/* long long rx_low = */
/* vfo[id].ctun_frequency + hz + active_receiver->filter_low; */
+ long long half = (long long)active_receiver->sample_rate / 2LL;
+
+ long long min_freq = frequency - half;
+ long long max_freq = frequency + half;
+
+ long long display_width = max_freq - min_freq;
+ // display_margin is the margin from display edge to start
+ // scrolling - in fraction of display width
+ long long display_margin = 0.05;
+
// convert frequency in terms of steps, then add the given
// number of steps in the argument and then convert it
// back to frequency.
((vfo[id].ctun_frequency / step + steps) * step) +
active_receiver->filter_high;
- long long half = (long long)active_receiver->sample_rate / 2LL;
-
- long long min_freq = frequency - half;
- long long max_freq = frequency + half;
-
if (min_freq < 0) {
min_freq = 0;
}
log_info("rx_low = %ld, rx_high = %ld", rx_low, rx_high);
log_info("min_freq = %ld, max_freq = %ld", min_freq, max_freq);
- if (rx_low <= min_freq) {
+ if (rx_low <= (min_freq + (display_width * display_margin))) {
// XXX handle ctune beyond the screen limits
long long delta_move = min_freq - rx_low;
vfo[id].frequency =
receiver_frequency_changed(receiver[id]);
g_idle_add(ext_vfo_update, NULL);
return;
- } else if (rx_high >= max_freq) {
+ } else if (rx_high >= (max_freq - (display_width * display_margin))) {
// XXX: move the background
long long delta_move = rx_high - max_freq;
vfo[id].frequency =