hv_fcopy.c 9.9 KB

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  1. /*
  2. * An implementation of file copy service.
  3. *
  4. * Copyright (C) 2014, Microsoft, Inc.
  5. *
  6. * Author : K. Y. Srinivasan <ksrinivasan@novell.com>
  7. *
  8. * This program is free software; you can redistribute it and/or modify it
  9. * under the terms of the GNU General Public License version 2 as published
  10. * by the Free Software Foundation.
  11. *
  12. * This program is distributed in the hope that it will be useful, but
  13. * WITHOUT ANY WARRANTY; without even the implied warranty of
  14. * MERCHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE, GOOD TITLE or
  15. * NON INFRINGEMENT. See the GNU General Public License for more
  16. * details.
  17. *
  18. */
  19. #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
  20. #include <linux/nls.h>
  21. #include <linux/workqueue.h>
  22. #include <linux/hyperv.h>
  23. #include <linux/sched.h>
  24. #include "hyperv_vmbus.h"
  25. #include "hv_utils_transport.h"
  26. #define WIN8_SRV_MAJOR 1
  27. #define WIN8_SRV_MINOR 1
  28. #define WIN8_SRV_VERSION (WIN8_SRV_MAJOR << 16 | WIN8_SRV_MINOR)
  29. /*
  30. * Global state maintained for transaction that is being processed.
  31. * For a class of integration services, including the "file copy service",
  32. * the specified protocol is a "request/response" protocol which means that
  33. * there can only be single outstanding transaction from the host at any
  34. * given point in time. We use this to simplify memory management in this
  35. * driver - we cache and process only one message at a time.
  36. *
  37. * While the request/response protocol is guaranteed by the host, we further
  38. * ensure this by serializing packet processing in this driver - we do not
  39. * read additional packets from the VMBUs until the current packet is fully
  40. * handled.
  41. */
  42. static struct {
  43. int state; /* hvutil_device_state */
  44. int recv_len; /* number of bytes received. */
  45. struct hv_fcopy_hdr *fcopy_msg; /* current message */
  46. struct vmbus_channel *recv_channel; /* chn we got the request */
  47. u64 recv_req_id; /* request ID. */
  48. } fcopy_transaction;
  49. static void fcopy_respond_to_host(int error);
  50. static void fcopy_send_data(struct work_struct *dummy);
  51. static void fcopy_timeout_func(struct work_struct *dummy);
  52. static DECLARE_DELAYED_WORK(fcopy_timeout_work, fcopy_timeout_func);
  53. static DECLARE_WORK(fcopy_send_work, fcopy_send_data);
  54. static const char fcopy_devname[] = "vmbus/hv_fcopy";
  55. static u8 *recv_buffer;
  56. static struct hvutil_transport *hvt;
  57. static struct completion release_event;
  58. /*
  59. * This state maintains the version number registered by the daemon.
  60. */
  61. static int dm_reg_value;
  62. static void fcopy_poll_wrapper(void *channel)
  63. {
  64. /* Transaction is finished, reset the state here to avoid races. */
  65. fcopy_transaction.state = HVUTIL_READY;
  66. hv_fcopy_onchannelcallback(channel);
  67. }
  68. static void fcopy_timeout_func(struct work_struct *dummy)
  69. {
  70. /*
  71. * If the timer fires, the user-mode component has not responded;
  72. * process the pending transaction.
  73. */
  74. fcopy_respond_to_host(HV_E_FAIL);
  75. hv_poll_channel(fcopy_transaction.recv_channel, fcopy_poll_wrapper);
  76. }
  77. static void fcopy_register_done(void)
  78. {
  79. pr_debug("FCP: userspace daemon registered\n");
  80. hv_poll_channel(fcopy_transaction.recv_channel, fcopy_poll_wrapper);
  81. }
  82. static int fcopy_handle_handshake(u32 version)
  83. {
  84. u32 our_ver = FCOPY_CURRENT_VERSION;
  85. switch (version) {
  86. case FCOPY_VERSION_0:
  87. /* Daemon doesn't expect us to reply */
  88. dm_reg_value = version;
  89. break;
  90. case FCOPY_VERSION_1:
  91. /* Daemon expects us to reply with our own version */
  92. if (hvutil_transport_send(hvt, &our_ver, sizeof(our_ver),
  93. fcopy_register_done))
  94. return -EFAULT;
  95. dm_reg_value = version;
  96. break;
  97. default:
  98. /*
  99. * For now we will fail the registration.
  100. * If and when we have multiple versions to
  101. * deal with, we will be backward compatible.
  102. * We will add this code when needed.
  103. */
  104. return -EINVAL;
  105. }
  106. pr_debug("FCP: userspace daemon ver. %d connected\n", version);
  107. return 0;
  108. }
  109. static void fcopy_send_data(struct work_struct *dummy)
  110. {
  111. struct hv_start_fcopy *smsg_out = NULL;
  112. int operation = fcopy_transaction.fcopy_msg->operation;
  113. struct hv_start_fcopy *smsg_in;
  114. void *out_src;
  115. int rc, out_len;
  116. /*
  117. * The strings sent from the host are encoded in
  118. * in utf16; convert it to utf8 strings.
  119. * The host assures us that the utf16 strings will not exceed
  120. * the max lengths specified. We will however, reserve room
  121. * for the string terminating character - in the utf16s_utf8s()
  122. * function we limit the size of the buffer where the converted
  123. * string is placed to W_MAX_PATH -1 to guarantee
  124. * that the strings can be properly terminated!
  125. */
  126. switch (operation) {
  127. case START_FILE_COPY:
  128. out_len = sizeof(struct hv_start_fcopy);
  129. smsg_out = kzalloc(sizeof(*smsg_out), GFP_KERNEL);
  130. if (!smsg_out)
  131. return;
  132. smsg_out->hdr.operation = operation;
  133. smsg_in = (struct hv_start_fcopy *)fcopy_transaction.fcopy_msg;
  134. utf16s_to_utf8s((wchar_t *)smsg_in->file_name, W_MAX_PATH,
  135. UTF16_LITTLE_ENDIAN,
  136. (__u8 *)&smsg_out->file_name, W_MAX_PATH - 1);
  137. utf16s_to_utf8s((wchar_t *)smsg_in->path_name, W_MAX_PATH,
  138. UTF16_LITTLE_ENDIAN,
  139. (__u8 *)&smsg_out->path_name, W_MAX_PATH - 1);
  140. smsg_out->copy_flags = smsg_in->copy_flags;
  141. smsg_out->file_size = smsg_in->file_size;
  142. out_src = smsg_out;
  143. break;
  144. case WRITE_TO_FILE:
  145. out_src = fcopy_transaction.fcopy_msg;
  146. out_len = sizeof(struct hv_do_fcopy);
  147. break;
  148. default:
  149. out_src = fcopy_transaction.fcopy_msg;
  150. out_len = fcopy_transaction.recv_len;
  151. break;
  152. }
  153. fcopy_transaction.state = HVUTIL_USERSPACE_REQ;
  154. rc = hvutil_transport_send(hvt, out_src, out_len, NULL);
  155. if (rc) {
  156. pr_debug("FCP: failed to communicate to the daemon: %d\n", rc);
  157. if (cancel_delayed_work_sync(&fcopy_timeout_work)) {
  158. fcopy_respond_to_host(HV_E_FAIL);
  159. fcopy_transaction.state = HVUTIL_READY;
  160. }
  161. }
  162. kfree(smsg_out);
  163. return;
  164. }
  165. /*
  166. * Send a response back to the host.
  167. */
  168. static void
  169. fcopy_respond_to_host(int error)
  170. {
  171. struct icmsg_hdr *icmsghdr;
  172. u32 buf_len;
  173. struct vmbus_channel *channel;
  174. u64 req_id;
  175. /*
  176. * Copy the global state for completing the transaction. Note that
  177. * only one transaction can be active at a time. This is guaranteed
  178. * by the file copy protocol implemented by the host. Furthermore,
  179. * the "transaction active" state we maintain ensures that there can
  180. * only be one active transaction at a time.
  181. */
  182. buf_len = fcopy_transaction.recv_len;
  183. channel = fcopy_transaction.recv_channel;
  184. req_id = fcopy_transaction.recv_req_id;
  185. icmsghdr = (struct icmsg_hdr *)
  186. &recv_buffer[sizeof(struct vmbuspipe_hdr)];
  187. if (channel->onchannel_callback == NULL)
  188. /*
  189. * We have raced with util driver being unloaded;
  190. * silently return.
  191. */
  192. return;
  193. icmsghdr->status = error;
  194. icmsghdr->icflags = ICMSGHDRFLAG_TRANSACTION | ICMSGHDRFLAG_RESPONSE;
  195. vmbus_sendpacket(channel, recv_buffer, buf_len, req_id,
  196. VM_PKT_DATA_INBAND, 0);
  197. }
  198. void hv_fcopy_onchannelcallback(void *context)
  199. {
  200. struct vmbus_channel *channel = context;
  201. u32 recvlen;
  202. u64 requestid;
  203. struct hv_fcopy_hdr *fcopy_msg;
  204. struct icmsg_hdr *icmsghdr;
  205. struct icmsg_negotiate *negop = NULL;
  206. int util_fw_version;
  207. int fcopy_srv_version;
  208. if (fcopy_transaction.state > HVUTIL_READY)
  209. return;
  210. vmbus_recvpacket(channel, recv_buffer, PAGE_SIZE * 2, &recvlen,
  211. &requestid);
  212. if (recvlen <= 0)
  213. return;
  214. icmsghdr = (struct icmsg_hdr *)&recv_buffer[
  215. sizeof(struct vmbuspipe_hdr)];
  216. if (icmsghdr->icmsgtype == ICMSGTYPE_NEGOTIATE) {
  217. util_fw_version = UTIL_FW_VERSION;
  218. fcopy_srv_version = WIN8_SRV_VERSION;
  219. vmbus_prep_negotiate_resp(icmsghdr, negop, recv_buffer,
  220. util_fw_version, fcopy_srv_version);
  221. } else {
  222. fcopy_msg = (struct hv_fcopy_hdr *)&recv_buffer[
  223. sizeof(struct vmbuspipe_hdr) +
  224. sizeof(struct icmsg_hdr)];
  225. /*
  226. * Stash away this global state for completing the
  227. * transaction; note transactions are serialized.
  228. */
  229. fcopy_transaction.recv_len = recvlen;
  230. fcopy_transaction.recv_req_id = requestid;
  231. fcopy_transaction.fcopy_msg = fcopy_msg;
  232. if (fcopy_transaction.state < HVUTIL_READY) {
  233. /* Userspace is not registered yet */
  234. fcopy_respond_to_host(HV_E_FAIL);
  235. return;
  236. }
  237. fcopy_transaction.state = HVUTIL_HOSTMSG_RECEIVED;
  238. /*
  239. * Send the information to the user-level daemon.
  240. */
  241. schedule_work(&fcopy_send_work);
  242. schedule_delayed_work(&fcopy_timeout_work,
  243. HV_UTIL_TIMEOUT * HZ);
  244. return;
  245. }
  246. icmsghdr->icflags = ICMSGHDRFLAG_TRANSACTION | ICMSGHDRFLAG_RESPONSE;
  247. vmbus_sendpacket(channel, recv_buffer, recvlen, requestid,
  248. VM_PKT_DATA_INBAND, 0);
  249. }
  250. /* Callback when data is received from userspace */
  251. static int fcopy_on_msg(void *msg, int len)
  252. {
  253. int *val = (int *)msg;
  254. if (len != sizeof(int))
  255. return -EINVAL;
  256. if (fcopy_transaction.state == HVUTIL_DEVICE_INIT)
  257. return fcopy_handle_handshake(*val);
  258. if (fcopy_transaction.state != HVUTIL_USERSPACE_REQ)
  259. return -EINVAL;
  260. /*
  261. * Complete the transaction by forwarding the result
  262. * to the host. But first, cancel the timeout.
  263. */
  264. if (cancel_delayed_work_sync(&fcopy_timeout_work)) {
  265. fcopy_transaction.state = HVUTIL_USERSPACE_RECV;
  266. fcopy_respond_to_host(*val);
  267. hv_poll_channel(fcopy_transaction.recv_channel,
  268. fcopy_poll_wrapper);
  269. }
  270. return 0;
  271. }
  272. static void fcopy_on_reset(void)
  273. {
  274. /*
  275. * The daemon has exited; reset the state.
  276. */
  277. fcopy_transaction.state = HVUTIL_DEVICE_INIT;
  278. if (cancel_delayed_work_sync(&fcopy_timeout_work))
  279. fcopy_respond_to_host(HV_E_FAIL);
  280. complete(&release_event);
  281. }
  282. int hv_fcopy_init(struct hv_util_service *srv)
  283. {
  284. recv_buffer = srv->recv_buffer;
  285. fcopy_transaction.recv_channel = srv->channel;
  286. init_completion(&release_event);
  287. /*
  288. * When this driver loads, the user level daemon that
  289. * processes the host requests may not yet be running.
  290. * Defer processing channel callbacks until the daemon
  291. * has registered.
  292. */
  293. fcopy_transaction.state = HVUTIL_DEVICE_INIT;
  294. hvt = hvutil_transport_init(fcopy_devname, 0, 0,
  295. fcopy_on_msg, fcopy_on_reset);
  296. if (!hvt)
  297. return -EFAULT;
  298. return 0;
  299. }
  300. void hv_fcopy_deinit(void)
  301. {
  302. fcopy_transaction.state = HVUTIL_DEVICE_DYING;
  303. cancel_delayed_work_sync(&fcopy_timeout_work);
  304. hvutil_transport_destroy(hvt);
  305. wait_for_completion(&release_event);
  306. }