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1 /*
2  * Copyright (C) 2012 ROCKCHIP, Inc.
3  *
4  * This software is licensed under the terms of the GNU General Public
5  * License version 2, as published by the Free Software Foundation, and
6  * may be copied, distributed, and modified under those terms.
7  *
8  * This program is distributed in the hope that it will be useful,
9  * but WITHOUT ANY WARRANTY; without even the implied warranty of
10  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
11  * GNU General Public License for more details.
12  *
13  */
14 /* Rock-chips rfkill driver for wifi
15  */
16 
17 #include <linux/kernel.h>
18 #include <linux/platform_device.h>
19 #include <linux/module.h>
20 #include <linux/rfkill.h>
21 #include <linux/init.h>
22 #include <linux/slab.h>
23 #include <linux/regulator/consumer.h>
24 #include <linux/delay.h>
25 #include <linux/rfkill-wlan.h>
26 #include <linux/rfkill-bt.h>
27 #include <linux/wakelock.h>
28 #include <linux/interrupt.h>
29 #include <asm/irq.h>
30 #include <linux/suspend.h>
31 #include <linux/proc_fs.h>
32 #include <linux/uaccess.h>
33 #include <linux/gpio.h>
34 #include <dt-bindings/gpio/gpio.h>
35 #include <linux/skbuff.h>
36 #include <linux/fb.h>
37 #include <linux/rockchip/grf.h>
38 #include <linux/regmap.h>
39 #include <linux/mfd/syscon.h>
40 #include <linux/mmc/host.h>
41 #ifdef CONFIG_OF
42 #include <linux/of.h>
43 #include <linux/of_device.h>
44 #include <linux/of_gpio.h>
45 #endif
46 #include <linux/soc/rockchip/rk_vendor_storage.h>
47 #include <linux/device.h>
48 
49 #include "../../drivers/mmc/core/pwrseq.h"
50 
51 #define DBG(x...)
52 
53 #define LOG(x...) pr_info("[WLAN_RFKILL]: " x)
54 
55 struct rfkill_wlan_data {
56     struct rksdmmc_gpio_wifi_moudle *pdata;
57     struct wake_lock wlan_irq_wl;
58 };
59 
60 static struct rfkill_wlan_data *g_rfkill = NULL;
61 static int power_set_time = 0;
62 static int wifi_bt_vbat_state;
63 static int wifi_power_state;
64 
65 static const char wlan_name[] = "rkwifi";
66 
67 static char wifi_chip_type_string[64];
68 /***********************************************************
69  *
70  * Broadcom Wifi Static Memory
71  *
72  **********************************************************/
73 #ifdef CONFIG_RKWIFI
74 #define BCM_STATIC_MEMORY_SUPPORT 0
75 #else
76 #define BCM_STATIC_MEMORY_SUPPORT 0
77 #endif
78 // ===========================
79 #if BCM_STATIC_MEMORY_SUPPORT
80 #define PREALLOC_WLAN_SEC_NUM 4
81 #define PREALLOC_WLAN_BUF_NUM 160
82 #define PREALLOC_WLAN_SECTION_HEADER 0
83 #define WLAN_SKB_BUF_NUM 16
84 
85 #define WLAN_SECTION_SIZE_0 (12 * 1024)
86 #define WLAN_SECTION_SIZE_1 (12 * 1024)
87 #define WLAN_SECTION_SIZE_2 (32 * 1024)
88 #define WLAN_SECTION_SIZE_3 (136 * 1024)
89 #define WLAN_SECTION_SIZE_4 (4 * 1024)
90 #define WLAN_SECTION_SIZE_5 (64 * 1024)
91 #define WLAN_SECTION_SIZE_6 (4 * 1024)
92 #define WLAN_SECTION_SIZE_7 (4 * 1024)
93 
94 static struct sk_buff *wlan_static_skb[WLAN_SKB_BUF_NUM + 1];
95 
96 struct wifi_mem_prealloc {
97     void *mem_ptr;
98     unsigned long size;
99 };
100 
101 static struct wifi_mem_prealloc wifi_mem_array[8] = {{NULL, (WLAN_SECTION_SIZE_0)}, {NULL, (WLAN_SECTION_SIZE_1)},
102                                                      {NULL, (WLAN_SECTION_SIZE_2)}, {NULL, (WLAN_SECTION_SIZE_3)},
103                                                      {NULL, (WLAN_SECTION_SIZE_4)}, {NULL, (WLAN_SECTION_SIZE_5)},
104                                                      {NULL, (WLAN_SECTION_SIZE_6)}, {NULL, (WLAN_SECTION_SIZE_7)}};
105 
rockchip_init_wifi_mem(void)106 static int rockchip_init_wifi_mem(void)
107 {
108     int i;
109     int j;
110 
111     for (i = 0; i < WLAN_SKB_BUF_NUM; i++) {
112         wlan_static_skb[i] = dev_alloc_skb(((i < (WLAN_SKB_BUF_NUM / 0x02)) ? (PAGE_SIZE * 1) : (PAGE_SIZE * 0x02)));
113 
114         if (!wlan_static_skb[i]) {
115             goto err_skb_alloc;
116         }
117     }
118 
119     wlan_static_skb[i] = dev_alloc_skb((PAGE_SIZE * 0x04));
120     if (!wlan_static_skb[i]) {
121         goto err_skb_alloc;
122     }
123 
124     for (i = 0; i <= 0x07; i++) {
125         wifi_mem_array[i].mem_ptr = kmalloc(wifi_mem_array[i].size, GFP_KERNEL);
126 
127         if (!wifi_mem_array[i].mem_ptr) {
128             goto err_mem_alloc;
129         }
130     }
131     return 0;
132 
133 err_mem_alloc:
134     pr_err("Failed to mem_alloc for WLAN\n");
135     for (j = 0; j < i; j++) {
136         kfree(wifi_mem_array[j].mem_ptr);
137     }
138     i = WLAN_SKB_BUF_NUM;
139 err_skb_alloc:
140     pr_err("Failed to skb_alloc for WLAN\n");
141     for (j = 0; j < i; j++) {
142         dev_kfree_skb(wlan_static_skb[j]);
143     }
144     dev_kfree_skb(wlan_static_skb[j]);
145 
146     return -ENOMEM;
147 }
148 
rockchip_mem_prealloc(int section,unsigned long size)149 void *rockchip_mem_prealloc(int section, unsigned long size)
150 {
151     if (section == PREALLOC_WLAN_SEC_NUM) {
152         return wlan_static_skb;
153     }
154 
155     if (section < 0 || section > 0x07) {
156         return NULL;
157     }
158 
159     if (wifi_mem_array[section].size < size) {
160         return NULL;
161     }
162 
163     return wifi_mem_array[section].mem_ptr;
164 }
165 #else
rockchip_mem_prealloc(int section,unsigned long size)166 void *rockchip_mem_prealloc(int section, unsigned long size)
167 {
168     return NULL;
169 }
170 #endif
171 EXPORT_SYMBOL(rockchip_mem_prealloc);
172 
rfkill_set_wifi_bt_power(int on)173 int rfkill_set_wifi_bt_power(int on)
174 {
175     struct rfkill_wlan_data *mrfkill = g_rfkill;
176     struct rksdmmc_gpio *vbat;
177 
178     LOG("%s: %d\n", __func__, on);
179 
180     if (!mrfkill) {
181         LOG("%s: rfkill-wlan driver has not Successful initialized\n", __func__);
182         return -1;
183     }
184 
185     vbat = &mrfkill->pdata->vbat_n;
186     if (on) {
187         if (gpio_is_valid(vbat->io)) {
188             gpio_direction_output(vbat->io, vbat->enable);
189         }
190     } else {
191         if (gpio_is_valid(vbat->io)) {
192             gpio_direction_output(vbat->io, !(vbat->enable));
193         }
194     }
195     wifi_bt_vbat_state = on;
196     return 0;
197 }
198 
199 /**************************************************************************
200  *
201  * get wifi power state Func
202  *
203  *************************************************************************/
rfkill_get_wifi_power_state(int * power)204 int rfkill_get_wifi_power_state(int *power)
205 {
206     struct rfkill_wlan_data *mrfkill = g_rfkill;
207 
208     if (!mrfkill) {
209         LOG("%s: rfkill-wlan driver has not Successful initialized\n", __func__);
210         return -1;
211     }
212 
213     *power = wifi_power_state;
214 
215     return 0;
216 }
217 
218 /**************************************************************************
219  *
220  * Wifi Power Control Func
221  * 0 -> power off
222  * 1 -> power on
223  *
224  *************************************************************************/
rockchip_wifi_power(int on)225 int rockchip_wifi_power(int on)
226 {
227     struct rfkill_wlan_data *mrfkill = g_rfkill;
228     struct rksdmmc_gpio *poweron, *reset;
229     struct regulator *ldo = NULL;
230     int bt_power = 0;
231     bool toggle = false;
232 
233     LOG("%s: %d\n", __func__, on);
234 
235     if (!on && primary_sdio_host) {
236         mmc_pwrseq_power_off(primary_sdio_host);
237     }
238 
239     if (!mrfkill) {
240         LOG("%s: rfkill-wlan driver has not Successful initialized\n", __func__);
241         return -1;
242     }
243 
244     if (mrfkill->pdata->wifi_power_remain && power_set_time) {
245         LOG("%s: wifi power is setted to be remain on.", __func__);
246         return 0;
247     }
248     power_set_time++;
249 
250     if (!rfkill_get_bt_power_state(&bt_power, &toggle)) {
251         LOG("%s: toggle = %s\n", __func__, toggle ? "true" : "false");
252     }
253 
254     if (mrfkill->pdata->mregulator.power_ctrl_by_pmu) {
255         int ret = -1;
256         char *ldostr;
257         int level = mrfkill->pdata->mregulator.enable;
258 
259         ldostr = mrfkill->pdata->mregulator.pmu_regulator;
260         if (!ldostr) {
261             return -1;
262         }
263         ldo = regulator_get(NULL, ldostr);
264         if (!ldo || IS_ERR(ldo)) {
265             LOG("\n\n\n%s get ldo error,please mod this\n\n\n", __func__);
266             return -1;
267         }
268         if (on == level) {
269             regulator_set_voltage(ldo, 0x2DC6C0, 0x2DC6C0);
270             LOG("%s: %s enabled\n", __func__, ldostr);
271             ret = regulator_enable(ldo);
272             wifi_power_state = 1;
273             LOG("wifi turn on power.\n");
274         } else {
275             LOG("%s: %s disabled\n", __func__, ldostr);
276             while (regulator_is_enabled(ldo) > 0) {
277                 ret = regulator_disable(ldo);
278             }
279             wifi_power_state = 0;
280             LOG("wifi shut off power.\n");
281         }
282         regulator_put(ldo);
283         msleep(0x64);
284     } else {
285         poweron = &mrfkill->pdata->power_n;
286         reset = &mrfkill->pdata->reset_n;
287 
288         if (on) {
289             if (toggle) {
290                 rfkill_set_wifi_bt_power(1);
291                 msleep(0x64);
292             }
293 
294             if (gpio_is_valid(poweron->io)) {
295                 gpio_direction_output(poweron->io, poweron->enable);
296                 msleep(0x64);
297             }
298 
299             if (gpio_is_valid(reset->io)) {
300                 gpio_direction_output(reset->io, reset->enable);
301                 msleep(0x64);
302             }
303 
304             wifi_power_state = 1;
305             LOG("wifi turn on power [GPIO%d-%d]\n", poweron->io, poweron->enable);
306         } else {
307             if (gpio_is_valid(poweron->io)) {
308                 printk("wifi power off\n");
309                 gpio_direction_output(poweron->io, !(poweron->enable));
310                 msleep(0x64);
311             }
312 
313             if (gpio_is_valid(reset->io)) {
314                 gpio_direction_output(reset->io, !(reset->enable));
315             }
316 
317             wifi_power_state = 0;
318             if (toggle) {
319                 if (!bt_power) {
320                     LOG("%s: wifi will set vbat to low\n", __func__);
321                     rfkill_set_wifi_bt_power(0);
322                 } else {
323                     LOG("%s: wifi shouldn't control the vbat\n", __func__);
324                 }
325             }
326             LOG("wifi shut off power [GPIO%d-%d]\n", poweron->io, !poweron->enable);
327         }
328     }
329 
330     return 0;
331 }
332 EXPORT_SYMBOL(rockchip_wifi_power);
333 
334 /**************************************************************************
335  *
336  * Wifi Sdio Detect Func
337  *
338  *************************************************************************/
339 
rockchip_wifi_set_carddetect(int val)340 int rockchip_wifi_set_carddetect(int val)
341 {
342     return mmc_host_rescan(NULL, val, 1);
343 }
344 EXPORT_SYMBOL(rockchip_wifi_set_carddetect);
345 
346 /**************************************************************************
347  *
348  * Wifi Get Interrupt irq Func
349  *
350  *************************************************************************/
rockchip_wifi_get_oob_irq(void)351 int rockchip_wifi_get_oob_irq(void)
352 {
353     struct rfkill_wlan_data *mrfkill = g_rfkill;
354     struct rksdmmc_gpio *wifi_int_irq;
355 
356     LOG("%s: Enter\n", __func__);
357 
358     if (!mrfkill) {
359         LOG("%s: rfkill-wlan driver has not Successful initialized\n", __func__);
360         return -1;
361     }
362 
363     wifi_int_irq = &mrfkill->pdata->wifi_int_b;
364     if (gpio_is_valid(wifi_int_irq->io)) {
365         return gpio_to_irq(wifi_int_irq->io);
366     } else {
367         LOG("%s: wifi OOB pin isn't defined.\n", __func__);
368     }
369 
370     return -1;
371 }
372 EXPORT_SYMBOL(rockchip_wifi_get_oob_irq);
373 
rockchip_wifi_get_oob_irq_flag(void)374 int rockchip_wifi_get_oob_irq_flag(void)
375 {
376     struct rfkill_wlan_data *mrfkill = g_rfkill;
377     struct rksdmmc_gpio *wifi_int_irq;
378     int gpio_flags = -1;
379 
380     if (mrfkill) {
381         wifi_int_irq = &mrfkill->pdata->wifi_int_b;
382         if (gpio_is_valid(wifi_int_irq->io)) {
383             gpio_flags = wifi_int_irq->enable;
384         }
385     }
386 
387     return gpio_flags;
388 }
389 EXPORT_SYMBOL(rockchip_wifi_get_oob_irq_flag);
390 
391 /**************************************************************************
392  *
393  * Wifi Reset Func
394  *
395  *************************************************************************/
rockchip_wifi_reset(int on)396 int rockchip_wifi_reset(int on)
397 {
398     return 0;
399 }
400 EXPORT_SYMBOL(rockchip_wifi_reset);
401 
402 /**************************************************************************
403  *
404  * Wifi MAC custom Func
405  *
406  *************************************************************************/
407 #include <linux/etherdevice.h>
408 #include <linux/errno.h>
409 u8 wifi_custom_mac_addr[6] = {0, 0, 0, 0, 0, 0};
410 
get_wifi_addr_vendor(unsigned char * addr)411 static int get_wifi_addr_vendor(unsigned char *addr)
412 {
413     int ret;
414     int count = 5;
415 
416     while (count-- > 0) {
417         if (is_rk_vendor_ready()) {
418             break;
419         }
420         /* sleep 500ms wait rk vendor driver ready */
421         msleep(500);
422     }
423     ret = rk_vendor_read(WIFI_MAC_ID, addr, 0x06);
424     if (ret != 0x06 || is_zero_ether_addr(addr)) {
425         LOG("%s: rk_vendor_read wifi mac address failed (%d)\n", __func__, ret);
426 #ifdef CONFIG_WIFI_GENERATE_RANDOM_MAC_ADDR
427         random_ether_addr(addr);
428         LOG("%s: generate random wifi mac address: "
429             "%02x:%02x:%02x:%02x:%02x:%02x\n",
430             __func__, addr[0], addr[1], addr[2], addr[3], addr[4], addr[5]);
431         ret = rk_vendor_write(WIFI_MAC_ID, addr, 0x06);
432         if (ret != 0) {
433             LOG("%s: rk_vendor_write failed %d\n" __func__, ret);
434             memset(addr, 0, 0x06);
435             return -1;
436         }
437 #else
438         return -1;
439 #endif
440     } else {
441         LOG("%s: rk_vendor_read wifi mac address: "
442             "%02x:%02x:%02x:%02x:%02x:%02x\n",
443             __func__, addr[0], addr[1], addr[2], addr[3], addr[4], addr[5]);
444     }
445     return 0;
446 }
447 
rockchip_wifi_mac_addr(unsigned char * buf)448 int rockchip_wifi_mac_addr(unsigned char *buf)
449 {
450     char mac_buf[20] = {0};
451 
452     LOG("%s: enter.\n", __func__);
453 
454     // from vendor storage
455     if (is_zero_ether_addr(wifi_custom_mac_addr)) {
456         if (get_wifi_addr_vendor(wifi_custom_mac_addr) != 0) {
457             return -1;
458         }
459     }
460 
461     sprintf(mac_buf, "%02x:%02x:%02x:%02x:%02x:%02x", wifi_custom_mac_addr[0], wifi_custom_mac_addr[1],
462             wifi_custom_mac_addr[0x02], wifi_custom_mac_addr[0x03],
463             wifi_custom_mac_addr[0x04], wifi_custom_mac_addr[0x05]);
464     LOG("falsh wifi_custom_mac_addr=[%s]\n", mac_buf);
465 
466     if (is_valid_ether_addr(wifi_custom_mac_addr)) {
467         if (!strncmp(wifi_chip_type_string, "rtl", 0x03)) {
468             wifi_custom_mac_addr[0] &= ~0x2; // for p2p
469         }
470     } else {
471         LOG("This mac address is not valid, ignored...\n");
472         return -1;
473     }
474 
475     memcpy(buf, wifi_custom_mac_addr, 0x06);
476 
477     return 0;
478 }
479 EXPORT_SYMBOL(rockchip_wifi_mac_addr);
480 
481 /**************************************************************************
482  *
483  * wifi get country code func
484  *
485  *************************************************************************/
486 struct cntry_locales_custom {
487     char iso_abbrev[4];    /* ISO 3166-1 country abbreviation */
488     char custom_locale[4]; /* Custom firmware locale */
489     int custom_locale_rev; /* Custom local revisin default -1 */
490 };
491 
492 static struct cntry_locales_custom country_cloc;
493 
rockchip_wifi_country_code(char * ccode)494 void *rockchip_wifi_country_code(char *ccode)
495 {
496     struct cntry_locales_custom *mcloc;
497 
498     LOG("%s: set country code [%s]\n", __func__, ccode);
499     mcloc = &country_cloc;
500     memcpy(mcloc->custom_locale, ccode, 0x04);
501     mcloc->custom_locale_rev = 0;
502 
503     return mcloc;
504 }
505 EXPORT_SYMBOL(rockchip_wifi_country_code);
506 
rfkill_rk_setup_gpio(struct rksdmmc_gpio * gpio,const char * prefix,const char * name)507 static int rfkill_rk_setup_gpio(struct rksdmmc_gpio *gpio, const char *prefix, const char *name)
508 {
509     if (gpio_is_valid(gpio->io)) {
510         int ret = 0;
511 
512         sprintf(gpio->name, "%s_%s", prefix, name);
513         ret = gpio_request(gpio->io, gpio->name);
514         if (ret) {
515             LOG("Failed to get %s gpio.\n", gpio->name);
516             return -1;
517         }
518     }
519 
520     return 0;
521 }
522 
523 #ifdef CONFIG_OF
wlan_platdata_parse_dt(struct device * dev,struct rksdmmc_gpio_wifi_moudle * data)524 static int wlan_platdata_parse_dt(struct device *dev, struct rksdmmc_gpio_wifi_moudle *data)
525 {
526     struct device_node *node = dev->of_node;
527     const char *strings;
528     u32 value;
529     int gpio, ret;
530     enum of_gpio_flags flags;
531     u32 ext_clk_value = 0;
532 
533     if (!node) {
534         return -ENODEV;
535     }
536 
537     memset(data, 0, sizeof(*data));
538 
539 #ifdef CONFIG_MFD_SYSCON
540     data->grf = syscon_regmap_lookup_by_phandle(node, "rockchip,grf");
541     if (IS_ERR(data->grf)) {
542         LOG("can't find rockchip,grf property\n");
543     }
544 #endif
545 
546     ret = of_property_read_string(node, "wifi_chip_type", &strings);
547     if (ret) {
548         LOG("%s: Can not read wifi_chip_type, set default to rkwifi.\n", __func__);
549         strcpy(wifi_chip_type_string, "rkwifi");
550     } else {
551         strcpy(wifi_chip_type_string, strings);
552     }
553     LOG("%s: wifi_chip_type = %s\n", __func__, wifi_chip_type_string);
554 
555     if (of_find_property(node, "keep_wifi_power_on", NULL)) {
556         data->wifi_power_remain = true;
557         LOG("%s: wifi power remain\n", __func__);
558     } else {
559         data->wifi_power_remain = false;
560         LOG("%s: enable wifi power control.\n", __func__);
561     }
562 
563     if (of_find_property(node, "power_ctrl_by_pmu", NULL)) {
564         data->mregulator.power_ctrl_by_pmu = true;
565         ret = of_property_read_string(node, "power_pmu_regulator", &strings);
566         if (ret) {
567             LOG("%s: Can not read property: power_pmu_regulator.\n", __func__);
568             data->mregulator.power_ctrl_by_pmu = false;
569         } else {
570             LOG("%s: wifi power controlled by pmu(%s).\n", __func__, strings);
571             sprintf(data->mregulator.pmu_regulator, "%s", strings);
572         }
573         ret = of_property_read_u32(node, "power_pmu_enable_level", &value);
574         if (ret) {
575             LOG("%s: Can not read: power_pmu_enable_level.\n", __func__);
576             data->mregulator.power_ctrl_by_pmu = false;
577         } else {
578             LOG("%s: wifi power controlled by pmu(level = %s).\n", __func__, (value == 1) ? "HIGH" : "LOW");
579             data->mregulator.enable = value;
580         }
581     } else {
582         data->mregulator.power_ctrl_by_pmu = false;
583         LOG("%s: wifi power controled by gpio.\n", __func__);
584         gpio = of_get_named_gpio_flags(node, "WIFI,poweren_gpio", 0, &flags);
585         if (gpio_is_valid(gpio)) {
586             data->power_n.io = gpio;
587             data->power_n.enable = (flags == GPIO_ACTIVE_HIGH) ? 1 : 0;
588             LOG("%s: WIFI,poweren_gpio = %d flags = %d.\n", __func__, gpio, flags);
589         } else {
590             data->power_n.io = -1;
591         }
592         gpio = of_get_named_gpio_flags(node, "WIFI,vbat_gpio", 0, &flags);
593         if (gpio_is_valid(gpio)) {
594             data->vbat_n.io = gpio;
595             data->vbat_n.enable = (flags == GPIO_ACTIVE_HIGH) ? 1 : 0;
596             LOG("%s: WIFI,vbat_gpio = %d, flags = %d.\n", __func__, gpio, flags);
597         } else {
598             data->vbat_n.io = -1;
599         }
600         gpio = of_get_named_gpio_flags(node, "WIFI,reset_gpio", 0, &flags);
601         if (gpio_is_valid(gpio)) {
602             data->reset_n.io = gpio;
603             data->reset_n.enable = (flags == GPIO_ACTIVE_HIGH) ? 1 : 0;
604             LOG("%s: WIFI,reset_gpio = %d, flags = %d.\n", __func__, gpio, flags);
605         } else {
606             data->reset_n.io = -1;
607         }
608         gpio = of_get_named_gpio_flags(node, "WIFI,host_wake_irq", 0, &flags);
609         if (gpio_is_valid(gpio)) {
610             data->wifi_int_b.io = gpio;
611             data->wifi_int_b.enable = !flags;
612             LOG("%s: WIFI,host_wake_irq = %d, flags = %d.\n", __func__, gpio, flags);
613         } else {
614             data->wifi_int_b.io = -1;
615         }
616     }
617 
618     data->ext_clk = devm_clk_get(dev, "clk_wifi");
619     if (IS_ERR(data->ext_clk)) {
620         LOG("%s: The ref_wifi_clk not found !\n", __func__);
621     } else {
622         of_property_read_u32(node, "ref-clock-frequency", &ext_clk_value);
623         if (ext_clk_value > 0) {
624             ret = clk_set_rate(data->ext_clk, ext_clk_value);
625             if (ret) {
626                 LOG("%s: set ref clk error!\n", __func__);
627             }
628         }
629 
630         ret = clk_prepare_enable(data->ext_clk);
631         if (ret) {
632             LOG("%s: enable ref clk error!\n", __func__);
633         }
634 
635         /* WIFI clock (REF_CLKOUT) output enable.
636          * 1'b0: drive disable
637          * 1'b1: output enable
638          */
639         if (of_machine_is_compatible("rockchip,rk3308")) {
640             regmap_write(data->grf, 0x0314, 0x00020002);
641         }
642     }
643 
644     return 0;
645 }
646 #endif // CONFIG_OF
647 
648 #if defined(CONFIG_HAS_EARLYSUSPEND)
649 #include <linux/earlysuspend.h>
650 
wlan_early_suspend(struct early_suspend * h)651 static void wlan_early_suspend(struct early_suspend *h)
652 {
653     LOG("%s :enter\n", __func__);
654 
655     return;
656 }
657 
wlan_late_resume(struct early_suspend * h)658 static void wlan_late_resume(struct early_suspend *h)
659 {
660     LOG("%s :enter\n", __func__);
661 
662     return;
663 }
664 
665 struct early_suspend wlan_early_suspend {
666     .level = EARLY_SUSPEND_LEVEL_BLANK_SCREEN - 20;
667     .suspend = wlan_early_suspend;
668     .resume = wlan_late_resume;
669 }
670 #endif
671 
672 static void
rfkill_wlan_early_suspend(void)673 rfkill_wlan_early_suspend(void)
674 {
675     return;
676 }
677 
rfkill_wlan_later_resume(void)678 static void rfkill_wlan_later_resume(void)
679 {
680     return;
681 }
682 
rfkill_wlan_fb_event_notify(struct notifier_block * self,unsigned long action,void * data)683 static int rfkill_wlan_fb_event_notify(struct notifier_block *self, unsigned long action, void *data)
684 {
685     struct fb_event *event = data;
686     int blank_mode = *((int *)event->data);
687 
688     switch (blank_mode) {
689         case FB_BLANK_UNBLANK:
690             rfkill_wlan_later_resume();
691             break;
692         case FB_BLANK_NORMAL:
693             rfkill_wlan_early_suspend();
694             break;
695         default:
696             rfkill_wlan_early_suspend();
697             break;
698     }
699 
700     return 0;
701 }
702 
703 static struct notifier_block rfkill_wlan_fb_notifier = {
704     .notifier_call = rfkill_wlan_fb_event_notify,
705 };
706 
wifi_power_show(struct class * cls,struct class_attribute * attr,char * _buf)707 static ssize_t wifi_power_show(struct class *cls, struct class_attribute *attr, char *_buf)
708 {
709     return sprintf(_buf, "%d\n", wifi_power_state);
710 }
711 
wifi_power_store(struct class * cls,struct class_attribute * attr,const char * _buf,size_t _count)712 static ssize_t wifi_power_store(struct class *cls, struct class_attribute *attr, const char *_buf, size_t _count)
713 {
714     long poweren = 0;
715 
716     if (kstrtol(_buf, 0x0A, &poweren) < 0) {
717         return -EINVAL;
718     }
719 
720     LOG("%s: poweren = %ld\n", __func__, poweren);
721 
722     if (poweren > 0) {
723         rockchip_wifi_power(1);
724     } else {
725         rockchip_wifi_power(0);
726     }
727 
728     return _count;
729 }
730 
731 static CLASS_ATTR_RW(wifi_power);
732 
wifi_bt_vbat_show(struct class * cls,struct class_attribute * attr,char * _buf)733 static ssize_t wifi_bt_vbat_show(struct class *cls, struct class_attribute *attr, char *_buf)
734 {
735     return sprintf(_buf, "%d\n", wifi_bt_vbat_state);
736 }
737 
wifi_bt_vbat_store(struct class * cls,struct class_attribute * attr,const char * _buf,size_t _count)738 static ssize_t wifi_bt_vbat_store(struct class *cls, struct class_attribute *attr, const char *_buf, size_t _count)
739 {
740     long vbat = 0;
741 
742     if (kstrtol(_buf, 0x0A, &vbat) < 0) {
743         return -EINVAL;
744     }
745 
746     LOG("%s: vbat = %ld\n", __func__, vbat);
747 
748     if (vbat > 0) {
749         rfkill_set_wifi_bt_power(1);
750     } else {
751         rfkill_set_wifi_bt_power(0);
752     }
753 
754     return _count;
755 }
756 
757 static CLASS_ATTR_RW(wifi_bt_vbat);
758 
wifi_set_carddetect_store(struct class * cls,struct class_attribute * attr,const char * _buf,size_t _count)759 static ssize_t wifi_set_carddetect_store(struct class *cls, struct class_attribute *attr, const char *_buf,
760                                          size_t _count)
761 {
762     long val = 0;
763 
764     if (kstrtol(_buf, 0x0A, &val) < 0) {
765         return -EINVAL;
766     }
767 
768     LOG("%s: val = %ld\n", __func__, val);
769 
770     if (val > 0) {
771         rockchip_wifi_set_carddetect(1);
772     } else {
773         rockchip_wifi_set_carddetect(0);
774     }
775 
776     return _count;
777 }
778 
779 static CLASS_ATTR_WO(wifi_set_carddetect);
780 
781 static struct attribute *rkwifi_power_attrs[] = {
782     &class_attr_wifi_power.attr,
783     &class_attr_wifi_bt_vbat.attr,
784     &class_attr_wifi_set_carddetect.attr,
785     NULL,
786 };
787 ATTRIBUTE_GROUPS(rkwifi_power);
788 
789 /** Device model classes */
790 static struct class rkwifi_power = {
791     .name = "rkwifi",
792     .class_groups = rkwifi_power_groups,
793 };
794 
rfkill_wlan_probe(struct platform_device * pdev)795 static int rfkill_wlan_probe(struct platform_device *pdev)
796 {
797     struct rfkill_wlan_data *rfkill;
798     struct rksdmmc_gpio_wifi_moudle *pdata = pdev->dev.platform_data;
799     int ret = -1;
800 
801     LOG("Enter %s\n", __func__);
802 
803     class_register(&rkwifi_power);
804 
805     if (!pdata) {
806 #ifdef CONFIG_OF
807         pdata = kzalloc(sizeof(*pdata), GFP_KERNEL);
808         if (!pdata) {
809             return -ENOMEM;
810         }
811 
812         ret = wlan_platdata_parse_dt(&pdev->dev, pdata);
813         if (ret < 0) {
814 #endif
815             LOG("%s: No platform data specified\n", __func__);
816             return ret;
817 #ifdef CONFIG_OF
818         }
819 #endif
820     }
821 
822     rfkill = kzalloc(sizeof(*rfkill), GFP_KERNEL);
823     if (!rfkill) {
824         goto rfkill_alloc_fail;
825     }
826 
827     rfkill->pdata = pdata;
828     g_rfkill = rfkill;
829 
830     LOG("%s: init gpio\n", __func__);
831 
832     if (!pdata->mregulator.power_ctrl_by_pmu) {
833         ret = rfkill_rk_setup_gpio(&pdata->vbat_n, wlan_name, "wlan_vbat");
834         if (ret) {
835             goto fail_alloc;
836         }
837 
838         ret = rfkill_rk_setup_gpio(&pdata->power_n, wlan_name, "wlan_poweren");
839         if (ret) {
840             goto fail_alloc;
841         }
842 
843         ret = rfkill_rk_setup_gpio(&pdata->reset_n, wlan_name, "wlan_reset");
844         if (ret) {
845             goto fail_alloc;
846         }
847     }
848 
849     wake_lock_init(&rfkill->wlan_irq_wl, WAKE_LOCK_SUSPEND, "rfkill_wlan_wake");
850 
851     rfkill_set_wifi_bt_power(1);
852 
853 #ifdef CONFIG_SDIO_KEEPALIVE
854     if (gpio_is_valid(pdata->power_n.io) && primary_sdio_host && primary_sdio_host->support_chip_alive) {
855         gpio_direction_output(pdata->power_n.io, pdata->power_n.enable);
856     }
857 #else
858     if (gpio_is_valid(pdata->power_n.io)) {
859         gpio_direction_output(pdata->power_n.io, !pdata->power_n.enable);
860     }
861 #endif
862 
863     if (pdata->wifi_power_remain) {
864         rockchip_wifi_power(1);
865     }
866 
867 #if BCM_STATIC_MEMORY_SUPPORT
868     rockchip_init_wifi_mem();
869 #endif
870 
871 #if defined(CONFIG_HAS_EARLYSUSPEND)
872     register_early_suspend(wlan_early_suspend);
873 #endif
874 
875     fb_register_client(&rfkill_wlan_fb_notifier);
876 
877     LOG("Exit %s\n", __func__);
878 
879     return 0;
880 
881 fail_alloc:
882     kfree(rfkill);
883 rfkill_alloc_fail:
884     kfree(pdata);
885 
886     g_rfkill = NULL;
887 
888     return ret;
889 }
890 
rfkill_wlan_remove(struct platform_device * pdev)891 static int rfkill_wlan_remove(struct platform_device *pdev)
892 {
893     struct rfkill_wlan_data *rfkill = platform_get_drvdata(pdev);
894 
895     LOG("Enter %s\n", __func__);
896 
897     wake_lock_destroy(&rfkill->wlan_irq_wl);
898 
899     fb_unregister_client(&rfkill_wlan_fb_notifier);
900 
901     if (gpio_is_valid(rfkill->pdata->power_n.io)) {
902         gpio_free(rfkill->pdata->power_n.io);
903     }
904 
905     if (gpio_is_valid(rfkill->pdata->reset_n.io)) {
906         gpio_free(rfkill->pdata->reset_n.io);
907     }
908 
909     kfree(rfkill);
910     g_rfkill = NULL;
911 
912     return 0;
913 }
914 
rfkill_wlan_suspend(struct platform_device * pdev,pm_message_t state)915 static int rfkill_wlan_suspend(struct platform_device *pdev, pm_message_t state)
916 {
917     LOG("Enter %s\n", __func__);
918     return 0;
919 }
920 
rfkill_wlan_resume(struct platform_device * pdev)921 static int rfkill_wlan_resume(struct platform_device *pdev)
922 {
923     LOG("Enter %s\n", __func__);
924     return 0;
925 }
926 
927 #ifdef CONFIG_OF
928 static struct of_device_id wlan_platdata_of_match[] = {{.compatible = "wlan-platdata"}, {}};
929 MODULE_DEVICE_TABLE(of, wlan_platdata_of_match);
930 #endif // CONFIG_OF
931 
932 static struct platform_driver rfkill_wlan_driver = {
933     .probe = rfkill_wlan_probe,
934     .remove = rfkill_wlan_remove,
935     .suspend = rfkill_wlan_suspend,
936     .resume = rfkill_wlan_resume,
937     .driver =
938         {
939             .name = "wlan-platdata",
940             .owner = THIS_MODULE,
941             .of_match_table = of_match_ptr(wlan_platdata_of_match),
942         },
943 };
944 
rfkill_wlan_init(void)945 int __init rfkill_wlan_init(void)
946 {
947     LOG("Enter %s\n", __func__);
948     return platform_driver_register(&rfkill_wlan_driver);
949 }
950 
rfkill_wlan_exit(void)951 void __exit rfkill_wlan_exit(void)
952 {
953     LOG("Enter %s\n", __func__);
954     platform_driver_unregister(&rfkill_wlan_driver);
955 }
956 
957 MODULE_DESCRIPTION("rock-chips rfkill for wifi v0.1");
958 MODULE_AUTHOR("gwl@rock-chips.com");
959 MODULE_LICENSE("GPL");
960