results
if (results[k][j] > 10000 && !mr)
fprintf(stdout, " %11.2fk", results[k][j] / 1e3);
fprintf(stdout, mr ? ":%.2f" : " %11.2f ", results[k][j]);
static double results[ALGOR_NUM][SIZE_NUM];
results[alg][run_no] = ((double) count) / time_used * lengths[run_no];
results[alg][j] += atof(sstrsep(&p, sep));
memset(results, 0, sizeof(results));
results();
void results(void);
static const char *results[] = /* description table */
strcpy(Databuf, results[type]);
return (results[type]);
bres.results.results_val = resultsp;
r.results.results_val = resp;
if (!xdr_u_int(xdrs, &objp->results.results_len)) {
dummy = (*(objp->xdr_res))(xdrs, objp->results.results_val);
static const char * results[] = {
return results[r & 3];
ACPI_BUFFER results;
results.Pointer = NULL;
results.Length = ACPI_ALLOCATE_BUFFER;
if (ACPI_FAILURE(AcpiEvaluateObject(h, METHOD_HCI, &args, &results)))
res = (ACPI_OBJECT *)results.Pointer;
if (results.Pointer != NULL)
AcpiOsFree(results.Pointer);
struct ilk_wm_values *results)
results->enable_fbc_wm = merged->fbc_wm_enabled;
results->partitioning = partitioning;
results->wm_lp[wm_lp - 1] =
results->wm_lp[wm_lp - 1] |= WM1_LP_SR_EN;
results->wm_lp[wm_lp - 1] |=
results->wm_lp[wm_lp - 1] |=
results->wm_lp_spr[wm_lp - 1] = WM1S_LP_EN | r->spr_val;
results->wm_lp_spr[wm_lp - 1] = r->spr_val;
results->wm_linetime[pipe] = intel_crtc->wm.active.ilk.linetime;
results->wm_pipe[pipe] =
struct ilk_wm_values *results)
dirty = ilk_compute_wm_dirty(dev_priv, previous, results);
I915_WRITE(WM0_PIPEA_ILK, results->wm_pipe[0]);
I915_WRITE(WM0_PIPEB_ILK, results->wm_pipe[1]);
I915_WRITE(WM0_PIPEC_IVB, results->wm_pipe[2]);
I915_WRITE(PIPE_WM_LINETIME(PIPE_A), results->wm_linetime[0]);
I915_WRITE(PIPE_WM_LINETIME(PIPE_B), results->wm_linetime[1]);
I915_WRITE(PIPE_WM_LINETIME(PIPE_C), results->wm_linetime[2]);
if (results->partitioning == INTEL_DDB_PART_1_2)
if (results->partitioning == INTEL_DDB_PART_1_2)
if (results->enable_fbc_wm)
previous->wm_lp_spr[0] != results->wm_lp_spr[0])
I915_WRITE(WM1S_LP_ILK, results->wm_lp_spr[0]);
if (dirty & WM_DIRTY_LP(2) && previous->wm_lp_spr[1] != results->wm_lp_spr[1])
I915_WRITE(WM2S_LP_IVB, results->wm_lp_spr[1]);
if (dirty & WM_DIRTY_LP(3) && previous->wm_lp_spr[2] != results->wm_lp_spr[2])
I915_WRITE(WM3S_LP_IVB, results->wm_lp_spr[2]);
if (dirty & WM_DIRTY_LP(1) && previous->wm_lp[0] != results->wm_lp[0])
I915_WRITE(WM1_LP_ILK, results->wm_lp[0]);
if (dirty & WM_DIRTY_LP(2) && previous->wm_lp[1] != results->wm_lp[1])
I915_WRITE(WM2_LP_ILK, results->wm_lp[1]);
if (dirty & WM_DIRTY_LP(3) && previous->wm_lp[2] != results->wm_lp[2])
I915_WRITE(WM3_LP_ILK, results->wm_lp[2]);
dev_priv->wm.hw = *results;
struct skl_ddb_values *results = &intel_state->wm_results;
results->dirty_pipes = 0;
&results->ddb, &changed);
results->dirty_pipes |= drm_crtc_mask(crtc);
if ((results->dirty_pipes & drm_crtc_mask(crtc)) == 0)
struct skl_ddb_values *results = &state->wm_results;
if ((results->dirty_pipes & drm_crtc_mask(&intel_crtc->base)) == 0)
memcpy(hw_vals->ddb.uv_plane[pipe], results->ddb.uv_plane[pipe],
memcpy(hw_vals->ddb.plane[pipe], results->ddb.plane[pipe],
struct ilk_wm_values results = {};
ilk_compute_wm_results(dev, best_lp_wm, partitioning, &results);
ilk_write_wm_values(dev_priv, &results);
struct iwm_scan_results_notif results[];
struct iwm_scan_results_notif results[];
struct testcase_result results;