syscall.c 15 KB

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  1. #include "syscall.h"
  2. #include "../process/process.h"
  3. #include <exception/gate.h>
  4. #include <exception/irq.h>
  5. #include <driver/disk/ahci/ahci.h>
  6. #include <mm/slab.h>
  7. #include <common/errno.h>
  8. #include <common/fcntl.h>
  9. #include <filesystem/fat32/fat32.h>
  10. #include <filesystem/VFS/VFS.h>
  11. #include <driver/keyboard/ps2_keyboard.h>
  12. // 导出系统调用入口函数,定义在entry.S中
  13. extern void system_call(void);
  14. extern void syscall_int(void);
  15. /**
  16. * @brief 导出系统调用处理函数的符号
  17. *
  18. */
  19. #define SYSCALL_COMMON(syscall_num, symbol) extern unsigned long symbol(struct pt_regs *regs);
  20. SYSCALL_COMMON(0, system_call_not_exists); // 导出system_call_not_exists函数
  21. #undef SYSCALL_COMMON // 取消前述宏定义
  22. /**
  23. * @brief 重新定义为:把系统调用函数加入系统调用表
  24. * @param syscall_num 系统调用号
  25. * @param symbol 系统调用处理函数
  26. */
  27. #define SYSCALL_COMMON(syscall_num, symbol) [syscall_num] = symbol,
  28. /**
  29. * @brief sysenter的系统调用函数,从entry.S中跳转到这里
  30. *
  31. * @param regs 3特权级下的寄存器值,rax存储系统调用号
  32. * @return ul 对应的系统调用函数的地址
  33. */
  34. ul system_call_function(struct pt_regs *regs)
  35. {
  36. return system_call_table[regs->rax](regs);
  37. }
  38. /**
  39. * @brief 初始化系统调用模块
  40. *
  41. */
  42. void syscall_init()
  43. {
  44. kinfo("Initializing syscall...");
  45. set_system_trap_gate(0x80, 0, syscall_int); // 系统调用门
  46. }
  47. /**
  48. * @brief 通过中断进入系统调用
  49. *
  50. * @param syscall_id
  51. * @param arg0
  52. * @param arg1
  53. * @param arg2
  54. * @param arg3
  55. * @param arg4
  56. * @param arg5
  57. * @param arg6
  58. * @param arg7
  59. * @return long
  60. */
  61. long enter_syscall_int(ul syscall_id, ul arg0, ul arg1, ul arg2, ul arg3, ul arg4, ul arg5, ul arg6, ul arg7)
  62. {
  63. long err_code;
  64. __asm__ __volatile__(
  65. "movq %2, %%r8 \n\t"
  66. "movq %3, %%r9 \n\t"
  67. "movq %4, %%r10 \n\t"
  68. "movq %5, %%r11 \n\t"
  69. "movq %6, %%r12 \n\t"
  70. "movq %7, %%r13 \n\t"
  71. "movq %8, %%r14 \n\t"
  72. "movq %9, %%r15 \n\t"
  73. "int $0x80 \n\t"
  74. : "=a"(err_code)
  75. : "a"(syscall_id), "m"(arg0), "m"(arg1), "m"(arg2), "m"(arg3), "m"(arg4), "m"(arg5), "m"(arg6), "m"(arg7)
  76. : "memory", "r8", "r9", "r10", "r11", "r12", "r13", "r14", "r15", "rcx", "rdx");
  77. return err_code;
  78. }
  79. /**
  80. * @brief 打印字符串的系统调用
  81. *
  82. * 当arg1和arg2均为0时,打印黑底白字,否则按照指定的前景色和背景色来打印
  83. *
  84. * @param regs 寄存器
  85. * @param arg0 要打印的字符串
  86. * @param arg1 前景色
  87. * @param arg2 背景色
  88. * @return ul 返回值
  89. */
  90. ul sys_put_string(struct pt_regs *regs)
  91. {
  92. printk_color(regs->r9, regs->r10, (char *)regs->r8);
  93. // printk_color(BLACK, WHITE, (char *)regs->r8);
  94. return 0;
  95. }
  96. uint64_t sys_open(struct pt_regs *regs)
  97. {
  98. char *filename = (char *)(regs->r8);
  99. int flags = (int)(regs->r9);
  100. kdebug("filename=%s", filename);
  101. long path_len = strnlen_user(filename, PAGE_4K_SIZE) + 1;
  102. if (path_len <= 0) // 地址空间错误
  103. {
  104. return -EFAULT;
  105. }
  106. else if (path_len >= PAGE_4K_SIZE) // 名称过长
  107. {
  108. return -ENAMETOOLONG;
  109. }
  110. // 为待拷贝文件路径字符串分配内存空间
  111. char *path = (char *)kmalloc(path_len, 0);
  112. if (path == NULL)
  113. return -ENOMEM;
  114. memset(path, 0, path_len);
  115. strncpy_from_user(path, filename, path_len);
  116. // 寻找文件
  117. struct vfs_dir_entry_t *dentry = vfs_path_walk(path, 0);
  118. if (dentry != NULL)
  119. printk_color(ORANGE, BLACK, "Found %s\nDIR_FstClus:%#018lx\tDIR_FileSize:%#018lx\n", path, ((struct fat32_inode_info_t *)(dentry->dir_inode->private_inode_info))->first_clus, dentry->dir_inode->file_size);
  120. else
  121. printk_color(ORANGE, BLACK, "Can`t find file\n");
  122. kfree(path);
  123. if (dentry == NULL)
  124. return -ENOENT;
  125. // 要求打开文件夹而目标不是文件夹
  126. if ((flags & O_DIRECTORY) && (dentry->dir_inode->attribute != VFS_ATTR_DIR))
  127. return -ENOTDIR;
  128. // 要找的目标是文件夹
  129. if ((flags & O_DIRECTORY) && dentry->dir_inode->attribute == VFS_ATTR_DIR)
  130. return -EISDIR;
  131. // todo: 引入devfs后删除这段代码
  132. // 暂时遇到设备文件的话,就将其first clus设置为特定值
  133. if (path_len >= 5 && filename[0] == '/' && filename[1] == 'd' && filename[2] == 'e' && filename[3] == 'v' && filename[4] == '/')
  134. {
  135. // 对于fat32文件系统上面的设备文件,设置其起始扇区
  136. ((struct fat32_inode_info_t *)(dentry->dir_inode->private_inode_info))->first_clus |= 0xf0000000;
  137. dentry->dir_inode->sb->sb_ops->write_inode(dentry->dir_inode);
  138. dentry->dir_inode->attribute |= VFS_ATTR_DEVICE;
  139. }
  140. // 创建文件描述符
  141. struct vfs_file_t *file_ptr = (struct vfs_file_t *)kmalloc(sizeof(struct vfs_file_t), 0);
  142. memset(file_ptr, 0, sizeof(struct vfs_file_t));
  143. int errcode = -1;
  144. file_ptr->dEntry = dentry;
  145. file_ptr->mode = flags;
  146. // todo: 接入devfs
  147. // 特判一下是否为键盘文件
  148. if (dentry->dir_inode->attribute & VFS_ATTR_DEVICE)
  149. {
  150. file_ptr->file_ops = &ps2_keyboard_fops; // 如果是设备文件,暂时认为它是键盘文件
  151. }
  152. else
  153. file_ptr->file_ops = dentry->dir_inode->file_ops;
  154. // 如果文件系统实现了打开文件的函数
  155. if (file_ptr->file_ops && file_ptr->file_ops->open)
  156. errcode = file_ptr->file_ops->open(dentry->dir_inode, file_ptr);
  157. if (errcode != VFS_SUCCESS)
  158. {
  159. kfree(file_ptr);
  160. return -EFAULT;
  161. }
  162. if (file_ptr->mode & O_TRUNC) // 清空文件
  163. file_ptr->dEntry->dir_inode->file_size = 0;
  164. if (file_ptr->mode & O_APPEND)
  165. file_ptr->position = file_ptr->dEntry->dir_inode->file_size;
  166. else
  167. file_ptr->position = 0;
  168. struct vfs_file_t **f = current_pcb->fds;
  169. int fd_num = -1;
  170. // 在指针数组中寻找空位
  171. // todo: 当pcb中的指针数组改为动态指针数组之后,需要更改这里(目前还是静态指针数组)
  172. for (int i = 0; i < PROC_MAX_FD_NUM; ++i)
  173. {
  174. if (f[i] == NULL) // 找到指针数组中的空位
  175. {
  176. fd_num = i;
  177. break;
  178. }
  179. }
  180. // 指针数组没有空位了
  181. if (fd_num == -1)
  182. {
  183. kfree(file_ptr);
  184. return -EMFILE;
  185. }
  186. // 保存文件描述符
  187. f[fd_num] = file_ptr;
  188. return fd_num;
  189. }
  190. /**
  191. * @brief 关闭文件系统调用
  192. *
  193. * @param fd_num 文件描述符号
  194. *
  195. * @param regs
  196. * @return uint64_t
  197. */
  198. uint64_t sys_close(struct pt_regs *regs)
  199. {
  200. int fd_num = (int)regs->r8;
  201. kdebug("sys close: fd=%d", fd_num);
  202. // 校验文件描述符范围
  203. if (fd_num < 0 || fd_num > PROC_MAX_FD_NUM)
  204. return -EBADF;
  205. // 文件描述符不存在
  206. if (current_pcb->fds[fd_num] == NULL)
  207. return -EBADF;
  208. struct vfs_file_t *file_ptr = current_pcb->fds[fd_num];
  209. uint64_t ret;
  210. // If there is a valid close function
  211. if (file_ptr->file_ops && file_ptr->file_ops->close)
  212. ret = file_ptr->file_ops->close(file_ptr->dEntry->dir_inode, file_ptr);
  213. kfree(file_ptr);
  214. current_pcb->fds[fd_num] = NULL;
  215. return 0;
  216. }
  217. /**
  218. * @brief 从文件中读取数据
  219. *
  220. * @param fd_num regs->r8 文件描述符号
  221. * @param buf regs->r9 输出缓冲区
  222. * @param count regs->r10 要读取的字节数
  223. *
  224. * @return uint64_t
  225. */
  226. uint64_t sys_read(struct pt_regs *regs)
  227. {
  228. int fd_num = (int)regs->r8;
  229. void *buf = (void *)regs->r9;
  230. int64_t count = (int64_t)regs->r10;
  231. // kdebug("sys read: fd=%d", fd_num);
  232. // 校验文件描述符范围
  233. if (fd_num < 0 || fd_num > PROC_MAX_FD_NUM)
  234. return -EBADF;
  235. // 文件描述符不存在
  236. if (current_pcb->fds[fd_num] == NULL)
  237. return -EBADF;
  238. if (count < 0)
  239. return -EINVAL;
  240. struct vfs_file_t *file_ptr = current_pcb->fds[fd_num];
  241. uint64_t ret;
  242. if (file_ptr->file_ops && file_ptr->file_ops->read)
  243. ret = file_ptr->file_ops->read(file_ptr, (char *)buf, count, &(file_ptr->position));
  244. return ret;
  245. }
  246. /**
  247. * @brief 向文件写入数据
  248. *
  249. * @param fd_num regs->r8 文件描述符号
  250. * @param buf regs->r9 输入缓冲区
  251. * @param count regs->r10 要写入的字节数
  252. *
  253. * @return uint64_t
  254. */
  255. uint64_t sys_write(struct pt_regs *regs)
  256. {
  257. int fd_num = (int)regs->r8;
  258. void *buf = (void *)regs->r9;
  259. int64_t count = (int64_t)regs->r10;
  260. kdebug("sys write: fd=%d", fd_num);
  261. // 校验文件描述符范围
  262. if (fd_num < 0 || fd_num > PROC_MAX_FD_NUM)
  263. return -EBADF;
  264. // 文件描述符不存在
  265. if (current_pcb->fds[fd_num] == NULL)
  266. return -EBADF;
  267. if (count < 0)
  268. return -EINVAL;
  269. struct vfs_file_t *file_ptr = current_pcb->fds[fd_num];
  270. uint64_t ret;
  271. if (file_ptr->file_ops && file_ptr->file_ops->write)
  272. ret = file_ptr->file_ops->write(file_ptr, (char *)buf, count, &(file_ptr->position));
  273. return ret;
  274. }
  275. /**
  276. * @brief 调整文件的访问位置
  277. *
  278. * @param fd_num 文件描述符号
  279. * @param offset 偏移量
  280. * @param whence 调整模式
  281. * @return uint64_t 调整结束后的文件访问位置
  282. */
  283. uint64_t sys_lseek(struct pt_regs *regs)
  284. {
  285. int fd_num = (int)regs->r8;
  286. long offset = (long)regs->r9;
  287. int whence = (int)regs->r10;
  288. kdebug("sys_lseek: fd=%d", fd_num);
  289. uint64_t retval = 0;
  290. // 校验文件描述符范围
  291. if (fd_num < 0 || fd_num > PROC_MAX_FD_NUM)
  292. return -EBADF;
  293. // 文件描述符不存在
  294. if (current_pcb->fds[fd_num] == NULL)
  295. return -EBADF;
  296. struct vfs_file_t *file_ptr = current_pcb->fds[fd_num];
  297. if (file_ptr->file_ops && file_ptr->file_ops->lseek)
  298. retval = file_ptr->file_ops->lseek(file_ptr, offset, whence);
  299. return retval;
  300. }
  301. uint64_t sys_fork(struct pt_regs *regs)
  302. {
  303. kdebug("sys_fork");
  304. return do_fork(regs, 0, regs->rsp, 0);
  305. }
  306. uint64_t sys_vfork(struct pt_regs *regs)
  307. {
  308. kdebug("sys vfork");
  309. return do_fork(regs, CLONE_VM | CLONE_FS | CLONE_SIGNAL, regs->rsp, 0);
  310. }
  311. /**
  312. * @brief 将堆内存调整为arg0
  313. *
  314. * @param arg0 新的堆区域的结束地址
  315. * arg0=-1 ===> 返回堆区域的起始地址
  316. * arg0=-2 ===> 返回堆区域的结束地址
  317. * @return uint64_t 错误码
  318. *
  319. */
  320. uint64_t sys_brk(struct pt_regs *regs)
  321. {
  322. uint64_t new_brk = PAGE_2M_ALIGN(regs->r8);
  323. // kdebug("sys_brk input= %#010lx , new_brk= %#010lx bytes current_pcb->mm->brk_start=%#018lx current->end_brk=%#018lx", regs->r8, new_brk, current_pcb->mm->brk_start, current_pcb->mm->brk_end);
  324. if ((int64_t)regs->r8 == -1)
  325. {
  326. // kdebug("get brk_start=%#018lx", current_pcb->mm->brk_start);
  327. return current_pcb->mm->brk_start;
  328. }
  329. if ((int64_t)regs->r8 == -2)
  330. {
  331. // kdebug("get brk_end=%#018lx", current_pcb->mm->brk_end);
  332. return current_pcb->mm->brk_end;
  333. }
  334. if (new_brk > current_pcb->addr_limit) // 堆地址空间超过限制
  335. return -ENOMEM;
  336. int64_t offset;
  337. if (new_brk >= current_pcb->mm->brk_end)
  338. offset = (int64_t)(new_brk - current_pcb->mm->brk_end);
  339. else
  340. offset = -(int64_t)(current_pcb->mm->brk_end - new_brk);
  341. /*
  342. if (offset < 0)
  343. {
  344. kdebug("decrease brk, offset = %#010lx", (uint64_t)(-offset));
  345. }
  346. */
  347. new_brk = mm_do_brk(current_pcb->mm->brk_end, offset); // 扩展堆内存空间
  348. current_pcb->mm->brk_end = new_brk;
  349. return 0;
  350. }
  351. /**
  352. * @brief 将堆内存空间加上offset(注意,该系统调用只应在普通进程中调用,而不能是内核线程)
  353. *
  354. * @param arg0 offset偏移量
  355. * @return uint64_t the previous program break
  356. */
  357. uint64_t sys_sbrk(struct pt_regs *regs)
  358. {
  359. uint64_t retval = current_pcb->mm->brk_end;
  360. if ((int64_t)regs->r8 > 0)
  361. {
  362. uint64_t new_brk = PAGE_2M_ALIGN(retval + regs->r8);
  363. if (new_brk > current_pcb->addr_limit) // 堆地址空间超过限制
  364. {
  365. kdebug("exceed mem limit, new_brk = %#018lx", new_brk);
  366. return -ENOMEM;
  367. }
  368. }
  369. else
  370. {
  371. if ((__int128_t)current_pcb->mm->brk_end + (__int128_t)regs->r8 < current_pcb->mm->brk_start)
  372. return retval;
  373. }
  374. uint64_t new_brk = mm_do_brk(current_pcb->mm->brk_end, (int64_t)regs->r8); // 调整堆内存空间
  375. current_pcb->mm->brk_end = new_brk;
  376. return retval;
  377. }
  378. /**
  379. * @brief 重启计算机
  380. *
  381. * @return
  382. */
  383. uint64_t sys_reboot(struct pt_regs *regs)
  384. {
  385. // 重启计算机
  386. io_out8(0x64, 0xfe);
  387. return 0;
  388. }
  389. /**
  390. * @brief 切换工作目录
  391. *
  392. * @param dest_path 目标路径
  393. * @return
  394. +--------------+------------------------+
  395. | 返回码 | 描述 |
  396. +--------------+------------------------+
  397. | 0 | 成功 |
  398. | EACCESS | 权限不足 |
  399. | ELOOP | 解析path时遇到路径循环 |
  400. | ENAMETOOLONG | 路径名过长 |
  401. | ENOENT | 目标文件或目录不存在 |
  402. | ENODIR | 检索期间发现非目录项 |
  403. | ENOMEM | 系统内存不足 |
  404. | EFAULT | 错误的地址 |
  405. | ENAMETOOLONG | 路径过长 |
  406. +--------------+------------------------+
  407. */
  408. uint64_t sys_chdir(struct pt_regs *regs)
  409. {
  410. char *dest_path = (char *)regs->r8;
  411. // kdebug("dest_path=%s", dest_path);
  412. // 检查目标路径是否为NULL
  413. if (dest_path == NULL)
  414. return -EFAULT;
  415. // 计算输入的路径长度
  416. int dest_path_len = strnlen_user(dest_path, PAGE_4K_SIZE);
  417. // 长度小于等于0
  418. if (dest_path_len <= 0)
  419. return -EFAULT;
  420. else if (dest_path_len >= PAGE_4K_SIZE)
  421. return -ENAMETOOLONG;
  422. // 为路径字符串申请空间
  423. char *path = kmalloc(dest_path_len + 1, 0);
  424. // 系统内存不足
  425. if (path == NULL)
  426. return -ENOMEM;
  427. memset(path, 0, dest_path_len + 1);
  428. // 将字符串从用户空间拷贝进来, +1是为了拷贝结尾的\0
  429. strncpy_from_user(path, dest_path, dest_path_len + 1);
  430. struct vfs_dir_entry_t *dentry = vfs_path_walk(path, 0);
  431. kfree(path);
  432. if (dentry == NULL)
  433. return -ENOENT;
  434. // 目标不是目录
  435. if (dentry->dir_inode->attribute != VFS_ATTR_DIR)
  436. return -ENOTDIR;
  437. return 0;
  438. }
  439. /**
  440. * @brief 获取目录中的数据
  441. *
  442. * @param fd 文件描述符号
  443. * @return uint64_t
  444. */
  445. uint64_t sys_getdents(struct pt_regs *regs)
  446. {
  447. int fd = (int)regs->r8;
  448. void *dirent = (void *)regs->r9;
  449. long count = (long)regs->r10;
  450. if (fd < 0 || fd > PROC_MAX_FD_NUM)
  451. return -EBADF;
  452. if (count < 0)
  453. return -EINVAL;
  454. struct vfs_file_t *filp = current_pcb->fds[fd];
  455. if (filp == NULL)
  456. return -EBADF;
  457. uint64_t retval = 0;
  458. if (filp->file_ops && filp->file_ops->readdir)
  459. retval = filp->file_ops->readdir(filp, dirent, &vfs_fill_dentry);
  460. return retval;
  461. }
  462. ul sys_ahci_end_req(struct pt_regs *regs)
  463. {
  464. ahci_end_request();
  465. return 0;
  466. }
  467. // 系统调用的内核入口程序
  468. void do_syscall_int(struct pt_regs *regs, unsigned long error_code)
  469. {
  470. ul ret = system_call_table[regs->rax](regs);
  471. regs->rax = ret; // 返回码
  472. }
  473. system_call_t system_call_table[MAX_SYSTEM_CALL_NUM] =
  474. {
  475. [0] = system_call_not_exists,
  476. [1] = sys_put_string,
  477. [2] = sys_open,
  478. [3] = sys_close,
  479. [4] = sys_read,
  480. [5] = sys_write,
  481. [6] = sys_lseek,
  482. [7] = sys_fork,
  483. [8] = sys_vfork,
  484. [9] = sys_brk,
  485. [10] = sys_sbrk,
  486. [11] = sys_reboot,
  487. [12] = sys_chdir,
  488. [13] = sys_getdents,
  489. [14 ... 254] = system_call_not_exists,
  490. [255] = sys_ahci_end_req};