Add incomplete management JSON IEEE 802.11

This commit is contained in:
vemax78 2013-10-06 22:37:13 +02:00
parent 680354c842
commit d8d284038f
45 changed files with 1805 additions and 717 deletions

View File

@ -51,6 +51,27 @@ ac_SOURCES = \
$(top_srcdir)/src/ac/ac_session.c \
$(top_srcdir)/src/ac/ac_discovery.c \
$(top_srcdir)/src/ac/ac_80211_json.c \
$(top_srcdir)/src/ac/ac_80211_json_addwlan.c \
$(top_srcdir)/src/ac/ac_80211_json_antenna.c \
$(top_srcdir)/src/ac/ac_80211_json_assignbssid.c \
$(top_srcdir)/src/ac/ac_80211_json_deletewlan.c \
$(top_srcdir)/src/ac/ac_80211_json_directsequencecontrol.c \
$(top_srcdir)/src/ac/ac_80211_json_ie.c \
$(top_srcdir)/src/ac/ac_80211_json_macoperation.c \
$(top_srcdir)/src/ac/ac_80211_json_miccountermeasures.c \
$(top_srcdir)/src/ac/ac_80211_json_multidomaincapability.c \
$(top_srcdir)/src/ac/ac_80211_json_ofdmcontrol.c \
$(top_srcdir)/src/ac/ac_80211_json_rateset.c \
$(top_srcdir)/src/ac/ac_80211_json_rsnaerrorreport.c \
$(top_srcdir)/src/ac/ac_80211_json_statistics.c \
$(top_srcdir)/src/ac/ac_80211_json_supportedrates.c \
$(top_srcdir)/src/ac/ac_80211_json_txpower.c \
$(top_srcdir)/src/ac/ac_80211_json_txpowerlevel.c \
$(top_srcdir)/src/ac/ac_80211_json_updatewlan.c \
$(top_srcdir)/src/ac/ac_80211_json_wtpqos.c \
$(top_srcdir)/src/ac/ac_80211_json_wtpradioconf.c \
$(top_srcdir)/src/ac/ac_80211_json_wtpradiofailalarm.c \
$(top_srcdir)/src/ac/ac_80211_json_wtpradioinformation.c \
$(top_srcdir)/src/ac/ac_dfa_join.c \
$(top_srcdir)/src/ac/ac_dfa_configure.c \
$(top_srcdir)/src/ac/ac_dfa_imagedata.c \

View File

@ -1,6 +1,61 @@
#include "ac.h"
#include "ac_json.h"
/* */
static struct ac_json_ieee80211_ops* ac_json_80211_message_elements[] = {
/* CAPWAP_ELEMENT_80211_ADD_WLAN */ &ac_json_80211_addwlan_ops,
/* CAPWAP_ELEMENT_80211_ANTENNA */ &ac_json_80211_antenna_ops,
/* CAPWAP_ELEMENT_80211_ASSIGN_BSSID */ &ac_json_80211_assignbssid_ops,
/* CAPWAP_ELEMENT_80211_DELETE_WLAN */ &ac_json_80211_deletewlan_ops,
/* CAPWAP_ELEMENT_80211_DIRECTSEQUENCECONTROL */ &ac_json_80211_directsequencecontrol_ops,
/* CAPWAP_ELEMENT_80211_IE */ &ac_json_80211_ie_ops,
/* CAPWAP_ELEMENT_80211_MACOPERATION */ &ac_json_80211_macoperation_ops,
/* CAPWAP_ELEMENT_80211_MIC_COUNTERMEASURES */ &ac_json_80211_miccountermeasures_ops,
/* CAPWAP_ELEMENT_80211_MULTIDOMAINCAPABILITY */ &ac_json_80211_multidomaincapability_ops,
/* CAPWAP_ELEMENT_80211_OFDMCONTROL */ &ac_json_80211_ofdmcontrol_ops,
/* CAPWAP_ELEMENT_80211_RATESET */ &ac_json_80211_rateset_ops,
/* CAPWAP_ELEMENT_80211_RSNA_ERROR_REPORT */ &ac_json_80211_rsnaerrorreport_ops,
/* CAPWAP_ELEMENT_80211_STATION */ NULL,
/* CAPWAP_ELEMENT_80211_STATION_QOS_PROFILE */ NULL,
/* CAPWAP_ELEMENT_80211_STATION_SESSION_KEY_PROFILE */ NULL,
/* CAPWAP_ELEMENT_80211_STATISTICS */ &ac_json_80211_statistics_ops,
/* CAPWAP_ELEMENT_80211_SUPPORTEDRATES */ &ac_json_80211_supportedrates_ops,
/* CAPWAP_ELEMENT_80211_TXPOWER */ &ac_json_80211_txpower_ops,
/* CAPWAP_ELEMENT_80211_TXPOWERLEVEL */ &ac_json_80211_txpowerlevel_ops,
/* CAPWAP_ELEMENT_80211_UPDATE_STATION_QOS */ NULL,
/* CAPWAP_ELEMENT_80211_UPDATE_WLAN */ &ac_json_80211_updatewlan_ops,
/* CAPWAP_ELEMENT_80211_WTP_QOS */ &ac_json_80211_wtpqos_ops,
/* CAPWAP_ELEMENT_80211_WTP_RADIO_CONF */ &ac_json_80211_wtpradioconf_ops,
/* CAPWAP_ELEMENT_80211_WTP_RADIO_FAIL_ALARM */ &ac_json_80211_wtpradiofailalarm_ops,
/* CAPWAP_ELEMENT_80211_WTPRADIOINFORMATION */ &ac_json_80211_wtpradioinformation_ops
};
/* */
static struct ac_json_ieee80211_ops* ac_json_80211_getops_by_capwaptype(uint16_t type) {
int i;
for (i = 0; i < CAPWAP_80211_MESSAGE_ELEMENTS_COUNT; i++) {
if (ac_json_80211_message_elements[i] && (ac_json_80211_message_elements[i]->type == type)) {
return ac_json_80211_message_elements[i];
}
}
return NULL;
}
/* */
static struct ac_json_ieee80211_ops* ac_json_80211_getops_by_jsontype(char* type) {
int i;
for (i = 0; i < CAPWAP_80211_MESSAGE_ELEMENTS_COUNT; i++) {
if (ac_json_80211_message_elements[i] && !strcmp(ac_json_80211_message_elements[i]->json_type, type)) {
return ac_json_80211_message_elements[i];
}
}
return NULL;
}
/* */
void ac_json_ieee80211_init(struct ac_json_ieee80211_wtpradio* wtpradio) {
ASSERT(wtpradio != NULL);
@ -113,394 +168,19 @@ void ac_json_ieee80211_free(struct ac_json_ieee80211_wtpradio* wtpradio) {
/* */
int ac_json_ieee80211_addmessageelement(struct ac_json_ieee80211_wtpradio* wtpradio, uint16_t type, void* data, int overwrite) {
struct ac_json_ieee80211_ops* ops;
ASSERT(wtpradio != NULL);
ASSERT(IS_80211_MESSAGE_ELEMENTS(type));
ASSERT(data != NULL);
switch (type) {
case CAPWAP_ELEMENT_80211_ADD_WLAN: {
struct capwap_80211_addwlan_element* addwlan = (struct capwap_80211_addwlan_element*)data;
struct ac_json_ieee80211_item* item = &wtpradio->items[addwlan->radioid - 1];
struct capwap_message_elements_ops* ops = capwap_get_message_element_ops(CAPWAP_ELEMENT_80211_ADD_WLAN);
/* */
ops = ac_json_80211_getops_by_capwaptype(type);
if (!ops) {
return 0;
}
if (item->addwlan) {
if (!overwrite) {
return 0;
}
ops->free_message_element(item->addwlan);
}
item->valid = 1;
item->addwlan = (struct capwap_80211_addwlan_element*)ops->clone_message_element(addwlan);
break;
}
case CAPWAP_ELEMENT_80211_ANTENNA: {
struct capwap_80211_antenna_element* antenna = (struct capwap_80211_antenna_element*)data;
struct ac_json_ieee80211_item* item = &wtpradio->items[antenna->radioid - 1];
struct capwap_message_elements_ops* ops = capwap_get_message_element_ops(CAPWAP_ELEMENT_80211_ANTENNA);
if (item->antenna) {
if (!overwrite) {
return 0;
}
ops->free_message_element(item->antenna);
}
item->valid = 1;
item->antenna = (struct capwap_80211_antenna_element*)ops->clone_message_element(antenna);
break;
}
case CAPWAP_ELEMENT_80211_ASSIGN_BSSID: {
struct capwap_80211_assignbssid_element* assignbssid = (struct capwap_80211_assignbssid_element*)data;
struct ac_json_ieee80211_item* item = &wtpradio->items[assignbssid->radioid - 1];
struct capwap_message_elements_ops* ops = capwap_get_message_element_ops(CAPWAP_ELEMENT_80211_ASSIGN_BSSID);
if (item->assignbssid) {
if (!overwrite) {
return 0;
}
ops->free_message_element(item->assignbssid);
}
item->valid = 1;
item->assignbssid = (struct capwap_80211_assignbssid_element*)ops->clone_message_element(assignbssid);
break;
}
case CAPWAP_ELEMENT_80211_DELETE_WLAN: {
struct capwap_80211_deletewlan_element* deletewlan = (struct capwap_80211_deletewlan_element*)data;
struct ac_json_ieee80211_item* item = &wtpradio->items[deletewlan->radioid - 1];
struct capwap_message_elements_ops* ops = capwap_get_message_element_ops(CAPWAP_ELEMENT_80211_DELETE_WLAN);
if (item->deletewlan) {
if (!overwrite) {
return 0;
}
ops->free_message_element(item->deletewlan);
}
item->valid = 1;
item->deletewlan = (struct capwap_80211_deletewlan_element*)ops->clone_message_element(deletewlan);
break;
}
case CAPWAP_ELEMENT_80211_DIRECTSEQUENCECONTROL: {
struct capwap_80211_directsequencecontrol_element* directsequencecontrol = (struct capwap_80211_directsequencecontrol_element*)data;
struct ac_json_ieee80211_item* item = &wtpradio->items[directsequencecontrol->radioid - 1];
struct capwap_message_elements_ops* ops = capwap_get_message_element_ops(CAPWAP_ELEMENT_80211_DIRECTSEQUENCECONTROL);
if (item->directsequencecontrol) {
if (!overwrite) {
return 0;
}
ops->free_message_element(item->directsequencecontrol);
}
item->valid = 1;
item->directsequencecontrol = (struct capwap_80211_directsequencecontrol_element*)ops->clone_message_element(directsequencecontrol);
break;
}
case CAPWAP_ELEMENT_80211_IE: {
struct capwap_80211_ie_element** ieclone;
struct capwap_80211_ie_element* ie = (struct capwap_80211_ie_element*)data;
struct ac_json_ieee80211_item* item = &wtpradio->items[ie->radioid - 1];
struct capwap_message_elements_ops* ops = capwap_get_message_element_ops(CAPWAP_ELEMENT_80211_IE);
if (!item->iearray) {
item->iearray = capwap_array_create(sizeof(struct capwap_80211_ie_element*), 0, 0);
}
item->valid = 1;
ieclone = (struct capwap_80211_ie_element**)capwap_array_get_item_pointer(item->iearray, item->iearray->count);
*ieclone = (struct capwap_80211_ie_element*)ops->clone_message_element(ie);
break;
}
case CAPWAP_ELEMENT_80211_MACOPERATION: {
struct capwap_80211_macoperation_element* macoperation = (struct capwap_80211_macoperation_element*)data;
struct ac_json_ieee80211_item* item = &wtpradio->items[macoperation->radioid - 1];
struct capwap_message_elements_ops* ops = capwap_get_message_element_ops(CAPWAP_ELEMENT_80211_MACOPERATION);
if (item->macoperation) {
if (!overwrite) {
return 0;
}
ops->free_message_element(item->macoperation);
}
item->valid = 1;
item->macoperation = (struct capwap_80211_macoperation_element*)ops->clone_message_element(macoperation);
break;
}
case CAPWAP_ELEMENT_80211_MIC_COUNTERMEASURES: {
struct capwap_80211_miccountermeasures_element* miccountermeasures = (struct capwap_80211_miccountermeasures_element*)data;
struct ac_json_ieee80211_item* item = &wtpradio->items[miccountermeasures->radioid - 1];
struct capwap_message_elements_ops* ops = capwap_get_message_element_ops(CAPWAP_ELEMENT_80211_MIC_COUNTERMEASURES);
if (item->miccountermeasures) {
if (!overwrite) {
return 0;
}
ops->free_message_element(item->miccountermeasures);
}
item->valid = 1;
item->miccountermeasures = (struct capwap_80211_miccountermeasures_element*)ops->clone_message_element(miccountermeasures);
break;
}
case CAPWAP_ELEMENT_80211_MULTIDOMAINCAPABILITY: {
struct capwap_80211_multidomaincapability_element* multidomaincapability = (struct capwap_80211_multidomaincapability_element*)data;
struct ac_json_ieee80211_item* item = &wtpradio->items[multidomaincapability->radioid - 1];
struct capwap_message_elements_ops* ops = capwap_get_message_element_ops(CAPWAP_ELEMENT_80211_MULTIDOMAINCAPABILITY);
if (item->multidomaincapability) {
if (!overwrite) {
return 0;
}
ops->free_message_element(item->multidomaincapability);
}
item->valid = 1;
item->multidomaincapability = (struct capwap_80211_multidomaincapability_element*)ops->clone_message_element(multidomaincapability);
break;
}
case CAPWAP_ELEMENT_80211_OFDMCONTROL: {
struct capwap_80211_ofdmcontrol_element* ofdmcontrol = (struct capwap_80211_ofdmcontrol_element*)data;
struct ac_json_ieee80211_item* item = &wtpradio->items[ofdmcontrol->radioid - 1];
struct capwap_message_elements_ops* ops = capwap_get_message_element_ops(CAPWAP_ELEMENT_80211_OFDMCONTROL);
if (item->ofdmcontrol) {
if (!overwrite) {
return 0;
}
ops->free_message_element(item->ofdmcontrol);
}
item->valid = 1;
item->ofdmcontrol = (struct capwap_80211_ofdmcontrol_element*)ops->clone_message_element(ofdmcontrol);
break;
}
case CAPWAP_ELEMENT_80211_RATESET: {
struct capwap_80211_rateset_element* rateset = (struct capwap_80211_rateset_element*)data;
struct ac_json_ieee80211_item* item = &wtpradio->items[rateset->radioid - 1];
struct capwap_message_elements_ops* ops = capwap_get_message_element_ops(CAPWAP_ELEMENT_80211_RATESET);
if (item->rateset) {
if (!overwrite) {
return 0;
}
ops->free_message_element(item->rateset);
}
item->valid = 1;
item->rateset = (struct capwap_80211_rateset_element*)ops->clone_message_element(rateset);
break;
}
case CAPWAP_ELEMENT_80211_RSNA_ERROR_REPORT: {
struct capwap_80211_rsnaerrorreport_element* rsnaerrorreport = (struct capwap_80211_rsnaerrorreport_element*)data;
struct ac_json_ieee80211_item* item = &wtpradio->items[rsnaerrorreport->radioid - 1];
struct capwap_message_elements_ops* ops = capwap_get_message_element_ops(CAPWAP_ELEMENT_80211_RSNA_ERROR_REPORT);
if (item->rsnaerrorreport) {
if (!overwrite) {
return 0;
}
ops->free_message_element(item->rsnaerrorreport);
}
item->valid = 1;
item->rsnaerrorreport = (struct capwap_80211_rsnaerrorreport_element*)ops->clone_message_element(rsnaerrorreport);
break;
}
case CAPWAP_ELEMENT_80211_STATISTICS: {
struct capwap_80211_statistics_element* statistics = (struct capwap_80211_statistics_element*)data;
struct ac_json_ieee80211_item* item = &wtpradio->items[statistics->radioid - 1];
struct capwap_message_elements_ops* ops = capwap_get_message_element_ops(CAPWAP_ELEMENT_80211_STATISTICS);
if (item->statistics) {
if (!overwrite) {
return 0;
}
ops->free_message_element(item->statistics);
}
item->valid = 1;
item->statistics = (struct capwap_80211_statistics_element*)ops->clone_message_element(statistics);
break;
}
case CAPWAP_ELEMENT_80211_SUPPORTEDRATES: {
struct capwap_80211_supportedrates_element* supportedrates = (struct capwap_80211_supportedrates_element*)data;
struct ac_json_ieee80211_item* item = &wtpradio->items[supportedrates->radioid - 1];
struct capwap_message_elements_ops* ops = capwap_get_message_element_ops(CAPWAP_ELEMENT_80211_SUPPORTEDRATES);
if (item->supportedrates) {
if (!overwrite) {
return 0;
}
ops->free_message_element(item->supportedrates);
}
item->valid = 1;
item->supportedrates = (struct capwap_80211_supportedrates_element*)ops->clone_message_element(supportedrates);
break;
}
case CAPWAP_ELEMENT_80211_TXPOWER: {
struct capwap_80211_txpower_element* txpower = (struct capwap_80211_txpower_element*)data;
struct ac_json_ieee80211_item* item = &wtpradio->items[txpower->radioid - 1];
struct capwap_message_elements_ops* ops = capwap_get_message_element_ops(CAPWAP_ELEMENT_80211_TXPOWER);
if (item->txpower) {
if (!overwrite) {
return 0;
}
ops->free_message_element(item->txpower);
}
item->valid = 1;
item->txpower = (struct capwap_80211_txpower_element*)ops->clone_message_element(txpower);
break;
}
case CAPWAP_ELEMENT_80211_TXPOWERLEVEL: {
struct capwap_80211_txpowerlevel_element* txpowerlevel = (struct capwap_80211_txpowerlevel_element*)data;
struct ac_json_ieee80211_item* item = &wtpradio->items[txpowerlevel->radioid - 1];
struct capwap_message_elements_ops* ops = capwap_get_message_element_ops(CAPWAP_ELEMENT_80211_TXPOWERLEVEL);
if (item->txpowerlevel) {
if (!overwrite) {
return 0;
}
ops->free_message_element(item->txpowerlevel);
}
item->valid = 1;
item->txpowerlevel = (struct capwap_80211_txpowerlevel_element*)ops->clone_message_element(txpowerlevel);
break;
}
case CAPWAP_ELEMENT_80211_UPDATE_WLAN: {
struct capwap_80211_updatewlan_element* updatewlan = (struct capwap_80211_updatewlan_element*)data;
struct ac_json_ieee80211_item* item = &wtpradio->items[updatewlan->radioid - 1];
struct capwap_message_elements_ops* ops = capwap_get_message_element_ops(CAPWAP_ELEMENT_80211_UPDATE_WLAN);
if (item->updatewlan) {
if (!overwrite) {
return 0;
}
ops->free_message_element(item->updatewlan);
}
item->valid = 1;
item->updatewlan = (struct capwap_80211_updatewlan_element*)ops->clone_message_element(updatewlan);
break;
}
case CAPWAP_ELEMENT_80211_WTP_QOS: {
struct capwap_80211_wtpqos_element* wtpqos = (struct capwap_80211_wtpqos_element*)data;
struct ac_json_ieee80211_item* item = &wtpradio->items[wtpqos->radioid - 1];
struct capwap_message_elements_ops* ops = capwap_get_message_element_ops(CAPWAP_ELEMENT_80211_WTP_QOS);
if (item->wtpqos) {
if (!overwrite) {
return 0;
}
ops->free_message_element(item->wtpqos);
}
item->valid = 1;
item->wtpqos = (struct capwap_80211_wtpqos_element*)ops->clone_message_element(wtpqos);
break;
}
case CAPWAP_ELEMENT_80211_WTP_RADIO_CONF: {
struct capwap_80211_wtpradioconf_element* wtpradioconf = (struct capwap_80211_wtpradioconf_element*)data;
struct ac_json_ieee80211_item* item = &wtpradio->items[wtpradioconf->radioid - 1];
struct capwap_message_elements_ops* ops = capwap_get_message_element_ops(CAPWAP_ELEMENT_80211_WTP_RADIO_CONF);
if (item->wtpradioconf) {
if (!overwrite) {
return 0;
}
ops->free_message_element(item->wtpradioconf);
}
item->valid = 1;
item->wtpradioconf = (struct capwap_80211_wtpradioconf_element*)ops->clone_message_element(wtpradioconf);
break;
}
case CAPWAP_ELEMENT_80211_WTP_RADIO_FAIL_ALARM: {
struct capwap_80211_wtpradiofailalarm_element* wtpradiofailalarm = (struct capwap_80211_wtpradiofailalarm_element*)data;
struct ac_json_ieee80211_item* item = &wtpradio->items[wtpradiofailalarm->radioid - 1];
struct capwap_message_elements_ops* ops = capwap_get_message_element_ops(CAPWAP_ELEMENT_80211_WTP_RADIO_FAIL_ALARM);
if (item->wtpradiofailalarm) {
if (!overwrite) {
return 0;
}
ops->free_message_element(item->wtpradiofailalarm);
}
item->valid = 1;
item->wtpradiofailalarm = (struct capwap_80211_wtpradiofailalarm_element*)ops->clone_message_element(wtpradiofailalarm);
break;
}
case CAPWAP_ELEMENT_80211_WTPRADIOINFORMATION: {
struct capwap_80211_wtpradioinformation_element* wtpradioinformation = (struct capwap_80211_wtpradioinformation_element*)data;
struct ac_json_ieee80211_item* item = &wtpradio->items[wtpradioinformation->radioid - 1];
struct capwap_message_elements_ops* ops = capwap_get_message_element_ops(CAPWAP_ELEMENT_80211_WTPRADIOINFORMATION);
if (item->wtpradioinformation) {
if (!overwrite) {
return 0;
}
ops->free_message_element(item->wtpradioinformation);
}
item->valid = 1;
item->wtpradioinformation = (struct capwap_80211_wtpradioinformation_element*)ops->clone_message_element(wtpradioinformation);
break;
}
default: {
return 0;
}
}
return 1;
return ops->add_message_element(wtpradio, data, overwrite);
}
/* */
@ -509,259 +189,22 @@ int ac_json_ieee80211_parsingmessageelement(struct ac_json_ieee80211_wtpradio* w
ASSERT(wtpradio != NULL);
ASSERT(messageelement != NULL);
ASSERT(IS_80211_MESSAGE_ELEMENTS(messageelement->type));
switch (messageelement->type) {
case CAPWAP_ELEMENT_80211_ADD_WLAN: {
ASSERT(messageelement->category == CAPWAP_MESSAGE_ELEMENT_SINGLE);
if (messageelement->category == CAPWAP_MESSAGE_ELEMENT_SINGLE) {
if (!ac_json_ieee80211_addmessageelement(wtpradio, messageelement->type, messageelement->data, 0)) {
return 0;
}
} else if (messageelement->category == CAPWAP_MESSAGE_ELEMENT_ARRAY) {
struct capwap_array* items = (struct capwap_array*)messageelement->data;
if (!ac_json_ieee80211_addmessageelement(wtpradio, CAPWAP_ELEMENT_80211_ADD_WLAN, messageelement->data, 0)) {
for (i = 0; i < items->count; i++) {
if (!ac_json_ieee80211_addmessageelement(wtpradio, messageelement->type, *(void**)capwap_array_get_item_pointer(items, i), 0)) {
return 0;
}
break;
}
case CAPWAP_ELEMENT_80211_ANTENNA: {
struct capwap_array* antennaarray = (struct capwap_array*)messageelement->data;
ASSERT(messageelement->category == CAPWAP_MESSAGE_ELEMENT_ARRAY);
for (i = 0; i < antennaarray->count; i++) {
if (!ac_json_ieee80211_addmessageelement(wtpradio, CAPWAP_ELEMENT_80211_ANTENNA, *(struct capwap_80211_antenna_element**)capwap_array_get_item_pointer(antennaarray, i), 0)) {
return 0;
}
}
break;
}
case CAPWAP_ELEMENT_80211_ASSIGN_BSSID: {
ASSERT(messageelement->category == CAPWAP_MESSAGE_ELEMENT_SINGLE);
if (!ac_json_ieee80211_addmessageelement(wtpradio, CAPWAP_ELEMENT_80211_ASSIGN_BSSID, messageelement->data, 0)) {
return 0;
}
break;
}
case CAPWAP_ELEMENT_80211_DELETE_WLAN: {
ASSERT(messageelement->category == CAPWAP_MESSAGE_ELEMENT_SINGLE);
if (!ac_json_ieee80211_addmessageelement(wtpradio, CAPWAP_ELEMENT_80211_DELETE_WLAN, messageelement->data, 0)) {
return 0;
}
break;
}
case CAPWAP_ELEMENT_80211_DIRECTSEQUENCECONTROL: {
struct capwap_array* directsequencecontrolarray = (struct capwap_array*)messageelement->data;
ASSERT(messageelement->category == CAPWAP_MESSAGE_ELEMENT_ARRAY);
for (i = 0; i < directsequencecontrolarray->count; i++) {
if (!ac_json_ieee80211_addmessageelement(wtpradio, CAPWAP_ELEMENT_80211_DIRECTSEQUENCECONTROL, *(struct capwap_80211_directsequencecontrol_element**)capwap_array_get_item_pointer(directsequencecontrolarray, i), 0)) {
return 0;
}
}
break;
}
case CAPWAP_ELEMENT_80211_IE: {
struct capwap_array* iearray = (struct capwap_array*)messageelement->data;
ASSERT(messageelement->category == CAPWAP_MESSAGE_ELEMENT_ARRAY);
for (i = 0; i < iearray->count; i++) {
if (!ac_json_ieee80211_addmessageelement(wtpradio, CAPWAP_ELEMENT_80211_IE, *(struct capwap_80211_ie_element**)capwap_array_get_item_pointer(iearray, i), 0)) {
return 0;
}
}
break;
}
case CAPWAP_ELEMENT_80211_MACOPERATION: {
struct capwap_array* macoperationarray = (struct capwap_array*)messageelement->data;
ASSERT(messageelement->category == CAPWAP_MESSAGE_ELEMENT_ARRAY);
for (i = 0; i < macoperationarray->count; i++) {
if (!ac_json_ieee80211_addmessageelement(wtpradio, CAPWAP_ELEMENT_80211_MACOPERATION, *(struct capwap_80211_macoperation_element**)capwap_array_get_item_pointer(macoperationarray, i), 0)) {
return 0;
}
}
break;
}
case CAPWAP_ELEMENT_80211_MIC_COUNTERMEASURES: {
ASSERT(messageelement->category == CAPWAP_MESSAGE_ELEMENT_SINGLE);
if (!ac_json_ieee80211_addmessageelement(wtpradio, CAPWAP_ELEMENT_80211_MIC_COUNTERMEASURES, messageelement->data, 0)) {
return 0;
}
break;
}
case CAPWAP_ELEMENT_80211_MULTIDOMAINCAPABILITY: {
struct capwap_array* multidomaincapabilityarray = (struct capwap_array*)messageelement->data;
ASSERT(messageelement->category == CAPWAP_MESSAGE_ELEMENT_ARRAY);
for (i = 0; i < multidomaincapabilityarray->count; i++) {
if (!ac_json_ieee80211_addmessageelement(wtpradio, CAPWAP_ELEMENT_80211_MULTIDOMAINCAPABILITY, *(struct capwap_80211_multidomaincapability_element**)capwap_array_get_item_pointer(multidomaincapabilityarray, i), 0)) {
return 0;
}
}
break;
}
case CAPWAP_ELEMENT_80211_OFDMCONTROL: {
struct capwap_array* ofdmcontrolarray = (struct capwap_array*)messageelement->data;
ASSERT(messageelement->category == CAPWAP_MESSAGE_ELEMENT_ARRAY);
for (i = 0; i < ofdmcontrolarray->count; i++) {
if (!ac_json_ieee80211_addmessageelement(wtpradio, CAPWAP_ELEMENT_80211_OFDMCONTROL, *(struct capwap_80211_ofdmcontrol_element**)capwap_array_get_item_pointer(ofdmcontrolarray, i), 0)) {
return 0;
}
}
break;
}
case CAPWAP_ELEMENT_80211_RATESET: {
struct capwap_array* ratesetarray = (struct capwap_array*)messageelement->data;
ASSERT(messageelement->category == CAPWAP_MESSAGE_ELEMENT_ARRAY);
for (i = 0; i < ratesetarray->count; i++) {
if (!ac_json_ieee80211_addmessageelement(wtpradio, CAPWAP_ELEMENT_80211_RATESET, *(struct capwap_80211_rateset_element**)capwap_array_get_item_pointer(ratesetarray, i), 0)) {
return 0;
}
}
break;
}
case CAPWAP_ELEMENT_80211_RSNA_ERROR_REPORT: {
ASSERT(messageelement->category == CAPWAP_MESSAGE_ELEMENT_SINGLE);
if (!ac_json_ieee80211_addmessageelement(wtpradio, CAPWAP_ELEMENT_80211_RSNA_ERROR_REPORT, messageelement->data, 0)) {
return 0;
}
break;
}
case CAPWAP_ELEMENT_80211_STATISTICS: {
struct capwap_array* statisticsarray = (struct capwap_array*)messageelement->data;
ASSERT(messageelement->category == CAPWAP_MESSAGE_ELEMENT_ARRAY);
for (i = 0; i < statisticsarray->count; i++) {
if (!ac_json_ieee80211_addmessageelement(wtpradio, CAPWAP_ELEMENT_80211_STATISTICS, *(struct capwap_80211_statistics_element**)capwap_array_get_item_pointer(statisticsarray, i), 0)) {
return 0;
}
}
break;
}
case CAPWAP_ELEMENT_80211_SUPPORTEDRATES: {
struct capwap_array* supportedratesarray = (struct capwap_array*)messageelement->data;
ASSERT(messageelement->category == CAPWAP_MESSAGE_ELEMENT_ARRAY);
for (i = 0; i < supportedratesarray->count; i++) {
if (!ac_json_ieee80211_addmessageelement(wtpradio, CAPWAP_ELEMENT_80211_SUPPORTEDRATES, *(struct capwap_80211_supportedrates_element**)capwap_array_get_item_pointer(supportedratesarray, i), 0)) {
return 0;
}
}
break;
}
case CAPWAP_ELEMENT_80211_TXPOWER: {
struct capwap_array* txpowerarray = (struct capwap_array*)messageelement->data;
ASSERT(messageelement->category == CAPWAP_MESSAGE_ELEMENT_ARRAY);
for (i = 0; i < txpowerarray->count; i++) {
if (!ac_json_ieee80211_addmessageelement(wtpradio, CAPWAP_ELEMENT_80211_TXPOWER, *(struct capwap_80211_txpower_element**)capwap_array_get_item_pointer(txpowerarray, i), 0)) {
return 0;
}
}
break;
}
case CAPWAP_ELEMENT_80211_TXPOWERLEVEL: {
struct capwap_array* txpowerlevelarray = (struct capwap_array*)messageelement->data;
ASSERT(messageelement->category == CAPWAP_MESSAGE_ELEMENT_ARRAY);
for (i = 0; i < txpowerlevelarray->count; i++) {
if (!ac_json_ieee80211_addmessageelement(wtpradio, CAPWAP_ELEMENT_80211_TXPOWERLEVEL, *(struct capwap_80211_txpowerlevel_element**)capwap_array_get_item_pointer(txpowerlevelarray, i), 0)) {
return 0;
}
}
break;
}
case CAPWAP_ELEMENT_80211_UPDATE_WLAN: {
ASSERT(messageelement->category == CAPWAP_MESSAGE_ELEMENT_SINGLE);
if (!ac_json_ieee80211_addmessageelement(wtpradio, CAPWAP_ELEMENT_80211_UPDATE_WLAN, messageelement->data, 0)) {
return 0;
}
break;
}
case CAPWAP_ELEMENT_80211_WTP_QOS: {
struct capwap_array* wtpqosarray = (struct capwap_array*)messageelement->data;
ASSERT(messageelement->category == CAPWAP_MESSAGE_ELEMENT_ARRAY);
for (i = 0; i < wtpqosarray->count; i++) {
if (!ac_json_ieee80211_addmessageelement(wtpradio, CAPWAP_ELEMENT_80211_WTP_QOS, *(struct capwap_80211_wtpqos_element**)capwap_array_get_item_pointer(wtpqosarray, i), 0)) {
return 0;
}
}
break;
}
case CAPWAP_ELEMENT_80211_WTP_RADIO_CONF: {
struct capwap_array* wtpradioconfarray = (struct capwap_array*)messageelement->data;
ASSERT(messageelement->category == CAPWAP_MESSAGE_ELEMENT_ARRAY);
for (i = 0; i < wtpradioconfarray->count; i++) {
if (!ac_json_ieee80211_addmessageelement(wtpradio, CAPWAP_ELEMENT_80211_WTP_RADIO_CONF, *(struct capwap_80211_wtpradioconf_element**)capwap_array_get_item_pointer(wtpradioconfarray, i), 0)) {
return 0;
}
}
break;
}
case CAPWAP_ELEMENT_80211_WTP_RADIO_FAIL_ALARM: {
ASSERT(messageelement->category == CAPWAP_MESSAGE_ELEMENT_SINGLE);
if (!ac_json_ieee80211_addmessageelement(wtpradio, CAPWAP_ELEMENT_80211_WTP_RADIO_FAIL_ALARM, messageelement->data, 0)) {
return 0;
}
break;
}
case CAPWAP_ELEMENT_80211_WTPRADIOINFORMATION: {
struct capwap_array* wtpradioinformationarray = (struct capwap_array*)messageelement->data;
ASSERT(messageelement->category == CAPWAP_MESSAGE_ELEMENT_ARRAY);
for (i = 0; i < wtpradioinformationarray->count; i++) {
if (!ac_json_ieee80211_addmessageelement(wtpradio, CAPWAP_ELEMENT_80211_WTPRADIOINFORMATION, *(struct capwap_80211_wtpradioinformation_element**)capwap_array_get_item_pointer(wtpradioinformationarray, i), 0)) {
return 0;
}
}
break;
}
} else {
return 0;
}
return 1;
@ -769,6 +212,44 @@ int ac_json_ieee80211_parsingmessageelement(struct ac_json_ieee80211_wtpradio* w
/* */
int ac_json_ieee80211_parsingjson(struct ac_json_ieee80211_wtpradio* wtpradio, struct json_object* jsonroot) {
int i;
int length;
ASSERT(wtpradio != NULL);
ASSERT(jsonroot != NULL);
ASSERT(json_object_get_type(jsonroot) == json_type_array)
/* */
length = json_object_array_length(jsonroot);
for (i = 0; i < length; i++) {
struct json_object* jsonitem;
struct json_object* jsonradio = json_object_array_get_idx(jsonroot, i);
/* Get RadioID */
jsonitem = json_object_object_get(jsonradio, "RadioID");
if (jsonitem && (json_object_get_type(jsonitem) == json_type_int)) {
int radioid = json_object_get_int(jsonitem);
if (IS_VALID_RADIOID(radioid)) {
struct lh_entry* entry;
/* Parsing every entry */
for(entry = json_object_get_object(jsonradio)->head; entry != NULL; entry = entry->next) {
struct ac_json_ieee80211_ops* ops = ac_json_80211_getops_by_jsontype((char*)entry->k); /* Retrieve JSON handler */
if (ops) {
void* data = ops->create_message_element((struct json_object*)entry->v, radioid);
if (data) {
/* Message element complete */
ac_json_ieee80211_addmessageelement(wtpradio, CAPWAP_ELEMENT_80211_WTPRADIOINFORMATION, data, 1);
/* Free resource */
capwap_get_message_element_ops(ops->type)->free_message_element(data);
}
}
}
}
}
}
return 1;
}
@ -777,7 +258,6 @@ struct json_object* ac_json_ieee80211_getjson(struct ac_json_ieee80211_wtpradio*
int i;
struct json_object* jsonarray;
struct json_object* jsonitems;
struct json_object* jsonitem;
ASSERT(wtpradio != NULL);
@ -796,151 +276,87 @@ struct json_object* ac_json_ieee80211_getjson(struct ac_json_ieee80211_wtpradio*
json_object_object_add(jsonitems, "RadioID", json_object_new_int(i + 1));
if (item->addwlan) {
/* TODO */
ac_json_80211_getops_by_capwaptype(CAPWAP_ELEMENT_80211_ADD_WLAN)->create_json(jsonitems, item->addwlan);
}
if (item->antenna) {
struct json_object* jsonantenna;
jsonantenna = json_object_new_array();
for (i = 0; i < item->antenna->selections->count; i++) {
json_object_array_add(jsonantenna, json_object_new_int((int)*(uint8_t*)capwap_array_get_item_pointer(item->antenna->selections, i)));
}
jsonitem = json_object_new_object();
json_object_object_add(jsonitem, "Diversity", json_object_new_boolean((item->antenna->diversity == CAPWAP_ANTENNA_DIVERSITY_ENABLE) ? 1 : 0));
json_object_object_add(jsonitem, "Combiner", json_object_new_int((int)item->antenna->combiner));
json_object_object_add(jsonitem, "AntennaSelection", jsonantenna);
json_object_object_add(jsonitems, "IEEE80211Antenna", jsonitem);
ac_json_80211_getops_by_capwaptype(CAPWAP_ELEMENT_80211_ANTENNA)->create_json(jsonitems, item->antenna);
}
if (item->assignbssid) {
/* TODO */
ac_json_80211_getops_by_capwaptype(CAPWAP_ELEMENT_80211_ASSIGN_BSSID)->create_json(jsonitems, item->assignbssid);
}
if (item->deletewlan) {
/* TODO */
ac_json_80211_getops_by_capwaptype(CAPWAP_ELEMENT_80211_DELETE_WLAN)->create_json(jsonitems, item->deletewlan);
}
if (item->directsequencecontrol) {
jsonitem = json_object_new_object();
json_object_object_add(jsonitem, "CurrentChan", json_object_new_int((int)item->directsequencecontrol->currentchannel));
json_object_object_add(jsonitem, "CurrentCCA", json_object_new_int((int)item->directsequencecontrol->currentcca));
json_object_object_add(jsonitem, "EnergyDetectThreshold", json_object_new_int((int)item->directsequencecontrol->enerydetectthreshold));
json_object_object_add(jsonitems, "IEEE80211DirectSequenceControl", jsonitem);
ac_json_80211_getops_by_capwaptype(CAPWAP_ELEMENT_80211_DIRECTSEQUENCECONTROL)->create_json(jsonitems, item->directsequencecontrol);
}
if (item->iearray) {
/* TODO */
ac_json_80211_getops_by_capwaptype(CAPWAP_ELEMENT_80211_IE)->create_json(jsonitems, item->iearray);
}
if (item->macoperation) {
jsonitem = json_object_new_object();
json_object_object_add(jsonitem, "RTSThreshold", json_object_new_int((int)item->macoperation->rtsthreshold));
json_object_object_add(jsonitem, "ShortRetry", json_object_new_int((int)item->macoperation->shortretry));
json_object_object_add(jsonitem, "LongRetry", json_object_new_int((int)item->macoperation->longretry));
json_object_object_add(jsonitem, "FragmentationThreshold", json_object_new_int((int)item->macoperation->fragthreshold));
json_object_object_add(jsonitem, "TxMSDULifetime", json_object_new_int((int)item->macoperation->txmsdulifetime));
json_object_object_add(jsonitem, "RxMSDULifetime", json_object_new_int((int)item->macoperation->rxmsdulifetime));
json_object_object_add(jsonitems, "IEEE80211MACOperation", jsonitem);
ac_json_80211_getops_by_capwaptype(CAPWAP_ELEMENT_80211_MACOPERATION)->create_json(jsonitems, item->macoperation);
}
if (item->miccountermeasures) {
/* TODO */
ac_json_80211_getops_by_capwaptype(CAPWAP_ELEMENT_80211_MIC_COUNTERMEASURES)->create_json(jsonitems, item->miccountermeasures);
}
if (item->multidomaincapability) {
jsonitem = json_object_new_object();
json_object_object_add(jsonitem, "FirstChannel", json_object_new_int((int)item->multidomaincapability->firstchannel));
json_object_object_add(jsonitem, "NumberChannels", json_object_new_int((int)item->multidomaincapability->numberchannels));
json_object_object_add(jsonitem, "MaxTxPowerLevel", json_object_new_int((int)item->multidomaincapability->maxtxpowerlevel));
json_object_object_add(jsonitems, "IEEE80211MultiDomainCapability", jsonitem);
ac_json_80211_getops_by_capwaptype(CAPWAP_ELEMENT_80211_MULTIDOMAINCAPABILITY)->create_json(jsonitems, item->multidomaincapability);
}
if (item->ofdmcontrol) {
jsonitem = json_object_new_object();
json_object_object_add(jsonitem, "CurrentChan", json_object_new_int((int)item->ofdmcontrol->currentchannel));
json_object_object_add(jsonitem, "BandSupport", json_object_new_int((int)item->ofdmcontrol->bandsupport));
json_object_object_add(jsonitem, "TIThreshold", json_object_new_int((int)item->ofdmcontrol->tithreshold));
json_object_object_add(jsonitems, "IEEE80211OFDMControl", jsonitem);
ac_json_80211_getops_by_capwaptype(CAPWAP_ELEMENT_80211_OFDMCONTROL)->create_json(jsonitems, item->ofdmcontrol);
}
if (item->rateset) {
struct json_object* jsonrates;
jsonrates = json_object_new_array();
for (i = 0; i < item->rateset->ratesetcount; i++) {
json_object_array_add(jsonrates, json_object_new_int((int)item->rateset->rateset[i]));
}
json_object_object_add(jsonitems, "IEEE80211Rateset", jsonrates);
ac_json_80211_getops_by_capwaptype(CAPWAP_ELEMENT_80211_RATESET)->create_json(jsonitems, item->rateset);
}
if (item->rsnaerrorreport) {
/* TODO */
ac_json_80211_getops_by_capwaptype(CAPWAP_ELEMENT_80211_RSNA_ERROR_REPORT)->create_json(jsonitems, item->rsnaerrorreport);
}
if (item->statistics) {
/* TODO */
ac_json_80211_getops_by_capwaptype(CAPWAP_ELEMENT_80211_STATISTICS)->create_json(jsonitems, item->statistics);
}
if (item->supportedrates) {
struct json_object* jsonrates;
jsonrates = json_object_new_array();
for (i = 0; i < item->supportedrates->supportedratescount; i++) {
json_object_array_add(jsonrates, json_object_new_int((int)item->supportedrates->supportedrates[i]));
}
json_object_object_add(jsonitems, "IEEE80211SupportedRates", jsonrates);
ac_json_80211_getops_by_capwaptype(CAPWAP_ELEMENT_80211_SUPPORTEDRATES)->create_json(jsonitems, item->supportedrates);
}
if (item->txpower) {
jsonitem = json_object_new_object();
json_object_object_add(jsonitem, "CurrentTxPower", json_object_new_int((int)item->txpower->currenttxpower));
json_object_object_add(jsonitems, "IEEE80211TxPower", jsonitem);
ac_json_80211_getops_by_capwaptype(CAPWAP_ELEMENT_80211_TXPOWER)->create_json(jsonitems, item->txpower);
}
if (item->txpowerlevel) {
struct json_object* jsontxpower;
jsontxpower = json_object_new_array();
for (i = 0; i < item->txpowerlevel->numlevels; i++) {
json_object_array_add(jsontxpower, json_object_new_int((int)item->txpowerlevel->powerlevel[i]));
}
json_object_object_add(jsonitems, "IEEE80211TXPowerLevel", jsontxpower);
ac_json_80211_getops_by_capwaptype(CAPWAP_ELEMENT_80211_TXPOWERLEVEL)->create_json(jsonitems, item->txpowerlevel);
}
if (item->updatewlan) {
/* TODO */
ac_json_80211_getops_by_capwaptype(CAPWAP_ELEMENT_80211_UPDATE_WLAN)->create_json(jsonitems, item->updatewlan);
}
if (item->wtpqos) {
/* TODO */
ac_json_80211_getops_by_capwaptype(CAPWAP_ELEMENT_80211_WTP_QOS)->create_json(jsonitems, item->wtpqos);
}
if (item->wtpradioconf) {
char buffer[18];
jsonitem = json_object_new_object();
json_object_object_add(jsonitem, "ShortPreamble", json_object_new_int((int)item->wtpradioconf->shortpreamble));
json_object_object_add(jsonitem, "NumBSSIDs", json_object_new_int((int)item->wtpradioconf->maxbssid));
json_object_object_add(jsonitem, "DTIMPeriod", json_object_new_int((int)item->wtpradioconf->dtimperiod));
json_object_object_add(jsonitem, "BSSID", json_object_new_string(capwap_printf_macaddress(buffer, (unsigned char*)item->wtpradioconf->bssid, MACADDRESS_EUI48_LENGTH)));
json_object_object_add(jsonitem, "BeaconPeriod", json_object_new_int((int)item->wtpradioconf->beaconperiod));
json_object_object_add(jsonitem, "CountryString", json_object_new_string((char*)item->wtpradioconf->country));
json_object_object_add(jsonitems, "IEEE80211WTPRadioConfiguration", jsonitem);
ac_json_80211_getops_by_capwaptype(CAPWAP_ELEMENT_80211_WTP_RADIO_CONF)->create_json(jsonitems, item->wtpradioconf);
}
if (item->wtpradiofailalarm) {
/* TODO */
ac_json_80211_getops_by_capwaptype(CAPWAP_ELEMENT_80211_WTP_RADIO_FAIL_ALARM)->create_json(jsonitems, item->wtpradiofailalarm);
}
if (item->wtpradioinformation) {
jsonitem = json_object_new_object();
json_object_object_add(jsonitem, "Mode", json_object_new_int((int)item->wtpradioinformation->radiotype));
json_object_object_add(jsonitems, "IEEE80211WTPRadioInformation", jsonitem);
ac_json_80211_getops_by_capwaptype(CAPWAP_ELEMENT_80211_WTPRADIOINFORMATION)->create_json(jsonitems, item->wtpradioinformation);
}
/* */

View File

@ -0,0 +1,41 @@
#include "ac.h"
#include "ac_json.h"
/* */
static void* ac_json_80211_addwlan_createmessageelement(struct json_object* jsonparent, uint16_t radioid) {
return NULL; /* TODO */
}
/* */
static int ac_json_80211_addwlan_addmessageelement(struct ac_json_ieee80211_wtpradio* wtpradio, void* data, int overwrite) {
struct capwap_80211_addwlan_element* addwlan = (struct capwap_80211_addwlan_element*)data;
struct ac_json_ieee80211_item* item = &wtpradio->items[addwlan->radioid - 1];
struct capwap_message_elements_ops* ops = capwap_get_message_element_ops(CAPWAP_ELEMENT_80211_ADD_WLAN);
if (item->addwlan) {
if (!overwrite) {
return 0;
}
ops->free_message_element(item->addwlan);
}
item->valid = 1;
item->addwlan = (struct capwap_80211_addwlan_element*)ops->clone_message_element(addwlan);
return 1;
}
/* */
static void ac_json_80211_addwlan_createjson(struct json_object* jsonparent, void* data) {
/* TODO */
}
/* */
struct ac_json_ieee80211_ops ac_json_80211_addwlan_ops = {
.type = CAPWAP_ELEMENT_80211_ADD_WLAN,
.json_type = "IEEE80211AddWLAN",
.create_message_element = ac_json_80211_addwlan_createmessageelement,
.add_message_element = ac_json_80211_addwlan_addmessageelement,
.create_json = ac_json_80211_addwlan_createjson
};

View File

@ -0,0 +1,8 @@
#ifndef __AC_JSON_80211_ADDWLAN_HEADER__
#define __AC_JSON_80211_ADDWLAN_HEADER__
#include "capwap_element_80211_addwlan.h"
extern struct ac_json_ieee80211_ops ac_json_80211_addwlan_ops;
#endif /* __AC_JSON_80211_ADDWLAN_HEADER__ */

View File

@ -0,0 +1,109 @@
#include "ac.h"
#include "ac_json.h"
/*
IEEE80211Antenna: {
Diversity: [bool],
Combiner: [int],
AntennaSelection: [
[int]
]
}
*/
/* */
static void* ac_json_80211_antenna_createmessageelement(struct json_object* jsonparent, uint16_t radioid) {
struct json_object* jsonitem;
struct capwap_80211_antenna_element* antenna;
antenna = (struct capwap_80211_antenna_element*)capwap_alloc(sizeof(struct capwap_80211_antenna_element));
memset(antenna, 0, sizeof(struct capwap_80211_antenna_element));
antenna->radioid = radioid;
/* */
jsonitem = json_object_object_get(jsonparent, "Diversity");
if (jsonitem && (json_object_get_type(jsonitem) == json_type_boolean)) {
antenna->diversity = (json_object_get_boolean(jsonitem) ? CAPWAP_ANTENNA_DIVERSITY_ENABLE : CAPWAP_ANTENNA_DIVERSITY_DISABLE);
} else {
capwap_free(antenna);
return NULL;
}
jsonitem = json_object_object_get(jsonparent, "Combiner");
if (jsonitem && (json_object_get_type(jsonitem) == json_type_int)) {
antenna->combiner = (uint8_t)json_object_get_int(jsonitem);
} else {
capwap_free(antenna);
return NULL;
}
jsonitem = json_object_object_get(jsonparent, "AntennaSelection");
if (jsonitem && (json_object_get_type(jsonitem) == json_type_array)) {
int i;
int length;
antenna->selections = capwap_array_create(sizeof(uint8_t), 0, 1);
length = json_object_array_length(jsonitem);
for (i = 0; i < length; i++) {
struct json_object* jsonvalue = json_object_array_get_idx(jsonitem, i);
if (jsonvalue && (json_object_get_type(jsonvalue) == json_type_int)) {
uint8_t* value = (uint8_t*)capwap_array_get_item_pointer(antenna->selections, antenna->selections->count);
*value = (uint8_t)json_object_get_int(jsonvalue);
}
}
} else {
capwap_free(antenna);
return NULL;
}
return antenna;
}
/* */
static int ac_json_80211_antenna_addmessageelement(struct ac_json_ieee80211_wtpradio* wtpradio, void* data, int overwrite) {
struct capwap_80211_antenna_element* antenna = (struct capwap_80211_antenna_element*)data;
struct ac_json_ieee80211_item* item = &wtpradio->items[antenna->radioid - 1];
struct capwap_message_elements_ops* ops = capwap_get_message_element_ops(CAPWAP_ELEMENT_80211_ANTENNA);
if (item->antenna) {
if (!overwrite) {
return 0;
}
ops->free_message_element(item->antenna);
}
item->valid = 1;
item->antenna = (struct capwap_80211_antenna_element*)ops->clone_message_element(antenna);
return 1;
}
/* */
static void ac_json_80211_antenna_createjson(struct json_object* jsonparent, void* data) {
int i;
struct json_object* jsonantenna;
struct json_object* jsonitem;
struct capwap_80211_antenna_element* antenna = (struct capwap_80211_antenna_element*)data;
jsonantenna = json_object_new_array();
for (i = 0; i < antenna->selections->count; i++) {
json_object_array_add(jsonantenna, json_object_new_int((int)*(uint8_t*)capwap_array_get_item_pointer(antenna->selections, i)));
}
jsonitem = json_object_new_object();
json_object_object_add(jsonitem, "Diversity", json_object_new_boolean((antenna->diversity == CAPWAP_ANTENNA_DIVERSITY_ENABLE) ? 1 : 0));
json_object_object_add(jsonitem, "Combiner", json_object_new_int((int)antenna->combiner));
json_object_object_add(jsonitem, "AntennaSelection", jsonantenna);
json_object_object_add(jsonparent, "IEEE80211Antenna", jsonitem);
}
/* */
struct ac_json_ieee80211_ops ac_json_80211_antenna_ops = {
.type = CAPWAP_ELEMENT_80211_ANTENNA,
.json_type = "IEEE80211Antenna",
.create_message_element = ac_json_80211_antenna_createmessageelement,
.add_message_element = ac_json_80211_antenna_addmessageelement,
.create_json = ac_json_80211_antenna_createjson
};

View File

@ -0,0 +1,8 @@
#ifndef __AC_JSON_80211_ANTENNA_HEADER__
#define __AC_JSON_80211_ANTENNA_HEADER__
#include "capwap_element_80211_antenna.h"
extern struct ac_json_ieee80211_ops ac_json_80211_antenna_ops;
#endif /* __AC_JSON_80211_ANTENNA_HEADER__ */

View File

@ -0,0 +1,41 @@
#include "ac.h"
#include "ac_json.h"
/* */
static void* ac_json_80211_assignbssid_createmessageelement(struct json_object* jsonparent, uint16_t radioid) {
return NULL; /* TODO */
}
/* */
static int ac_json_80211_assignbssid_addmessageelement(struct ac_json_ieee80211_wtpradio* wtpradio, void* data, int overwrite) {
struct capwap_80211_assignbssid_element* assignbssid = (struct capwap_80211_assignbssid_element*)data;
struct ac_json_ieee80211_item* item = &wtpradio->items[assignbssid->radioid - 1];
struct capwap_message_elements_ops* ops = capwap_get_message_element_ops(CAPWAP_ELEMENT_80211_ASSIGN_BSSID);
if (item->assignbssid) {
if (!overwrite) {
return 0;
}
ops->free_message_element(item->assignbssid);
}
item->valid = 1;
item->assignbssid = (struct capwap_80211_assignbssid_element*)ops->clone_message_element(assignbssid);
return 1;
}
/* */
static void ac_json_80211_assignbssid_createjson(struct json_object* jsonparent, void* data) {
/* TODO */
}
/* */
struct ac_json_ieee80211_ops ac_json_80211_assignbssid_ops = {
.type = CAPWAP_ELEMENT_80211_ASSIGN_BSSID,
.json_type = "IEEE80211AssignBSSID",
.create_message_element = ac_json_80211_assignbssid_createmessageelement,
.add_message_element = ac_json_80211_assignbssid_addmessageelement,
.create_json = ac_json_80211_assignbssid_createjson
};

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#ifndef __AC_JSON_80211_ASSIGNBSSID_HEADER__
#define __AC_JSON_80211_ASSIGNBSSID_HEADER__
#include "capwap_element_80211_assignbssid.h"
extern struct ac_json_ieee80211_ops ac_json_80211_assignbssid_ops;
#endif /* __AC_JSON_80211_ASSIGNBSSID_HEADER__ */

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#include "ac.h"
#include "ac_json.h"
/* */
static void* ac_json_80211_deletewlan_createmessageelement(struct json_object* jsonparent, uint16_t radioid) {
return NULL; /* TODO */
}
/* */
static int ac_json_80211_deletewlan_addmessageelement(struct ac_json_ieee80211_wtpradio* wtpradio, void* data, int overwrite) {
struct capwap_80211_deletewlan_element* deletewlan = (struct capwap_80211_deletewlan_element*)data;
struct ac_json_ieee80211_item* item = &wtpradio->items[deletewlan->radioid - 1];
struct capwap_message_elements_ops* ops = capwap_get_message_element_ops(CAPWAP_ELEMENT_80211_DELETE_WLAN);
if (item->deletewlan) {
if (!overwrite) {
return 0;
}
ops->free_message_element(item->deletewlan);
}
item->valid = 1;
item->deletewlan = (struct capwap_80211_deletewlan_element*)ops->clone_message_element(deletewlan);
return 1;
}
/* */
static void ac_json_80211_deletewlan_createjson(struct json_object* jsonparent, void* data) {
/* TODO */
}
/* */
struct ac_json_ieee80211_ops ac_json_80211_deletewlan_ops = {
.type = CAPWAP_ELEMENT_80211_DELETE_WLAN,
.json_type = "IEEE80211DeleteWLAN",
.create_message_element = ac_json_80211_deletewlan_createmessageelement,
.add_message_element = ac_json_80211_deletewlan_addmessageelement,
.create_json = ac_json_80211_deletewlan_createjson
};

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#ifndef __AC_JSON_80211_DELETEWLAN_HEADER__
#define __AC_JSON_80211_DELETEWLAN_HEADER__
#include "capwap_element_80211_deletewlan.h"
extern struct ac_json_ieee80211_ops ac_json_80211_deletewlan_ops;
#endif /* __AC_JSON_80211_DELETEWLAN_HEADER__ */

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#include "ac.h"
#include "ac_json.h"
/*
IEEE80211DirectSequenceControl: {
CurrentChan: [int],
CurrentCCA: [int],
EnergyDetectThreshold: [int]
}
*/
/* */
static void* ac_json_80211_directsequencecontrol_createmessageelement(struct json_object* jsonparent, uint16_t radioid) {
struct json_object* jsonitem;
struct capwap_80211_directsequencecontrol_element* directsequencecontrol;
directsequencecontrol = (struct capwap_80211_directsequencecontrol_element*)capwap_alloc(sizeof(struct capwap_80211_directsequencecontrol_element));
memset(directsequencecontrol, 0, sizeof(struct capwap_80211_directsequencecontrol_element));
directsequencecontrol->radioid = radioid;
/* */
jsonitem = json_object_object_get(jsonparent, "CurrentChan");
if (jsonitem && (json_object_get_type(jsonitem) == json_type_int)) {
directsequencecontrol->currentchannel = (uint8_t)json_object_get_int(jsonitem);
} else {
capwap_free(directsequencecontrol);
return NULL;
}
jsonitem = json_object_object_get(jsonparent, "CurrentCCA");
if (jsonitem && (json_object_get_type(jsonitem) == json_type_int)) {
directsequencecontrol->currentcca = (uint8_t)json_object_get_int(jsonitem);
} else {
capwap_free(directsequencecontrol);
return NULL;
}
jsonitem = json_object_object_get(jsonparent, "EnergyDetectThreshold");
if (jsonitem && (json_object_get_type(jsonitem) == json_type_int)) {
directsequencecontrol->enerydetectthreshold = (uint32_t)json_object_get_int(jsonitem);
} else {
capwap_free(directsequencecontrol);
return NULL;
}
return directsequencecontrol;
}
/* */
static int ac_json_80211_directsequencecontrol_addmessageelement(struct ac_json_ieee80211_wtpradio* wtpradio, void* data, int overwrite) {
struct capwap_80211_directsequencecontrol_element* directsequencecontrol = (struct capwap_80211_directsequencecontrol_element*)data;
struct ac_json_ieee80211_item* item = &wtpradio->items[directsequencecontrol->radioid - 1];
struct capwap_message_elements_ops* ops = capwap_get_message_element_ops(CAPWAP_ELEMENT_80211_DIRECTSEQUENCECONTROL);
if (item->directsequencecontrol) {
if (!overwrite) {
return 0;
}
ops->free_message_element(item->directsequencecontrol);
}
item->valid = 1;
item->directsequencecontrol = (struct capwap_80211_directsequencecontrol_element*)ops->clone_message_element(directsequencecontrol);
return 1;
}
/* */
static void ac_json_80211_directsequencecontrol_createjson(struct json_object* jsonparent, void* data) {
struct json_object* jsonitem;
struct capwap_80211_directsequencecontrol_element* directsequencecontrol = (struct capwap_80211_directsequencecontrol_element*)data;
jsonitem = json_object_new_object();
json_object_object_add(jsonitem, "CurrentChan", json_object_new_int((int)directsequencecontrol->currentchannel));
json_object_object_add(jsonitem, "CurrentCCA", json_object_new_int((int)directsequencecontrol->currentcca));
json_object_object_add(jsonitem, "EnergyDetectThreshold", json_object_new_int((int)directsequencecontrol->enerydetectthreshold));
json_object_object_add(jsonparent, "IEEE80211DirectSequenceControl", jsonitem);
}
/* */
struct ac_json_ieee80211_ops ac_json_80211_directsequencecontrol_ops = {
.type = CAPWAP_ELEMENT_80211_DIRECTSEQUENCECONTROL,
.json_type = "IEEE80211DirectSequenceControl",
.create_message_element = ac_json_80211_directsequencecontrol_createmessageelement,
.add_message_element = ac_json_80211_directsequencecontrol_addmessageelement,
.create_json = ac_json_80211_directsequencecontrol_createjson
};

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#ifndef __AC_JSON_80211_DIRECTSEQUENCECONTROL_HEADER__
#define __AC_JSON_80211_DIRECTSEQUENCECONTROL_HEADER__
#include "capwap_element_80211_directsequencecontrol.h"
extern struct ac_json_ieee80211_ops ac_json_80211_directsequencecontrol_ops;
#endif /* __AC_JSON_80211_DIRECTSEQUENCECONTROL_HEADER__ */

39
src/ac/ac_80211_json_ie.c Normal file
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#include "ac.h"
#include "ac_json.h"
/* */
static void* ac_json_80211_ie_createmessageelement(struct json_object* jsonparent, uint16_t radioid) {
return NULL; /* TODO */
}
/* */
static int ac_json_80211_ie_addmessageelement(struct ac_json_ieee80211_wtpradio* wtpradio, void* data, int overwrite) {
struct capwap_80211_ie_element** ieclone;
struct capwap_80211_ie_element* ie = (struct capwap_80211_ie_element*)data;
struct ac_json_ieee80211_item* item = &wtpradio->items[ie->radioid - 1];
struct capwap_message_elements_ops* ops = capwap_get_message_element_ops(CAPWAP_ELEMENT_80211_IE);
if (!item->iearray) {
item->iearray = capwap_array_create(sizeof(struct capwap_80211_ie_element*), 0, 0);
}
item->valid = 1;
ieclone = (struct capwap_80211_ie_element**)capwap_array_get_item_pointer(item->iearray, item->iearray->count);
*ieclone = (struct capwap_80211_ie_element*)ops->clone_message_element(ie);
return 1;
}
/* */
static void ac_json_80211_ie_createjson(struct json_object* jsonparent, void* data) {
/* TODO */
}
/* */
struct ac_json_ieee80211_ops ac_json_80211_ie_ops = {
.type = CAPWAP_ELEMENT_80211_IE,
.json_type = "IEEE80211IE",
.create_message_element = ac_json_80211_ie_createmessageelement,
.add_message_element = ac_json_80211_ie_addmessageelement,
.create_json = ac_json_80211_ie_createjson
};

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#ifndef __AC_JSON_80211_IE_HEADER__
#define __AC_JSON_80211_IE_HEADER__
#include "capwap_element_80211_ie.h"
extern struct ac_json_ieee80211_ops ac_json_80211_ie_ops;
#endif /* __AC_JSON_80211_IE_HEADER__ */

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#include "ac.h"
#include "ac_json.h"
/*
IEEE80211MACOperation: {
RTSThreshold: [int],
ShortRetry: [int],
LongRetry: [int],
FragmentationThreshold: [int],
TxMSDULifetime: [int],
RxMSDULifetime: [int]
}
*/
/* */
static void* ac_json_80211_macoperation_createmessageelement(struct json_object* jsonparent, uint16_t radioid) {
struct json_object* jsonitem;
struct capwap_80211_macoperation_element* macoperation;
macoperation = (struct capwap_80211_macoperation_element*)capwap_alloc(sizeof(struct capwap_80211_macoperation_element));
memset(macoperation, 0, sizeof(struct capwap_80211_macoperation_element));
macoperation->radioid = radioid;
/* */
jsonitem = json_object_object_get(jsonparent, "RTSThreshold");
if (jsonitem && (json_object_get_type(jsonitem) == json_type_int)) {
macoperation->rtsthreshold = (uint16_t)json_object_get_int(jsonitem);
} else {
capwap_free(macoperation);
return NULL;
}
jsonitem = json_object_object_get(jsonparent, "ShortRetry");
if (jsonitem && (json_object_get_type(jsonitem) == json_type_int)) {
macoperation->shortretry = (uint8_t)json_object_get_int(jsonitem);
} else {
capwap_free(macoperation);
return NULL;
}
jsonitem = json_object_object_get(jsonparent, "LongRetry");
if (jsonitem && (json_object_get_type(jsonitem) == json_type_int)) {
macoperation->longretry = (uint8_t)json_object_get_int(jsonitem);
} else {
capwap_free(macoperation);
return NULL;
}
jsonitem = json_object_object_get(jsonparent, "FragmentationThreshold");
if (jsonitem && (json_object_get_type(jsonitem) == json_type_int)) {
macoperation->fragthreshold = (uint16_t)json_object_get_int(jsonitem);
} else {
capwap_free(macoperation);
return NULL;
}
jsonitem = json_object_object_get(jsonparent, "TxMSDULifetime");
if (jsonitem && (json_object_get_type(jsonitem) == json_type_int)) {
macoperation->txmsdulifetime = (uint32_t)json_object_get_int(jsonitem);
} else {
capwap_free(macoperation);
return NULL;
}
jsonitem = json_object_object_get(jsonparent, "RxMSDULifetime");
if (jsonitem && (json_object_get_type(jsonitem) == json_type_int)) {
macoperation->rxmsdulifetime = (uint32_t)json_object_get_int(jsonitem);
} else {
capwap_free(macoperation);
return NULL;
}
return macoperation;
}
/* */
static int ac_json_80211_macoperation_addmessageelement(struct ac_json_ieee80211_wtpradio* wtpradio, void* data, int overwrite) {
struct capwap_80211_macoperation_element* macoperation = (struct capwap_80211_macoperation_element*)data;
struct ac_json_ieee80211_item* item = &wtpradio->items[macoperation->radioid - 1];
struct capwap_message_elements_ops* ops = capwap_get_message_element_ops(CAPWAP_ELEMENT_80211_MACOPERATION);
if (item->macoperation) {
if (!overwrite) {
return 0;
}
ops->free_message_element(item->macoperation);
}
item->valid = 1;
item->macoperation = (struct capwap_80211_macoperation_element*)ops->clone_message_element(macoperation);
return 1;
}
/* */
static void ac_json_80211_macoperation_createjson(struct json_object* jsonparent, void* data) {
struct json_object* jsonitem;
struct capwap_80211_macoperation_element* macoperation = (struct capwap_80211_macoperation_element*)data;
jsonitem = json_object_new_object();
json_object_object_add(jsonitem, "RTSThreshold", json_object_new_int((int)macoperation->rtsthreshold));
json_object_object_add(jsonitem, "ShortRetry", json_object_new_int((int)macoperation->shortretry));
json_object_object_add(jsonitem, "LongRetry", json_object_new_int((int)macoperation->longretry));
json_object_object_add(jsonitem, "FragmentationThreshold", json_object_new_int((int)macoperation->fragthreshold));
json_object_object_add(jsonitem, "TxMSDULifetime", json_object_new_int((int)macoperation->txmsdulifetime));
json_object_object_add(jsonitem, "RxMSDULifetime", json_object_new_int((int)macoperation->rxmsdulifetime));
json_object_object_add(jsonparent, "IEEE80211MACOperation", jsonitem);
}
/* */
struct ac_json_ieee80211_ops ac_json_80211_macoperation_ops = {
.type = CAPWAP_ELEMENT_80211_MACOPERATION,
.json_type = "IEEE80211MACOperation",
.create_message_element = ac_json_80211_macoperation_createmessageelement,
.add_message_element = ac_json_80211_macoperation_addmessageelement,
.create_json = ac_json_80211_macoperation_createjson
};

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#ifndef __AC_JSON_80211_MACOPERATION_HEADER__
#define __AC_JSON_80211_MACOPERATION_HEADER__
#include "capwap_element_80211_macoperation.h"
extern struct ac_json_ieee80211_ops ac_json_80211_macoperation_ops;
#endif /* __AC_JSON_80211_MACOPERATION_HEADER__ */

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#include "ac.h"
#include "ac_json.h"
/* */
static void* ac_json_80211_miccountermeasures_createmessageelement(struct json_object* jsonparent, uint16_t radioid) {
return NULL; /* TODO */
}
/* */
static int ac_json_80211_miccountermeasures_addmessageelement(struct ac_json_ieee80211_wtpradio* wtpradio, void* data, int overwrite) {
struct capwap_80211_miccountermeasures_element* miccountermeasures = (struct capwap_80211_miccountermeasures_element*)data;
struct ac_json_ieee80211_item* item = &wtpradio->items[miccountermeasures->radioid - 1];
struct capwap_message_elements_ops* ops = capwap_get_message_element_ops(CAPWAP_ELEMENT_80211_MIC_COUNTERMEASURES);
if (item->miccountermeasures) {
if (!overwrite) {
return 0;
}
ops->free_message_element(item->miccountermeasures);
}
item->valid = 1;
item->miccountermeasures = (struct capwap_80211_miccountermeasures_element*)ops->clone_message_element(miccountermeasures);
return 1;
}
/* */
static void ac_json_80211_miccountermeasures_createjson(struct json_object* jsonparent, void* data) {
/* TODO */
}
/* */
struct ac_json_ieee80211_ops ac_json_80211_miccountermeasures_ops = {
.type = CAPWAP_ELEMENT_80211_MIC_COUNTERMEASURES,
.json_type = "IEEE80211MicCounterMeasures",
.create_message_element = ac_json_80211_miccountermeasures_createmessageelement,
.add_message_element = ac_json_80211_miccountermeasures_addmessageelement,
.create_json = ac_json_80211_miccountermeasures_createjson
};

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#ifndef __AC_JSON_80211_MICCOUNTERMEASURES_HEADER__
#define __AC_JSON_80211_MICCOUNTERMEASURES_HEADER__
#include "capwap_element_80211_miccountermeasures.h"
extern struct ac_json_ieee80211_ops ac_json_80211_miccountermeasures_ops;
#endif /* __AC_JSON_80211_MICCOUNTERMEASURES_HEADER__ */

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#include "ac.h"
#include "ac_json.h"
/*
IEEE80211MultiDomainCapability: {
FirstChannel: [int],
NumberChannels: [int],
MaxTxPowerLevel: [int]
}
*/
/* */
static void* ac_json_80211_multidomaincapability_createmessageelement(struct json_object* jsonparent, uint16_t radioid) {
struct json_object* jsonitem;
struct capwap_80211_multidomaincapability_element* multidomaincapability;
multidomaincapability = (struct capwap_80211_multidomaincapability_element*)capwap_alloc(sizeof(struct capwap_80211_multidomaincapability_element));
memset(multidomaincapability, 0, sizeof(struct capwap_80211_multidomaincapability_element));
multidomaincapability->radioid = radioid;
/* */
jsonitem = json_object_object_get(jsonparent, "FirstChannel");
if (jsonitem && (json_object_get_type(jsonitem) == json_type_int)) {
multidomaincapability->firstchannel = (uint16_t)json_object_get_int(jsonitem);
} else {
capwap_free(multidomaincapability);
return NULL;
}
jsonitem = json_object_object_get(jsonparent, "NumberChannels");
if (jsonitem && (json_object_get_type(jsonitem) == json_type_int)) {
multidomaincapability->numberchannels = (uint16_t)json_object_get_int(jsonitem);
} else {
capwap_free(multidomaincapability);
return NULL;
}
jsonitem = json_object_object_get(jsonparent, "MaxTxPowerLevel");
if (jsonitem && (json_object_get_type(jsonitem) == json_type_int)) {
multidomaincapability->maxtxpowerlevel = (uint16_t)json_object_get_int(jsonitem);
} else {
capwap_free(multidomaincapability);
return NULL;
}
return multidomaincapability;
}
/* */
static int ac_json_80211_multidomaincapability_addmessageelement(struct ac_json_ieee80211_wtpradio* wtpradio, void* data, int overwrite) {
struct capwap_80211_multidomaincapability_element* multidomaincapability = (struct capwap_80211_multidomaincapability_element*)data;
struct ac_json_ieee80211_item* item = &wtpradio->items[multidomaincapability->radioid - 1];
struct capwap_message_elements_ops* ops = capwap_get_message_element_ops(CAPWAP_ELEMENT_80211_MULTIDOMAINCAPABILITY);
if (item->multidomaincapability) {
if (!overwrite) {
return 0;
}
ops->free_message_element(item->multidomaincapability);
}
item->valid = 1;
item->multidomaincapability = (struct capwap_80211_multidomaincapability_element*)ops->clone_message_element(multidomaincapability);
return 1;
}
/* */
static void ac_json_80211_multidomaincapability_createjson(struct json_object* jsonparent, void* data) {
struct json_object* jsonitem;
struct capwap_80211_multidomaincapability_element* multidomaincapability = (struct capwap_80211_multidomaincapability_element*)data;
jsonitem = json_object_new_object();
json_object_object_add(jsonitem, "FirstChannel", json_object_new_int((int)multidomaincapability->firstchannel));
json_object_object_add(jsonitem, "NumberChannels", json_object_new_int((int)multidomaincapability->numberchannels));
json_object_object_add(jsonitem, "MaxTxPowerLevel", json_object_new_int((int)multidomaincapability->maxtxpowerlevel));
json_object_object_add(jsonparent, "IEEE80211MultiDomainCapability", jsonitem);
}
/* */
struct ac_json_ieee80211_ops ac_json_80211_multidomaincapability_ops = {
.type = CAPWAP_ELEMENT_80211_MULTIDOMAINCAPABILITY,
.json_type = "IEEE80211MultiDomainCapability",
.create_message_element = ac_json_80211_multidomaincapability_createmessageelement,
.add_message_element = ac_json_80211_multidomaincapability_addmessageelement,
.create_json = ac_json_80211_multidomaincapability_createjson
};

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#ifndef __AC_JSON_80211_MULTIDOMAINCAPABILITY_HEADER__
#define __AC_JSON_80211_MULTIDOMAINCAPABILITY_HEADER__
#include "capwap_element_80211_multidomaincapability.h"
extern struct ac_json_ieee80211_ops ac_json_80211_multidomaincapability_ops;
#endif /* __AC_JSON_80211_MULTIDOMAINCAPABILITY_HEADER__ */

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#include "ac.h"
#include "ac_json.h"
/*
IEEE80211OFDMControl: {
CurrentChan: [int],
BandSupport: [int],
TIThreshold: [int]
}
*/
/* */
static void* ac_json_80211_ofdmcontrol_createmessageelement(struct json_object* jsonparent, uint16_t radioid) {
struct json_object* jsonitem;
struct capwap_80211_ofdmcontrol_element* ofdmcontrol;
ofdmcontrol = (struct capwap_80211_ofdmcontrol_element*)capwap_alloc(sizeof(struct capwap_80211_ofdmcontrol_element));
memset(ofdmcontrol, 0, sizeof(struct capwap_80211_ofdmcontrol_element));
ofdmcontrol->radioid = radioid;
/* */
jsonitem = json_object_object_get(jsonparent, "CurrentChan");
if (jsonitem && (json_object_get_type(jsonitem) == json_type_int)) {
ofdmcontrol->currentchannel = (uint8_t)json_object_get_int(jsonitem);
} else {
capwap_free(ofdmcontrol);
return NULL;
}
jsonitem = json_object_object_get(jsonparent, "BandSupport");
if (jsonitem && (json_object_get_type(jsonitem) == json_type_int)) {
ofdmcontrol->bandsupport = (uint8_t)json_object_get_int(jsonitem) & CAPWAP_OFDMCONTROL_BAND_MASK;
} else {
capwap_free(ofdmcontrol);
return NULL;
}
jsonitem = json_object_object_get(jsonparent, "TIThreshold");
if (jsonitem && (json_object_get_type(jsonitem) == json_type_int)) {
ofdmcontrol->tithreshold = (uint32_t)json_object_get_int(jsonitem);
} else {
capwap_free(ofdmcontrol);
return NULL;
}
return ofdmcontrol;
}
/* */
static int ac_json_80211_ofdmcontrol_addmessageelement(struct ac_json_ieee80211_wtpradio* wtpradio, void* data, int overwrite) {
struct capwap_80211_ofdmcontrol_element* ofdmcontrol = (struct capwap_80211_ofdmcontrol_element*)data;
struct ac_json_ieee80211_item* item = &wtpradio->items[ofdmcontrol->radioid - 1];
struct capwap_message_elements_ops* ops = capwap_get_message_element_ops(CAPWAP_ELEMENT_80211_OFDMCONTROL);
if (item->ofdmcontrol) {
if (!overwrite) {
return 0;
}
ops->free_message_element(item->ofdmcontrol);
}
item->valid = 1;
item->ofdmcontrol = (struct capwap_80211_ofdmcontrol_element*)ops->clone_message_element(ofdmcontrol);
return 1;
}
/* */
static void ac_json_80211_ofdmcontrol_createjson(struct json_object* jsonparent, void* data) {
struct json_object* jsonitem;
struct capwap_80211_ofdmcontrol_element* ofdmcontrol = (struct capwap_80211_ofdmcontrol_element*)data;
jsonitem = json_object_new_object();
json_object_object_add(jsonitem, "CurrentChan", json_object_new_int((int)ofdmcontrol->currentchannel));
json_object_object_add(jsonitem, "BandSupport", json_object_new_int((int)ofdmcontrol->bandsupport));
json_object_object_add(jsonitem, "TIThreshold", json_object_new_int((int)ofdmcontrol->tithreshold));
json_object_object_add(jsonparent, "IEEE80211OFDMControl", jsonitem);
}
/* */
struct ac_json_ieee80211_ops ac_json_80211_ofdmcontrol_ops = {
.type = CAPWAP_ELEMENT_80211_OFDMCONTROL,
.json_type = "IEEE80211OFDMControl",
.create_message_element = ac_json_80211_ofdmcontrol_createmessageelement,
.add_message_element = ac_json_80211_ofdmcontrol_addmessageelement,
.create_json = ac_json_80211_ofdmcontrol_createjson
};

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#ifndef __AC_JSON_80211_OFDMCONTROL_HEADER__
#define __AC_JSON_80211_OFDMCONTROL_HEADER__
#include "capwap_element_80211_ofdmcontrol.h"
extern struct ac_json_ieee80211_ops ac_json_80211_ofdmcontrol_ops;
#endif /* __AC_JSON_80211_OFDMCONTROL_HEADER__ */

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#include "ac.h"
#include "ac_json.h"
/*
IEEE80211Rateset: [
[int]
]
*/
/* */
static void* ac_json_80211_rateset_createmessageelement(struct json_object* jsonparent, uint16_t radioid) {
int i;
int length;
struct capwap_80211_rateset_element* rateset;
if (json_object_get_type(jsonparent) != json_type_array) {
return NULL;
}
length = json_object_array_length(jsonparent);
if ((length < CAPWAP_RATESET_MINLENGTH) || (length > CAPWAP_RATESET_MAXLENGTH)) {
return NULL;
}
rateset = (struct capwap_80211_rateset_element*)capwap_alloc(sizeof(struct capwap_80211_rateset_element));
memset(rateset, 0, sizeof(struct capwap_80211_rateset_element));
rateset->radioid = radioid;
for (i = 0; i < length; i++) {
struct json_object* jsonvalue = json_object_array_get_idx(jsonparent, i);
if (jsonvalue && (json_object_get_type(jsonvalue) == json_type_int)) {
rateset->ratesetcount++;
rateset->rateset[i] = (uint8_t)json_object_get_int(jsonvalue);
}
}
return rateset;
}
/* */
static int ac_json_80211_rateset_addmessageelement(struct ac_json_ieee80211_wtpradio* wtpradio, void* data, int overwrite) {
struct capwap_80211_rateset_element* rateset = (struct capwap_80211_rateset_element*)data;
struct ac_json_ieee80211_item* item = &wtpradio->items[rateset->radioid - 1];
struct capwap_message_elements_ops* ops = capwap_get_message_element_ops(CAPWAP_ELEMENT_80211_RATESET);
if (item->rateset) {
if (!overwrite) {
return 0;
}
ops->free_message_element(item->rateset);
}
item->valid = 1;
item->rateset = (struct capwap_80211_rateset_element*)ops->clone_message_element(rateset);
return 1;
}
/* */
static void ac_json_80211_rateset_createjson(struct json_object* jsonparent, void* data) {
int i;
struct json_object* jsonrates;
struct capwap_80211_rateset_element* rateset = (struct capwap_80211_rateset_element*)data;
jsonrates = json_object_new_array();
for (i = 0; i < rateset->ratesetcount; i++) {
json_object_array_add(jsonrates, json_object_new_int((int)rateset->rateset[i]));
}
json_object_object_add(jsonparent, "IEEE80211Rateset", jsonrates);
}
/* */
struct ac_json_ieee80211_ops ac_json_80211_rateset_ops = {
.type = CAPWAP_ELEMENT_80211_RATESET,
.json_type = "IEEE80211Rateset",
.create_message_element = ac_json_80211_rateset_createmessageelement,
.add_message_element = ac_json_80211_rateset_addmessageelement,
.create_json = ac_json_80211_rateset_createjson
};

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#ifndef __AC_JSON_80211_RATESET_HEADER__
#define __AC_JSON_80211_RATESET_HEADER__
#include "capwap_element_80211_rateset.h"
extern struct ac_json_ieee80211_ops ac_json_80211_rateset_ops;
#endif /* __AC_JSON_80211_RATESET_HEADER__ */

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#include "ac.h"
#include "ac_json.h"
/* */
static void* ac_json_80211_rsnaerrorreport_createmessageelement(struct json_object* jsonparent, uint16_t radioid) {
return NULL; /* TODO */
}
/* */
static int ac_json_80211_rsnaerrorreport_addmessageelement(struct ac_json_ieee80211_wtpradio* wtpradio, void* data, int overwrite) {
struct capwap_80211_rsnaerrorreport_element* rsnaerrorreport = (struct capwap_80211_rsnaerrorreport_element*)data;
struct ac_json_ieee80211_item* item = &wtpradio->items[rsnaerrorreport->radioid - 1];
struct capwap_message_elements_ops* ops = capwap_get_message_element_ops(CAPWAP_ELEMENT_80211_RSNA_ERROR_REPORT);
if (item->rsnaerrorreport) {
if (!overwrite) {
return 0;
}
ops->free_message_element(item->rsnaerrorreport);
}
item->valid = 1;
item->rsnaerrorreport = (struct capwap_80211_rsnaerrorreport_element*)ops->clone_message_element(rsnaerrorreport);
return 1;
}
/* */
static void ac_json_80211_rsnaerrorreport_createjson(struct json_object* jsonparent, void* data) {
/* TODO */
}
/* */
struct ac_json_ieee80211_ops ac_json_80211_rsnaerrorreport_ops = {
.type = CAPWAP_ELEMENT_80211_RSNA_ERROR_REPORT,
.json_type = "IEEE80211RSNAErrorReport",
.create_message_element = ac_json_80211_rsnaerrorreport_createmessageelement,
.add_message_element = ac_json_80211_rsnaerrorreport_addmessageelement,
.create_json = ac_json_80211_rsnaerrorreport_createjson
};

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#ifndef __AC_JSON_80211_RSNAERRORREPORT_HEADER__
#define __AC_JSON_80211_RSNAERRORREPORT_HEADER__
#include "capwap_element_80211_rsnaerrorreport.h"
extern struct ac_json_ieee80211_ops ac_json_80211_rsnaerrorreport_ops;
#endif /* __AC_JSON_80211_RSNAERRORREPORT_HEADER__ */

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#include "ac.h"
#include "ac_json.h"
/* */
static void* ac_json_80211_statistics_createmessageelement(struct json_object* jsonparent, uint16_t radioid) {
return NULL; /* TODO */
}
/* */
static int ac_json_80211_statistics_addmessageelement(struct ac_json_ieee80211_wtpradio* wtpradio, void* data, int overwrite) {
struct capwap_80211_statistics_element* statistics = (struct capwap_80211_statistics_element*)data;
struct ac_json_ieee80211_item* item = &wtpradio->items[statistics->radioid - 1];
struct capwap_message_elements_ops* ops = capwap_get_message_element_ops(CAPWAP_ELEMENT_80211_STATISTICS);
if (item->statistics) {
if (!overwrite) {
return 0;
}
ops->free_message_element(item->statistics);
}
item->valid = 1;
item->statistics = (struct capwap_80211_statistics_element*)ops->clone_message_element(statistics);
return 1;
}
/* */
static void ac_json_80211_statistics_createjson(struct json_object* jsonparent, void* data) {
/* TODO */
}
/* */
struct ac_json_ieee80211_ops ac_json_80211_statistics_ops = {
.type = CAPWAP_ELEMENT_80211_STATISTICS,
.json_type = "IEEE80211Statistics",
.create_message_element = ac_json_80211_statistics_createmessageelement,
.add_message_element = ac_json_80211_statistics_addmessageelement,
.create_json = ac_json_80211_statistics_createjson
};

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#ifndef __AC_JSON_80211_STATISTICS_HEADER__
#define __AC_JSON_80211_STATISTICS_HEADER__
#include "capwap_element_80211_statistics.h"
extern struct ac_json_ieee80211_ops ac_json_80211_statistics_ops;
#endif /* __AC_JSON_80211_STATISTICS_HEADER__ */

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#include "ac.h"
#include "ac_json.h"
/*
IEEE80211SupportedRates: [
[int]
]
*/
/* */
static void* ac_json_80211_supportedrates_createmessageelement(struct json_object* jsonparent, uint16_t radioid) {
int i;
int length;
struct capwap_80211_supportedrates_element* supportedrates;
if (json_object_get_type(jsonparent) != json_type_array) {
return NULL;
}
length = json_object_array_length(jsonparent);
if ((length < CAPWAP_SUPPORTEDRATES_MINLENGTH) || (length > CAPWAP_SUPPORTEDRATES_MAXLENGTH)) {
return NULL;
}
supportedrates = (struct capwap_80211_supportedrates_element*)capwap_alloc(sizeof(struct capwap_80211_supportedrates_element));
memset(supportedrates, 0, sizeof(struct capwap_80211_supportedrates_element));
supportedrates->radioid = radioid;
for (i = 0; i < length; i++) {
struct json_object* jsonvalue = json_object_array_get_idx(jsonparent, i);
if (jsonvalue && (json_object_get_type(jsonvalue) == json_type_int)) {
supportedrates->supportedratescount++;
supportedrates->supportedrates[i] = (uint8_t)json_object_get_int(jsonvalue);
}
}
return supportedrates;
}
/* */
static int ac_json_80211_supportedrates_addmessageelement(struct ac_json_ieee80211_wtpradio* wtpradio, void* data, int overwrite) {
struct capwap_80211_supportedrates_element* supportedrates = (struct capwap_80211_supportedrates_element*)data;
struct ac_json_ieee80211_item* item = &wtpradio->items[supportedrates->radioid - 1];
struct capwap_message_elements_ops* ops = capwap_get_message_element_ops(CAPWAP_ELEMENT_80211_SUPPORTEDRATES);
if (item->supportedrates) {
if (!overwrite) {
return 0;
}
ops->free_message_element(item->supportedrates);
}
item->valid = 1;
item->supportedrates = (struct capwap_80211_supportedrates_element*)ops->clone_message_element(supportedrates);
return 1;
}
/* */
static void ac_json_80211_supportedrates_createjson(struct json_object* jsonparent, void* data) {
int i;
struct json_object* jsonrates;
struct capwap_80211_supportedrates_element* supportedrates = (struct capwap_80211_supportedrates_element*)data;
jsonrates = json_object_new_array();
for (i = 0; i < supportedrates->supportedratescount; i++) {
json_object_array_add(jsonrates, json_object_new_int((int)supportedrates->supportedrates[i]));
}
json_object_object_add(jsonparent, "IEEE80211SupportedRates", jsonrates);
}
/* */
struct ac_json_ieee80211_ops ac_json_80211_supportedrates_ops = {
.type = CAPWAP_ELEMENT_80211_SUPPORTEDRATES,
.json_type = "IEEE80211SupportedRates",
.create_message_element = ac_json_80211_supportedrates_createmessageelement,
.add_message_element = ac_json_80211_supportedrates_addmessageelement,
.create_json = ac_json_80211_supportedrates_createjson
};

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#ifndef __AC_JSON_80211_SUPPORTEDRATES_HEADER__
#define __AC_JSON_80211_SUPPORTEDRATES_HEADER__
#include "capwap_element_80211_supportedrates.h"
extern struct ac_json_ieee80211_ops ac_json_80211_supportedrates_ops;
#endif /* __AC_JSON_80211_SUPPORTEDRATES_HEADER__ */

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#include "ac.h"
#include "ac_json.h"
/*
IEEE80211TxPower: {
CurrentTxPower: [int]
}
*/
/* */
static void* ac_json_80211_txpower_createmessageelement(struct json_object* jsonparent, uint16_t radioid) {
struct json_object* jsonitem;
struct capwap_80211_txpower_element* txpower;
txpower = (struct capwap_80211_txpower_element*)capwap_alloc(sizeof(struct capwap_80211_txpower_element));
memset(txpower, 0, sizeof(struct capwap_80211_txpower_element));
txpower->radioid = radioid;
/* */
jsonitem = json_object_object_get(jsonparent, "CurrentTxPower");
if (jsonitem && (json_object_get_type(jsonitem) == json_type_int)) {
txpower->currenttxpower = (uint16_t)json_object_get_int(jsonitem);
} else {
capwap_free(txpower);
return NULL;
}
return txpower;
}
/* */
static int ac_json_80211_txpower_addmessageelement(struct ac_json_ieee80211_wtpradio* wtpradio, void* data, int overwrite) {
struct capwap_80211_txpower_element* txpower = (struct capwap_80211_txpower_element*)data;
struct ac_json_ieee80211_item* item = &wtpradio->items[txpower->radioid - 1];
struct capwap_message_elements_ops* ops = capwap_get_message_element_ops(CAPWAP_ELEMENT_80211_TXPOWER);
if (item->txpower) {
if (!overwrite) {
return 0;
}
ops->free_message_element(item->txpower);
}
item->valid = 1;
item->txpower = (struct capwap_80211_txpower_element*)ops->clone_message_element(txpower);
return 1;
}
/* */
static void ac_json_80211_txpower_createjson(struct json_object* jsonparent, void* data) {
struct json_object* jsonitem;
struct capwap_80211_txpower_element* txpower = (struct capwap_80211_txpower_element*)data;
jsonitem = json_object_new_object();
json_object_object_add(jsonitem, "CurrentTxPower", json_object_new_int((int)txpower->currenttxpower));
json_object_object_add(jsonparent, "IEEE80211TxPower", jsonitem);
}
/* */
struct ac_json_ieee80211_ops ac_json_80211_txpower_ops = {
.type = CAPWAP_ELEMENT_80211_TXPOWER,
.json_type = "IEEE80211TxPower",
.create_message_element = ac_json_80211_txpower_createmessageelement,
.add_message_element = ac_json_80211_txpower_addmessageelement,
.create_json = ac_json_80211_txpower_createjson
};

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#ifndef __AC_JSON_80211_TXPOWER_HEADER__
#define __AC_JSON_80211_TXPOWER_HEADER__
#include "capwap_element_80211_txpower.h"
extern struct ac_json_ieee80211_ops ac_json_80211_txpower_ops;
#endif /* __AC_JSON_80211_TXPOWER_HEADER__ */

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#include "ac.h"
#include "ac_json.h"
/*
IEEE80211TXPowerLevel: [
[int]
]
*/
/* */
static void* ac_json_80211_txpowerlevel_createmessageelement(struct json_object* jsonparent, uint16_t radioid) {
int i;
int length;
struct capwap_80211_txpowerlevel_element* txpowerlevel;
if (json_object_get_type(jsonparent) != json_type_array) {
return NULL;
}
length = json_object_array_length(jsonparent);
if (length > CAPWAP_TXPOWERLEVEL_MAXLENGTH) {
return NULL;
}
txpowerlevel = (struct capwap_80211_txpowerlevel_element*)capwap_alloc(sizeof(struct capwap_80211_txpowerlevel_element));
memset(txpowerlevel, 0, sizeof(struct capwap_80211_txpowerlevel_element));
txpowerlevel->radioid = radioid;
for (i = 0; i < length; i++) {
struct json_object* jsonvalue = json_object_array_get_idx(jsonparent, i);
if (jsonvalue && (json_object_get_type(jsonvalue) == json_type_int)) {
txpowerlevel->numlevels++;
txpowerlevel->powerlevel[i] = (uint16_t)json_object_get_int(jsonvalue);
}
}
return txpowerlevel;
}
/* */
static int ac_json_80211_txpowerlevel_addmessageelement(struct ac_json_ieee80211_wtpradio* wtpradio, void* data, int overwrite) {
struct capwap_80211_txpowerlevel_element* txpowerlevel = (struct capwap_80211_txpowerlevel_element*)data;
struct ac_json_ieee80211_item* item = &wtpradio->items[txpowerlevel->radioid - 1];
struct capwap_message_elements_ops* ops = capwap_get_message_element_ops(CAPWAP_ELEMENT_80211_TXPOWERLEVEL);
if (item->txpowerlevel) {
if (!overwrite) {
return 0;
}
ops->free_message_element(item->txpowerlevel);
}
item->valid = 1;
item->txpowerlevel = (struct capwap_80211_txpowerlevel_element*)ops->clone_message_element(txpowerlevel);
return 1;
}
/* */
static void ac_json_80211_txpowerlevel_createjson(struct json_object* jsonparent, void* data) {
int i;
struct json_object* jsontxpower;
struct capwap_80211_txpowerlevel_element* txpowerlevel = (struct capwap_80211_txpowerlevel_element*)data;
jsontxpower = json_object_new_array();
for (i = 0; i < txpowerlevel->numlevels; i++) {
json_object_array_add(jsontxpower, json_object_new_int((int)txpowerlevel->powerlevel[i]));
}
json_object_object_add(jsonparent, "IEEE80211TXPowerLevel", jsontxpower);
}
/* */
struct ac_json_ieee80211_ops ac_json_80211_txpowerlevel_ops = {
.type = CAPWAP_ELEMENT_80211_TXPOWERLEVEL,
.json_type = "IEEE80211TXPowerLevel",
.create_message_element = ac_json_80211_txpowerlevel_createmessageelement,
.add_message_element = ac_json_80211_txpowerlevel_addmessageelement,
.create_json = ac_json_80211_txpowerlevel_createjson
};

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#ifndef __AC_JSON_80211_TXPOWERLEVEL_HEADER__
#define __AC_JSON_80211_TXPOWERLEVEL_HEADER__
#include "capwap_element_80211_txpowerlevel.h"
extern struct ac_json_ieee80211_ops ac_json_80211_txpowerlevel_ops;
#endif /* __AC_JSON_80211_TXPOWERLEVEL_HEADER__ */

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#include "ac.h"
#include "ac_json.h"
/* */
static void* ac_json_80211_updatewlan_createmessageelement(struct json_object* jsonparent, uint16_t radioid) {
return NULL; /* TODO */
}
/* */
static int ac_json_80211_updatewlan_addmessageelement(struct ac_json_ieee80211_wtpradio* wtpradio, void* data, int overwrite) {
struct capwap_80211_updatewlan_element* updatewlan = (struct capwap_80211_updatewlan_element*)data;
struct ac_json_ieee80211_item* item = &wtpradio->items[updatewlan->radioid - 1];
struct capwap_message_elements_ops* ops = capwap_get_message_element_ops(CAPWAP_ELEMENT_80211_UPDATE_WLAN);
if (item->updatewlan) {
if (!overwrite) {
return 0;
}
ops->free_message_element(item->updatewlan);
}
item->valid = 1;
item->updatewlan = (struct capwap_80211_updatewlan_element*)ops->clone_message_element(updatewlan);
return 1;
}
/* */
static void ac_json_80211_updatewlan_createjson(struct json_object* jsonparent, void* data) {
/* TODO */
}
/* */
struct ac_json_ieee80211_ops ac_json_80211_updatewlan_ops = {
.type = CAPWAP_ELEMENT_80211_UPDATE_WLAN,
.json_type = "IEEE80211UpdateWLAN",
.create_message_element = ac_json_80211_updatewlan_createmessageelement,
.add_message_element = ac_json_80211_updatewlan_addmessageelement,
.create_json = ac_json_80211_updatewlan_createjson
};

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#ifndef __AC_JSON_80211_UPDATEWLAN_HEADER__
#define __AC_JSON_80211_UPDATEWLAN_HEADER__
#include "capwap_element_80211_updatewlan.h"
extern struct ac_json_ieee80211_ops ac_json_80211_updatewlan_ops;
#endif /* __AC_JSON_80211_UPDATEWLAN_HEADER__ */

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#include "ac.h"
#include "ac_json.h"
/*
IEEE80211WTPQoS: {
TaggingPolicy: [int],
Voice: {
QueueDepth: [int],
CWMin: [int],
CWMax: [int],
AIFS: [int],
Priority8021p: [int],
DSCP: [int]
}
Video: {
QueueDepth: [int],
CWMin: [int],
CWMax: [int],
AIFS: [int],
Priority8021p: [int],
DSCP: [int]
}
BestEffort: {
QueueDepth: [int],
CWMin: [int],
CWMax: [int],
AIFS: [int],
Priority8021p: [int],
DSCP: [int]
}
Background: {
QueueDepth: [int],
CWMin: [int],
CWMax: [int],
AIFS: [int],
Priority8021p: [int],
DSCP: [int]
}
}
*/
/* */
static void* ac_json_80211_wtpqos_createmessageelement(struct json_object* jsonparent, uint16_t radioid) {
return NULL; /* TODO */
}
/* */
static int ac_json_80211_wtpqos_addmessageelement(struct ac_json_ieee80211_wtpradio* wtpradio, void* data, int overwrite) {
struct capwap_80211_wtpqos_element* wtpqos = (struct capwap_80211_wtpqos_element*)data;
struct ac_json_ieee80211_item* item = &wtpradio->items[wtpqos->radioid - 1];
struct capwap_message_elements_ops* ops = capwap_get_message_element_ops(CAPWAP_ELEMENT_80211_WTP_QOS);
if (item->wtpqos) {
if (!overwrite) {
return 0;
}
ops->free_message_element(item->wtpqos);
}
item->valid = 1;
item->wtpqos = (struct capwap_80211_wtpqos_element*)ops->clone_message_element(wtpqos);
return 1;
}
/* */
static void ac_json_80211_wtpqos_createjson(struct json_object* jsonparent, void* data) {
/* TODO */
}
/* */
struct ac_json_ieee80211_ops ac_json_80211_wtpqos_ops = {
.type = CAPWAP_ELEMENT_80211_WTP_QOS,
.json_type = "IEEE80211WTPQoS",
.create_message_element = ac_json_80211_wtpqos_createmessageelement,
.add_message_element = ac_json_80211_wtpqos_addmessageelement,
.create_json = ac_json_80211_wtpqos_createjson
};

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#ifndef __AC_JSON_80211_WTPQOS_HEADER__
#define __AC_JSON_80211_WTPQOS_HEADER__
#include "capwap_element_80211_wtpqos.h"
extern struct ac_json_ieee80211_ops ac_json_80211_wtpqos_ops;
#endif /* __AC_JSON_80211_WTPQOS_HEADER__ */

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#include "ac.h"
#include "ac_json.h"
/*
IEEE80211WTPRadioConfiguration: {
ShortPreamble: [int],
NumBSSIDs: [int],
DTIMPeriod: [int],
BSSID: [string],
BeaconPeriod: [int],
CountryString: [string]
}
*/
/* */
static void* ac_json_80211_wtpradioconf_createmessageelement(struct json_object* jsonparent, uint16_t radioid) {
struct json_object* jsonitem;
struct capwap_80211_wtpradioconf_element* wtpradioconf;
wtpradioconf = (struct capwap_80211_wtpradioconf_element*)capwap_alloc(sizeof(struct capwap_80211_wtpradioconf_element));
memset(wtpradioconf, 0, sizeof(struct capwap_80211_wtpradioconf_element));
wtpradioconf->radioid = radioid;
/* */
jsonitem = json_object_object_get(jsonparent, "ShortPreamble");
if (jsonitem && (json_object_get_type(jsonitem) == json_type_int)) {
wtpradioconf->shortpreamble = (uint8_t)json_object_get_int(jsonitem);
} else {
capwap_free(wtpradioconf);
return NULL;
}
jsonitem = json_object_object_get(jsonparent, "NumBSSIDs");
if (jsonitem && (json_object_get_type(jsonitem) == json_type_int)) {
wtpradioconf->maxbssid = (uint8_t)json_object_get_int(jsonitem);
} else {
capwap_free(wtpradioconf);
return NULL;
}
jsonitem = json_object_object_get(jsonparent, "DTIMPeriod");
if (jsonitem && (json_object_get_type(jsonitem) == json_type_int)) {
wtpradioconf->dtimperiod = (uint8_t)json_object_get_int(jsonitem);
} else {
capwap_free(wtpradioconf);
return NULL;
}
jsonitem = json_object_object_get(jsonparent, "BSSID");
if (jsonitem && (json_object_get_type(jsonitem) == json_type_string)) {
if (!capwap_scanf_macaddress((unsigned char*)wtpradioconf->bssid, json_object_get_string(jsonitem), MACADDRESS_EUI48_LENGTH)) {
capwap_free(wtpradioconf);
return NULL;
}
} else {
capwap_free(wtpradioconf);
return NULL;
}
jsonitem = json_object_object_get(jsonparent, "BeaconPeriod");
if (jsonitem && (json_object_get_type(jsonitem) == json_type_int)) {
wtpradioconf->beaconperiod = (uint16_t)json_object_get_int(jsonitem);
} else {
capwap_free(wtpradioconf);
return NULL;
}
jsonitem = json_object_object_get(jsonparent, "CountryString");
if (jsonitem && (json_object_get_type(jsonitem) == json_type_string)) {
const char* country = json_object_get_string(jsonitem);
if (strlen(country) == (CAPWAP_WTP_RADIO_CONF_COUNTRY_LENGTH - 1)) {
strcpy((char*)wtpradioconf->country, country);
} else {
capwap_free(wtpradioconf);
return NULL;
}
} else {
capwap_free(wtpradioconf);
return NULL;
}
return wtpradioconf;
}
/* */
static int ac_json_80211_wtpradioconf_addmessageelement(struct ac_json_ieee80211_wtpradio* wtpradio, void* data, int overwrite) {
struct capwap_80211_wtpradioconf_element* wtpradioconf = (struct capwap_80211_wtpradioconf_element*)data;
struct ac_json_ieee80211_item* item = &wtpradio->items[wtpradioconf->radioid - 1];
struct capwap_message_elements_ops* ops = capwap_get_message_element_ops(CAPWAP_ELEMENT_80211_WTP_RADIO_CONF);
if (item->wtpradioconf) {
if (!overwrite) {
return 0;
}
ops->free_message_element(item->wtpradioconf);
}
item->valid = 1;
item->wtpradioconf = (struct capwap_80211_wtpradioconf_element*)ops->clone_message_element(wtpradioconf);
return 1;
}
/* */
static void ac_json_80211_wtpradioconf_createjson(struct json_object* jsonparent, void* data) {
char buffer[18];
struct json_object* jsonitem;
struct capwap_80211_wtpradioconf_element* wtpradioconf = (struct capwap_80211_wtpradioconf_element*)data;
jsonitem = json_object_new_object();
json_object_object_add(jsonitem, "ShortPreamble", json_object_new_int((int)wtpradioconf->shortpreamble));
json_object_object_add(jsonitem, "NumBSSIDs", json_object_new_int((int)wtpradioconf->maxbssid));
json_object_object_add(jsonitem, "DTIMPeriod", json_object_new_int((int)wtpradioconf->dtimperiod));
json_object_object_add(jsonitem, "BSSID", json_object_new_string(capwap_printf_macaddress(buffer, (unsigned char*)wtpradioconf->bssid, MACADDRESS_EUI48_LENGTH)));
json_object_object_add(jsonitem, "BeaconPeriod", json_object_new_int((int)wtpradioconf->beaconperiod));
json_object_object_add(jsonitem, "CountryString", json_object_new_string((char*)wtpradioconf->country));
json_object_object_add(jsonparent, "IEEE80211WTPRadioConfiguration", jsonitem);
}
/* */
struct ac_json_ieee80211_ops ac_json_80211_wtpradioconf_ops = {
.type = CAPWAP_ELEMENT_80211_WTP_RADIO_CONF,
.json_type = "IEEE80211WTPRadioConfiguration",
.create_message_element = ac_json_80211_wtpradioconf_createmessageelement,
.add_message_element = ac_json_80211_wtpradioconf_addmessageelement,
.create_json = ac_json_80211_wtpradioconf_createjson
};

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@ -0,0 +1,8 @@
#ifndef __AC_JSON_80211_WTPRADIOCONF_HEADER__
#define __AC_JSON_80211_WTPRADIOCONF_HEADER__
#include "capwap_element_80211_wtpradioconf.h"
extern struct ac_json_ieee80211_ops ac_json_80211_wtpradioconf_ops;
#endif /* __AC_JSON_80211_WTPRADIOCONF_HEADER__ */

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@ -0,0 +1,41 @@
#include "ac.h"
#include "ac_json.h"
/* */
static void* ac_json_80211_wtpradiofailalarm_createmessageelement(struct json_object* jsonparent, uint16_t radioid) {
return NULL; /* TODO */
}
/* */
static int ac_json_80211_wtpradiofailalarm_addmessageelement(struct ac_json_ieee80211_wtpradio* wtpradio, void* data, int overwrite) {
struct capwap_80211_wtpradiofailalarm_element* wtpradiofailalarm = (struct capwap_80211_wtpradiofailalarm_element*)data;
struct ac_json_ieee80211_item* item = &wtpradio->items[wtpradiofailalarm->radioid - 1];
struct capwap_message_elements_ops* ops = capwap_get_message_element_ops(CAPWAP_ELEMENT_80211_WTP_RADIO_FAIL_ALARM);
if (item->wtpradiofailalarm) {
if (!overwrite) {
return 0;
}
ops->free_message_element(item->wtpradiofailalarm);
}
item->valid = 1;
item->wtpradiofailalarm = (struct capwap_80211_wtpradiofailalarm_element*)ops->clone_message_element(wtpradiofailalarm);
return 1;
}
/* */
static void ac_json_80211_wtpradiofailalarm_createjson(struct json_object* jsonparent, void* data) {
/* TODO */
}
/* */
struct ac_json_ieee80211_ops ac_json_80211_wtpradiofailalarm_ops = {
.type = CAPWAP_ELEMENT_80211_WTP_RADIO_FAIL_ALARM,
.json_type = "IEEE80211WTPRadioFailAlarm",
.create_message_element = ac_json_80211_wtpradiofailalarm_createmessageelement,
.add_message_element = ac_json_80211_wtpradiofailalarm_addmessageelement,
.create_json = ac_json_80211_wtpradiofailalarm_createjson
};

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@ -0,0 +1,8 @@
#ifndef __AC_JSON_80211_WTPRADIOFAILALARM_HEADER__
#define __AC_JSON_80211_WTPRADIOFAILALARM_HEADER__
#include "capwap_element_80211_wtpradiofailalarm.h"
extern struct ac_json_ieee80211_ops ac_json_80211_wtpradiofailalarm_ops;
#endif /* __AC_JSON_80211_WTPRADIOFAILALARM_HEADER__ */

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@ -0,0 +1,68 @@
#include "ac.h"
#include "ac_json.h"
/*
IEEE80211WTPRadioInformation: {
Mode: [int]
}
*/
/* */
static void* ac_json_80211_wtpradioinformation_createmessageelement(struct json_object* jsonparent, uint16_t radioid) {
struct json_object* jsonitem;
struct capwap_80211_wtpradioinformation_element* wtpradioinformation;
wtpradioinformation = (struct capwap_80211_wtpradioinformation_element*)capwap_alloc(sizeof(struct capwap_80211_wtpradioinformation_element));
memset(wtpradioinformation, 0, sizeof(struct capwap_80211_wtpradioinformation_element));
wtpradioinformation->radioid = radioid;
/* */
jsonitem = json_object_object_get(jsonparent, "Mode");
if (jsonitem && (json_object_get_type(jsonitem) == json_type_int)) {
wtpradioinformation->radiotype = (uint32_t)json_object_get_int(jsonitem) & CAPWAP_RADIO_TYPE_MASK;
} else {
capwap_free(wtpradioinformation);
return NULL;
}
return wtpradioinformation;
}
/* */
static int ac_json_80211_wtpradioinformation_addmessageelement(struct ac_json_ieee80211_wtpradio* wtpradio, void* data, int overwrite) {
struct capwap_80211_wtpradioinformation_element* wtpradioinformation = (struct capwap_80211_wtpradioinformation_element*)data;
struct ac_json_ieee80211_item* item = &wtpradio->items[wtpradioinformation->radioid - 1];
struct capwap_message_elements_ops* ops = capwap_get_message_element_ops(CAPWAP_ELEMENT_80211_WTPRADIOINFORMATION);
if (item->wtpradioinformation) {
if (!overwrite) {
return 0;
}
ops->free_message_element(item->wtpradioinformation);
}
item->valid = 1;
item->wtpradioinformation = (struct capwap_80211_wtpradioinformation_element*)ops->clone_message_element(wtpradioinformation);
return 1;
}
/* */
static void ac_json_80211_wtpradioinformation_createjson(struct json_object* jsonparent, void* data) {
struct json_object* jsonitem;
struct capwap_80211_wtpradioinformation_element* wtpradioinformation = (struct capwap_80211_wtpradioinformation_element*)data;
jsonitem = json_object_new_object();
json_object_object_add(jsonitem, "Mode", json_object_new_int((int)wtpradioinformation->radiotype));
json_object_object_add(jsonparent, "IEEE80211WTPRadioInformation", jsonitem);
}
/* */
struct ac_json_ieee80211_ops ac_json_80211_wtpradioinformation_ops = {
.type = CAPWAP_ELEMENT_80211_WTPRADIOINFORMATION,
.json_type = "IEEE80211WTPRadioInformation",
.create_message_element = ac_json_80211_wtpradioinformation_createmessageelement,
.add_message_element = ac_json_80211_wtpradioinformation_addmessageelement,
.create_json = ac_json_80211_wtpradioinformation_createjson
};

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@ -0,0 +1,8 @@
#ifndef __AC_JSON_80211_WTPRADIOINFORMATION_HEADER__
#define __AC_JSON_80211_WTPRADIOINFORMATION_HEADER__
#include "capwap_element_80211_wtpradioinformation.h"
extern struct ac_json_ieee80211_ops ac_json_80211_wtpradioinformation_ops;
#endif /* __AC_JSON_80211_WTPRADIOINFORMATION_HEADER__ */

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@ -33,6 +33,45 @@ struct ac_json_ieee80211_wtpradio {
struct ac_json_ieee80211_item items[RADIOID_MAX_COUNT];
};
/* JSON IEEE 802.11 message elements */
#include "ac_80211_json_addwlan.h"
#include "ac_80211_json_antenna.h"
#include "ac_80211_json_assignbssid.h"
#include "ac_80211_json_deletewlan.h"
#include "ac_80211_json_directsequencecontrol.h"
#include "ac_80211_json_ie.h"
#include "ac_80211_json_macoperation.h"
#include "ac_80211_json_miccountermeasures.h"
#include "ac_80211_json_multidomaincapability.h"
#include "ac_80211_json_ofdmcontrol.h"
#include "ac_80211_json_rateset.h"
#include "ac_80211_json_rsnaerrorreport.h"
#include "ac_80211_json_statistics.h"
#include "ac_80211_json_supportedrates.h"
#include "ac_80211_json_txpower.h"
#include "ac_80211_json_txpowerlevel.h"
#include "ac_80211_json_updatewlan.h"
#include "ac_80211_json_wtpqos.h"
#include "ac_80211_json_wtpradioconf.h"
#include "ac_80211_json_wtpradiofailalarm.h"
#include "ac_80211_json_wtpradioinformation.h"
/* */
struct ac_json_ieee80211_ops {
/* Message Element Type */
uint16_t type;
/* Message Element JSON Type */
char* json_type;
/* Build message element */
void* (*create_message_element)(struct json_object* jsonparent, uint16_t radioid);
int (*add_message_element)(struct ac_json_ieee80211_wtpradio* wtpradio, void* data, int overwrite);
/* Build JSON */
void (*create_json)(struct json_object* jsonparent, void* data);
};
/* */
void ac_json_ieee80211_init(struct ac_json_ieee80211_wtpradio* wtpradio);
void ac_json_ieee80211_free(struct ac_json_ieee80211_wtpradio* wtpradio);