*/
+#include "imagetool.h"
#include "mkimage.h"
#include "imximage.h"
#include <image.h>
#include <version.h>
+#ifdef __linux__
+#include <sys/ioctl.h>
+#endif
static void copy_file(int, const char *, int);
return -ENOMEM;
/* Sort the names in order of short name for easier reading */
- for (item = 0; item < count; item++)
- order[item] = item;
+ for (i = 0, item = 0; i < count; i++, item++) {
+ while (!genimg_cat_has_id(category, item) && i < count) {
+ item++;
+ count--;
+ }
+ order[i] = item;
+ }
cur_category = category;
qsort(order, count, sizeof(int), h_compare_category_name);
" -x ==> set XIP (execute in place)\n",
params.cmdname);
fprintf(stderr,
- " %s [-D dtc_options] [-f fit-image.its|-f auto|-F] [-b <dtb> [-b <dtb>]] [-i <ramdisk.cpio.gz>] fit-image\n"
+ " %s [-D dtc_options] [-f fit-image.its|-f auto|-F] [-b <dtb> [-b <dtb>]] [-E] [-B size] [-i <ramdisk.cpio.gz>] fit-image\n"
" <dtb> file is used with -f auto, it may occur multiple times.\n",
params.cmdname);
fprintf(stderr,
" -D => set all options for device tree compiler\n"
" -f => input filename for FIT source\n"
- " -i => input filename for ramdisk file\n");
+ " -i => input filename for ramdisk file\n"
+ " -E => place data outside of the FIT structure\n"
+ " -B => align size in hex for FIT structure and header\n");
#ifdef CONFIG_FIT_SIGNATURE
fprintf(stderr,
- "Signing / verified boot options: [-E] [-k keydir] [-K dtb] [ -c <comment>] [-p addr] [-r] [-N engine]\n"
- " -E => place data outside of the FIT structure\n"
+ "Signing / verified boot options: [-k keydir] [-K dtb] [ -c <comment>] [-p addr] [-r] [-N engine]\n"
" -k => set directory containing private keys\n"
" -K => write public keys to this .dtb file\n"
+ " -G => use this signing key (in lieu of -k)\n"
" -c => add comment in signature node\n"
" -F => re-sign existing FIT image\n"
" -p => place external data at a static position\n"
" -r => mark keys used as 'required' in dtb\n"
- " -N => engine to use for signing (pkcs11)\n");
+ " -N => openssl engine to use for signing\n");
#else
fprintf(stderr,
"Signing / verified boot not supported (CONFIG_FIT_SIGNATURE undefined)\n");
return 0;
}
+#define OPT_STRING "a:A:b:B:c:C:d:D:e:Ef:Fk:i:K:ln:N:p:O:rR:qstT:vVx"
static void process_args(int argc, char **argv)
{
char *ptr;
int opt;
while ((opt = getopt(argc, argv,
- "a:A:b:c:C:d:D:e:Ef:Fk:i:K:ln:N:p:O:rR:qsT:vVx")) != -1) {
+ "a:A:b:B:c:C:d:D:e:Ef:FG:k:i:K:ln:N:p:O:rR:qstT:vVx")) != -1) {
switch (opt) {
case 'a':
params.addr = strtoull(optarg, &ptr, 16);
params.cmdname, optarg);
exit(EXIT_FAILURE);
}
+ break;
+ case 'B':
+ params.bl_len = strtoull(optarg, &ptr, 16);
+ if (*ptr) {
+ fprintf(stderr, "%s: invalid block length %s\n",
+ params.cmdname, optarg);
+ exit(EXIT_FAILURE);
+ }
+
break;
case 'c':
params.comment = optarg;
case 'f':
datafile = optarg;
params.auto_its = !strcmp(datafile, "auto");
- /* no break */
+ /* fallthrough */
case 'F':
/*
* The flattened image tree (FIT) format
params.type = IH_TYPE_FLATDT;
params.fflag = 1;
break;
+ case 'G':
+ params.keyfile = optarg;
+ break;
case 'i':
params.fit_ramdisk = optarg;
break;
case 's':
params.skipcpy = 1;
break;
+ case 't':
+ params.reset_timestamp = 1;
+ break;
case 'T':
if (strcmp(optarg, "list") == 0) {
show_valid_options(IH_TYPE);
}
if (params.lflag || params.fflag) {
+ uint64_t size;
/*
* list header information of existing image
*/
exit (EXIT_FAILURE);
}
- if ((unsigned)sbuf.st_size < tparams->header_size) {
+ if ((sbuf.st_mode & S_IFMT) == S_IFBLK) {
+#ifdef __linux__
+#if defined(__linux__) && defined(_IOR) && !defined(BLKGETSIZE64)
+#define BLKGETSIZE64 _IOR(0x12,114,size_t) /* return device size in bytes (u64 *arg) */
+#endif
+ if (ioctl(ifd, BLKGETSIZE64, &size) < 0) {
+ fprintf (stderr,
+ "%s: failed to get size of block device \"%s\"\n",
+ params.cmdname, params.imagefile);
+ exit (EXIT_FAILURE);
+ }
+#else
fprintf (stderr,
- "%s: Bad size: \"%s\" is not valid image\n",
+ "%s: \"%s\" is block device, don't know how to get its size\n",
params.cmdname, params.imagefile);
exit (EXIT_FAILURE);
+#endif
+ } else if ((unsigned)sbuf.st_size < tparams->header_size) {
+ fprintf (stderr,
+ "%s: Bad size: \"%s\" is not valid image: size %ld < %u\n",
+ params.cmdname, params.imagefile,
+ sbuf.st_size, tparams->header_size);
+ exit (EXIT_FAILURE);
+ } else {
+ size = sbuf.st_size;
}
- ptr = mmap(0, sbuf.st_size, PROT_READ, MAP_SHARED, ifd, 0);
+ ptr = mmap(0, size, PROT_READ, MAP_SHARED, ifd, 0);
if (ptr == MAP_FAILED) {
fprintf (stderr, "%s: Can't read %s: %s\n",
params.cmdname, params.imagefile,
exit (EXIT_FAILURE);
}
- /*
- * scan through mkimage registry for all supported image types
- * and verify the input image file header for match
- * Print the image information for matched image type
- * Returns the error code if not matched
- */
- retval = imagetool_verify_print_header_by_type(ptr, &sbuf,
- tparams, ¶ms);
+ if (params.fflag) {
+ /*
+ * Verifies the header format based on the expected header for image
+ * type in tparams
+ */
+ retval = imagetool_verify_print_header_by_type(ptr, &sbuf,
+ tparams, ¶ms);
+ } else {
+ /**
+ * When listing the image, we are not given the image type. Simply check all
+ * image types to find one that matches our header
+ */
+ retval = imagetool_verify_print_header(ptr, &sbuf,
+ tparams, ¶ms);
+ }
(void) munmap((void *)ptr, sbuf.st_size);
(void) close (ifd);
ret = imx8mimage_copy_image(ifd, ¶ms);
if (ret)
return ret;
+ } else if ((params.type == IH_TYPE_RKSD) ||
+ (params.type == IH_TYPE_RKSPI)) {
+ /* Rockchip has special Image format */
+ int ret;
+
+ ret = rockchip_copy_image(ifd, ¶ms);
+ if (ret)
+ return ret;
} else {
copy_file(ifd, params.datafile, pad_len);
}
if (params.type == IH_TYPE_FIRMWARE_IVT) {
/* Add alignment and IVT */
- uint32_t aligned_filesize = (params.file_size + 0x1000
- - 1) & ~(0x1000 - 1);
+ uint32_t aligned_filesize = ALIGN(params.file_size,
+ 0x1000);
flash_header_v2_t ivt_header = { { 0xd1, 0x2000, 0x40 },
params.addr, 0, 0, 0, params.addr
+ aligned_filesize
int zero = 0;
uint8_t zeros[4096];
int offset = 0;
- int size;
+ int size, ret;
struct image_type_params *tparams = imagetool_get_type(params.type);
memset(zeros, 0, sizeof(zeros));
exit (EXIT_FAILURE);
}
+ if (sbuf.st_size == 0) {
+ fprintf (stderr, "%s: Input file %s is empty, bailing out\n",
+ params.cmdname, datafile);
+ exit (EXIT_FAILURE);
+ }
+
ptr = mmap(0, sbuf.st_size, PROT_READ, MAP_SHARED, dfd, 0);
if (ptr == MAP_FAILED) {
fprintf (stderr, "%s: Can't read %s: %s\n",
}
size = sbuf.st_size - offset;
- if (write(ifd, ptr + offset, size) != size) {
- fprintf (stderr, "%s: Write error on %s: %s\n",
- params.cmdname, params.imagefile, strerror(errno));
+
+ ret = write(ifd, ptr + offset, size);
+ if (ret != size) {
+ if (ret < 0)
+ fprintf (stderr, "%s: Write error on %s: %s\n",
+ params.cmdname, params.imagefile, strerror(errno));
+ else if (ret < size)
+ fprintf (stderr, "%s: Write only %d/%d bytes, "\
+ "probably no space left on the device\n",
+ params.cmdname, ret, size);
exit (EXIT_FAILURE);
}