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defines
#define EZC_ERR_NOT_ENABLED 1
defines
#define EZC_ERR_INVALID_STATE 2
defines
#define EZC_ERR_INVALID_DATA 3
defines
#define sys_restart() kill(1, SIGHUP)
defines
#define sys_reboot() kill(1, SIGTERM)
defines
#define sys_stats(url) eval("stats", (url))
defines
#define SSID_FMT_BUF_LEN 4*32+1 /* Length for SSID format string */
defines
#define htod32(i) (g_swap?bcmswap32(i):(uint32)(i))
defines
#define dtoh32(i) (g_swap?bcmswap32(i):(uint32)(i))
defines
#define dtoh16(i) (g_swap?bcmswap16(i):(uint16)(i))
defines
#define dtohchanspec(i) (g_swap?dtoh16(i):i)
defines
#define WLC_DUMP_BUF_LEN (32 * 1024)
defines
#define WLC_MAX_AP_SCAN_LIST_LEN 50
defines
#define WLC_SCAN_RETRY_TIMES 5
functions
int ej_wl_sta_status(int eid, webs_t wp, char *name) { // TODO return 0; }
functions
int dump_rateset(int eid, webs_t wp, int argc, char_t **argv, uint8 *rates, uint count) { uint i; uint r; bool b; int retval = 0; retval += websWrite(wp, "[ "); for (i = 0; i < count; i++) { r = rates[i] & 0x7f; b = rates[i] & 0x80; if (r == 0) break; retval += websWrite(wp, "%d%s%s ", (r / 2), (r % 2...
functions
int wlu_bcmp(const void *b1, const void *b2, int len) { return (memcmp(b1, b2, len)); }
functions
bool wlu_is_wpa_ie(uint8 **wpaie, uint8 **tlvs, uint *tlvs_len) { uint8 *ie = *wpaie; /* If the contents match the WPA_OUI and type=1 */ if ((ie[1] >= 6) && !wlu_bcmp(&ie[2], WPA_OUI "\x01", 4)) { return TRUE; }
functions
int wl_rsn_ie_parse_info(uint8* rsn_buf, uint len, rsn_parse_info_t *rsn) { uint16 count; memset(rsn, 0, sizeof(rsn_parse_info_t)); /* version */ if (len < sizeof(uint16)) return 1; rsn->version = ltoh16_ua(rsn_buf); len -= sizeof(uint16); rsn_buf += sizeof(uint16); /* Multicast Suite */ if (len < sizeof...
functions
uint wl_rsn_ie_decode_cntrs(uint cntr_field) { uint cntrs; switch (cntr_field) { case RSN_CAP_1_REPLAY_CNTR: cntrs = 1; break; case RSN_CAP_2_REPLAY_CNTRS: cntrs = 2; break; case RSN_CAP_4_REPLAY_CNTRS: cntrs = 4; break; case RSN_CAP_16_REPLAY_CNTRS: cntrs = 16; break; default: cntrs = 0; br...
functions
int wl_rsn_ie_dump(int eid, webs_t wp, int argc, char_t **argv, bcm_tlv_t *ie) { int i; int rsn; wpa_ie_fixed_t *wpa = NULL; rsn_parse_info_t rsn_info; wpa_suite_t *suite; uint8 std_oui[3]; int unicast_count = 0; int akm_count = 0; uint16 capabilities; uint cntrs; int err; int retval = 0; if (ie->id == DO...
functions
int wl_dump_wpa_rsn_ies(int eid, webs_t wp, int argc, char_t **argv, uint8* cp, uint len) { uint8 *parse = cp; uint parse_len = len; uint8 *wpaie; uint8 *rsnie; int retval = 0; while ((wpaie = wlu_parse_tlvs(parse, parse_len, DOT11_MNG_WPA_ID))) if (wlu_is_wpa_ie(&wpaie, &parse, &parse_len)) break; if (wpa...
functions
int wl_format_ssid(char* ssid_buf, uint8* ssid, int ssid_len) { int i, c; char *p = ssid_buf; if (ssid_len > 32) ssid_len = 32; for (i = 0; i < ssid_len; i++) { c = (int)ssid[i]; if (c == '\\') { *p++ = '\\'; // *p++ = '\\'; }
functions
int dump_bss_info(int eid, webs_t wp, int argc, char_t **argv, wl_bss_info_t *bi) { char ssidbuf[SSID_FMT_BUF_LEN]; char chspec_str[CHANSPEC_STR_LEN]; wl_bss_info_107_t *old_bi; int mcs_idx = 0; int retval = 0; /* Convert version 107 to 109 */ if (dtoh32(bi->version) == LEGACY_WL_BSS_INFO_VERSION) { old_bi = ...
functions
int wl_status(int eid, webs_t wp, int argc, char_t **argv, int unit) { int ret; struct ether_addr bssid; wlc_ssid_t ssid; char ssidbuf[SSID_FMT_BUF_LEN]; wl_bss_info_t *bi; int retval = 0; char tmp[128], prefix[] = "wlXXXXXXXXXX_"; char *name; snprintf(prefix, sizeof(prefix), "wl%d_", unit); name = nvram_saf...
functions
int ej_wl_status(int eid, webs_t wp, int argc, char_t **argv, int unit) { char tmp[128], prefix[] = "wlXXXXXXXXXX_"; char *name; char name_vif[] = "wlX.Y_XXXXXXXXXX"; struct maclist *auth, *assoc, *authorized; int max_sta_count, maclist_size; int i, j, val = 0, ret = 0; int ii, jj; char *arplist = NULL, *arplis...
functions
leases if (leaselist) { leaselistptr = strstr(leaselist,ipentry); // ip entry more efficient than MAC if (leaselistptr) { sscanf(leaselistptr, "%*s %15s", hostnameentry); sprintf(hostname,"%-15s ",hostnameentry); }
functions
leases if (leaselist) { leaselistptr = strstr(leaselist,ipentry); // ip entry more efficient than MAC if (leaselistptr) { sscanf(leaselistptr, "%*s %15s", hostnameentry); sprintf(hostname,"%-15s ",hostnameentry); }
functions
int ej_wl_status_2g(int eid, webs_t wp, int argc, char_t **argv) { int retval = 0; int ii = 0; char nv_param[NVRAM_MAX_PARAM_LEN]; char *temp; for (ii = 0; ii < DEV_NUMIFS; ii++) { sprintf(nv_param, "wl%d_unit", ii); temp = nvram_get(nv_param); if (temp && strlen(temp) > 0) { retval += ej_wl_status(ei...
functions
int wl_control_channel(int unit) { int ret; struct ether_addr bssid; wl_bss_info_t *bi; wl_bss_info_107_t *old_bi; char tmp[128], prefix[] = "wlXXXXXXXXXX_"; char *name; snprintf(prefix, sizeof(prefix), "wl%d_", unit); name = nvram_safe_get(strcat_r(prefix, "ifname", tmp)); if ((ret = wl_ioctl(name, WLC_GET_...
functions
int ej_wl_control_channel(int eid, webs_t wp, int argc, char_t **argv) { int ret = 0; int channel_24 = 0, channel_50 = 0; if (!(channel_24 = wl_control_channel(0))) { ret = websWrite(wp, "[\"0\"]"); return ret; }
functions
int ej_wl_channel_list(int eid, webs_t wp, int argc, char_t **argv, int unit) { int i, retval = 0; char buf[4096]; wl_channels_in_country_t *cic = (wl_channels_in_country_t *)buf; char tmp[256], prefix[] = "wlXXXXXXXXXX_"; char *country_code; char *name; snprintf(prefix, sizeof(prefix), "wl%d_", unit); country...
functions
int ej_wl_channel_list_2g(int eid, webs_t wp, int argc, char_t **argv) { return ej_wl_channel_list(eid, wp, argc, argv, 0); }
functions
int ej_wl_channel_list_5g(int eid, webs_t wp, int argc, char_t **argv) { return ej_wl_channel_list(eid, wp, argc, argv, 1); }
functions
int wps_is_oob() { char tmp[16]; snprintf(tmp, sizeof(tmp), "lan_wps_oob"); /* * OOB: enabled * Configured: disabled */ if (nvram_match(tmp, "disabled")) return 0; return 1; }
functions
void getWPSAuthMode(int unit, char *ret_str) { char tmp[128], prefix[]="wlXXXXXXX_"; snprintf(prefix, sizeof(prefix), "wl%d_", unit); if (nvram_match(strcat_r(prefix, "auth_mode_x", tmp), "shared")) strcpy(ret_str, "Shared Key"); else if (nvram_match(strcat_r(prefix, "auth_mode_x", tmp), "psk")) strcpy(ret_st...
functions
void getWPSEncrypType(int unit, char *ret_str) { char tmp[128], prefix[]="wlXXXXXXX_"; snprintf(prefix, sizeof(prefix), "wl%d_", unit); if (nvram_match(strcat_r(prefix, "auth_mode_x", tmp), "open") && nvram_match(strcat_r(prefix, "wep_x", tmp), "0")) strcpy(ret_str, "None"); else if ((nvram_match(strcat_r(pre...
functions
int wl_wps_info(int eid, webs_t wp, int argc, char_t **argv, int unit) { char tmpstr[256]; int retval = 0; char tmp[128], prefix[]="wlXXXXXXX_"; char *wps_sta_pin; snprintf(prefix, sizeof(prefix), "wl%d_", unit); retval += websWrite(wp, "<wps>\n"); //0. WSC Status if (!strcmp(nvram_safe_get(strcat_r(prefix, ...
functions
int ej_wps_info(int eid, webs_t wp, int argc, char_t **argv) { return wl_wps_info(eid, wp, argc, argv, 1); }
functions
int ej_wps_info_2g(int eid, webs_t wp, int argc, char_t **argv) { return wl_wps_info(eid, wp, argc, argv, 0); }
functions
int ej_nat_table(int eid, webs_t wp, int argc, char_t **argv) { int ret = 0; #ifdef REMOVE int needlen = 0, listlen, i netconf_nat_t *nat_list = 0; netconf_nat_t **plist, *cur; char line[256], tstr[32]; #endif ret += websWrite(wp, "Destination Proto. Port Range Redirect to\n"); // find another way to show...
functions
int wpa_key_mgmt_to_bitfield(const unsigned char *s) { if (memcmp(s, WPA_AUTH_KEY_MGMT_UNSPEC_802_1X, WPA_SELECTOR_LEN) == 0) return WPA_KEY_MGMT_IEEE8021X_; if (memcmp(s, WPA_AUTH_KEY_MGMT_PSK_OVER_802_1X, WPA_SELECTOR_LEN) == 0) return WPA_KEY_MGMT_PSK_; if (memcmp(s, WPA_AUTH_KEY_MGMT_NONE, WPA_SELECTOR_...
functions
int rsn_key_mgmt_to_bitfield(const unsigned char *s) { if (memcmp(s, RSN_AUTH_KEY_MGMT_UNSPEC_802_1X, RSN_SELECTOR_LEN) == 0) return WPA_KEY_MGMT_IEEE8021X2_; if (memcmp(s, RSN_AUTH_KEY_MGMT_PSK_OVER_802_1X, RSN_SELECTOR_LEN) == 0) return WPA_KEY_MGMT_PSK2_; return 0; }
functions
int wpa_selector_to_bitfield(const unsigned char *s) { if (memcmp(s, WPA_CIPHER_SUITE_NONE, WPA_SELECTOR_LEN) == 0) return WPA_CIPHER_NONE_; if (memcmp(s, WPA_CIPHER_SUITE_WEP40, WPA_SELECTOR_LEN) == 0) return WPA_CIPHER_WEP40_; if (memcmp(s, WPA_CIPHER_SUITE_TKIP, WPA_SELECTOR_LEN) == 0) return WPA_CIPHER_TKI...
functions
int rsn_selector_to_bitfield(const unsigned char *s) { if (memcmp(s, RSN_CIPHER_SUITE_NONE, RSN_SELECTOR_LEN) == 0) return WPA_CIPHER_NONE_; if (memcmp(s, RSN_CIPHER_SUITE_WEP40, RSN_SELECTOR_LEN) == 0) return WPA_CIPHER_WEP40_; if (memcmp(s, RSN_CIPHER_SUITE_TKIP, RSN_SELECTOR_LEN) == 0) return WPA_CIPHER_TKI...
functions
int wpa_parse_wpa_ie_wpa(const unsigned char *wpa_ie, size_t wpa_ie_len, struct wpa_ie_data *data) { const struct wpa_ie_hdr *hdr; const unsigned char *pos; int left; int i, count; data->proto = WPA_PROTO_WPA_; data->pairwise_cipher = WPA_CIPHER_TKIP_; data->group_cipher = WPA_CIPHER_TKIP_; data->key_mgmt ...
functions
else if (left > 0) { // fprintf(stderr, "ie length mismatch, %u too much", left); return -1; }
functions
else if (left == 1) { // fprintf(stderr, "ie too short (for key mgmt)"); return -1; }
functions
else if (left == 1) { // fprintf(stderr, "ie too short (for capabilities)"); return -1; }
functions
int wpa_parse_wpa_ie_rsn(const unsigned char *rsn_ie, size_t rsn_ie_len, struct wpa_ie_data *data) { const struct rsn_ie_hdr *hdr; const unsigned char *pos; int left; int i, count; data->proto = WPA_PROTO_RSN_; data->pairwise_cipher = WPA_CIPHER_CCMP_; data->group_cipher = WPA_CIPHER_CCMP_; data->key_mgmt ...
functions
else if (left > 0) { // fprintf(stderr, "ie length mismatch, %u too much", left); return -1; }
functions
else if (left == 1) { // fprintf(stderr, "ie too short (for key mgmt)"); return -1; }
functions
else if (left == 1) { // fprintf(stderr, "ie too short (for capabilities)"); return -1; }
functions
int wpa_parse_wpa_ie(const unsigned char *wpa_ie, size_t wpa_ie_len, struct wpa_ie_data *data) { if (wpa_ie_len >= 1 && wpa_ie[0] == DOT11_MNG_RSN_ID) return wpa_parse_wpa_ie_rsn(wpa_ie, wpa_ie_len, data); else return wpa_parse_wpa_ie_wpa(wpa_ie, wpa_ie_len, data); }
functions
int ej_SiteSurvey(int eid, webs_t wp, int argc, char_t **argv) { int ret, i, k, left, ht_extcha; int retval = 0, ap_count = 0, idx_same = -1, count = 0; unsigned char *bssidp; char *info_b; unsigned char rate; unsigned char bssid[6]; char macstr[18]; char ure_mac[18]; char ssid_str[256]; wl_scan_results_t *re...
functions
Multiple SSID (share the same BSSID) { if(strcmp(apinfos[k].BSSID, macstr) == 0 && strcmp(apinfos[k].SSID, info->SSID) == 0) { idx_same = k; break; }
functions
int ej_urelease(int eid, webs_t wp, int argc, char_t **argv) { int retval = 0; if ( nvram_match("sw_mode_ex", "2") && nvram_invmatch("lan_ipaddr_new", "") && nvram_invmatch("lan_netmask_new", "") && nvram_invmatch("lan_gateway_new", "")) { retval += websWrite(wp, "["); retval += websWrite(wp, "\"%s\", ...
functions
bool find_ethaddr_in_list(void *ethaddr, struct maclist *list){ int i; for(i = 0; i < list->count; ++i) if(!bcmp(ethaddr, (void *)&list->ea[i], ETHER_ADDR_LEN)) return TRUE; return FALSE; }
functions
int ej_wl_auth_list(int eid, webs_t wp, int argc, char_t **argv){ int unit; char tmp[128], prefix[] = "wlXXXXXXXXXX_"; char *name; struct maclist *auth, *assoc, *authorized; int max_sta_count, maclist_size; int i, firstRow; if((unit = atoi(nvram_safe_get("wl_unit"))) < 0) return -1; snprintf(prefix, sizeo...
functions
int wl_scan(int eid, webs_t wp, int argc, char_t **argv, int unit) { char *name = NULL; char tmp[128], prefix[] = "wlXXXXXXXXXX_"; wl_scan_results_t *list = (wl_scan_results_t*)scan_result; wl_bss_info_t *bi; wl_bss_info_107_t *old_bi; uint i, ap_count = 0; unsigned char *bssidp; char ssid_str[128]; char macst...
functions
int ej_wl_scan(int eid, webs_t wp, int argc, char_t **argv) { return wl_scan(eid, wp, argc, argv, 0); }
functions
int ej_wl_scan_2g(int eid, webs_t wp, int argc, char_t **argv) { return wl_scan(eid, wp, argc, argv, 0); }
functions
int ej_wl_scan_5g(int eid, webs_t wp, int argc, char_t **argv) { return wl_scan(eid, wp, argc, argv, 1); }
includes
#include <target/arm966e.h>
includes
#include <target/algorithm.h>
defines
#define FLASH_BBSR 0x54000000 /* Boot Bank Size Register */
defines
#define FLASH_NBBSR 0x54000004 /* Non-Boot Bank Size Register */
defines
#define FLASH_BBADR 0x5400000C /* Boot Bank Base Address Register */
defines
#define FLASH_NBBADR 0x54000010 /* Non-Boot Bank Base Address Register */
defines
#define FLASH_CR 0x54000018 /* Control Register */
defines
#define FLASH_SR 0x5400001C /* Status Register */
defines
#define FLASH_BCE5ADDR 0x54000020 /* BC Fifth Entry Target Address Register */
structs
struct str9x_flash_bank { uint32_t *sector_bits; int variant; int bank1; };
functions
int str9x_build_block_list(struct flash_bank *bank) { struct str9x_flash_bank *str9x_info = bank->driver_priv; int i; int num_sectors; int b0_sectors = 0, b1_sectors = 0; uint32_t offset = 0; /* set if we have large flash str9 */ str9x_info->variant = 0; str9x_info->bank1 = 0; switch (bank->size) { case (...
functions
int str9x_protect_check(struct flash_bank *bank) { int retval; struct str9x_flash_bank *str9x_info = bank->driver_priv; struct target *target = bank->target; int i; uint32_t adr; uint32_t status = 0; uint16_t hstatus = 0; if (bank->target->state != TARGET_HALTED) { LOG_ERROR("Target not halted"); return E...
functions
int str9x_erase(struct flash_bank *bank, int first, int last) { struct target *target = bank->target; int i; uint32_t adr; uint8_t status; uint8_t erase_cmd; int total_timeout; if (bank->target->state != TARGET_HALTED) { LOG_ERROR("Target not halted"); return ERROR_TARGET_NOT_HALTED; }
functions
int str9x_protect(struct flash_bank *bank, int set, int first, int last) { struct target *target = bank->target; int i; uint32_t adr; uint8_t status; if (bank->target->state != TARGET_HALTED) { LOG_ERROR("Target not halted"); return ERROR_TARGET_NOT_HALTED; }
functions
int str9x_write_block(struct flash_bank *bank, uint8_t *buffer, uint32_t offset, uint32_t count) { struct target *target = bank->target; uint32_t buffer_size = 32768; struct working_area *write_algorithm; struct working_area *source; uint32_t address = bank->base + offset; struct reg_param reg_params[4]; struc...
functions
int str9x_write(struct flash_bank *bank, uint8_t *buffer, uint32_t offset, uint32_t count) { struct target *target = bank->target; uint32_t words_remaining = (count / 2); uint32_t bytes_remaining = (count & 0x00000001); uint32_t address = bank->base + offset; uint32_t bytes_written = 0; uint8_t status; int ret...
functions
else if (retval == ERROR_FLASH_OPERATION_FAILED) { LOG_ERROR("flash writing failed"); return ERROR_FLASH_OPERATION_FAILED; }
functions
int str9x_probe(struct flash_bank *bank) { return ERROR_OK; }
functions
0 COMMAND_HANDLER(str9x_handle_part_id_command) { return ERROR_OK; }
functions
int get_str9x_info(struct flash_bank *bank, char *buf, int buf_size) { snprintf(buf, buf_size, "str9x flash driver info"); return ERROR_OK; }
functions
gboolean gkm_data_asn1_read_mpi (GNode *asn, gcry_mpi_t *mpi) { gcry_error_t gcry; GBytes *buf; gsize sz; g_return_val_if_fail (asn, FALSE); g_return_val_if_fail (mpi, FALSE); buf = egg_asn1x_get_integer_as_raw (asn); if (!buf) return FALSE; /* Automatically stores in secure memory if DER data is secure */...
functions
gboolean gkm_data_asn1_write_mpi (GNode *asn, gcry_mpi_t mpi) { gcry_error_t gcry; GBytes *bytes; gsize len; guchar *buf; g_return_val_if_fail (asn, FALSE); g_return_val_if_fail (mpi, FALSE); /* Get the size */ gcry = gcry_mpi_print (GCRYMPI_FMT_STD, NULL, 0, &len, mpi); g_return_val_if_fail (gcry == 0, FALS...
includes
#include <linux/stddef.h>
includes
#include <linux/mm.h>
includes
#include <linux/swap.h>
includes
#include <linux/interrupt.h>
includes
#include <linux/pagemap.h>
includes
#include <linux/bootmem.h>
includes
#include <linux/compiler.h>
includes
#include <linux/export.h>
includes
#include <linux/pagevec.h>
includes
#include <linux/writeback.h>
includes
#include <linux/slab.h>
includes
#include <linux/sysctl.h>
includes
#include <linux/cpu.h>
includes
#include <linux/memory.h>
includes
#include <linux/memory_hotplug.h>