mirror of
https://git.kernel.org/pub/scm/network/wireless/iwd.git
synced 2024-11-22 14:49:24 +01:00
ft: remove ft_associate and helpers
The reassociation is done through netdev directly, these are no longer needed.
This commit is contained in:
parent
56dac6744b
commit
393b6ee87b
160
src/ft.c
160
src/ft.c
@ -43,7 +43,6 @@
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static const unsigned int FT_ONCHANNEL_TIME = 300u; /* ms */
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static const unsigned int FT_ONCHANNEL_TIME = 300u; /* ms */
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static ft_tx_frame_func_t tx_frame = NULL;
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static ft_tx_frame_func_t tx_frame = NULL;
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static ft_tx_associate_func_t tx_assoc = NULL;
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static struct l_queue *info_list = NULL;
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static struct l_queue *info_list = NULL;
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struct ft_info {
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struct ft_info {
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@ -224,117 +223,6 @@ static bool ft_parse_associate_resp_frame(const uint8_t *frame, size_t frame_len
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return true;
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return true;
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}
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}
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static int ft_tx_reassociate(uint32_t ifindex, uint32_t freq,
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const uint8_t *prev_bssid)
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{
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struct netdev *netdev = netdev_find(ifindex);
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struct handshake_state *hs = netdev_get_handshake(netdev);
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struct iovec iov[3];
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int iov_elems = 0;
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uint32_t kck_len = handshake_state_get_kck_len(hs);
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bool is_rsn = hs->supplicant_ie != NULL;
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uint8_t *rsne = NULL;
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if (is_rsn) {
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struct ie_rsn_info rsn_info;
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/*
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* Rebuild the RSNE to include the PMKR1Name and append
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* MDE + FTE.
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*
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* 12.8.4: "If present, the RSNE shall be set as follows:
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* - Version field shall be set to 1.
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* - PMKID Count field shall be set to 1.
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* - PMKID field shall contain the PMKR1Name.
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* - All other fields shall be as specified in 8.4.2.27
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* and 11.5.3."
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*/
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if (ie_parse_rsne_from_data(hs->supplicant_ie,
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hs->supplicant_ie[1] + 2,
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&rsn_info) < 0)
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goto error;
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rsn_info.num_pmkids = 1;
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rsn_info.pmkids = hs->pmk_r1_name;
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/* Always set OCVC false for FT for now */
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rsn_info.ocvc = false;
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rsne = alloca(256);
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ie_build_rsne(&rsn_info, rsne);
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iov[iov_elems].iov_base = rsne;
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iov[iov_elems].iov_len = rsne[1] + 2;
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iov_elems += 1;
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}
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/* The MDE advertised by the BSS must be passed verbatim */
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iov[iov_elems].iov_base = (void *) hs->mde;
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iov[iov_elems].iov_len = hs->mde[1] + 2;
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iov_elems += 1;
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if (is_rsn) {
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struct ie_ft_info ft_info;
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uint8_t *fte;
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/*
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* 12.8.4: "If present, the FTE shall be set as follows:
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* - ANonce, SNonce, R0KH-ID, and R1KH-ID shall be set to
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* the values contained in the second message of this
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* sequence.
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* - The Element Count field of the MIC Control field shall
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* be set to the number of elements protected in this
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* frame (variable).
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* [...]
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* - All other fields shall be set to 0."
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*/
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memset(&ft_info, 0, sizeof(ft_info));
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ft_info.mic_element_count = 3;
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memcpy(ft_info.r0khid, hs->r0khid, hs->r0khid_len);
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ft_info.r0khid_len = hs->r0khid_len;
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memcpy(ft_info.r1khid, hs->r1khid, 6);
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ft_info.r1khid_present = true;
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memcpy(ft_info.anonce, hs->anonce, 32);
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memcpy(ft_info.snonce, hs->snonce, 32);
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/*
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* IEEE 802.11-2020 Section 13.7.1 FT reassociation in an RSN
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*
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* "If dot11RSNAOperatingChannelValidationActivated is true and
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* the FTO indicates OCVC capability, the target AP shall
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* ensure that OCI subelement of the FTE matches by ensuring
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* that all of the following are true:
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* - OCI subelement is present
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* - Channel information in the OCI matches current
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* operating channel parameters (see 12.2.9)"
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*/
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if (hs->supplicant_ocvc && hs->chandef) {
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oci_from_chandef(hs->chandef, ft_info.oci);
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ft_info.oci_present = true;
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}
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fte = alloca(256);
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ie_build_fast_bss_transition(&ft_info, kck_len, fte);
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if (!ft_calculate_fte_mic(hs, 5, rsne, fte, NULL, ft_info.mic))
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goto error;
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/* Rebuild the FT IE now with the MIC included */
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ie_build_fast_bss_transition(&ft_info, kck_len, fte);
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iov[iov_elems].iov_base = fte;
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iov[iov_elems].iov_len = fte[1] + 2;
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iov_elems += 1;
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}
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return tx_assoc(ifindex, freq, prev_bssid, iov, iov_elems);
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error:
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return -EINVAL;
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}
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static bool ft_verify_rsne(const uint8_t *rsne, const uint8_t *pmk_r0_name,
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static bool ft_verify_rsne(const uint8_t *rsne, const uint8_t *pmk_r0_name,
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const uint8_t *authenticator_ie)
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const uint8_t *authenticator_ie)
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{
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{
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@ -762,11 +650,6 @@ void __ft_set_tx_frame_func(ft_tx_frame_func_t func)
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tx_frame = func;
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tx_frame = func;
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}
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}
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void __ft_set_tx_associate_func(ft_tx_associate_func_t func)
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{
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tx_assoc = func;
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}
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static bool ft_parse_ies(struct ft_info *info, struct handshake_state *hs,
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static bool ft_parse_ies(struct ft_info *info, struct handshake_state *hs,
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const uint8_t *ies, size_t ies_len)
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const uint8_t *ies, size_t ies_len)
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{
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{
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@ -1173,7 +1056,7 @@ static void ft_authenticate_destroy(int error, void *user_data)
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/*
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/*
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* There is no callback here because its assumed that another work item will
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* There is no callback here because its assumed that another work item will
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* be inserted following this call which will check if authentication succeeded
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* be inserted following this call which will check if authentication succeeded
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* via ft_associate.
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* via ft_handshake_setup.
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*
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*
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* If the netdev goes away while authentication is in-flight station will clear
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* If the netdev goes away while authentication is in-flight station will clear
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* the authentications during cleanup, and in turn cancel the offchannel
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* the authentications during cleanup, and in turn cancel the offchannel
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@ -1235,47 +1118,6 @@ int ft_authenticate_onchannel(uint32_t ifindex, const struct scan_bss *target)
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return 0;
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return 0;
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}
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}
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int ft_associate(uint32_t ifindex, const uint8_t *addr)
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{
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struct netdev *netdev = netdev_find(ifindex);
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struct handshake_state *hs = netdev_get_handshake(netdev);
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struct ft_info *info;
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int ret;
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/*
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* TODO: Since FT-over-DS is done early, before the time of roaming, it
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* may end up that a completely new BSS is the best candidate and
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* we haven't yet authenticated. We could actually authenticate
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* at this point, but for now just assume the caller will choose
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* a different BSS.
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*/
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info = ft_info_find(ifindex, addr);
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if (!info)
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return -ENOENT;
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/*
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* Either failed or no response. This may have been an FT-over-DS
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* attempt so clear out the entry so FT-over-Air can try again.
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*/
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if (info->status != 0) {
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int status = info->status;
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l_queue_remove(info_list, info);
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ft_info_destroy(info);
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return status;
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}
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ft_prepare_handshake(info, hs);
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ret = ft_tx_reassociate(ifindex, info->frequency, info->prev_bssid);
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/* After this no previous auths will be valid */
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ft_clear_authentications(ifindex);
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return ret;
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}
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int ft_handshake_setup(uint32_t ifindex, const uint8_t *target)
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int ft_handshake_setup(uint32_t ifindex, const uint8_t *target)
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{
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{
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struct netdev *netdev = netdev_find(ifindex);
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struct netdev *netdev = netdev_find(ifindex);
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2
src/ft.h
2
src/ft.h
@ -32,7 +32,6 @@ typedef int (*ft_tx_associate_func_t)(uint32_t ifindex, uint32_t freq,
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struct iovec *ie_iov, size_t iov_len);
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struct iovec *ie_iov, size_t iov_len);
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void __ft_set_tx_frame_func(ft_tx_frame_func_t func);
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void __ft_set_tx_frame_func(ft_tx_frame_func_t func);
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void __ft_set_tx_associate_func(ft_tx_associate_func_t func);
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int __ft_rx_associate(uint32_t ifindex, const uint8_t *frame,
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int __ft_rx_associate(uint32_t ifindex, const uint8_t *frame,
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size_t frame_len);
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size_t frame_len);
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void __ft_rx_action(uint32_t ifindex, const uint8_t *frame, size_t frame_len);
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void __ft_rx_action(uint32_t ifindex, const uint8_t *frame, size_t frame_len);
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@ -43,6 +42,5 @@ int ft_handshake_setup(uint32_t ifindex, const uint8_t *target);
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void ft_clear_authentications(uint32_t ifindex);
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void ft_clear_authentications(uint32_t ifindex);
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int ft_action(uint32_t ifindex, uint32_t freq, const struct scan_bss *target);
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int ft_action(uint32_t ifindex, uint32_t freq, const struct scan_bss *target);
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int ft_associate(uint32_t ifindex, const uint8_t *addr);
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int ft_authenticate(uint32_t ifindex, const struct scan_bss *target);
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int ft_authenticate(uint32_t ifindex, const struct scan_bss *target);
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int ft_authenticate_onchannel(uint32_t ifindex, const struct scan_bss *target);
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int ft_authenticate_onchannel(uint32_t ifindex, const struct scan_bss *target);
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