#ifndef LINUX_IEEE802154_H
#define LINUX_IEEE802154_H
#include <linux/types.h>
#include <linux/random.h>
#define IEEE802154_MTU 127
#define IEEE802154_ACK_PSDU_LEN 5
#define IEEE802154_MIN_PSDU_LEN 9
#define IEEE802154_FCS_LEN 2
#define IEEE802154_MAX_AUTH_TAG_LEN 16
#define IEEE802154_FC_LEN 2
#define IEEE802154_SEQ_LEN 1
#define IEEE802154_MAX_HEADER_LEN (2 + 1 + 20 + 14)
#define IEEE802154_MIN_HEADER_LEN (IEEE802154_ACK_PSDU_LEN - \
IEEE802154_FCS_LEN)
#define IEEE802154_PAN_ID_BROADCAST 0xffff
#define IEEE802154_ADDR_SHORT_BROADCAST 0xffff
#define IEEE802154_ADDR_SHORT_UNSPEC 0xfffe
#define IEEE802154_EXTENDED_ADDR_LEN 8
#define IEEE802154_SHORT_ADDR_LEN 2
#define IEEE802154_PAN_ID_LEN 2
#define IEEE802154_MAX_SCAN_DURATION 14
#define IEEE802154_ACTIVE_SCAN_DURATION 15
#define IEEE802154_SUPERFRAME_PERIOD 16
#define IEEE802154_SLOT_PERIOD 60
#define IEEE802154_LIFS_PERIOD 40
#define IEEE802154_SIFS_PERIOD 12
#define IEEE802154_MAX_SIFS_FRAME_SIZE 18
#define IEEE802154_MAX_CHANNEL 26
#define IEEE802154_MAX_PAGE 31
#define IEEE802154_FC_TYPE_BEACON 0x0 /* Frame is beacon */
#define IEEE802154_FC_TYPE_DATA 0x1 /* Frame is data */
#define IEEE802154_FC_TYPE_ACK 0x2 /* Frame is acknowledgment */
#define IEEE802154_FC_TYPE_MAC_CMD 0x3 /* Frame is MAC command */
#define IEEE802154_FC_TYPE_SHIFT 0
#define IEEE802154_FC_TYPE_MASK ((1 << 3) - 1)
#define IEEE802154_FC_TYPE(x) ((x & IEEE802154_FC_TYPE_MASK) >> IEEE802154_FC_TYPE_SHIFT)
#define IEEE802154_FC_SET_TYPE(v, x) do { \
v = (((v) & ~IEEE802154_FC_TYPE_MASK) | \
(((x) << IEEE802154_FC_TYPE_SHIFT) & IEEE802154_FC_TYPE_MASK)); \
} while (0)
#define IEEE802154_FC_SECEN_SHIFT 3
#define IEEE802154_FC_SECEN (1 << IEEE802154_FC_SECEN_SHIFT)
#define IEEE802154_FC_FRPEND_SHIFT 4
#define IEEE802154_FC_FRPEND (1 << IEEE802154_FC_FRPEND_SHIFT)
#define IEEE802154_FC_ACK_REQ_SHIFT 5
#define IEEE802154_FC_ACK_REQ (1 << IEEE802154_FC_ACK_REQ_SHIFT)
#define IEEE802154_FC_INTRA_PAN_SHIFT 6
#define IEEE802154_FC_INTRA_PAN (1 << IEEE802154_FC_INTRA_PAN_SHIFT)
#define IEEE802154_FC_SAMODE_SHIFT 14
#define IEEE802154_FC_SAMODE_MASK (3 << IEEE802154_FC_SAMODE_SHIFT)
#define IEEE802154_FC_DAMODE_SHIFT 10
#define IEEE802154_FC_DAMODE_MASK (3 << IEEE802154_FC_DAMODE_SHIFT)
#define IEEE802154_FC_VERSION_SHIFT 12
#define IEEE802154_FC_VERSION_MASK (3 << IEEE802154_FC_VERSION_SHIFT)
#define IEEE802154_FC_VERSION(x) ((x & IEEE802154_FC_VERSION_MASK) >> IEEE802154_FC_VERSION_SHIFT)
#define IEEE802154_FC_SAMODE(x) \
(((x) & IEEE802154_FC_SAMODE_MASK) >> IEEE802154_FC_SAMODE_SHIFT)
#define IEEE802154_FC_DAMODE(x) \
(((x) & IEEE802154_FC_DAMODE_MASK) >> IEEE802154_FC_DAMODE_SHIFT)
#define IEEE802154_SCF_SECLEVEL_MASK 7
#define IEEE802154_SCF_SECLEVEL_SHIFT 0
#define IEEE802154_SCF_SECLEVEL(x) (x & IEEE802154_SCF_SECLEVEL_MASK)
#define IEEE802154_SCF_KEY_ID_MODE_SHIFT 3
#define IEEE802154_SCF_KEY_ID_MODE_MASK (3 << IEEE802154_SCF_KEY_ID_MODE_SHIFT)
#define IEEE802154_SCF_KEY_ID_MODE(x) \
((x & IEEE802154_SCF_KEY_ID_MODE_MASK) >> IEEE802154_SCF_KEY_ID_MODE_SHIFT)
#define IEEE802154_SCF_KEY_IMPLICIT 0
#define IEEE802154_SCF_KEY_INDEX 1
#define IEEE802154_SCF_KEY_SHORT_INDEX 2
#define IEEE802154_SCF_KEY_HW_INDEX 3
#define IEEE802154_SCF_SECLEVEL_NONE 0
#define IEEE802154_SCF_SECLEVEL_MIC32 1
#define IEEE802154_SCF_SECLEVEL_MIC64 2
#define IEEE802154_SCF_SECLEVEL_MIC128 3
#define IEEE802154_SCF_SECLEVEL_ENC 4
#define IEEE802154_SCF_SECLEVEL_ENC_MIC32 5
#define IEEE802154_SCF_SECLEVEL_ENC_MIC64 6
#define IEEE802154_SCF_SECLEVEL_ENC_MIC128 7
#define IEEE802154_MFR_SIZE 2 /* 2 octets */
#define IEEE802154_CMD_ASSOCIATION_REQ 0x01
#define IEEE802154_CMD_ASSOCIATION_RESP 0x02
#define IEEE802154_CMD_DISASSOCIATION_NOTIFY 0x03
#define IEEE802154_CMD_DATA_REQ 0x04
#define IEEE802154_CMD_PANID_CONFLICT_NOTIFY 0x05
#define IEEE802154_CMD_ORPHAN_NOTIFY 0x06
#define IEEE802154_CMD_BEACON_REQ 0x07
#define IEEE802154_CMD_COORD_REALIGN_NOTIFY 0x08
#define IEEE802154_CMD_GTS_REQ 0x09
enum {
IEEE802154_SUCCESS = 0x0,
IEEE802154_MAC_ERROR = 0x1,
IEEE802154_CANCELLED = 0x2,
IEEE802154_READY_FOR_POLL = 0x3,
IEEE802154_COUNTER_ERROR = 0xdb,
IEEE802154_IMPROPER_KEY_TYPE = 0xdc,
IEEE802154_IMPROPER_SECURITY_LEVEL = 0xdd,
IEEE802154_UNSUPPORTED_LEGACY = 0xde,
IEEE802154_UNSUPPORTED_SECURITY = 0xdf,
IEEE802154_BEACON_LOST = 0xe0,
IEEE802154_CHANNEL_ACCESS_FAILURE = 0xe1,
IEEE802154_DENIED = 0xe2,
IEEE802154_DISABLE_TRX_FAILURE = 0xe3,
IEEE802154_FAILED_SECURITY_CHECK = 0xe4,
IEEE802154_FRAME_TOO_LONG = 0xe5,
IEEE802154_INVALID_GTS = 0xe6,
IEEE802154_INVALID_HANDLE = 0xe7,
IEEE802154_INVALID_PARAMETER = 0xe8,
IEEE802154_NO_ACK = 0xe9,
IEEE802154_NO_BEACON = 0xea,
IEEE802154_NO_DATA = 0xeb,
IEEE802154_NO_SHORT_ADDRESS = 0xec,
IEEE802154_OUT_OF_CAP = 0xed,
IEEE802154_PAN_ID_CONFLICT = 0xee,
IEEE802154_REALIGNMENT = 0xef,
IEEE802154_TRANSACTION_EXPIRED = 0xf0,
IEEE802154_TRANSACTION_OVERFLOW = 0xf1,
IEEE802154_TX_ACTIVE = 0xf2,
IEEE802154_UNAVAILABLE_KEY = 0xf3,
IEEE802154_UNSUPPORTED_ATTRIBUTE = 0xf4,
IEEE802154_INVALID_ADDRESS = 0xf5,
IEEE802154_ON_TIME_TOO_LONG = 0xf6,
IEEE802154_PAST_TIME = 0xf7,
IEEE802154_TRACKING_OFF = 0xf8,
IEEE802154_INVALID_INDEX = 0xf9,
IEEE802154_LIMIT_REACHED = 0xfa,
IEEE802154_READ_ONLY = 0xfb,
IEEE802154_SCAN_IN_PROGRESS = 0xfc,
IEEE802154_SUPERFRAME_OVERLAP = 0xfd,
IEEE802154_SYSTEM_ERROR = 0xff,
};
enum ieee802154_filtering_level {
IEEE802154_FILTERING_NONE,
IEEE802154_FILTERING_1_FCS,
IEEE802154_FILTERING_2_PROMISCUOUS,
IEEE802154_FILTERING_3_SCAN,
IEEE802154_FILTERING_4_FRAME_FIELDS,
};
#define IEEE802154_FCTL_FTYPE 0x0003
#define IEEE802154_FCTL_ACKREQ 0x0020
#define IEEE802154_FCTL_SECEN 0x0004
#define IEEE802154_FCTL_INTRA_PAN 0x0040
#define IEEE802154_FCTL_DADDR 0x0c00
#define IEEE802154_FCTL_SADDR 0xc000
#define IEEE802154_FTYPE_DATA 0x0001
#define IEEE802154_FCTL_ADDR_NONE 0x0000
#define IEEE802154_FCTL_DADDR_SHORT 0x0800
#define IEEE802154_FCTL_DADDR_EXTENDED 0x0c00
#define IEEE802154_FCTL_SADDR_SHORT 0x8000
#define IEEE802154_FCTL_SADDR_EXTENDED 0xc000
static inline int ieee802154_is_data(__le16 fc)
{
return (fc & cpu_to_le16(IEEE802154_FCTL_FTYPE)) ==
cpu_to_le16(IEEE802154_FTYPE_DATA);
}
static inline bool ieee802154_is_secen(__le16 fc)
{
return fc & cpu_to_le16(IEEE802154_FCTL_SECEN);
}
static inline bool ieee802154_is_ackreq(__le16 fc)
{
return fc & cpu_to_le16(IEEE802154_FCTL_ACKREQ);
}
static inline bool ieee802154_is_intra_pan(__le16 fc)
{
return fc & cpu_to_le16(IEEE802154_FCTL_INTRA_PAN);
}
static inline __le16 ieee802154_daddr_mode(__le16 fc)
{
return fc & cpu_to_le16(IEEE802154_FCTL_DADDR);
}
static inline __le16 ieee802154_saddr_mode(__le16 fc)
{
return fc & cpu_to_le16(IEEE802154_FCTL_SADDR);
}
static inline bool ieee802154_is_valid_psdu_len(u8 len)
{
return (len == IEEE802154_ACK_PSDU_LEN ||
(len >= IEEE802154_MIN_PSDU_LEN && len <= IEEE802154_MTU));
}
static inline bool ieee802154_is_valid_extended_unicast_addr(__le64 addr)
{
return ((addr != cpu_to_le64(0x0000000000000000ULL)) &&
!(addr & cpu_to_le64(0x0100000000000000ULL)));
}
static inline bool ieee802154_is_broadcast_short_addr(__le16 addr)
{
return (addr == cpu_to_le16(IEEE802154_ADDR_SHORT_BROADCAST));
}
static inline bool ieee802154_is_unspec_short_addr(__le16 addr)
{
return (addr == cpu_to_le16(IEEE802154_ADDR_SHORT_UNSPEC));
}
static inline bool ieee802154_is_valid_src_short_addr(__le16 addr)
{
return !(ieee802154_is_broadcast_short_addr(addr) ||
ieee802154_is_unspec_short_addr(addr));
}
static inline void ieee802154_random_extended_addr(__le64 *addr)
{
get_random_bytes(addr, IEEE802154_EXTENDED_ADDR_LEN);
((u8 *)addr)[IEEE802154_EXTENDED_ADDR_LEN - 1] &= ~0x01;
((u8 *)addr)[IEEE802154_EXTENDED_ADDR_LEN - 1] |= 0x02;
}
#endif /* LINUX_IEEE802154_H */