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synced 2025-11-04 13:29:59 -05:00
lfe-filter: Add rewind support
Store current filter state at every normal block process. When a rewind happens, rewind back to the nearest saved state, then calculate forward to the actual sample position. Signed-off-by: David Henningsson <david.henningsson@canonical.com>
This commit is contained in:
parent
d0e8b0fe07
commit
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3 changed files with 108 additions and 9 deletions
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@ -23,9 +23,20 @@
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#include "lfe-filter.h"
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#include "lfe-filter.h"
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#include <pulse/xmalloc.h>
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#include <pulse/xmalloc.h>
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#include <pulsecore/flist.h>
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#include <pulsecore/llist.h>
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#include <pulsecore/filter/biquad.h>
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#include <pulsecore/filter/biquad.h>
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#include <pulsecore/filter/crossover.h>
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#include <pulsecore/filter/crossover.h>
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struct saved_state {
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PA_LLIST_FIELDS(struct saved_state);
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pa_memchunk chunk;
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int64_t index;
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struct lr4 lr4[PA_CHANNELS_MAX];
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};
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PA_STATIC_FLIST_DECLARE(lfe_state, 0, pa_xfree);
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/* An LR4 filter, implemented as a chain of two Butterworth filters.
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/* An LR4 filter, implemented as a chain of two Butterworth filters.
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Currently the channel map is fixed so that a highpass filter is applied to all
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Currently the channel map is fixed so that a highpass filter is applied to all
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@ -35,24 +46,37 @@
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*/
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*/
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struct pa_lfe_filter {
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struct pa_lfe_filter {
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int64_t index;
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PA_LLIST_HEAD(struct saved_state, saved);
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float crossover;
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float crossover;
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pa_channel_map cm;
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pa_channel_map cm;
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pa_sample_spec ss;
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pa_sample_spec ss;
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size_t maxrewind;
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bool active;
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bool active;
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struct lr4 lr4[PA_CHANNELS_MAX];
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struct lr4 lr4[PA_CHANNELS_MAX];
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};
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};
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pa_lfe_filter_t * pa_lfe_filter_new(const pa_sample_spec* ss, const pa_channel_map* cm, float crossover_freq) {
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static void remove_state(pa_lfe_filter_t *f, struct saved_state *s) {
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PA_LLIST_REMOVE(struct saved_state, f->saved, s);
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pa_memblock_unref(s->chunk.memblock);
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pa_xfree(s);
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}
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pa_lfe_filter_t * pa_lfe_filter_new(const pa_sample_spec* ss, const pa_channel_map* cm, float crossover_freq, size_t maxrewind) {
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pa_lfe_filter_t *f = pa_xnew0(struct pa_lfe_filter, 1);
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pa_lfe_filter_t *f = pa_xnew0(struct pa_lfe_filter, 1);
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f->crossover = crossover_freq;
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f->crossover = crossover_freq;
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f->cm = *cm;
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f->cm = *cm;
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f->ss = *ss;
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f->ss = *ss;
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f->maxrewind = maxrewind;
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pa_lfe_filter_update_rate(f, ss->rate);
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pa_lfe_filter_update_rate(f, ss->rate);
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return f;
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return f;
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}
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}
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void pa_lfe_filter_free(pa_lfe_filter_t *f) {
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void pa_lfe_filter_free(pa_lfe_filter_t *f) {
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while (f->saved)
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remove_state(f, f->saved);
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pa_xfree(f);
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pa_xfree(f);
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}
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}
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@ -60,26 +84,61 @@ void pa_lfe_filter_reset(pa_lfe_filter_t *f) {
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pa_lfe_filter_update_rate(f, f->ss.rate);
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pa_lfe_filter_update_rate(f, f->ss.rate);
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}
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}
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pa_memchunk * pa_lfe_filter_process(pa_lfe_filter_t *f, pa_memchunk *buf) {
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static void process_block(pa_lfe_filter_t *f, pa_memchunk *buf, bool store_result) {
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int samples = buf->length / pa_frame_size(&f->ss);
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int samples = buf->length / pa_frame_size(&f->ss);
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if (!f->active)
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void *garbage = store_result ? NULL : pa_xmalloc(buf->length);
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return buf;
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if (f->ss.format == PA_SAMPLE_FLOAT32NE) {
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if (f->ss.format == PA_SAMPLE_FLOAT32NE) {
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int i;
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int i;
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float *data = pa_memblock_acquire_chunk(buf);
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float *data = pa_memblock_acquire_chunk(buf);
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for (i = 0; i < f->cm.channels; i++)
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for (i = 0; i < f->cm.channels; i++)
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lr4_process_float32(&f->lr4[i], samples, f->cm.channels, &data[i], &data[i]);
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lr4_process_float32(&f->lr4[i], samples, f->cm.channels, &data[i], garbage ? garbage : &data[i]);
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pa_memblock_release(buf->memblock);
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pa_memblock_release(buf->memblock);
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}
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}
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else if (f->ss.format == PA_SAMPLE_S16NE) {
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else if (f->ss.format == PA_SAMPLE_S16NE) {
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int i;
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int i;
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short *data = pa_memblock_acquire_chunk(buf);
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short *data = pa_memblock_acquire_chunk(buf);
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for (i = 0; i < f->cm.channels; i++)
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for (i = 0; i < f->cm.channels; i++)
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lr4_process_s16(&f->lr4[i], samples, f->cm.channels, &data[i], &data[i]);
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lr4_process_s16(&f->lr4[i], samples, f->cm.channels, &data[i], garbage ? garbage : &data[i]);
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pa_memblock_release(buf->memblock);
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pa_memblock_release(buf->memblock);
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}
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}
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else pa_assert_not_reached();
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else pa_assert_not_reached();
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pa_xfree(garbage);
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f->index += samples;
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}
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pa_memchunk * pa_lfe_filter_process(pa_lfe_filter_t *f, pa_memchunk *buf) {
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struct saved_state *s, *s2;
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void *data;
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if (!f->active)
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return buf;
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/* Remove old states (FIXME: we could do better than searching the entire array here?) */
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PA_LLIST_FOREACH_SAFE(s, s2, f->saved)
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if (s->index + (int64_t) (s->chunk.length / pa_frame_size(&f->ss) + f->maxrewind) < f->index)
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remove_state(f, s);
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/* Insert our existing state into the flist */
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if ((s = pa_flist_pop(PA_STATIC_FLIST_GET(lfe_state))) == NULL)
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s = pa_xnew(struct saved_state, 1);
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PA_LLIST_INIT(struct saved_state, s);
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/* TODO: This actually memcpys the entire chunk into a new allocation, because we need to retain the original
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in case of rewinding. Investigate whether this can be avoided. */
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data = pa_memblock_acquire_chunk(buf);
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s->chunk.memblock = pa_memblock_new_malloced(pa_memblock_get_pool(buf->memblock), pa_xmemdup(data, buf->length), buf->length);
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s->chunk.length = buf->length;
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s->chunk.index = 0;
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pa_memblock_release(buf->memblock);
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s->index = f->index;
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memcpy(s->lr4, f->lr4, sizeof(struct lr4) * f->cm.channels);
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PA_LLIST_PREPEND(struct saved_state, f->saved, s);
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process_block(f, buf, true);
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return buf;
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return buf;
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}
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}
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@ -87,6 +146,10 @@ void pa_lfe_filter_update_rate(pa_lfe_filter_t *f, uint32_t new_rate) {
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int i;
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int i;
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float biquad_freq = f->crossover / (new_rate / 2);
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float biquad_freq = f->crossover / (new_rate / 2);
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while (f->saved)
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remove_state(f, f->saved);
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f->index = 0;
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f->ss.rate = new_rate;
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f->ss.rate = new_rate;
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if (biquad_freq <= 0 || biquad_freq >= 1) {
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if (biquad_freq <= 0 || biquad_freq >= 1) {
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pa_log_warn("Crossover frequency (%f) outside range for sample rate %d", f->crossover, new_rate);
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pa_log_warn("Crossover frequency (%f) outside range for sample rate %d", f->crossover, new_rate);
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@ -99,3 +162,37 @@ void pa_lfe_filter_update_rate(pa_lfe_filter_t *f, uint32_t new_rate) {
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f->active = true;
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f->active = true;
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}
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}
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void pa_lfe_filter_rewind(pa_lfe_filter_t *f, size_t amount) {
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struct saved_state *i, *s = NULL;
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size_t samples = amount / pa_frame_size(&f->ss);
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f->index -= samples;
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/* Find the closest saved position */
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PA_LLIST_FOREACH(i, f->saved) {
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if (i->index > f->index)
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continue;
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if (s == NULL || i->index > s->index)
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s = i;
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}
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if (s == NULL) {
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pa_log_debug("Rewinding LFE filter %lu samples to position %lli. No saved state found", samples, (long long) f->index);
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pa_lfe_filter_update_rate(f, f->ss.rate);
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return;
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}
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pa_log_debug("Rewinding LFE filter %lu samples to position %lli. Found saved state at position %lli",
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samples, (long long) f->index, (long long) s->index);
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memcpy(f->lr4, s->lr4, sizeof(struct lr4) * f->cm.channels);
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/* now fast forward to the actual position */
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if (f->index > s->index) {
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pa_memchunk x = s->chunk;
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x.length = (f->index - s->index) * pa_frame_size(&f->ss);
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if (x.length > s->chunk.length) {
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pa_log_error("Hole in stream, cannot fast forward LFE filter");
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return;
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}
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f->index = s->index;
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process_block(f, &x, false);
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}
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}
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@ -25,13 +25,14 @@
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#include <pulse/sample.h>
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#include <pulse/sample.h>
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#include <pulse/channelmap.h>
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#include <pulse/channelmap.h>
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#include <pulsecore/memchunk.h>
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#include <pulsecore/memchunk.h>
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#include <pulsecore/memblockq.h>
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typedef struct pa_lfe_filter pa_lfe_filter_t;
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typedef struct pa_lfe_filter pa_lfe_filter_t;
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pa_lfe_filter_t * pa_lfe_filter_new(const pa_sample_spec* ss, const pa_channel_map* cm, float crossover_freq);
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pa_lfe_filter_t * pa_lfe_filter_new(const pa_sample_spec* ss, const pa_channel_map* cm, float crossover_freq, size_t maxrewind);
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void pa_lfe_filter_free(pa_lfe_filter_t *);
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void pa_lfe_filter_free(pa_lfe_filter_t *);
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void pa_lfe_filter_reset(pa_lfe_filter_t *);
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void pa_lfe_filter_reset(pa_lfe_filter_t *);
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void pa_lfe_filter_rewind(pa_lfe_filter_t *, size_t amount);
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pa_memchunk * pa_lfe_filter_process(pa_lfe_filter_t *filter, pa_memchunk *buf);
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pa_memchunk * pa_lfe_filter_process(pa_lfe_filter_t *filter, pa_memchunk *buf);
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void pa_lfe_filter_update_rate(pa_lfe_filter_t *, uint32_t new_rate);
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void pa_lfe_filter_update_rate(pa_lfe_filter_t *, uint32_t new_rate);
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@ -419,7 +419,8 @@ pa_resampler* pa_resampler_new(
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if (lfe_filter_required) {
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if (lfe_filter_required) {
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pa_sample_spec wss = r->o_ss;
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pa_sample_spec wss = r->o_ss;
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wss.format = r->work_format;
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wss.format = r->work_format;
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r->lfe_filter = pa_lfe_filter_new(&wss, &r->o_cm, (float)crossover_freq);
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/* FIXME: For now just hardcode maxrewind to 3 seconds */
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r->lfe_filter = pa_lfe_filter_new(&wss, &r->o_cm, (float)crossover_freq, b->rate * 3);
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pa_log_debug(" lfe filter activated (LR4 type), the crossover_freq = %uHz", crossover_freq);
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pa_log_debug(" lfe filter activated (LR4 type), the crossover_freq = %uHz", crossover_freq);
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}
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}
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