strings
sk_UI_STRING_pop_free(ui->strings, free_string);
if (ui->strings == NULL) {
if ((ui->strings = sk_UI_STRING_new_null()) == NULL) {
if ((ret = sk_UI_STRING_push(ui->strings, s)) <= 0)
if ((ret = sk_UI_STRING_push(ui->strings, s)) <= 0)
if (i >= sk_UI_STRING_num(ui->strings)) {
return UI_get0_result_string(sk_UI_STRING_value(ui->strings, i));
for (i = 0; i < sk_UI_STRING_num(ui->strings); i++) {
sk_UI_STRING_value(ui->strings, i))) {
for (i = 0; i < sk_UI_STRING_num(ui->strings); i++) {
sk_UI_STRING_value(ui->strings, i))) {
STACK_OF(UI_STRING) *strings; /* We might want to prompt for more
tree.header->fh_strings_off = htobe32(tree.strings - start);
return (tree.strings) ? (tree.strings + num) : NULL;
char *end = tree.strings + tree.strings_size;
return (end - tree.strings);
char *end = tree.strings + tree.strings_size;
tree.strings += delta;
char *end = tree.strings + tree.strings_size;
tree.strings += 3 * sizeof(uint32_t);
char *end = tree.strings + tree.strings_size;
tree.strings += len;
tree.strings = (char *)fdt + betoh32(tree.header->fh_strings_off);
char *strings;
tree.header->fh_strings_off = htobe32(tree.strings - start);
return (tree.strings) ? (tree.strings + num) : NULL;
char *end = tree.strings + tree.strings_size;
return (end - tree.strings);
char *end = tree.strings + tree.strings_size;
tree.strings += delta;
char *end = tree.strings + tree.strings_size;
tree.strings += 3 * sizeof(uint32_t);
char *end = tree.strings + tree.strings_size;
tree.strings += len;
tree.strings = (char *)fdt + betoh32(tree.header->fh_strings_off);
char *strings;
tree.header->fh_strings_off = htobe32(tree.strings - start);
return (tree.strings) ? (tree.strings + num) : NULL;
char *end = tree.strings + tree.strings_size;
return (end - tree.strings);
char *end = tree.strings + tree.strings_size;
tree.strings += delta;
char *end = tree.strings + tree.strings_size;
tree.strings += 3 * sizeof(uint32_t);
char *end = tree.strings + tree.strings_size;
tree.strings += len;
tree.strings = (char *)fdt + betoh32(tree.header->fh_strings_off);
char *strings;
tree.header->fh_strings_off = htobe32(tree.strings - start);
return (tree.strings) ? (tree.strings + num) : NULL;
char *end = tree.strings + tree.strings_size;
if (tree.tree > tree.strings)
if (tree.memory > tree.strings)
return (end - tree.strings);
if (tree.strings > tree.tree)
tree.strings += delta;
if (tree.strings > tree.tree)
tree.strings += 3 * sizeof(uint32_t);
tree.strings = (char *)fdt + betoh32(tree.header->fh_strings_off);
char *strings;
static const char * const strings[] = {
if (power >= ARRAY_SIZE(strings) || !strings[power])
return strings[power];
u_int8_t strings[MYX_STRING_SPECS_SIZE];
len = min(betoh32(hdr.fw_specs_len), sizeof(strings));
bus_space_read_region_1(sc->sc_memt, sc->sc_memh, offset, strings, len);
if (strings[i] == '\0')
if (maxlen > 4 && memcmp("MAC=", &strings[i], 4) == 0) {
i += myx_ether_aton(&strings[i],
} else if (maxlen > 3 && memcmp("PC=", &strings[i], 3) == 0) {
i += strlcpy(part, &strings[i], min(maxlen, partlen));
if (strings[i] == '\0')
char *strings;
strings = (char *) msgcat +
memcpy(strings, msg->str, msg_len);
strings += msg_len;
printfmtstrings(char *strings[], const char *prefix, const char *sep,
for (i = 0; strings[i] != NULL; i++) {
printf("%s%s", curpref, strings[i]);
struct strings stringdope[NSPACE];
struct strings *sp;
struct strings *sp;
struct strings *sp;
mandoc_ohash_init(&strings, 6, offsetof(struct str, key));
ohash_delete(&strings);
static struct ohash strings; /* table of all strings */
htab = &strings;
for (key = ohash_first(&strings, &slot); NULL != key;
key = ohash_next(&strings, &slot))
for (key = ohash_first(&strings, &slot); NULL != key;
key = ohash_next(&strings, &slot)) {
char *strings[1 + NUM_PARM];
strings[k] = next;
result = TPARM_1(value, strings[1]);
result = TPARM_2(value, numbers[1], strings[2]);
result = TPARM_2(value, strings[1], strings[2]);
result = TPARM_3(value, numbers[1], strings[2], strings[3]);
#define myParam(n) (p_is_s[n - 1] != 0 ? ((TPARM_ARG) strings[n]) : numbers[n])
char *strings[1 + NUM_PARM];
strings[k] = argv[k];
strings[k] = 0;
s = TPARM_1(s, strings[1]);
s = TPARM_2(s, strings[1], strings[2]);
s = TPARM_2(s, numbers[1], strings[2]);
s = TPARM_3(s, numbers[1], strings[2], strings[3]);
#define myParam(n) (p_is_s[n - 1] != 0 ? ((TPARM_ARG) strings[n]) : numbers[n])
ht_init(&strings, 128);
ht = &strings;
static struct hashtab strings;
struct string strings[tlv_count];