3 Copyright (C) Dean Camera, 2015.
5 dean [at] fourwalledcubicle [dot] com
10 Copyright 2015 Dean Camera (dean [at] fourwalledcubicle [dot] com)
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.
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
33 * Main source file for the Printer class bootloader. This file contains the complete bootloader logic.
36 #include "BootloaderPrinter.h"
38 /** LUFA Printer Class driver interface configuration and state information. This structure is
39 * passed to all Printer Class driver functions, so that multiple instances of the same class
40 * within a device can be differentiated from one another.
42 USB_ClassInfo_PRNT_Device_t TextOnly_Printer_Interface
=
46 .InterfaceNumber
= INTERFACE_ID_Printer
,
49 .Address
= PRINTER_IN_EPADDR
,
50 .Size
= PRINTER_IO_EPSIZE
,
55 .Address
= PRINTER_OUT_EPADDR
,
56 .Size
= PRINTER_IO_EPSIZE
,
61 "MDL:Generic_/_Text_Only;"
67 /** Intel HEX parser state machine state information, to track the contents of
68 * a HEX file streamed in as a sequence of arbitrary bytes.
72 /** Current HEX parser state machine state. */
74 /** Previously decoded numerical byte of data. */
76 /** Currently decoded numerical byte of data. */
78 /** Indicates if both bytes that correspond to a single decoded numerical
79 * byte of data (HEX encodes values in ASCII HEX, two characters per byte)
83 /** Intel HEX record type of the current Intel HEX record. */
85 /** Numerical bytes of data remaining to be read in the current record. */
87 /** Checksum of the current record received so far. */
89 /** Starting address of the last addressed FLASH page. */
90 uint32_t PageStartAddress
;
91 /** Current 32-bit byte extended base address in FLASH being targeted. */
92 uint32_t CurrBaseAddress
;
93 /** Current 32-bit byte address in FLASH being targeted. */
97 /** Indicates if there is data waiting to be written to a physical page of
100 static bool PageDirty
= false;
102 /** Flag to indicate if the bootloader should be running, or should exit and allow the application code to run
103 * via a soft reset. When cleared, the bootloader will abort, the USB interface will shut down and the application
104 * started via a forced watchdog reset.
106 static bool RunBootloader
= true;
108 /** Magic lock for forced application start. If the HWBE fuse is programmed and BOOTRST is unprogrammed, the bootloader
109 * 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
110 * low when the application attempts to start via a watchdog reset, the bootloader will re-start. If set to the value
111 * \ref MAGIC_BOOT_KEY the special init function \ref Application_Jump_Check() will force the application to start.
113 uint16_t MagicBootKey ATTR_NO_INIT
;
116 /** Special startup routine to check if the bootloader was started via a watchdog reset, and if the magic application
117 * start key has been loaded into \ref MagicBootKey. If the bootloader started via the watchdog and the key is valid,
118 * this will force the user application to start via a software jump.
120 void Application_Jump_Check(void)
122 bool JumpToApplication
= false;
124 #if (BOARD == BOARD_LEONARDO)
125 /* Enable pull-up on the IO13 pin so we can use it to select the mode */
129 /* If IO13 is not jumpered to ground, start the user application instead */
130 JumpToApplication
= ((PINC
& (1 << 7)) != 0);
132 /* Disable pull-up after the check has completed */
134 #elif ((BOARD == BOARD_XPLAIN) || (BOARD == BOARD_XPLAIN_REV1))
135 /* Disable JTAG debugging */
138 /* Enable pull-up on the JTAG TCK pin so we can use it to select the mode */
142 /* If the TCK pin is not jumpered to ground, start the user application instead */
143 JumpToApplication
= ((PINF
& (1 << 4)) != 0);
145 /* Re-enable JTAG debugging */
148 /* Check if the device's BOOTRST fuse is set */
149 if (boot_lock_fuse_bits_get(GET_HIGH_FUSE_BITS
) & FUSE_BOOTRST
)
151 /* If the reset source was not an external reset or the key is correct, clear it and jump to the application */
152 if (!(MCUSR
& (1 << EXTRF
)) || (MagicBootKey
== MAGIC_BOOT_KEY
))
153 JumpToApplication
= true;
155 /* Clear reset source */
156 MCUSR
&= ~(1 << EXTRF
);
160 /* If the reset source was the bootloader and the key is correct, clear it and jump to the application;
161 * this can happen in the HWBE fuse is set, and the HBE pin is low during the watchdog reset */
162 if ((MCUSR
& (1 << WDRF
)) && (MagicBootKey
== MAGIC_BOOT_KEY
))
163 JumpToApplication
= true;
165 /* Clear reset source */
166 MCUSR
&= ~(1 << WDRF
);
170 /* Don't run the user application if the reset vector is blank (no app loaded) */
171 bool ApplicationValid
= (pgm_read_word_near(0) != 0xFFFF);
173 /* If a request has been made to jump to the user application, honor it */
174 if (JumpToApplication
&& ApplicationValid
)
176 /* Turn off the watchdog */
177 MCUSR
&= ~(1 << WDRF
);
180 /* Clear the boot key and jump to the user application */
183 // cppcheck-suppress constStatement
184 ((void (*)(void))0x0000)();
189 * Converts a given input byte of data from an ASCII encoded HEX value to an integer value.
191 * \note Input HEX bytes are expected to be in uppercase only.
193 * \param[in] Byte ASCII byte of data to convert
195 * \return Integer converted value of the input ASCII encoded HEX byte of data, or -1 if the
196 * input is not valid ASCII encoded HEX.
198 static int8_t HexToDecimal(const char Byte
)
200 if ((Byte
>= 'A') && (Byte
<= 'F'))
201 return (10 + (Byte
- 'A'));
202 else if ((Byte
>= '0') && (Byte
<= '9'))
209 * Flushes a partially written page of data to physical FLASH, if a page
210 * boundary has been crossed.
212 * \note If a page flush occurs the global HEX parser state is updated.
214 static void FlushPageIfRequired(void)
216 /* Abort if no data has been buffered for writing to the current page */
220 /* Flush the FLASH page to physical memory if we are crossing a page boundary */
221 uint32_t NewPageStartAddress
= (HEXParser
.CurrAddress
& ~(SPM_PAGESIZE
- 1));
222 if (HEXParser
.PageStartAddress
!= NewPageStartAddress
)
224 boot_page_write(HEXParser
.PageStartAddress
);
225 boot_spm_busy_wait();
227 HEXParser
.PageStartAddress
= NewPageStartAddress
;
234 * Parses an input Intel HEX formatted stream one character at a time, loading
235 * the data contents into the device's internal FLASH memory.
237 * \param[in] ReadCharacter Next input ASCII byte of data to parse
239 static void ParseIntelHEXByte(const char ReadCharacter
)
241 /* Reset the line parser while waiting for a new line to start */
242 if ((HEXParser
.ParserState
== HEX_PARSE_STATE_WAIT_LINE
) || (ReadCharacter
== ':'))
244 HEXParser
.Checksum
= 0;
245 HEXParser
.CurrAddress
= HEXParser
.CurrBaseAddress
;
246 HEXParser
.ReadMSB
= false;
248 /* ASCII ':' indicates the start of a new HEX record */
249 if (ReadCharacter
== ':')
250 HEXParser
.ParserState
= HEX_PARSE_STATE_BYTE_COUNT
;
255 /* Only allow ASCII HEX encoded digits, ignore all other characters */
256 int8_t ReadCharacterDec
= HexToDecimal(ReadCharacter
);
257 if (ReadCharacterDec
< 0)
260 /* Read and convert the next nibble of data from the current character */
261 HEXParser
.Data
= (HEXParser
.Data
<< 4) | ReadCharacterDec
;
262 HEXParser
.ReadMSB
= !HEXParser
.ReadMSB
;
264 /* Only process further when a full byte (two nibbles) have been read */
265 if (HEXParser
.ReadMSB
)
268 /* Intel HEX checksum is for all fields except starting character and the
271 if (HEXParser
.ParserState
!= HEX_PARSE_STATE_CHECKSUM
)
272 HEXParser
.Checksum
+= HEXParser
.Data
;
274 switch (HEXParser
.ParserState
)
276 case HEX_PARSE_STATE_BYTE_COUNT
:
277 HEXParser
.DataRem
= HEXParser
.Data
;
278 HEXParser
.ParserState
= HEX_PARSE_STATE_ADDRESS_HIGH
;
281 case HEX_PARSE_STATE_ADDRESS_HIGH
:
282 HEXParser
.CurrAddress
+= ((uint16_t)HEXParser
.Data
<< 8);
283 HEXParser
.ParserState
= HEX_PARSE_STATE_ADDRESS_LOW
;
286 case HEX_PARSE_STATE_ADDRESS_LOW
:
287 HEXParser
.CurrAddress
+= HEXParser
.Data
;
288 HEXParser
.ParserState
= HEX_PARSE_STATE_RECORD_TYPE
;
291 case HEX_PARSE_STATE_RECORD_TYPE
:
292 HEXParser
.RecordType
= HEXParser
.Data
;
293 HEXParser
.ParserState
= (HEXParser
.DataRem ? HEX_PARSE_STATE_READ_DATA
: HEX_PARSE_STATE_CHECKSUM
);
296 case HEX_PARSE_STATE_READ_DATA
:
297 /* Track the number of read data bytes in the record */
300 /* Protect the bootloader against being written to */
301 if (HEXParser
.CurrAddress
>= BOOT_START_ADDR
)
303 HEXParser
.ParserState
= HEX_PARSE_STATE_WAIT_LINE
;
308 /* Wait for a machine word (two bytes) of data to be read */
309 if (HEXParser
.DataRem
& 0x01)
311 HEXParser
.PrevData
= HEXParser
.Data
;
315 /* Convert the last two received data bytes into a 16-bit word */
316 uint16_t NewDataWord
= ((uint16_t)HEXParser
.Data
<< 8) | HEXParser
.PrevData
;
318 switch (HEXParser
.RecordType
)
320 case HEX_RECORD_TYPE_Data
:
321 /* If we are writing to a new page, we need to erase it first */
324 boot_page_erase(HEXParser
.PageStartAddress
);
325 boot_spm_busy_wait();
330 /* Fill the FLASH memory buffer with the new word of data */
331 boot_page_fill(HEXParser
.CurrAddress
, NewDataWord
);
332 HEXParser
.CurrAddress
+= 2;
334 /* Flush the FLASH page to physical memory if we are crossing a page boundary */
335 FlushPageIfRequired();
338 case HEX_RECORD_TYPE_ExtendedSegmentAddress
:
339 /* Extended address data - store the upper 12-bits of the new address */
340 HEXParser
.CurrBaseAddress
= ((uint32_t)NewDataWord
<< 4);
343 case HEX_RECORD_TYPE_ExtendedLinearAddress
:
344 /* Extended address data - store the upper 16-bits of the new address */
345 HEXParser
.CurrBaseAddress
= ((uint32_t)NewDataWord
<< 16);
349 if (!HEXParser
.DataRem
)
350 HEXParser
.ParserState
= HEX_PARSE_STATE_CHECKSUM
;
353 case HEX_PARSE_STATE_CHECKSUM
:
354 /* Verify checksum of the completed record */
355 if (HEXParser
.Data
!= ((~HEXParser
.Checksum
+ 1) & 0xFF))
358 /* Flush the FLASH page to physical memory if we are crossing a page boundary */
359 FlushPageIfRequired();
361 /* If end of the HEX file reached, the bootloader should exit at next opportunity */
362 if (HEXParser
.RecordType
== HEX_RECORD_TYPE_EndOfFile
)
363 RunBootloader
= false;
368 HEXParser
.ParserState
= HEX_PARSE_STATE_WAIT_LINE
;
373 /** Main program entry point. This routine configures the hardware required by the application, then
374 * enters a loop to run the application tasks in sequence.
380 LEDs_SetAllLEDs(LEDMASK_USB_NOTREADY
);
381 GlobalInterruptEnable();
383 while (RunBootloader
)
385 uint8_t BytesReceived
= PRNT_Device_BytesReceived(&TextOnly_Printer_Interface
);
389 LEDs_SetAllLEDs(LEDMASK_USB_BUSY
);
391 while (BytesReceived
--)
393 int16_t ReceivedByte
= PRNT_Device_ReceiveByte(&TextOnly_Printer_Interface
);
395 /* Feed the next byte of data to the HEX parser */
396 ParseIntelHEXByte(ReceivedByte
);
399 LEDs_SetAllLEDs(LEDMASK_USB_READY
);
402 PRNT_Device_USBTask(&TextOnly_Printer_Interface
);
406 /* Disconnect from the host - USB interface will be reset later along with the AVR */
409 /* Unlock the forced application start mode of the bootloader if it is restarted */
410 MagicBootKey
= MAGIC_BOOT_KEY
;
412 /* Enable the watchdog and force a timeout to reset the AVR */
413 wdt_enable(WDTO_250MS
);
418 /** Configures the board hardware and chip peripherals for the demo's functionality. */
419 static void SetupHardware(void)
421 /* Disable watchdog if enabled by bootloader/fuses */
422 MCUSR
&= ~(1 << WDRF
);
425 /* Disable clock division */
426 clock_prescale_set(clock_div_1
);
428 /* Relocate the interrupt vector table to the bootloader section */
430 MCUCR
= (1 << IVSEL
);
432 /* Hardware Initialization */
436 /* Bootloader active LED toggle timer initialization */
437 TIMSK1
= (1 << TOIE1
);
438 TCCR1B
= ((1 << CS11
) | (1 << CS10
));
441 /** ISR to periodically toggle the LEDs on the board to indicate that the bootloader is active. */
442 ISR(TIMER1_OVF_vect
, ISR_BLOCK
)
444 LEDs_ToggleLEDs(LEDS_LED1
| LEDS_LED2
);
447 /** Event handler for the USB_Connect event. This indicates that the device is enumerating via the status LEDs. */
448 void EVENT_USB_Device_Connect(void)
450 /* Indicate USB enumerating */
451 LEDs_SetAllLEDs(LEDMASK_USB_ENUMERATING
);
454 /** Event handler for the USB_Disconnect event. This indicates that the device is no longer connected to a host via
455 * the status LEDs and stops the Printer management task.
457 void EVENT_USB_Device_Disconnect(void)
459 /* Indicate USB not ready */
460 LEDs_SetAllLEDs(LEDMASK_USB_NOTREADY
);
463 /** Event handler for the USB_ConfigurationChanged event. This is fired when the host set the current configuration
464 * of the USB device after enumeration - the device endpoints are configured and the Mass Storage management task started.
466 void EVENT_USB_Device_ConfigurationChanged(void)
468 bool ConfigSuccess
= true;
470 /* Setup Printer Data Endpoints */
471 ConfigSuccess
&= PRNT_Device_ConfigureEndpoints(&TextOnly_Printer_Interface
);
473 /* Reset the HEX parser upon successful connection to a host */
474 HEXParser
.ParserState
= HEX_PARSE_STATE_WAIT_LINE
;
476 /* Indicate endpoint configuration success or failure */
477 LEDs_SetAllLEDs(ConfigSuccess ? LEDMASK_USB_READY
: LEDMASK_USB_ERROR
);
480 /** Event handler for the USB_ControlRequest event. This is used to catch and process control requests sent to
481 * the device from the USB host before passing along unhandled control requests to the library for processing
484 void EVENT_USB_Device_ControlRequest(void)
486 PRNT_Device_ProcessControlRequest(&TextOnly_Printer_Interface
);