mirror of
https://github.com/mpv-player/mpv
synced 2024-11-03 03:19:24 +01:00
ea18cb99ba
This makes the difference between passing VA_FRAME_PICTURE or VA_BOTTOM_FIELD for progressive frames (that should be force- deinterlaced) to VAProcPipelineParameterBuffer.flags. VA-VPP doesn't really seem to care, and we can get rid of mp_refqueue_is_interlaced() entirely. It could be argued it's better to pass field flags instead of the progressive flag.
222 lines
6.2 KiB
C
222 lines
6.2 KiB
C
/*
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* This file is part of mpv.
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*
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* mpv is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Lesser General Public
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* License as published by the Free Software Foundation; either
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* version 2.1 of the License, or (at your option) any later version.
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*
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* mpv is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public
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* License along with mpv. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include <assert.h>
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#include "common/common.h"
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#include "video/mp_image.h"
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#include "refqueue.h"
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struct mp_refqueue {
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int needed_past_frames;
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int needed_future_frames;
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int flags;
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bool second_field; // current frame has to output a second field yet
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bool eof;
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// Queue of input frames, used to determine past/current/future frames.
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// queue[0] is the newest frame, queue[num_queue - 1] the oldest.
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struct mp_image **queue;
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int num_queue;
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// queue[pos] is the current frame, unless pos is an invalid index.
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int pos;
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};
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struct mp_refqueue *mp_refqueue_alloc(void)
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{
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struct mp_refqueue *q = talloc_zero(NULL, struct mp_refqueue);
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mp_refqueue_flush(q);
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return q;
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}
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void mp_refqueue_free(struct mp_refqueue *q)
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{
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mp_refqueue_flush(q);
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talloc_free(q);
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}
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// The minimum number of frames required before and after the current frame.
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void mp_refqueue_set_refs(struct mp_refqueue *q, int past, int future)
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{
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assert(past >= 0 && future >= 0);
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q->needed_past_frames = past;
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q->needed_future_frames = MPMAX(future, 1); // at least 1 for determining PTS
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}
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// MP_MODE_* flags
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void mp_refqueue_set_mode(struct mp_refqueue *q, int flags)
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{
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q->flags = flags;
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}
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// Whether the current frame should be deinterlaced.
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bool mp_refqueue_should_deint(struct mp_refqueue *q)
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{
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if (!mp_refqueue_has_output(q) || !(q->flags & MP_MODE_DEINT))
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return false;
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return (q->queue[q->pos]->fields & MP_IMGFIELD_INTERLACED) ||
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!(q->flags & MP_MODE_INTERLACED_ONLY);
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}
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// Whether the current output frame (field) is the top field, bottom field
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// otherwise. (Assumes the caller forces deinterlacing.)
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bool mp_refqueue_is_top_field(struct mp_refqueue *q)
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{
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if (!mp_refqueue_has_output(q))
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return false;
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return !!(q->queue[q->pos]->fields & MP_IMGFIELD_TOP_FIRST) ^ q->second_field;
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}
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// Whether top-field-first mode is enabled.
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bool mp_refqueue_top_field_first(struct mp_refqueue *q)
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{
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if (!mp_refqueue_has_output(q))
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return false;
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return q->queue[q->pos]->fields & MP_IMGFIELD_TOP_FIRST;
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}
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// Discard all state.
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void mp_refqueue_flush(struct mp_refqueue *q)
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{
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for (int n = 0; n < q->num_queue; n++)
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talloc_free(q->queue[n]);
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q->num_queue = 0;
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q->pos = -1;
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q->second_field = false;
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q->eof = false;
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}
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// Add a new frame to the queue. (Call mp_refqueue_next() to advance the
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// current frame and to discard unneeded past frames.)
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// Ownership goes to the mp_refqueue.
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// Passing NULL means EOF, in which case mp_refqueue_need_input() will return
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// false even if not enough future frames are available.
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void mp_refqueue_add_input(struct mp_refqueue *q, struct mp_image *img)
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{
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q->eof = !img;
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if (!img)
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return;
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MP_TARRAY_INSERT_AT(q, q->queue, q->num_queue, 0, img);
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q->pos++;
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assert(q->pos >= 0 && q->pos < q->num_queue);
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}
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bool mp_refqueue_need_input(struct mp_refqueue *q)
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{
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return q->pos < q->needed_future_frames && !q->eof;
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}
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bool mp_refqueue_has_output(struct mp_refqueue *q)
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{
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return q->pos >= 0 && !mp_refqueue_need_input(q);
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}
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static bool output_next_field(struct mp_refqueue *q)
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{
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if (q->second_field)
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return false;
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if (!(q->flags & MP_MODE_OUTPUT_FIELDS))
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return false;
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if (!mp_refqueue_should_deint(q))
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return false;
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assert(q->pos >= 0);
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// If there's no (reasonable) timestamp, also skip the field.
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if (q->pos == 0)
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return false;
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double pts = q->queue[q->pos]->pts;
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double next_pts = q->queue[q->pos - 1]->pts;
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if (pts == MP_NOPTS_VALUE || next_pts == MP_NOPTS_VALUE)
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return false;
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double frametime = next_pts - pts;
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if (frametime <= 0.0 || frametime >= 1.0)
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return false;
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q->queue[q->pos]->pts = pts + frametime / 2;
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q->second_field = true;
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return true;
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}
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// Advance current field, depending on interlace flags.
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void mp_refqueue_next_field(struct mp_refqueue *q)
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{
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if (!mp_refqueue_has_output(q))
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return;
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if (!output_next_field(q))
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mp_refqueue_next(q);
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}
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// Advance to next input frame (skips fields even in field output mode).
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void mp_refqueue_next(struct mp_refqueue *q)
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{
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if (!mp_refqueue_has_output(q))
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return;
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q->pos--;
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q->second_field = false;
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assert(q->pos >= -1 && q->pos < q->num_queue);
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// Discard unneeded past frames.
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while (q->num_queue - (q->pos + 1) > q->needed_past_frames) {
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assert(q->num_queue > 0);
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talloc_free(q->queue[q->num_queue - 1]);
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q->num_queue--;
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}
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assert(q->pos >= -1 && q->pos < q->num_queue);
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}
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// Return a frame by relative position:
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// -1: first past frame
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// 0: current frame
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// 1: first future frame
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// Caller doesn't get ownership. Return NULL if unavailable.
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struct mp_image *mp_refqueue_get(struct mp_refqueue *q, int pos)
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{
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int i = q->pos - pos;
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return i >= 0 && i < q->num_queue ? q->queue[i] : NULL;
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}
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// Same as mp_refqueue_get(), but return the frame which contains a field
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// relative to the current field's position.
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struct mp_image *mp_refqueue_get_field(struct mp_refqueue *q, int pos)
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{
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// If the current field is the second field (conceptually), then pos=1
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// needs to get the next frame. Similarly, pos=-1 needs to get the current
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// frame, so round towards negative infinity.
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int round = mp_refqueue_top_field_first(q) != mp_refqueue_is_top_field(q);
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int frame = (pos < 0 ? pos - (1 - round) : pos + round) / 2;
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return mp_refqueue_get(q, frame);
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}
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bool mp_refqueue_is_second_field(struct mp_refqueue *q)
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{
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return mp_refqueue_has_output(q) && q->second_field;
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}
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