer);
	return 0;
}

int llc_conn_ac_send_disc_cmd_p_set_x(struct sock *sk, struct sk_buff *skb)
{
	int rc = -ENOBUFS;
	struct llc_sock *llc = llc_sk(sk);
	struct sk_buff *nskb = llc_alloc_frame(sk, llc->dev, LLC_PDU_TYPE_U, 0);

	if (nskb) {
		struct llc_sap *sap = llc->sap;

		llc_pdu_header_init(nskb, LLC_PDU_TYPE_U, sap->laddr.lsap,
				    llc->daddr.lsap, LLC_PDU_CMD);
		llc_pdu_init_as_disc_cmd(nskb, 1);
		rc = llc_mac_hdr_init(nskb, llc->dev->dev_addr, llc->daddr.mac);
		if (unlikely(rc))
			goto free;
		llc_conn_send_pdu(sk, nskb);
		llc_conn_ac_set_p_flag_1(sk, skb);
	}
out:
	return rc;
free:
	kfree_skb(nskb);
	goto out;
}

int llc_conn_ac_send_dm_rsp_f_set_p(struct sock *sk, struct sk_buff *skb)
{
	int rc = -ENOBUFS;
	struct llc_sock *llc = llc_sk(sk);
	struct sk_buff *nskb = llc_alloc_frame(sk, llc->dev, LLC_PDU_TYPE_U, 0);

	if (nskb) {
		struct llc_sap *sap = llc->sap;
		u8 f_bit;

		llc_pdu_decode_pf_bit(skb, &f_bit);
		llc_pdu_header_init(nskb, LLC_PDU_TYPE_U, sap->laddr.lsap,
				    llc->daddr.lsap, LLC_PDU_RSP);
		llc_pdu_init_as_dm_rsp(nskb, f_bit);
		rc = llc_mac_hdr_init(nskb, llc->dev->dev_addr, llc->daddr.mac);
		if (unlikely(rc))
			goto free;
		llc_conn_send_pdu(sk, nskb);
	}
out:
	return rc;
free:
	kfree_skb(nskb);
	goto out;
}

int llc_conn_ac_send_dm_rsp_f_set_1(struct sock *sk, struct sk_buff *skb)
{
	int rc = -ENOBUFS;
	struct llc_sock *llc = llc_sk(sk);
	struct sk_buff *nskb = llc_alloc_frame(sk, llc->dev, LLC_PDU_TYPE_U, 0);

	if (nskb) {
		struct llc_sap *sap = llc->sap;

		llc_pdu_header_init(nskb, LLC_PDU_TYPE_U, sap->laddr.lsap,
				    llc->daddr.lsap, LLC_PDU_RSP);
		llc_pdu_init_as_dm_rsp(nskb, 1);
		rc = llc_mac_hdr_init(nskb, llc->dev->dev_addr, llc->daddr.mac);
		if (unlikely(rc))
			goto free;
		llc_conn_send_pdu(sk, nskb);
	}
out:
	return rc;
free:
	kfree_skb(nskb);
	goto out;
}

int llc_conn_ac_send_frmr_rsp_f_set_x(struct sock *sk, struct sk_buff *skb)
{
	u8 f_bit;
	int rc = -ENOBUFS;
	struct sk_buff *nskb;
	struct llc_pdu_sn *pdu = llc_pdu_sn_hdr(skb);
	struct llc_sock *llc = llc_sk(sk);

	llc->rx_pdu_hdr = *((u32 *)pdu);
	if (LLC_PDU_IS_CMD(pdu))
		llc_pdu_decode_pf_bit(skb, &f_bit);
	else
		f_bit = 0;
	nskb = llc_alloc_frame(sk, llc->dev, LLC_PDU_TYPE_U,
			       sizeof(struct llc_frmr_info));
	if (nskb) {
		struct llc_sap *sap = llc->sap;

		llc_pdu_header_init(nskb, LLC_PDU_TYPE_U, sap->laddr.lsap,
				    llc->daddr.lsap, LLC_PDU_RSP);
		llc_pdu_init_as_frmr_rsp(nskb, pdu, f_bit, llc->vS,
					 llc->vR, INCORRECT);
		rc = llc_mac_hdr_init(nskb, llc->dev->dev_addr, llc->daddr.mac);
		if (unlikely(rc))
			goto free;
		llc_conn_send_pdu(sk, nskb);
	}
out:
	return rc;
free:
	kfree_skb(nskb);
	goto out;
}

int llc_conn_ac_resend_frmr_rsp_f_set_0(struct sock *sk, struct sk_buff *skb)
{
	int rc = -ENOBUFS;
	struct llc_sock *llc = llc_sk(sk);
	struct sk_buff *nskb = llc_alloc_frame(sk, llc->dev, LLC_PDU_TYPE_U,
					       sizeof(struct llc_frmr_info));

	if (nskb) {
		struct llc_sap *sap = llc->sap;
		struct llc_pdu_sn *pdu = (struct llc_pdu_sn *)&llc->rx_pdu_hdr;

		llc_pdu_header_init(nskb, LLC_PDU_TYPE_U, sap->laddr.lsap,
				    llc->daddr.lsap, LLC_PDU_RSP);
		llc_pdu_init_as_frmr_rsp(nskb, pdu, 0, llc->vS,
					 llc->vR, INCORRECT);
		rc = llc_mac_hdr_init(nskb, llc->dev->dev_addr, llc->daddr.mac);
		if (unlikely(rc))
			goto free;
		llc_conn_send_pdu(sk, nskb);
	}
out:
	return rc;
free:
	kfree_skb(nskb);
	goto out;
}

int llc_conn_ac_resend_frmr_rsp_f_set_p(struct sock *sk, struct sk_buff *skb)
{
	u8 f_bit;
	int rc = -ENOBUFS;
	struct sk_buff *nskb;
	struct llc_sock *llc = llc_sk(sk);

	llc_pdu_decode_pf_bit(skb, &f_bit);
	nskb = llc_alloc_frame(sk, llc->dev, LLC_PDU_TYPE_U,
			       sizeof(struct llc_frmr_info));
	if (nskb) {
		struct llc_sap *sap = llc->sap;
		struct llc_pdu_sn *pdu = llc_pdu_sn_hdr(skb);

		llc_pdu_header_init(nskb, LLC_PDU_TYPE_U, sap->laddr.lsap,
				    llc->daddr.lsap, LLC_PDU_RSP);
		llc_pdu_init_as_frmr_rsp(nskb, pdu, f_bit, llc->vS,
					 llc->vR, INCORRECT);
		rc = llc_mac_hdr_init(nskb, llc->dev->dev_addr, llc->daddr.mac);
		if (unlikely(rc))
			goto free;
		llc_conn_send_pdu(sk, nskb);
	}
out:
	return rc;
free:
	kfree_skb(nskb);
	goto out;
}

int llc_conn_ac_send_i_cmd_p_set_1(struct sock *sk, struct sk_buff *skb)
{
	int rc;
	struct llc_sock *llc = llc_sk(sk);
	struct llc_sap *sap = llc->sap;

	llc_pdu_header_init(skb, LLC_PDU_TYPE_I, sap->laddr.lsap,
			    llc->daddr.lsap, LLC_PDU_CMD);
	llc_pdu_init_as_i_cmd(skb, 1, llc->vS, llc->vR);
	rc = llc_mac_hdr_init(skb, llc->dev->dev_addr, llc->daddr.mac);
	if (likely(!rc)) {
		llc_conn_send_pdu(sk, skb);
		llc_conn_ac_inc_vs_by_1(sk, skb);
	}
	return rc;
}

static int llc_conn_ac_send_i_cmd_p_set_0(struct sock *sk, struct sk_buff *skb)
{
	int rc;
	struct llc_sock *llc = llc_sk(sk);
	struct llc_sap *sap = llc->sap;

	llc_pdu_header_init(skb, LLC_PDU_TYPE_I, sap->laddr.lsap,
			    llc->daddr.lsap, LLC_PDU_CMD);
	llc_pdu_init_as_i_cmd(skb, 0, llc->vS, llc->vR);
	rc = llc_mac_hdr_init(skb, llc->dev->dev_addr, llc->daddr.mac);
	if (likely(!rc)) {
		llc_conn_send_pdu(sk, skb);
		llc_conn_ac_inc_vs_by_1(sk, skb);
	}
	return rc;
}

int llc_conn_ac_send_i_xxx_x_set_0(struct sock *sk, struct sk_buff *skb)
{
	int rc;
	struct llc_sock *llc = llc_sk(sk);
	struct llc_sap *sap = llc->sap;

	llc_pdu_header_init(skb, LLC_PDU_TYPE_I, sap->laddr.lsap,
			    llc->daddr.lsap, LLC_PDU_CMD);
	llc_pdu_init_as_i_cmd(skb, 0, llc->vS, llc->vR);
	rc = llc_mac_hdr_init(skb, llc->dev->dev_addr, llc->daddr.mac);
	if (likely(!rc)) {
		llc_conn_send_pdu(sk, skb);
		llc_conn_ac_inc_vs_by_1(sk, skb);
	}
	return 0;
}

int llc_conn_ac_resend_i_xxx_x_set_0(struct sock *sk, struct sk_buff *skb)
{
	struct llc_pdu_sn *pdu = llc_pdu_sn_hdr(skb);
	u8 nr = LLC_I_GET_NR(pdu);

	llc_conn_resend_i_pdu_as_cmd(sk, nr, 0);
	return 0;
}

int llc_conn_ac_resend_i_xxx_x_set_0_or_send_rr(struct sock *sk,
						struct sk_buff *skb)
{
	u8 nr;
	struct llc_pdu_sn *pdu = llc_pdu_sn_hdr(skb);
	int rc = -ENOBUFS;
	struct llc_sock *llc = llc_sk(sk);
	struct sk_buff *nskb = llc_alloc_frame(sk, llc->dev, LLC_PDU_TYPE_U, 0);

	if (nskb) {
		struct llc_sap *sap = llc->sap;

		llc_pdu_header_init(nskb, LLC_PDU_TYPE_U, sap->laddr.lsap,
				    llc->daddr.lsap, LLC_PDU_RSP);
		llc_pdu_init_as_rr_rsp(nskb, 0, llc->vR);
		rc = llc_mac_hdr_init(nskb, llc->dev->dev_addr, llc->daddr.mac);
		if (likely(!rc))
			llc_conn_send_pdu(sk, nskb);
		else
			kfree_skb(skb);
	}
	if (rc) {
		nr = LLC_I_GET_NR(pdu);
		rc = 0;
		llc_conn_resend_i_pdu_as_cmd(sk, nr, 0);
	}
	return rc;
}

int llc_conn_ac_resend_i_rsp_f_set_1(struct sock *sk, struct sk_buff *skb)
{
	struct llc_pdu_sn *pdu = llc_pdu_sn_hdr(skb);
	u8 nr = LLC_I_GET_NR(pdu);

	llc_conn_resend_i_pdu_as_rsp(sk, nr, 1);
	return 0;
}

int llc_conn_ac_send_rej_cmd_p_set_1(struct sock *sk, struct sk_buff *skb)
{
	int rc = -ENOBUFS;
	struct llc_sock *llc = llc_sk(sk);
	struct sk_buff *nskb = llc_alloc_frame(sk, llc->dev, LLC_PDU_TYPE_S, 0);

	if (nskb) {
		struct llc_sap *sap = llc->sap;

		llc_pdu_header_init(nskb, LLC_PDU_TYPE_S, sap->laddr.lsap,
				    llc->daddr.lsap, LLC_PDU_CMD);
		llc_pdu_init_as_rej_cmd(nskb, 1, llc->vR);
		rc = llc_mac_hdr_init(nskb, llc->dev->dev_addr, llc->daddr.mac);
		if (unlikely(rc))
			goto free;
		llc_conn_send_pdu(sk, nskb);
	}
out:
	return rc;
free:
	kfree_skb(nskb);
	goto out;
}

int llc_conn_ac_send_rej_rsp_f_set_1(struct sock *sk, struct sk_buff *skb)
{
	int rc = -ENOBUFS;
	struct llc_sock *llc = llc_sk(sk);
	struct sk_buff *nskb = llc_alloc_frame(sk, llc->dev, LLC_PDU_TYPE_S, 0);

	if (nskb) {
		struct llc_sap *sap = llc->sap;

		llc_pdu_header_init(nskb, LLC_PDU_TYPE_S, sap->laddr.lsap,
				    llc->daddr.lsap, LLC_PDU_RSP);
		llc_pdu_init_as_rej_rsp(nskb, 1, llc->vR);
		rc = llc_mac_hdr_init(nskb, llc->dev->dev_addr, llc->daddr.mac);
		if (unlikely(rc))
			goto free;
		llc_conn_send_pdu(sk, nskb);
	}
out:
	return rc;
free:
	kfree_skb(nskb);
	goto out;
}

int llc_conn_ac_send_rej_xxx_x_set_0(struct sock *sk, struct sk_buff *skb)
{
	int rc = -ENOBUFS;
	struct llc_sock *llc = llc_sk(sk);
	struct sk_buff *nskb = llc_alloc_frame(sk, llc->dev, LLC_PDU_TYPE_S, 0);

	if (nskb) {
		struct llc_sap *sap = llc->sap;

		llc_pdu_header_init(nskb, LLC_PDU_TYPE_S, sap->laddr.lsap,
				    llc->daddr.lsap, LLC_PDU_RSP);
		llc_pdu_init_as_rej_rsp(nskb, 0, llc->vR);
		rc = llc_mac_hdr_init(nskb, llc->dev->dev_addr, llc->daddr.mac);
		if (unlikely(rc))
			goto free;
		llc_conn_send_pdu(sk, nskb);
	}
out:
	return rc;
free:
	kfree_skb(nskb);
	goto out;
}

int llc_conn_ac_send_rnr_cmd_p_set_1(struct sock *sk, struct sk_buff *skb)
{
	int rc = -ENOBUFS;
	struct llc_sock *llc = llc_sk(sk);
	struct sk_buff *nskb = llc_alloc_frame(sk, llc->dev, LLC_PDU_TYPE_S, 0);

	if (nskb) {
		struct llc_sap *sap = llc->sap;

		llc_pdu_header_init(nskb, LLC_PDU_TYPE_S, sap->laddr.lsap,
				    llc->daddr.lsap, LLC_PDU_CMD);
		llc_pdu_init_as_rnr_cmd(nskb, 1, llc->vR);
		rc = llc_mac_hdr_init(nskb, llc->dev->dev_addr, llc->daddr.mac);
		if (unlikely(rc))
			goto free;
		llc_conn_send_pdu(sk, nskb);
	}
out:
	return rc;
free:
	kfree_skb(nskb);
	goto out;
}

int llc_conn_ac_send_rnr_rsp_f_set_1(struct sock *sk, struct sk_buff *skb)
{
	int rc = -ENOBUFS;
	struct llc_sock *llc = llc_sk(sk);
	struct sk_buff *nskb = llc_alloc_frame(sk, llc->dev, LLC_PDU_TYPE_S, 0);

	if (nskb) {
		struct llc_sap *sap = llc->sap;

		llc_pdu_header_init(nskb, LLC_PDU_TYPE_S, sap->laddr.lsap,
				    llc->daddr.lsap, LLC_PDU_RSP);
		llc_pdu_init_as_rnr_rsp(nskb, 1, llc->vR);
		rc = llc_mac_hdr_init(nskb, llc->dev->dev_addr, llc->daddr.mac);
		if (unlikely(rc))
			goto free;
		llc_conn_send_pdu(sk, nskb);
	}
out:
	return rc;
free:
	kfree_skb(nskb);
	goto out;
}

int llc_conn_ac_send_rnr_xxx_x_set_0(struct sock *sk, struct sk_buff *skb)
{
	int rc = -ENOBUFS;
	struct llc_sock *llc = llc_sk(sk);
	struct sk_buff *nskb = llc_alloc_frame(sk, llc->dev, LLC_PDU_TYPE_S, 0);

	if (nskb) {
		struct llc_sap *sap = llc->sap;

		llc_pdu_header_init(nskb, LLC_PDU_TYPE_S, sap->laddr.lsap,
				    llc->daddr.lsap, LLC_PDU_RSP);
		llc_pdu_init_as_rnr_rsp(nskb, 0, llc->vR);
		rc = llc_mac_hdr_init(nskb, llc->dev->dev_addr, llc->daddr.mac);
		if (unlikely(rc))
			goto free;
		llc_conn_send_pdu(sk, nskb);
	}
out:
	return rc;
free:
	kfree_skb(nskb);
	goto out;
}

int llc_conn_ac_set_remote_busy(struct sock *sk, struct sk_buff *skb)
{
	struct llc_sock *llc = llc_sk(sk);

	if (!llc->remote_busy_flag) {
		llc->remote_busy_flag = 1;
		mod_timer(&llc->busy_state_timer.timer,
			 jiffies + llc->busy_state_timer.expire);
	}
	return 0;
}

int llc_conn_ac_opt_send_rnr_xxx_x_set_0(struct sock *sk, struct sk_buff *skb)
{
	int rc = -ENOBUFS;
	struct llc_sock *llc = llc_sk(sk);
	struct sk_buff *nskb = llc_alloc_frame(sk, llc->dev, LLC_PDU_TYPE_S, 0);

	if (nskb) {
		struct llc_sap *sap = llc->sap;

		llc_pdu_header_init(nskb, LLC_PDU_TYPE_S, sap->laddr.lsap,
				    llc->daddr.lsap, LLC_PDU_RSP);
		llc_pdu_init_as_rnr_rsp(nskb, 0, llc->vR);
		rc = llc_mac_hdr_init(nskb, llc->dev->dev_addr, llc->daddr.mac);
		if (unlikely(rc))
			goto free;
		llc_conn_send_pdu(sk, nskb);
	}
out:
	return rc;
free:
	kfree_skb(nskb);
	goto out;
}

int llc_conn_ac_send_rr_cmd_p_set_1(struct sock *sk, struct sk_buff *skb)
{
	int rc = -ENOBUFS;
	struct llc_sock *llc = llc_sk(sk);
	struct sk_buff *nskb = llc_alloc_frame(sk, llc->dev, LLC_PDU_TYPE_S, 0);

	if (nskb) {
		struct llc_sap *sap = llc->sap;

		llc_pdu_header_init(nskb, LLC_PDU_TYPE_S, sap->laddr.lsap,
				    llc->daddr.lsap, LLC_PDU_CMD);
		llc_pdu_init_as_rr_cmd(nskb, 1, llc->vR);
		rc = llc_mac_hdr_init(nskb, llc->dev->dev_addr, llc->daddr.mac);
		if (unlikely(rc))
			goto free;
		llc_conn_send_pdu(sk, nskb);
	}
out:
	return rc;
free:
	kfree_skb(nskb);
	goto out;
}

int llc_conn_ac_send_rr_rsp_f_set_1(struct sock *sk, struct sk_buff *skb)
{
	int rc = -ENOBUFS;
	struct llc_sock *llc = llc_sk(sk);
	struct sk_buff *nskb = llc_alloc_frame(sk, llc->dev, LLC_PDU_TYPE_S, 0);

	if (nskb) {
		struct llc_sap *sap = llc->sap;
		u8 f_bit = 1;

		llc_pdu_header_init(nskb, LLC_PDU_TYPE_S, sap->laddr.lsap,
				    llc->daddr.lsap, LLC_PDU_RSP);
		llc_pdu_init_as_rr_rsp(nskb, f_bit, llc->vR);
		rc = llc_mac_hdr_init(nskb, llc->dev->dev_addr, llc->daddr.mac);
		if (unlikely(rc))
			goto free;
		llc_conn_send_pdu(sk, nskb);
	}
out:
	return rc;
free:
	kfree_skb(nskb);
	goto out;
}

int llc_conn_ac_send_ack_rsp_f_set_1(struct sock *sk, struct sk_buff *skb)
{
	int rc = -ENOBUFS;
	struct llc_sock *llc = llc_sk(sk);
	struct sk_buff *nskb = llc_alloc_frame(sk, llc->dev, LLC_PDU_TYPE_S, 0);

	if (nskb) {
		struct llc_sap *sap = llc->sap;

		llc_pdu_header_init(nskb, LLC_PDU_TYPE_S, sap->laddr.lsap,
				    llc->daddr.lsap, LLC_PDU_RSP);
		llc_pdu_init_as_rr_rsp(nskb, 1, llc->vR);