uboot/tools/fit_image.c
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   1// SPDX-License-Identifier: GPL-2.0+
   2/*
   3 * (C) Copyright 2008 Semihalf
   4 *
   5 * (C) Copyright 2000-2004
   6 * DENX Software Engineering
   7 * Wolfgang Denk, wd@denx.de
   8 *
   9 * Updated-by: Prafulla Wadaskar <prafulla@marvell.com>
  10 *              FIT image specific code abstracted from mkimage.c
  11 *              some functions added to address abstraction
  12 *
  13 * All rights reserved.
  14 */
  15
  16#include "imagetool.h"
  17#include "fit_common.h"
  18#include "mkimage.h"
  19#include <image.h>
  20#include <stdarg.h>
  21#include <version.h>
  22#include <u-boot/crc.h>
  23
  24static image_header_t header;
  25
  26static int fit_add_file_data(struct image_tool_params *params, size_t size_inc,
  27                             const char *tmpfile)
  28{
  29        int tfd, destfd = 0;
  30        void *dest_blob = NULL;
  31        off_t destfd_size = 0;
  32        struct stat sbuf;
  33        void *ptr;
  34        int ret = 0;
  35
  36        tfd = mmap_fdt(params->cmdname, tmpfile, size_inc, &ptr, &sbuf, true,
  37                       false);
  38        if (tfd < 0)
  39                return -EIO;
  40
  41        if (params->keydest) {
  42                struct stat dest_sbuf;
  43
  44                destfd = mmap_fdt(params->cmdname, params->keydest, size_inc,
  45                                  &dest_blob, &dest_sbuf, false,
  46                                  false);
  47                if (destfd < 0) {
  48                        ret = -EIO;
  49                        goto err_keydest;
  50                }
  51                destfd_size = dest_sbuf.st_size;
  52        }
  53
  54        /* for first image creation, add a timestamp at offset 0 i.e., root  */
  55        if (params->datafile) {
  56                time_t time = imagetool_get_source_date(params->cmdname,
  57                                                        sbuf.st_mtime);
  58                ret = fit_set_timestamp(ptr, 0, time);
  59        }
  60
  61        if (!ret) {
  62                ret = fit_add_verification_data(params->keydir, dest_blob, ptr,
  63                                                params->comment,
  64                                                params->require_keys,
  65                                                params->engine_id,
  66                                                params->cmdname);
  67        }
  68
  69        if (dest_blob) {
  70                munmap(dest_blob, destfd_size);
  71                close(destfd);
  72        }
  73
  74err_keydest:
  75        munmap(ptr, sbuf.st_size);
  76        close(tfd);
  77
  78        return ret;
  79}
  80
  81/**
  82 * fit_calc_size() - Calculate the approximate size of the FIT we will generate
  83 */
  84static int fit_calc_size(struct image_tool_params *params)
  85{
  86        struct content_info *cont;
  87        int size, total_size;
  88
  89        size = imagetool_get_filesize(params, params->datafile);
  90        if (size < 0)
  91                return -1;
  92        total_size = size;
  93
  94        if (params->fit_ramdisk) {
  95                size = imagetool_get_filesize(params, params->fit_ramdisk);
  96                if (size < 0)
  97                        return -1;
  98                total_size += size;
  99        }
 100
 101        for (cont = params->content_head; cont; cont = cont->next) {
 102                size = imagetool_get_filesize(params, cont->fname);
 103                if (size < 0)
 104                        return -1;
 105
 106                /* Add space for properties */
 107                total_size += size + 300;
 108        }
 109
 110        /* Add plenty of space for headers, properties, nodes, etc. */
 111        total_size += 4096;
 112
 113        return total_size;
 114}
 115
 116static int fdt_property_file(struct image_tool_params *params,
 117                             void *fdt, const char *name, const char *fname)
 118{
 119        struct stat sbuf;
 120        void *ptr;
 121        int ret;
 122        int fd;
 123
 124        fd = open(fname, O_RDWR | O_BINARY);
 125        if (fd < 0) {
 126                fprintf(stderr, "%s: Can't open %s: %s\n",
 127                        params->cmdname, fname, strerror(errno));
 128                return -1;
 129        }
 130
 131        if (fstat(fd, &sbuf) < 0) {
 132                fprintf(stderr, "%s: Can't stat %s: %s\n",
 133                        params->cmdname, fname, strerror(errno));
 134                goto err;
 135        }
 136
 137        ret = fdt_property_placeholder(fdt, "data", sbuf.st_size, &ptr);
 138        if (ret)
 139                goto err;
 140        ret = read(fd, ptr, sbuf.st_size);
 141        if (ret != sbuf.st_size) {
 142                fprintf(stderr, "%s: Can't read %s: %s\n",
 143                        params->cmdname, fname, strerror(errno));
 144                goto err;
 145        }
 146        close(fd);
 147
 148        return 0;
 149err:
 150        close(fd);
 151        return -1;
 152}
 153
 154static int fdt_property_strf(void *fdt, const char *name, const char *fmt, ...)
 155{
 156        char str[100];
 157        va_list ptr;
 158
 159        va_start(ptr, fmt);
 160        vsnprintf(str, sizeof(str), fmt, ptr);
 161        va_end(ptr);
 162        return fdt_property_string(fdt, name, str);
 163}
 164
 165static void get_basename(char *str, int size, const char *fname)
 166{
 167        const char *p, *start, *end;
 168        int len;
 169
 170        /*
 171         * Use the base name as the 'name' field. So for example:
 172         *
 173         * "arch/arm/dts/sun7i-a20-bananapro.dtb"
 174         * becomes "sun7i-a20-bananapro"
 175         */
 176        p = strrchr(fname, '/');
 177        start = p ? p + 1 : fname;
 178        p = strrchr(fname, '.');
 179        end = p ? p : fname + strlen(fname);
 180        len = end - start;
 181        if (len >= size)
 182                len = size - 1;
 183        memcpy(str, start, len);
 184        str[len] = '\0';
 185}
 186
 187/**
 188 * fit_write_images() - Write out a list of images to the FIT
 189 *
 190 * We always include the main image (params->datafile). If there are device
 191 * tree files, we include an fdt- node for each of those too.
 192 */
 193static int fit_write_images(struct image_tool_params *params, char *fdt)
 194{
 195        struct content_info *cont;
 196        const char *typename;
 197        char str[100];
 198        int upto;
 199        int ret;
 200
 201        fdt_begin_node(fdt, "images");
 202
 203        /* First the main image */
 204        typename = genimg_get_type_short_name(params->fit_image_type);
 205        snprintf(str, sizeof(str), "%s-1", typename);
 206        fdt_begin_node(fdt, str);
 207        fdt_property_string(fdt, FIT_DESC_PROP, params->imagename);
 208        fdt_property_string(fdt, FIT_TYPE_PROP, typename);
 209        fdt_property_string(fdt, FIT_ARCH_PROP,
 210                            genimg_get_arch_short_name(params->arch));
 211        fdt_property_string(fdt, FIT_OS_PROP,
 212                            genimg_get_os_short_name(params->os));
 213        fdt_property_string(fdt, FIT_COMP_PROP,
 214                            genimg_get_comp_short_name(params->comp));
 215        fdt_property_u32(fdt, FIT_LOAD_PROP, params->addr);
 216        fdt_property_u32(fdt, FIT_ENTRY_PROP, params->ep);
 217
 218        /*
 219         * Put data last since it is large. SPL may only load the first part
 220         * of the DT, so this way it can access all the above fields.
 221         */
 222        ret = fdt_property_file(params, fdt, FIT_DATA_PROP, params->datafile);
 223        if (ret)
 224                return ret;
 225        fdt_end_node(fdt);
 226
 227        /* Now the device tree files if available */
 228        upto = 0;
 229        for (cont = params->content_head; cont; cont = cont->next) {
 230                if (cont->type != IH_TYPE_FLATDT)
 231                        continue;
 232                typename = genimg_get_type_short_name(cont->type);
 233                snprintf(str, sizeof(str), "%s-%d", FIT_FDT_PROP, ++upto);
 234                fdt_begin_node(fdt, str);
 235
 236                get_basename(str, sizeof(str), cont->fname);
 237                fdt_property_string(fdt, FIT_DESC_PROP, str);
 238                ret = fdt_property_file(params, fdt, FIT_DATA_PROP,
 239                                        cont->fname);
 240                if (ret)
 241                        return ret;
 242                fdt_property_string(fdt, FIT_TYPE_PROP, typename);
 243                fdt_property_string(fdt, FIT_ARCH_PROP,
 244                                    genimg_get_arch_short_name(params->arch));
 245                fdt_property_string(fdt, FIT_COMP_PROP,
 246                                    genimg_get_comp_short_name(IH_COMP_NONE));
 247                fdt_end_node(fdt);
 248        }
 249
 250        /* And a ramdisk file if available */
 251        if (params->fit_ramdisk) {
 252                fdt_begin_node(fdt, FIT_RAMDISK_PROP "-1");
 253
 254                fdt_property_string(fdt, FIT_TYPE_PROP, FIT_RAMDISK_PROP);
 255                fdt_property_string(fdt, FIT_OS_PROP,
 256                                    genimg_get_os_short_name(params->os));
 257                fdt_property_string(fdt, FIT_ARCH_PROP,
 258                                    genimg_get_arch_short_name(params->arch));
 259
 260                ret = fdt_property_file(params, fdt, FIT_DATA_PROP,
 261                                        params->fit_ramdisk);
 262                if (ret)
 263                        return ret;
 264
 265                fdt_end_node(fdt);
 266        }
 267
 268        fdt_end_node(fdt);
 269
 270        return 0;
 271}
 272
 273/**
 274 * fit_write_configs() - Write out a list of configurations to the FIT
 275 *
 276 * If there are device tree files, we include a configuration for each, which
 277 * selects the main image (params->datafile) and its corresponding device
 278 * tree file.
 279 *
 280 * Otherwise we just create a configuration with the main image in it.
 281 */
 282static void fit_write_configs(struct image_tool_params *params, char *fdt)
 283{
 284        struct content_info *cont;
 285        const char *typename;
 286        char str[100];
 287        int upto;
 288
 289        fdt_begin_node(fdt, "configurations");
 290        fdt_property_string(fdt, FIT_DEFAULT_PROP, "conf-1");
 291
 292        upto = 0;
 293        for (cont = params->content_head; cont; cont = cont->next) {
 294                if (cont->type != IH_TYPE_FLATDT)
 295                        continue;
 296                typename = genimg_get_type_short_name(cont->type);
 297                snprintf(str, sizeof(str), "conf-%d", ++upto);
 298                fdt_begin_node(fdt, str);
 299
 300                get_basename(str, sizeof(str), cont->fname);
 301                fdt_property_string(fdt, FIT_DESC_PROP, str);
 302
 303                typename = genimg_get_type_short_name(params->fit_image_type);
 304                snprintf(str, sizeof(str), "%s-1", typename);
 305                fdt_property_string(fdt, typename, str);
 306                fdt_property_string(fdt, FIT_LOADABLE_PROP, str);
 307
 308                if (params->fit_ramdisk)
 309                        fdt_property_string(fdt, FIT_RAMDISK_PROP,
 310                                            FIT_RAMDISK_PROP "-1");
 311
 312                snprintf(str, sizeof(str), FIT_FDT_PROP "-%d", upto);
 313                fdt_property_string(fdt, FIT_FDT_PROP, str);
 314                fdt_end_node(fdt);
 315        }
 316
 317        if (!upto) {
 318                fdt_begin_node(fdt, "conf-1");
 319                typename = genimg_get_type_short_name(params->fit_image_type);
 320                snprintf(str, sizeof(str), "%s-1", typename);
 321                fdt_property_string(fdt, typename, str);
 322
 323                if (params->fit_ramdisk)
 324                        fdt_property_string(fdt, FIT_RAMDISK_PROP,
 325                                            FIT_RAMDISK_PROP "-1");
 326
 327                fdt_end_node(fdt);
 328        }
 329
 330        fdt_end_node(fdt);
 331}
 332
 333static int fit_build_fdt(struct image_tool_params *params, char *fdt, int size)
 334{
 335        int ret;
 336
 337        ret = fdt_create(fdt, size);
 338        if (ret)
 339                return ret;
 340        fdt_finish_reservemap(fdt);
 341        fdt_begin_node(fdt, "");
 342        fdt_property_strf(fdt, FIT_DESC_PROP,
 343                          "%s image with one or more FDT blobs",
 344                          genimg_get_type_name(params->fit_image_type));
 345        fdt_property_strf(fdt, "creator", "U-Boot mkimage %s", PLAIN_VERSION);
 346        fdt_property_u32(fdt, "#address-cells", 1);
 347        ret = fit_write_images(params, fdt);
 348        if (ret)
 349                return ret;
 350        fit_write_configs(params, fdt);
 351        fdt_end_node(fdt);
 352        ret = fdt_finish(fdt);
 353        if (ret)
 354                return ret;
 355
 356        return fdt_totalsize(fdt);
 357}
 358
 359static int fit_build(struct image_tool_params *params, const char *fname)
 360{
 361        char *buf;
 362        int size;
 363        int ret;
 364        int fd;
 365
 366        size = fit_calc_size(params);
 367        if (size < 0)
 368                return -1;
 369        buf = malloc(size);
 370        if (!buf) {
 371                fprintf(stderr, "%s: Out of memory (%d bytes)\n",
 372                        params->cmdname, size);
 373                return -1;
 374        }
 375        ret = fit_build_fdt(params, buf, size);
 376        if (ret < 0) {
 377                fprintf(stderr, "%s: Failed to build FIT image\n",
 378                        params->cmdname);
 379                goto err_buf;
 380        }
 381        size = ret;
 382        fd = open(fname, O_RDWR | O_CREAT | O_TRUNC | O_BINARY, 0666);
 383        if (fd < 0) {
 384                fprintf(stderr, "%s: Can't open %s: %s\n",
 385                        params->cmdname, fname, strerror(errno));
 386                goto err_buf;
 387        }
 388        ret = write(fd, buf, size);
 389        if (ret != size) {
 390                fprintf(stderr, "%s: Can't write %s: %s\n",
 391                        params->cmdname, fname, strerror(errno));
 392                goto err;
 393        }
 394        close(fd);
 395        free(buf);
 396
 397        return 0;
 398err:
 399        close(fd);
 400err_buf:
 401        free(buf);
 402        return -1;
 403}
 404
 405/**
 406 * fit_extract_data() - Move all data outside the FIT
 407 *
 408 * This takes a normal FIT file and removes all the 'data' properties from it.
 409 * The data is placed in an area after the FIT so that it can be accessed
 410 * using an offset into that area. The 'data' properties turn into
 411 * 'data-offset' properties.
 412 *
 413 * This function cannot cope with FITs with 'data-offset' properties. All
 414 * data must be in 'data' properties on entry.
 415 */
 416static int fit_extract_data(struct image_tool_params *params, const char *fname)
 417{
 418        void *buf;
 419        int buf_ptr;
 420        int fit_size, new_size;
 421        int fd;
 422        struct stat sbuf;
 423        void *fdt;
 424        int ret;
 425        int images;
 426        int node;
 427
 428        fd = mmap_fdt(params->cmdname, fname, 0, &fdt, &sbuf, false, false);
 429        if (fd < 0)
 430                return -EIO;
 431        fit_size = fdt_totalsize(fdt);
 432
 433        /* Allocate space to hold the image data we will extract */
 434        buf = malloc(fit_size);
 435        if (!buf) {
 436                ret = -ENOMEM;
 437                goto err_munmap;
 438        }
 439        buf_ptr = 0;
 440
 441        images = fdt_path_offset(fdt, FIT_IMAGES_PATH);
 442        if (images < 0) {
 443                debug("%s: Cannot find /images node: %d\n", __func__, images);
 444                ret = -EINVAL;
 445                goto err_munmap;
 446        }
 447
 448        for (node = fdt_first_subnode(fdt, images);
 449             node >= 0;
 450             node = fdt_next_subnode(fdt, node)) {
 451                const char *data;
 452                int len;
 453
 454                data = fdt_getprop(fdt, node, FIT_DATA_PROP, &len);
 455                if (!data)
 456                        continue;
 457                memcpy(buf + buf_ptr, data, len);
 458                debug("Extracting data size %x\n", len);
 459
 460                ret = fdt_delprop(fdt, node, FIT_DATA_PROP);
 461                if (ret) {
 462                        ret = -EPERM;
 463                        goto err_munmap;
 464                }
 465                if (params->external_offset > 0) {
 466                        /* An external offset positions the data absolutely. */
 467                        fdt_setprop_u32(fdt, node, FIT_DATA_POSITION_PROP,
 468                                        params->external_offset + buf_ptr);
 469                } else {
 470                        fdt_setprop_u32(fdt, node, FIT_DATA_OFFSET_PROP,
 471                                        buf_ptr);
 472                }
 473                fdt_setprop_u32(fdt, node, FIT_DATA_SIZE_PROP, len);
 474
 475                buf_ptr += (len + 3) & ~3;
 476        }
 477
 478        /* Pack the FDT and place the data after it */
 479        fdt_pack(fdt);
 480
 481        debug("Size reduced from %x to %x\n", fit_size, fdt_totalsize(fdt));
 482        debug("External data size %x\n", buf_ptr);
 483        new_size = fdt_totalsize(fdt);
 484        new_size = (new_size + 3) & ~3;
 485        munmap(fdt, sbuf.st_size);
 486
 487        if (ftruncate(fd, new_size)) {
 488                debug("%s: Failed to truncate file: %s\n", __func__,
 489                      strerror(errno));
 490                ret = -EIO;
 491                goto err;
 492        }
 493
 494        /* Check if an offset for the external data was set. */
 495        if (params->external_offset > 0) {
 496                if (params->external_offset < new_size) {
 497                        debug("External offset %x overlaps FIT length %x",
 498                              params->external_offset, new_size);
 499                        ret = -EINVAL;
 500                        goto err;
 501                }
 502                new_size = params->external_offset;
 503        }
 504        if (lseek(fd, new_size, SEEK_SET) < 0) {
 505                debug("%s: Failed to seek to end of file: %s\n", __func__,
 506                      strerror(errno));
 507                ret = -EIO;
 508                goto err;
 509        }
 510        if (write(fd, buf, buf_ptr) != buf_ptr) {
 511                debug("%s: Failed to write external data to file %s\n",
 512                      __func__, strerror(errno));
 513                ret = -EIO;
 514                goto err;
 515        }
 516        free(buf);
 517        close(fd);
 518        return 0;
 519
 520err_munmap:
 521        munmap(fdt, sbuf.st_size);
 522err:
 523        if (buf)
 524                free(buf);
 525        close(fd);
 526        return ret;
 527}
 528
 529static int fit_import_data(struct image_tool_params *params, const char *fname)
 530{
 531        void *fdt, *old_fdt;
 532        int fit_size, new_size, size, data_base;
 533        int fd;
 534        struct stat sbuf;
 535        int ret;
 536        int images;
 537        int node;
 538
 539        fd = mmap_fdt(params->cmdname, fname, 0, &old_fdt, &sbuf, false, false);
 540        if (fd < 0)
 541                return -EIO;
 542        fit_size = fdt_totalsize(old_fdt);
 543        data_base = (fit_size + 3) & ~3;
 544
 545        /* Allocate space to hold the new FIT */
 546        size = sbuf.st_size + 16384;
 547        fdt = malloc(size);
 548        if (!fdt) {
 549                fprintf(stderr, "%s: Failed to allocate memory (%d bytes)\n",
 550                        __func__, size);
 551                ret = -ENOMEM;
 552                goto err_has_fd;
 553        }
 554        ret = fdt_open_into(old_fdt, fdt, size);
 555        if (ret) {
 556                debug("%s: Failed to expand FIT: %s\n", __func__,
 557                      fdt_strerror(errno));
 558                ret = -EINVAL;
 559                goto err_has_fd;
 560        }
 561
 562        images = fdt_path_offset(fdt, FIT_IMAGES_PATH);
 563        if (images < 0) {
 564                debug("%s: Cannot find /images node: %d\n", __func__, images);
 565                ret = -EINVAL;
 566                goto err_has_fd;
 567        }
 568
 569        for (node = fdt_first_subnode(fdt, images);
 570             node >= 0;
 571             node = fdt_next_subnode(fdt, node)) {
 572                int buf_ptr;
 573                int len;
 574
 575                buf_ptr = fdtdec_get_int(fdt, node, "data-offset", -1);
 576                len = fdtdec_get_int(fdt, node, "data-size", -1);
 577                if (buf_ptr == -1 || len == -1)
 578                        continue;
 579                debug("Importing data size %x\n", len);
 580
 581                ret = fdt_setprop(fdt, node, "data", fdt + data_base + buf_ptr,
 582                                  len);
 583                if (ret) {
 584                        debug("%s: Failed to write property: %s\n", __func__,
 585                              fdt_strerror(ret));
 586                        ret = -EINVAL;
 587                        goto err_has_fd;
 588                }
 589        }
 590
 591        /* Close the old fd so we can re-use it. */
 592        close(fd);
 593
 594        /* Pack the FDT and place the data after it */
 595        fdt_pack(fdt);
 596
 597        new_size = fdt_totalsize(fdt);
 598        debug("Size expanded from %x to %x\n", fit_size, new_size);
 599
 600        fd = open(fname, O_RDWR | O_CREAT | O_TRUNC | O_BINARY, 0666);
 601        if (fd < 0) {
 602                fprintf(stderr, "%s: Can't open %s: %s\n",
 603                        params->cmdname, fname, strerror(errno));
 604                ret = -EIO;
 605                goto err_no_fd;
 606        }
 607        if (write(fd, fdt, new_size) != new_size) {
 608                debug("%s: Failed to write external data to file %s\n",
 609                      __func__, strerror(errno));
 610                ret = -EIO;
 611                goto err_has_fd;
 612        }
 613
 614        ret = 0;
 615
 616err_has_fd:
 617        close(fd);
 618err_no_fd:
 619        munmap(old_fdt, sbuf.st_size);
 620        free(fdt);
 621        return ret;
 622}
 623
 624/**
 625 * fit_handle_file - main FIT file processing function
 626 *
 627 * fit_handle_file() runs dtc to convert .its to .itb, includes
 628 * binary data, updates timestamp property and calculates hashes.
 629 *
 630 * datafile  - .its file
 631 * imagefile - .itb file
 632 *
 633 * returns:
 634 *     only on success, otherwise calls exit (EXIT_FAILURE);
 635 */
 636static int fit_handle_file(struct image_tool_params *params)
 637{
 638        char tmpfile[MKIMAGE_MAX_TMPFILE_LEN];
 639        char cmd[MKIMAGE_MAX_DTC_CMDLINE_LEN];
 640        size_t size_inc;
 641        int ret;
 642
 643        /* Flattened Image Tree (FIT) format  handling */
 644        debug ("FIT format handling\n");
 645
 646        /* call dtc to include binary properties into the tmp file */
 647        if (strlen (params->imagefile) +
 648                strlen (MKIMAGE_TMPFILE_SUFFIX) + 1 > sizeof (tmpfile)) {
 649                fprintf (stderr, "%s: Image file name (%s) too long, "
 650                                "can't create tmpfile",
 651                                params->imagefile, params->cmdname);
 652                return (EXIT_FAILURE);
 653        }
 654        sprintf (tmpfile, "%s%s", params->imagefile, MKIMAGE_TMPFILE_SUFFIX);
 655
 656        /* We either compile the source file, or use the existing FIT image */
 657        if (params->auto_its) {
 658                if (fit_build(params, tmpfile)) {
 659                        fprintf(stderr, "%s: failed to build FIT\n",
 660                                params->cmdname);
 661                        return EXIT_FAILURE;
 662                }
 663                *cmd = '\0';
 664        } else if (params->datafile) {
 665                /* dtc -I dts -O dtb -p 500 -o tmpfile datafile */
 666                snprintf(cmd, sizeof(cmd), "%s %s -o \"%s\" \"%s\"",
 667                         MKIMAGE_DTC, params->dtc, tmpfile, params->datafile);
 668                debug("Trying to execute \"%s\"\n", cmd);
 669        } else {
 670                snprintf(cmd, sizeof(cmd), "cp \"%s\" \"%s\"",
 671                         params->imagefile, tmpfile);
 672        }
 673        if (*cmd && system(cmd) == -1) {
 674                fprintf (stderr, "%s: system(%s) failed: %s\n",
 675                                params->cmdname, cmd, strerror(errno));
 676                goto err_system;
 677        }
 678
 679        /* Move the data so it is internal to the FIT, if needed */
 680        ret = fit_import_data(params, tmpfile);
 681        if (ret)
 682                goto err_system;
 683
 684        /*
 685         * Set hashes for images in the blob. Unfortunately we may need more
 686         * space in either FDT, so keep trying until we succeed.
 687         *
 688         * Note: this is pretty inefficient for signing, since we must
 689         * calculate the signature every time. It would be better to calculate
 690         * all the data and then store it in a separate step. However, this
 691         * would be considerably more complex to implement. Generally a few
 692         * steps of this loop is enough to sign with several keys.
 693         */
 694        for (size_inc = 0; size_inc < 64 * 1024; size_inc += 1024) {
 695                ret = fit_add_file_data(params, size_inc, tmpfile);
 696                if (!ret || ret != -ENOSPC)
 697                        break;
 698        }
 699
 700        if (ret) {
 701                fprintf(stderr, "%s Can't add hashes to FIT blob: %d\n",
 702                        params->cmdname, ret);
 703                goto err_system;
 704        }
 705
 706        /* Move the data so it is external to the FIT, if requested */
 707        if (params->external_data) {
 708                ret = fit_extract_data(params, tmpfile);
 709                if (ret)
 710                        goto err_system;
 711        }
 712
 713        if (rename (tmpfile, params->imagefile) == -1) {
 714                fprintf (stderr, "%s: Can't rename %s to %s: %s\n",
 715                                params->cmdname, tmpfile, params->imagefile,
 716                                strerror (errno));
 717                unlink (tmpfile);
 718                unlink (params->imagefile);
 719                return EXIT_FAILURE;
 720        }
 721        return EXIT_SUCCESS;
 722
 723err_system:
 724        unlink(tmpfile);
 725        return -1;
 726}
 727
 728/**
 729 * fit_image_extract - extract a FIT component image
 730 * @fit: pointer to the FIT format image header
 731 * @image_noffset: offset of the component image node
 732 * @file_name: name of the file to store the FIT sub-image
 733 *
 734 * returns:
 735 *     zero in case of success or a negative value if fail.
 736 */
 737static int fit_image_extract(
 738        const void *fit,
 739        int image_noffset,
 740        const char *file_name)
 741{
 742        const void *file_data;
 743        size_t file_size = 0;
 744
 745        /* get the "data" property of component at offset "image_noffset" */
 746        fit_image_get_data(fit, image_noffset, &file_data, &file_size);
 747
 748        /* save the "file_data" into the file specified by "file_name" */
 749        return imagetool_save_subimage(file_name, (ulong) file_data, file_size);
 750}
 751
 752/**
 753 * fit_extract_contents - retrieve a sub-image component from the FIT image
 754 * @ptr: pointer to the FIT format image header
 755 * @params: command line parameters
 756 *
 757 * returns:
 758 *     zero in case of success or a negative value if fail.
 759 */
 760static int fit_extract_contents(void *ptr, struct image_tool_params *params)
 761{
 762        int images_noffset;
 763        int noffset;
 764        int ndepth;
 765        const void *fit = ptr;
 766        int count = 0;
 767        const char *p;
 768
 769        /* Indent string is defined in header image.h */
 770        p = IMAGE_INDENT_STRING;
 771
 772        if (!fit_check_format(fit)) {
 773                printf("Bad FIT image format\n");
 774                return -1;
 775        }
 776
 777        /* Find images parent node offset */
 778        images_noffset = fdt_path_offset(fit, FIT_IMAGES_PATH);
 779        if (images_noffset < 0) {
 780                printf("Can't find images parent node '%s' (%s)\n",
 781                       FIT_IMAGES_PATH, fdt_strerror(images_noffset));
 782                return -1;
 783        }
 784
 785        /* Avoid any overrun */
 786        count = fit_get_subimage_count(fit, images_noffset);
 787        if ((params->pflag < 0) || (count <= params->pflag)) {
 788                printf("No such component at '%d'\n", params->pflag);
 789                return -1;
 790        }
 791
 792        /* Process its subnodes, extract the desired component from image */
 793        for (ndepth = 0, count = 0,
 794                noffset = fdt_next_node(fit, images_noffset, &ndepth);
 795                (noffset >= 0) && (ndepth > 0);
 796                noffset = fdt_next_node(fit, noffset, &ndepth)) {
 797                if (ndepth == 1) {
 798                        /*
 799                         * Direct child node of the images parent node,
 800                         * i.e. component image node.
 801                         */
 802                        if (params->pflag == count) {
 803                                printf("Extracted:\n%s Image %u (%s)\n", p,
 804                                       count, fit_get_name(fit, noffset, NULL));
 805
 806                                fit_image_print(fit, noffset, p);
 807
 808                                return fit_image_extract(fit, noffset,
 809                                                params->outfile);
 810                        }
 811
 812                        count++;
 813                }
 814        }
 815
 816        return 0;
 817}
 818
 819static int fit_check_params(struct image_tool_params *params)
 820{
 821        if (params->auto_its)
 822                return 0;
 823        return  ((params->dflag && (params->fflag || params->lflag)) ||
 824                (params->fflag && (params->dflag || params->lflag)) ||
 825                (params->lflag && (params->dflag || params->fflag)));
 826}
 827
 828U_BOOT_IMAGE_TYPE(
 829        fitimage,
 830        "FIT Image support",
 831        sizeof(image_header_t),
 832        (void *)&header,
 833        fit_check_params,
 834        fit_verify_header,
 835        fit_print_contents,
 836        NULL,
 837        fit_extract_contents,
 838        fit_check_image_types,
 839        fit_handle_file,
 840        NULL /* FIT images use DTB header */
 841);
 842