first_request
if (!edesc->first || !req_ctx->first_request || req_ctx->swinit) {
req_ctx->first_request = 0;
if (req_ctx->first_request && edesc->first && !req_ctx->swinit)
if (ctx->keylen && ((req_ctx->first_request && edesc->first) ||
req_ctx->first_request = 1;
export->first_request = req_ctx->first_request;
req_ctx->first_request = export->first_request;
unsigned int first_request;
unsigned int first_request;
request = first_request(engine);
while ((request = first_request(engine))) {
if (login->first_request) {
if (login && !login->first_request)
if (!login->first_request)
if (login->first_request) {
cache->read_queue[last].first_request = NULL;
if (queue_entry->first_request == NULL)
queue_entry->first_request = request;
request = entry->first_request;
for (request = entry->first_request; request != NULL; request = next) {
struct uds_request *first_request;
struct esas2r_request *first_request, *last_request;
first_request = (struct esas2r_request *)((u8 *)(a + 1));
for (last_request = first_request, i = 1; i < num_requests;
esas2r_debug("requests: %p to %p (%d, %d)", first_request,
sizeof(*first_request),
if (login->first_request) {
login->first_request = 1;
if (login->first_request) {
login->first_request = 0;
if (login->first_request)
if (login->first_request)
u8 first_request;