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	implement pa_cvolume_{get|set}_fade
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					 3 changed files with 130 additions and 2 deletions
				
			
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			@ -110,12 +110,14 @@ pa_cvolume_channels_equal_to;
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pa_cvolume_compatible;
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pa_cvolume_equal;
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pa_cvolume_get_balance;
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pa_cvolume_get_fade;
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pa_cvolume_init;
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pa_cvolume_max;
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pa_cvolume_remap;
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pa_cvolume_scale;
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pa_cvolume_set;
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pa_cvolume_set_balance;
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pa_cvolume_set_fade;
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pa_cvolume_snprint;
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pa_cvolume_valid;
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pa_ext_stream_restore_delete;
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			@ -341,6 +341,28 @@ static pa_bool_t on_lfe(pa_channel_position_t p) {
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        p == PA_CHANNEL_POSITION_LFE;
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}
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static pa_bool_t on_front(pa_channel_position_t p) {
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    return
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        p == PA_CHANNEL_POSITION_FRONT_LEFT ||
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        p == PA_CHANNEL_POSITION_FRONT_RIGHT ||
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        p == PA_CHANNEL_POSITION_FRONT_CENTER ||
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        p == PA_CHANNEL_POSITION_FRONT_LEFT_OF_CENTER ||
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        p == PA_CHANNEL_POSITION_FRONT_RIGHT_OF_CENTER ||
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        p == PA_CHANNEL_POSITION_TOP_FRONT_LEFT ||
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        p == PA_CHANNEL_POSITION_TOP_FRONT_RIGHT ||
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        p == PA_CHANNEL_POSITION_TOP_FRONT_CENTER;
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}
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static pa_bool_t on_rear(pa_channel_position_t p) {
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    return
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        p == PA_CHANNEL_POSITION_REAR_LEFT ||
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        p == PA_CHANNEL_POSITION_REAR_RIGHT ||
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        p == PA_CHANNEL_POSITION_REAR_CENTER ||
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        p == PA_CHANNEL_POSITION_TOP_REAR_LEFT ||
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        p == PA_CHANNEL_POSITION_TOP_REAR_RIGHT ||
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        p == PA_CHANNEL_POSITION_TOP_REAR_CENTER;
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}
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pa_cvolume *pa_cvolume_remap(pa_cvolume *v, const pa_channel_map *from, const pa_channel_map *to) {
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    int a, b;
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    pa_cvolume result;
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			@ -519,3 +541,92 @@ pa_cvolume* pa_cvolume_scale(pa_cvolume *v, pa_volume_t max) {
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    return v;
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}
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static void get_avg_fr(const pa_channel_map *map, const pa_cvolume *v, pa_volume_t *f, pa_volume_t *r) {
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    int c;
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    pa_volume_t front = 0, rear = 0;
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    unsigned n_front = 0, n_rear = 0;
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    pa_assert(v);
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    pa_assert(map);
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    pa_assert(map->channels == v->channels);
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    pa_assert(f);
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    pa_assert(r);
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    for (c = 0; c < map->channels; c++) {
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        if (on_front(map->map[c])) {
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            front += v->values[c];
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            n_front++;
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        } else if (on_rear(map->map[c])) {
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            rear += v->values[c];
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            n_rear++;
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        }
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    }
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    if (n_front <= 0)
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        *f = PA_VOLUME_NORM;
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    else
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        *f = front / n_front;
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    if (n_rear <= 0)
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        *r = PA_VOLUME_NORM;
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    else
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        *r = rear / n_rear;
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}
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float pa_cvolume_get_fade(const pa_cvolume *v, const pa_channel_map *map) {
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    pa_volume_t front, rear;
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    pa_assert(v);
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    pa_assert(map);
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    pa_assert(map->channels == v->channels);
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    get_avg_fr(map, v, &front, &rear);
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    if (front == rear)
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        return 0.0f;
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    if (rear > front)
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        return -1.0f + ((float) front / (float) rear);
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    else
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        return 1.0f - ((float) rear / (float) front);
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}
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pa_cvolume* pa_cvolume_set_fade(pa_cvolume *v, const pa_channel_map *map, float new_fade) {
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    pa_volume_t front, nfront, rear, nrear, m;
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    unsigned c;
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    pa_assert(map->channels == v->channels);
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    pa_assert(map);
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    pa_assert(v);
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    pa_assert(new_fade >= -1.0f);
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    pa_assert(new_fade <= 1.0f);
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    get_avg_fr(map, v, &front, &rear);
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    m = PA_MAX(front, rear);
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    if (new_fade <= 0) {
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        nfront  = (new_fade + 1.0f) * m;
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        nrear = m;
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    } else  {
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        nrear = (1.0f - new_fade) * m;
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        nfront = m;
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    }
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    for (c = 0; c < map->channels; c++) {
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        if (on_front(map->map[c])) {
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            if (front == 0)
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                v->values[c] = nfront;
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            else
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                v->values[c] = (pa_volume_t) (((uint64_t) v->values[c] * (uint64_t) nfront) / (uint64_t) front);
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        } else if (on_rear(map->map[c])) {
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            if (rear == 0)
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                v->values[c] = nrear;
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            else
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                v->values[c] = (pa_volume_t) (((uint64_t) v->values[c] * (uint64_t) nrear) / (uint64_t) rear);
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        }
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    }
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    return v;
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}
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			@ -242,12 +242,27 @@ float pa_cvolume_get_balance(const pa_cvolume *v, const pa_channel_map *map) PA_
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/** Adjust the 'balance' value for the specified volume with the
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 * specified channel map. v will be modified in place and
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 * returned. The balance is a value between -1.0f and +1.0f. This
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 * operation might not be reversable! Also, after this call
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 * operation might not be reversible! Also, after this call
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 * pa_cvolume_get_balance() is not guaranteed to actually return the
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 * requested balance (e.g. when the input volume was zero anyway for
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 * requested balance value (e.g. when the input volume was zero anyway for
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 * all channels) \since 0.9.15 */
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pa_cvolume* pa_cvolume_set_balance(pa_cvolume *v, const pa_channel_map *map, float new_balance);
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/** Calculate a 'fade' value (i.e. 'balance' between front and rear)
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 * for the specified volume with the specified channel map. The return
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 * value will range from -1.0f (rear) to +1.0f (left) \since
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 * 0.9.15 */
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float pa_cvolume_get_fade(const pa_cvolume *v, const pa_channel_map *map) PA_GCC_PURE;
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/** Adjust the 'fade' value (i.e. 'balance' between front and rear)
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 * for the specified volume with the specified channel map. v will be
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 * modified in place and returned. The balance is a value between
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 * -1.0f and +1.0f. This operation might not be reversible! Also,
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 * after this call pa_cvolume_get_fade() is not guaranteed to
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 * actually return the requested fade value (e.g. when the input volume
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 * was zero anyway for all channels) \since 0.9.15 */
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pa_cvolume* pa_cvolume_set_fade(pa_cvolume *v, const pa_channel_map *map, float new_fade);
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/** Scale the passed pa_cvolume structure so that the maximum volume
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 * of all channels equals max. The proportions between the channel
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 * volumes are kept. \since 0.9.15 */
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