return 0;
}
-static struct poseidon_control *check_control_id(__u32 id)
+static struct poseidon_control *check_control_id(u32 id)
{
struct poseidon_control *control = &controls[0];
int array_size = ARRAY_SIZE(controls);
return 0;
}
-static int set_frequency(struct poseidon *pd, __u32 frequency)
+static int set_frequency(struct poseidon *pd, u32 *frequency)
{
s32 ret = 0, param, cmd_status;
struct running_context *context = &pd->video_data.context;
- param = frequency * 62500 / 1000;
- if (param < TUNER_FREQ_MIN/1000 || param > TUNER_FREQ_MAX / 1000)
- return -EINVAL;
+ *frequency = clamp(*frequency,
+ TUNER_FREQ_MIN / 62500, TUNER_FREQ_MAX / 62500);
+ param = (*frequency) * 62500 / 1000;
mutex_lock(&pd->lock);
ret = send_set_req(pd, TUNE_FREQ_SELECT, param, &cmd_status);
ret = send_set_req(pd, TAKE_REQUEST, 0, &cmd_status);
msleep(250); /* wait for a while until the hardware is ready. */
- context->freq = frequency;
+ context->freq = *frequency;
mutex_unlock(&pd->lock);
return ret;
}
struct front_face *front = fh;
struct poseidon *pd = front->pd;
+ if (freq->tuner)
+ return -EINVAL;
logs(front);
#ifdef CONFIG_PM
pd->pm_suspend = pm_video_suspend;
pd->pm_resume = pm_video_resume;
#endif
- return set_frequency(pd, freq->frequency);
+ return set_frequency(pd, &freq->frequency);
}
static int vidioc_reqbufs(struct file *file, void *fh,
vidioc_s_input(NULL, front, context->sig_index);
pd_vidioc_s_tuner(pd, context->audio_idx);
pd_vidioc_s_fmt(pd, &context->pix);
- set_frequency(pd, context->freq);
+ set_frequency(pd, &context->freq);
return 0;
}
{
struct video_data *video = &pd->video_data;
struct vbi_data *vbi = &pd->vbi_data;
+ u32 freq = TUNER_FREQ_MIN / 62500;
int ret = -ENOMEM;
+ set_frequency(pd, &freq);
video->v_dev = pd_video_template;
video->v_dev.v4l2_dev = &pd->v4l2_dev;
video_set_drvdata(&video->v_dev, pd);