static int smiapp_get_mbus_formats(struct smiapp_sensor *sensor)
 {
        struct i2c_client *client = v4l2_get_subdevdata(&sensor->src->sd);
+       struct smiapp_pll *pll = &sensor->pll;
        unsigned int type, n;
        unsigned int i, pixel_order;
        int rval;
                }
        }
 
+       /* Figure out which BPP values can be used with which formats. */
+       pll->binning_horizontal = 1;
+       pll->binning_vertical = 1;
+       pll->scale_m = sensor->scale_m;
+
+       for (i = 0; i < ARRAY_SIZE(smiapp_csi_data_formats); i++) {
+               const struct smiapp_csi_data_format *f =
+                       &smiapp_csi_data_formats[i];
+               unsigned long *valid_link_freqs =
+                       &sensor->valid_link_freqs[
+                               f->compressed - SMIAPP_COMPRESSED_BASE];
+               unsigned int j;
+
+               BUG_ON(f->compressed < SMIAPP_COMPRESSED_BASE);
+               BUG_ON(f->compressed > SMIAPP_COMPRESSED_MAX);
+
+               if (!(sensor->default_mbus_frame_fmts & 1 << i))
+                       continue;
+
+               pll->bits_per_pixel = f->compressed;
+
+               for (j = 0; sensor->platform_data->op_sys_clock[j]; j++) {
+                       pll->link_freq = sensor->platform_data->op_sys_clock[j];
+
+                       rval = smiapp_pll_try(sensor, pll);
+                       dev_dbg(&client->dev, "link freq %u Hz, bpp %u %s\n",
+                               pll->link_freq, pll->bits_per_pixel,
+                               rval ? "not ok" : "ok");
+                       if (rval)
+                               continue;
+
+                       set_bit(j, valid_link_freqs);
+               }
+       }
+
        if (!sensor->csi_format) {
                dev_err(&client->dev, "no supported mbus code found\n");
                return -EINVAL;
                goto out_power_off;
        }
 
-       rval = smiapp_get_mbus_formats(sensor);
-       if (rval) {
-               rval = -ENODEV;
-               goto out_power_off;
-       }
-
        if (sensor->limits[SMIAPP_LIMIT_BINNING_CAPABILITY]) {
                u32 val;
 
 
        sensor->scale_m = sensor->limits[SMIAPP_LIMIT_SCALER_N_MIN];
 
+       /* prepare PLL configuration input values */
+       pll->bus_type = SMIAPP_PLL_BUS_TYPE_CSI2;
+       pll->csi2.lanes = sensor->platform_data->lanes;
+       pll->ext_clk_freq_hz = sensor->platform_data->ext_clk;
+       pll->flags = smiapp_call_quirk(sensor, pll_flags);
+       pll->scale_n = sensor->limits[SMIAPP_LIMIT_SCALER_N_MIN];
+       /* Profile 0 sensors have no separate OP clock branch. */
+       if (sensor->minfo.smiapp_profile == SMIAPP_PROFILE_0)
+               pll->flags |= SMIAPP_PLL_FLAG_NO_OP_CLOCKS;
+
+       rval = smiapp_get_mbus_formats(sensor);
+       if (rval) {
+               rval = -ENODEV;
+               goto out_nvm_release;
+       }
+
        for (i = 0; i < SMIAPP_SUBDEVS; i++) {
                struct {
                        struct smiapp_subdev *ssd;
        if (rval < 0)
                goto out_nvm_release;
 
-       /* prepare PLL configuration input values */
-       pll->bus_type = SMIAPP_PLL_BUS_TYPE_CSI2;
-       pll->csi2.lanes = sensor->platform_data->lanes;
-       pll->ext_clk_freq_hz = sensor->platform_data->ext_clk;
-       pll->flags = smiapp_call_quirk(sensor, pll_flags);
-
-       /* Profile 0 sensors have no separate OP clock branch. */
-       if (sensor->minfo.smiapp_profile == SMIAPP_PROFILE_0)
-               pll->flags |= SMIAPP_PLL_FLAG_NO_OP_CLOCKS;
-       pll->scale_n = sensor->limits[SMIAPP_LIMIT_SCALER_N_MIN];
-
        mutex_lock(&sensor->mutex);
        rval = smiapp_update_mode(sensor);
        mutex_unlock(&sensor->mutex);