KHZ
art_base_clk.freq_khz /= KHZ;
(unsigned long)cpu_khz / KHZ,
(unsigned long)cpu_khz % KHZ);
(unsigned long)tsc_khz / KHZ,
(unsigned long)tsc_khz % KHZ);
u64 lpj = (u64)tsc_khz * KHZ;
#define MHZ (KHZ * KHZ)
#define CPUFREQ_TBL_STEP_HZ (50 * KHZ * KHZ)
return nltbl->ref_clk_hz / KHZ * ndiv / (nltbl->pdiv * nltbl->mdiv);
return (rate_mhz * KHZ); /* in KHz */
opp = dev_pm_opp_find_freq_exact(cpu_dev, pos->frequency * KHZ, false);
ret = dev_pm_opp_enable(cpu_dev, pos->frequency * KHZ);
opp = dev_pm_opp_find_freq_exact(dev, freq_khz * KHZ, true);
u32 avg_band_freq = tegra->max_freq * ACTMON_DEFAULT_AVG_BAND / KHZ;
tegra->cur_freq = data->new_rate / KHZ;
tegra->cur_freq = clk_get_rate(tegra->emc_clock) / KHZ;
stat->current_frequency = cur_freq * KHZ;
#define KHZ_MAX (ULONG_MAX / KHZ)
*freq = target_freq * KHZ;
tegra->max_freq = rate / KHZ;
target_clk_f = rate * 2 / KHZ;
ref_clk_f = clk->parent_rate / KHZ;
target_clk_f / KHZ);
target_freq / KHZ, pll->m, pll->n, pll->pl,
clk->parent_rate / KHZ);
clk->parent_rate / KHZ);
clk->parent_rate / KHZ);
#define MHZ (KHZ * 1000)
(clk->base.parent_rate / KHZ));
u32 rate = gk20a_pllg_calc_rate(&clk->base, pll) / KHZ;
u32 parent_rate = clk->base.parent_rate / KHZ;
case 9600 * KHZ:
case 19200 * KHZ:
#define MHZ (KHZ * KHZ)
case 9600 * KHZ:
case 19200 * KHZ:
case 9600 * KHZ:
case 19200 * KHZ:
#define MHZ (KHZ * KHZ)