last_op
bool last_op)
if (last_op)
bool last_op;
last_op = ((i == (op->ninstrs - 1)) && (instr->type != NAND_OP_WAITRDY_INSTR)) ||
brcmnand_low_level_op(host, LL_OP_CMD, instr->ctx.cmd.opcode, last_op);
last_op && (i == (instr->ctx.addr.naddrs - 1)));
last_op && (i == (instr->ctx.data.len - 1)));
last_op && (i == (instr->ctx.data.len - 1)));
if (tas_data->last_op != SJA1105_PTP_ADJUSTFREQ)
if (tas_data->last_op != SJA1105_PTP_ADJUSTFREQ) {
if (tas_data->last_op != SJA1105_PTP_ADJUSTFREQ) {
tas_data->last_op = SJA1105_PTP_CLOCKSTEP;
tas_data->last_op = SJA1105_PTP_ADJUSTFREQ;
tas_data->last_op = SJA1105_PTP_NONE;
enum sja1105_ptp_op last_op;
__u8 last_op; /* last opcode supported */
p->last_op = IORING_OP_LAST - 1;
__u8 last_op; /* last opcode supported */
last_op->r = cur;
last_op = cur;
last_op = cur;
struct strfilter_node root, *cur, *last_op;
last_op = cur = &root;
if (!cur->r || !last_op->r)
cur = strfilter_node__alloc(OP_and, last_op->r, NULL);
for (sub.op = first_op; sub.op <= last_op; sub.op++) {
ctx.total_case_cnt = (last_op - first_op + 1) * (2 * ctx.range_cnt * ctx.val_cnt);
ctx.total_case_cnt = (last_op - first_op + 1) * (2 * ctx.subrange_cnt * ctx.subval_cnt);
ctx.total_case_cnt = (last_op - first_op + 1) * (2 * rcnt * (rcnt + 1) / 2);
ctx.total_case_cnt = (last_op - first_op + 1) * (2 * ctx.rand_case_cnt);