is_branch
int is_branch;
state->is_branch = 1;
state->is_branch = 1;
state->is_branch = 1;
state->is_branch = 1;
state->is_branch = 1;
if (instr.is_branch)
return instr.is_branch;
state->is_branch = 1;
state->is_branch = 1;
single_step_data.is_branch = disasm_next_pc((unsigned long)
if (single_step_data.is_branch) {
int is_branch;
for (i = 0; i < (single_step_data.is_branch ? 2 : 1); i++) {
int is_branch;
is_branch = 0;
is_branch =
if (is_branch) {
if (!is_branch(le32toh(code[i]), &off))
ctxt->is_branch = opcode.flags & IsBranch;
bool is_branch;
if (ctxt->is_branch)
bool is_branch;
drm_dp_get_quirks(const struct drm_dp_dpcd_ident *ident, bool is_branch)
if (quirk->is_branch != is_branch)
bool is_branch)
unsigned int offset = is_branch ? DP_BRANCH_OUI : DP_SINK_OUI;
desc->quirks = drm_dp_get_quirks(ident, is_branch);
drm_dp_dump_desc(aux, is_branch ? "DP branch" : "DP sink", desc);
bool is_branch;
dp_dev->is_branch = drm_dp_is_branch(dp_dev->dpcd);
ret = drm_dp_read_desc(dp_dev->aux, &dp_dev->desc, dp_dev->is_branch);
if (!dp_dev->is_branch) {
static void init_dsc_overall_throughput_limits(struct intel_connector *connector, bool is_branch)
if (!is_branch)
const struct drm_dp_desc *desc, bool is_branch,
init_dsc_overall_throughput_limits(connector, is_branch);
const struct drm_dp_desc *desc, bool is_branch,
bool is_branch);
assert(entry->is_branch);
while (!branch->is_branch)
if (br->is_branch && br->end == addr) {
.is_branch = 0,
.is_branch = 1,
.is_branch = 0,
.is_branch = entry->is_branch,
entry->is_branch = 1;
entry->is_branch = 1;
.is_branch = 1,
.is_branch = 0,
assert(iter.end->end == end && iter.end->is_branch);
int is_target, is_branch;