options.c 15.0 KB
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/*
 *  net/dccp/options.c
 *
 *  An implementation of the DCCP protocol
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 *  Copyright (c) 2005 Aristeu Sergio Rozanski Filho <aris@cathedrallabs.org>
 *  Copyright (c) 2005 Arnaldo Carvalho de Melo <acme@ghostprotocols.net>
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 *  Copyright (c) 2005 Ian McDonald <ian.mcdonald@jandi.co.nz>
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 *
 *      This program is free software; you can redistribute it and/or
 *      modify it under the terms of the GNU General Public License
 *      as published by the Free Software Foundation; either version
 *      2 of the License, or (at your option) any later version.
 */
#include <linux/dccp.h>
#include <linux/module.h>
#include <linux/types.h>
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#include <asm/unaligned.h>
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#include <linux/kernel.h>
#include <linux/skbuff.h>

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#include "ackvec.h"
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#include "ccid.h"
#include "dccp.h"
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#include "feat.h"
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u64 dccp_decode_value_var(const u8 *bf, const u8 len)
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{
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	u64 value = 0;
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	if (len >= DCCP_OPTVAL_MAXLEN)
		value += ((u64)*bf++) << 40;
	if (len > 4)
		value += ((u64)*bf++) << 32;
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	if (len > 3)
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		value += ((u64)*bf++) << 24;
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	if (len > 2)
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		value += ((u64)*bf++) << 16;
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	if (len > 1)
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		value += ((u64)*bf++) << 8;
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	if (len > 0)
		value += *bf;

	return value;
}

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/**
 * dccp_parse_options  -  Parse DCCP options present in @skb
 * @sk: client|server|listening dccp socket (when @dreq != NULL)
 * @dreq: request socket to use during connection setup, or NULL
 */
int dccp_parse_options(struct sock *sk, struct dccp_request_sock *dreq,
		       struct sk_buff *skb)
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{
	struct dccp_sock *dp = dccp_sk(sk);
	const struct dccp_hdr *dh = dccp_hdr(skb);
	const u8 pkt_type = DCCP_SKB_CB(skb)->dccpd_type;
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	u64 ackno = DCCP_SKB_CB(skb)->dccpd_ack_seq;
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	unsigned char *options = (unsigned char *)dh + dccp_hdr_len(skb);
	unsigned char *opt_ptr = options;
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	const unsigned char *opt_end = (unsigned char *)dh +
					(dh->dccph_doff * 4);
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	struct dccp_options_received *opt_recv = &dp->dccps_options_received;
	unsigned char opt, len;
	unsigned char *value;
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	u32 elapsed_time;
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	__be32 opt_val;
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	int rc;
	int mandatory = 0;
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	memset(opt_recv, 0, sizeof(*opt_recv));

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	opt = len = 0;
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	while (opt_ptr != opt_end) {
		opt   = *opt_ptr++;
		len   = 0;
		value = NULL;

		/* Check if this isn't a single byte option */
		if (opt > DCCPO_MAX_RESERVED) {
			if (opt_ptr == opt_end)
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				goto out_nonsensical_length;
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			len = *opt_ptr++;
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			if (len < 2)
				goto out_nonsensical_length;
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			/*
			 * Remove the type and len fields, leaving
			 * just the value size
			 */
			len	-= 2;
			value	= opt_ptr;
			opt_ptr += len;

			if (opt_ptr > opt_end)
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				goto out_nonsensical_length;
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		}

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		/*
		 * CCID-Specific Options (from RFC 4340, sec. 10.3):
		 *
		 * Option numbers 128 through 191 are for options sent from the
		 * HC-Sender to the HC-Receiver; option numbers 192 through 255
		 * are for options sent from the HC-Receiver to	the HC-Sender.
		 *
		 * CCID-specific options are ignored during connection setup, as
		 * negotiation may still be in progress (see RFC 4340, 10.3).
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		 * The same applies to Ack Vectors, as these depend on the CCID.
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		 *
		 */
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		if (dreq != NULL && (opt >= 128 ||
		    opt == DCCPO_ACK_VECTOR_0 || opt == DCCPO_ACK_VECTOR_1))
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			goto ignore_option;

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		switch (opt) {
		case DCCPO_PADDING:
			break;
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		case DCCPO_MANDATORY:
			if (mandatory)
				goto out_invalid_option;
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			if (pkt_type != DCCP_PKT_DATA)
				mandatory = 1;
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			break;
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		case DCCPO_NDP_COUNT:
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			if (len > 6)
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				goto out_invalid_option;

			opt_recv->dccpor_ndp = dccp_decode_value_var(value, len);
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			dccp_pr_debug("%s opt: NDP count=%llu\n", dccp_role(sk),
				      (unsigned long long)opt_recv->dccpor_ndp);
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			break;
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		case DCCPO_CHANGE_L ... DCCPO_CONFIRM_R:
			if (pkt_type == DCCP_PKT_DATA)      /* RFC 4340, 6 */
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				break;
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			rc = dccp_feat_parse_options(sk, dreq, mandatory, opt,
						    *value, value + 1, len - 1);
			if (rc)
				goto out_featneg_failed;
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			break;
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		case DCCPO_ACK_VECTOR_0:
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		case DCCPO_ACK_VECTOR_1:
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			if (dccp_packet_without_ack(skb))   /* RFC 4340, 11.4 */
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				break;
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			if (dp->dccps_hc_rx_ackvec != NULL &&
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			    dccp_ackvec_parse(sk, skb, &ackno, opt, value, len))
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				goto out_invalid_option;
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			break;
		case DCCPO_TIMESTAMP:
			if (len != 4)
				goto out_invalid_option;
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			/*
			 * RFC 4340 13.1: "The precise time corresponding to
			 * Timestamp Value zero is not specified". We use
			 * zero to indicate absence of a meaningful timestamp.
			 */
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			opt_val = get_unaligned((__be32 *)value);
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			if (unlikely(opt_val == 0)) {
				DCCP_WARN("Timestamp with zero value\n");
				break;
			}
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			if (dreq != NULL) {
				dreq->dreq_timestamp_echo = ntohl(opt_val);
				dreq->dreq_timestamp_time = dccp_timestamp();
			} else {
				opt_recv->dccpor_timestamp =
					dp->dccps_timestamp_echo = ntohl(opt_val);
				dp->dccps_timestamp_time = dccp_timestamp();
			}
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			dccp_pr_debug("%s rx opt: TIMESTAMP=%u, ackno=%llu\n",
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				      dccp_role(sk), ntohl(opt_val),
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				      (unsigned long long)
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				      DCCP_SKB_CB(skb)->dccpd_ack_seq);
			break;
		case DCCPO_TIMESTAMP_ECHO:
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			if (len != 4 && len != 6 && len != 8)
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				goto out_invalid_option;

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			opt_val = get_unaligned((__be32 *)value);
			opt_recv->dccpor_timestamp_echo = ntohl(opt_val);
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			dccp_pr_debug("%s rx opt: TIMESTAMP_ECHO=%u, len=%d, "
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				      "ackno=%llu", dccp_role(sk),
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				      opt_recv->dccpor_timestamp_echo,
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				      len + 2,
				      (unsigned long long)
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				      DCCP_SKB_CB(skb)->dccpd_ack_seq);

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			value += 4;
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			if (len == 4) {		/* no elapsed time included */
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				dccp_pr_debug_cat("\n");
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				break;
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			}
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			if (len == 6) {		/* 2-byte elapsed time */
				__be16 opt_val2 = get_unaligned((__be16 *)value);
				elapsed_time = ntohs(opt_val2);
			} else {		/* 4-byte elapsed time */
				opt_val = get_unaligned((__be32 *)value);
				elapsed_time = ntohl(opt_val);
			}
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			dccp_pr_debug_cat(", ELAPSED_TIME=%u\n", elapsed_time);
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			/* Give precedence to the biggest ELAPSED_TIME */
			if (elapsed_time > opt_recv->dccpor_elapsed_time)
				opt_recv->dccpor_elapsed_time = elapsed_time;
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			break;
		case DCCPO_ELAPSED_TIME:
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			if (dccp_packet_without_ack(skb))   /* RFC 4340, 13.2 */
				break;
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			if (len == 2) {
				__be16 opt_val2 = get_unaligned((__be16 *)value);
				elapsed_time = ntohs(opt_val2);
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			} else if (len == 4) {
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				opt_val = get_unaligned((__be32 *)value);
				elapsed_time = ntohl(opt_val);
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			} else {
				goto out_invalid_option;
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			}
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			if (elapsed_time > opt_recv->dccpor_elapsed_time)
				opt_recv->dccpor_elapsed_time = elapsed_time;
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			dccp_pr_debug("%s rx opt: ELAPSED_TIME=%d\n",
				      dccp_role(sk), elapsed_time);
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			break;
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		case 128 ... 191:
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			if (ccid_hc_rx_parse_options(dp->dccps_hc_rx_ccid, sk,
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						     pkt_type, opt, value, len))
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				goto out_invalid_option;
			break;
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		case 192 ... 255:
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			if (ccid_hc_tx_parse_options(dp->dccps_hc_tx_ccid, sk,
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						     pkt_type, opt, value, len))
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				goto out_invalid_option;
			break;
		default:
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			DCCP_CRIT("DCCP(%p): option %d(len=%d) not "
				  "implemented, ignoring", sk, opt, len);
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			break;
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		}
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ignore_option:
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		if (opt != DCCPO_MANDATORY)
			mandatory = 0;
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	}

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	/* mandatory was the last byte in option list -> reset connection */
	if (mandatory)
		goto out_invalid_option;

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out_nonsensical_length:
	/* RFC 4340, 5.8: ignore option and all remaining option space */
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	return 0;

out_invalid_option:
	DCCP_INC_STATS_BH(DCCP_MIB_INVALIDOPT);
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	rc = DCCP_RESET_CODE_OPTION_ERROR;
out_featneg_failed:
	DCCP_WARN("DCCP(%p): Option %d (len=%d) error=%u\n", sk, opt, len, rc);
	DCCP_SKB_CB(skb)->dccpd_reset_code = rc;
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	DCCP_SKB_CB(skb)->dccpd_reset_data[0] = opt;
	DCCP_SKB_CB(skb)->dccpd_reset_data[1] = len > 0 ? value[0] : 0;
	DCCP_SKB_CB(skb)->dccpd_reset_data[2] = len > 1 ? value[1] : 0;
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	return -1;
}

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EXPORT_SYMBOL_GPL(dccp_parse_options);

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void dccp_encode_value_var(const u64 value, u8 *to, const u8 len)
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{
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	if (len >= DCCP_OPTVAL_MAXLEN)
		*to++ = (value & 0xFF0000000000ull) >> 40;
	if (len > 4)
		*to++ = (value & 0xFF00000000ull) >> 32;
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	if (len > 3)
		*to++ = (value & 0xFF000000) >> 24;
	if (len > 2)
		*to++ = (value & 0xFF0000) >> 16;
	if (len > 1)
		*to++ = (value & 0xFF00) >> 8;
	if (len > 0)
		*to++ = (value & 0xFF);
}

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static inline u8 dccp_ndp_len(const u64 ndp)
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{
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	if (likely(ndp <= 0xFF))
		return 1;
	return likely(ndp <= USHORT_MAX) ? 2 : (ndp <= UINT_MAX ? 4 : 6);
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}

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int dccp_insert_option(struct sock *sk, struct sk_buff *skb,
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			const unsigned char option,
			const void *value, const unsigned char len)
{
	unsigned char *to;

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	if (DCCP_SKB_CB(skb)->dccpd_opt_len + len + 2 > DCCP_MAX_OPT_LEN)
		return -1;
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	DCCP_SKB_CB(skb)->dccpd_opt_len += len + 2;

	to    = skb_push(skb, len + 2);
	*to++ = option;
	*to++ = len + 2;

	memcpy(to, value, len);
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	return 0;
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}

EXPORT_SYMBOL_GPL(dccp_insert_option);

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static int dccp_insert_option_ndp(struct sock *sk, struct sk_buff *skb)
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{
	struct dccp_sock *dp = dccp_sk(sk);
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	u64 ndp = dp->dccps_ndp_count;
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	if (dccp_non_data_packet(skb))
		++dp->dccps_ndp_count;
	else
		dp->dccps_ndp_count = 0;

	if (ndp > 0) {
		unsigned char *ptr;
		const int ndp_len = dccp_ndp_len(ndp);
		const int len = ndp_len + 2;

		if (DCCP_SKB_CB(skb)->dccpd_opt_len + len > DCCP_MAX_OPT_LEN)
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			return -1;
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		DCCP_SKB_CB(skb)->dccpd_opt_len += len;

		ptr = skb_push(skb, len);
		*ptr++ = DCCPO_NDP_COUNT;
		*ptr++ = len;
		dccp_encode_value_var(ndp, ptr, ndp_len);
	}
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	return 0;
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}

static inline int dccp_elapsed_time_len(const u32 elapsed_time)
{
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	return elapsed_time == 0 ? 0 : elapsed_time <= 0xFFFF ? 2 : 4;
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}

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int dccp_insert_option_elapsed_time(struct sock *sk, struct sk_buff *skb,
				    u32 elapsed_time)
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{
	const int elapsed_time_len = dccp_elapsed_time_len(elapsed_time);
	const int len = 2 + elapsed_time_len;
	unsigned char *to;

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	if (elapsed_time_len == 0)
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		return 0;
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	if (DCCP_SKB_CB(skb)->dccpd_opt_len + len > DCCP_MAX_OPT_LEN)
		return -1;
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	DCCP_SKB_CB(skb)->dccpd_opt_len += len;

	to    = skb_push(skb, len);
	*to++ = DCCPO_ELAPSED_TIME;
	*to++ = len;

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	if (elapsed_time_len == 2) {
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		const __be16 var16 = htons((u16)elapsed_time);
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		memcpy(to, &var16, 2);
	} else {
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		const __be32 var32 = htonl(elapsed_time);
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		memcpy(to, &var32, 4);
	}
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	return 0;
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}

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EXPORT_SYMBOL_GPL(dccp_insert_option_elapsed_time);
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int dccp_insert_option_timestamp(struct sock *sk, struct sk_buff *skb)
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{
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	__be32 now = htonl(dccp_timestamp());
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	/* yes this will overflow but that is the point as we want a
	 * 10 usec 32 bit timer which mean it wraps every 11.9 hours */

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	return dccp_insert_option(sk, skb, DCCPO_TIMESTAMP, &now, sizeof(now));
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}

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EXPORT_SYMBOL_GPL(dccp_insert_option_timestamp);

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static int dccp_insert_option_timestamp_echo(struct dccp_sock *dp,
					     struct dccp_request_sock *dreq,
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					     struct sk_buff *skb)
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{
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	__be32 tstamp_echo;
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	unsigned char *to;
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	u32 elapsed_time, elapsed_time_len, len;

	if (dreq != NULL) {
		elapsed_time = dccp_timestamp() - dreq->dreq_timestamp_time;
		tstamp_echo  = htonl(dreq->dreq_timestamp_echo);
		dreq->dreq_timestamp_echo = 0;
	} else {
		elapsed_time = dccp_timestamp() - dp->dccps_timestamp_time;
		tstamp_echo  = htonl(dp->dccps_timestamp_echo);
		dp->dccps_timestamp_echo = 0;
	}

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	elapsed_time_len = dccp_elapsed_time_len(elapsed_time);
	len = 6 + elapsed_time_len;

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	if (DCCP_SKB_CB(skb)->dccpd_opt_len + len > DCCP_MAX_OPT_LEN)
		return -1;
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	DCCP_SKB_CB(skb)->dccpd_opt_len += len;

	to    = skb_push(skb, len);
	*to++ = DCCPO_TIMESTAMP_ECHO;
	*to++ = len;

	memcpy(to, &tstamp_echo, 4);
	to += 4;
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	if (elapsed_time_len == 2) {
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		const __be16 var16 = htons((u16)elapsed_time);
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		memcpy(to, &var16, 2);
	} else if (elapsed_time_len == 4) {
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		const __be32 var32 = htonl(elapsed_time);
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		memcpy(to, &var32, 4);
	}
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	return 0;
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}

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/**
 * dccp_insert_option_mandatory  -  Mandatory option (5.8.2)
 * Note that since we are using skb_push, this function needs to be called
 * _after_ inserting the option it is supposed to influence (stack order).
 */
int dccp_insert_option_mandatory(struct sk_buff *skb)
{
	if (DCCP_SKB_CB(skb)->dccpd_opt_len >= DCCP_MAX_OPT_LEN)
		return -1;

	DCCP_SKB_CB(skb)->dccpd_opt_len++;
	*skb_push(skb, 1) = DCCPO_MANDATORY;
	return 0;
}

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/**
 * dccp_insert_fn_opt  -  Insert single Feature-Negotiation option into @skb
 * @type: %DCCPO_CHANGE_L, %DCCPO_CHANGE_R, %DCCPO_CONFIRM_L, %DCCPO_CONFIRM_R
 * @feat: one out of %dccp_feature_numbers
 * @val: NN value or SP array (preferred element first) to copy
 * @len: true length of @val in bytes (excluding first element repetition)
 * @repeat_first: whether to copy the first element of @val twice
 * The last argument is used to construct Confirm options, where the preferred
 * value and the preference list appear separately (RFC 4340, 6.3.1). Preference
 * lists are kept such that the preferred entry is always first, so we only need
 * to copy twice, and avoid the overhead of cloning into a bigger array.
 */
int dccp_insert_fn_opt(struct sk_buff *skb, u8 type, u8 feat,
		       u8 *val, u8 len, bool repeat_first)
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{
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	u8 tot_len, *to;
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	/* take the `Feature' field and possible repetition into account */
	if (len > (DCCP_SINGLE_OPT_MAXLEN - 2)) {
		DCCP_WARN("length %u for feature %u too large\n", len, feat);
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		return -1;
	}

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	if (unlikely(val == NULL || len == 0))
		len = repeat_first = 0;
	tot_len = 3 + repeat_first + len;

	if (DCCP_SKB_CB(skb)->dccpd_opt_len + tot_len > DCCP_MAX_OPT_LEN) {
		DCCP_WARN("packet too small for feature %d option!\n", feat);
		return -1;
	}
	DCCP_SKB_CB(skb)->dccpd_opt_len += tot_len;
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	to    = skb_push(skb, tot_len);
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	*to++ = type;
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	*to++ = tot_len;
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	*to++ = feat;

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	if (repeat_first)
		*to++ = *val;
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	if (len)
		memcpy(to, val, len);
	return 0;
}

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/* The length of all options needs to be a multiple of 4 (5.8) */
static void dccp_insert_option_padding(struct sk_buff *skb)
{
	int padding = DCCP_SKB_CB(skb)->dccpd_opt_len % 4;

	if (padding != 0) {
		padding = 4 - padding;
		memset(skb_push(skb, padding), 0, padding);
		DCCP_SKB_CB(skb)->dccpd_opt_len += padding;
	}
}

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int dccp_insert_options(struct sock *sk, struct sk_buff *skb)
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{
	struct dccp_sock *dp = dccp_sk(sk);

	DCCP_SKB_CB(skb)->dccpd_opt_len = 0;

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	if (dp->dccps_send_ndp_count && dccp_insert_option_ndp(sk, skb))
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		return -1;
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	if (DCCP_SKB_CB(skb)->dccpd_type != DCCP_PKT_DATA) {

		/* Feature Negotiation */
		if (dccp_feat_insert_opts(dp, NULL, skb))
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			return -1;
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		if (DCCP_SKB_CB(skb)->dccpd_type == DCCP_PKT_REQUEST) {
			/*
			 * Obtain RTT sample from Request/Response exchange.
			 * This is currently used in CCID 3 initialisation.
			 */
			if (dccp_insert_option_timestamp(sk, skb))
				return -1;

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		} else if (dp->dccps_hc_rx_ackvec != NULL &&
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			   dccp_ackvec_pending(dp->dccps_hc_rx_ackvec) &&
			   dccp_insert_option_ackvec(sk, skb)) {
				return -1;
		}
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	}

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	if (dp->dccps_hc_rx_insert_options) {
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		if (ccid_hc_rx_insert_options(dp->dccps_hc_rx_ccid, sk, skb))
			return -1;
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		dp->dccps_hc_rx_insert_options = 0;
	}
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	if (dp->dccps_timestamp_echo != 0 &&
	    dccp_insert_option_timestamp_echo(dp, NULL, skb))
		return -1;

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	dccp_insert_option_padding(skb);
	return 0;
}
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int dccp_insert_options_rsk(struct dccp_request_sock *dreq, struct sk_buff *skb)
{
	DCCP_SKB_CB(skb)->dccpd_opt_len = 0;
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	if (dccp_feat_insert_opts(NULL, dreq, skb))
		return -1;

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	if (dreq->dreq_timestamp_echo != 0 &&
	    dccp_insert_option_timestamp_echo(NULL, dreq, skb))
		return -1;
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	dccp_insert_option_padding(skb);
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	return 0;
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}