3 Copyright (C) Dean Camera, 2009.
5 dean [at] fourwalledcubicle [dot] com
6 www.fourwalledcubicle.com
10 Copyright 2009 Dean Camera (dean [at] fourwalledcubicle [dot] com)
12 Permission to use, copy, modify, and distribute this software
13 and its documentation for any purpose and without fee is hereby
14 granted, provided that the above copyright notice appear in all
15 copies and that both that the copyright notice and this
16 permission notice and warranty disclaimer appear in supporting
17 documentation, and that the name of the author not be used in
18 advertising or publicity pertaining to distribution of the
19 software without specific, written prior permission.
21 The author disclaim all warranties with regard to this
22 software, including all implied warranties of merchantability
23 and fitness. In no event shall the author be liable for any
24 special, indirect or consequential damages or any damages
25 whatsoever resulting from loss of use, data or profits, whether
26 in an action of contract, negligence or other tortious action,
27 arising out of or in connection with the use or performance of
33 * Main source file for the KeyboardHostWithParser demo. This file contains the main tasks of
34 * the demo and is responsible for the initial application hardware configuration.
37 #include "KeyboardHostWithParser.h"
39 /** Main program entry point. This routine configures the hardware required by the application, then
40 * starts the scheduler to run the application tasks.
46 puts_P(PSTR(ESC_FG_CYAN
"Keyboard HID Parser Host Demo running.\r\n" ESC_FG_WHITE
));
48 LEDs_SetAllLEDs(LEDMASK_USB_NOTREADY
);
57 /** Configures the board hardware and chip peripherals for the demo's functionality. */
58 void SetupHardware(void)
60 /* Disable watchdog if enabled by bootloader/fuses */
61 MCUSR
&= ~(1 << WDRF
);
64 /* Disable clock division */
65 clock_prescale_set(clock_div_1
);
67 /* Hardware Initialization */
68 SerialStream_Init(9600, false);
73 /** Event handler for the USB_DeviceAttached event. This indicates that a device has been attached to the host, and
74 * starts the library USB task to begin the enumeration and USB management process.
76 void EVENT_USB_Host_DeviceAttached(void)
78 puts_P(PSTR(ESC_FG_GREEN
"Device Attached.\r\n" ESC_FG_WHITE
));
79 LEDs_SetAllLEDs(LEDMASK_USB_ENUMERATING
);
82 /** Event handler for the USB_DeviceUnattached event. This indicates that a device has been removed from the host, and
83 * stops the library USB task management process.
85 void EVENT_USB_Host_DeviceUnattached(void)
87 puts_P(PSTR(ESC_FG_GREEN
"\r\nDevice Unattached.\r\n" ESC_FG_WHITE
));
88 LEDs_SetAllLEDs(LEDMASK_USB_NOTREADY
);
91 /** Event handler for the USB_DeviceEnumerationComplete event. This indicates that a device has been successfully
92 * enumerated by the host and is now ready to be used by the application.
94 void EVENT_USB_Host_DeviceEnumerationComplete(void)
96 LEDs_SetAllLEDs(LEDMASK_USB_READY
);
99 /** Event handler for the USB_HostError event. This indicates that a hardware error occurred while in host mode. */
100 void EVENT_USB_Host_HostError(const uint8_t ErrorCode
)
104 puts_P(PSTR(ESC_FG_RED
"Host Mode Error\r\n"));
105 printf_P(PSTR(" -- Error Code %d\r\n" ESC_FG_WHITE
), ErrorCode
);
107 LEDs_SetAllLEDs(LEDMASK_USB_ERROR
);
111 /** Event handler for the USB_DeviceEnumerationFailed event. This indicates that a problem occurred while
112 * enumerating an attached USB device.
114 void EVENT_USB_Host_DeviceEnumerationFailed(const uint8_t ErrorCode
, const uint8_t SubErrorCode
)
116 puts_P(PSTR(ESC_FG_RED
"Dev Enum Error\r\n"));
117 printf_P(PSTR(" -- Error Code %d\r\n"), ErrorCode
);
118 printf_P(PSTR(" -- Sub Error Code %d\r\n"), SubErrorCode
);
119 printf_P(PSTR(" -- In State %d\r\n" ESC_FG_WHITE
), USB_HostState
);
121 LEDs_SetAllLEDs(LEDMASK_USB_ERROR
);
124 /** Task to set the configuration of the attached device after it has been enumerated, and to read and process
125 * the HID report descriptor and HID reports from the device and display the results onto the board LEDs.
127 void Keyboard_HID_Task(void)
131 switch (USB_HostState
)
133 case HOST_STATE_Addressed
:
134 puts_P(PSTR("Getting Config Data.\r\n"));
136 /* Get and process the configuration descriptor data */
137 if ((ErrorCode
= ProcessConfigurationDescriptor()) != SuccessfulConfigRead
)
139 if (ErrorCode
== ControlError
)
140 puts_P(PSTR(ESC_FG_RED
"Control Error (Get Configuration).\r\n"));
142 puts_P(PSTR(ESC_FG_RED
"Invalid Device.\r\n"));
144 printf_P(PSTR(" -- Error Code: %d\r\n" ESC_FG_WHITE
), ErrorCode
);
146 /* Indicate error via status LEDs */
147 LEDs_SetAllLEDs(LEDMASK_USB_ERROR
);
149 /* Wait until USB device disconnected */
150 USB_HostState
= HOST_STATE_WaitForDeviceRemoval
;
154 /* Set the device configuration to the first configuration (rarely do devices use multiple configurations) */
155 if ((ErrorCode
= USB_Host_SetDeviceConfiguration(1)) != HOST_SENDCONTROL_Successful
)
158 puts_P(PSTR(ESC_FG_RED
"Control Error (Set Configuration).\r\n"));
159 printf_P(PSTR(" -- Error Code: %d\r\n" ESC_FG_WHITE
), ErrorCode
);
161 /* Indicate error via status LEDs */
162 LEDs_SetAllLEDs(LEDMASK_USB_ERROR
);
164 /* Wait until USB device disconnected */
165 USB_HostState
= HOST_STATE_WaitForDeviceRemoval
;
169 puts_P(PSTR("Processing HID Report.\r\n"));
171 /* Get and process the device's first HID report descriptor */
172 if ((ErrorCode
= GetHIDReportData()) != ParseSuccessful
)
174 puts_P(PSTR(ESC_FG_RED
"Report Parse Error.\r\n"));
175 printf_P(PSTR(" -- Error Code: %d\r\n" ESC_FG_WHITE
), ErrorCode
);
177 /* Indicate error via status LEDs */
178 LEDs_SetAllLEDs(LEDMASK_USB_ERROR
);
180 /* Wait until USB device disconnected */
181 USB_HostState
= HOST_STATE_WaitForDeviceRemoval
;
185 puts_P(PSTR("Keyboard Enumerated.\r\n"));
187 USB_HostState
= HOST_STATE_Configured
;
189 case HOST_STATE_Configured
:
190 /* Select and unfreeze keyboard data pipe */
191 Pipe_SelectPipe(KEYBOARD_DATAPIPE
);
194 /* Check to see if a packet has been received */
195 if (Pipe_IsINReceived())
197 /* Check if data has been received from the attached keyboard */
198 if (Pipe_IsReadWriteAllowed())
200 /* Create buffer big enough for the report */
201 uint8_t KeyboardReport
[Pipe_BytesInPipe()];
203 /* Load in the keyboard report */
204 Pipe_Read_Stream_LE(KeyboardReport
, Pipe_BytesInPipe());
206 /* Process the read in keyboard report from the device */
207 ProcessKeyboardReport(KeyboardReport
);
210 /* Clear the IN endpoint, ready for next data packet */
214 /* Freeze keyboard data pipe */
220 /** Processes a read HID report from an attached keyboard, extracting out elements via the HID parser results
221 * as required and prints pressed characters to the serial port. Each time a key is typed, a board LED is toggled.
223 * \param[in] KeyboardReport Pointer to a HID report from an attached keyboard device
225 void ProcessKeyboardReport(uint8_t* KeyboardReport
)
227 /* Check each HID report item in turn, looking for keyboard scan code reports */
228 for (uint8_t ReportNumber
= 0; ReportNumber
< HIDReportInfo
.TotalReportItems
; ReportNumber
++)
230 /* Create a temporary item pointer to the next report item */
231 HID_ReportItem_t
* ReportItem
= &HIDReportInfo
.ReportItems
[ReportNumber
];
233 /* Check if the current report item is a keyboard scancode */
234 if ((ReportItem
->Attributes
.Usage
.Page
== USAGE_PAGE_KEYBOARD
) &&
235 (ReportItem
->Attributes
.BitSize
== 8) &&
236 (ReportItem
->Attributes
.Logical
.Maximum
> 1) &&
237 (ReportItem
->ItemType
== REPORT_ITEM_TYPE_In
))
239 /* Retrieve the keyboard scancode from the report data retrieved from the device */
240 bool FoundData
= USB_GetHIDReportItemInfo(KeyboardReport
, ReportItem
);
242 /* For multi-report devices - if the requested data was not in the issued report, continue */
246 /* Key code is an unsigned char in length, cast to the appropriate type */
247 uint8_t KeyCode
= (uint8_t)ReportItem
->Value
;
249 /* If scancode is non-zero, a key is being pressed */
252 /* Toggle status LED to indicate keypress */
253 LEDs_ToggleLEDs(LEDS_LED2
);
257 /* Convert scancode to printable character if alphanumeric */
258 if ((KeyCode
>= 0x04) && (KeyCode
<= 0x1D))
259 PressedKey
= (KeyCode
- 0x04) + 'A';
260 else if ((KeyCode
>= 0x1E) && (KeyCode
<= 0x27))
261 PressedKey
= (KeyCode
- 0x1E) + '0';
262 else if (KeyCode
== 0x2C)
264 else if (KeyCode
== 0x28)
267 /* Print the pressed key character out through the serial port if valid */
272 /* Once a scancode is found, stop scanning through the report items */