ClientConnection.cpp 15 KB

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  1. // ClientConnection.cpp - 用户态连接管理实现
  2. #include <ntddk.h>
  3. #include <wdf.h>
  4. #include "ClientConnection.h"
  5. #include "EventRingBuffer.h"
  6. #include "SerialFilter.h" // g_sequence_counter
  7. #include "../common/CommKitIoctl.h"
  8. #include "../common/CommKitEvents.h"
  9. // 诊断计数器(全局命名空间)
  10. volatile LONG g_diag_evt_device_add_count = 0;
  11. volatile LONG g_diag_prepare_hardware_count = 0;
  12. volatile LONG g_diag_register_filter_count = 0;
  13. volatile LONG g_diag_irp_preprocess_ok = 0;
  14. volatile LONG g_diag_device_create_ok = 0;
  15. volatile LONG g_diag_last_failure_status = 0;
  16. namespace commkit_driver {
  17. // 全局实例
  18. ClientConnection g_ClientConnection;
  19. void ClientConnection::Initialize() {
  20. ports_count_ = 0;
  21. control_device_ = nullptr;
  22. callback_registered_ = FALSE;
  23. KeInitializeSpinLock(&ports_lock_);
  24. RtlZeroMemory(ports_table_, sizeof(ports_table_));
  25. }
  26. void ClientConnection::Cleanup() {
  27. // 释放所有端口的环形缓冲
  28. KIRQL old_irql;
  29. KeAcquireSpinLock(&ports_lock_, &old_irql);
  30. for (ULONG i = 0; i < ports_count_; ++i) {
  31. PDEVICE_CONTEXT ctx = ports_table_[i].Context;
  32. if (ctx && ctx->RingBuffer) {
  33. EventRingBuffer* ring = (EventRingBuffer*)ctx->RingBuffer;
  34. ring->Cleanup();
  35. ExFreePoolWithTag(ring, 'RBCK');
  36. ctx->RingBuffer = nullptr;
  37. }
  38. }
  39. ports_count_ = 0;
  40. KeReleaseSpinLock(&ports_lock_, old_irql);
  41. }
  42. void ClientConnection::RegisterFilterDevice(WDFDEVICE device) {
  43. InterlockedIncrement(&g_diag_register_filter_count);
  44. KIRQL old_irql;
  45. KeAcquireSpinLock(&ports_lock_, &old_irql);
  46. if (ports_count_ < 256) {
  47. PDEVICE_CONTEXT ctx = DeviceGetContext(device);
  48. ports_table_[ports_count_].ComNumber = 0; // 延迟到 UpdatePortComNumber
  49. ports_table_[ports_count_].Context = ctx;
  50. ports_count_++;
  51. ctx->ComNumber = 0;
  52. ctx->MonitoringEnabled = FALSE;
  53. ctx->WdfDevice = device;
  54. }
  55. KeReleaseSpinLock(&ports_lock_, old_irql);
  56. }
  57. void ClientConnection::UpdatePortComNumber(WDFDEVICE device, ULONG com_number) {
  58. KIRQL old_irql;
  59. KeAcquireSpinLock(&ports_lock_, &old_irql);
  60. for (ULONG i = 0; i < ports_count_; ++i) {
  61. if (ports_table_[i].Context &&
  62. ports_table_[i].Context->WdfDevice == device) {
  63. ports_table_[i].ComNumber = com_number;
  64. ports_table_[i].Context->ComNumber = com_number;
  65. break;
  66. }
  67. }
  68. KeReleaseSpinLock(&ports_lock_, old_irql);
  69. }
  70. void ClientConnection::UnregisterFilterDevice(ULONG com_number) {
  71. KIRQL old_irql;
  72. KeAcquireSpinLock(&ports_lock_, &old_irql);
  73. for (ULONG i = 0; i < ports_count_; ++i) {
  74. if (ports_table_[i].ComNumber == com_number) {
  75. // 移动最后一个元素到当前位置
  76. PDEVICE_CONTEXT ctx = ports_table_[i].Context;
  77. if (ctx && ctx->RingBuffer) {
  78. EventRingBuffer* ring = (EventRingBuffer*)ctx->RingBuffer;
  79. ring->Cleanup();
  80. ExFreePoolWithTag(ring, 'RBCK');
  81. ctx->RingBuffer = nullptr;
  82. }
  83. ports_table_[i] = ports_table_[ports_count_ - 1];
  84. ports_count_--;
  85. break;
  86. }
  87. }
  88. KeReleaseSpinLock(&ports_lock_, old_irql);
  89. }
  90. PDEVICE_CONTEXT ClientConnection::FindPortContext(ULONG com_number) {
  91. PDEVICE_CONTEXT result = nullptr;
  92. KIRQL old_irql;
  93. KeAcquireSpinLock(&ports_lock_, &old_irql);
  94. for (ULONG i = 0; i < ports_count_; ++i) {
  95. if (ports_table_[i].ComNumber == com_number) {
  96. result = ports_table_[i].Context;
  97. break;
  98. }
  99. }
  100. KeReleaseSpinLock(&ports_lock_, old_irql);
  101. return result;
  102. }
  103. NTSTATUS ClientConnection::HandleRegisterCallback() {
  104. callback_registered_ = TRUE;
  105. return STATUS_SUCCESS;
  106. }
  107. NTSTATUS ClientConnection::HandleAttachPort(ULONG com_number) {
  108. // 拒绝 com_number==0:EvtDevicePrepareHardware 解析失败时 ComNumber 保持 0,
  109. // 若允许 attach 会误匹配第一个未解析出编号的设备
  110. if (com_number == 0) {
  111. DbgPrint("[CommModifyKit] HandleAttachPort: com_number=0 rejected\n");
  112. return STATUS_INVALID_PARAMETER;
  113. }
  114. PDEVICE_CONTEXT ctx = FindPortContext(com_number);
  115. if (!ctx) {
  116. DbgPrint("[CommModifyKit] HandleAttachPort: COM%u NOT in ports_table (count=%u)\n",
  117. com_number, ports_count_);
  118. DbgPrint("[CommModifyKit] DIAG: EvtDeviceAdd=%ld, IRPpreproc=%ld, DevCreate=%ld, Register=%ld, PrepHW=%ld, LastFail=0x%lX\n",
  119. g_diag_evt_device_add_count, g_diag_irp_preprocess_ok,
  120. g_diag_device_create_ok, g_diag_register_filter_count, g_diag_prepare_hardware_count,
  121. g_diag_last_failure_status);
  122. // 打印 ports_table_ 里所有已注册的 COM 编号,便于诊断
  123. KIRQL old_irql;
  124. KeAcquireSpinLock(&ports_lock_, &old_irql);
  125. for (ULONG i = 0; i < ports_count_; ++i) {
  126. DbgPrint("[CommModifyKit] ports_table[%u].ComNumber=%u\n",
  127. i, ports_table_[i].ComNumber);
  128. }
  129. KeReleaseSpinLock(&ports_lock_, old_irql);
  130. return STATUS_DEVICE_DOES_NOT_EXIST;
  131. }
  132. DbgPrint("[CommModifyKit] HandleAttachPort: COM%u found in ports_table\n", com_number);
  133. // 如果未分配环形缓冲,先分配
  134. if (!ctx->RingBuffer) {
  135. EventRingBuffer* ring = (EventRingBuffer*)ExAllocatePool2(
  136. POOL_FLAG_NON_PAGED, sizeof(EventRingBuffer), 'RBCK');
  137. if (!ring) {
  138. return STATUS_INSUFFICIENT_RESOURCES;
  139. }
  140. // placement new 等价:手动调用构造
  141. RtlZeroMemory(ring, sizeof(EventRingBuffer));
  142. NTSTATUS status = ring->Initialize();
  143. if (!NT_SUCCESS(status)) {
  144. ring->Cleanup();
  145. ExFreePoolWithTag(ring, 'RBCK');
  146. return status;
  147. }
  148. ctx->RingBuffer = ring;
  149. }
  150. // 推入 OP_OPEN 事件(使用全局共享序列号,保证所有事件类型 Sequence 唯一递增)
  151. EventRingBuffer* ring = (EventRingBuffer*)ctx->RingBuffer;
  152. LONG cur = InterlockedIncrement(&g_sequence_counter);
  153. UINT64 timestamp = KeQueryInterruptTime(); // 100ns 单位
  154. ring->Push((ULONG)cur, timestamp, com_number, COMMKIT_OP_OPEN, 0, nullptr);
  155. ctx->MonitoringEnabled = TRUE;
  156. return STATUS_SUCCESS;
  157. }
  158. NTSTATUS ClientConnection::HandleDetachPort(ULONG com_number) {
  159. PDEVICE_CONTEXT ctx = FindPortContext(com_number);
  160. if (!ctx) {
  161. return STATUS_DEVICE_DOES_NOT_EXIST;
  162. }
  163. ctx->MonitoringEnabled = FALSE;
  164. // 推入 OP_CLOSE 事件(使用全局共享序列号)
  165. if (ctx->RingBuffer) {
  166. EventRingBuffer* ring = (EventRingBuffer*)ctx->RingBuffer;
  167. LONG cur = InterlockedIncrement(&g_sequence_counter);
  168. UINT64 timestamp = KeQueryInterruptTime();
  169. ring->Push((ULONG)cur, timestamp, com_number, COMMKIT_OP_CLOSE, 0, nullptr);
  170. }
  171. return STATUS_SUCCESS;
  172. }
  173. NTSTATUS ClientConnection::HandleWritePort(ULONG com_number, PVOID data, ULONG len,
  174. PULONG bytes_written) {
  175. *bytes_written = 0;
  176. PDEVICE_CONTEXT ctx = FindPortContext(com_number);
  177. if (!ctx || !ctx->LowerDevice) {
  178. return STATUS_DEVICE_DOES_NOT_EXIST;
  179. }
  180. // 获取保存的 FileObject(由 DispatchCreate 捕获)。
  181. // 串口驱动(尤其是虚拟串口如 ELTIMA)需要有效的 FileObject 才能正确处理
  182. // 写请求——没有 FileObject 时,写 IRP 可能返回 STATUS_SUCCESS 但数据不会
  183. // 路由到配对端口的读缓冲,导致其他工具收不到客户端写的数据。
  184. PFILE_OBJECT fo = nullptr;
  185. KIRQL old_irql;
  186. KeAcquireSpinLock(&ctx->FileObjectLock, &old_irql);
  187. fo = ctx->SavedFileObject;
  188. if (fo) {
  189. ObReferenceObject(fo); // 额外引用,防止 DispatchClose 期间被释放
  190. }
  191. KeReleaseSpinLock(&ctx->FileObjectLock, old_irql);
  192. DbgPrint("[CommModifyKit] HandleWritePort COM%u len=%u FileObject=%p\n",
  193. com_number, len, fo);
  194. if (!fo) {
  195. DbgPrint("[CommModifyKit] HandleWritePort WARNING: no SavedFileObject for COM%u "
  196. "(no user-mode app has the port open). Write may not be routed correctly.\n",
  197. com_number);
  198. }
  199. // 构造同步写 IRP 发送给下层串口设备
  200. // IoBuildSynchronousFsdRequest 内部用 MmProbeAndLockPages(KernelMode)
  201. // 创建 MDL,对 NonPaged pool 缓冲(METHOD_BUFFERED SystemBuffer)可正常工作
  202. KEVENT event;
  203. KeInitializeEvent(&event, NotificationEvent, FALSE);
  204. IO_STATUS_BLOCK io_status = {};
  205. PIRP irp = IoBuildSynchronousFsdRequest(
  206. IRP_MJ_WRITE, ctx->LowerDevice, data, len, nullptr, &event, &io_status);
  207. if (!irp) {
  208. if (fo) ObDereferenceObject(fo);
  209. return STATUS_INSUFFICIENT_RESOURCES;
  210. }
  211. // 关键:将 RequestorMode 改为 UserMode
  212. // IoBuildSynchronousFsdRequest 默认设 KernelMode,但 ELTIMA 等虚拟串口驱动
  213. // 会检查 RequestorMode——对 KernelMode 写 IRP 只接受写入(返回 SUCCESS)
  214. // 但不路由数据到配对端口。改为 UserMode 让虚拟串口驱动正常路由数据。
  215. // 缓冲已由 IoBuildSynchronousFsdRequest 用 KernelMode 探测锁定,
  216. // MDL 有效,下层驱动通过 MmGetSystemAddressForMdlSafe 访问,不受影响。
  217. irp->RequestorMode = UserMode;
  218. // IoBuildSynchronousFsdRequest 不设置 FileObject,需手动设置
  219. if (fo) {
  220. PIO_STACK_LOCATION sl = IoGetNextIrpStackLocation(irp);
  221. sl->FileObject = fo;
  222. }
  223. NTSTATUS status = IoCallDriver(ctx->LowerDevice, irp);
  224. if (status == STATUS_PENDING) {
  225. KeWaitForSingleObject(&event, Executive, KernelMode, FALSE, nullptr);
  226. status = io_status.Status;
  227. }
  228. *bytes_written = (ULONG)io_status.Information;
  229. DbgPrint("[CommModifyKit] HandleWritePort COM%u status=0x%08X written=%u\n",
  230. com_number, status, *bytes_written);
  231. // 释放 FileObject 额外引用
  232. if (fo) {
  233. ObDereferenceObject(fo);
  234. }
  235. // 注:此 IRP 直接发给 LowerDevice,绕过 SerialFilter::DispatchWrite,
  236. // 不会触发 OnWriteComplete 捕获。需手动将写入数据 Push 为 OP_WRITE 事件
  237. if (NT_SUCCESS(status) && *bytes_written > 0 && ctx->MonitoringEnabled && ctx->RingBuffer) {
  238. LONG seq = InterlockedIncrement(&g_sequence_counter);
  239. UINT64 timestamp = KeQueryInterruptTime();
  240. EventRingBuffer* ring = (EventRingBuffer*)ctx->RingBuffer;
  241. ring->Push((ULONG)seq, timestamp, com_number, COMMKIT_OP_WRITE,
  242. *bytes_written, data);
  243. }
  244. return status;
  245. }
  246. NTSTATUS ClientConnection::HandleReadPort(ULONG com_number, PVOID data, ULONG len,
  247. PULONG bytes_read) {
  248. *bytes_read = 0;
  249. PDEVICE_CONTEXT ctx = FindPortContext(com_number);
  250. if (!ctx || !ctx->LowerDevice) {
  251. return STATUS_DEVICE_DOES_NOT_EXIST;
  252. }
  253. // 获取保存的 FileObject(与 HandleWritePort 同理)
  254. PFILE_OBJECT fo = nullptr;
  255. KIRQL old_irql;
  256. KeAcquireSpinLock(&ctx->FileObjectLock, &old_irql);
  257. fo = ctx->SavedFileObject;
  258. if (fo) {
  259. ObReferenceObject(fo);
  260. }
  261. KeReleaseSpinLock(&ctx->FileObjectLock, old_irql);
  262. DbgPrint("[CommModifyKit] HandleReadPort COM%u len=%u FileObject=%p\n",
  263. com_number, len, fo);
  264. // 构造同步读 IRP 发送给下层串口设备
  265. KEVENT event;
  266. KeInitializeEvent(&event, NotificationEvent, FALSE);
  267. IO_STATUS_BLOCK io_status = {};
  268. PIRP irp = IoBuildSynchronousFsdRequest(
  269. IRP_MJ_READ, ctx->LowerDevice, data, len, nullptr, &event, &io_status);
  270. if (!irp) {
  271. if (fo) ObDereferenceObject(fo);
  272. return STATUS_INSUFFICIENT_RESOURCES;
  273. }
  274. // 同 HandleWritePort:改为 UserMode 让虚拟串口驱动正常处理
  275. irp->RequestorMode = UserMode;
  276. // 设置 FileObject(同 HandleWritePort)
  277. if (fo) {
  278. PIO_STACK_LOCATION sl = IoGetNextIrpStackLocation(irp);
  279. sl->FileObject = fo;
  280. }
  281. NTSTATUS status = IoCallDriver(ctx->LowerDevice, irp);
  282. if (status == STATUS_PENDING) {
  283. KeWaitForSingleObject(&event, Executive, KernelMode, FALSE, nullptr);
  284. status = io_status.Status;
  285. }
  286. *bytes_read = (ULONG)io_status.Information;
  287. DbgPrint("[CommModifyKit] HandleReadPort COM%u status=0x%08X read=%u\n",
  288. com_number, status, *bytes_read);
  289. if (fo) {
  290. ObDereferenceObject(fo);
  291. }
  292. // 注:此 IRP 直接发给 LowerDevice,绕过 SerialFilter::DispatchRead,
  293. // 不会触发 OnReadComplete 捕获。需手动将读取数据 Push 为 OP_READ 事件
  294. if (NT_SUCCESS(status) && *bytes_read > 0 && ctx->MonitoringEnabled && ctx->RingBuffer) {
  295. LONG seq = InterlockedIncrement(&g_sequence_counter);
  296. UINT64 timestamp = KeQueryInterruptTime();
  297. EventRingBuffer* ring = (EventRingBuffer*)ctx->RingBuffer;
  298. ring->Push((ULONG)seq, timestamp, com_number, COMMKIT_OP_READ,
  299. *bytes_read, data);
  300. }
  301. return status;
  302. }
  303. NTSTATUS ClientConnection::HandleReadEvents(PVOID out_buf, ULONG out_size, PULONG returned) {
  304. *returned = 0;
  305. if (!callback_registered_) {
  306. return STATUS_DEVICE_NOT_READY;
  307. }
  308. PCOMMKIT_EVENT events = (PCOMMKIT_EVENT)out_buf;
  309. ULONG max_count = out_size / sizeof(COMMKIT_EVENT);
  310. if (max_count == 0) {
  311. return STATUS_BUFFER_TOO_SMALL;
  312. }
  313. ULONG total_popped = 0;
  314. KIRQL old_irql;
  315. KeAcquireSpinLock(&ports_lock_, &old_irql);
  316. // 按端口顺序弹出事件到输出缓冲
  317. for (ULONG i = 0; i < ports_count_ && total_popped < max_count; ++i) {
  318. PDEVICE_CONTEXT ctx = ports_table_[i].Context;
  319. if (!ctx || !ctx->RingBuffer || !ctx->MonitoringEnabled) {
  320. continue;
  321. }
  322. EventRingBuffer* ring = (EventRingBuffer*)ctx->RingBuffer;
  323. LONG popped = ring->PopBatch(events + total_popped, max_count - total_popped);
  324. total_popped += (ULONG)popped;
  325. }
  326. KeReleaseSpinLock(&ports_lock_, old_irql);
  327. // 弹出后按 Sequence 升序排序(锁外执行,不持自旋锁做 O(n²) 操作)
  328. // 各端口 RingBuffer 内部 Sequence 是递增的,但跨端口弹出后顺序被打乱
  329. // (如 port0 的 seq=100-109 可能排在 port1 的 seq=95-99 之前)
  330. // 使用插入排序:事件批量小(通常 ≤16),O(n²) 开销可忽略
  331. if (total_popped > 1) {
  332. for (ULONG i = 1; i < total_popped; ++i) {
  333. COMMKIT_EVENT key = events[i];
  334. LONG j = (LONG)i - 1;
  335. while (j >= 0 && events[j].Sequence > key.Sequence) {
  336. events[j + 1] = events[j];
  337. j--;
  338. }
  339. events[j + 1] = key;
  340. }
  341. }
  342. *returned = total_popped * sizeof(COMMKIT_EVENT);
  343. return STATUS_SUCCESS;
  344. }
  345. NTSTATUS ClientConnection::HandleFreeAll() {
  346. KIRQL old_irql;
  347. KeAcquireSpinLock(&ports_lock_, &old_irql);
  348. for (ULONG i = 0; i < ports_count_; ++i) {
  349. PDEVICE_CONTEXT ctx = ports_table_[i].Context;
  350. if (ctx) {
  351. ctx->MonitoringEnabled = FALSE;
  352. if (ctx->RingBuffer) {
  353. ((EventRingBuffer*)ctx->RingBuffer)->Clear();
  354. }
  355. }
  356. }
  357. KeReleaseSpinLock(&ports_lock_, old_irql);
  358. callback_registered_ = FALSE;
  359. return STATUS_SUCCESS;
  360. }
  361. } // namespace commkit_driver