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https://git.kernel.org/pub/scm/linux/kernel/git/torvalds/linux.git
synced 2026-05-02 10:59:18 -04:00
staging: wilc1000: rename uniHostIFkeyAttr of struct key_attr
This patch renames uniHostIFkeyAttr of struct key_attr to attr to avoid CamelCase naming convention. Signed-off-by: Leo Kim <leo.kim@atmel.com> Signed-off-by: Tony Cho <tony.cho@atmel.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
This commit is contained in:
committed by
Greg Kroah-Hartman
parent
0d17e38201
commit
73b2e381d2
@@ -92,7 +92,7 @@ union host_if_key_attr {
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struct key_attr {
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enum KEY_TYPE type;
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u8 action;
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union host_if_key_attr uniHostIFkeyAttr;
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union host_if_key_attr attr;
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};
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struct scan_attr {
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@@ -1786,41 +1786,38 @@ static int Handle_Key(struct host_if_drv *hif_drv,
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if (pstrHostIFkeyAttr->action & ADDKEY_AP) {
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PRINT_D(HOSTINF_DBG, "Handling WEP key\n");
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PRINT_D(GENERIC_DBG, "ID Hostint is %d\n", (pstrHostIFkeyAttr->uniHostIFkeyAttr.wep.index));
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PRINT_D(GENERIC_DBG, "ID Hostint is %d\n", (pstrHostIFkeyAttr->attr.wep.index));
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strWIDList[0].id = (u16)WID_11I_MODE;
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strWIDList[0].type = WID_CHAR;
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strWIDList[0].size = sizeof(char);
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strWIDList[0].val = (s8 *)(&(pstrHostIFkeyAttr->uniHostIFkeyAttr.wep.mode));
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strWIDList[0].val = (s8 *)(&(pstrHostIFkeyAttr->attr.wep.mode));
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strWIDList[1].id = WID_AUTH_TYPE;
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strWIDList[1].type = WID_CHAR;
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strWIDList[1].size = sizeof(char);
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strWIDList[1].val = (s8 *)(&(pstrHostIFkeyAttr->uniHostIFkeyAttr.wep.auth_type));
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strWIDList[1].val = (s8 *)(&(pstrHostIFkeyAttr->attr.wep.auth_type));
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strWIDList[2].id = (u16)WID_KEY_ID;
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strWIDList[2].type = WID_CHAR;
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strWIDList[2].val = (s8 *)(&(pstrHostIFkeyAttr->uniHostIFkeyAttr.wep.index));
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strWIDList[2].val = (s8 *)(&(pstrHostIFkeyAttr->attr.wep.index));
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strWIDList[2].size = sizeof(char);
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pu8keybuf = kmalloc(pstrHostIFkeyAttr->uniHostIFkeyAttr.wep.key_len, GFP_KERNEL);
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pu8keybuf = kmalloc(pstrHostIFkeyAttr->attr.wep.key_len, GFP_KERNEL);
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if (pu8keybuf == NULL) {
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PRINT_ER("No buffer to send Key\n");
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return -1;
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}
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memcpy(pu8keybuf, pstrHostIFkeyAttr->uniHostIFkeyAttr.wep.key,
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pstrHostIFkeyAttr->uniHostIFkeyAttr.wep.key_len);
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memcpy(pu8keybuf, pstrHostIFkeyAttr->attr.wep.key,
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pstrHostIFkeyAttr->attr.wep.key_len);
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kfree(pstrHostIFkeyAttr->uniHostIFkeyAttr.wep.key);
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kfree(pstrHostIFkeyAttr->attr.wep.key);
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strWIDList[3].id = (u16)WID_WEP_KEY_VALUE;
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strWIDList[3].type = WID_STR;
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strWIDList[3].size = pstrHostIFkeyAttr->uniHostIFkeyAttr.wep.key_len;
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strWIDList[3].size = pstrHostIFkeyAttr->attr.wep.key_len;
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strWIDList[3].val = (s8 *)pu8keybuf;
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@@ -1833,24 +1830,21 @@ static int Handle_Key(struct host_if_drv *hif_drv,
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if (pstrHostIFkeyAttr->action & ADDKEY) {
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PRINT_D(HOSTINF_DBG, "Handling WEP key\n");
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pu8keybuf = kmalloc(pstrHostIFkeyAttr->uniHostIFkeyAttr.wep.key_len + 2, GFP_KERNEL);
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pu8keybuf = kmalloc(pstrHostIFkeyAttr->attr.wep.key_len + 2, GFP_KERNEL);
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if (pu8keybuf == NULL) {
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PRINT_ER("No buffer to send Key\n");
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return -1;
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}
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pu8keybuf[0] = pstrHostIFkeyAttr->uniHostIFkeyAttr.wep.index;
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memcpy(pu8keybuf + 1, &pstrHostIFkeyAttr->uniHostIFkeyAttr.wep.key_len, 1);
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memcpy(pu8keybuf + 2, pstrHostIFkeyAttr->uniHostIFkeyAttr.wep.key,
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pstrHostIFkeyAttr->uniHostIFkeyAttr.wep.key_len);
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kfree(pstrHostIFkeyAttr->uniHostIFkeyAttr.wep.key);
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pu8keybuf[0] = pstrHostIFkeyAttr->attr.wep.index;
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memcpy(pu8keybuf + 1, &pstrHostIFkeyAttr->attr.wep.key_len, 1);
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memcpy(pu8keybuf + 2, pstrHostIFkeyAttr->attr.wep.key,
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pstrHostIFkeyAttr->attr.wep.key_len);
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kfree(pstrHostIFkeyAttr->attr.wep.key);
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strWID.id = (u16)WID_ADD_WEP_KEY;
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strWID.type = WID_STR;
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strWID.val = (s8 *)pu8keybuf;
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strWID.size = pstrHostIFkeyAttr->uniHostIFkeyAttr.wep.key_len + 2;
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strWID.size = pstrHostIFkeyAttr->attr.wep.key_len + 2;
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s32Error = send_config_pkt(SET_CFG, &strWID, 1,
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get_id_from_handler(hif_drv));
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@@ -1861,7 +1855,7 @@ static int Handle_Key(struct host_if_drv *hif_drv,
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strWID.id = (u16)WID_REMOVE_WEP_KEY;
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strWID.type = WID_STR;
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s8idxarray[0] = (s8)pstrHostIFkeyAttr->uniHostIFkeyAttr.wep.index;
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s8idxarray[0] = (s8)pstrHostIFkeyAttr->attr.wep.index;
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strWID.val = s8idxarray;
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strWID.size = 1;
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@@ -1870,7 +1864,7 @@ static int Handle_Key(struct host_if_drv *hif_drv,
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} else {
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strWID.id = (u16)WID_KEY_ID;
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strWID.type = WID_CHAR;
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strWID.val = (s8 *)(&(pstrHostIFkeyAttr->uniHostIFkeyAttr.wep.index));
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strWID.val = (s8 *)(&(pstrHostIFkeyAttr->attr.wep.index));
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strWID.size = sizeof(char);
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PRINT_D(HOSTINF_DBG, "Setting default key index\n");
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@@ -1892,20 +1886,18 @@ static int Handle_Key(struct host_if_drv *hif_drv,
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memset(pu8keybuf, 0, RX_MIC_KEY_MSG_LEN);
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if (pstrHostIFkeyAttr->uniHostIFkeyAttr.wpa.pu8seq != NULL)
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memcpy(pu8keybuf + 6, pstrHostIFkeyAttr->uniHostIFkeyAttr.wpa.pu8seq, 8);
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if (pstrHostIFkeyAttr->attr.wpa.pu8seq != NULL)
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memcpy(pu8keybuf + 6, pstrHostIFkeyAttr->attr.wpa.pu8seq, 8);
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memcpy(pu8keybuf + 14, &pstrHostIFkeyAttr->attr.wpa.u8keyidx, 1);
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memcpy(pu8keybuf + 15, &pstrHostIFkeyAttr->attr.wpa.u8Keylen, 1);
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memcpy(pu8keybuf + 16, pstrHostIFkeyAttr->attr.wpa.pu8key,
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pstrHostIFkeyAttr->attr.wpa.u8Keylen);
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memcpy(pu8keybuf + 14, &pstrHostIFkeyAttr->uniHostIFkeyAttr.wpa.u8keyidx, 1);
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memcpy(pu8keybuf + 15, &pstrHostIFkeyAttr->uniHostIFkeyAttr.wpa.u8Keylen, 1);
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memcpy(pu8keybuf + 16, pstrHostIFkeyAttr->uniHostIFkeyAttr.wpa.pu8key,
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pstrHostIFkeyAttr->uniHostIFkeyAttr.wpa.u8Keylen);
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strWIDList[0].id = (u16)WID_11I_MODE;
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strWIDList[0].type = WID_CHAR;
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strWIDList[0].size = sizeof(char);
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strWIDList[0].val = (s8 *)(&(pstrHostIFkeyAttr->uniHostIFkeyAttr.wpa.u8Ciphermode));
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strWIDList[0].val = (s8 *)(&(pstrHostIFkeyAttr->attr.wpa.u8Ciphermode));
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strWIDList[1].id = (u16)WID_ADD_RX_GTK;
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strWIDList[1].type = WID_STR;
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@@ -1936,13 +1928,11 @@ static int Handle_Key(struct host_if_drv *hif_drv,
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else
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PRINT_ER("Couldn't handle WPARxGtk while enuHostIFstate is not HOST_IF_CONNECTED\n");
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memcpy(pu8keybuf + 6, pstrHostIFkeyAttr->uniHostIFkeyAttr.wpa.pu8seq, 8);
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memcpy(pu8keybuf + 14, &pstrHostIFkeyAttr->uniHostIFkeyAttr.wpa.u8keyidx, 1);
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memcpy(pu8keybuf + 15, &pstrHostIFkeyAttr->uniHostIFkeyAttr.wpa.u8Keylen, 1);
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memcpy(pu8keybuf + 16, pstrHostIFkeyAttr->uniHostIFkeyAttr.wpa.pu8key,
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pstrHostIFkeyAttr->uniHostIFkeyAttr.wpa.u8Keylen);
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memcpy(pu8keybuf + 6, pstrHostIFkeyAttr->attr.wpa.pu8seq, 8);
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memcpy(pu8keybuf + 14, &pstrHostIFkeyAttr->attr.wpa.u8keyidx, 1);
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memcpy(pu8keybuf + 15, &pstrHostIFkeyAttr->attr.wpa.u8Keylen, 1);
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memcpy(pu8keybuf + 16, pstrHostIFkeyAttr->attr.wpa.pu8key,
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pstrHostIFkeyAttr->attr.wpa.u8Keylen);
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strWID.id = (u16)WID_ADD_RX_GTK;
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strWID.type = WID_STR;
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@@ -1956,8 +1946,8 @@ static int Handle_Key(struct host_if_drv *hif_drv,
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up(&hif_drv->hSemTestKeyBlock);
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}
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_WPARxGtk_end_case_:
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kfree(pstrHostIFkeyAttr->uniHostIFkeyAttr.wpa.pu8key);
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kfree(pstrHostIFkeyAttr->uniHostIFkeyAttr.wpa.pu8seq);
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kfree(pstrHostIFkeyAttr->attr.wpa.pu8key);
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kfree(pstrHostIFkeyAttr->attr.wpa.pu8seq);
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if (ret == -1)
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return ret;
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@@ -1978,17 +1968,16 @@ static int Handle_Key(struct host_if_drv *hif_drv,
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}
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memcpy(pu8keybuf, pstrHostIFkeyAttr->uniHostIFkeyAttr.wpa.pu8macaddr, 6);
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memcpy(pu8keybuf + 6, &pstrHostIFkeyAttr->uniHostIFkeyAttr.wpa.u8keyidx, 1);
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memcpy(pu8keybuf + 7, &pstrHostIFkeyAttr->uniHostIFkeyAttr.wpa.u8Keylen, 1);
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memcpy(pu8keybuf + 8, pstrHostIFkeyAttr->uniHostIFkeyAttr.wpa.pu8key,
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pstrHostIFkeyAttr->uniHostIFkeyAttr.wpa.u8Keylen);
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memcpy(pu8keybuf, pstrHostIFkeyAttr->attr.wpa.pu8macaddr, 6);
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memcpy(pu8keybuf + 6, &pstrHostIFkeyAttr->attr.wpa.u8keyidx, 1);
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memcpy(pu8keybuf + 7, &pstrHostIFkeyAttr->attr.wpa.u8Keylen, 1);
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memcpy(pu8keybuf + 8, pstrHostIFkeyAttr->attr.wpa.pu8key,
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pstrHostIFkeyAttr->attr.wpa.u8Keylen);
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strWIDList[0].id = (u16)WID_11I_MODE;
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strWIDList[0].type = WID_CHAR;
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strWIDList[0].size = sizeof(char);
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strWIDList[0].val = (s8 *)(&(pstrHostIFkeyAttr->uniHostIFkeyAttr.wpa.u8Ciphermode));
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strWIDList[0].val = (s8 *)(&(pstrHostIFkeyAttr->attr.wpa.u8Ciphermode));
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strWIDList[1].id = (u16)WID_ADD_PTK;
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strWIDList[1].type = WID_STR;
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@@ -2014,11 +2003,10 @@ static int Handle_Key(struct host_if_drv *hif_drv,
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}
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memcpy(pu8keybuf, pstrHostIFkeyAttr->uniHostIFkeyAttr.wpa.pu8macaddr, 6);
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memcpy(pu8keybuf + 6, &pstrHostIFkeyAttr->uniHostIFkeyAttr.wpa.u8Keylen, 1);
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memcpy(pu8keybuf + 7, pstrHostIFkeyAttr->uniHostIFkeyAttr.wpa.pu8key,
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pstrHostIFkeyAttr->uniHostIFkeyAttr.wpa.u8Keylen);
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memcpy(pu8keybuf, pstrHostIFkeyAttr->attr.wpa.pu8macaddr, 6);
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memcpy(pu8keybuf + 6, &pstrHostIFkeyAttr->attr.wpa.u8Keylen, 1);
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memcpy(pu8keybuf + 7, pstrHostIFkeyAttr->attr.wpa.pu8key,
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pstrHostIFkeyAttr->attr.wpa.u8Keylen);
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strWID.id = (u16)WID_ADD_PTK;
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strWID.type = WID_STR;
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@@ -2032,7 +2020,7 @@ static int Handle_Key(struct host_if_drv *hif_drv,
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}
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_WPAPtk_end_case_:
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kfree(pstrHostIFkeyAttr->uniHostIFkeyAttr.wpa.pu8key);
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kfree(pstrHostIFkeyAttr->attr.wpa.pu8key);
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if (ret == -1)
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return ret;
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@@ -2043,24 +2031,23 @@ static int Handle_Key(struct host_if_drv *hif_drv,
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PRINT_D(HOSTINF_DBG, "Handling PMKSA key\n");
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pu8keybuf = kmalloc((pstrHostIFkeyAttr->uniHostIFkeyAttr.pmkid.numpmkid * PMKSA_KEY_LEN) + 1, GFP_KERNEL);
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pu8keybuf = kmalloc((pstrHostIFkeyAttr->attr.pmkid.numpmkid * PMKSA_KEY_LEN) + 1, GFP_KERNEL);
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if (pu8keybuf == NULL) {
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PRINT_ER("No buffer to send PMKSA Key\n");
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return -1;
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}
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pu8keybuf[0] = pstrHostIFkeyAttr->uniHostIFkeyAttr.pmkid.numpmkid;
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pu8keybuf[0] = pstrHostIFkeyAttr->attr.pmkid.numpmkid;
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for (i = 0; i < pstrHostIFkeyAttr->uniHostIFkeyAttr.pmkid.numpmkid; i++) {
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memcpy(pu8keybuf + ((PMKSA_KEY_LEN * i) + 1), pstrHostIFkeyAttr->uniHostIFkeyAttr.pmkid.pmkidlist[i].bssid, ETH_ALEN);
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memcpy(pu8keybuf + ((PMKSA_KEY_LEN * i) + ETH_ALEN + 1), pstrHostIFkeyAttr->uniHostIFkeyAttr.pmkid.pmkidlist[i].pmkid, PMKID_LEN);
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for (i = 0; i < pstrHostIFkeyAttr->attr.pmkid.numpmkid; i++) {
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memcpy(pu8keybuf + ((PMKSA_KEY_LEN * i) + 1), pstrHostIFkeyAttr->attr.pmkid.pmkidlist[i].bssid, ETH_ALEN);
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memcpy(pu8keybuf + ((PMKSA_KEY_LEN * i) + ETH_ALEN + 1), pstrHostIFkeyAttr->attr.pmkid.pmkidlist[i].pmkid, PMKID_LEN);
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}
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strWID.id = (u16)WID_PMKID_INFO;
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strWID.type = WID_STR;
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strWID.val = (s8 *)pu8keybuf;
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strWID.size = (pstrHostIFkeyAttr->uniHostIFkeyAttr.pmkid.numpmkid * PMKSA_KEY_LEN) + 1;
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strWID.size = (pstrHostIFkeyAttr->attr.pmkid.numpmkid * PMKSA_KEY_LEN) + 1;
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s32Error = send_config_pkt(SET_CFG, &strWID, 1,
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get_id_from_handler(hif_drv));
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@@ -3213,7 +3200,7 @@ int host_int_remove_wep_key(struct host_if_drv *hif_drv, u8 index)
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msg.body.key_info.type = WEP;
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msg.body.key_info.action = REMOVEKEY;
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msg.drv = hif_drv;
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msg.body.key_info.uniHostIFkeyAttr.wep.index = index;
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msg.body.key_info.attr.wep.index = index;
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result = wilc_mq_send(&gMsgQHostIF, &msg, sizeof(struct host_if_msg));
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if (result)
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@@ -3242,9 +3229,7 @@ s32 host_int_set_WEPDefaultKeyID(struct host_if_drv *hif_drv, u8 u8Index)
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msg.body.key_info.type = WEP;
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msg.body.key_info.action = DEFAULTKEY;
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msg.drv = hif_drv;
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msg.body.key_info.uniHostIFkeyAttr.wep.index = u8Index;
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msg.body.key_info.attr.wep.index = u8Index;
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s32Error = wilc_mq_send(&gMsgQHostIF, &msg, sizeof(struct host_if_msg));
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if (s32Error)
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@@ -3276,18 +3261,10 @@ s32 host_int_add_wep_key_bss_sta(struct host_if_drv *hif_drv,
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msg.body.key_info.type = WEP;
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msg.body.key_info.action = ADDKEY;
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msg.drv = hif_drv;
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msg.body.key_info.
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uniHostIFkeyAttr.wep.key = kmalloc(u8WepKeylen, GFP_KERNEL);
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memcpy(msg.body.key_info.uniHostIFkeyAttr.wep.key,
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pu8WepKey, u8WepKeylen);
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msg.body.key_info.uniHostIFkeyAttr.wep.key_len = (u8WepKeylen);
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msg.body.key_info.uniHostIFkeyAttr.wep.index = u8Keyidx;
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msg.body.key_info.attr.wep.key = kmalloc(u8WepKeylen, GFP_KERNEL);
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memcpy(msg.body.key_info.attr.wep.key, pu8WepKey, u8WepKeylen);
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msg.body.key_info.attr.wep.key_len = (u8WepKeylen);
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msg.body.key_info.attr.wep.index = u8Keyidx;
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s32Error = wilc_mq_send(&gMsgQHostIF, &msg, sizeof(struct host_if_msg));
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if (s32Error)
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@@ -3326,23 +3303,12 @@ s32 host_int_add_wep_key_bss_ap(struct host_if_drv *hif_drv,
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msg.body.key_info.type = WEP;
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msg.body.key_info.action = ADDKEY_AP;
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msg.drv = hif_drv;
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msg.body.key_info.
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uniHostIFkeyAttr.wep.key = kmalloc(u8WepKeylen, GFP_KERNEL);
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memcpy(msg.body.key_info.uniHostIFkeyAttr.wep.key,
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pu8WepKey, (u8WepKeylen));
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msg.body.key_info.uniHostIFkeyAttr.wep.key_len = (u8WepKeylen);
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msg.body.key_info.uniHostIFkeyAttr.wep.index = u8Keyidx;
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msg.body.key_info.uniHostIFkeyAttr.wep.mode = u8mode;
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msg.body.key_info.uniHostIFkeyAttr.wep.auth_type = tenuAuth_type;
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msg.body.key_info.attr.wep.key = kmalloc(u8WepKeylen, GFP_KERNEL);
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memcpy(msg.body.key_info.attr.wep.key, pu8WepKey, (u8WepKeylen));
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msg.body.key_info.attr.wep.key_len = (u8WepKeylen);
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msg.body.key_info.attr.wep.index = u8Keyidx;
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msg.body.key_info.attr.wep.mode = u8mode;
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msg.body.key_info.attr.wep.auth_type = tenuAuth_type;
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s32Error = wilc_mq_send(&gMsgQHostIF, &msg, sizeof(struct host_if_msg));
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@@ -3381,22 +3347,16 @@ s32 host_int_add_ptk(struct host_if_drv *hif_drv, const u8 *pu8Ptk,
|
||||
msg.body.key_info.type = WPAPtk;
|
||||
if (mode == AP_MODE) {
|
||||
msg.body.key_info.action = ADDKEY_AP;
|
||||
msg.body.key_info.uniHostIFkeyAttr.wpa.u8keyidx = u8Idx;
|
||||
msg.body.key_info.attr.wpa.u8keyidx = u8Idx;
|
||||
}
|
||||
if (mode == STATION_MODE)
|
||||
msg.body.key_info.action = ADDKEY;
|
||||
|
||||
|
||||
msg.body.key_info.
|
||||
uniHostIFkeyAttr.wpa.pu8key = kmalloc(u8PtkKeylen, GFP_KERNEL);
|
||||
|
||||
|
||||
memcpy(msg.body.key_info.uniHostIFkeyAttr.wpa.pu8key,
|
||||
pu8Ptk, u8PtkKeylen);
|
||||
msg.body.key_info.attr.wpa.pu8key = kmalloc(u8PtkKeylen, GFP_KERNEL);
|
||||
memcpy(msg.body.key_info.attr.wpa.pu8key, pu8Ptk, u8PtkKeylen);
|
||||
|
||||
if (pu8RxMic != NULL) {
|
||||
|
||||
memcpy(msg.body.key_info.uniHostIFkeyAttr.wpa.pu8key + 16,
|
||||
memcpy(msg.body.key_info.attr.wpa.pu8key + 16,
|
||||
pu8RxMic, RX_MIC_KEY_LEN);
|
||||
if (INFO) {
|
||||
for (i = 0; i < RX_MIC_KEY_LEN; i++)
|
||||
@@ -3404,8 +3364,7 @@ s32 host_int_add_ptk(struct host_if_drv *hif_drv, const u8 *pu8Ptk,
|
||||
}
|
||||
}
|
||||
if (pu8TxMic != NULL) {
|
||||
|
||||
memcpy(msg.body.key_info.uniHostIFkeyAttr.wpa.pu8key + 24,
|
||||
memcpy(msg.body.key_info.attr.wpa.pu8key + 24,
|
||||
pu8TxMic, TX_MIC_KEY_LEN);
|
||||
if (INFO) {
|
||||
for (i = 0; i < TX_MIC_KEY_LEN; i++)
|
||||
@@ -3413,10 +3372,9 @@ s32 host_int_add_ptk(struct host_if_drv *hif_drv, const u8 *pu8Ptk,
|
||||
}
|
||||
}
|
||||
|
||||
msg.body.key_info.uniHostIFkeyAttr.wpa.u8Keylen = u8KeyLen;
|
||||
|
||||
msg.body.key_info.uniHostIFkeyAttr.wpa.u8Ciphermode = u8Ciphermode;
|
||||
msg.body.key_info.uniHostIFkeyAttr.wpa.pu8macaddr = mac_addr;
|
||||
msg.body.key_info.attr.wpa.u8Keylen = u8KeyLen;
|
||||
msg.body.key_info.attr.wpa.u8Ciphermode = u8Ciphermode;
|
||||
msg.body.key_info.attr.wpa.pu8macaddr = mac_addr;
|
||||
msg.drv = hif_drv;
|
||||
|
||||
s32Error = wilc_mq_send(&gMsgQHostIF, &msg, sizeof(struct host_if_msg));
|
||||
@@ -3453,10 +3411,8 @@ s32 host_int_add_rx_gtk(struct host_if_drv *hif_drv, const u8 *pu8RxGtk,
|
||||
u8KeyLen += TX_MIC_KEY_LEN;
|
||||
if (KeyRSC != NULL) {
|
||||
msg.body.key_info.
|
||||
uniHostIFkeyAttr.wpa.pu8seq = kmalloc(u32KeyRSClen, GFP_KERNEL);
|
||||
|
||||
memcpy(msg.body.key_info.uniHostIFkeyAttr.wpa.pu8seq,
|
||||
KeyRSC, u32KeyRSClen);
|
||||
attr.wpa.pu8seq = kmalloc(u32KeyRSClen, GFP_KERNEL);
|
||||
memcpy(msg.body.key_info.attr.wpa.pu8seq,KeyRSC, u32KeyRSClen);
|
||||
}
|
||||
|
||||
|
||||
@@ -3466,35 +3422,28 @@ s32 host_int_add_rx_gtk(struct host_if_drv *hif_drv, const u8 *pu8RxGtk,
|
||||
|
||||
if (mode == AP_MODE) {
|
||||
msg.body.key_info.action = ADDKEY_AP;
|
||||
msg.body.key_info.uniHostIFkeyAttr.wpa.u8Ciphermode = u8Ciphermode;
|
||||
msg.body.key_info.attr.wpa.u8Ciphermode = u8Ciphermode;
|
||||
}
|
||||
if (mode == STATION_MODE)
|
||||
msg.body.key_info.action = ADDKEY;
|
||||
|
||||
msg.body.key_info.attr.wpa.pu8key = kmalloc(u8KeyLen, GFP_KERNEL);
|
||||
|
||||
msg.body.key_info.
|
||||
uniHostIFkeyAttr.wpa.pu8key = kmalloc(u8KeyLen, GFP_KERNEL);
|
||||
|
||||
memcpy(msg.body.key_info.uniHostIFkeyAttr.wpa.pu8key,
|
||||
memcpy(msg.body.key_info.attr.wpa.pu8key,
|
||||
pu8RxGtk, u8GtkKeylen);
|
||||
|
||||
if (pu8RxMic != NULL) {
|
||||
|
||||
memcpy(msg.body.key_info.uniHostIFkeyAttr.wpa.pu8key + 16,
|
||||
memcpy(msg.body.key_info.attr.wpa.pu8key + 16,
|
||||
pu8RxMic, RX_MIC_KEY_LEN);
|
||||
|
||||
}
|
||||
if (pu8TxMic != NULL) {
|
||||
|
||||
memcpy(msg.body.key_info.uniHostIFkeyAttr.wpa.pu8key + 24,
|
||||
memcpy(msg.body.key_info.attr.wpa.pu8key + 24,
|
||||
pu8TxMic, TX_MIC_KEY_LEN);
|
||||
|
||||
}
|
||||
|
||||
msg.body.key_info.uniHostIFkeyAttr.wpa.u8keyidx = u8KeyIdx;
|
||||
msg.body.key_info.uniHostIFkeyAttr.wpa.u8Keylen = u8KeyLen;
|
||||
|
||||
msg.body.key_info.uniHostIFkeyAttr.wpa.u8seqlen = u32KeyRSClen;
|
||||
msg.body.key_info.attr.wpa.u8keyidx = u8KeyIdx;
|
||||
msg.body.key_info.attr.wpa.u8Keylen = u8KeyLen;
|
||||
msg.body.key_info.attr.wpa.u8seqlen = u32KeyRSClen;
|
||||
|
||||
s32Error = wilc_mq_send(&gMsgQHostIF, &msg, sizeof(struct host_if_msg));
|
||||
if (s32Error)
|
||||
@@ -3526,11 +3475,9 @@ s32 host_int_set_pmkid_info(struct host_if_drv *hif_drv, struct host_if_pmkid_at
|
||||
msg.drv = hif_drv;
|
||||
|
||||
for (i = 0; i < pu8PmkidInfoArray->numpmkid; i++) {
|
||||
|
||||
memcpy(msg.body.key_info.uniHostIFkeyAttr.pmkid.pmkidlist[i].bssid, &pu8PmkidInfoArray->pmkidlist[i].bssid,
|
||||
memcpy(msg.body.key_info.attr.pmkid.pmkidlist[i].bssid, &pu8PmkidInfoArray->pmkidlist[i].bssid,
|
||||
ETH_ALEN);
|
||||
|
||||
memcpy(msg.body.key_info.uniHostIFkeyAttr.pmkid.pmkidlist[i].pmkid, &pu8PmkidInfoArray->pmkidlist[i].pmkid,
|
||||
memcpy(msg.body.key_info.attr.pmkid.pmkidlist[i].pmkid, &pu8PmkidInfoArray->pmkidlist[i].pmkid,
|
||||
PMKID_LEN);
|
||||
}
|
||||
|
||||
|
||||
Reference in New Issue
Block a user