static int dsi_calc_mnp(int target_dsi_clk, struct dsi_mnp *dsi_mnp)
{
unsigned int calc_m = 0, calc_p = 0;
- unsigned int m, n, p;
+ unsigned int m, n = 1, p;
int ref_clk = 25000;
int delta = target_dsi_clk;
u32 m_seed;
* Find the optimal m and p divisors with minimal delta
* +/- the required clock
*/
- int calc_dsi_clk = (m * ref_clk) / p;
+ int calc_dsi_clk = (m * ref_clk) / (p * n);
int d = abs(target_dsi_clk - calc_dsi_clk);
if (d < delta) {
delta = d;
}
}
+ /* register has log2(N1), this works fine for powers of two */
+ n = ffs(n) - 1;
m_seed = lfsr_converts[calc_m - 62];
- n = 1;
dsi_mnp->dsi_pll_ctrl = 1 << (DSI_PLL_P1_POST_DIV_SHIFT + calc_p - 2);
- dsi_mnp->dsi_pll_div = (n - 1) << DSI_PLL_N1_DIV_SHIFT |
+ dsi_mnp->dsi_pll_div = n << DSI_PLL_N1_DIV_SHIFT |
m_seed << DSI_PLL_M1_DIV_SHIFT;
return 0;
struct intel_dsi *intel_dsi = enc_to_intel_dsi(&encoder->base);
u32 dsi_clock, pclk;
u32 pll_ctl, pll_div;
- u32 m = 0, p = 0;
+ u32 m = 0, p = 0, n;
int refclk = 25000;
int i;
pll_ctl &= DSI_PLL_P1_POST_DIV_MASK;
pll_ctl = pll_ctl >> (DSI_PLL_P1_POST_DIV_SHIFT - 2);
+ /* N1 divisor */
+ n = (pll_div & DSI_PLL_N1_DIV_MASK) >> DSI_PLL_N1_DIV_SHIFT;
+ n = 1 << n; /* register has log2(N1) */
+
/* mask out the other bits and extract the M1 divisor */
pll_div &= DSI_PLL_M1_DIV_MASK;
pll_div = pll_div >> DSI_PLL_M1_DIV_SHIFT;
m = i + 62;
- dsi_clock = (m * refclk) / p;
+ dsi_clock = (m * refclk) / (p * n);
/* pixel_format and pipe_bpp should agree */
assert_bpp_mismatch(intel_dsi->pixel_format, pipe_bpp);