Update Makefile for firmware-install
[pub/USBaspLoader.git] / firmware / main.c
1 /* Name: main.c
2 * Project: USBaspLoader
3 * Author: Christian Starkjohann
4 * Creation Date: 2007-12-08
5 * Tabsize: 4
6 * Copyright: (c) 2007 by OBJECTIVE DEVELOPMENT Software GmbH
7 * License: GNU GPL v2 (see License.txt)
8 * This Revision: $Id: main.c 786 2010-05-30 20:41:40Z cs $
9 */
10
11 #include "spminterface.h" /* must be included as first! */
12
13 #include <avr/io.h>
14 #include <avr/interrupt.h>
15 #include <avr/pgmspace.h>
16 #include <avr/wdt.h>
17 #include <avr/boot.h>
18 #include <avr/eeprom.h>
19 #include <util/delay.h>
20
21 #include <avr/cpufunc.h>
22
23 #include <string.h>
24
25
26
27 static void leaveBootloader() __attribute__((__noreturn__));
28
29 #include "bootloaderconfig.h"
30 #include "usbdrv/usbdrv.c"
31
32 #ifndef BOOTLOADER_ADDRESS
33 #error need to know the bootloaders flash address!
34 #endif
35
36 /* ------------------------------------------------------------------------ */
37
38 /* Request constants used by USBasp */
39 #define USBASP_FUNC_CONNECT 1
40 #define USBASP_FUNC_DISCONNECT 2
41 #define USBASP_FUNC_TRANSMIT 3
42 #define USBASP_FUNC_READFLASH 4
43 #define USBASP_FUNC_ENABLEPROG 5
44 #define USBASP_FUNC_WRITEFLASH 6
45 #define USBASP_FUNC_READEEPROM 7
46 #define USBASP_FUNC_WRITEEEPROM 8
47 #define USBASP_FUNC_SETLONGADDRESS 9
48
49 /* ------------------------------------------------------------------------ */
50
51 #ifndef ulong
52 # define ulong unsigned long
53 #endif
54 #ifndef uint
55 # define uint unsigned int
56 #endif
57
58 /* defaults if not in config file: */
59 #ifndef HAVE_EEPROM_PAGED_ACCESS
60 # define HAVE_EEPROM_PAGED_ACCESS 0
61 #endif
62 #ifndef HAVE_EEPROM_BYTE_ACCESS
63 # define HAVE_EEPROM_BYTE_ACCESS 0
64 #endif
65 #ifndef BOOTLOADER_CAN_EXIT
66 # define BOOTLOADER_CAN_EXIT 0
67 #endif
68
69 /* allow compatibility with avrusbboot's bootloaderconfig.h: */
70 #ifdef BOOTLOADER_INIT
71 # define bootLoaderInit() BOOTLOADER_INIT
72 # define bootLoaderExit()
73 #endif
74 #ifdef BOOTLOADER_CONDITION
75 # define bootLoaderCondition() BOOTLOADER_CONDITION
76 #endif
77
78 /* device compatibility: */
79 #ifndef GICR /* ATMega*8 don't have GICR, use MCUCR instead */
80 # define GICR MCUCR
81 #endif
82
83 /* ------------------------------------------------------------------------ */
84
85 #if (FLASHEND) > 0xffff /* we need long addressing */
86 # define CURRENT_ADDRESS currentAddress.l
87 # define addr_t ulong
88 #else
89 # define CURRENT_ADDRESS currentAddress.w[0]
90 # define addr_t uint
91 #endif
92
93 typedef union longConverter{
94 addr_t l;
95 uint w[sizeof(addr_t)/2];
96 uchar b[sizeof(addr_t)];
97 }longConverter_t;
98
99
100 #if BOOTLOADER_CAN_EXIT
101 static uchar requestBootLoaderExit;
102 #endif
103 static volatile unsigned char stayinloader = 0xfe;
104
105 static longConverter_t currentAddress; /* in bytes */
106 static uchar bytesRemaining;
107 static uchar isLastPage;
108 #if HAVE_EEPROM_PAGED_ACCESS
109 static uchar currentRequest;
110 #else
111 static const uchar currentRequest = 0;
112 #endif
113
114 static const uchar signatureBytes[4] = {
115 #ifdef SIGNATURE_BYTES
116 SIGNATURE_BYTES
117 #elif defined (__AVR_ATmega8__) || defined (__AVR_ATmega8HVA__)
118 0x1e, 0x93, 0x07, 0
119 #elif defined (__AVR_ATmega48__) || defined (__AVR_ATmega48P__)
120 0x1e, 0x92, 0x05, 0
121 #elif defined (__AVR_ATmega88__) || defined (__AVR_ATmega88P__)
122 0x1e, 0x93, 0x0a, 0
123 #elif defined (__AVR_ATmega168__) || defined (__AVR_ATmega168P__)
124 0x1e, 0x94, 0x06, 0
125 #elif defined (__AVR_ATmega328P__)
126 0x1e, 0x95, 0x0f, 0
127 #elif defined (__AVR_ATmega1284P__)
128 0x1e, 0x97, 0x05, 0
129 #else
130 # error "Device signature is not known, please edit main.c!"
131 #endif
132 };
133
134 /* ------------------------------------------------------------------------ */
135
136 static void (*nullVector)(void) __attribute__((__noreturn__));
137
138 static void leaveBootloader()
139 {
140 DBG1(0x01, 0, 0);
141 cli();
142 usbDeviceDisconnect();
143 bootLoaderExit();
144 USB_INTR_ENABLE = 0;
145 USB_INTR_CFG = 0; /* also reset config bits */
146 GICR = (1 << IVCE); /* enable change of interrupt vectors */
147 GICR = (0 << IVSEL); /* move interrupts to application flash section */
148
149 /* We must go through a global function pointer variable instead of writing
150 * ((void (*)(void))0)();
151 * because the compiler optimizes a constant 0 to "rcall 0" which is not
152 * handled correctly by the assembler.
153 */
154 nullVector();
155 }
156
157 /* ------------------------------------------------------------------------ */
158
159 uchar usbFunctionSetup(uchar data[8])
160 {
161 usbRequest_t *rq = (void *)data;
162 uchar len = 0;
163 static uchar replyBuffer[4];
164
165 usbMsgPtr = replyBuffer;
166 if(rq->bRequest == USBASP_FUNC_TRANSMIT){ /* emulate parts of ISP protocol */
167 uchar rval = 0;
168 usbWord_t address;
169 address.bytes[1] = rq->wValue.bytes[1];
170 address.bytes[0] = rq->wIndex.bytes[0];
171 if(rq->wValue.bytes[0] == 0x30){ /* read signature */
172 rval = rq->wIndex.bytes[0] & 3;
173 rval = signatureBytes[rval];
174 #if HAVE_READ_LOCK_FUSE
175 #if defined (__AVR_ATmega8__)
176 }else if(rq->wValue.bytes[0] == 0x58 && rq->wValue.bytes[1] == 0x00){ /* read lock bits */
177 rval = boot_lock_fuse_bits_get(GET_LOCK_BITS);
178 }else if(rq->wValue.bytes[0] == 0x50 && rq->wValue.bytes[1] == 0x00){ /* read lfuse bits */
179 rval = boot_lock_fuse_bits_get(GET_LOW_FUSE_BITS);
180 }else if(rq->wValue.bytes[0] == 0x58 && rq->wValue.bytes[1] == 0x08){ /* read hfuse bits */
181 rval = boot_lock_fuse_bits_get(GET_HIGH_FUSE_BITS);
182 #endif
183 #endif
184 #if HAVE_EEPROM_BYTE_ACCESS
185 }else if(rq->wValue.bytes[0] == 0xa0){ /* read EEPROM byte */
186 rval = eeprom_read_byte((void *)address.word);
187 }else if(rq->wValue.bytes[0] == 0xc0){ /* write EEPROM byte */
188 eeprom_write_byte((void *)address.word, rq->wIndex.bytes[1]);
189 #endif
190 #if HAVE_CHIP_ERASE
191 }else if(rq->wValue.bytes[0] == 0xac && rq->wValue.bytes[1] == 0x80){ /* chip erase */
192 addr_t addr;
193 for(addr = 0; addr < FLASHEND + 1 - 2048; addr += SPM_PAGESIZE) {
194 /* wait and erase page */
195 DBG1(0x33, 0, 0);
196 # ifndef NO_FLASH_WRITE
197 boot_spm_busy_wait();
198 cli();
199 boot_page_erase(addr);
200 sei();
201 # endif
202 }
203 #endif
204 }else{
205 /* ignore all others, return default value == 0 */
206 }
207 replyBuffer[3] = rval;
208 len = 4;
209 }else if(rq->bRequest == USBASP_FUNC_ENABLEPROG){
210 /* replyBuffer[0] = 0; is never touched and thus always 0 which means success */
211 len = 1;
212 }else if(rq->bRequest >= USBASP_FUNC_READFLASH && rq->bRequest <= USBASP_FUNC_SETLONGADDRESS){
213 currentAddress.w[0] = rq->wValue.word;
214 if(rq->bRequest == USBASP_FUNC_SETLONGADDRESS){
215 #if (FLASHEND) > 0xffff
216 currentAddress.w[1] = rq->wIndex.word;
217 #endif
218 }else{
219 bytesRemaining = rq->wLength.bytes[0];
220 /* if(rq->bRequest == USBASP_FUNC_WRITEFLASH) only evaluated during writeFlash anyway */
221 isLastPage = rq->wIndex.bytes[1] & 0x02;
222 #if HAVE_EEPROM_PAGED_ACCESS
223 currentRequest = rq->bRequest;
224 #endif
225 len = 0xff; /* hand over to usbFunctionRead() / usbFunctionWrite() */
226 }
227
228 }else if(rq->bRequest == USBASP_FUNC_DISCONNECT){
229 stayinloader &= (0xfe);
230 #if BOOTLOADER_CAN_EXIT
231 requestBootLoaderExit = 1; /* allow proper shutdown/close of connection */
232 #endif
233 }else{
234 /* ignore: others, but could be USBASP_FUNC_CONNECT */
235 stayinloader |= (0x01);
236 }
237 return len;
238 }
239
240 uchar usbFunctionWrite(uchar *data, uchar len)
241 {
242 uchar isLast;
243
244 DBG1(0x31, (void *)&currentAddress.l, 4);
245 if(len > bytesRemaining)
246 len = bytesRemaining;
247 bytesRemaining -= len;
248 isLast = bytesRemaining == 0;
249 if(currentRequest >= USBASP_FUNC_READEEPROM){
250 uchar i;
251 for(i = 0; i < len; i++){
252 eeprom_write_byte((void *)(currentAddress.w[0]++), *data++);
253 }
254 }else{
255 uchar i;
256 for(i = 0; i < len;){
257 #if HAVE_BLB11_SOFTW_LOCKBIT
258 if (CURRENT_ADDRESS >= (addr_t)(BOOTLOADER_ADDRESS)) {
259 return 1;
260 }
261 #endif
262 i += 2;
263 DBG1(0x32, 0, 0);
264 cli();
265 boot_page_fill(CURRENT_ADDRESS, *(short *)data);
266 sei();
267 CURRENT_ADDRESS += 2;
268 data += 2;
269 /* write page when we cross page boundary or we have the last partial page */
270 if((currentAddress.w[0] & (SPM_PAGESIZE - 1)) == 0 || (isLast && i >= len && isLastPage)){
271 #if !HAVE_CHIP_ERASE
272 DBG1(0x33, 0, 0);
273 # ifndef NO_FLASH_WRITE
274 cli();
275 boot_page_erase(CURRENT_ADDRESS - 2); /* erase page */
276 sei();
277 boot_spm_busy_wait(); /* wait until page is erased */
278 # endif
279 #endif
280 DBG1(0x34, 0, 0);
281 #ifndef NO_FLASH_WRITE
282 cli();
283 boot_page_write(CURRENT_ADDRESS - 2);
284 sei();
285 boot_spm_busy_wait();
286 cli();
287 boot_rww_enable();
288 sei();
289 #endif
290 }
291 }
292 DBG1(0x35, (void *)&currentAddress.l, 4);
293 }
294 return isLast;
295 }
296
297 uchar usbFunctionRead(uchar *data, uchar len)
298 {
299 uchar i;
300
301 if(len > bytesRemaining)
302 len = bytesRemaining;
303 bytesRemaining -= len;
304 for(i = 0; i < len; i++){
305 if(currentRequest >= USBASP_FUNC_READEEPROM){
306 *data = eeprom_read_byte((void *)currentAddress.w[0]);
307 }else{
308 *data = pgm_read_byte((void *)CURRENT_ADDRESS);
309 }
310 data++;
311 CURRENT_ADDRESS++;
312 }
313 return len;
314 }
315
316 /* ------------------------------------------------------------------------ */
317
318 static void initForUsbConnectivity(void)
319 {
320 uchar i = 0;
321
322 usbInit();
323 /* enforce USB re-enumerate: */
324 usbDeviceDisconnect(); /* do this while interrupts are disabled */
325 while(--i){ /* fake USB disconnect for > 250 ms */
326 _delay_ms(1);
327 }
328 usbDeviceConnect();
329 sei();
330 }
331
332 int __attribute__((noreturn)) main(void)
333 {
334 /* initialize */
335 bootLoaderInit();
336 odDebugInit();
337 DBG1(0x00, 0, 0);
338 #ifndef NO_FLASH_WRITE
339 GICR = (1 << IVCE); /* enable change of interrupt vectors */
340 GICR = (1 << IVSEL); /* move interrupts to boot flash section */
341 #endif
342 if(bootLoaderCondition()){
343 wdt_disable(); /* main app may have enabled watchdog */
344 #if BOOTLOADER_CAN_EXIT
345 uchar i = 0, j = 0;
346 #endif
347 initForUsbConnectivity();
348 do{
349 usbPoll();
350 #if BOOTLOADER_CAN_EXIT
351 if(requestBootLoaderExit){
352 if(--i == 0){
353 if(--j == 0)
354 break;
355 }
356 }
357 #endif
358 if (stayinloader >= 0x10) {
359 if (!bootLoaderCondition()) {
360 stayinloader-=0x10;
361 }
362 } else {
363 if (bootLoaderCondition()) {
364 if (stayinloader > 1) stayinloader-=2;
365 }
366 }
367
368 }while (stayinloader); /* main event loop */
369 }
370 leaveBootloader();
371 }
372
373 /* ------------------------------------------------------------------------ */