fd8d31bb47831d01db46ea9015448bd4f029fc0f
[my-code/arm.git] / betty / fwflash.c
1 /*
2  * fwflash.c - handling the betty flashes
3  *
4  * author: hackbard@hackdaworld.org
5  *
6  */
7
8 /*
9  * include files
10  */
11
12 #include <stdio.h>
13
14 #include "lpc2xxx.h"
15
16 /*
17  * defines
18  */
19
20 /* bank 0/2 and boootloader addr/size */
21 #define BANK0                   0x80000000
22 #define BANK2                   0x82000000
23 #define BANK_SIZE               0x00100000
24 #define BOOTLOADER              0x7fffe000
25 #define BL_SIZE                 0x00002000
26
27 /* flash cmd addresses - flash[0-18] <--> arm[1-19]*/
28 #define B0F555  (*((volatile unsigned short *)(BANK0|0xaaa)))   // 0x555
29 #define B0F2AA  (*((volatile unsigned short *)(BANK0|0x554)))   // 0x2aa
30 #define B0F     (*((volatile unsigned short *)(BANK0)))
31 #define B2F555  (*((volatile unsigned short *)(BANK2|0xaaa)))   // 0x555
32 #define B2F2AA  (*((volatile unsigned short *)(BANK2|0x554)))   // 0x2aa
33 #define B2F     (*((volatile unsigned short *)(BANK2)))
34
35 /* commands */
36 #define CMD_READ                'R'
37 #define CMD_WRITE               'W'
38 #define CMD_CHIP_ERASE          'E'
39 #define CMD_SECTOR_ERASE        'S'
40 #define CMD_CHIP_ID             'I'
41
42 #define BUFSIZE                 16
43
44 /*
45  * type definitions
46  */
47
48 typedef unsigned char u8;
49 typedef unsigned short u16;
50 typedef unsigned int u32;
51
52 /*
53  * sector addresses
54  */
55
56 unsigned long sector_address[19]={
57         0x00000,0x02000,0x03000,0x04000,0x08000,
58         0x10000,0x18000,
59         0x20000,0x28000,
60         0x30000,0x38000,
61         0x40000,0x48000,
62         0x50000,0x58000,
63         0x60000,0x68000,
64         0x70000,0x78000
65 };
66
67 /*
68  * functions
69  */
70
71 void uart0_send_byte(u8 send);
72
73 void mmap_init(u8 memtype) {
74
75         MEMMAP=memtype;
76 }
77
78 void pll_init(void) {
79
80         /* configuration */
81         PLLCFG=0x42;    // multiplier = 3 (for cclk), dividor = 4 (for f_cco)
82         PLLCON=0x03;    // enable and set as clk source for the lpc
83         /* feed sequence */
84         PLLFEED=0xaa;
85         PLLFEED=0x55;
86         /* wait for lock */
87         while(!(PLLSTAT&(1<<10)))
88                 continue;
89 }
90
91 void ext_mem_bank_init(void) {
92
93         BCFG0=0x10000420;       // flash 1
94         BCFG1=0x00000c42;       // lcd
95         BCFG2=0x10000420;       // flash 2
96 }
97
98 void pin_select_init() {
99
100         /*
101          * a[19:2] -> address lines
102          */
103
104         PINSEL2=0x0d6041d4;
105 }
106
107 void uart0_init(void) {
108
109         PINSEL0=0x05;                   // pin select -> tx, rx
110         UART0_FCR=0x07;                 // enable fifo
111         UART0_LCR=0x83;                 // set dlab + word length
112         UART0_DLL=0x04;                 // br: 38400 @ 10/4 mhz
113         UART0_DLM=0x00;
114         UART0_LCR=0x03;                 // unset dlab
115 }
116
117 void uart0_send_string(char *txbuf) {
118
119         int i;
120
121         i=0;
122
123         while(txbuf[i]) {
124                 UART0_THR=txbuf[i++];
125                 /* flush if tx buffer maximum reached */
126                 if(!(i%16))
127                         while(!(UART0_LSR&(1<<6)))
128                                 continue;
129         }
130         
131         /* flush if \n and \r do not fit in the tx buffer */
132         if(i>14)
133                 while(!(UART0_LSR&(1<<6)))
134                         continue;
135
136         UART0_THR='\n';
137         UART0_THR='\r';
138
139         /* flush uart0 anyways */
140         while(!(UART0_LSR&(1<<6)))
141                 continue;
142 }
143
144 void uart0_send_buf16(u16 *buf,int len) {
145
146         int i;
147
148         i=0;
149
150         for(i=0;i<len/2;i++) {
151                 if(!(i%8))
152                         while(!(UART0_LSR&(1<<6)))
153                                 continue;
154                 UART0_THR=buf[i]&0xff;
155                 UART0_THR=(buf[i]>>8)&0xff;
156         }
157 }
158
159 void uart0_send_buf32(u32 *buf,int len) {
160
161         int i;
162
163         i=0;
164
165         for(i=0;i<len/4;i++) {
166                 if(!(i%4))
167                         while(!(UART0_LSR&(1<<6)))
168                                 continue;
169                 UART0_THR=buf[i]&0xff;
170                 UART0_THR=(buf[i]>>8)&0xff;
171                 UART0_THR=(buf[i]>>16)&0xff;
172                 UART0_THR=(buf[i]>>24)&0xff;
173         }
174 }
175
176 void uart0_send_byte(u8 send) {
177
178         while(!(UART0_LSR&(1<<5)))
179                 continue;
180
181         UART0_THR=send;
182 }
183
184 u8 uart0_get_byte(void) {
185
186         u8 rx;
187
188         while(!(UART0_LSR&(1<<0)))
189                 continue;
190
191         rx=UART0_RBR;
192
193         return rx;
194 }
195
196 void flash_reset(u8 bank) {
197
198         if((bank!='0')&(bank!='2'))
199                 return;
200
201         if(bank=='0')
202                 B0F=0xf0;
203         else
204                 B2F=0xf0;
205 }
206
207 void flash_sector_erase(u8 flash,u8 sector) {
208
209         u32 a18_12;
210         u32 base;
211
212         if(sector>18)
213                 return;
214         a18_12=sector_address[sector]<<1;
215
216         if((flash!='0')&(flash!='2'))
217                 return;
218
219         switch(flash) {
220                 case '0':
221                         base=0x80000000;
222                         B0F555=0xaa;
223                         B0F2AA=0x55;
224                         B0F555=0x80;
225                         B0F555=0xaa;
226                         B0F2AA=0x55;
227                         *((volatile u16 *)(base|a18_12))=0x30;
228                         break;
229                 case '2': 
230                         base=0x82000000;
231                         B2F555=0xaa;
232                         B2F2AA=0x55;
233                         B2F555=0x80;
234                         B2F555=0xaa;
235                         B2F2AA=0x55;
236                         *((volatile u16 *)(base|a18_12))=0x30;
237                         break;
238                 default:
239                         return;
240         }
241
242         return;
243 }
244
245 void flash_chip_erase(u8 bank) {
246
247         u8 status;
248
249         if((bank!='0')&(bank!='2'))
250                 return;
251
252         if(bank=='0') {
253                 B0F555=0xaa;
254                 B0F2AA=0x55;
255                 B0F555=0x80;
256                 B0F555=0xaa;
257                 B0F2AA=0x55;
258                 B0F555=0x10;
259         }
260         else {
261                 B2F555=0xaa;
262                 B2F2AA=0x55;
263                 B2F555=0x80;
264                 B2F555=0xaa;
265                 B2F2AA=0x55;
266                 B2F555=0x10;
267         }
268
269         while(1) {
270                 if(bank=='0')
271                         status=B0F;
272                 else
273                         status=B2F;
274
275                 if(status&0x80)
276                         break;
277         }
278 }
279
280 void unlock_bypass(u8 bank) {
281
282         if((bank!='0')&(bank!='2'))
283                 return;
284
285         if(bank=='0') {
286                 B0F555=0xaa;
287                 B0F2AA=0x55;
288                 B0F555=0x20;
289         }
290         else {
291                 B2F555=0xaa;
292                 B2F2AA=0x55;
293                 B2F555=0x20;
294         }
295 }
296
297 void unlock_bypass_reset(u8 bank) {
298
299         if((bank!='0')&(bank!='2'))
300                 return;
301
302         if(bank=='0') {
303                 B0F=0x90;
304                 B0F=0x00;
305         }
306         else {
307                 B2F=0x90;
308                 B2F=0x00;
309         }
310 }
311
312 int flash_write(u32 addr,u16 data) {
313
314         u16 check;
315
316         if(data==0xffff)
317                 return 0;
318
319         *((unsigned volatile short *)addr)=0xa0;
320         *((unsigned volatile short *)addr)=data;
321         while(1) {
322                 check=*((unsigned short *)addr);
323                 if((data&0x80)==(check&0x80))
324                         break;
325         }
326         if(data!=check)
327                 return -1;
328
329         return 0;
330 }
331
332 int receive_data_and_write_to_flash(u32 addr,u32 datalen) {
333
334         u8 bank;
335         u32 i,ret;
336         u16 data;
337         u8 cksm;
338         u8 byte;
339
340         /* which bank to program */
341         if(addr<0x82000000)
342                 bank='0';
343         else
344                 bank='2';
345
346         /* unlock bypass */
347         unlock_bypass(bank);
348
349         /* receive and write data */
350         cksm=0;
351         ret=0;
352         for(i=0;i<datalen/2;i++) {
353                 byte=uart0_get_byte();
354                 uart0_send_byte(byte);
355                 data=byte;
356                 cksm+=byte;
357                 byte=uart0_get_byte();
358                 uart0_send_byte(byte);
359                 cksm+=byte;
360                 data|=byte<<8;
361                 if(flash_write(addr,data)<0)
362                         ret=-1;
363                 addr+=2;
364         }
365
366         /* relock bypass */
367         unlock_bypass_reset(bank);
368
369         /* modify cksm on purpose, so the user knows ... */
370         if(ret==-1)
371                 cksm+=1;
372
373         /* send the cksm */
374         uart0_send_byte(cksm);
375
376         return ret;
377 }
378
379 /*
380  * main function
381  */
382
383 int main(void) {
384
385         /* variables */
386
387         u32 i,addrlen,datalen,addr;
388         u8 buf[BUFSIZE];
389         u16 data;
390         u8 cmd;
391         u8 txrx;
392
393         /* memory mapping of interrupt vectors to static ram */
394
395         //mmap_init(MMAP_RAM);
396         
397         /* pll initialization */
398         pll_init();
399
400         /* uart initialization */
401         uart0_init();
402
403         /* external memory init */
404         ext_mem_bank_init();
405
406         /* pin select init */
407         pin_select_init();
408
409         /* begin the main loop */
410         while(1) {
411
412         /* receive cmd */
413         while(1) {
414
415                 cmd=uart0_get_byte();
416                 txrx=1;
417                 switch(cmd) {
418                         case CMD_CHIP_ERASE:
419                                 addrlen=0;
420                                 datalen=1;
421                                 break;
422                         case CMD_SECTOR_ERASE:
423                                 addrlen=0;
424                                 datalen=2;
425                                 break;
426                         case CMD_READ:
427                                 addrlen=4;
428                                 datalen=4;
429                         case CMD_WRITE:
430                                 addrlen=4;
431                                 datalen=4;
432                                 break;
433                         case CMD_CHIP_ID:
434                                 addrlen=0;
435                                 datalen=1;
436                                 break;
437                         default:
438                                 txrx=0;
439                                 break;
440                 }
441
442                 if(txrx)
443                         break;
444         }
445
446         /* receive (only if there is) more data from uart0 */
447         addr=0;
448         for(i=0;i<addrlen;i++) {
449                 txrx=uart0_get_byte();
450                 addr|=(txrx<<((addrlen-i-1)*8));
451         }
452
453         for(i=0;i<datalen;i++)
454                 buf[i]=uart0_get_byte();
455
456         /* process the cmd */
457         switch(cmd) {
458                 case CMD_SECTOR_ERASE:
459                         flash_sector_erase(buf[0],buf[1]);
460                         break;
461                 case CMD_READ:
462                         /* data length to read */
463                         datalen=buf[0]<<24|buf[1]<<16|buf[2]<<8|buf[3];
464                         /* check addr and datalen */
465                         if((addr>=BANK0)&(addr+datalen<=BANK0+BANK_SIZE))
466                                 uart0_send_buf16((u16 *)addr,datalen);
467                         if((addr>=BANK2)&(addr+datalen<=BANK2+BANK_SIZE))
468                                 uart0_send_buf16((u16 *)addr,datalen);
469                         if((addr>=BOOTLOADER)&(addr+datalen<=BOOTLOADER+BL_SIZE))
470                                 uart0_send_buf32((u32 *)addr,datalen);
471                         break;
472                 case CMD_WRITE:
473                         /* data length */
474                         datalen=buf[0]<<24|buf[1]<<16|buf[2]<<8|buf[3];
475                         /* check addr and data len */
476                         if(((addr>=BANK0)&(addr+datalen<=BANK0+BANK_SIZE))|
477                            ((addr>=BANK2)&(addr+datalen<=BANK2+BANK_SIZE)))
478                                 receive_data_and_write_to_flash(addr,datalen);
479                         break;
480                 case CMD_CHIP_ERASE:
481                         flash_chip_erase(buf[0]);
482                         break;
483                 case CMD_CHIP_ID:
484                         if(buf[0]=='0') {
485                                 B0F555=0xaa;
486                                 B0F2AA=0x55;
487                                 B0F555=0x90;
488                                 data=*((u16 *)BANK0);
489                                 uart0_send_buf16(&data,2);
490                                 data=*((u16 *)(BANK0|0x200));
491                                 uart0_send_buf16(&data,2);
492                         }
493                         else if(buf[0]=='2') {
494                                 B2F555=0xaa;
495                                 B2F2AA=0x55;
496                                 B2F555=0x90;
497                                 data=*((u16 *)BANK2);
498                                 uart0_send_buf16(&data,2);
499                                 data=*((u16 *)(BANK2|0x200));
500                                 uart0_send_buf16(&data,2);
501                         }
502                         break;
503                 default:
504                         break;
505         }
506                 
507         }
508
509         return 0;
510 }
511