glib.h 12 KB

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  1. //
  2. // 内核全局通用库
  3. // Created by longjin on 2022/1/22.
  4. //
  5. #pragma once
  6. //引入对bool类型的支持
  7. #include <stdbool.h>
  8. #include <stdint.h>
  9. #include <common/stddef.h>
  10. #include <arch/arch.h>
  11. #include <common/compiler.h>
  12. #define sti() __asm__ __volatile__("sti\n\t" :: \
  13. : "memory") //开启外部中断
  14. #define cli() __asm__ __volatile__("cli\n\t" :: \
  15. : "memory") //关闭外部中断
  16. #define nop() __asm__ __volatile__("nop\n\t")
  17. #define hlt() __asm__ __volatile__("hlt\n\t")
  18. #define pause() asm volatile("pause\n\t"); // 处理器等待一段时间
  19. //内存屏障
  20. #define io_mfence() __asm__ __volatile__("mfence\n\t" :: \
  21. : "memory") // 在mfence指令前的读写操作必须在mfence指令后的读写操作前完成。
  22. #define io_sfence() __asm__ __volatile__("sfence\n\t" :: \
  23. : "memory") // 在sfence指令前的写操作必须在sfence指令后的写操作前完成
  24. #define io_lfence() __asm__ __volatile__("lfence\n\t" :: \
  25. : "memory") // 在lfence指令前的读操作必须在lfence指令后的读操作前完成。
  26. #define rdtsc() ({ \
  27. uint64_t tmp1 = 0, tmp2 = 0; \
  28. asm volatile("rdtsc" \
  29. : "=d"(tmp1), "=a"(tmp2)::"memory"); \
  30. (tmp1 << 32 | tmp2); \
  31. })
  32. /**
  33. * @brief 根据结构体变量内某个成员变量member的基地址,计算出该结构体变量的基地址
  34. * @param ptr 指向结构体变量内的成员变量member的指针
  35. * @param type 成员变量所在的结构体
  36. * @param member 成员变量名
  37. *
  38. * 方法:使用ptr减去结构体内的偏移,得到结构体变量的基地址
  39. */
  40. #define container_of(ptr, type, member) \
  41. ({ \
  42. typeof(((type *)0)->member) *p = (ptr); \
  43. (type *)((unsigned long)p - (unsigned long)&(((type *)0)->member)); \
  44. })
  45. // 定义类型的缩写
  46. typedef unsigned char uchar;
  47. typedef unsigned short ushort;
  48. typedef unsigned int uint;
  49. typedef unsigned long ul;
  50. typedef unsigned long long int ull;
  51. typedef long long int ll;
  52. #define ABS(x) ((x) > 0 ? (x) : -(x)) // 绝对值
  53. // 最大最小值
  54. #define max(x, y) ((x > y) ? (x) : (y))
  55. #define min(x, y) ((x < y) ? (x) : (y))
  56. // 遮罩高32bit
  57. #define MASK_HIGH_32bit(x) (x & (0x00000000ffffffffUL))
  58. // 四舍五入成整数
  59. ul round(double x)
  60. {
  61. return (ul)(x + 0.5);
  62. }
  63. /**
  64. * @brief 地址按照align进行对齐
  65. *
  66. * @param addr
  67. * @param _align
  68. * @return ul 对齐后的地址
  69. */
  70. static __always_inline ul ALIGN(const ul addr, const ul _align)
  71. {
  72. return (ul)((addr + _align - 1) & (~(_align - 1)));
  73. }
  74. //链表数据结构
  75. struct List
  76. {
  77. struct List *prev, *next;
  78. };
  79. //初始化循环链表
  80. static inline void list_init(struct List *list)
  81. {
  82. list->next = list;
  83. io_mfence();
  84. list->prev = list;
  85. }
  86. /**
  87. * @brief
  88. * @param entry 给定的节点
  89. * @param node 待插入的节点
  90. **/
  91. static inline void list_add(struct List *entry, struct List *node)
  92. {
  93. node->next = entry->next;
  94. barrier();
  95. node->prev = entry;
  96. barrier();
  97. node->next->prev = node;
  98. barrier();
  99. entry->next = node;
  100. }
  101. /**
  102. * @brief 将node添加到给定的list的结尾(也就是当前节点的前面)
  103. * @param entry 列表的入口
  104. * @param node 待添加的节点
  105. */
  106. static inline void list_append(struct List *entry, struct List *node)
  107. {
  108. struct List *tail = entry->prev;
  109. list_add(tail, node);
  110. }
  111. /**
  112. * @brief 从列表中删除节点
  113. * @param entry 待删除的节点
  114. */
  115. static inline void list_del(struct List *entry)
  116. {
  117. entry->next->prev = entry->prev;
  118. entry->prev->next = entry->next;
  119. }
  120. static inline bool list_empty(struct List *entry)
  121. {
  122. /**
  123. * @brief 判断循环链表是否为空
  124. * @param entry 入口
  125. */
  126. if (entry == entry->next && entry->prev == entry)
  127. return true;
  128. else
  129. return false;
  130. }
  131. /**
  132. * @brief 获取链表的上一个元素
  133. *
  134. * @param entry
  135. * @return 链表的上一个元素
  136. */
  137. static inline struct List *list_prev(struct List *entry)
  138. {
  139. if (entry->prev != NULL)
  140. return entry->prev;
  141. else
  142. return NULL;
  143. }
  144. /**
  145. * @brief 获取链表的下一个元素
  146. *
  147. * @param entry
  148. * @return 链表的下一个元素
  149. */
  150. static inline struct List *list_next(struct List *entry)
  151. {
  152. if (entry->next != NULL)
  153. return entry->next;
  154. else
  155. return NULL;
  156. }
  157. void *memset(void *dst, unsigned char C, ul size)
  158. {
  159. int d0, d1;
  160. unsigned long tmp = C * 0x0101010101010101UL;
  161. __asm__ __volatile__("cld \n\t"
  162. "rep \n\t"
  163. "stosq \n\t"
  164. "testb $4, %b3 \n\t"
  165. "je 1f \n\t"
  166. "stosl \n\t"
  167. "1:\ttestb $2, %b3 \n\t"
  168. "je 2f\n\t"
  169. "stosw \n\t"
  170. "2:\ttestb $1, %b3 \n\t"
  171. "je 3f \n\t"
  172. "stosb \n\t"
  173. "3: \n\t"
  174. : "=&c"(d0), "=&D"(d1)
  175. : "a"(tmp), "q"(size), "0"(size / 8), "1"(dst)
  176. : "memory");
  177. return dst;
  178. }
  179. void *memset_c(void *dst, uint8_t c, size_t count)
  180. {
  181. uint8_t *xs = (uint8_t *)dst;
  182. while (count--)
  183. *xs++ = c;
  184. return dst;
  185. }
  186. /**
  187. * @brief 内存拷贝函数
  188. *
  189. * @param dst 目标数组
  190. * @param src 源数组
  191. * @param Num 字节数
  192. * @return void*
  193. */
  194. static void *memcpy(void *dst, const void *src, long Num)
  195. {
  196. int d0 = 0, d1 = 0, d2 = 0;
  197. __asm__ __volatile__("cld \n\t"
  198. "rep \n\t"
  199. "movsq \n\t"
  200. "testb $4,%b4 \n\t"
  201. "je 1f \n\t"
  202. "movsl \n\t"
  203. "1:\ttestb $2,%b4 \n\t"
  204. "je 2f \n\t"
  205. "movsw \n\t"
  206. "2:\ttestb $1,%b4 \n\t"
  207. "je 3f \n\t"
  208. "movsb \n\t"
  209. "3: \n\t"
  210. : "=&c"(d0), "=&D"(d1), "=&S"(d2)
  211. : "0"(Num / 8), "q"(Num), "1"(dst), "2"(src)
  212. : "memory");
  213. return dst;
  214. }
  215. // 从io口读入8个bit
  216. unsigned char io_in8(unsigned short port)
  217. {
  218. unsigned char ret = 0;
  219. __asm__ __volatile__("inb %%dx, %0 \n\t"
  220. "mfence \n\t"
  221. : "=a"(ret)
  222. : "d"(port)
  223. : "memory");
  224. return ret;
  225. }
  226. // 从io口读入32个bit
  227. unsigned int io_in32(unsigned short port)
  228. {
  229. unsigned int ret = 0;
  230. __asm__ __volatile__("inl %%dx, %0 \n\t"
  231. "mfence \n\t"
  232. : "=a"(ret)
  233. : "d"(port)
  234. : "memory");
  235. return ret;
  236. }
  237. // 输出8个bit到输出端口
  238. void io_out8(unsigned short port, unsigned char value)
  239. {
  240. __asm__ __volatile__("outb %0, %%dx \n\t"
  241. "mfence \n\t"
  242. :
  243. : "a"(value), "d"(port)
  244. : "memory");
  245. }
  246. // 输出32个bit到输出端口
  247. void io_out32(unsigned short port, unsigned int value)
  248. {
  249. __asm__ __volatile__("outl %0, %%dx \n\t"
  250. "mfence \n\t"
  251. :
  252. : "a"(value), "d"(port)
  253. : "memory");
  254. }
  255. /**
  256. * @brief 从端口读入n个word到buffer
  257. *
  258. */
  259. #define io_insw(port, buffer, nr) \
  260. __asm__ __volatile__("cld;rep;insw;mfence;" ::"d"(port), "D"(buffer), "c"(nr) \
  261. : "memory")
  262. /**
  263. * @brief 从输出buffer中的n个word到端口
  264. *
  265. */
  266. #define io_outsw(port, buffer, nr) \
  267. __asm__ __volatile__("cld;rep;outsw;mfence;" ::"d"(port), "S"(buffer), "c"(nr) \
  268. : "memory")
  269. /**
  270. * @brief 读取rsp寄存器的值(存储了页目录的基地址)
  271. *
  272. * @return unsigned* rsp的值的指针
  273. */
  274. unsigned long *get_rsp()
  275. {
  276. ul *tmp;
  277. __asm__ __volatile__(
  278. "movq %%rsp, %0\n\t"
  279. : "=r"(tmp)::"memory");
  280. return tmp;
  281. }
  282. /**
  283. * @brief 读取rbp寄存器的值(存储了页目录的基地址)
  284. *
  285. * @return unsigned* rbp的值的指针
  286. */
  287. unsigned long *get_rbp()
  288. {
  289. ul *tmp;
  290. __asm__ __volatile__(
  291. "movq %%rbp, %0\n\t"
  292. : "=r"(tmp)::"memory");
  293. return tmp;
  294. }
  295. /**
  296. * @brief 读取ds寄存器的值(存储了页目录的基地址)
  297. *
  298. * @return unsigned* ds的值的指针
  299. */
  300. unsigned long *get_ds()
  301. {
  302. ul *tmp;
  303. __asm__ __volatile__(
  304. "movq %%ds, %0\n\t"
  305. : "=r"(tmp)::"memory");
  306. return tmp;
  307. }
  308. /**
  309. * @brief 读取rax寄存器的值(存储了页目录的基地址)
  310. *
  311. * @return unsigned* rax的值的指针
  312. */
  313. unsigned long *get_rax()
  314. {
  315. ul *tmp;
  316. __asm__ __volatile__(
  317. "movq %%rax, %0\n\t"
  318. : "=r"(tmp)::"memory");
  319. return tmp;
  320. }
  321. /**
  322. * @brief 读取rbx寄存器的值(存储了页目录的基地址)
  323. *
  324. * @return unsigned* rbx的值的指针
  325. */
  326. unsigned long *get_rbx()
  327. {
  328. ul *tmp;
  329. __asm__ __volatile__(
  330. "movq %%rbx, %0\n\t"
  331. : "=r"(tmp)::"memory");
  332. return tmp;
  333. }
  334. // ========= MSR寄存器组操作 =============
  335. /**
  336. * @brief 向msr寄存器组的address处的寄存器写入值value
  337. *
  338. * @param address 地址
  339. * @param value 要写入的值
  340. */
  341. void wrmsr(ul address, ul value)
  342. {
  343. __asm__ __volatile__("wrmsr \n\t" ::"d"(value >> 32), "a"(value & 0xffffffff), "c"(address)
  344. : "memory");
  345. }
  346. /**
  347. * @brief 从msr寄存器组的address地址处读取值
  348. * rdmsr返回高32bits在edx,低32bits在eax
  349. * @param address 地址
  350. * @return ul address处的寄存器的值
  351. */
  352. ul rdmsr(ul address)
  353. {
  354. unsigned int tmp0, tmp1;
  355. __asm__ __volatile__("rdmsr \n\t"
  356. : "=d"(tmp0), "=a"(tmp1)
  357. : "c"(address)
  358. : "memory");
  359. return ((ul)tmp0 << 32) | tmp1;
  360. }
  361. uint64_t get_rflags()
  362. {
  363. unsigned long tmp = 0;
  364. __asm__ __volatile__("pushfq \n\t"
  365. "movq (%%rsp), %0 \n\t"
  366. "popfq \n\t"
  367. : "=r"(tmp)::"memory");
  368. return tmp;
  369. }
  370. /**
  371. * @brief 验证地址空间是否为用户地址空间
  372. *
  373. * @param addr_start 地址起始值
  374. * @param length 地址长度
  375. * @return true
  376. * @return false
  377. */
  378. bool verify_area(uint64_t addr_start, uint64_t length)
  379. {
  380. if ((addr_start + length) <= 0x00007fffffffffffUL) // 用户程序可用的的地址空间应<= 0x00007fffffffffffUL
  381. return true;
  382. else
  383. return false;
  384. }
  385. /**
  386. * @brief 从用户空间搬运数据到内核空间
  387. *
  388. * @param dst 目的地址
  389. * @param src 源地址
  390. * @param size 搬运的大小
  391. * @return uint64_t
  392. */
  393. static inline uint64_t copy_from_user(void *dst, void *src, uint64_t size)
  394. {
  395. uint64_t tmp0, tmp1;
  396. if (!verify_area((uint64_t)src, size))
  397. return 0;
  398. /**
  399. * @brief 先每次搬运8 bytes,剩余就直接一个个byte搬运
  400. *
  401. */
  402. asm volatile("rep \n\t"
  403. "movsq \n\t"
  404. "movq %3, %0 \n\t"
  405. "rep \n\t"
  406. "movsb \n\t"
  407. : "=&c"(size), "=&D"(tmp0), "=&S"(tmp1)
  408. : "r"(size & 7), "0"(size >> 3), "1"(dst), "2"(src)
  409. : "memory");
  410. return size;
  411. }
  412. /**
  413. * @brief 从内核空间搬运数据到用户空间
  414. *
  415. * @param dst 目的地址
  416. * @param src 源地址
  417. * @param size 搬运的大小
  418. * @return uint64_t
  419. */
  420. static inline uint64_t copy_to_user(void *dst, void *src, uint64_t size)
  421. {
  422. uint64_t tmp0, tmp1;
  423. if (verify_area((uint64_t)src, size))
  424. return 0;
  425. /**
  426. * @brief 先每次搬运8 bytes,剩余就直接一个个byte搬运
  427. *
  428. */
  429. asm volatile("rep \n\t"
  430. "movsq \n\t"
  431. "movq %3, %0 \n\t"
  432. "rep \n\t"
  433. "movsb \n\t"
  434. : "=&c"(size), "=&D"(tmp0), "=&S"(tmp1)
  435. : "r"(size & 7), "0"(size >> 3), "1"(dst), "2"(src)
  436. : "memory");
  437. return size;
  438. }