diff options
Diffstat (limited to 'drivers/media/test-drivers/vivid/vivid-kthread-cap.c')
| -rw-r--r-- | drivers/media/test-drivers/vivid/vivid-kthread-cap.c | 268 |
1 files changed, 88 insertions, 180 deletions
diff --git a/drivers/media/test-drivers/vivid/vivid-kthread-cap.c b/drivers/media/test-drivers/vivid/vivid-kthread-cap.c index 01a9d671b947..d845e1644649 100644 --- a/drivers/media/test-drivers/vivid/vivid-kthread-cap.c +++ b/drivers/media/test-drivers/vivid/vivid-kthread-cap.c @@ -18,6 +18,7 @@ #include <linux/freezer.h> #include <linux/random.h> #include <linux/v4l2-dv-timings.h> +#include <linux/jiffies.h> #include <asm/div64.h> #include <media/videobuf2-vmalloc.h> #include <media/v4l2-dv-timings.h> @@ -52,31 +53,10 @@ static void copy_pix(struct vivid_dev *dev, int win_y, int win_x, u16 *cap, const u16 *osd) { u16 out; - int left = dev->overlay_out_left; - int top = dev->overlay_out_top; - int fb_x = win_x + left; - int fb_y = win_y + top; - int i; out = *cap; *cap = *osd; - if (dev->bitmap_out) { - const u8 *p = dev->bitmap_out; - unsigned stride = (dev->compose_out.width + 7) / 8; - win_x -= dev->compose_out.left; - win_y -= dev->compose_out.top; - if (!(p[stride * win_y + win_x / 8] & (1 << (win_x & 7)))) - return; - } - - for (i = 0; i < dev->clipcount_out; i++) { - struct v4l2_rect *r = &dev->clips_out[i].c; - - if (fb_y >= r->top && fb_y < r->top + r->height && - fb_x >= r->left && fb_x < r->left + r->width) - return; - } if ((dev->fbuf_out_flags & V4L2_FBUF_FLAG_CHROMAKEY) && *osd != dev->chromakey_out) return; @@ -162,7 +142,7 @@ static void scale_line(const u8 *src, u8 *dst, unsigned srcw, unsigned dstw, uns * (loop_vid_overlay). Finally calculate the part of the capture buffer that * will receive that overlaid video. */ -static void vivid_precalc_copy_rects(struct vivid_dev *dev) +static void vivid_precalc_copy_rects(struct vivid_dev *dev, struct vivid_dev *out_dev) { /* Framebuffer rectangle */ struct v4l2_rect r_fb = { @@ -170,53 +150,53 @@ static void vivid_precalc_copy_rects(struct vivid_dev *dev) }; /* Overlay window rectangle in framebuffer coordinates */ struct v4l2_rect r_overlay = { - dev->overlay_out_left, dev->overlay_out_top, - dev->compose_out.width, dev->compose_out.height + out_dev->overlay_out_left, out_dev->overlay_out_top, + out_dev->compose_out.width, out_dev->compose_out.height }; - v4l2_rect_intersect(&dev->loop_vid_copy, &dev->crop_cap, &dev->compose_out); + v4l2_rect_intersect(&dev->loop_vid_copy, &dev->crop_cap, &out_dev->compose_out); dev->loop_vid_out = dev->loop_vid_copy; - v4l2_rect_scale(&dev->loop_vid_out, &dev->compose_out, &dev->crop_out); - dev->loop_vid_out.left += dev->crop_out.left; - dev->loop_vid_out.top += dev->crop_out.top; + v4l2_rect_scale(&dev->loop_vid_out, &out_dev->compose_out, &out_dev->crop_out); + dev->loop_vid_out.left += out_dev->crop_out.left; + dev->loop_vid_out.top += out_dev->crop_out.top; dev->loop_vid_cap = dev->loop_vid_copy; v4l2_rect_scale(&dev->loop_vid_cap, &dev->crop_cap, &dev->compose_cap); dprintk(dev, 1, - "loop_vid_copy: %dx%d@%dx%d loop_vid_out: %dx%d@%dx%d loop_vid_cap: %dx%d@%dx%d\n", - dev->loop_vid_copy.width, dev->loop_vid_copy.height, + "loop_vid_copy: (%d,%d)/%ux%u loop_vid_out: (%d,%d)/%ux%u loop_vid_cap: (%d,%d)/%ux%u\n", dev->loop_vid_copy.left, dev->loop_vid_copy.top, - dev->loop_vid_out.width, dev->loop_vid_out.height, + dev->loop_vid_copy.width, dev->loop_vid_copy.height, dev->loop_vid_out.left, dev->loop_vid_out.top, - dev->loop_vid_cap.width, dev->loop_vid_cap.height, - dev->loop_vid_cap.left, dev->loop_vid_cap.top); + dev->loop_vid_out.width, dev->loop_vid_out.height, + dev->loop_vid_cap.left, dev->loop_vid_cap.top, + dev->loop_vid_cap.width, dev->loop_vid_cap.height); v4l2_rect_intersect(&r_overlay, &r_fb, &r_overlay); /* shift r_overlay to the same origin as compose_out */ - r_overlay.left += dev->compose_out.left - dev->overlay_out_left; - r_overlay.top += dev->compose_out.top - dev->overlay_out_top; + r_overlay.left += out_dev->compose_out.left - out_dev->overlay_out_left; + r_overlay.top += out_dev->compose_out.top - out_dev->overlay_out_top; v4l2_rect_intersect(&dev->loop_vid_overlay, &r_overlay, &dev->loop_vid_copy); dev->loop_fb_copy = dev->loop_vid_overlay; /* shift dev->loop_fb_copy back again to the fb origin */ - dev->loop_fb_copy.left -= dev->compose_out.left - dev->overlay_out_left; - dev->loop_fb_copy.top -= dev->compose_out.top - dev->overlay_out_top; + dev->loop_fb_copy.left -= out_dev->compose_out.left - out_dev->overlay_out_left; + dev->loop_fb_copy.top -= out_dev->compose_out.top - out_dev->overlay_out_top; dev->loop_vid_overlay_cap = dev->loop_vid_overlay; v4l2_rect_scale(&dev->loop_vid_overlay_cap, &dev->crop_cap, &dev->compose_cap); dprintk(dev, 1, - "loop_fb_copy: %dx%d@%dx%d loop_vid_overlay: %dx%d@%dx%d loop_vid_overlay_cap: %dx%d@%dx%d\n", - dev->loop_fb_copy.width, dev->loop_fb_copy.height, + "loop_fb_copy: (%d,%d)/%ux%u loop_vid_overlay: (%d,%d)/%ux%u loop_vid_overlay_cap: (%d,%d)/%ux%u\n", dev->loop_fb_copy.left, dev->loop_fb_copy.top, - dev->loop_vid_overlay.width, dev->loop_vid_overlay.height, + dev->loop_fb_copy.width, dev->loop_fb_copy.height, dev->loop_vid_overlay.left, dev->loop_vid_overlay.top, - dev->loop_vid_overlay_cap.width, dev->loop_vid_overlay_cap.height, - dev->loop_vid_overlay_cap.left, dev->loop_vid_overlay_cap.top); + dev->loop_vid_overlay.width, dev->loop_vid_overlay.height, + dev->loop_vid_overlay_cap.left, dev->loop_vid_overlay_cap.top, + dev->loop_vid_overlay_cap.width, dev->loop_vid_overlay_cap.height); } static void *plane_vaddr(struct tpg_data *tpg, struct vivid_buffer *buf, @@ -233,24 +213,25 @@ static void *plane_vaddr(struct tpg_data *tpg, struct vivid_buffer *buf, return vbuf; } -static noinline_for_stack int vivid_copy_buffer(struct vivid_dev *dev, unsigned p, - u8 *vcapbuf, struct vivid_buffer *vid_cap_buf) +static noinline_for_stack int vivid_copy_buffer(struct vivid_dev *dev, + struct vivid_dev *out_dev, unsigned p, + u8 *vcapbuf, struct vivid_buffer *vid_cap_buf) { bool blank = dev->must_blank[vid_cap_buf->vb.vb2_buf.index]; struct tpg_data *tpg = &dev->tpg; struct vivid_buffer *vid_out_buf = NULL; - unsigned vdiv = dev->fmt_out->vdownsampling[p]; + unsigned vdiv = out_dev->fmt_out->vdownsampling[p]; unsigned twopixsize = tpg_g_twopixelsize(tpg, p); unsigned img_width = tpg_hdiv(tpg, p, dev->compose_cap.width); unsigned img_height = dev->compose_cap.height; unsigned stride_cap = tpg->bytesperline[p]; - unsigned stride_out = dev->bytesperline_out[p]; + unsigned stride_out = out_dev->bytesperline_out[p]; unsigned stride_osd = dev->display_byte_stride; unsigned hmax = (img_height * tpg->perc_fill) / 100; u8 *voutbuf; u8 *vosdbuf = NULL; unsigned y; - bool blend = dev->bitmap_out || dev->clipcount_out || dev->fbuf_out_flags; + bool blend = out_dev->fbuf_out_flags; /* Coarse scaling with Bresenham */ unsigned vid_out_int_part; unsigned vid_out_fract_part; @@ -267,8 +248,8 @@ static noinline_for_stack int vivid_copy_buffer(struct vivid_dev *dev, unsigned vid_out_int_part = dev->loop_vid_out.height / dev->loop_vid_cap.height; vid_out_fract_part = dev->loop_vid_out.height % dev->loop_vid_cap.height; - if (!list_empty(&dev->vid_out_active)) - vid_out_buf = list_entry(dev->vid_out_active.next, + if (!list_empty(&out_dev->vid_out_active)) + vid_out_buf = list_entry(out_dev->vid_out_active.next, struct vivid_buffer, list); if (vid_out_buf == NULL) return -ENODATA; @@ -276,8 +257,8 @@ static noinline_for_stack int vivid_copy_buffer(struct vivid_dev *dev, unsigned vid_cap_buf->vb.field = vid_out_buf->vb.field; voutbuf = plane_vaddr(tpg, vid_out_buf, p, - dev->bytesperline_out, dev->fmt_out_rect.height); - if (p < dev->fmt_out->buffers) + out_dev->bytesperline_out, out_dev->fmt_out_rect.height); + if (p < out_dev->fmt_out->buffers) voutbuf += vid_out_buf->vb.vb2_buf.planes[p].data_offset; voutbuf += tpg_hdiv(tpg, p, dev->loop_vid_out.left) + (dev->loop_vid_out.top / vdiv) * stride_out; @@ -294,7 +275,7 @@ static noinline_for_stack int vivid_copy_buffer(struct vivid_dev *dev, unsigned return 0; } - if (dev->overlay_out_enabled && + if (out_dev->overlay_out_enabled && dev->loop_vid_overlay.width && dev->loop_vid_overlay.height) { vosdbuf = dev->video_vbase; vosdbuf += (dev->loop_fb_copy.left * twopixsize) / 2 + @@ -405,6 +386,7 @@ update_vid_out_y: static void vivid_fillbuff(struct vivid_dev *dev, struct vivid_buffer *buf) { + struct vivid_dev *out_dev = NULL; struct tpg_data *tpg = &dev->tpg; unsigned factor = V4L2_FIELD_HAS_T_OR_B(dev->field_cap) ? 2 : 1; unsigned line_height = 16 / factor; @@ -416,16 +398,9 @@ static void vivid_fillbuff(struct vivid_dev *dev, struct vivid_buffer *buf) unsigned ms; char str[100]; s32 gain; - bool is_loop = false; - - if (dev->loop_video && dev->can_loop_video && - ((vivid_is_svid_cap(dev) && - !VIVID_INVALID_SIGNAL(dev->std_signal_mode[dev->input])) || - (vivid_is_hdmi_cap(dev) && - !VIVID_INVALID_SIGNAL(dev->dv_timings_signal_mode[dev->input])))) - is_loop = true; buf->vb.sequence = dev->vid_cap_seq_count; + v4l2_ctrl_s_ctrl(dev->ro_int32, buf->vb.sequence & 0xff); if (dev->field_cap == V4L2_FIELD_ALTERNATE) { /* * 60 Hz standards start with the bottom field, 50 Hz standards @@ -447,7 +422,34 @@ static void vivid_fillbuff(struct vivid_dev *dev, struct vivid_buffer *buf) dev->field_cap == V4L2_FIELD_ALTERNATE); tpg_s_perc_fill_blank(tpg, dev->must_blank[buf->vb.vb2_buf.index]); - vivid_precalc_copy_rects(dev); + if (vivid_vid_can_loop(dev) && + ((vivid_is_svid_cap(dev) && + !VIVID_INVALID_SIGNAL(dev->std_signal_mode[dev->input])) || + (vivid_is_hdmi_cap(dev) && + !VIVID_INVALID_SIGNAL(dev->dv_timings_signal_mode[dev->input])))) { + out_dev = vivid_input_is_connected_to(dev); + /* + * If the vivid instance of the output device is different + * from the vivid instance of this input device, then we + * must take care to properly serialize the output device to + * prevent that the buffer we are copying from is being freed. + * + * If the output device is part of the same instance, then the + * lock is already taken and there is no need to take the mutex. + * + * The problem with taking the mutex is that you can get + * deadlocked if instance A locks instance B and vice versa. + * It is not really worth trying to be very smart about this, + * so just try to take the lock, and if you can't, then just + * set out_dev to NULL and you will end up with a single frame + * of Noise (the default test pattern in this case). + */ + if (out_dev && dev != out_dev && !mutex_trylock(&out_dev->mutex)) + out_dev = NULL; + } + + if (out_dev) + vivid_precalc_copy_rects(dev, out_dev); for (p = 0; p < tpg_g_planes(tpg); p++) { void *vbuf = plane_vaddr(tpg, buf, p, @@ -464,10 +466,13 @@ static void vivid_fillbuff(struct vivid_dev *dev, struct vivid_buffer *buf) vbuf += dev->fmt_cap->data_offset[p]; } tpg_calc_text_basep(tpg, basep, p, vbuf); - if (!is_loop || vivid_copy_buffer(dev, p, vbuf, buf)) + if (!out_dev || vivid_copy_buffer(dev, out_dev, p, vbuf, buf)) tpg_fill_plane_buffer(tpg, vivid_get_std_cap(dev), p, vbuf); } + if (out_dev && dev != out_dev) + mutex_unlock(&out_dev->mutex); + dev->must_blank[buf->vb.vb2_buf.index] = false; /* Updates stream time, only update at the start of a new frame. */ @@ -515,10 +520,11 @@ static void vivid_fillbuff(struct vivid_dev *dev, struct vivid_buffer *buf) mutex_unlock(dev->ctrl_hdl_user_aud.lock); tpg_gen_text(tpg, basep, line++ * line_height, 16, str); mutex_lock(dev->ctrl_hdl_user_gen.lock); - snprintf(str, sizeof(str), " int32 %d, int64 %lld, bitmask %08x ", - dev->int32->cur.val, - *dev->int64->p_cur.p_s64, - dev->bitmask->cur.val); + snprintf(str, sizeof(str), " int32 %d, ro_int32 %d, int64 %lld, bitmask %08x ", + dev->int32->cur.val, + dev->ro_int32->cur.val, + *dev->int64->p_cur.p_s64, + dev->bitmask->cur.val); tpg_gen_text(tpg, basep, line++ * line_height, 16, str); snprintf(str, sizeof(str), " boolean %d, menu %s, string \"%s\" ", dev->boolean->cur.val, @@ -551,109 +557,6 @@ static void vivid_fillbuff(struct vivid_dev *dev, struct vivid_buffer *buf) } } -/* - * Return true if this pixel coordinate is a valid video pixel. - */ -static bool valid_pix(struct vivid_dev *dev, int win_y, int win_x, int fb_y, int fb_x) -{ - int i; - - if (dev->bitmap_cap) { - /* - * Only if the corresponding bit in the bitmap is set can - * the video pixel be shown. Coordinates are relative to - * the overlay window set by VIDIOC_S_FMT. - */ - const u8 *p = dev->bitmap_cap; - unsigned stride = (dev->compose_cap.width + 7) / 8; - - if (!(p[stride * win_y + win_x / 8] & (1 << (win_x & 7)))) - return false; - } - - for (i = 0; i < dev->clipcount_cap; i++) { - /* - * Only if the framebuffer coordinate is not in any of the - * clip rectangles will be video pixel be shown. - */ - struct v4l2_rect *r = &dev->clips_cap[i].c; - - if (fb_y >= r->top && fb_y < r->top + r->height && - fb_x >= r->left && fb_x < r->left + r->width) - return false; - } - return true; -} - -/* - * Draw the image into the overlay buffer. - * Note that the combination of overlay and multiplanar is not supported. - */ -static void vivid_overlay(struct vivid_dev *dev, struct vivid_buffer *buf) -{ - struct tpg_data *tpg = &dev->tpg; - unsigned pixsize = tpg_g_twopixelsize(tpg, 0) / 2; - void *vbase = dev->fb_vbase_cap; - void *vbuf = vb2_plane_vaddr(&buf->vb.vb2_buf, 0); - unsigned img_width = dev->compose_cap.width; - unsigned img_height = dev->compose_cap.height; - unsigned stride = tpg->bytesperline[0]; - /* if quick is true, then valid_pix() doesn't have to be called */ - bool quick = dev->bitmap_cap == NULL && dev->clipcount_cap == 0; - int x, y, w, out_x = 0; - - /* - * Overlay support is only supported for formats that have a twopixelsize - * that's >= 2. Warn and bail out if that's not the case. - */ - if (WARN_ON(pixsize == 0)) - return; - if ((dev->overlay_cap_field == V4L2_FIELD_TOP || - dev->overlay_cap_field == V4L2_FIELD_BOTTOM) && - dev->overlay_cap_field != buf->vb.field) - return; - - vbuf += dev->compose_cap.left * pixsize + dev->compose_cap.top * stride; - x = dev->overlay_cap_left; - w = img_width; - if (x < 0) { - out_x = -x; - w = w - out_x; - x = 0; - } else { - w = dev->fb_cap.fmt.width - x; - if (w > img_width) - w = img_width; - } - if (w <= 0) - return; - if (dev->overlay_cap_top >= 0) - vbase += dev->overlay_cap_top * dev->fb_cap.fmt.bytesperline; - for (y = dev->overlay_cap_top; - y < dev->overlay_cap_top + (int)img_height; - y++, vbuf += stride) { - int px; - - if (y < 0 || y > dev->fb_cap.fmt.height) - continue; - if (quick) { - memcpy(vbase + x * pixsize, - vbuf + out_x * pixsize, w * pixsize); - vbase += dev->fb_cap.fmt.bytesperline; - continue; - } - for (px = 0; px < w; px++) { - if (!valid_pix(dev, y - dev->overlay_cap_top, - px + out_x, y, px + x)) - continue; - memcpy(vbase + (px + x) * pixsize, - vbuf + (px + out_x) * pixsize, - pixsize); - } - vbase += dev->fb_cap.fmt.bytesperline; - } -} - static void vivid_cap_update_frame_period(struct vivid_dev *dev) { u64 f_period; @@ -690,7 +593,7 @@ static noinline_for_stack void vivid_thread_vid_cap_tick(struct vivid_dev *dev, /* Drop a certain percentage of buffers. */ if (dev->perc_dropped_buffers && - prandom_u32_max(100) < dev->perc_dropped_buffers) + get_random_u32_below(100) < dev->perc_dropped_buffers) goto update_mv; spin_lock(&dev->slock); @@ -717,8 +620,7 @@ static noinline_for_stack void vivid_thread_vid_cap_tick(struct vivid_dev *dev, if (!vid_cap_buf && !vbi_cap_buf && !meta_cap_buf) goto update_mv; - f_time = dev->cap_frame_period * dev->vid_cap_seq_count + - dev->cap_stream_start + dev->time_wrap_offset; + f_time = ktime_get_ns() + dev->time_wrap_offset; if (vid_cap_buf) { v4l2_ctrl_request_setup(vid_cap_buf->vb.vb2_buf.req_obj.req, @@ -728,11 +630,6 @@ static noinline_for_stack void vivid_thread_vid_cap_tick(struct vivid_dev *dev, dprintk(dev, 1, "filled buffer %d\n", vid_cap_buf->vb.vb2_buf.index); - /* Handle overlay */ - if (dev->overlay_cap_owner && dev->fb_cap.base && - dev->fb_cap.fmt.pixelformat == dev->fmt_cap->fourcc) - vivid_overlay(dev, vid_cap_buf); - v4l2_ctrl_request_complete(vid_cap_buf->vb.vb2_buf.req_obj.req, &dev->ctrl_hdl_vid_cap); vb2_buffer_done(&vid_cap_buf->vb.vb2_buf, dev->dqbuf_error ? @@ -750,7 +647,7 @@ static noinline_for_stack void vivid_thread_vid_cap_tick(struct vivid_dev *dev, v4l2_ctrl_request_setup(vbi_cap_buf->vb.vb2_buf.req_obj.req, &dev->ctrl_hdl_vbi_cap); - if (dev->stream_sliced_vbi_cap) + if (vbi_cap_buf->vb.vb2_buf.type == V4L2_BUF_TYPE_SLICED_VBI_CAPTURE) vivid_sliced_vbi_cap_process(dev, vbi_cap_buf); else vivid_raw_vbi_cap_process(dev, vbi_cap_buf); @@ -811,6 +708,10 @@ static int vivid_thread_vid_cap(void *data) dev->cap_seq_resync = false; dev->jiffies_vid_cap = jiffies; dev->cap_stream_start = ktime_get_ns(); + if (dev->time_wrap) + dev->time_wrap_offset = dev->time_wrap - dev->cap_stream_start; + else + dev->time_wrap_offset = 0; vivid_cap_update_frame_period(dev); for (;;) { @@ -819,7 +720,7 @@ static int vivid_thread_vid_cap(void *data) break; if (!mutex_trylock(&dev->mutex)) { - schedule_timeout_uninterruptible(1); + schedule(); continue; } @@ -888,7 +789,14 @@ static int vivid_thread_vid_cap(void *data) next_jiffies_since_start = jiffies_since_start; wait_jiffies = next_jiffies_since_start - jiffies_since_start; - schedule_timeout_interruptible(wait_jiffies ? wait_jiffies : 1); + if (!time_is_after_jiffies(cur_jiffies + wait_jiffies)) + continue; + + wait_queue_head_t wait; + + init_waitqueue_head(&wait); + wait_event_interruptible_timeout(wait, kthread_should_stop(), + cur_jiffies + wait_jiffies - jiffies); } dprintk(dev, 1, "Video Capture Thread End\n"); return 0; |
