osdep_service.h 27 KB

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  1. /******************************************************************************
  2. *
  3. * Copyright(c) 2007 - 2017 Realtek Corporation.
  4. *
  5. * This program is free software; you can redistribute it and/or modify it
  6. * under the terms of version 2 of the GNU General Public License as
  7. * published by the Free Software Foundation.
  8. *
  9. * This program is distributed in the hope that it will be useful, but WITHOUT
  10. * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
  11. * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
  12. * more details.
  13. *
  14. *****************************************************************************/
  15. #ifndef __OSDEP_SERVICE_H_
  16. #define __OSDEP_SERVICE_H_
  17. #define _FAIL 0
  18. #define _SUCCESS 1
  19. #define RTW_RX_HANDLED 2
  20. #define RTW_RFRAME_UNAVAIL 3
  21. #define RTW_RFRAME_PKT_UNAVAIL 4
  22. #define RTW_RBUF_UNAVAIL 5
  23. #define RTW_RBUF_PKT_UNAVAIL 6
  24. #define RTW_SDIO_READ_PORT_FAIL 7
  25. #define RTW_ALREADY 8
  26. #define RTW_RA_RESOLVING 9
  27. #define RTW_BMC_NO_NEED 10
  28. /* #define RTW_STATUS_TIMEDOUT -110 */
  29. #undef _TRUE
  30. #define _TRUE 1
  31. #undef _FALSE
  32. #define _FALSE 0
  33. #ifdef PLATFORM_FREEBSD
  34. #include <osdep_service_bsd.h>
  35. #endif
  36. #ifdef PLATFORM_LINUX
  37. #include <linux/version.h>
  38. #if (LINUX_VERSION_CODE >= KERNEL_VERSION(4, 11, 0))
  39. #include <linux/sched/signal.h>
  40. #include <linux/sched/types.h>
  41. #endif
  42. #include <osdep_service_linux.h>
  43. #endif
  44. #ifdef PLATFORM_OS_XP
  45. #include <osdep_service_xp.h>
  46. #endif
  47. #ifdef PLATFORM_OS_CE
  48. #include <osdep_service_ce.h>
  49. #endif
  50. /* #include <rtw_byteorder.h> */
  51. #ifndef BIT
  52. #define BIT(x) (1 << (x))
  53. #endif
  54. #define BIT0 0x00000001
  55. #define BIT1 0x00000002
  56. #define BIT2 0x00000004
  57. #define BIT3 0x00000008
  58. #define BIT4 0x00000010
  59. #define BIT5 0x00000020
  60. #define BIT6 0x00000040
  61. #define BIT7 0x00000080
  62. #define BIT8 0x00000100
  63. #define BIT9 0x00000200
  64. #define BIT10 0x00000400
  65. #define BIT11 0x00000800
  66. #define BIT12 0x00001000
  67. #define BIT13 0x00002000
  68. #define BIT14 0x00004000
  69. #define BIT15 0x00008000
  70. #define BIT16 0x00010000
  71. #define BIT17 0x00020000
  72. #define BIT18 0x00040000
  73. #define BIT19 0x00080000
  74. #define BIT20 0x00100000
  75. #define BIT21 0x00200000
  76. #define BIT22 0x00400000
  77. #define BIT23 0x00800000
  78. #define BIT24 0x01000000
  79. #define BIT25 0x02000000
  80. #define BIT26 0x04000000
  81. #define BIT27 0x08000000
  82. #define BIT28 0x10000000
  83. #define BIT29 0x20000000
  84. #define BIT30 0x40000000
  85. #define BIT31 0x80000000
  86. #define BIT32 0x0100000000
  87. #define BIT33 0x0200000000
  88. #define BIT34 0x0400000000
  89. #define BIT35 0x0800000000
  90. #define BIT36 0x1000000000
  91. extern int RTW_STATUS_CODE(int error_code);
  92. #ifndef RTK_DMP_PLATFORM
  93. #define CONFIG_USE_VMALLOC
  94. #endif
  95. /* flags used for rtw_mstat_update() */
  96. enum mstat_f {
  97. /* type: 0x00ff */
  98. MSTAT_TYPE_VIR = 0x00,
  99. MSTAT_TYPE_PHY = 0x01,
  100. MSTAT_TYPE_SKB = 0x02,
  101. MSTAT_TYPE_USB = 0x03,
  102. MSTAT_TYPE_MAX = 0x04,
  103. /* func: 0xff00 */
  104. MSTAT_FUNC_UNSPECIFIED = 0x00 << 8,
  105. MSTAT_FUNC_IO = 0x01 << 8,
  106. MSTAT_FUNC_TX_IO = 0x02 << 8,
  107. MSTAT_FUNC_RX_IO = 0x03 << 8,
  108. MSTAT_FUNC_TX = 0x04 << 8,
  109. MSTAT_FUNC_RX = 0x05 << 8,
  110. MSTAT_FUNC_CFG_VENDOR = 0x06 << 8,
  111. MSTAT_FUNC_MAX = 0x07 << 8,
  112. };
  113. #define mstat_tf_idx(flags) ((flags) & 0xff)
  114. #define mstat_ff_idx(flags) (((flags) & 0xff00) >> 8)
  115. typedef enum mstat_status {
  116. MSTAT_ALLOC_SUCCESS = 0,
  117. MSTAT_ALLOC_FAIL,
  118. MSTAT_FREE
  119. } MSTAT_STATUS;
  120. #ifdef DBG_MEM_ALLOC
  121. void rtw_mstat_update(const enum mstat_f flags, const MSTAT_STATUS status, u32 sz);
  122. void rtw_mstat_dump(void *sel);
  123. bool match_mstat_sniff_rules(const enum mstat_f flags, const size_t size);
  124. void *dbg_rtw_vmalloc(u32 sz, const enum mstat_f flags, const char *func, const int line);
  125. void *dbg_rtw_zvmalloc(u32 sz, const enum mstat_f flags, const char *func, const int line);
  126. void dbg_rtw_vmfree(void *pbuf, const enum mstat_f flags, u32 sz, const char *func, const int line);
  127. void *dbg_rtw_malloc(u32 sz, const enum mstat_f flags, const char *func, const int line);
  128. void *dbg_rtw_zmalloc(u32 sz, const enum mstat_f flags, const char *func, const int line);
  129. void dbg_rtw_mfree(void *pbuf, const enum mstat_f flags, u32 sz, const char *func, const int line);
  130. struct sk_buff *dbg_rtw_skb_alloc(unsigned int size, const enum mstat_f flags, const char *func, const int line);
  131. void dbg_rtw_skb_free(struct sk_buff *skb, const enum mstat_f flags, const char *func, const int line);
  132. struct sk_buff *dbg_rtw_skb_copy(const struct sk_buff *skb, const enum mstat_f flags, const char *func, const int line);
  133. struct sk_buff *dbg_rtw_skb_clone(struct sk_buff *skb, const enum mstat_f flags, const char *func, const int line);
  134. int dbg_rtw_netif_rx(_nic_hdl ndev, struct sk_buff *skb, const enum mstat_f flags, const char *func, int line);
  135. #ifdef CONFIG_RTW_NAPI
  136. int dbg_rtw_netif_receive_skb(_nic_hdl ndev, struct sk_buff *skb, const enum mstat_f flags, const char *func, int line);
  137. #ifdef CONFIG_RTW_GRO
  138. gro_result_t dbg_rtw_napi_gro_receive(struct napi_struct *napi, struct sk_buff *skb, const enum mstat_f flags, const char *func, int line);
  139. #endif
  140. #endif /* CONFIG_RTW_NAPI */
  141. void dbg_rtw_skb_queue_purge(struct sk_buff_head *list, enum mstat_f flags, const char *func, int line);
  142. #ifdef CONFIG_USB_HCI
  143. void *dbg_rtw_usb_buffer_alloc(struct usb_device *dev, size_t size, dma_addr_t *dma, const enum mstat_f flags, const char *func, const int line);
  144. void dbg_rtw_usb_buffer_free(struct usb_device *dev, size_t size, void *addr, dma_addr_t dma, const enum mstat_f flags, const char *func, const int line);
  145. #endif /* CONFIG_USB_HCI */
  146. #ifdef CONFIG_USE_VMALLOC
  147. #define rtw_vmalloc(sz) dbg_rtw_vmalloc((sz), MSTAT_TYPE_VIR, __FUNCTION__, __LINE__)
  148. #define rtw_zvmalloc(sz) dbg_rtw_zvmalloc((sz), MSTAT_TYPE_VIR, __FUNCTION__, __LINE__)
  149. #define rtw_vmfree(pbuf, sz) dbg_rtw_vmfree((pbuf), (sz), MSTAT_TYPE_VIR, __FUNCTION__, __LINE__)
  150. #define rtw_vmalloc_f(sz, mstat_f) dbg_rtw_vmalloc((sz), ((mstat_f) & 0xff00) | MSTAT_TYPE_VIR, __FUNCTION__, __LINE__)
  151. #define rtw_zvmalloc_f(sz, mstat_f) dbg_rtw_zvmalloc((sz), ((mstat_f) & 0xff00) | MSTAT_TYPE_VIR, __FUNCTION__, __LINE__)
  152. #define rtw_vmfree_f(pbuf, sz, mstat_f) dbg_rtw_vmfree((pbuf), (sz), ((mstat_f) & 0xff00) | MSTAT_TYPE_VIR, __FUNCTION__, __LINE__)
  153. #else /* CONFIG_USE_VMALLOC */
  154. #define rtw_vmalloc(sz) dbg_rtw_malloc((sz), MSTAT_TYPE_PHY, __FUNCTION__, __LINE__)
  155. #define rtw_zvmalloc(sz) dbg_rtw_zmalloc((sz), MSTAT_TYPE_PHY, __FUNCTION__, __LINE__)
  156. #define rtw_vmfree(pbuf, sz) dbg_rtw_mfree((pbuf), (sz), MSTAT_TYPE_PHY, __FUNCTION__, __LINE__)
  157. #define rtw_vmalloc_f(sz, mstat_f) dbg_rtw_malloc((sz), ((mstat_f) & 0xff00) | MSTAT_TYPE_PHY, __FUNCTION__, __LINE__)
  158. #define rtw_zvmalloc_f(sz, mstat_f) dbg_rtw_zmalloc((sz), ((mstat_f) & 0xff00) | MSTAT_TYPE_PHY, __FUNCTION__, __LINE__)
  159. #define rtw_vmfree_f(pbuf, sz, mstat_f) dbg_rtw_mfree((pbuf), (sz), ((mstat_f) & 0xff00) | MSTAT_TYPE_PHY, __FUNCTION__, __LINE__)
  160. #endif /* CONFIG_USE_VMALLOC */
  161. #define rtw_malloc(sz) dbg_rtw_malloc((sz), MSTAT_TYPE_PHY, __FUNCTION__, __LINE__)
  162. #define rtw_zmalloc(sz) dbg_rtw_zmalloc((sz), MSTAT_TYPE_PHY, __FUNCTION__, __LINE__)
  163. #define rtw_mfree(pbuf, sz) dbg_rtw_mfree((pbuf), (sz), MSTAT_TYPE_PHY, __FUNCTION__, __LINE__)
  164. #define rtw_malloc_f(sz, mstat_f) dbg_rtw_malloc((sz), ((mstat_f) & 0xff00) | MSTAT_TYPE_PHY, __FUNCTION__, __LINE__)
  165. #define rtw_zmalloc_f(sz, mstat_f) dbg_rtw_zmalloc((sz), ((mstat_f) & 0xff00) | MSTAT_TYPE_PHY, __FUNCTION__, __LINE__)
  166. #define rtw_mfree_f(pbuf, sz, mstat_f) dbg_rtw_mfree((pbuf), (sz), ((mstat_f) & 0xff00) | MSTAT_TYPE_PHY, __FUNCTION__, __LINE__)
  167. #define rtw_skb_alloc(size) dbg_rtw_skb_alloc((size), MSTAT_TYPE_SKB, __FUNCTION__, __LINE__)
  168. #define rtw_skb_free(skb) dbg_rtw_skb_free((skb), MSTAT_TYPE_SKB, __FUNCTION__, __LINE__)
  169. #define rtw_skb_alloc_f(size, mstat_f) dbg_rtw_skb_alloc((size), ((mstat_f) & 0xff00) | MSTAT_TYPE_SKB, __FUNCTION__, __LINE__)
  170. #define rtw_skb_free_f(skb, mstat_f) dbg_rtw_skb_free((skb), ((mstat_f) & 0xff00) | MSTAT_TYPE_SKB, __FUNCTION__, __LINE__)
  171. #define rtw_skb_copy(skb) dbg_rtw_skb_copy((skb), MSTAT_TYPE_SKB, __FUNCTION__, __LINE__)
  172. #define rtw_skb_clone(skb) dbg_rtw_skb_clone((skb), MSTAT_TYPE_SKB, __FUNCTION__, __LINE__)
  173. #define rtw_skb_copy_f(skb, mstat_f) dbg_rtw_skb_copy((skb), ((mstat_f) & 0xff00) | MSTAT_TYPE_SKB, __FUNCTION__, __LINE__)
  174. #define rtw_skb_clone_f(skb, mstat_f) dbg_rtw_skb_clone((skb), ((mstat_f) & 0xff00) | MSTAT_TYPE_SKB, __FUNCTION__, __LINE__)
  175. #define rtw_netif_rx(ndev, skb) dbg_rtw_netif_rx(ndev, skb, MSTAT_TYPE_SKB, __FUNCTION__, __LINE__)
  176. #ifdef CONFIG_RTW_NAPI
  177. #define rtw_netif_receive_skb(ndev, skb) dbg_rtw_netif_receive_skb(ndev, skb, MSTAT_TYPE_SKB, __FUNCTION__, __LINE__)
  178. #ifdef CONFIG_RTW_GRO
  179. #define rtw_napi_gro_receive(napi, skb) dbg_rtw_napi_gro_receive(napi, skb, MSTAT_TYPE_SKB, __FUNCTION__, __LINE__)
  180. #endif
  181. #endif /* CONFIG_RTW_NAPI */
  182. #define rtw_skb_queue_purge(sk_buff_head) dbg_rtw_skb_queue_purge(sk_buff_head, MSTAT_TYPE_SKB, __FUNCTION__, __LINE__)
  183. #ifdef CONFIG_USB_HCI
  184. #define rtw_usb_buffer_alloc(dev, size, dma) dbg_rtw_usb_buffer_alloc((dev), (size), (dma), MSTAT_TYPE_USB, __FUNCTION__, __LINE__)
  185. #define rtw_usb_buffer_free(dev, size, addr, dma) dbg_rtw_usb_buffer_free((dev), (size), (addr), (dma), MSTAT_TYPE_USB, __FUNCTION__, __LINE__)
  186. #define rtw_usb_buffer_alloc_f(dev, size, dma, mstat_f) dbg_rtw_usb_buffer_alloc((dev), (size), (dma), ((mstat_f) & 0xff00) | MSTAT_TYPE_USB, __FUNCTION__, __LINE__)
  187. #define rtw_usb_buffer_free_f(dev, size, addr, dma, mstat_f) dbg_rtw_usb_buffer_free((dev), (size), (addr), (dma), ((mstat_f) & 0xff00) | MSTAT_TYPE_USB, __FUNCTION__, __LINE__)
  188. #endif /* CONFIG_USB_HCI */
  189. #else /* DBG_MEM_ALLOC */
  190. #define rtw_mstat_update(flag, status, sz) do {} while (0)
  191. #define rtw_mstat_dump(sel) do {} while (0)
  192. #define match_mstat_sniff_rules(flags, size) _FALSE
  193. void *_rtw_vmalloc(u32 sz);
  194. void *_rtw_zvmalloc(u32 sz);
  195. void _rtw_vmfree(void *pbuf, u32 sz);
  196. void *_rtw_zmalloc(u32 sz);
  197. void *_rtw_malloc(u32 sz);
  198. void _rtw_mfree(void *pbuf, u32 sz);
  199. struct sk_buff *_rtw_skb_alloc(u32 sz);
  200. void _rtw_skb_free(struct sk_buff *skb);
  201. struct sk_buff *_rtw_skb_copy(const struct sk_buff *skb);
  202. struct sk_buff *_rtw_skb_clone(struct sk_buff *skb);
  203. int _rtw_netif_rx(_nic_hdl ndev, struct sk_buff *skb);
  204. #ifdef CONFIG_RTW_NAPI
  205. int _rtw_netif_receive_skb(_nic_hdl ndev, struct sk_buff *skb);
  206. #ifdef CONFIG_RTW_GRO
  207. gro_result_t _rtw_napi_gro_receive(struct napi_struct *napi, struct sk_buff *skb);
  208. #endif
  209. #endif /* CONFIG_RTW_NAPI */
  210. void _rtw_skb_queue_purge(struct sk_buff_head *list);
  211. #ifdef CONFIG_USB_HCI
  212. void *_rtw_usb_buffer_alloc(struct usb_device *dev, size_t size, dma_addr_t *dma);
  213. void _rtw_usb_buffer_free(struct usb_device *dev, size_t size, void *addr, dma_addr_t dma);
  214. #endif /* CONFIG_USB_HCI */
  215. #ifdef CONFIG_USE_VMALLOC
  216. #define rtw_vmalloc(sz) _rtw_vmalloc((sz))
  217. #define rtw_zvmalloc(sz) _rtw_zvmalloc((sz))
  218. #define rtw_vmfree(pbuf, sz) _rtw_vmfree((pbuf), (sz))
  219. #define rtw_vmalloc_f(sz, mstat_f) _rtw_vmalloc((sz))
  220. #define rtw_zvmalloc_f(sz, mstat_f) _rtw_zvmalloc((sz))
  221. #define rtw_vmfree_f(pbuf, sz, mstat_f) _rtw_vmfree((pbuf), (sz))
  222. #else /* CONFIG_USE_VMALLOC */
  223. #define rtw_vmalloc(sz) _rtw_malloc((sz))
  224. #define rtw_zvmalloc(sz) _rtw_zmalloc((sz))
  225. #define rtw_vmfree(pbuf, sz) _rtw_mfree((pbuf), (sz))
  226. #define rtw_vmalloc_f(sz, mstat_f) _rtw_malloc((sz))
  227. #define rtw_zvmalloc_f(sz, mstat_f) _rtw_zmalloc((sz))
  228. #define rtw_vmfree_f(pbuf, sz, mstat_f) _rtw_mfree((pbuf), (sz))
  229. #endif /* CONFIG_USE_VMALLOC */
  230. #define rtw_malloc(sz) _rtw_malloc((sz))
  231. #define rtw_zmalloc(sz) _rtw_zmalloc((sz))
  232. #define rtw_mfree(pbuf, sz) _rtw_mfree((pbuf), (sz))
  233. #define rtw_malloc_f(sz, mstat_f) _rtw_malloc((sz))
  234. #define rtw_zmalloc_f(sz, mstat_f) _rtw_zmalloc((sz))
  235. #define rtw_mfree_f(pbuf, sz, mstat_f) _rtw_mfree((pbuf), (sz))
  236. #define rtw_skb_alloc(size) _rtw_skb_alloc((size))
  237. #define rtw_skb_free(skb) _rtw_skb_free((skb))
  238. #define rtw_skb_alloc_f(size, mstat_f) _rtw_skb_alloc((size))
  239. #define rtw_skb_free_f(skb, mstat_f) _rtw_skb_free((skb))
  240. #define rtw_skb_copy(skb) _rtw_skb_copy((skb))
  241. #define rtw_skb_clone(skb) _rtw_skb_clone((skb))
  242. #define rtw_skb_copy_f(skb, mstat_f) _rtw_skb_copy((skb))
  243. #define rtw_skb_clone_f(skb, mstat_f) _rtw_skb_clone((skb))
  244. #define rtw_netif_rx(ndev, skb) _rtw_netif_rx(ndev, skb)
  245. #ifdef CONFIG_RTW_NAPI
  246. #define rtw_netif_receive_skb(ndev, skb) _rtw_netif_receive_skb(ndev, skb)
  247. #ifdef CONFIG_RTW_GRO
  248. #define rtw_napi_gro_receive(napi, skb) _rtw_napi_gro_receive(napi, skb)
  249. #endif
  250. #endif /* CONFIG_RTW_NAPI */
  251. #define rtw_skb_queue_purge(sk_buff_head) _rtw_skb_queue_purge(sk_buff_head)
  252. #ifdef CONFIG_USB_HCI
  253. #define rtw_usb_buffer_alloc(dev, size, dma) _rtw_usb_buffer_alloc((dev), (size), (dma))
  254. #define rtw_usb_buffer_free(dev, size, addr, dma) _rtw_usb_buffer_free((dev), (size), (addr), (dma))
  255. #define rtw_usb_buffer_alloc_f(dev, size, dma, mstat_f) _rtw_usb_buffer_alloc((dev), (size), (dma))
  256. #define rtw_usb_buffer_free_f(dev, size, addr, dma, mstat_f) _rtw_usb_buffer_free((dev), (size), (addr), (dma))
  257. #endif /* CONFIG_USB_HCI */
  258. #endif /* DBG_MEM_ALLOC */
  259. extern void *rtw_malloc2d(int h, int w, size_t size);
  260. extern void rtw_mfree2d(void *pbuf, int h, int w, int size);
  261. void rtw_os_pkt_free(_pkt *pkt);
  262. _pkt *rtw_os_pkt_copy(_pkt *pkt);
  263. void *rtw_os_pkt_data(_pkt *pkt);
  264. u32 rtw_os_pkt_len(_pkt *pkt);
  265. extern void _rtw_memcpy(void *dec, const void *sour, u32 sz);
  266. extern void _rtw_memmove(void *dst, const void *src, u32 sz);
  267. extern int _rtw_memcmp(const void *dst, const void *src, u32 sz);
  268. extern void _rtw_memset(void *pbuf, int c, u32 sz);
  269. extern void _rtw_init_listhead(_list *list);
  270. extern u32 rtw_is_list_empty(_list *phead);
  271. extern void rtw_list_insert_head(_list *plist, _list *phead);
  272. extern void rtw_list_insert_tail(_list *plist, _list *phead);
  273. void rtw_list_splice(_list *list, _list *head);
  274. void rtw_list_splice_init(_list *list, _list *head);
  275. void rtw_list_splice_tail(_list *list, _list *head);
  276. #ifndef PLATFORM_FREEBSD
  277. extern void rtw_list_delete(_list *plist);
  278. #endif /* PLATFORM_FREEBSD */
  279. void rtw_hlist_head_init(rtw_hlist_head *h);
  280. void rtw_hlist_add_head(rtw_hlist_node *n, rtw_hlist_head *h);
  281. void rtw_hlist_del(rtw_hlist_node *n);
  282. void rtw_hlist_add_head_rcu(rtw_hlist_node *n, rtw_hlist_head *h);
  283. void rtw_hlist_del_rcu(rtw_hlist_node *n);
  284. extern void _rtw_init_sema(_sema *sema, int init_val);
  285. extern void _rtw_free_sema(_sema *sema);
  286. extern void _rtw_up_sema(_sema *sema);
  287. extern u32 _rtw_down_sema(_sema *sema);
  288. extern void _rtw_mutex_init(_mutex *pmutex);
  289. extern void _rtw_mutex_free(_mutex *pmutex);
  290. #ifndef PLATFORM_FREEBSD
  291. extern void _rtw_spinlock_init(_lock *plock);
  292. #endif /* PLATFORM_FREEBSD */
  293. extern void _rtw_spinlock_free(_lock *plock);
  294. extern void _rtw_spinlock(_lock *plock);
  295. extern void _rtw_spinunlock(_lock *plock);
  296. extern void _rtw_spinlock_ex(_lock *plock);
  297. extern void _rtw_spinunlock_ex(_lock *plock);
  298. extern void _rtw_init_queue(_queue *pqueue);
  299. extern void _rtw_deinit_queue(_queue *pqueue);
  300. extern u32 _rtw_queue_empty(_queue *pqueue);
  301. extern u32 rtw_end_of_queue_search(_list *queue, _list *pelement);
  302. extern systime _rtw_get_current_time(void);
  303. extern u32 _rtw_systime_to_ms(systime stime);
  304. extern systime _rtw_ms_to_systime(u32 ms);
  305. extern systime _rtw_us_to_systime(u32 us);
  306. extern s32 _rtw_get_passing_time_ms(systime start);
  307. extern s32 _rtw_get_remaining_time_ms(systime end);
  308. extern s32 _rtw_get_time_interval_ms(systime start, systime end);
  309. extern bool _rtw_time_after(systime a, systime b);
  310. #ifdef DBG_SYSTIME
  311. #define rtw_get_current_time() ({systime __stime = _rtw_get_current_time(); __stime;})
  312. #define rtw_systime_to_ms(stime) ({u32 __ms = _rtw_systime_to_ms(stime); typecheck(systime, stime); __ms;})
  313. #define rtw_ms_to_systime(ms) ({systime __stime = _rtw_ms_to_systime(ms); __stime;})
  314. #define rtw_us_to_systime(us) ({systime __stime = _rtw_us_to_systime(us); __stime;})
  315. #define rtw_get_passing_time_ms(start) ({u32 __ms = _rtw_get_passing_time_ms(start); typecheck(systime, start); __ms;})
  316. #define rtw_get_remaining_time_ms(end) ({u32 __ms = _rtw_get_remaining_time_ms(end); typecheck(systime, end); __ms;})
  317. #define rtw_get_time_interval_ms(start, end) ({u32 __ms = _rtw_get_time_interval_ms(start, end); typecheck(systime, start); typecheck(systime, end); __ms;})
  318. #define rtw_time_after(a,b) ({bool __r = _rtw_time_after(a,b); typecheck(systime, a); typecheck(systime, b); __r;})
  319. #define rtw_time_before(a,b) ({bool __r = _rtw_time_after(b, a); typecheck(systime, a); typecheck(systime, b); __r;})
  320. #else
  321. #define rtw_get_current_time() _rtw_get_current_time()
  322. #define rtw_systime_to_ms(stime) _rtw_systime_to_ms(stime)
  323. #define rtw_ms_to_systime(ms) _rtw_ms_to_systime(ms)
  324. #define rtw_us_to_systime(us) _rtw_us_to_systime(us)
  325. #define rtw_get_passing_time_ms(start) _rtw_get_passing_time_ms(start)
  326. #define rtw_get_remaining_time_ms(end) _rtw_get_remaining_time_ms(end)
  327. #define rtw_get_time_interval_ms(start, end) _rtw_get_time_interval_ms(start, end)
  328. #define rtw_time_after(a,b) _rtw_time_after(a,b)
  329. #define rtw_time_before(a,b) _rtw_time_after(b,a)
  330. #endif
  331. extern void rtw_sleep_schedulable(int ms);
  332. extern void rtw_msleep_os(int ms);
  333. extern void rtw_usleep_os(int us);
  334. extern u32 rtw_atoi(u8 *s);
  335. #ifdef DBG_DELAY_OS
  336. #define rtw_mdelay_os(ms) _rtw_mdelay_os((ms), __FUNCTION__, __LINE__)
  337. #define rtw_udelay_os(ms) _rtw_udelay_os((ms), __FUNCTION__, __LINE__)
  338. extern void _rtw_mdelay_os(int ms, const char *func, const int line);
  339. extern void _rtw_udelay_os(int us, const char *func, const int line);
  340. #else
  341. extern void rtw_mdelay_os(int ms);
  342. extern void rtw_udelay_os(int us);
  343. #endif
  344. extern void rtw_yield_os(void);
  345. extern void rtw_init_timer(_timer *ptimer, void *padapter, void *pfunc, void *ctx);
  346. __inline static unsigned char _cancel_timer_ex(_timer *ptimer)
  347. {
  348. u8 bcancelled;
  349. _cancel_timer(ptimer, &bcancelled);
  350. return bcancelled;
  351. }
  352. static __inline void thread_enter(char *name)
  353. {
  354. #ifdef PLATFORM_LINUX
  355. allow_signal(SIGTERM);
  356. #endif
  357. #ifdef PLATFORM_FREEBSD
  358. printf("%s", "RTKTHREAD_enter");
  359. #endif
  360. }
  361. #if (LINUX_VERSION_CODE >= KERNEL_VERSION(6, 4, 0))
  362. void __noreturn thread_exit(_completion *comp);
  363. #else
  364. void thread_exit(_completion *comp);
  365. #endif
  366. void _rtw_init_completion(_completion *comp);
  367. void _rtw_wait_for_comp_timeout(_completion *comp);
  368. void _rtw_wait_for_comp(_completion *comp);
  369. static inline bool rtw_thread_stop(_thread_hdl_ th)
  370. {
  371. #ifdef PLATFORM_LINUX
  372. return kthread_stop(th);
  373. #endif
  374. }
  375. static inline void rtw_thread_wait_stop(void)
  376. {
  377. #ifdef PLATFORM_LINUX
  378. #if 0
  379. while (!kthread_should_stop())
  380. rtw_msleep_os(10);
  381. #else
  382. set_current_state(TASK_INTERRUPTIBLE);
  383. while (!kthread_should_stop()) {
  384. schedule();
  385. set_current_state(TASK_INTERRUPTIBLE);
  386. }
  387. __set_current_state(TASK_RUNNING);
  388. #endif
  389. #endif
  390. }
  391. __inline static void flush_signals_thread(void)
  392. {
  393. #ifdef PLATFORM_LINUX
  394. if (signal_pending(current))
  395. flush_signals(current);
  396. #endif
  397. }
  398. __inline static _OS_STATUS res_to_status(sint res)
  399. {
  400. #if defined(PLATFORM_LINUX) || defined (PLATFORM_MPIXEL) || defined (PLATFORM_FREEBSD)
  401. return res;
  402. #endif
  403. #ifdef PLATFORM_WINDOWS
  404. if (res == _SUCCESS)
  405. return NDIS_STATUS_SUCCESS;
  406. else
  407. return NDIS_STATUS_FAILURE;
  408. #endif
  409. }
  410. __inline static void rtw_dump_stack(void)
  411. {
  412. #ifdef PLATFORM_LINUX
  413. dump_stack();
  414. #endif
  415. }
  416. #ifdef PLATFORM_LINUX
  417. #define rtw_warn_on(condition) WARN_ON(condition)
  418. #else
  419. #define rtw_warn_on(condition) do {} while (0)
  420. #endif
  421. __inline static int rtw_bug_check(void *parg1, void *parg2, void *parg3, void *parg4)
  422. {
  423. int ret = _TRUE;
  424. #ifdef PLATFORM_WINDOWS
  425. if (((uint)parg1) <= 0x7fffffff ||
  426. ((uint)parg2) <= 0x7fffffff ||
  427. ((uint)parg3) <= 0x7fffffff ||
  428. ((uint)parg4) <= 0x7fffffff) {
  429. ret = _FALSE;
  430. KeBugCheckEx(0x87110000, (ULONG_PTR)parg1, (ULONG_PTR)parg2, (ULONG_PTR)parg3, (ULONG_PTR)parg4);
  431. }
  432. #endif
  433. return ret;
  434. }
  435. #ifdef PLATFORM_LINUX
  436. #define RTW_DIV_ROUND_UP(n, d) DIV_ROUND_UP(n, d)
  437. #else /* !PLATFORM_LINUX */
  438. #define RTW_DIV_ROUND_UP(n, d) (((n) + (d - 1)) / d)
  439. #endif /* !PLATFORM_LINUX */
  440. #define _RND(sz, r) ((((sz)+((r)-1))/(r))*(r))
  441. #define RND4(x) (((x >> 2) + (((x & 3) == 0) ? 0 : 1)) << 2)
  442. __inline static u32 _RND4(u32 sz)
  443. {
  444. u32 val;
  445. val = ((sz >> 2) + ((sz & 3) ? 1 : 0)) << 2;
  446. return val;
  447. }
  448. __inline static u32 _RND8(u32 sz)
  449. {
  450. u32 val;
  451. val = ((sz >> 3) + ((sz & 7) ? 1 : 0)) << 3;
  452. return val;
  453. }
  454. __inline static u32 _RND128(u32 sz)
  455. {
  456. u32 val;
  457. val = ((sz >> 7) + ((sz & 127) ? 1 : 0)) << 7;
  458. return val;
  459. }
  460. __inline static u32 _RND256(u32 sz)
  461. {
  462. u32 val;
  463. val = ((sz >> 8) + ((sz & 255) ? 1 : 0)) << 8;
  464. return val;
  465. }
  466. __inline static u32 _RND512(u32 sz)
  467. {
  468. u32 val;
  469. val = ((sz >> 9) + ((sz & 511) ? 1 : 0)) << 9;
  470. return val;
  471. }
  472. __inline static u32 bitshift(u32 bitmask)
  473. {
  474. u32 i;
  475. for (i = 0; i <= 31; i++)
  476. if (((bitmask >> i) & 0x1) == 1)
  477. break;
  478. return i;
  479. }
  480. static inline int largest_bit(u32 bitmask)
  481. {
  482. int i;
  483. for (i = 31; i >= 0; i--)
  484. if (bitmask & BIT(i))
  485. break;
  486. return i;
  487. }
  488. #define rtw_abs(a) (a < 0 ? -a : a)
  489. #define rtw_min(a, b) ((a > b) ? b : a)
  490. #define rtw_is_range_a_in_b(hi_a, lo_a, hi_b, lo_b) (((hi_a) <= (hi_b)) && ((lo_a) >= (lo_b)))
  491. #define rtw_is_range_overlap(hi_a, lo_a, hi_b, lo_b) (((hi_a) > (lo_b)) && ((lo_a) < (hi_b)))
  492. #ifndef MAC_FMT
  493. #define MAC_FMT "%02x:%02x:%02x:%02x:%02x:%02x"
  494. #endif
  495. #ifndef MAC_ARG
  496. #define MAC_ARG(x) ((u8 *)(x))[0], ((u8 *)(x))[1], ((u8 *)(x))[2], ((u8 *)(x))[3], ((u8 *)(x))[4], ((u8 *)(x))[5]
  497. #endif
  498. bool rtw_macaddr_is_larger(const u8 *a, const u8 *b);
  499. extern void rtw_suspend_lock_init(void);
  500. extern void rtw_suspend_lock_uninit(void);
  501. extern void rtw_lock_suspend(void);
  502. extern void rtw_unlock_suspend(void);
  503. extern void rtw_lock_suspend_timeout(u32 timeout_ms);
  504. extern void rtw_lock_traffic_suspend_timeout(u32 timeout_ms);
  505. extern void rtw_resume_lock_suspend(void);
  506. extern void rtw_resume_unlock_suspend(void);
  507. #ifdef CONFIG_AP_WOWLAN
  508. extern void rtw_softap_lock_suspend(void);
  509. extern void rtw_softap_unlock_suspend(void);
  510. #endif
  511. extern void rtw_set_bit(int nr, unsigned long *addr);
  512. extern void rtw_clear_bit(int nr, unsigned long *addr);
  513. extern int rtw_test_and_clear_bit(int nr, unsigned long *addr);
  514. extern void ATOMIC_SET(ATOMIC_T *v, int i);
  515. extern int ATOMIC_READ(ATOMIC_T *v);
  516. extern void ATOMIC_ADD(ATOMIC_T *v, int i);
  517. extern void ATOMIC_SUB(ATOMIC_T *v, int i);
  518. extern void ATOMIC_INC(ATOMIC_T *v);
  519. extern void ATOMIC_DEC(ATOMIC_T *v);
  520. extern int ATOMIC_ADD_RETURN(ATOMIC_T *v, int i);
  521. extern int ATOMIC_SUB_RETURN(ATOMIC_T *v, int i);
  522. extern int ATOMIC_INC_RETURN(ATOMIC_T *v);
  523. extern int ATOMIC_DEC_RETURN(ATOMIC_T *v);
  524. extern bool ATOMIC_INC_UNLESS(ATOMIC_T *v, int u);
  525. /* File operation APIs, just for linux now */
  526. extern int rtw_is_file_readable(const char *path);
  527. extern int rtw_is_file_readable_with_size(const char *path, u32 *sz);
  528. extern int rtw_retrieve_from_file(const char *path, u8 *buf, u32 sz);
  529. extern int rtw_store_to_file(const char *path, u8 *buf, u32 sz);
  530. #ifndef PLATFORM_FREEBSD
  531. extern void rtw_free_netdev(struct net_device *netdev);
  532. #endif /* PLATFORM_FREEBSD */
  533. extern u64 rtw_modular64(u64 x, u64 y);
  534. extern u64 rtw_division64(u64 x, u64 y);
  535. extern u32 rtw_random32(void);
  536. /* Macros for handling unaligned memory accesses */
  537. #define RTW_GET_BE16(a) ((u16) (((a)[0] << 8) | (a)[1]))
  538. #define RTW_PUT_BE16(a, val) \
  539. do { \
  540. (a)[0] = ((u16) (val)) >> 8; \
  541. (a)[1] = ((u16) (val)) & 0xff; \
  542. } while (0)
  543. #define RTW_GET_LE16(a) ((u16) (((a)[1] << 8) | (a)[0]))
  544. #define RTW_PUT_LE16(a, val) \
  545. do { \
  546. (a)[1] = ((u16) (val)) >> 8; \
  547. (a)[0] = ((u16) (val)) & 0xff; \
  548. } while (0)
  549. #define RTW_GET_BE24(a) ((((u32) (a)[0]) << 16) | (((u32) (a)[1]) << 8) | \
  550. ((u32) (a)[2]))
  551. #define RTW_PUT_BE24(a, val) \
  552. do { \
  553. (a)[0] = (u8) ((((u32) (val)) >> 16) & 0xff); \
  554. (a)[1] = (u8) ((((u32) (val)) >> 8) & 0xff); \
  555. (a)[2] = (u8) (((u32) (val)) & 0xff); \
  556. } while (0)
  557. #define RTW_GET_BE32(a) ((((u32) (a)[0]) << 24) | (((u32) (a)[1]) << 16) | \
  558. (((u32) (a)[2]) << 8) | ((u32) (a)[3]))
  559. #define RTW_PUT_BE32(a, val) \
  560. do { \
  561. (a)[0] = (u8) ((((u32) (val)) >> 24) & 0xff); \
  562. (a)[1] = (u8) ((((u32) (val)) >> 16) & 0xff); \
  563. (a)[2] = (u8) ((((u32) (val)) >> 8) & 0xff); \
  564. (a)[3] = (u8) (((u32) (val)) & 0xff); \
  565. } while (0)
  566. #define RTW_GET_LE32(a) ((((u32) (a)[3]) << 24) | (((u32) (a)[2]) << 16) | \
  567. (((u32) (a)[1]) << 8) | ((u32) (a)[0]))
  568. #define RTW_PUT_LE32(a, val) \
  569. do { \
  570. (a)[3] = (u8) ((((u32) (val)) >> 24) & 0xff); \
  571. (a)[2] = (u8) ((((u32) (val)) >> 16) & 0xff); \
  572. (a)[1] = (u8) ((((u32) (val)) >> 8) & 0xff); \
  573. (a)[0] = (u8) (((u32) (val)) & 0xff); \
  574. } while (0)
  575. #define RTW_GET_BE64(a) ((((u64) (a)[0]) << 56) | (((u64) (a)[1]) << 48) | \
  576. (((u64) (a)[2]) << 40) | (((u64) (a)[3]) << 32) | \
  577. (((u64) (a)[4]) << 24) | (((u64) (a)[5]) << 16) | \
  578. (((u64) (a)[6]) << 8) | ((u64) (a)[7]))
  579. #define RTW_PUT_BE64(a, val) \
  580. do { \
  581. (a)[0] = (u8) (((u64) (val)) >> 56); \
  582. (a)[1] = (u8) (((u64) (val)) >> 48); \
  583. (a)[2] = (u8) (((u64) (val)) >> 40); \
  584. (a)[3] = (u8) (((u64) (val)) >> 32); \
  585. (a)[4] = (u8) (((u64) (val)) >> 24); \
  586. (a)[5] = (u8) (((u64) (val)) >> 16); \
  587. (a)[6] = (u8) (((u64) (val)) >> 8); \
  588. (a)[7] = (u8) (((u64) (val)) & 0xff); \
  589. } while (0)
  590. #define RTW_GET_LE64(a) ((((u64) (a)[7]) << 56) | (((u64) (a)[6]) << 48) | \
  591. (((u64) (a)[5]) << 40) | (((u64) (a)[4]) << 32) | \
  592. (((u64) (a)[3]) << 24) | (((u64) (a)[2]) << 16) | \
  593. (((u64) (a)[1]) << 8) | ((u64) (a)[0]))
  594. #define RTW_PUT_LE64(a, val) \
  595. do { \
  596. (a)[7] = (u8) ((((u64) (val)) >> 56) & 0xff); \
  597. (a)[6] = (u8) ((((u64) (val)) >> 48) & 0xff); \
  598. (a)[5] = (u8) ((((u64) (val)) >> 40) & 0xff); \
  599. (a)[4] = (u8) ((((u64) (val)) >> 32) & 0xff); \
  600. (a)[3] = (u8) ((((u64) (val)) >> 24) & 0xff); \
  601. (a)[2] = (u8) ((((u64) (val)) >> 16) & 0xff); \
  602. (a)[1] = (u8) ((((u64) (val)) >> 8) & 0xff); \
  603. (a)[0] = (u8) (((u64) (val)) & 0xff); \
  604. } while (0)
  605. void rtw_buf_free(u8 **buf, u32 *buf_len);
  606. void rtw_buf_update(u8 **buf, u32 *buf_len, u8 *src, u32 src_len);
  607. struct rtw_cbuf {
  608. u32 write;
  609. u32 read;
  610. u32 size;
  611. void *bufs[0];
  612. };
  613. bool rtw_cbuf_full(struct rtw_cbuf *cbuf);
  614. bool rtw_cbuf_empty(struct rtw_cbuf *cbuf);
  615. bool rtw_cbuf_push(struct rtw_cbuf *cbuf, void *buf);
  616. void *rtw_cbuf_pop(struct rtw_cbuf *cbuf);
  617. struct rtw_cbuf *rtw_cbuf_alloc(u32 size);
  618. void rtw_cbuf_free(struct rtw_cbuf *cbuf);
  619. struct map_seg_t {
  620. u16 sa;
  621. u16 len;
  622. u8 *c;
  623. };
  624. struct map_t {
  625. u16 len;
  626. u16 seg_num;
  627. u8 init_value;
  628. struct map_seg_t *segs;
  629. };
  630. #define MAPSEG_ARRAY_ENT(_sa, _len, _c, arg...) \
  631. { .sa = _sa, .len = _len, .c = (u8[_len]){ _c, ##arg}, }
  632. #define MAPSEG_PTR_ENT(_sa, _len, _p) \
  633. { .sa = _sa, .len = _len, .c = _p, }
  634. #define MAP_ENT(_len, _seg_num, _init_v, _seg, arg...) \
  635. { .len = _len, .seg_num = _seg_num, .init_value = _init_v, .segs = (struct map_seg_t[_seg_num]){ _seg, ##arg}, }
  636. int map_readN(const struct map_t *map, u16 offset, u16 len, u8 *buf);
  637. u8 map_read8(const struct map_t *map, u16 offset);
  638. struct blacklist_ent {
  639. _list list;
  640. u8 addr[ETH_ALEN];
  641. systime exp_time;
  642. };
  643. int rtw_blacklist_add(_queue *blist, const u8 *addr, u32 timeout_ms);
  644. int rtw_blacklist_del(_queue *blist, const u8 *addr);
  645. int rtw_blacklist_search(_queue *blist, const u8 *addr);
  646. void rtw_blacklist_flush(_queue *blist);
  647. void dump_blacklist(void *sel, _queue *blist, const char *title);
  648. /* String handler */
  649. BOOLEAN is_null(char c);
  650. BOOLEAN is_all_null(char *c, int len);
  651. BOOLEAN is_eol(char c);
  652. BOOLEAN is_space(char c);
  653. BOOLEAN IsHexDigit(char chTmp);
  654. BOOLEAN is_alpha(char chTmp);
  655. char alpha_to_upper(char c);
  656. int hex2num_i(char c);
  657. int hex2byte_i(const char *hex);
  658. int hexstr2bin(const char *hex, u8 *buf, size_t len);
  659. /*
  660. * Write formatted output to sized buffer
  661. */
  662. #ifdef PLATFORM_LINUX
  663. #define rtw_sprintf(buf, size, format, arg...) snprintf(buf, size, format, ##arg)
  664. #else /* !PLATFORM_LINUX */
  665. #error "NOT DEFINE \"rtw_sprintf\"!!"
  666. #endif /* !PLATFORM_LINUX */
  667. #endif