mirror of
https://codeberg.org/libreboot/lbmk.git
synced 2026-03-29 08:29:03 +03:00
509 lines
11 KiB
C
509 lines
11 KiB
C
/* SPDX-License-Identifier: MIT */
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/* Copyright (c) 2022-2026 Leah Rowe <leah@libreboot.org> */
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/* Copyright (c) 2023 Riku Viitanen <riku.viitanen@protonmail.com> */
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#include <sys/stat.h>
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#include <dirent.h>
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#include <err.h>
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#include <errno.h>
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#include <fcntl.h>
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#include <stdint.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include <unistd.h>
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void cmd_setchecksum(void), cmd_brick(void), swap(int partnum), cmd_copy(void),
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set_cmd(int, char **), set_word(int, int, uint16_t), check_bound(int, int),
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xopen(int *, const char *, int p, struct stat *), check_mac_separator(int),
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cmd_dump(void), cmd_setmac(void), read_gbe(void), print_mac_address(int),
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parse_mac_string(void), cmd_swap(void), err_if(int), write_gbe_part(int),
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set_mac_byte(int, uint64_t *), usage(char*), set_io_flags(int, char **),
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hexdump(int), set_mac_nib(int, int, uint8_t *), checkdir(const char *),
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openFiles(void), read_gbe_part(int, int), write_gbe(void);
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int good_checksum(int partnum), write_mac_part(int), set_err(int);
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uint8_t hextonum(char chs), rhex(void);
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uint16_t word(int, int);
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#define COMMAND argv[2]
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#define MAC_ADDRESS argv[3]
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#define PARTN argv[3]
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#define NVM_CHECKSUM 0xBABA
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#define NVM_CHECKSUM_WORD 0x3F
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#define NVM_SIZE 128
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#define SIZE_4KB 0x1000
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#define SIZE_8KB 0x2000
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#define SIZE_16KB 0x4000
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#define SIZE_128KB 0x20000
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uint8_t buf[SIZE_8KB];
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uint16_t macbuf[3] = {0, 0, 0};
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size_t partsize;
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int flags, rfd, fd, part, e = 1, invert = 0;
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int part_modified[2] = {0, 0};
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const char *mac = NULL, *rmac = "xx:xx:xx:xx:xx:xx", *fname = "";
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typedef struct op {
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char *str;
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void (*cmd)(void);
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int args;
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} op_t;
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op_t op[] = {
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{ .str = "dump", .cmd = cmd_dump, .args = 3 },
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{ .str = "setmac", .cmd = cmd_setmac, .args = 3 },
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{ .str = "swap", .cmd = cmd_swap, .args = 3 },
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{ .str = "copy", .cmd = cmd_copy, .args = 4 },
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{ .str = "brick", .cmd = cmd_brick, .args = 4 },
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{ .str = "setchecksum", .cmd = cmd_setchecksum, .args = 4 },
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};
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void (*cmd)(void) = NULL;
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int
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main(int argc, char *argv[])
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{
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#ifdef __OpenBSD__
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err_if(pledge("stdio rpath wpath unveil", NULL) == -1);
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err_if(unveil("/dev/urandom", "r") == -1);
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#endif
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set_cmd(argc, argv);
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fname = argv[1];
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set_io_flags(argc, argv);
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#ifdef __OpenBSD__
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if (flags == O_RDONLY) {
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err_if(unveil(fname, "r") == -1);
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err_if(unveil(NULL, NULL) == -1);
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err_if(pledge("stdio rpath", NULL) == -1);
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} else {
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err_if(unveil(fname, "rw") == -1);
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err_if(unveil(NULL, NULL) == -1);
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err_if(pledge("stdio rpath wpath", NULL) == -1);
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}
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#endif
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openFiles();
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#ifdef __OpenBSD__
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err_if(pledge("stdio", NULL) == -1);
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#endif
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read_gbe();
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(*cmd)();
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write_gbe();
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err_if((errno != 0) && (cmd != cmd_dump));
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return errno ? EXIT_FAILURE : EXIT_SUCCESS;
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}
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void
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set_cmd(int argc, char *argv[])
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{
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if (argc < 2) {
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usage(argv[0]);
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} else if (argc > 2) {
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for (int i = 0; (i < 6) && (cmd == NULL); i++) {
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if (strcmp(COMMAND, op[i].str) != 0)
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continue;
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if (argc >= op[i].args) {
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cmd = op[i].cmd;
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break;
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}
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err(set_err(EINVAL), "Too few args on command '%s'",
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op[i].str);
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}
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} else { /* argc == 2 */
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cmd = cmd_setmac;
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}
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if ((cmd == NULL) && (argc > 2)) { /* nvm gbe [MAC] */
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mac = COMMAND;
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cmd = cmd_setmac;
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} else if (cmd == cmd_setmac) { /* nvm gbe setmac [MAC] */
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mac = rmac; /* random MAC */
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if (argc > 3)
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mac = MAC_ADDRESS;
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} else if ((cmd != NULL) && (argc > 3)) { /* user-supplied partnum */
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err_if((errno = (!((part = PARTN[0] - '0') == 0 || part == 1))
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|| PARTN[1] ? EINVAL : errno)); /* only allow '0' or '1' */
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}
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err_if((errno = (cmd == NULL) ? EINVAL : errno));
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}
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void
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set_io_flags(int argc, char *argv[])
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{
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flags = O_RDWR;
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if (argc > 2)
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if (strcmp(COMMAND, "dump") == 0)
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flags = O_RDONLY;
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}
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void
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openFiles(void)
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{
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struct stat st;
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struct stat st_rfd;
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checkdir("/dev/urandom");
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checkdir(fname);
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xopen(&rfd, "/dev/urandom", O_RDONLY, &st_rfd);
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xopen(&fd, fname, flags, &st);
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switch(st.st_size) {
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case SIZE_8KB:
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case SIZE_16KB:
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case SIZE_128KB:
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partsize = st.st_size >> 1;
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break;
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default:
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err(set_err(ECANCELED), "Invalid file size (not 8/16/128KiB)");
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break;
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}
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}
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void
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checkdir(const char *path)
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{
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struct stat st;
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if (stat(path, &st) == -1)
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err(set_err(ECANCELED), "%s", path);
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if (S_ISDIR(st.st_mode))
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err(set_err(EISDIR), "%s", path);
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}
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void
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xopen(int *f, const char *l, int p, struct stat *st)
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{
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if ((*f = open(l, p)) == -1)
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err(set_err(ECANCELED), "%s", l);
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if (fstat(*f, st) == -1)
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err(set_err(ECANCELED), "%s", l);
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}
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void
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read_gbe(void)
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{
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int do_read[2] = {1, 1};
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if ((cmd == cmd_copy) || (cmd == cmd_brick) || (cmd == cmd_setchecksum))
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do_read[part ^ 1] = 0;
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/*
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* speedhack: if copy/swap, flip where data gets written to memory,
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* so that cmd_copy and cmd_swap don't have to work on every word
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*/
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if ((cmd == cmd_copy) || (cmd == cmd_swap))
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invert = 1;
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for (int p = 0; p < 2; p++)
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if (do_read[p])
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read_gbe_part(p, invert);
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}
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void
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read_gbe_part(int p, int invert)
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{
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if (pread(fd, buf + (SIZE_4KB * (p ^ invert)), SIZE_4KB, p * partsize)
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!= SIZE_4KB)
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err(set_err(ECANCELED),
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"Can't read %d b from '%s' p%d", SIZE_4KB, fname, p);
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swap(p ^ invert); /* handle big-endian host CPU */
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}
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void
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cmd_setmac(void)
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{
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int mac_updated = 0;
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parse_mac_string();
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printf("MAC address to be written: %s\n", mac);
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for (int partnum = 0; partnum < 2; partnum++)
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mac_updated |= write_mac_part(partnum);
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if (mac_updated)
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errno = 0;
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}
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void
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parse_mac_string(void)
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{
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uint64_t total = 0;
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if (strnlen(mac, 20) != 17)
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err(set_err(EINVAL), "Invalid MAC address string length");
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for (int mac_pos = 0; mac_pos < 16; mac_pos += 3)
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set_mac_byte(mac_pos, &total);
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if (total == 0)
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err(set_err(EINVAL), "Invalid MAC (all-zero MAC address)");
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if (macbuf[0] & 1)
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err(set_err(EINVAL), "Invalid MAC (multicast bit set)");
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}
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void
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set_mac_byte(int mac_pos, uint64_t *total)
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{
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uint8_t h = 0;
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check_mac_separator(mac_pos);
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for (int nib = 0; nib < 2; nib++, *total += h)
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set_mac_nib(mac_pos, nib, &h);
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}
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void
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check_mac_separator(int mac_pos)
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{
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if (mac_pos == 15)
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return;
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char separator = mac[mac_pos + 2];
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if (separator == ':')
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return;
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err(set_err(EINVAL), "Invalid MAC address separator '%c'", separator);
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}
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void
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set_mac_nib(int mac_pos, int nib, uint8_t *h)
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{
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int byte = mac_pos / 3;
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if ((*h = hextonum(mac[mac_pos + nib])) > 15)
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err(set_err(EINVAL), "Invalid character '%c'",
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mac[mac_pos + nib]);
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/* If random, ensure that local/unicast bits are set */
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if ((byte == 0) && (nib == 1))
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if ((mac[mac_pos + nib] == '?') ||
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(mac[mac_pos + nib] == 'x') ||
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(mac[mac_pos + nib] == 'X')) /* random */
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*h = (*h & 0xE) | 2; /* local, unicast */
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macbuf[byte >> 1] |= ((uint16_t ) *h) << ((8 * (byte % 2)) +
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(4 * (nib ^ 1)));
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}
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uint8_t
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hextonum(char ch)
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{
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if ((ch >= '0') && (ch <= '9'))
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return ch - '0';
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else if ((ch >= 'A') && (ch <= 'F'))
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return ch - 'A' + 10;
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else if ((ch >= 'a') && (ch <= 'f'))
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return ch - 'a' + 10;
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else if ((ch == '?') || (ch == 'x') || (ch == 'X'))
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return rhex(); /* random hex value */
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return 16; /* error: invalid character */
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}
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uint8_t
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rhex(void)
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{
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static uint8_t n = 0, rnum[16];
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if (!n)
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err_if(read(rfd, (uint8_t *) &rnum, (n = 15) + 1) == -1);
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return rnum[n--] & 0xf;
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}
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int
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write_mac_part(int partnum)
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{
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part = partnum;
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if (!good_checksum(partnum))
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return 0;
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for (int w = 0; w < 3; w++)
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set_word(w, partnum, macbuf[w]);
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printf("Wrote MAC address to part %d: ", partnum);
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print_mac_address(partnum);
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cmd_setchecksum();
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return 1;
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}
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void
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cmd_dump(void)
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{
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int num_invalid = 0;
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for (int partnum = 0; partnum < 2; partnum++) {
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if (!good_checksum(partnum))
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++num_invalid;
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printf("MAC (part %d): ", partnum);
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print_mac_address(partnum);
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hexdump(partnum);
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}
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if ((num_invalid < 2))
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errno = 0;
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}
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void
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print_mac_address(int partnum)
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{
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for (int c = 0; c < 3; c++) {
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uint16_t val16 = word(c, partnum);
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printf("%02x:%02x", val16 & 0xff, val16 >> 8);
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if (c == 2)
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printf("\n");
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else
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printf(":");
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}
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}
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void
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hexdump(int partnum)
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{
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for (int row = 0; row < 8; row++) {
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printf("%08x ", row << 4);
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for (int c = 0; c < 8; c++) {
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uint16_t val16 = word((row << 3) + c, partnum);
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if (c == 4)
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printf(" ");
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printf(" %02x %02x", val16 & 0xff, val16 >> 8);
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}
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printf("\n");
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}
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}
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void
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cmd_setchecksum(void)
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{
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uint16_t val16 = 0;
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for (int c = 0; c < NVM_CHECKSUM_WORD; c++)
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val16 += word(c, part);
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set_word(NVM_CHECKSUM_WORD, part, NVM_CHECKSUM - val16);
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}
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void
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cmd_brick(void)
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{
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if (good_checksum(part))
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set_word(NVM_CHECKSUM_WORD, part,
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((word(NVM_CHECKSUM_WORD, part)) ^ 0xFF));
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}
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void
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cmd_copy(void)
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{
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err_if(!good_checksum(part ^ 1));
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part_modified[part ^ 1] = 1;
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}
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void
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cmd_swap(void) {
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err_if(!(good_checksum(0) || good_checksum(1)));
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errno = 0;
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part_modified[1] = part_modified[0] = 1;
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}
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int
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good_checksum(int partnum)
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{
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uint16_t total = 0;
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for(int w = 0; w <= NVM_CHECKSUM_WORD; w++)
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total += word(w, partnum);
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if (total == NVM_CHECKSUM)
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return 1;
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fprintf(stderr, "WARNING: BAD checksum in part %d\n", partnum ^ invert);
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(void) set_err(ECANCELED);
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return 0;
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}
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uint16_t
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word(int pos16, int p)
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{
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check_bound(pos16, p);
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return ((uint16_t *) (buf + (SIZE_4KB * p)))[pos16];
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}
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void
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set_word(int pos16, int p, uint16_t val16)
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{
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check_bound(pos16, p);
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part_modified[p] = 1;
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((uint16_t *) (buf + (SIZE_4KB * p)))[pos16] = val16;
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}
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void
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check_bound(int c, int p)
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{
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if ((p != 0) && (p != 1))
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err(set_err(EINVAL), "check_bound: invalid partnum %d", p);
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if ((c < 0) || (c >= (SIZE_4KB >> 1)))
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err(set_err(EINVAL), "check_bound: out of bounds %d", c);
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}
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void
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write_gbe(void)
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{
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if (flags != O_RDONLY)
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for (int p = 0; p < 2; p++)
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if (part_modified[p])
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write_gbe_part(p);
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err_if(close(fd) == -1);
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}
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void
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write_gbe_part(int p)
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{
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swap(p); /* swap bytes on big-endian host CPUs */
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if(pwrite(fd, buf + (SIZE_4KB * p), SIZE_4KB, p * partsize)
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!= SIZE_4KB)
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err(set_err(ECANCELED),
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"Can't write %d b to '%s' p%d", SIZE_4KB, fname, p);
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}
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void
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swap(int partnum)
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{
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uint8_t *n = buf + (SIZE_4KB * partnum);
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for (size_t w = NVM_SIZE * ((uint8_t *) &e)[0], x = 1;
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w < NVM_SIZE; w += 2, x += 2) {
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uint8_t chg = n[w];
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n[w] = n[x];
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n[x] = chg;
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}
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}
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void
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usage(char *util)
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{
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#ifdef __OpenBSD__
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err_if(pledge("stdio", NULL) == -1);
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#endif
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fprintf(stderr,
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"Modify Intel GbE NVM images e.g. set MAC\n"
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"USAGE:\n"
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"%s FILE dump\n"
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" %s FILE\n # same as setmac without arg\n"
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" %s FILE setmac [MAC]\n"
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" %s FILE swap\n"
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" %s FILE copy 0|1\n"
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" %s FILE brick 0|1\n"
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" %s FILE setchecksum 0|1\n",
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util, util, util, util, util, util, util);
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err(set_err(ECANCELED), "Too few arguments");
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}
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void
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err_if(int x)
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{
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if (x)
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err(set_err(ECANCELED), "%s", fname);
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}
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int
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set_err(int x)
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{
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errno = errno ? errno : x;
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return EXIT_FAILURE;
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}
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