]> git.gir.st - tmk_keyboard.git/blob - tmk_core/protocol/lufa/LUFA-git/Bootloaders/MassStorage/BootloaderMassStorage.c
Merge commit '20b787fc1284176834cbe7ca2134e4b36bec5828'
[tmk_keyboard.git] / tmk_core / protocol / lufa / LUFA-git / Bootloaders / MassStorage / BootloaderMassStorage.c
1 /*
2 LUFA Library
3 Copyright (C) Dean Camera, 2014.
4
5 dean [at] fourwalledcubicle [dot] com
6 www.lufa-lib.org
7 */
8
9 /*
10 Copyright 2014 Dean Camera (dean [at] fourwalledcubicle [dot] com)
11
12 Permission to use, copy, modify, distribute, and sell this
13 software and its documentation for any purpose is hereby granted
14 without fee, provided that the above copyright notice appear in
15 all 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.
20
21 The author disclaims 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
28 this software.
29 */
30
31 /** \file
32 *
33 * Main source file for the Mass Storage class bootloader. This file contains the complete bootloader logic.
34 */
35
36 #define INCLUDE_FROM_BOOTLOADER_MASSSTORAGE_C
37 #include "BootloaderMassStorage.h"
38
39 /** LUFA Mass Storage Class driver interface configuration and state information. This structure is
40 * passed to all Mass Storage Class driver functions, so that multiple instances of the same class
41 * within a device can be differentiated from one another.
42 */
43 USB_ClassInfo_MS_Device_t Disk_MS_Interface =
44 {
45 .Config =
46 {
47 .InterfaceNumber = INTERFACE_ID_MassStorage,
48 .DataINEndpoint =
49 {
50 .Address = MASS_STORAGE_IN_EPADDR,
51 .Size = MASS_STORAGE_IO_EPSIZE,
52 .Banks = 1,
53 },
54 .DataOUTEndpoint =
55 {
56 .Address = MASS_STORAGE_OUT_EPADDR,
57 .Size = MASS_STORAGE_IO_EPSIZE,
58 .Banks = 1,
59 },
60 .TotalLUNs = 1,
61 },
62 };
63
64 /** Flag to indicate if the bootloader should be running, or should exit and allow the application code to run
65 * via a soft reset. When cleared, the bootloader will abort, the USB interface will shut down and the application
66 * started via a forced watchdog reset.
67 */
68 bool RunBootloader = true;
69
70 /** Magic lock for forced application start. If the HWBE fuse is programmed and BOOTRST is unprogrammed, the bootloader
71 * will start if the /HWB line of the AVR is held low and the system is reset. However, if the /HWB line is still held
72 * low when the application attempts to start via a watchdog reset, the bootloader will re-start. If set to the value
73 * \ref MAGIC_BOOT_KEY the special init function \ref Application_Jump_Check() will force the application to start.
74 */
75 uint16_t MagicBootKey ATTR_NO_INIT;
76
77 /** Indicates if the bootloader is allowed to exit immediately if \ref RunBootloader is \c false. During shutdown all
78 * pending commands must be processed before jumping to the user-application, thus this tracks the main program loop
79 * iterations since a SCSI command from the host was received.
80 */
81 static uint8_t TicksSinceLastCommand = 0;
82
83
84 /** Special startup routine to check if the bootloader was started via a watchdog reset, and if the magic application
85 * start key has been loaded into \ref MagicBootKey. If the bootloader started via the watchdog and the key is valid,
86 * this will force the user application to start via a software jump.
87 */
88 void Application_Jump_Check(void)
89 {
90 bool JumpToApplication = false;
91
92 #if (BOARD == BOARD_LEONARDO)
93 /* Enable pull-up on the IO13 pin so we can use it to select the mode */
94 PORTC |= (1 << 7);
95 Delay_MS(10);
96
97 /* If IO13 is not jumpered to ground, start the user application instead */
98 JumpToApplication |= ((PINC & (1 << 7)) != 0);
99
100 /* Disable pull-up after the check has completed */
101 PORTC &= ~(1 << 7);
102 #elif ((BOARD == BOARD_XPLAIN) || (BOARD == BOARD_XPLAIN_REV1))
103 /* Disable JTAG debugging */
104 JTAG_DISABLE();
105
106 /* Enable pull-up on the JTAG TCK pin so we can use it to select the mode */
107 PORTF |= (1 << 4);
108 Delay_MS(10);
109
110 /* If the TCK pin is not jumpered to ground, start the user application instead */
111 JumpToApplication |= ((PINF & (1 << 4)) != 0);
112
113 /* Re-enable JTAG debugging */
114 JTAG_ENABLE();
115 #endif
116
117 /* If the reset source was the bootloader and the key is correct, clear it and jump to the application */
118 if ((MCUSR & (1 << WDRF)) && (MagicBootKey == MAGIC_BOOT_KEY))
119 {
120 MagicBootKey = 0;
121 JumpToApplication = true;
122 }
123
124 if (JumpToApplication)
125 {
126 // cppcheck-suppress constStatement
127 ((void (*)(void))0x0000)();
128 }
129 }
130
131 /** Main program entry point. This routine configures the hardware required by the application, then
132 * enters a loop to run the application tasks in sequence.
133 */
134 int main(void)
135 {
136 SetupHardware();
137
138 LEDs_SetAllLEDs(LEDMASK_USB_NOTREADY);
139 GlobalInterruptEnable();
140
141 while (RunBootloader || TicksSinceLastCommand++ < 0xFF)
142 {
143 MS_Device_USBTask(&Disk_MS_Interface);
144 USB_USBTask();
145 }
146
147 /* Disconnect from the host - USB interface will be reset later along with the AVR */
148 USB_Detach();
149
150 /* Unlock the forced application start mode of the bootloader if it is restarted */
151 MagicBootKey = MAGIC_BOOT_KEY;
152
153 /* Enable the watchdog and force a timeout to reset the AVR */
154 wdt_enable(WDTO_250MS);
155
156 for (;;);
157 }
158
159 /** Configures the board hardware and chip peripherals for the demo's functionality. */
160 static void SetupHardware(void)
161 {
162 /* Disable watchdog if enabled by bootloader/fuses */
163 MCUSR &= ~(1 << WDRF);
164 wdt_disable();
165
166 /* Disable clock division */
167 clock_prescale_set(clock_div_1);
168
169 /* Relocate the interrupt vector table to the bootloader section */
170 MCUCR = (1 << IVCE);
171 MCUCR = (1 << IVSEL);
172
173 /* Hardware Initialization */
174 LEDs_Init();
175 USB_Init();
176
177 /* Bootloader active LED toggle timer initialization */
178 TIMSK1 = (1 << TOIE1);
179 TCCR1B = ((1 << CS11) | (1 << CS10));
180 }
181
182 /** ISR to periodically toggle the LEDs on the board to indicate that the bootloader is active. */
183 ISR(TIMER1_OVF_vect, ISR_BLOCK)
184 {
185 LEDs_ToggleLEDs(LEDS_LED1 | LEDS_LED2);
186 }
187
188 /** Event handler for the USB_Connect event. This indicates that the device is enumerating via the status LEDs. */
189 void EVENT_USB_Device_Connect(void)
190 {
191 /* Indicate USB enumerating */
192 LEDs_SetAllLEDs(LEDMASK_USB_ENUMERATING);
193 }
194
195 /** Event handler for the USB_Disconnect event. This indicates that the device is no longer connected to a host via
196 * the status LEDs and stops the Mass Storage management task.
197 */
198 void EVENT_USB_Device_Disconnect(void)
199 {
200 /* Indicate USB not ready */
201 LEDs_SetAllLEDs(LEDMASK_USB_NOTREADY);
202 }
203
204 /** Event handler for the library USB Configuration Changed event. */
205 void EVENT_USB_Device_ConfigurationChanged(void)
206 {
207 bool ConfigSuccess = true;
208
209 /* Setup Mass Storage Data Endpoints */
210 ConfigSuccess &= MS_Device_ConfigureEndpoints(&Disk_MS_Interface);
211
212 /* Indicate endpoint configuration success or failure */
213 LEDs_SetAllLEDs(ConfigSuccess ? LEDMASK_USB_READY : LEDMASK_USB_ERROR);
214 }
215
216 /** Event handler for the library USB Control Request reception event. */
217 void EVENT_USB_Device_ControlRequest(void)
218 {
219 MS_Device_ProcessControlRequest(&Disk_MS_Interface);
220 }
221
222 /** Mass Storage class driver callback function the reception of SCSI commands from the host, which must be processed.
223 *
224 * \param[in] MSInterfaceInfo Pointer to the Mass Storage class interface configuration structure being referenced
225 */
226 bool CALLBACK_MS_Device_SCSICommandReceived(USB_ClassInfo_MS_Device_t* const MSInterfaceInfo)
227 {
228 bool CommandSuccess;
229
230 LEDs_SetAllLEDs(LEDMASK_USB_BUSY);
231 CommandSuccess = SCSI_DecodeSCSICommand(MSInterfaceInfo);
232 LEDs_SetAllLEDs(LEDMASK_USB_READY);
233
234 /* Signal that a command was processed, must not exit bootloader yet */
235 TicksSinceLastCommand = 0;
236
237 return CommandSuccess;
238 }
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