1 /** @file
2   Debug Port Library implementation based on usb debug port.
3 
4   Copyright (c) 2010 - 2018, Intel Corporation. All rights reserved.<BR>
5   SPDX-License-Identifier: BSD-2-Clause-Patent
6 
7 **/
8 
9 #include <Base.h>
10 #include <IndustryStandard/Pci.h>
11 #include <IndustryStandard/Usb.h>
12 #include <Library/IoLib.h>
13 #include <Library/PciLib.h>
14 #include <Library/PcdLib.h>
15 #include <Library/TimerLib.h>
16 #include <Library/DebugCommunicationLib.h>
17 #include <Library/BaseMemoryLib.h>
18 #include <Library/BaseLib.h>
19 #include <Library/DebugLib.h>
20 
21 #define SETUP_PID            0x2D
22 #define INPUT_PID            0x69
23 #define OUTPUT_PID           0xE1
24 #define ERROR_PID            0x55
25 #define DATA0_PID            0xC3
26 #define DATA1_PID            0x4B
27 #define DATA2_PID            0x87
28 #define MDATA_PID            0x0F
29 #define ACK_PID              0xD2
30 #define NAK_PID              0x5A
31 #define STALL_PID            0x1E
32 #define NYET_PID             0x96
33 
34 #define PCI_CAPABILITY_ID_DEBUG_PORT   0x0A
35 #define USB_DEBUG_PORT_MAX_PACKET_SIZE 0x08
36 
37 #define USB_DEBUG_PORT_IN_USE     BIT10
38 #define USB_DEBUG_PORT_ENABLE     BIT28
39 #define USB_DEBUG_PORT_OWNER      BIT30
40 
41 #define USB_PORT_LINE_STATUS_LS   0x400
42 #define USB_PORT_LINE_STATUS_MASK 0xC00
43 
44 //
45 // Usb debug device descriptor, which is defined at
46 // USB2 Debug Device Specification.
47 //
48 typedef struct _USB_DEBUG_PORT_DESCRIPTOR {
49   UINT8          Length;
50   UINT8          DescriptorType;
51   UINT8          DebugInEndpoint;
52   UINT8          DebugOutEndpoint;
53 }USB_DEBUG_PORT_DESCRIPTOR;
54 
55 USB_DEVICE_REQUEST mDebugCommunicationLibUsbGetDebugDescriptor = {
56   0x80,
57   USB_REQ_GET_DESCRIPTOR,
58   (UINT16)(0x0A << 8),
59   0x0000,
60   sizeof(USB_DEBUG_PORT_DESCRIPTOR)
61   };
62 
63 USB_DEVICE_REQUEST mDebugCommunicationLibUsbSetDebugFeature = {
64   0x0,
65   USB_REQ_SET_FEATURE,
66   (UINT16)(0x06),
67   0x0000,
68   0x0
69   };
70 
71 USB_DEVICE_REQUEST mDebugCommunicationLibUsbSetDebugAddress = {
72   0x0,
73   USB_REQ_SET_ADDRESS,
74   (UINT16)(0x7F),
75   0x0000,
76   0x0
77   };
78 
79 //
80 // Usb debug port register file, which is defined at
81 // EHCI Specification.
82 //
83 typedef struct _USB_DEBUG_PORT_REGISTER {
84   UINT32         ControlStatus;
85   UINT8          TokenPid;
86   UINT8          SendPid;
87   UINT8          ReceivedPid;
88   UINT8          Reserved1;
89   UINT8          DataBuffer[8];
90   UINT8          UsbEndPoint;
91   UINT8          UsbAddress;
92   UINT8          Reserved2;
93   UINT8          Reserved3;
94 }USB_DEBUG_PORT_REGISTER;
95 
96 //
97 // The state machine of usb debug port
98 //
99 #define USBDBG_NO_DEV        0   // No device present at debug port
100 #define USBDBG_NO_DBG_CAB    1   // The device attached is not usb debug cable
101 #define USBDBG_DBG_CAB       2   // The device attached is usb debug cable
102 #define USBDBG_INIT_DONE     4   // The usb debug cable device is initialized
103 #define USBDBG_RESET         8   // The system is reset
104 
105 #pragma pack(1)
106 //
107 // The internal data structure of DEBUG_PORT_HANDLE, which stores some
108 // important datum which are used across various phases.
109 //
110 typedef struct _USB_DEBUG_PORT_HANDLE{
111   //
112   // The usb debug port memory BAR number in EHCI configuration space.
113   //
114   UINT8        DebugPortBarNumber;
115   UINT8        Initialized;
116   //
117   // The offset of usb debug port registers in EHCI memory range.
118   //
119   UINT16       DebugPortOffset;
120   //
121   // The usb debug port memory BAR address.
122   //
123   UINT32       UsbDebugPortMemoryBase;
124   //
125   // The EHCI memory BAR address.
126   //
127   UINT32       EhciMemoryBase;
128   //
129   // The usb debug device In endpoint.
130   //
131   UINT8        InEndpoint;
132   //
133   // The usb debug device Out endpoint.
134   //
135   UINT8        OutEndpoint;
136   //
137   // The Bulk In endpoint toggle bit.
138   //
139   UINT8        BulkInToggle;
140   //
141   // The Bulk Out endpoint toggle bit.
142   //
143   UINT8        BulkOutToggle;
144   //
145   // The available data length in the following data buffer.
146   //
147   UINT8        DataCount;
148   //
149   // The data buffer. Maximum length is 8 bytes.
150   //
151   UINT8        Data[8];
152 } USB_DEBUG_PORT_HANDLE;
153 #pragma pack()
154 
155 //
156 // The global variable which can be used after memory is ready.
157 //
158 USB_DEBUG_PORT_HANDLE     mDebugCommunicationLibUsbDebugPortHandle;
159 
160 /**
161   Calculate the usb debug port bar address.
162 
163   @param  DebugPortOffset    Get usb debug port offset in the usb debug port memory space.
164   @param  DebugPortBarNumbar Get the bar number at which usb debug port is located.
165 
166   @retval RETURN_UNSUPPORTED The usb host controller does not supported usb debug port capability.
167   @retval RETURN_SUCCESS     Get bar and offset successfully.
168 
169 **/
170 RETURN_STATUS
171 EFIAPI
CalculateUsbDebugPortBar(OUT UINT16 * DebugPortOffset,OUT UINT8 * DebugPortBarNumbar)172 CalculateUsbDebugPortBar (
173   OUT UINT16     *DebugPortOffset,
174   OUT UINT8      *DebugPortBarNumbar
175  )
176 {
177   UINT16     PciStatus;
178   UINT16     VendorId;
179   UINT16     DeviceId;
180   UINT8      ProgInterface;
181   UINT8      SubClassCode;
182   UINT8      BaseCode;
183   UINT8      CapabilityPtr;
184   UINT8      CapabilityId;
185 
186   VendorId = PciRead16 (PcdGet32(PcdUsbEhciPciAddress) + PCI_VENDOR_ID_OFFSET);
187   DeviceId = PciRead16 (PcdGet32(PcdUsbEhciPciAddress) + PCI_DEVICE_ID_OFFSET);
188 
189   if ((VendorId == 0xFFFF) || (DeviceId == 0xFFFF)) {
190     return RETURN_UNSUPPORTED;
191   }
192 
193   ProgInterface = PciRead8 (PcdGet32(PcdUsbEhciPciAddress) + PCI_CLASSCODE_OFFSET);
194   SubClassCode  = PciRead8 (PcdGet32(PcdUsbEhciPciAddress) + PCI_CLASSCODE_OFFSET + 1);
195   BaseCode      = PciRead8 (PcdGet32(PcdUsbEhciPciAddress) + PCI_CLASSCODE_OFFSET + 2);
196 
197   if ((ProgInterface != PCI_IF_EHCI) || (SubClassCode != PCI_CLASS_SERIAL_USB) || (BaseCode != PCI_CLASS_SERIAL)) {
198     return RETURN_UNSUPPORTED;
199   }
200 
201   //
202   // Enable Ehci Host Controller MMIO Space.
203   //
204   PciStatus = PciRead16 (PcdGet32(PcdUsbEhciPciAddress) + PCI_PRIMARY_STATUS_OFFSET);
205 
206   if ((PciStatus & EFI_PCI_STATUS_CAPABILITY) == 0) {
207     //
208     // The Pci Device Doesn't Support Capability Pointer.
209     //
210     return RETURN_UNSUPPORTED;
211   }
212 
213   //
214   // Get Pointer To Capability List
215   //
216   CapabilityPtr = PciRead8(PcdGet32(PcdUsbEhciPciAddress) + PCI_CAPBILITY_POINTER_OFFSET);
217 
218   //
219   // Find Capability ID 0xA, Which Is For Debug Port
220   //
221   while (CapabilityPtr != 0) {
222     CapabilityId = PciRead8(PcdGet32(PcdUsbEhciPciAddress) + CapabilityPtr);
223     if (CapabilityId == PCI_CAPABILITY_ID_DEBUG_PORT) {
224       break;
225     }
226     CapabilityPtr = PciRead8(PcdGet32(PcdUsbEhciPciAddress) + CapabilityPtr + 1);
227   }
228 
229   //
230   // No Debug Port Capability Found
231   //
232   if (CapabilityPtr == 0) {
233     return RETURN_UNSUPPORTED;
234   }
235 
236   //
237   // Get The Base Address Of Debug Port Register In Debug Port Capability Register
238   //
239   *DebugPortOffset    = (UINT16)(PciRead16(PcdGet32(PcdUsbEhciPciAddress) + CapabilityPtr + 2) & 0x1FFF);
240   *DebugPortBarNumbar = (UINT8)((PciRead16(PcdGet32(PcdUsbEhciPciAddress) + CapabilityPtr + 2) >> 13) - 1);
241 
242   return RETURN_SUCCESS;
243 }
244 
245 /**
246   Do a usb IN transaction by usb debug port.
247 
248   @param  DebugPortRegister        Pointer to the base address of usb debug port register interface.
249   @param  Buffer                   Pointer to the buffer receiving data.
250   @param  Length                   Number of bytes of the received data.
251   @param  Token                    The token PID for each USB transaction.
252   @param  Addr                     The usb device address for usb transaction.
253   @param  Ep                       The endpoint for usb transaction.
254   @param  DataToggle               The toggle bit used at usb transaction.
255 
256   @retval RETURN_SUCCESS           The IN transaction is executed successfully.
257   @retval RETURN_INVALID_PARAMETER The parameters passed in are invalid.
258   @retval RETURN_DEVICE_ERROR      The IN transaction comes across error.
259 
260 **/
261 RETURN_STATUS
262 EFIAPI
UsbDebugPortIn(IN USB_DEBUG_PORT_REGISTER * DebugPortRegister,IN OUT UINT8 * Buffer,OUT UINT8 * Length,IN UINT8 Token,IN UINT8 Addr,IN UINT8 Ep,IN UINT8 DataToggle)263 UsbDebugPortIn (
264   IN      USB_DEBUG_PORT_REGISTER         *DebugPortRegister,
265   IN  OUT UINT8                           *Buffer,
266       OUT UINT8                           *Length,
267   IN      UINT8                           Token,
268   IN      UINT8                           Addr,
269   IN      UINT8                           Ep,
270   IN      UINT8                           DataToggle
271   )
272 {
273   UINTN                   Index;
274 
275   if (Length == NULL) {
276     return RETURN_INVALID_PARAMETER;
277   }
278   *Length = 0;
279 
280   DebugPortRegister->TokenPid = Token;
281   if (DataToggle != 0) {
282     DebugPortRegister->SendPid = DATA1_PID;
283   } else {
284     DebugPortRegister->SendPid = DATA0_PID;
285   }
286 
287   DebugPortRegister->UsbAddress  = (UINT8)(Addr & 0x7F);
288   DebugPortRegister->UsbEndPoint = (UINT8)(Ep & 0xF);
289 
290   //
291   // Clearing W/R bit to indicate it's a READ operation
292   //
293   MmioAnd32((UINTN)&DebugPortRegister->ControlStatus, (UINT32)~BIT4);
294 
295   //
296   // Setting GO bit as well as clearing DONE bit
297   //
298   MmioOr32((UINTN)&DebugPortRegister->ControlStatus, (UINT32)BIT5);
299 
300   //
301   // Wait for completing the request
302   //
303   while ((MmioRead32((UINTN)&DebugPortRegister->ControlStatus) & (UINT32)BIT16) == 0) {
304     if ((MmioRead32((UINTN)&DebugPortRegister->ControlStatus) & (USB_DEBUG_PORT_OWNER | USB_DEBUG_PORT_IN_USE | USB_DEBUG_PORT_ENABLE))
305        != (USB_DEBUG_PORT_OWNER | USB_DEBUG_PORT_IN_USE | USB_DEBUG_PORT_ENABLE)) {
306       return RETURN_DEVICE_ERROR;
307     }
308   }
309 
310   //
311   // Clearing DONE bit by writing 1
312   //
313   MmioOr32((UINTN)&DebugPortRegister->ControlStatus, BIT16);
314 
315   //
316   // Check if the request is executed successfully or not.
317   //
318   if ((MmioRead32((UINTN)&DebugPortRegister->ControlStatus)) & BIT6) {
319     return RETURN_DEVICE_ERROR;
320   }
321 
322   //
323   // Make sure the received data are not beyond the allowable maximum length - 8 byte
324   //
325   if (((MmioRead32((UINTN)&DebugPortRegister->ControlStatus)) & 0xF) > USB_DEBUG_PORT_MAX_PACKET_SIZE) {
326     return RETURN_DEVICE_ERROR;
327   }
328 
329   *Length = (UINT8)(MmioRead32((UINTN)&DebugPortRegister->ControlStatus) & 0xF);
330   if (*Length > 8) {
331     return RETURN_DEVICE_ERROR;
332   }
333 
334   for (Index = 0; Index < *Length; Index++) {
335     Buffer[Index] = DebugPortRegister->DataBuffer[Index];
336   }
337   return RETURN_SUCCESS;
338 }
339 
340 /**
341   Do a usb SETUP/OUT transaction by usb debug port.
342 
343   @param  DebugPortRegister        Pointer to the base address of usb debug port register interface.
344   @param  Buffer                   Pointer to the buffer receiving data.
345   @param  Length                   Number of bytes of the received data.
346   @param  Token                    The token PID for each USB transaction.
347   @param  Addr                     The usb device address for usb transaction.
348   @param  Ep                       The endpoint for usb transaction.
349   @param  DataToggle               The toggle bit used at usb transaction.
350 
351   @retval RETURN_SUCCESS           The IN transaction is executed successfully.
352   @retval RETURN_INVALID_PARAMETER The parameters passed in are invalid.
353   @retval RETURN_DEVICE_ERROR      The IN transaction comes across error.
354 
355 **/
356 RETURN_STATUS
357 EFIAPI
UsbDebugPortOut(IN USB_DEBUG_PORT_REGISTER * DebugPortRegister,IN UINT8 * Buffer,IN UINT8 Length,IN UINT8 Token,IN UINT8 Addr,IN UINT8 Ep,IN UINT8 DataToggle)358 UsbDebugPortOut (
359   IN  USB_DEBUG_PORT_REGISTER         *DebugPortRegister,
360   IN  UINT8                           *Buffer,
361   IN  UINT8                           Length,
362   IN  UINT8                           Token,
363   IN  UINT8                           Addr,
364   IN  UINT8                           Ep,
365   IN  UINT8                           DataToggle
366   )
367 {
368   UINT8             Index;
369 
370   if (Length > 8) {
371     return RETURN_INVALID_PARAMETER;
372   }
373 
374   DebugPortRegister->TokenPid = Token;
375   if (DataToggle != 0) {
376     DebugPortRegister->SendPid = DATA1_PID;
377   } else {
378     DebugPortRegister->SendPid = DATA0_PID;
379   }
380   DebugPortRegister->UsbAddress  = (UINT8)(Addr & 0x7F);
381   DebugPortRegister->UsbEndPoint = (UINT8)(Ep & 0xF);
382 
383   //
384   // Fill in the data length and corresponding data.
385   //
386   MmioAnd32((UINTN)&DebugPortRegister->ControlStatus, (UINT32)~0xF);
387   MmioOr32((UINTN)&DebugPortRegister->ControlStatus, Length & 0xF);
388   for (Index = 0; Index < Length; Index++) {
389     DebugPortRegister->DataBuffer[Index] = Buffer[Index];
390   }
391 
392   //
393   // Setting W/R bit to indicate it's a WRITE operation
394   //
395   MmioOr32((UINTN)&DebugPortRegister->ControlStatus, BIT4);
396   //
397   // Setting GO bit as well as clearing DONE bit
398   //
399   MmioOr32((UINTN)&DebugPortRegister->ControlStatus, BIT5);
400 
401   //
402   // Wait for completing the request
403   //
404   while ((MmioRead32((UINTN)&DebugPortRegister->ControlStatus) & BIT16) == 0) {
405     if ((MmioRead32((UINTN)&DebugPortRegister->ControlStatus) & (USB_DEBUG_PORT_OWNER | USB_DEBUG_PORT_IN_USE | USB_DEBUG_PORT_ENABLE))
406        != (USB_DEBUG_PORT_OWNER | USB_DEBUG_PORT_IN_USE | USB_DEBUG_PORT_ENABLE)) {
407       return RETURN_DEVICE_ERROR;
408     }
409   }
410 
411   //
412   // Clearing DONE bit by writing 1
413   //
414   MmioOr32((UINTN)&DebugPortRegister->ControlStatus, BIT16);
415 
416   //
417   // Check if the request is executed successfully or not.
418   //
419   if ((MmioRead32((UINTN)&DebugPortRegister->ControlStatus)) & BIT6) {
420     return RETURN_DEVICE_ERROR;
421   }
422 
423   //
424   // Make sure the sent data are not beyond the allowable maximum length - 8 byte
425   //
426   if (((MmioRead32((UINTN)&DebugPortRegister->ControlStatus)) & 0xF) > USB_DEBUG_PORT_MAX_PACKET_SIZE) {
427     return RETURN_DEVICE_ERROR;
428   }
429 
430   return RETURN_SUCCESS;
431 }
432 
433 /**
434   Do a usb control transfer by usb debug port.
435 
436   @param  DebugPortRegister        Pointer to the base address of usb debug port register interface.
437   @param  SetupPacket              The token PID for each USB transaction.
438   @param  Addr                     The usb device address for usb transaction.
439   @param  Ep                       The endpoint for usb transaction.
440   @param  Data                     Pointer to the buffer receiving data.
441   @param  DataLength               Number of bytes of the received data.
442 
443   @retval RETURN_SUCCESS           The IN transaction is executed successfully.
444   @retval RETURN_INVALID_PARAMETER The parameters passed in are invalid.
445   @retval RETURN_DEVICE_ERROR      The IN transaction comes across error.
446 
447 **/
448 RETURN_STATUS
449 EFIAPI
UsbDebugPortControlTransfer(IN USB_DEBUG_PORT_REGISTER * DebugPortRegister,IN USB_DEVICE_REQUEST * SetupPacket,IN UINT8 Addr,IN UINT8 Ep,OUT UINT8 * Data,IN OUT UINT8 * DataLength)450 UsbDebugPortControlTransfer (
451   IN      USB_DEBUG_PORT_REGISTER         *DebugPortRegister,
452   IN      USB_DEVICE_REQUEST              *SetupPacket,
453   IN      UINT8                           Addr,
454   IN      UINT8                           Ep,
455       OUT UINT8                           *Data,
456   IN  OUT UINT8                           *DataLength
457   )
458 {
459   RETURN_STATUS          Status;
460   UINT8                  Temp;
461   UINT8                  ReturnStatus[8];
462 
463   //
464   // Setup Phase
465   //
466   Status = UsbDebugPortOut(DebugPortRegister, (UINT8 *)SetupPacket, (UINT8)sizeof(USB_DEVICE_REQUEST), SETUP_PID, Addr, Ep, 0);
467   if (RETURN_ERROR(Status)) {
468     return Status;
469   }
470 
471   //
472   // Data Phase
473   //
474   if (DataLength != 0) {
475     if ((SetupPacket->RequestType & BIT7) != 0) {
476       //
477       // Get Data From Device
478       //
479       Status = UsbDebugPortIn(DebugPortRegister, Data, DataLength, INPUT_PID, Addr, Ep, 1);
480       if (RETURN_ERROR(Status)) {
481         return Status;
482       }
483     } else {
484       //
485       // Send Data To Device
486       //
487       Status = UsbDebugPortOut(DebugPortRegister, Data, *DataLength, OUTPUT_PID, Addr, Ep, 1);
488       if (RETURN_ERROR(Status)) {
489         return Status;
490       }
491     }
492   }
493 
494   //
495   // Status Phase
496   //
497   if ((SetupPacket->RequestType & BIT7) != 0) {
498     //
499     // For READ operation, Data Toggle in Status Phase Should be 1.
500     //
501     Status = UsbDebugPortOut(DebugPortRegister, NULL, 0, OUTPUT_PID, Addr, Ep, 1);
502   } else {
503     //
504     // For WRITE operation, Data Toggle in Status Phase Should be 1.
505     //
506     Status = UsbDebugPortIn(DebugPortRegister, ReturnStatus, &Temp, INPUT_PID, Addr, Ep, 1);
507   }
508 
509   return Status;
510 }
511 
512 /**
513   Check if it needs to re-initialize usb debug port hardware.
514 
515   During different phases switch, such as SEC to PEI or PEI to DXE or DXE to SMM, we should check
516   whether the usb debug port hardware configuration is changed. Such case can be triggered by
517   Pci bus resource allocation and so on.
518 
519   @param  Handle           Debug port handle.
520 
521   @retval TRUE             The usb debug port hardware configuration is changed.
522   @retval FALSE            The usb debug port hardware configuration is not changed.
523 
524 **/
525 BOOLEAN
526 EFIAPI
NeedReinitializeHardware(IN USB_DEBUG_PORT_HANDLE * Handle)527 NeedReinitializeHardware(
528   IN USB_DEBUG_PORT_HANDLE *Handle
529   )
530 {
531   UINT16                  PciCmd;
532   UINT32                  UsbDebugPortMemoryBase;
533   UINT32                  EhciMemoryBase;
534   BOOLEAN                 Status;
535   USB_DEBUG_PORT_REGISTER *UsbDebugPortRegister;
536 
537   Status = FALSE;
538 
539   EhciMemoryBase = 0xFFFFFC00 & PciRead32(PcdGet32(PcdUsbEhciPciAddress) + PCI_BASE_ADDRESSREG_OFFSET);
540   if (EhciMemoryBase != Handle->EhciMemoryBase) {
541     Handle->EhciMemoryBase = EhciMemoryBase;
542     Status = TRUE;
543   }
544 
545   UsbDebugPortMemoryBase = 0xFFFFFC00 & PciRead32(PcdGet32(PcdUsbEhciPciAddress) + PCI_BASE_ADDRESSREG_OFFSET + Handle->DebugPortBarNumber * 4);
546   if (UsbDebugPortMemoryBase != Handle->UsbDebugPortMemoryBase) {
547     Handle->UsbDebugPortMemoryBase = UsbDebugPortMemoryBase;
548     Status = TRUE;
549   }
550 
551   //
552   // Enable Ehci Memory Space Access
553   //
554   PciCmd    = PciRead16 (PcdGet32(PcdUsbEhciPciAddress) + PCI_COMMAND_OFFSET);
555   if (((PciCmd & EFI_PCI_COMMAND_MEMORY_SPACE) == 0) || ((PciCmd & EFI_PCI_COMMAND_BUS_MASTER) == 0)) {
556     PciCmd |= EFI_PCI_COMMAND_MEMORY_SPACE | EFI_PCI_COMMAND_BUS_MASTER;
557     PciWrite16(PcdGet32(PcdUsbEhciPciAddress) + PCI_COMMAND_OFFSET, PciCmd);
558     Status = TRUE;
559   }
560 
561   //
562   // If the owner and in_use bit is not set, it means system is doing cold/warm boot or EHCI host controller is reset by system software.
563   //
564   UsbDebugPortRegister = (USB_DEBUG_PORT_REGISTER *)((UINTN)Handle->UsbDebugPortMemoryBase + Handle->DebugPortOffset);
565   if ((MmioRead32((UINTN)&UsbDebugPortRegister->ControlStatus) & (USB_DEBUG_PORT_OWNER | USB_DEBUG_PORT_ENABLE | USB_DEBUG_PORT_IN_USE))
566        != (USB_DEBUG_PORT_OWNER | USB_DEBUG_PORT_ENABLE | USB_DEBUG_PORT_IN_USE)) {
567     Status = TRUE;
568   }
569 
570   if (Handle->Initialized == USBDBG_RESET) {
571     Status = TRUE;
572   } else if (Handle->Initialized != USBDBG_INIT_DONE) {
573     Status = TRUE;
574   }
575   return Status;
576 }
577 
578 /**
579   Initialize usb debug port hardware.
580 
581   1. reset ehci host controller.
582   2. set right port to debug port.
583   3. find a usb debug device is attached by getting debug device descriptor.
584   4. set address for the usb debug device.
585   5. configure the usb debug device to debug mode.
586 
587   @param  Handle           Debug port handle.
588 
589   @retval TRUE             The usb debug port hardware configuration is changed.
590   @retval FALSE            The usb debug port hardware configuration is not changed.
591 
592 **/
593 RETURN_STATUS
594 EFIAPI
InitializeUsbDebugHardware(IN USB_DEBUG_PORT_HANDLE * Handle)595 InitializeUsbDebugHardware (
596   IN USB_DEBUG_PORT_HANDLE *Handle
597 )
598 {
599   RETURN_STATUS             Status;
600   USB_DEBUG_PORT_REGISTER   *UsbDebugPortRegister;
601   USB_DEBUG_PORT_DESCRIPTOR UsbDebugPortDescriptor;
602   UINT32                    *PortStatus;
603   UINT32                    *UsbCmd;
604   UINT32                    *UsbStatus;
605   UINT32                    *UsbHCSParam;
606   UINT8                     DebugPortNumber;
607   UINT8                     Length;
608 
609   UsbDebugPortRegister = (USB_DEBUG_PORT_REGISTER *)((UINTN)Handle->UsbDebugPortMemoryBase + Handle->DebugPortOffset);
610   UsbHCSParam = (UINT32 *)((UINTN)Handle->EhciMemoryBase + 0x04);
611   UsbCmd      = (UINT32 *)((UINTN)Handle->EhciMemoryBase + 0x20);
612   UsbStatus   = (UINT32 *)((UINTN)Handle->EhciMemoryBase + 0x24);
613 
614   //
615   // Check if the debug port is enabled and owned by myself.
616   //
617   if (((MmioRead32((UINTN)&UsbDebugPortRegister->ControlStatus) & (USB_DEBUG_PORT_OWNER | USB_DEBUG_PORT_IN_USE))
618        != (USB_DEBUG_PORT_OWNER | USB_DEBUG_PORT_IN_USE)) || (Handle->Initialized == USBDBG_RESET)) {
619     DEBUG ((
620       EFI_D_INFO,
621       "UsbDbg: Need to reset the host controller. ControlStatus = %08x\n",
622       MmioRead32((UINTN)&UsbDebugPortRegister->ControlStatus)
623       ));
624     //
625     // If the host controller is halted, then reset and restart it.
626     //
627     if ((MmioRead32((UINTN)UsbStatus) & BIT12) != 0) {
628       DEBUG ((EFI_D_INFO, "UsbDbg: Reset the host controller.\n"));
629       //
630       // reset the host controller.
631       //
632       MmioOr32((UINTN)UsbCmd, BIT1);
633       //
634       // ensure that the host controller is reset.
635       //
636       while ((MmioRead32((UINTN)UsbCmd) & BIT1) != 0);
637 
638       MmioOr32((UINTN)UsbCmd, BIT0);
639       // ensure that the host controller is started (HALTED bit must be cleared)
640       while ((MmioRead32((UINTN)UsbStatus) & BIT12) != 0);
641     }
642 
643     //
644     // First get the ownership of port 0.
645     //
646     MmioOr32((UINTN)&UsbDebugPortRegister->ControlStatus, USB_DEBUG_PORT_OWNER | USB_DEBUG_PORT_IN_USE);
647 
648     MicroSecondDelay (200000);
649   }
650   //
651   // Find out which port is used as debug port.
652   //
653   DebugPortNumber = (UINT8)((MmioRead32((UINTN)UsbHCSParam) & 0x00F00000) >> 20);
654   //
655   // Should find a device is connected at debug port
656   //
657   PortStatus = (UINT32 *)((UINTN)Handle->EhciMemoryBase + 0x64 + (DebugPortNumber - 1) * 4);
658   if (!(MmioRead32((UINTN)PortStatus) & BIT0)) {
659     Handle->Initialized = USBDBG_NO_DEV;
660     return RETURN_NOT_FOUND;
661   }
662 
663   if (Handle->Initialized != USBDBG_INIT_DONE ||
664       (MmioRead32 ((UINTN) &UsbDebugPortRegister->ControlStatus) & USB_DEBUG_PORT_ENABLE) == 0) {
665     DEBUG ((EFI_D_INFO, "UsbDbg: Reset the debug port.\n"));
666     //
667     // Reset the debug port
668     //
669     MmioOr32((UINTN)PortStatus, BIT8);
670     MicroSecondDelay (500000);
671     MmioAnd32((UINTN)PortStatus, (UINT32)~BIT8);
672     while (MmioRead32((UINTN)PortStatus) & BIT8);
673 
674     //
675     // The port enabled bit should be set by HW.
676     //
677     if ((MmioRead32((UINTN)PortStatus) & BIT2) == 0) {
678       Handle->Initialized = USBDBG_NO_DBG_CAB;
679       return RETURN_DEVICE_ERROR;
680     }
681 
682     //
683     // Enable Usb Debug Port Capability
684     //
685     MmioOr32((UINTN)&UsbDebugPortRegister->ControlStatus, USB_DEBUG_PORT_ENABLE);
686 
687     //
688     // initialize the data toggle used by bulk in/out endpoint.
689     //
690     Handle->BulkInToggle  = 0;
691     Handle->BulkOutToggle = 0;
692 
693     //
694     // set usb debug device address as 0x7F.
695     //
696     Status = UsbDebugPortControlTransfer (UsbDebugPortRegister, &mDebugCommunicationLibUsbSetDebugAddress, 0x0, 0x0, NULL, NULL);
697     if (RETURN_ERROR(Status)) {
698       //
699       // The device can not work well.
700       //
701       Handle->Initialized = USBDBG_NO_DBG_CAB;
702       return Status;
703     }
704 
705     //
706     // Start to communicate with Usb Debug Device to see if the attached device is usb debug device or not.
707     //
708     Length = (UINT8)sizeof (USB_DEBUG_PORT_DESCRIPTOR);
709 
710     //
711     // Get debug descriptor.
712     //
713     Status = UsbDebugPortControlTransfer (UsbDebugPortRegister, &mDebugCommunicationLibUsbGetDebugDescriptor, 0x7F, 0x0, (UINT8*)&UsbDebugPortDescriptor, &Length);
714     if (RETURN_ERROR(Status)) {
715       //
716       // The device is not a usb debug device.
717       //
718       Handle->Initialized = USBDBG_NO_DBG_CAB;
719       return Status;
720     }
721 
722     if (Length != sizeof(USB_DEBUG_PORT_DESCRIPTOR)) {
723       Handle->Initialized = USBDBG_NO_DBG_CAB;
724       return RETURN_DEVICE_ERROR;
725     }
726 
727     //
728     // Determine the usb debug device endpoints.
729     //
730     Handle->InEndpoint  = UsbDebugPortDescriptor.DebugInEndpoint;
731     Handle->OutEndpoint = UsbDebugPortDescriptor.DebugOutEndpoint;
732 
733     //
734     // enable the usb debug feature.
735     //
736     Status = UsbDebugPortControlTransfer (UsbDebugPortRegister, &mDebugCommunicationLibUsbSetDebugFeature, 0x7F, 0x0, NULL, NULL);
737     if (RETURN_ERROR(Status)) {
738       //
739       // The device can not work well.
740       //
741       Handle->Initialized = USBDBG_NO_DBG_CAB;
742       return Status;
743     }
744 
745     Handle->Initialized = USBDBG_DBG_CAB;
746   }
747 
748   //
749   // Set initialized flag
750   //
751   Handle->Initialized = USBDBG_INIT_DONE;
752 
753   return RETURN_SUCCESS;
754 }
755 
756 /**
757   Read data from debug device and save the datas in buffer.
758 
759   Reads NumberOfBytes data bytes from a debug device into the buffer
760   specified by Buffer. The number of bytes actually read is returned.
761   If the return value is less than NumberOfBytes, then the rest operation failed.
762   If NumberOfBytes is zero, then return 0.
763 
764   @param  Handle           Debug port handle.
765   @param  Buffer           Pointer to the data buffer to store the data read from the debug device.
766   @param  NumberOfBytes    Number of bytes which will be read.
767   @param  Timeout          Timeout value for reading from debug device. It unit is Microsecond.
768 
769   @retval 0                Read data failed, no data is to be read.
770   @retval >0               Actual number of bytes read from debug device.
771 
772 **/
773 UINTN
774 EFIAPI
DebugPortReadBuffer(IN DEBUG_PORT_HANDLE Handle,IN UINT8 * Buffer,IN UINTN NumberOfBytes,IN UINTN Timeout)775 DebugPortReadBuffer (
776   IN   DEBUG_PORT_HANDLE    Handle,
777   IN   UINT8                *Buffer,
778   IN   UINTN                NumberOfBytes,
779   IN   UINTN                Timeout
780   )
781 {
782   USB_DEBUG_PORT_HANDLE     *UsbDebugPortHandle;
783   RETURN_STATUS             Status;
784   UINT8                     Index;
785 
786   if (NumberOfBytes != 1 || Buffer == NULL || Timeout != 0) {
787     return 0;
788   }
789 
790   //
791   // If Handle is NULL, it means memory is ready for use.
792   // Use global variable to store handle value.
793   //
794   if (Handle == NULL) {
795     UsbDebugPortHandle = &mDebugCommunicationLibUsbDebugPortHandle;
796   } else {
797     UsbDebugPortHandle = (USB_DEBUG_PORT_HANDLE *)Handle;
798   }
799 
800   if (NeedReinitializeHardware(UsbDebugPortHandle)) {
801     Status = InitializeUsbDebugHardware (UsbDebugPortHandle);
802     if (RETURN_ERROR(Status)) {
803       return 0;
804     }
805   }
806 
807   //
808   // Read data from buffer
809   //
810   if (UsbDebugPortHandle->DataCount < 1) {
811     return 0;
812   } else {
813     *Buffer = UsbDebugPortHandle->Data[0];
814     for (Index = 0; Index < UsbDebugPortHandle->DataCount - 1; Index++) {
815       if ((Index + 1) >= USB_DEBUG_PORT_MAX_PACKET_SIZE) {
816         return 0;
817       }
818       UsbDebugPortHandle->Data[Index] = UsbDebugPortHandle->Data[Index + 1];
819     }
820     UsbDebugPortHandle->DataCount = (UINT8)(UsbDebugPortHandle->DataCount - 1);
821     return 1;
822   }
823 }
824 
825 /**
826   Write data from buffer to debug device.
827 
828   Writes NumberOfBytes data bytes from Buffer to the debug device.
829   The number of bytes actually written to the debug device is returned.
830   If the return value is less than NumberOfBytes, then the write operation failed.
831   If NumberOfBytes is zero, then return 0.
832 
833   @param  Handle           Debug port handle.
834   @param  Buffer           Pointer to the data buffer to be written.
835   @param  NumberOfBytes    Number of bytes to written to the debug device.
836 
837   @retval 0                NumberOfBytes is 0.
838   @retval >0               The number of bytes written to the debug device.
839                            If this value is less than NumberOfBytes, then the read operation failed.
840 
841 **/
842 UINTN
843 EFIAPI
DebugPortWriteBuffer(IN DEBUG_PORT_HANDLE Handle,IN UINT8 * Buffer,IN UINTN NumberOfBytes)844 DebugPortWriteBuffer (
845   IN   DEBUG_PORT_HANDLE    Handle,
846   IN   UINT8                *Buffer,
847   IN   UINTN                NumberOfBytes
848   )
849 {
850   USB_DEBUG_PORT_HANDLE     *UsbDebugPortHandle;
851   USB_DEBUG_PORT_REGISTER   *UsbDebugPortRegister;
852   RETURN_STATUS             Status;
853   UINT8                     Sent;
854   UINTN                     Total;
855   UINT8                     ReceivedPid;
856 
857   if (NumberOfBytes == 0 || Buffer == NULL) {
858     return 0;
859   }
860 
861   Sent  = 0;
862   Total = 0;
863 
864   //
865   // If Handle is NULL, it means memory is ready for use.
866   // Use global variable to store handle value.
867   //
868   if (Handle == NULL) {
869     UsbDebugPortHandle = &mDebugCommunicationLibUsbDebugPortHandle;
870   } else {
871     UsbDebugPortHandle = (USB_DEBUG_PORT_HANDLE *)Handle;
872   }
873 
874   if (NeedReinitializeHardware(UsbDebugPortHandle)) {
875     Status = InitializeUsbDebugHardware (UsbDebugPortHandle);
876     if (RETURN_ERROR(Status)) {
877       return 0;
878     }
879   }
880 
881   UsbDebugPortRegister = (USB_DEBUG_PORT_REGISTER *)((UINTN)UsbDebugPortHandle->UsbDebugPortMemoryBase + UsbDebugPortHandle->DebugPortOffset);
882 
883   while ((Total < NumberOfBytes)) {
884     if (NumberOfBytes - Total > USB_DEBUG_PORT_MAX_PACKET_SIZE) {
885       Sent = USB_DEBUG_PORT_MAX_PACKET_SIZE;
886     } else {
887       Sent = (UINT8)(NumberOfBytes - Total);
888     }
889 
890     Status = UsbDebugPortOut(UsbDebugPortRegister, Buffer + Total, Sent, OUTPUT_PID, 0x7F, UsbDebugPortHandle->OutEndpoint, UsbDebugPortHandle->BulkOutToggle);
891 
892     if (RETURN_ERROR(Status)) {
893       return Total;
894     }
895 
896     ReceivedPid = (MmioRead8((UINTN)&UsbDebugPortRegister->ReceivedPid));
897     //
898     // If received a NAK_PID on write transaction, it means the usb debug device is busy and can not handle this transaction.
899     // should send the packet again.
900     //
901     if (ReceivedPid == NAK_PID) {
902       Sent = 0;
903     } else {
904       UsbDebugPortHandle->BulkOutToggle ^= 1;
905     }
906     Total += Sent;
907   }
908   return Total;
909 }
910 
911 /**
912   Polls a debug device to see if there is any data waiting to be read.
913 
914   Polls a debug device to see if there is any data waiting to be read.
915   If there is data waiting to be read from the debug device, then TRUE is returned.
916   If there is no data waiting to be read from the debug device, then FALSE is returned.
917 
918   @param  Handle           Debug port handle.
919 
920   @retval TRUE             Data is waiting to be read from the debug device.
921   @retval FALSE            There is no data waiting to be read from the serial device.
922 
923 **/
924 BOOLEAN
925 EFIAPI
DebugPortPollBuffer(IN DEBUG_PORT_HANDLE Handle)926 DebugPortPollBuffer (
927   IN DEBUG_PORT_HANDLE      Handle
928   )
929 {
930   USB_DEBUG_PORT_HANDLE     *UsbDebugPortHandle;
931   USB_DEBUG_PORT_REGISTER   *UsbDebugPortRegister;
932   UINT8                     Length;
933   UINT8                     Index;
934   RETURN_STATUS             Status;
935 
936   //
937   // If Handle is NULL, it means memory is ready for use.
938   // Use global variable to store handle value.
939   //
940   if (Handle == NULL) {
941     UsbDebugPortHandle = &mDebugCommunicationLibUsbDebugPortHandle;
942   } else {
943     UsbDebugPortHandle = (USB_DEBUG_PORT_HANDLE *)Handle;
944   }
945 
946   if (NeedReinitializeHardware(UsbDebugPortHandle)) {
947     Status = InitializeUsbDebugHardware(UsbDebugPortHandle);
948     if (RETURN_ERROR(Status)) {
949       return FALSE;
950     }
951   }
952 
953   //
954   // If the data buffer is not empty, then return TRUE directly.
955   // else initialize a usb read transaction and read data to the data buffer.
956   //
957   if (UsbDebugPortHandle->DataCount != 0) {
958     return TRUE;
959   }
960 
961   UsbDebugPortRegister = (USB_DEBUG_PORT_REGISTER *)((UINTN)UsbDebugPortHandle->UsbDebugPortMemoryBase + UsbDebugPortHandle->DebugPortOffset);
962 
963   UsbDebugPortRegister->TokenPid = INPUT_PID;
964   if (UsbDebugPortHandle->BulkInToggle == 0) {
965     UsbDebugPortRegister->SendPid  = DATA0_PID;
966   } else {
967     UsbDebugPortRegister->SendPid  = DATA1_PID;
968   }
969   UsbDebugPortRegister->UsbAddress  = 0x7F;
970   UsbDebugPortRegister->UsbEndPoint = UsbDebugPortHandle->InEndpoint & 0x0F;
971 
972   //
973   // Clearing W/R bit to indicate it's a READ operation
974   //
975   MmioAnd32((UINTN)&UsbDebugPortRegister->ControlStatus, (UINT32)~BIT4);
976   //
977   // Setting GO bit as well as clearing DONE bit
978   //
979   MmioOr32((UINTN)&UsbDebugPortRegister->ControlStatus, (UINT32)BIT5);
980 
981   //
982   // Wait for completing the request
983   //
984   while ((MmioRead32((UINTN)&UsbDebugPortRegister->ControlStatus) & (UINT32)BIT16) == 0) {
985     if ((MmioRead32((UINTN)&UsbDebugPortRegister->ControlStatus) & (USB_DEBUG_PORT_OWNER | USB_DEBUG_PORT_IN_USE | USB_DEBUG_PORT_ENABLE))
986        != (USB_DEBUG_PORT_OWNER | USB_DEBUG_PORT_IN_USE | USB_DEBUG_PORT_ENABLE)) {
987       return FALSE;
988     }
989   }
990 
991   if ((MmioRead32((UINTN)&UsbDebugPortRegister->ControlStatus)) & BIT6) {
992     return FALSE;
993   }
994 
995   Length = (UINT8)(MmioRead32((UINTN)&UsbDebugPortRegister->ControlStatus) & 0xF);
996 
997   if (Length > 8) {
998     return FALSE;
999   }
1000 
1001   UsbDebugPortHandle->BulkInToggle ^= 1;
1002 
1003   if (Length == 0) {
1004     return FALSE;
1005   }
1006 
1007   for (Index = 0; Index < Length; Index++) {
1008     UsbDebugPortHandle->Data[Index] = UsbDebugPortRegister->DataBuffer[Index];
1009   }
1010   UsbDebugPortHandle->DataCount = Length;
1011 
1012   return TRUE;
1013 }
1014 
1015 /**
1016   Initialize the debug port.
1017 
1018   If Function is not NULL, Debug Communication Library will call this function
1019   by passing in the Context to be the first parameter. If needed, Debug Communication
1020   Library will create one debug port handle to be the second argument passing in
1021   calling the Function, otherwise it will pass NULL to be the second argument of
1022   Function.
1023 
1024   If Function is NULL, and Context is not NULL, the Debug Communication Library could
1025     a) Return the same handle as passed in (as Context parameter).
1026     b) Ignore the input Context parameter and create new handle to be returned.
1027 
1028   If parameter Function is NULL and Context is NULL, Debug Communication Library could
1029   created a new handle if needed and return it, otherwise it will return NULL.
1030 
1031   @param[in] Context      Context needed by callback function; it was optional.
1032   @param[in] Function     Continue function called by Debug Communication library;
1033                           it was optional.
1034 
1035   @return  The debug port handle created by Debug Communication Library if Function
1036            is not NULL.
1037 
1038 **/
1039 DEBUG_PORT_HANDLE
1040 EFIAPI
DebugPortInitialize(IN VOID * Context,IN DEBUG_PORT_CONTINUE Function)1041 DebugPortInitialize (
1042   IN VOID                 *Context,
1043   IN DEBUG_PORT_CONTINUE  Function
1044   )
1045 {
1046   RETURN_STATUS             Status;
1047   USB_DEBUG_PORT_HANDLE     Handle;
1048 
1049   //
1050   // Validate the PCD PcdDebugPortHandleBufferSize value
1051   //
1052   ASSERT (PcdGet16 (PcdDebugPortHandleBufferSize) == sizeof (USB_DEBUG_PORT_HANDLE));
1053 
1054   if (Function == NULL && Context != NULL) {
1055     return (DEBUG_PORT_HANDLE *) Context;
1056   }
1057   ZeroMem(&Handle, sizeof (USB_DEBUG_PORT_HANDLE));
1058 
1059   Status = CalculateUsbDebugPortBar(&Handle.DebugPortOffset, &Handle.DebugPortBarNumber);
1060   if (RETURN_ERROR (Status)) {
1061     DEBUG ((EFI_D_ERROR, "UsbDbg: the pci device pointed by PcdUsbEhciPciAddress is not EHCI host controller or does not support debug port capability!\n"));
1062     goto Exit;
1063   }
1064 
1065   Handle.EhciMemoryBase = 0xFFFFFC00 & PciRead32(PcdGet32(PcdUsbEhciPciAddress) + PCI_BASE_ADDRESSREG_OFFSET);
1066 
1067   if (Handle.EhciMemoryBase == 0) {
1068     //
1069     // Usb Debug Port MMIO Space Is Not Enabled. Assumption here that DebugPortBase is zero
1070     //
1071     PciWrite32(PcdGet32(PcdUsbEhciPciAddress) + PCI_BASE_ADDRESSREG_OFFSET, PcdGet32(PcdUsbEhciMemorySpaceBase));
1072     Handle.EhciMemoryBase = 0xFFFFFC00 & PciRead32(PcdGet32(PcdUsbEhciPciAddress) + PCI_BASE_ADDRESSREG_OFFSET);
1073   }
1074 
1075   Handle.UsbDebugPortMemoryBase = 0xFFFFFC00 & PciRead32(PcdGet32(PcdUsbEhciPciAddress) + PCI_BASE_ADDRESSREG_OFFSET + Handle.DebugPortBarNumber * 4);
1076 
1077   if (Handle.UsbDebugPortMemoryBase == 0) {
1078     //
1079     // Usb Debug Port MMIO Space Is Not Enabled. Assumption here that DebugPortBase is zero
1080     //
1081     PciWrite32(PcdGet32(PcdUsbEhciPciAddress) + PCI_BASE_ADDRESSREG_OFFSET + Handle.DebugPortBarNumber * 4, PcdGet32(PcdUsbDebugPortMemorySpaceBase));
1082     Handle.UsbDebugPortMemoryBase = 0xFFFFFC00 & PciRead32(PcdGet32(PcdUsbEhciPciAddress) + PCI_BASE_ADDRESSREG_OFFSET + Handle.DebugPortBarNumber * 4);
1083   }
1084 
1085   Handle.Initialized = USBDBG_RESET;
1086 
1087   if (NeedReinitializeHardware(&Handle)) {
1088     DEBUG ((EFI_D_ERROR, "UsbDbg: Start EHCI debug port initialization!\n"));
1089     Status = InitializeUsbDebugHardware (&Handle);
1090     if (RETURN_ERROR(Status)) {
1091       DEBUG ((EFI_D_ERROR, "UsbDbg: Failed, please check if USB debug cable is plugged into EHCI debug port correctly!\n"));
1092       goto Exit;
1093     }
1094   }
1095 
1096 Exit:
1097 
1098   if (Function != NULL) {
1099     Function (Context, &Handle);
1100   } else {
1101     CopyMem(&mDebugCommunicationLibUsbDebugPortHandle, &Handle, sizeof (USB_DEBUG_PORT_HANDLE));
1102   }
1103 
1104   return (DEBUG_PORT_HANDLE)(UINTN)&mDebugCommunicationLibUsbDebugPortHandle;
1105 }
1106 
1107