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Commit | Line | Data |
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e8b168e8 | 1 | // SPDX-License-Identifier: GPL-2.0-only |
774e9b2e MM |
2 | /* |
3 | * Espressif Systems Wireless LAN device driver | |
4 | * | |
d7215282 | 5 | * SPDX-FileCopyrightText: 2015-2023 Espressif Systems (Shanghai) CO LTD |
774e9b2e | 6 | * |
774e9b2e | 7 | */ |
057d3956 | 8 | #include "utils.h" |
774e9b2e MM |
9 | #include <linux/init.h> |
10 | #include <linux/module.h> | |
11 | #include <linux/kernel.h> | |
12 | #include <linux/gpio.h> | |
7406fe82 | 13 | #include <linux/igmp.h> |
774e9b2e MM |
14 | |
15 | #include "esp.h" | |
16 | #include "esp_if.h" | |
17 | #include "esp_bt_api.h" | |
18 | #include "esp_api.h" | |
19 | #include "esp_cmd.h" | |
aad2ae2e | 20 | #include "esp_kernel_port.h" |
774e9b2e MM |
21 | |
22 | #include "esp_cfg80211.h" | |
bf3d6cb6 | 23 | #include "esp_stats.h" |
774e9b2e | 24 | |
774e9b2e MM |
25 | #define HOST_GPIO_PIN_INVALID -1 |
26 | static int resetpin = HOST_GPIO_PIN_INVALID; | |
27 | extern u8 ap_bssid[MAC_ADDR_LEN]; | |
3fef9acf | 28 | extern volatile u8 host_sleep; |
774e9b2e MM |
29 | |
30 | module_param(resetpin, int, S_IRUSR | S_IWUSR | S_IRGRP | S_IROTH); | |
31 | MODULE_PARM_DESC(resetpin, "Host's GPIO pin number which is connected to ESP32's EN to reset ESP32 device"); | |
32 | ||
33 | static void deinit_adapter(void); | |
34 | ||
35 | ||
7406fe82 | 36 | struct multicast_list mcast_list = {0}; |
774e9b2e MM |
37 | struct esp_adapter adapter; |
38 | /*struct esp_device esp_dev;*/ | |
39 | ||
a3829bf3 | 40 | struct esp_adapter *esp_get_adapter(void) |
774e9b2e MM |
41 | { |
42 | return &adapter; | |
43 | } | |
44 | ||
45 | void esp_process_new_packet_intr(struct esp_adapter *adapter) | |
46 | { | |
a3829bf3 | 47 | if (adapter) |
774e9b2e MM |
48 | queue_work(adapter->if_rx_workqueue, &adapter->if_rx_work); |
49 | } | |
50 | ||
a3829bf3 | 51 | static int process_tx_packet(struct sk_buff *skb) |
774e9b2e MM |
52 | { |
53 | struct esp_wifi_device *priv = NULL; | |
54 | struct esp_skb_cb *cb = NULL; | |
55 | struct esp_payload_header *payload_header = NULL; | |
56 | struct sk_buff *new_skb = NULL; | |
57 | int ret = 0; | |
58 | u8 pad_len = 0, realloc_skb = 0; | |
59 | u16 len = 0; | |
60 | u16 total_len = 0; | |
a3829bf3 | 61 | static u8 c; |
774e9b2e MM |
62 | u8 *pos = NULL; |
63 | ||
64 | c++; | |
65 | /* Get the priv */ | |
66 | cb = (struct esp_skb_cb *) skb->cb; | |
67 | priv = cb->priv; | |
68 | ||
69 | if (!priv) { | |
70 | dev_kfree_skb(skb); | |
6f8fee57 | 71 | esp_info("No priv\n"); |
774e9b2e MM |
72 | return NETDEV_TX_OK; |
73 | } | |
74 | ||
75 | if (netif_queue_stopped((const struct net_device *) priv->ndev)) { | |
6f8fee57 | 76 | esp_info("Netif queue stopped\n"); |
774e9b2e MM |
77 | return NETDEV_TX_BUSY; |
78 | } | |
79 | ||
3fef9acf MM |
80 | if (host_sleep) { |
81 | return NETDEV_TX_BUSY; | |
82 | } | |
83 | ||
774e9b2e MM |
84 | len = skb->len; |
85 | ||
86 | /* Create space for payload header */ | |
87 | pad_len = sizeof(struct esp_payload_header); | |
88 | ||
89 | total_len = len + pad_len; | |
90 | ||
91 | /* Align buffer length */ | |
92 | pad_len += SKB_DATA_ADDR_ALIGNMENT - (total_len % SKB_DATA_ADDR_ALIGNMENT); | |
93 | ||
94 | if (skb_headroom(skb) < pad_len) { | |
95 | /* Headroom is not sufficient */ | |
96 | realloc_skb = 1; | |
97 | } | |
98 | ||
99 | if (realloc_skb || !IS_ALIGNED((unsigned long) skb->data, SKB_DATA_ADDR_ALIGNMENT)) { | |
100 | /* Realloc SKB */ | |
101 | if (skb_linearize(skb)) { | |
102 | priv->stats.tx_errors++; | |
103 | dev_kfree_skb(skb); | |
6f8fee57 | 104 | esp_err("Failed to linearize SKB"); |
774e9b2e MM |
105 | return NETDEV_TX_OK; |
106 | } | |
107 | ||
108 | new_skb = esp_alloc_skb(skb->len + pad_len); | |
109 | ||
110 | if (!new_skb) { | |
6f8fee57 | 111 | esp_err("Failed to allocate SKB"); |
774e9b2e MM |
112 | priv->stats.tx_errors++; |
113 | dev_kfree_skb(skb); | |
114 | return NETDEV_TX_OK; | |
115 | } | |
116 | ||
117 | pos = new_skb->data; | |
118 | pos += pad_len; | |
119 | ||
120 | /* Populate new SKB */ | |
121 | skb_copy_from_linear_data(skb, pos, skb->len); | |
122 | skb_put(new_skb, skb->len + pad_len); | |
123 | ||
124 | /* Replace old SKB */ | |
125 | dev_kfree_skb_any(skb); | |
126 | skb = new_skb; | |
127 | } else { | |
128 | /* Realloc is not needed, Make space for interface header */ | |
129 | skb_push(skb, pad_len); | |
130 | } | |
131 | ||
132 | /* Set payload header */ | |
133 | payload_header = (struct esp_payload_header *) skb->data; | |
134 | memset(payload_header, 0, pad_len); | |
135 | ||
136 | payload_header->if_type = priv->if_type; | |
137 | payload_header->if_num = priv->if_num; | |
138 | payload_header->len = cpu_to_le16(len); | |
139 | payload_header->offset = cpu_to_le16(pad_len); | |
140 | payload_header->packet_type = PACKET_TYPE_DATA; | |
141 | ||
bf3d6cb6 SR |
142 | if (adapter.capabilities & ESP_CHECKSUM_ENABLED) |
143 | payload_header->checksum = cpu_to_le16(compute_checksum(skb->data, (len + pad_len))); | |
774e9b2e MM |
144 | |
145 | if (!priv->stop_data) { | |
146 | ret = esp_send_packet(priv->adapter, skb); | |
147 | ||
148 | if (ret) { | |
6f8fee57 | 149 | /* esp_err("Failed to send SKB");*/ |
774e9b2e MM |
150 | priv->stats.tx_errors++; |
151 | } else { | |
152 | priv->stats.tx_packets++; | |
153 | priv->stats.tx_bytes += skb->len; | |
154 | } | |
155 | } else { | |
156 | dev_kfree_skb_any(skb); | |
157 | priv->stats.tx_dropped++; | |
158 | } | |
159 | ||
160 | return 0; | |
161 | } | |
162 | ||
a3829bf3 | 163 | void esp_port_open(struct esp_wifi_device *priv) |
774e9b2e MM |
164 | { |
165 | priv->port_open = 1; | |
166 | priv->stop_data = 0; | |
167 | } | |
168 | ||
a3829bf3 | 169 | void esp_port_close(struct esp_wifi_device *priv) |
774e9b2e MM |
170 | { |
171 | if (!priv) | |
172 | return; | |
173 | ||
174 | priv->port_open = 0; | |
175 | priv->stop_data = 1; | |
176 | } | |
177 | ||
178 | void print_capabilities(u32 cap) | |
179 | { | |
6f8fee57 | 180 | esp_info("Capabilities: 0x%x. Features supported are:\n", cap); |
774e9b2e | 181 | if (cap & ESP_WLAN_SDIO_SUPPORT) |
6f8fee57 | 182 | esp_info("\t * WLAN on SDIO\n"); |
774e9b2e | 183 | else if (cap & ESP_WLAN_SPI_SUPPORT) |
6f8fee57 | 184 | esp_info("\t * WLAN on SPI\n"); |
774e9b2e MM |
185 | |
186 | if ((cap & ESP_BT_UART_SUPPORT) || | |
bf3d6cb6 SR |
187 | (cap & ESP_BT_SDIO_SUPPORT) || |
188 | (cap & ESP_BT_SPI_SUPPORT)) { | |
6f8fee57 | 189 | esp_info("\t * BT/BLE\n"); |
774e9b2e | 190 | if (cap & ESP_BT_UART_SUPPORT) |
6f8fee57 | 191 | esp_info("\t - HCI over UART\n"); |
774e9b2e | 192 | if (cap & ESP_BT_SDIO_SUPPORT) |
6f8fee57 | 193 | esp_info("\t - HCI over SDIO\n"); |
774e9b2e | 194 | if (cap & ESP_BT_SPI_SUPPORT) |
6f8fee57 | 195 | esp_info("\t - HCI over SPI\n"); |
774e9b2e MM |
196 | |
197 | if ((cap & ESP_BLE_ONLY_SUPPORT) && (cap & ESP_BR_EDR_ONLY_SUPPORT)) | |
6f8fee57 | 198 | esp_info("\t - BT/BLE dual mode\n"); |
774e9b2e | 199 | else if (cap & ESP_BLE_ONLY_SUPPORT) |
6f8fee57 | 200 | esp_info("\t - BLE only\n"); |
774e9b2e | 201 | else if (cap & ESP_BR_EDR_ONLY_SUPPORT) |
6f8fee57 | 202 | esp_info("\t - BR EDR only\n"); |
774e9b2e MM |
203 | } |
204 | } | |
205 | ||
206 | void process_capabilities(struct esp_adapter *adapter) | |
207 | { | |
6f8fee57 | 208 | esp_info("ESP peripheral capabilities: 0x%x\n", adapter->capabilities); |
774e9b2e MM |
209 | |
210 | /* Reset BT */ | |
211 | esp_deinit_bt(adapter); | |
212 | ||
213 | if ((adapter->capabilities & ESP_BT_SPI_SUPPORT) || | |
214 | (adapter->capabilities & ESP_BT_SDIO_SUPPORT)) { | |
215 | msleep(200); | |
6f8fee57 | 216 | esp_info("ESP Bluetooth init\n"); |
774e9b2e MM |
217 | esp_init_bt(adapter); |
218 | } | |
219 | } | |
220 | ||
221 | static int check_esp_version(struct fw_version *ver) | |
222 | { | |
6f8fee57 | 223 | esp_info("esp32: ESP Firmware version: %u.%u.%u\n", |
774e9b2e MM |
224 | ver->major1, ver->major2, ver->minor); |
225 | if (!ver->major1) { | |
6f8fee57 | 226 | esp_err("Incompatible ESP firmware release detected, Please use correct ESP-Hosted branch/compatible release\n"); |
774e9b2e MM |
227 | return -1; |
228 | } | |
229 | return 0; | |
230 | } | |
231 | ||
232 | static void print_reset_reason(uint32_t reason) | |
233 | { | |
234 | switch (reason) | |
235 | { | |
a3829bf3 KG |
236 | case 1: esp_info("POWERON_RESET\n"); break; /**<1, Vbat power on reset*/ |
237 | case 3: esp_info("SW_RESET\n"); break; /**<3, Software reset digital core*/ | |
238 | case 4: esp_info("OWDT_RESET\n"); break; /**<4, Legacy watch dog reset digital core*/ | |
239 | case 5: esp_info("DEEPSLEEP_RESET\n"); break; /**<5, Deep Sleep reset digital core*/ | |
240 | case 6: esp_info("SDIO_RESET\n"); break; /**<6, Reset by SLC module, reset digital core*/ | |
241 | case 7: esp_info("TG0WDT_SYS_RESET\n"); break; /**<7, Timer Group0 Watch dog reset digital core*/ | |
242 | case 8: esp_info("TG1WDT_SYS_RESET\n"); break; /**<8, Timer Group1 Watch dog reset digital core*/ | |
243 | case 9: esp_info("RTCWDT_SYS_RESET\n"); break; /**<9, RTC Watch dog Reset digital core*/ | |
244 | case 10: esp_info("INTRUSION_RESET\n"); break; /**<10, Instrusion tested to reset CPU*/ | |
245 | case 11: esp_info("TGWDT_CPU_RESET\n"); break; /**<11, Time Group reset CPU*/ | |
246 | case 12: esp_info("SW_CPU_RESET\n"); break; /**<12, Software reset CPU*/ | |
247 | case 13: esp_info("RTCWDT_CPU_RESET\n"); break; /**<13, RTC Watch dog Reset CPU*/ | |
248 | case 14: esp_info("EXT_CPU_RESET\n"); break; /**<14, for APP CPU, reseted by PRO CPU*/ | |
249 | case 15: esp_info("RTCWDT_BROWN_OUT_RESET\n"); break;/**<15, Reset when the vdd voltage is not stable*/ | |
250 | case 16: esp_info("RTCWDT_RTC_RESET\n"); break; /**<16, RTC Watch dog reset digital core and rtc module*/ | |
251 | default: esp_info("Unknown[%u]\n", reason); break; | |
774e9b2e MM |
252 | } |
253 | } | |
254 | ||
255 | int process_fw_data(struct fw_data *fw_p) | |
256 | { | |
257 | if (!fw_p) { | |
6f8fee57 | 258 | esp_err("Incomplete/incorrect bootup event received\n"); |
774e9b2e MM |
259 | return -1; |
260 | } | |
261 | ||
e58fd496 | 262 | esp_info("ESP chipset's last reset cause:\n"); |
774e9b2e MM |
263 | print_reset_reason(le32_to_cpu(fw_p->last_reset_reason)); |
264 | return check_esp_version(&fw_p->version); | |
265 | } | |
266 | ||
267 | static int esp_open(struct net_device *ndev) | |
268 | { | |
774e9b2e MM |
269 | return 0; |
270 | } | |
271 | ||
272 | static int esp_stop(struct net_device *ndev) | |
273 | { | |
225e14eb | 274 | struct esp_wifi_device *priv = netdev_priv(ndev); |
a3829bf3 | 275 | |
0af9c02e | 276 | ESP_MARK_SCAN_DONE(priv, true); |
774e9b2e MM |
277 | return 0; |
278 | } | |
279 | ||
a3829bf3 | 280 | static struct net_device_stats *esp_get_stats(struct net_device *ndev) |
774e9b2e MM |
281 | { |
282 | struct esp_wifi_device *priv = netdev_priv(ndev); | |
283 | ||
284 | if (!priv) | |
285 | return NULL; | |
286 | ||
287 | return &priv->stats; | |
288 | } | |
289 | ||
290 | static int esp_set_mac_address(struct net_device *ndev, void *data) | |
291 | { | |
292 | struct esp_wifi_device *priv = netdev_priv(ndev); | |
98f8ece9 KG |
293 | struct sockaddr *sa = (struct sockaddr *)data; |
294 | int ret; | |
774e9b2e MM |
295 | |
296 | if (!priv || !priv->adapter) | |
297 | return -EINVAL; | |
298 | ||
98f8ece9 | 299 | esp_info("%u "MACSTR"\n", __LINE__, MAC2STR(sa->sa_data)); |
774e9b2e | 300 | |
98f8ece9 KG |
301 | ret = cmd_set_mac(priv, sa->sa_data); |
302 | ||
303 | if (ret == 0) | |
304 | eth_hw_addr_set(ndev, priv->mac_address/*mac_addr->sa_data*/); | |
305 | ||
306 | return ret; | |
774e9b2e MM |
307 | } |
308 | ||
774e9b2e MM |
309 | static void esp_set_rx_mode(struct net_device *ndev) |
310 | { | |
7406fe82 MM |
311 | struct esp_wifi_device *priv = netdev_priv(ndev); |
312 | struct netdev_hw_addr *mac_addr; | |
313 | u32 count = 0; | |
5a47b073 | 314 | #if 0 |
7406fe82 MM |
315 | struct in_device *in_dev = in_dev_get(ndev); |
316 | struct ip_mc_list *ip_list = in_dev->mc_list; | |
5a47b073 | 317 | #endif |
7406fe82 MM |
318 | netdev_for_each_mc_addr(mac_addr, ndev) { |
319 | if (count < MAX_MULTICAST_ADDR_COUNT) { | |
e58fd496 | 320 | /*esp_info("%d: "MACSTR"\n", count+1, MAC2STR(mac_addr->addr));*/ |
7406fe82 MM |
321 | memcpy(&mcast_list.mcast_addr[count++], mac_addr->addr, ETH_ALEN); |
322 | } | |
323 | } | |
324 | ||
325 | mcast_list.priv = priv; | |
326 | mcast_list.addr_count = count; | |
327 | ||
328 | if (priv->port_open) { | |
6f8fee57 | 329 | /*esp_info("Set Multicast list\n");*/ |
7406fe82 MM |
330 | if (adapter.mac_filter_wq) |
331 | queue_work(adapter.mac_filter_wq, &adapter.mac_flter_work); | |
332 | } | |
333 | #if 0 | |
5a47b073 | 334 | cmd_set_mcast_mac_list(priv, &mcast_list); |
a3829bf3 | 335 | while (ip_list) { |
6f8fee57 | 336 | esp_dbg(" IP MC Address: 0x%x\n", ip_list->multiaddr); |
7406fe82 MM |
337 | ip_list = ip_list->next; |
338 | } | |
339 | #endif | |
340 | ||
774e9b2e MM |
341 | } |
342 | ||
343 | static int esp_hard_start_xmit(struct sk_buff *skb, struct net_device *ndev) | |
344 | { | |
345 | struct esp_wifi_device *priv = NULL; | |
346 | struct esp_skb_cb *cb = NULL; | |
347 | ||
348 | if (!skb || !ndev) | |
349 | return NETDEV_TX_OK; | |
350 | ||
351 | priv = netdev_priv(ndev); | |
352 | if (!priv) { | |
353 | dev_kfree_skb(skb); | |
354 | return NETDEV_TX_OK; | |
355 | } | |
356 | ||
357 | if (!priv->port_open) { | |
358 | priv->stats.tx_dropped++; | |
6f8fee57 | 359 | /*esp_err("Port not yet open\n");*/ |
774e9b2e MM |
360 | dev_kfree_skb(skb); |
361 | return NETDEV_TX_OK; | |
362 | } | |
363 | ||
364 | if (!skb->len || (skb->len > ETH_FRAME_LEN)) { | |
6f8fee57 | 365 | esp_err("Bad len %d\n", skb->len); |
774e9b2e MM |
366 | priv->stats.tx_dropped++; |
367 | dev_kfree_skb(skb); | |
368 | return NETDEV_TX_OK; | |
369 | } | |
370 | ||
371 | cb = (struct esp_skb_cb *) skb->cb; | |
372 | cb->priv = priv; | |
373 | ||
374 | return process_tx_packet(skb); | |
375 | } | |
376 | ||
377 | static const struct net_device_ops esp_netdev_ops = { | |
378 | .ndo_open = esp_open, | |
379 | .ndo_stop = esp_stop, | |
380 | .ndo_start_xmit = esp_hard_start_xmit, | |
98f8ece9 | 381 | .ndo_set_mac_address = esp_set_mac_address, |
774e9b2e | 382 | .ndo_validate_addr = eth_validate_addr, |
774e9b2e MM |
383 | .ndo_get_stats = esp_get_stats, |
384 | .ndo_set_rx_mode = esp_set_rx_mode, | |
385 | }; | |
386 | ||
387 | ||
388 | void esp_init_priv(struct net_device *ndev) | |
389 | { | |
390 | ndev->netdev_ops = &esp_netdev_ops; | |
391 | ndev->needed_headroom = roundup(sizeof(struct esp_payload_header) + | |
392 | INTERFACE_HEADER_PADDING, 4); | |
393 | } | |
394 | ||
774e9b2e MM |
395 | static int add_network_iface(void) |
396 | { | |
397 | int ret = 0; | |
a3829bf3 KG |
398 | struct esp_adapter *adapter = esp_get_adapter(); |
399 | struct wireless_dev *wdev = NULL; | |
774e9b2e MM |
400 | |
401 | if (!adapter) { | |
6f8fee57 | 402 | esp_info("adapter not yet init\n"); |
774e9b2e MM |
403 | return -EINVAL; |
404 | } | |
405 | ||
406 | ret = esp_cfg80211_register(adapter); | |
407 | if (ret) { | |
6f8fee57 | 408 | esp_err("Failed to register with cfg80211 (err code 0x%x)\n", ret); |
774e9b2e MM |
409 | return ret; |
410 | } | |
411 | ||
412 | rtnl_lock(); | |
225e14eb | 413 | wdev = esp_cfg80211_add_iface(adapter->wiphy, "espsta%d", 1, NL80211_IFTYPE_STATION, NULL); |
774e9b2e MM |
414 | rtnl_unlock(); |
415 | ||
225e14eb YM |
416 | /* Return success if network added successfully */ |
417 | if (wdev) | |
418 | return 0; | |
419 | ||
420 | return -1; | |
774e9b2e MM |
421 | } |
422 | ||
423 | int esp_add_card(struct esp_adapter *adapter) | |
424 | { | |
225e14eb | 425 | RET_ON_FAIL(esp_commands_setup(adapter)); |
774e9b2e | 426 | |
225e14eb | 427 | RET_ON_FAIL(add_network_iface()); |
774e9b2e | 428 | |
225e14eb | 429 | return 0; |
774e9b2e MM |
430 | } |
431 | ||
432 | void esp_remove_network_interfaces(struct esp_adapter *adapter) | |
433 | { | |
434 | uint8_t iface_idx = 0; | |
435 | struct net_device *ndev = NULL; | |
436 | struct esp_wifi_device *priv = NULL; | |
437 | ||
a3829bf3 | 438 | for (iface_idx = 0; iface_idx < ESP_MAX_INTERFACE; iface_idx++) { |
774e9b2e MM |
439 | |
440 | priv = adapter->priv[iface_idx]; | |
441 | ||
442 | if (!priv) | |
443 | continue; | |
444 | ||
445 | if (!test_bit(ESP_NETWORK_UP, &priv->priv_flags)) | |
446 | continue; | |
447 | ||
448 | /* stop and unregister network */ | |
449 | ndev = priv->ndev; | |
450 | ||
451 | if (ndev) { | |
452 | ||
453 | if (netif_carrier_ok(ndev)) | |
454 | netif_carrier_off(ndev); | |
455 | ||
456 | netif_device_detach(ndev); | |
457 | ||
458 | if (ndev->reg_state == NETREG_REGISTERED) { | |
7406fe82 | 459 | unregister_inetaddr_notifier(&(adapter->priv[0]->nb)); |
774e9b2e MM |
460 | unregister_netdev(ndev); |
461 | free_netdev(ndev); | |
462 | ndev = NULL; | |
463 | } | |
464 | } | |
465 | clear_bit(ESP_NETWORK_UP, &priv->priv_flags); | |
466 | } | |
467 | ||
468 | if (adapter->wiphy) { | |
469 | ||
470 | wiphy_unregister(adapter->wiphy); | |
471 | wiphy_free(adapter->wiphy); | |
472 | adapter->wiphy = NULL; | |
473 | } | |
474 | } | |
475 | ||
476 | int esp_remove_card(struct esp_adapter *adapter) | |
477 | { | |
478 | uint8_t iface_idx = 0; | |
479 | ||
480 | if (!adapter) { | |
481 | return 0; | |
482 | } | |
483 | ||
225e14eb | 484 | esp_deinit_bt(adapter); |
774e9b2e | 485 | |
225e14eb | 486 | esp_commands_teardown(adapter); |
774e9b2e MM |
487 | |
488 | esp_remove_network_interfaces(adapter); | |
489 | ||
a3829bf3 | 490 | for (iface_idx = 0; iface_idx < ESP_MAX_INTERFACE; iface_idx++) { |
774e9b2e MM |
491 | esp_port_close(adapter->priv[iface_idx]); |
492 | adapter->priv[iface_idx] = NULL; | |
493 | } | |
494 | ||
495 | return 0; | |
496 | } | |
497 | ||
a3829bf3 | 498 | struct esp_wifi_device *get_priv_from_payload_header( |
774e9b2e MM |
499 | struct esp_payload_header *header) |
500 | { | |
501 | struct esp_wifi_device *priv = NULL; | |
502 | u8 i = 0; | |
503 | ||
504 | if (!header) | |
505 | return NULL; | |
506 | ||
507 | for (i = 0; i < ESP_MAX_INTERFACE; i++) { | |
508 | priv = adapter.priv[i]; | |
509 | ||
510 | if (!priv) | |
511 | continue; | |
512 | ||
513 | if (priv->if_type == header->if_type && | |
514 | priv->if_num == header->if_num) { | |
515 | return priv; | |
516 | } | |
517 | } | |
518 | return NULL; | |
519 | } | |
520 | ||
521 | static void process_esp_bootup_event(struct esp_adapter *adapter, | |
522 | struct esp_internal_bootup_event *evt) | |
523 | { | |
524 | if (!adapter || !evt) { | |
6f8fee57 | 525 | esp_err("Invalid arguments\n"); |
774e9b2e MM |
526 | return; |
527 | } | |
528 | ||
529 | if (evt->header.status) { | |
6f8fee57 | 530 | esp_err("Incorrect ESP bootup event\n"); |
774e9b2e MM |
531 | return; |
532 | } | |
533 | ||
6f8fee57 | 534 | esp_info("\nReceived ESP bootup event\n"); |
774e9b2e MM |
535 | process_event_esp_bootup(adapter, evt->data, evt->len); |
536 | } | |
537 | ||
538 | static int process_internal_event(struct esp_adapter *adapter, | |
539 | struct sk_buff *skb) | |
540 | { | |
541 | struct event_header *header = NULL; | |
542 | ||
543 | if (!skb || !adapter) { | |
6f8fee57 | 544 | esp_err("esp32: Incorrect event data!\n"); |
774e9b2e MM |
545 | return -1; |
546 | } | |
547 | ||
548 | header = (struct event_header *) (skb->data); | |
549 | ||
550 | switch (header->event_code) { | |
551 | ||
552 | case ESP_INTERNAL_BOOTUP_EVENT: | |
553 | process_esp_bootup_event(adapter, | |
554 | (struct esp_internal_bootup_event *)(skb->data)); | |
555 | break; | |
556 | ||
557 | default: | |
6f8fee57 KG |
558 | esp_info("%u unhandled internal event[%u]\n", |
559 | __LINE__, header->event_code); | |
774e9b2e MM |
560 | break; |
561 | } | |
562 | ||
563 | return 0; | |
564 | } | |
565 | ||
566 | static void process_rx_packet(struct esp_adapter *adapter, struct sk_buff *skb) | |
567 | { | |
568 | struct esp_wifi_device *priv = NULL; | |
569 | struct esp_payload_header *payload_header = NULL; | |
570 | u16 len = 0, offset = 0; | |
bf3d6cb6 | 571 | u16 rx_checksum = 0, checksum = 0; |
774e9b2e MM |
572 | struct hci_dev *hdev = adapter->hcidev; |
573 | u8 *type = NULL; | |
a3829bf3 KG |
574 | struct sk_buff *eap_skb = NULL; |
575 | struct ethhdr *eth = NULL; | |
774e9b2e MM |
576 | |
577 | if (!skb) | |
578 | return; | |
579 | ||
580 | /* get the paload header */ | |
581 | payload_header = (struct esp_payload_header *) skb->data; | |
582 | ||
583 | len = le16_to_cpu(payload_header->len); | |
584 | offset = le16_to_cpu(payload_header->offset); | |
585 | ||
3fef9acf MM |
586 | if (payload_header->reserved2 == 0xFF) { |
587 | print_hex_dump(KERN_INFO, "Wake up packet: ", DUMP_PREFIX_ADDRESS, 16, 1, skb->data, len+offset, 1); | |
588 | } | |
774e9b2e | 589 | |
bf3d6cb6 SR |
590 | if (adapter->capabilities & ESP_CHECKSUM_ENABLED) { |
591 | rx_checksum = le16_to_cpu(payload_header->checksum); | |
592 | payload_header->checksum = 0; | |
593 | ||
594 | checksum = compute_checksum(skb->data, (len + offset)); | |
595 | ||
596 | if (checksum != rx_checksum) { | |
597 | dev_kfree_skb_any(skb); | |
598 | return; | |
599 | } | |
600 | } | |
601 | ||
774e9b2e MM |
602 | /* chop off the header from skb */ |
603 | skb_pull(skb, offset); | |
604 | ||
605 | if (payload_header->if_type == ESP_STA_IF || payload_header->if_type == ESP_AP_IF) { | |
606 | ||
607 | /* retrieve priv based on payload header contents */ | |
608 | priv = get_priv_from_payload_header(payload_header); | |
609 | ||
610 | if (!priv) { | |
6f8fee57 | 611 | esp_err("Empty priv\n"); |
774e9b2e MM |
612 | dev_kfree_skb_any(skb); |
613 | return; | |
614 | } | |
615 | ||
616 | if (payload_header->packet_type == PACKET_TYPE_EAPOL) { | |
6f8fee57 | 617 | esp_info("Rx PACKET_TYPE_EAPOL!!!!\n"); |
774e9b2e MM |
618 | esp_port_open(priv); |
619 | ||
7b6ed49e | 620 | eap_skb = alloc_skb(skb->len + ETH_HLEN, GFP_KERNEL); |
a3829bf3 | 621 | if (!eap_skb) { |
6f8fee57 | 622 | esp_info("%u memory alloc failed\n", __LINE__); |
774e9b2e MM |
623 | return; |
624 | } | |
625 | eap_skb->dev = priv->ndev; | |
626 | ||
627 | if (!IS_ALIGNED((unsigned long) eap_skb->data, SKB_DATA_ADDR_ALIGNMENT)) { | |
6f8fee57 | 628 | esp_info("%u eap skb unaligned\n", __LINE__); |
774e9b2e MM |
629 | } |
630 | ||
aad2ae2e | 631 | eth = (struct ethhdr *) skb_put(eap_skb, ETH_HLEN); |
774e9b2e MM |
632 | ether_addr_copy(eth->h_dest, /*skb->data*/priv->ndev->dev_addr); |
633 | ether_addr_copy(eth->h_source, /*skb->data+6*/ ap_bssid); | |
634 | eth->h_proto = cpu_to_be16(ETH_P_PAE); | |
635 | ||
636 | skb_put_data(eap_skb, skb->data, skb->len); | |
637 | eap_skb->protocol = eth_type_trans(eap_skb, eap_skb->dev); | |
638 | ||
639 | netif_rx(eap_skb); | |
640 | ||
641 | } else if (payload_header->packet_type == PACKET_TYPE_DATA) { | |
642 | ||
643 | skb->dev = priv->ndev; | |
644 | skb->protocol = eth_type_trans(skb, priv->ndev); | |
645 | skb->ip_summed = CHECKSUM_NONE; | |
646 | ||
647 | priv->stats.rx_bytes += skb->len; | |
648 | /* Forward skb to kernel */ | |
1294f8ac | 649 | NETIF_RX_NI(skb); |
774e9b2e MM |
650 | priv->stats.rx_packets++; |
651 | } else if (payload_header->packet_type == PACKET_TYPE_COMMAND_RESPONSE) { | |
225e14eb | 652 | process_cmd_resp(priv->adapter, skb); |
774e9b2e | 653 | } else if (payload_header->packet_type == PACKET_TYPE_EVENT) { |
225e14eb | 654 | process_cmd_event(priv, skb); |
774e9b2e MM |
655 | dev_kfree_skb_any(skb); |
656 | } | |
657 | ||
658 | } else if (payload_header->if_type == ESP_HCI_IF) { | |
659 | if (hdev) { | |
660 | ||
661 | type = skb->data; | |
662 | hci_skb_pkt_type(skb) = *type; | |
663 | skb_pull(skb, 1); | |
664 | ||
665 | #if (LINUX_VERSION_CODE >= KERNEL_VERSION(3, 13, 0)) | |
666 | if (hci_recv_frame(hdev, skb)) { | |
667 | #else | |
668 | if (hci_recv_frame(skb)) { | |
669 | #endif | |
670 | hdev->stat.err_rx++; | |
671 | } else { | |
672 | esp_hci_update_rx_counter(hdev, *type, skb->len); | |
673 | } | |
674 | } | |
675 | } else if (payload_header->if_type == ESP_INTERNAL_IF) { | |
676 | ||
677 | /* Queue event skb for processing in events workqueue */ | |
678 | skb_queue_tail(&adapter->events_skb_q, skb); | |
679 | ||
680 | if (adapter->events_wq) | |
681 | queue_work(adapter->events_wq, &adapter->events_work); | |
682 | else | |
683 | dev_kfree_skb_any(skb); | |
684 | ||
bf3d6cb6 SR |
685 | } else if (payload_header->if_type == ESP_TEST_IF) { |
686 | #if TEST_RAW_TP | |
687 | update_test_raw_tp_rx_stats(len); | |
688 | #endif | |
689 | dev_kfree_skb_any(skb); | |
774e9b2e MM |
690 | } else { |
691 | dev_kfree_skb_any(skb); | |
692 | } | |
693 | } | |
694 | ||
bf3d6cb6 SR |
695 | int esp_is_tx_queue_paused(struct esp_wifi_device *priv) |
696 | { | |
697 | if (!priv || !priv->ndev) | |
698 | return 0; | |
699 | ||
700 | if ((priv->ndev && | |
701 | !netif_queue_stopped((const struct net_device *)priv->ndev))) | |
702 | return 1; | |
703 | return 0; | |
704 | } | |
705 | ||
774e9b2e MM |
706 | void esp_tx_pause(struct esp_wifi_device *priv) |
707 | { | |
708 | if (!priv || !priv->ndev) | |
709 | return; | |
710 | ||
711 | if (!netif_queue_stopped((const struct net_device *)priv->ndev)) { | |
712 | netif_stop_queue(priv->ndev); | |
713 | } | |
714 | } | |
715 | ||
716 | void esp_tx_resume(struct esp_wifi_device *priv) | |
717 | { | |
718 | if (!priv || !priv->ndev) | |
719 | return; | |
720 | ||
721 | if (netif_queue_stopped((const struct net_device *)priv->ndev)) { | |
722 | netif_wake_queue(priv->ndev); | |
723 | } | |
724 | } | |
725 | ||
a3829bf3 | 726 | struct sk_buff *esp_alloc_skb(u32 len) |
774e9b2e MM |
727 | { |
728 | struct sk_buff *skb = NULL; | |
729 | ||
730 | u8 offset; | |
731 | ||
732 | skb = netdev_alloc_skb(NULL, len + INTERFACE_HEADER_PADDING); | |
733 | ||
734 | if (skb) { | |
735 | /* Align SKB data pointer */ | |
736 | offset = ((unsigned long)skb->data) & (SKB_DATA_ADDR_ALIGNMENT - 1); | |
737 | ||
738 | if (offset) | |
739 | skb_reserve(skb, INTERFACE_HEADER_PADDING - offset); | |
740 | } | |
741 | ||
742 | return skb; | |
743 | } | |
744 | ||
745 | ||
746 | static int esp_get_packets(struct esp_adapter *adapter) | |
747 | { | |
748 | struct sk_buff *skb = NULL; | |
749 | ||
750 | if (!adapter || !adapter->if_ops || !adapter->if_ops->read) | |
751 | return -EINVAL; | |
752 | ||
753 | skb = adapter->if_ops->read(adapter); | |
754 | ||
755 | if (!skb) | |
756 | return -EFAULT; | |
757 | ||
758 | process_rx_packet(adapter, skb); | |
759 | ||
760 | return 0; | |
761 | } | |
762 | ||
763 | int esp_send_packet(struct esp_adapter *adapter, struct sk_buff *skb) | |
764 | { | |
225e14eb | 765 | if (!adapter || !adapter->if_ops || !adapter->if_ops->write) { |
6f8fee57 | 766 | esp_err("%u adapter: %p\n", __LINE__, adapter); |
774e9b2e | 767 | return -EINVAL; |
225e14eb | 768 | } |
774e9b2e MM |
769 | |
770 | return adapter->if_ops->write(adapter, skb); | |
771 | } | |
772 | ||
773 | static void esp_if_rx_work(struct work_struct *work) | |
774 | { | |
775 | /* read inbound packet and forward it to network/serial interface */ | |
776 | esp_get_packets(&adapter); | |
777 | } | |
778 | ||
7406fe82 MM |
779 | static void update_mac_filter(struct work_struct *work) |
780 | { | |
5a47b073 | 781 | cmd_set_mcast_mac_list(mcast_list.priv, &mcast_list); |
7406fe82 MM |
782 | } |
783 | ||
774e9b2e MM |
784 | static void esp_events_work(struct work_struct *work) |
785 | { | |
786 | struct sk_buff *skb = NULL; | |
787 | ||
788 | skb = skb_dequeue(&adapter.events_skb_q); | |
789 | if (!skb) | |
790 | return; | |
791 | ||
792 | process_internal_event(&adapter, skb); | |
793 | dev_kfree_skb_any(skb); | |
794 | } | |
795 | ||
a3829bf3 | 796 | static struct esp_adapter *init_adapter(void) |
774e9b2e MM |
797 | { |
798 | memset(&adapter, 0, sizeof(adapter)); | |
799 | ||
800 | /* Prepare interface RX work */ | |
801 | adapter.if_rx_workqueue = alloc_workqueue("ESP_IF_RX_WORK_QUEUE", 0, 0); | |
802 | ||
803 | if (!adapter.if_rx_workqueue) { | |
804 | deinit_adapter(); | |
805 | return NULL; | |
806 | } | |
807 | ||
808 | INIT_WORK(&adapter.if_rx_work, esp_if_rx_work); | |
809 | ||
810 | skb_queue_head_init(&adapter.events_skb_q); | |
811 | ||
812 | adapter.events_wq = alloc_workqueue("ESP_EVENTS_WORKQUEUE", WQ_HIGHPRI, 0); | |
813 | ||
814 | if (!adapter.events_wq) { | |
815 | deinit_adapter(); | |
816 | return NULL; | |
817 | } | |
818 | ||
819 | INIT_WORK(&adapter.events_work, esp_events_work); | |
820 | ||
7406fe82 MM |
821 | adapter.mac_filter_wq = alloc_workqueue("MAC_FILTER", 0, 0); |
822 | if (!adapter.mac_filter_wq) { | |
823 | deinit_adapter(); | |
824 | return NULL; | |
825 | } | |
826 | ||
827 | INIT_WORK(&adapter.mac_flter_work, update_mac_filter); | |
828 | ||
774e9b2e MM |
829 | return &adapter; |
830 | } | |
831 | ||
832 | static void deinit_adapter(void) | |
833 | { | |
834 | skb_queue_purge(&adapter.events_skb_q); | |
835 | ||
836 | if (adapter.events_wq) | |
837 | destroy_workqueue(adapter.events_wq); | |
838 | ||
839 | if (adapter.if_rx_workqueue) | |
840 | destroy_workqueue(adapter.if_rx_workqueue); | |
5a47b073 MM |
841 | |
842 | if (adapter.mac_filter_wq) | |
843 | destroy_workqueue(adapter.mac_filter_wq); | |
774e9b2e MM |
844 | } |
845 | ||
846 | static void esp_reset(void) | |
847 | { | |
848 | if (resetpin != HOST_GPIO_PIN_INVALID) { | |
849 | /* Check valid GPIO or not */ | |
850 | if (!gpio_is_valid(resetpin)) { | |
6f8fee57 | 851 | esp_warn("host resetpin (%d) configured is invalid GPIO\n", resetpin); |
774e9b2e MM |
852 | resetpin = HOST_GPIO_PIN_INVALID; |
853 | } else { | |
854 | gpio_request(resetpin, "sysfs"); | |
855 | ||
856 | /* HOST's resetpin set to OUTPUT, HIGH */ | |
857 | gpio_direction_output(resetpin, true); | |
858 | ||
859 | /* HOST's resetpin set to LOW */ | |
860 | gpio_set_value(resetpin, 0); | |
861 | udelay(200); | |
862 | ||
863 | /* HOST's resetpin set to INPUT */ | |
864 | gpio_direction_input(resetpin); | |
865 | ||
6f8fee57 | 866 | esp_dbg("Triggering ESP reset.\n"); |
774e9b2e MM |
867 | } |
868 | } | |
869 | } | |
870 | ||
871 | ||
872 | static int __init esp_init(void) | |
873 | { | |
874 | int ret = 0; | |
875 | struct esp_adapter *adapter = NULL; | |
876 | ||
877 | /* Reset ESP, Clean start ESP */ | |
878 | esp_reset(); | |
879 | msleep(200); | |
880 | ||
881 | adapter = init_adapter(); | |
882 | ||
883 | if (!adapter) | |
884 | return -EFAULT; | |
885 | ||
886 | /* Init transport layer */ | |
887 | ret = esp_init_interface_layer(adapter); | |
888 | ||
889 | if (ret != 0) { | |
890 | deinit_adapter(); | |
891 | } | |
892 | ||
893 | return ret; | |
894 | } | |
895 | ||
896 | static void __exit esp_exit(void) | |
897 | { | |
898 | uint8_t iface_idx = 0; | |
bf3d6cb6 SR |
899 | #if TEST_RAW_TP |
900 | test_raw_tp_cleanup(); | |
901 | #endif | |
a3829bf3 | 902 | for (iface_idx = 0; iface_idx < ESP_MAX_INTERFACE; iface_idx++) { |
774e9b2e MM |
903 | cmd_deinit_interface(adapter.priv[iface_idx]); |
904 | } | |
225e14eb | 905 | clear_bit(ESP_DRIVER_ACTIVE, &adapter.state_flags); |
774e9b2e MM |
906 | |
907 | esp_deinit_interface_layer(); | |
908 | deinit_adapter(); | |
909 | ||
910 | if (resetpin != HOST_GPIO_PIN_INVALID) { | |
911 | gpio_free(resetpin); | |
912 | } | |
913 | } | |
914 | MODULE_LICENSE("GPL"); | |
915 | MODULE_AUTHOR("Amey Inamdar <[email protected]>"); | |
916 | MODULE_AUTHOR("Mangesh Malusare <[email protected]>"); | |
917 | MODULE_AUTHOR("Yogesh Mantri <[email protected]>"); | |
918 | MODULE_DESCRIPTION("Wifi driver for ESP-Hosted solution"); | |
919 | MODULE_VERSION("0.1"); | |
920 | module_init(esp_init); | |
921 | module_exit(esp_exit); |