uboot/common/cmd_load.c
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   1/*
   2 * (C) Copyright 2000-2004
   3 * Wolfgang Denk, DENX Software Engineering, wd@denx.de.
   4 *
   5 * See file CREDITS for list of people who contributed to this
   6 * project.
   7 *
   8 * This program is free software; you can redistribute it and/or
   9 * modify it under the terms of the GNU General Public License as
  10 * published by the Free Software Foundation; either version 2 of
  11 * the License, or (at your option) any later version.
  12 *
  13 * This program is distributed in the hope that it will be useful,
  14 * but WITHOUT ANY WARRANTY; without even the implied warranty of
  15 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
  16 * GNU General Public License for more details.
  17 *
  18 * You should have received a copy of the GNU General Public License
  19 * along with this program; if not, write to the Free Software
  20 * Foundation, Inc., 59 Temple Place, Suite 330, Boston,
  21 * MA 02111-1307 USA
  22 */
  23
  24/*
  25 * Serial up- and download support
  26 */
  27#include <common.h>
  28#include <command.h>
  29#include <s_record.h>
  30#include <net.h>
  31#include <exports.h>
  32#include <xyzModem.h>
  33
  34DECLARE_GLOBAL_DATA_PTR;
  35
  36#if defined(CONFIG_CMD_LOADB)
  37static ulong load_serial_ymodem (ulong offset);
  38#endif
  39
  40#if defined(CONFIG_CMD_LOADS)
  41static ulong load_serial (long offset);
  42static int read_record (char *buf, ulong len);
  43# if defined(CONFIG_CMD_SAVES)
  44static int save_serial (ulong offset, ulong size);
  45static int write_record (char *buf);
  46#endif
  47
  48static int do_echo = 1;
  49#endif
  50
  51/* -------------------------------------------------------------------- */
  52
  53#if defined(CONFIG_CMD_LOADS)
  54int do_load_serial (cmd_tbl_t *cmdtp, int flag, int argc, char * const argv[])
  55{
  56        long offset = 0;
  57        ulong addr;
  58        int i;
  59        char *env_echo;
  60        int rcode = 0;
  61#ifdef  CONFIG_SYS_LOADS_BAUD_CHANGE
  62        int load_baudrate, current_baudrate;
  63
  64        load_baudrate = current_baudrate = gd->baudrate;
  65#endif
  66
  67        if (((env_echo = getenv("loads_echo")) != NULL) && (*env_echo == '1')) {
  68                do_echo = 1;
  69        } else {
  70                do_echo = 0;
  71        }
  72
  73#ifdef  CONFIG_SYS_LOADS_BAUD_CHANGE
  74        if (argc >= 2) {
  75                offset = simple_strtol(argv[1], NULL, 16);
  76        }
  77        if (argc == 3) {
  78                load_baudrate = (int)simple_strtoul(argv[2], NULL, 10);
  79
  80                /* default to current baudrate */
  81                if (load_baudrate == 0)
  82                        load_baudrate = current_baudrate;
  83        }
  84        if (load_baudrate != current_baudrate) {
  85                printf ("## Switch baudrate to %d bps and press ENTER ...\n",
  86                        load_baudrate);
  87                udelay(50000);
  88                gd->baudrate = load_baudrate;
  89                serial_setbrg ();
  90                udelay(50000);
  91                for (;;) {
  92                        if (getc() == '\r')
  93                                break;
  94                }
  95        }
  96#else   /* ! CONFIG_SYS_LOADS_BAUD_CHANGE */
  97        if (argc == 2) {
  98                offset = simple_strtol(argv[1], NULL, 16);
  99        }
 100#endif  /* CONFIG_SYS_LOADS_BAUD_CHANGE */
 101
 102        printf ("## Ready for S-Record download ...\n");
 103
 104        addr = load_serial (offset);
 105
 106        /*
 107         * Gather any trailing characters (for instance, the ^D which
 108         * is sent by 'cu' after sending a file), and give the
 109         * box some time (100 * 1 ms)
 110         */
 111        for (i=0; i<100; ++i) {
 112                if (tstc()) {
 113                        (void) getc();
 114                }
 115                udelay(1000);
 116        }
 117
 118        if (addr == ~0) {
 119                printf ("## S-Record download aborted\n");
 120                rcode = 1;
 121        } else {
 122                printf ("## Start Addr      = 0x%08lX\n", addr);
 123                load_addr = addr;
 124        }
 125
 126#ifdef  CONFIG_SYS_LOADS_BAUD_CHANGE
 127        if (load_baudrate != current_baudrate) {
 128                printf ("## Switch baudrate to %d bps and press ESC ...\n",
 129                        current_baudrate);
 130                udelay (50000);
 131                gd->baudrate = current_baudrate;
 132                serial_setbrg ();
 133                udelay (50000);
 134                for (;;) {
 135                        if (getc() == 0x1B) /* ESC */
 136                                break;
 137                }
 138        }
 139#endif
 140        return rcode;
 141}
 142
 143static ulong
 144load_serial (long offset)
 145{
 146        char    record[SREC_MAXRECLEN + 1];     /* buffer for one S-Record      */
 147        char    binbuf[SREC_MAXBINLEN];         /* buffer for binary data       */
 148        int     binlen;                         /* no. of data bytes in S-Rec.  */
 149        int     type;                           /* return code for record type  */
 150        ulong   addr;                           /* load address from S-Record   */
 151        ulong   size;                           /* number of bytes transferred  */
 152        char    buf[32];
 153        ulong   store_addr;
 154        ulong   start_addr = ~0;
 155        ulong   end_addr   =  0;
 156        int     line_count =  0;
 157
 158        while (read_record(record, SREC_MAXRECLEN + 1) >= 0) {
 159                type = srec_decode (record, &binlen, &addr, binbuf);
 160
 161                if (type < 0) {
 162                        return (~0);            /* Invalid S-Record             */
 163                }
 164
 165                switch (type) {
 166                case SREC_DATA2:
 167                case SREC_DATA3:
 168                case SREC_DATA4:
 169                    store_addr = addr + offset;
 170#ifndef CONFIG_SYS_NO_FLASH
 171                    if (addr2info(store_addr)) {
 172                        int rc;
 173
 174                        rc = flash_write((char *)binbuf,store_addr,binlen);
 175                        if (rc != 0) {
 176                                flash_perror (rc);
 177                                return (~0);
 178                        }
 179                    } else
 180#endif
 181                    {
 182                        memcpy ((char *)(store_addr), binbuf, binlen);
 183                    }
 184                    if ((store_addr) < start_addr)
 185                        start_addr = store_addr;
 186                    if ((store_addr + binlen - 1) > end_addr)
 187                        end_addr = store_addr + binlen - 1;
 188                    break;
 189                case SREC_END2:
 190                case SREC_END3:
 191                case SREC_END4:
 192                    udelay (10000);
 193                    size = end_addr - start_addr + 1;
 194                    printf ("\n"
 195                            "## First Load Addr = 0x%08lX\n"
 196                            "## Last  Load Addr = 0x%08lX\n"
 197                            "## Total Size      = 0x%08lX = %ld Bytes\n",
 198                            start_addr, end_addr, size, size
 199                    );
 200                    flush_cache (start_addr, size);
 201                    sprintf(buf, "%lX", size);
 202                    setenv("filesize", buf);
 203                    return (addr);
 204                case SREC_START:
 205                    break;
 206                default:
 207                    break;
 208                }
 209                if (!do_echo) { /* print a '.' every 100 lines */
 210                        if ((++line_count % 100) == 0)
 211                                putc ('.');
 212                }
 213        }
 214
 215        return (~0);                    /* Download aborted             */
 216}
 217
 218static int
 219read_record (char *buf, ulong len)
 220{
 221        char *p;
 222        char c;
 223
 224        --len;  /* always leave room for terminating '\0' byte */
 225
 226        for (p=buf; p < buf+len; ++p) {
 227                c = getc();             /* read character               */
 228                if (do_echo)
 229                        putc (c);       /* ... and echo it              */
 230
 231                switch (c) {
 232                case '\r':
 233                case '\n':
 234                        *p = '\0';
 235                        return (p - buf);
 236                case '\0':
 237                case 0x03:                      /* ^C - Control C               */
 238                        return (-1);
 239                default:
 240                        *p = c;
 241                }
 242
 243            /* Check for the console hangup (if any different from serial) */
 244            if (gd->jt[XF_getc] != getc) {
 245                if (ctrlc()) {
 246                    return (-1);
 247                }
 248            }
 249        }
 250
 251        /* line too long - truncate */
 252        *p = '\0';
 253        return (p - buf);
 254}
 255
 256#if defined(CONFIG_CMD_SAVES)
 257
 258int do_save_serial (cmd_tbl_t *cmdtp, int flag, int argc, char * const argv[])
 259{
 260        ulong offset = 0;
 261        ulong size   = 0;
 262#ifdef  CONFIG_SYS_LOADS_BAUD_CHANGE
 263        int save_baudrate, current_baudrate;
 264
 265        save_baudrate = current_baudrate = gd->baudrate;
 266#endif
 267
 268        if (argc >= 2) {
 269                offset = simple_strtoul(argv[1], NULL, 16);
 270        }
 271#ifdef  CONFIG_SYS_LOADS_BAUD_CHANGE
 272        if (argc >= 3) {
 273                size = simple_strtoul(argv[2], NULL, 16);
 274        }
 275        if (argc == 4) {
 276                save_baudrate = (int)simple_strtoul(argv[3], NULL, 10);
 277
 278                /* default to current baudrate */
 279                if (save_baudrate == 0)
 280                        save_baudrate = current_baudrate;
 281        }
 282        if (save_baudrate != current_baudrate) {
 283                printf ("## Switch baudrate to %d bps and press ENTER ...\n",
 284                        save_baudrate);
 285                udelay(50000);
 286                gd->baudrate = save_baudrate;
 287                serial_setbrg ();
 288                udelay(50000);
 289                for (;;) {
 290                        if (getc() == '\r')
 291                                break;
 292                }
 293        }
 294#else   /* ! CONFIG_SYS_LOADS_BAUD_CHANGE */
 295        if (argc == 3) {
 296                size = simple_strtoul(argv[2], NULL, 16);
 297        }
 298#endif  /* CONFIG_SYS_LOADS_BAUD_CHANGE */
 299
 300        printf ("## Ready for S-Record upload, press ENTER to proceed ...\n");
 301        for (;;) {
 302                if (getc() == '\r')
 303                        break;
 304        }
 305        if(save_serial (offset, size)) {
 306                printf ("## S-Record upload aborted\n");
 307        } else {
 308                printf ("## S-Record upload complete\n");
 309        }
 310#ifdef  CONFIG_SYS_LOADS_BAUD_CHANGE
 311        if (save_baudrate != current_baudrate) {
 312                printf ("## Switch baudrate to %d bps and press ESC ...\n",
 313                        (int)current_baudrate);
 314                udelay (50000);
 315                gd->baudrate = current_baudrate;
 316                serial_setbrg ();
 317                udelay (50000);
 318                for (;;) {
 319                        if (getc() == 0x1B) /* ESC */
 320                                break;
 321                }
 322        }
 323#endif
 324        return 0;
 325}
 326
 327#define SREC3_START                             "S0030000FC\n"
 328#define SREC3_FORMAT                    "S3%02X%08lX%s%02X\n"
 329#define SREC3_END                               "S70500000000FA\n"
 330#define SREC_BYTES_PER_RECORD   16
 331
 332static int save_serial (ulong address, ulong count)
 333{
 334        int i, c, reclen, checksum, length;
 335        char *hex = "0123456789ABCDEF";
 336        char    record[2*SREC_BYTES_PER_RECORD+16];     /* buffer for one S-Record      */
 337        char    data[2*SREC_BYTES_PER_RECORD+1];        /* buffer for hex data  */
 338
 339        reclen = 0;
 340        checksum  = 0;
 341
 342        if(write_record(SREC3_START))                   /* write the header */
 343                return (-1);
 344        do {
 345                if(count) {                                             /* collect hex data in the buffer  */
 346                        c = *(volatile uchar*)(address + reclen);       /* get one byte    */
 347                        checksum += c;                                                  /* accumulate checksum */
 348                        data[2*reclen]   = hex[(c>>4)&0x0f];
 349                        data[2*reclen+1] = hex[c & 0x0f];
 350                        data[2*reclen+2] = '\0';
 351                        ++reclen;
 352                        --count;
 353                }
 354                if(reclen == SREC_BYTES_PER_RECORD || count == 0) {
 355                        /* enough data collected for one record: dump it */
 356                        if(reclen) {    /* build & write a data record: */
 357                                /* address + data + checksum */
 358                                length = 4 + reclen + 1;
 359
 360                                /* accumulate length bytes into checksum */
 361                                for(i = 0; i < 2; i++)
 362                                        checksum += (length >> (8*i)) & 0xff;
 363
 364                                /* accumulate address bytes into checksum: */
 365                                for(i = 0; i < 4; i++)
 366                                        checksum += (address >> (8*i)) & 0xff;
 367
 368                                /* make proper checksum byte: */
 369                                checksum = ~checksum & 0xff;
 370
 371                                /* output one record: */
 372                                sprintf(record, SREC3_FORMAT, length, address, data, checksum);
 373                                if(write_record(record))
 374                                        return (-1);
 375                        }
 376                        address  += reclen;  /* increment address */
 377                        checksum  = 0;
 378                        reclen    = 0;
 379                }
 380        }
 381        while(count);
 382        if(write_record(SREC3_END))     /* write the final record */
 383                return (-1);
 384        return(0);
 385}
 386
 387static int
 388write_record (char *buf)
 389{
 390        char c;
 391
 392        while((c = *buf++))
 393                putc(c);
 394
 395        /* Check for the console hangup (if any different from serial) */
 396
 397        if (ctrlc()) {
 398            return (-1);
 399        }
 400        return (0);
 401}
 402# endif
 403
 404#endif
 405
 406
 407#if defined(CONFIG_CMD_LOADB)
 408/*
 409 * loadb command (load binary) included
 410 */
 411#define XON_CHAR        17
 412#define XOFF_CHAR       19
 413#define START_CHAR      0x01
 414#define ETX_CHAR        0x03
 415#define END_CHAR        0x0D
 416#define SPACE           0x20
 417#define K_ESCAPE        0x23
 418#define SEND_TYPE       'S'
 419#define DATA_TYPE       'D'
 420#define ACK_TYPE        'Y'
 421#define NACK_TYPE       'N'
 422#define BREAK_TYPE      'B'
 423#define tochar(x) ((char) (((x) + SPACE) & 0xff))
 424#define untochar(x) ((int) (((x) - SPACE) & 0xff))
 425
 426static void set_kerm_bin_mode(unsigned long *);
 427static int k_recv(void);
 428static ulong load_serial_bin (ulong offset);
 429
 430
 431char his_eol;        /* character he needs at end of packet */
 432int  his_pad_count;  /* number of pad chars he needs */
 433char his_pad_char;   /* pad chars he needs */
 434char his_quote;      /* quote chars he'll use */
 435
 436int do_load_serial_bin (cmd_tbl_t *cmdtp, int flag, int argc, char * const argv[])
 437{
 438        ulong offset = 0;
 439        ulong addr;
 440        int load_baudrate, current_baudrate;
 441        int rcode = 0;
 442        char *s;
 443
 444        /* pre-set offset from CONFIG_SYS_LOAD_ADDR */
 445        offset = CONFIG_SYS_LOAD_ADDR;
 446
 447        /* pre-set offset from $loadaddr */
 448        if ((s = getenv("loadaddr")) != NULL) {
 449                offset = simple_strtoul(s, NULL, 16);
 450        }
 451
 452        load_baudrate = current_baudrate = gd->baudrate;
 453
 454        if (argc >= 2) {
 455                offset = simple_strtoul(argv[1], NULL, 16);
 456        }
 457        if (argc == 3) {
 458                load_baudrate = (int)simple_strtoul(argv[2], NULL, 10);
 459
 460                /* default to current baudrate */
 461                if (load_baudrate == 0)
 462                        load_baudrate = current_baudrate;
 463        }
 464
 465        if (load_baudrate != current_baudrate) {
 466                printf ("## Switch baudrate to %d bps and press ENTER ...\n",
 467                        load_baudrate);
 468                udelay(50000);
 469                gd->baudrate = load_baudrate;
 470                serial_setbrg ();
 471                udelay(50000);
 472                for (;;) {
 473                        if (getc() == '\r')
 474                                break;
 475                }
 476        }
 477
 478        if (strcmp(argv[0],"loady")==0) {
 479                printf ("## Ready for binary (ymodem) download "
 480                        "to 0x%08lX at %d bps...\n",
 481                        offset,
 482                        load_baudrate);
 483
 484                addr = load_serial_ymodem (offset);
 485
 486        } else {
 487
 488                printf ("## Ready for binary (kermit) download "
 489                        "to 0x%08lX at %d bps...\n",
 490                        offset,
 491                        load_baudrate);
 492                addr = load_serial_bin (offset);
 493
 494                if (addr == ~0) {
 495                        load_addr = 0;
 496                        printf ("## Binary (kermit) download aborted\n");
 497                        rcode = 1;
 498                } else {
 499                        printf ("## Start Addr      = 0x%08lX\n", addr);
 500                        load_addr = addr;
 501                }
 502        }
 503        if (load_baudrate != current_baudrate) {
 504                printf ("## Switch baudrate to %d bps and press ESC ...\n",
 505                        current_baudrate);
 506                udelay (50000);
 507                gd->baudrate = current_baudrate;
 508                serial_setbrg ();
 509                udelay (50000);
 510                for (;;) {
 511                        if (getc() == 0x1B) /* ESC */
 512                                break;
 513                }
 514        }
 515
 516        return rcode;
 517}
 518
 519
 520static ulong load_serial_bin (ulong offset)
 521{
 522        int size, i;
 523        char buf[32];
 524
 525        set_kerm_bin_mode ((ulong *) offset);
 526        size = k_recv ();
 527
 528        /*
 529         * Gather any trailing characters (for instance, the ^D which
 530         * is sent by 'cu' after sending a file), and give the
 531         * box some time (100 * 1 ms)
 532         */
 533        for (i=0; i<100; ++i) {
 534                if (tstc()) {
 535                        (void) getc();
 536                }
 537                udelay(1000);
 538        }
 539
 540        flush_cache (offset, size);
 541
 542        printf("## Total Size      = 0x%08x = %d Bytes\n", size, size);
 543        sprintf(buf, "%X", size);
 544        setenv("filesize", buf);
 545
 546        return offset;
 547}
 548
 549void send_pad (void)
 550{
 551        int count = his_pad_count;
 552
 553        while (count-- > 0)
 554                putc (his_pad_char);
 555}
 556
 557/* converts escaped kermit char to binary char */
 558char ktrans (char in)
 559{
 560        if ((in & 0x60) == 0x40) {
 561                return (char) (in & ~0x40);
 562        } else if ((in & 0x7f) == 0x3f) {
 563                return (char) (in | 0x40);
 564        } else
 565                return in;
 566}
 567
 568int chk1 (char *buffer)
 569{
 570        int total = 0;
 571
 572        while (*buffer) {
 573                total += *buffer++;
 574        }
 575        return (int) ((total + ((total >> 6) & 0x03)) & 0x3f);
 576}
 577
 578void s1_sendpacket (char *packet)
 579{
 580        send_pad ();
 581        while (*packet) {
 582                putc (*packet++);
 583        }
 584}
 585
 586static char a_b[24];
 587void send_ack (int n)
 588{
 589        a_b[0] = START_CHAR;
 590        a_b[1] = tochar (3);
 591        a_b[2] = tochar (n);
 592        a_b[3] = ACK_TYPE;
 593        a_b[4] = '\0';
 594        a_b[4] = tochar (chk1 (&a_b[1]));
 595        a_b[5] = his_eol;
 596        a_b[6] = '\0';
 597        s1_sendpacket (a_b);
 598}
 599
 600void send_nack (int n)
 601{
 602        a_b[0] = START_CHAR;
 603        a_b[1] = tochar (3);
 604        a_b[2] = tochar (n);
 605        a_b[3] = NACK_TYPE;
 606        a_b[4] = '\0';
 607        a_b[4] = tochar (chk1 (&a_b[1]));
 608        a_b[5] = his_eol;
 609        a_b[6] = '\0';
 610        s1_sendpacket (a_b);
 611}
 612
 613
 614void (*os_data_init) (void);
 615void (*os_data_char) (char new_char);
 616static int os_data_state, os_data_state_saved;
 617static char *os_data_addr, *os_data_addr_saved;
 618static char *bin_start_address;
 619
 620static void bin_data_init (void)
 621{
 622        os_data_state = 0;
 623        os_data_addr = bin_start_address;
 624}
 625
 626static void os_data_save (void)
 627{
 628        os_data_state_saved = os_data_state;
 629        os_data_addr_saved = os_data_addr;
 630}
 631
 632static void os_data_restore (void)
 633{
 634        os_data_state = os_data_state_saved;
 635        os_data_addr = os_data_addr_saved;
 636}
 637
 638static void bin_data_char (char new_char)
 639{
 640        switch (os_data_state) {
 641        case 0:                                 /* data */
 642                *os_data_addr++ = new_char;
 643                break;
 644        }
 645}
 646
 647static void set_kerm_bin_mode (unsigned long *addr)
 648{
 649        bin_start_address = (char *) addr;
 650        os_data_init = bin_data_init;
 651        os_data_char = bin_data_char;
 652}
 653
 654
 655/* k_data_* simply handles the kermit escape translations */
 656static int k_data_escape, k_data_escape_saved;
 657void k_data_init (void)
 658{
 659        k_data_escape = 0;
 660        os_data_init ();
 661}
 662
 663void k_data_save (void)
 664{
 665        k_data_escape_saved = k_data_escape;
 666        os_data_save ();
 667}
 668
 669void k_data_restore (void)
 670{
 671        k_data_escape = k_data_escape_saved;
 672        os_data_restore ();
 673}
 674
 675void k_data_char (char new_char)
 676{
 677        if (k_data_escape) {
 678                /* last char was escape - translate this character */
 679                os_data_char (ktrans (new_char));
 680                k_data_escape = 0;
 681        } else {
 682                if (new_char == his_quote) {
 683                        /* this char is escape - remember */
 684                        k_data_escape = 1;
 685                } else {
 686                        /* otherwise send this char as-is */
 687                        os_data_char (new_char);
 688                }
 689        }
 690}
 691
 692#define SEND_DATA_SIZE  20
 693char send_parms[SEND_DATA_SIZE];
 694char *send_ptr;
 695
 696/* handle_send_packet interprits the protocol info and builds and
 697   sends an appropriate ack for what we can do */
 698void handle_send_packet (int n)
 699{
 700        int length = 3;
 701        int bytes;
 702
 703        /* initialize some protocol parameters */
 704        his_eol = END_CHAR;             /* default end of line character */
 705        his_pad_count = 0;
 706        his_pad_char = '\0';
 707        his_quote = K_ESCAPE;
 708
 709        /* ignore last character if it filled the buffer */
 710        if (send_ptr == &send_parms[SEND_DATA_SIZE - 1])
 711                --send_ptr;
 712        bytes = send_ptr - send_parms;  /* how many bytes we'll process */
 713        do {
 714                if (bytes-- <= 0)
 715                        break;
 716                /* handle MAXL - max length */
 717                /* ignore what he says - most I'll take (here) is 94 */
 718                a_b[++length] = tochar (94);
 719                if (bytes-- <= 0)
 720                        break;
 721                /* handle TIME - time you should wait for my packets */
 722                /* ignore what he says - don't wait for my ack longer than 1 second */
 723                a_b[++length] = tochar (1);
 724                if (bytes-- <= 0)
 725                        break;
 726                /* handle NPAD - number of pad chars I need */
 727                /* remember what he says - I need none */
 728                his_pad_count = untochar (send_parms[2]);
 729                a_b[++length] = tochar (0);
 730                if (bytes-- <= 0)
 731                        break;
 732                /* handle PADC - pad chars I need */
 733                /* remember what he says - I need none */
 734                his_pad_char = ktrans (send_parms[3]);
 735                a_b[++length] = 0x40;   /* He should ignore this */
 736                if (bytes-- <= 0)
 737                        break;
 738                /* handle EOL - end of line he needs */
 739                /* remember what he says - I need CR */
 740                his_eol = untochar (send_parms[4]);
 741                a_b[++length] = tochar (END_CHAR);
 742                if (bytes-- <= 0)
 743                        break;
 744                /* handle QCTL - quote control char he'll use */
 745                /* remember what he says - I'll use '#' */
 746                his_quote = send_parms[5];
 747                a_b[++length] = '#';
 748                if (bytes-- <= 0)
 749                        break;
 750                /* handle QBIN - 8-th bit prefixing */
 751                /* ignore what he says - I refuse */
 752                a_b[++length] = 'N';
 753                if (bytes-- <= 0)
 754                        break;
 755                /* handle CHKT - the clock check type */
 756                /* ignore what he says - I do type 1 (for now) */
 757                a_b[++length] = '1';
 758                if (bytes-- <= 0)
 759                        break;
 760                /* handle REPT - the repeat prefix */
 761                /* ignore what he says - I refuse (for now) */
 762                a_b[++length] = 'N';
 763                if (bytes-- <= 0)
 764                        break;
 765                /* handle CAPAS - the capabilities mask */
 766                /* ignore what he says - I only do long packets - I don't do windows */
 767                a_b[++length] = tochar (2);     /* only long packets */
 768                a_b[++length] = tochar (0);     /* no windows */
 769                a_b[++length] = tochar (94);    /* large packet msb */
 770                a_b[++length] = tochar (94);    /* large packet lsb */
 771        } while (0);
 772
 773        a_b[0] = START_CHAR;
 774        a_b[1] = tochar (length);
 775        a_b[2] = tochar (n);
 776        a_b[3] = ACK_TYPE;
 777        a_b[++length] = '\0';
 778        a_b[length] = tochar (chk1 (&a_b[1]));
 779        a_b[++length] = his_eol;
 780        a_b[++length] = '\0';
 781        s1_sendpacket (a_b);
 782}
 783
 784/* k_recv receives a OS Open image file over kermit line */
 785static int k_recv (void)
 786{
 787        char new_char;
 788        char k_state, k_state_saved;
 789        int sum;
 790        int done;
 791        int length;
 792        int n, last_n;
 793        int len_lo, len_hi;
 794
 795        /* initialize some protocol parameters */
 796        his_eol = END_CHAR;             /* default end of line character */
 797        his_pad_count = 0;
 798        his_pad_char = '\0';
 799        his_quote = K_ESCAPE;
 800
 801        /* initialize the k_recv and k_data state machine */
 802        done = 0;
 803        k_state = 0;
 804        k_data_init ();
 805        k_state_saved = k_state;
 806        k_data_save ();
 807        n = 0;                          /* just to get rid of a warning */
 808        last_n = -1;
 809
 810        /* expect this "type" sequence (but don't check):
 811           S: send initiate
 812           F: file header
 813           D: data (multiple)
 814           Z: end of file
 815           B: break transmission
 816         */
 817
 818        /* enter main loop */
 819        while (!done) {
 820                /* set the send packet pointer to begining of send packet parms */
 821                send_ptr = send_parms;
 822
 823                /* With each packet, start summing the bytes starting with the length.
 824                   Save the current sequence number.
 825                   Note the type of the packet.
 826                   If a character less than SPACE (0x20) is received - error.
 827                 */
 828
 829#if 0
 830                /* OLD CODE, Prior to checking sequence numbers */
 831                /* first have all state machines save current states */
 832                k_state_saved = k_state;
 833                k_data_save ();
 834#endif
 835
 836                /* get a packet */
 837                /* wait for the starting character or ^C */
 838                for (;;) {
 839                        switch (getc ()) {
 840                        case START_CHAR:        /* start packet */
 841                                goto START;
 842                        case ETX_CHAR:          /* ^C waiting for packet */
 843                                return (0);
 844                        default:
 845                                ;
 846                        }
 847                }
 848START:
 849                /* get length of packet */
 850                sum = 0;
 851                new_char = getc ();
 852                if ((new_char & 0xE0) == 0)
 853                        goto packet_error;
 854                sum += new_char & 0xff;
 855                length = untochar (new_char);
 856                /* get sequence number */
 857                new_char = getc ();
 858                if ((new_char & 0xE0) == 0)
 859                        goto packet_error;
 860                sum += new_char & 0xff;
 861                n = untochar (new_char);
 862                --length;
 863
 864                /* NEW CODE - check sequence numbers for retried packets */
 865                /* Note - this new code assumes that the sequence number is correctly
 866                 * received.  Handling an invalid sequence number adds another layer
 867                 * of complexity that may not be needed - yet!  At this time, I'm hoping
 868                 * that I don't need to buffer the incoming data packets and can write
 869                 * the data into memory in real time.
 870                 */
 871                if (n == last_n) {
 872                        /* same sequence number, restore the previous state */
 873                        k_state = k_state_saved;
 874                        k_data_restore ();
 875                } else {
 876                        /* new sequence number, checkpoint the download */
 877                        last_n = n;
 878                        k_state_saved = k_state;
 879                        k_data_save ();
 880                }
 881                /* END NEW CODE */
 882
 883                /* get packet type */
 884                new_char = getc ();
 885                if ((new_char & 0xE0) == 0)
 886                        goto packet_error;
 887                sum += new_char & 0xff;
 888                k_state = new_char;
 889                --length;
 890                /* check for extended length */
 891                if (length == -2) {
 892                        /* (length byte was 0, decremented twice) */
 893                        /* get the two length bytes */
 894                        new_char = getc ();
 895                        if ((new_char & 0xE0) == 0)
 896                                goto packet_error;
 897                        sum += new_char & 0xff;
 898                        len_hi = untochar (new_char);
 899                        new_char = getc ();
 900                        if ((new_char & 0xE0) == 0)
 901                                goto packet_error;
 902                        sum += new_char & 0xff;
 903                        len_lo = untochar (new_char);
 904                        length = len_hi * 95 + len_lo;
 905                        /* check header checksum */
 906                        new_char = getc ();
 907                        if ((new_char & 0xE0) == 0)
 908                                goto packet_error;
 909                        if (new_char != tochar ((sum + ((sum >> 6) & 0x03)) & 0x3f))
 910                                goto packet_error;
 911                        sum += new_char & 0xff;
 912/* --length; */ /* new length includes only data and block check to come */
 913                }
 914                /* bring in rest of packet */
 915                while (length > 1) {
 916                        new_char = getc ();
 917                        if ((new_char & 0xE0) == 0)
 918                                goto packet_error;
 919                        sum += new_char & 0xff;
 920                        --length;
 921                        if (k_state == DATA_TYPE) {
 922                                /* pass on the data if this is a data packet */
 923                                k_data_char (new_char);
 924                        } else if (k_state == SEND_TYPE) {
 925                                /* save send pack in buffer as is */
 926                                *send_ptr++ = new_char;
 927                                /* if too much data, back off the pointer */
 928                                if (send_ptr >= &send_parms[SEND_DATA_SIZE])
 929                                        --send_ptr;
 930                        }
 931                }
 932                /* get and validate checksum character */
 933                new_char = getc ();
 934                if ((new_char & 0xE0) == 0)
 935                        goto packet_error;
 936                if (new_char != tochar ((sum + ((sum >> 6) & 0x03)) & 0x3f))
 937                        goto packet_error;
 938                /* get END_CHAR */
 939                new_char = getc ();
 940                if (new_char != END_CHAR) {
 941                  packet_error:
 942                        /* restore state machines */
 943                        k_state = k_state_saved;
 944                        k_data_restore ();
 945                        /* send a negative acknowledge packet in */
 946                        send_nack (n);
 947                } else if (k_state == SEND_TYPE) {
 948                        /* crack the protocol parms, build an appropriate ack packet */
 949                        handle_send_packet (n);
 950                } else {
 951                        /* send simple acknowledge packet in */
 952                        send_ack (n);
 953                        /* quit if end of transmission */
 954                        if (k_state == BREAK_TYPE)
 955                                done = 1;
 956                }
 957        }
 958        return ((ulong) os_data_addr - (ulong) bin_start_address);
 959}
 960
 961static int getcxmodem(void) {
 962        if (tstc())
 963                return (getc());
 964        return -1;
 965}
 966static ulong load_serial_ymodem (ulong offset)
 967{
 968        int size;
 969        char buf[32];
 970        int err;
 971        int res;
 972        connection_info_t info;
 973        char ymodemBuf[1024];
 974        ulong store_addr = ~0;
 975        ulong addr = 0;
 976
 977        size = 0;
 978        info.mode = xyzModem_ymodem;
 979        res = xyzModem_stream_open (&info, &err);
 980        if (!res) {
 981
 982                while ((res =
 983                        xyzModem_stream_read (ymodemBuf, 1024, &err)) > 0) {
 984                        store_addr = addr + offset;
 985                        size += res;
 986                        addr += res;
 987#ifndef CONFIG_SYS_NO_FLASH
 988                        if (addr2info (store_addr)) {
 989                                int rc;
 990
 991                                rc = flash_write ((char *) ymodemBuf,
 992                                                  store_addr, res);
 993                                if (rc != 0) {
 994                                        flash_perror (rc);
 995                                        return (~0);
 996                                }
 997                        } else
 998#endif
 999                        {
1000                                memcpy ((char *) (store_addr), ymodemBuf,
1001                                        res);
1002                        }
1003
1004                }
1005        } else {
1006                printf ("%s\n", xyzModem_error (err));
1007        }
1008
1009        xyzModem_stream_close (&err);
1010        xyzModem_stream_terminate (false, &getcxmodem);
1011
1012
1013        flush_cache (offset, size);
1014
1015        printf ("## Total Size      = 0x%08x = %d Bytes\n", size, size);
1016        sprintf (buf, "%X", size);
1017        setenv ("filesize", buf);
1018
1019        return offset;
1020}
1021
1022#endif
1023
1024/* -------------------------------------------------------------------- */
1025
1026#if defined(CONFIG_CMD_LOADS)
1027
1028#ifdef  CONFIG_SYS_LOADS_BAUD_CHANGE
1029U_BOOT_CMD(
1030        loads, 3, 0,    do_load_serial,
1031        "load S-Record file over serial line",
1032        "[ off ] [ baud ]\n"
1033        "    - load S-Record file over serial line"
1034        " with offset 'off' and baudrate 'baud'"
1035);
1036
1037#else   /* ! CONFIG_SYS_LOADS_BAUD_CHANGE */
1038U_BOOT_CMD(
1039        loads, 2, 0,    do_load_serial,
1040        "load S-Record file over serial line",
1041        "[ off ]\n"
1042        "    - load S-Record file over serial line with offset 'off'"
1043);
1044#endif  /* CONFIG_SYS_LOADS_BAUD_CHANGE */
1045
1046/*
1047 * SAVES always requires LOADS support, but not vice versa
1048 */
1049
1050
1051#if defined(CONFIG_CMD_SAVES)
1052#ifdef  CONFIG_SYS_LOADS_BAUD_CHANGE
1053U_BOOT_CMD(
1054        saves, 4, 0,    do_save_serial,
1055        "save S-Record file over serial line",
1056        "[ off ] [size] [ baud ]\n"
1057        "    - save S-Record file over serial line"
1058        " with offset 'off', size 'size' and baudrate 'baud'"
1059);
1060#else   /* ! CONFIG_SYS_LOADS_BAUD_CHANGE */
1061U_BOOT_CMD(
1062        saves, 3, 0,    do_save_serial,
1063        "save S-Record file over serial line",
1064        "[ off ] [size]\n"
1065        "    - save S-Record file over serial line with offset 'off' and size 'size'"
1066);
1067#endif  /* CONFIG_SYS_LOADS_BAUD_CHANGE */
1068#endif
1069#endif
1070
1071
1072#if defined(CONFIG_CMD_LOADB)
1073U_BOOT_CMD(
1074        loadb, 3, 0,    do_load_serial_bin,
1075        "load binary file over serial line (kermit mode)",
1076        "[ off ] [ baud ]\n"
1077        "    - load binary file over serial line"
1078        " with offset 'off' and baudrate 'baud'"
1079);
1080
1081U_BOOT_CMD(
1082        loady, 3, 0,    do_load_serial_bin,
1083        "load binary file over serial line (ymodem mode)",
1084        "[ off ] [ baud ]\n"
1085        "    - load binary file over serial line"
1086        " with offset 'off' and baudrate 'baud'"
1087);
1088
1089#endif
1090
1091/* -------------------------------------------------------------------- */
1092
1093#if defined(CONFIG_CMD_HWFLOW)
1094int do_hwflow (cmd_tbl_t *cmdtp, int flag, int argc, char * const argv[])
1095{
1096        extern int hwflow_onoff(int);
1097
1098        if (argc == 2) {
1099                if (strcmp(argv[1], "off") == 0)
1100                        hwflow_onoff(-1);
1101                else
1102                        if (strcmp(argv[1], "on") == 0)
1103                                hwflow_onoff(1);
1104                        else
1105                                return CMD_RET_USAGE;
1106        }
1107        printf("RTS/CTS hardware flow control: %s\n", hwflow_onoff(0) ? "on" : "off");
1108        return 0;
1109}
1110
1111/* -------------------------------------------------------------------- */
1112
1113U_BOOT_CMD(
1114        hwflow, 2, 0,   do_hwflow,
1115        "turn RTS/CTS hardware flow control in serial line on/off",
1116        "[on|off]"
1117);
1118
1119#endif
1120