diff options
Diffstat (limited to 'drivers/media/platform/rockchip')
6 files changed, 537 insertions, 281 deletions
diff --git a/drivers/media/platform/rockchip/rkisp1/rkisp1-capture.c b/drivers/media/platform/rockchip/rkisp1/rkisp1-capture.c index d5904c96ff3f..d4540684ea9a 100644 --- a/drivers/media/platform/rockchip/rkisp1/rkisp1-capture.c +++ b/drivers/media/platform/rockchip/rkisp1/rkisp1-capture.c @@ -913,7 +913,7 @@ static void rkisp1_cap_stream_disable(struct rkisp1_capture *cap) * * Call s_stream(false) in the reverse order from * rkisp1_pipeline_stream_enable() and disable the DMA engine. - * Should be called before media_pipeline_stop() + * Should be called before video_device_pipeline_stop() */ static void rkisp1_pipeline_stream_disable(struct rkisp1_capture *cap) __must_hold(&cap->rkisp1->stream_lock) @@ -926,7 +926,7 @@ static void rkisp1_pipeline_stream_disable(struct rkisp1_capture *cap) * If the other capture is streaming, isp and sensor nodes shouldn't * be disabled, skip them. */ - if (rkisp1->pipe.streaming_count < 2) + if (rkisp1->pipe.start_count < 2) v4l2_subdev_call(&rkisp1->isp.sd, video, s_stream, false); v4l2_subdev_call(&rkisp1->resizer_devs[cap->id].sd, video, s_stream, @@ -937,7 +937,7 @@ static void rkisp1_pipeline_stream_disable(struct rkisp1_capture *cap) * rkisp1_pipeline_stream_enable - enable nodes in the pipeline * * Enable the DMA Engine and call s_stream(true) through the pipeline. - * Should be called after media_pipeline_start() + * Should be called after video_device_pipeline_start() */ static int rkisp1_pipeline_stream_enable(struct rkisp1_capture *cap) __must_hold(&cap->rkisp1->stream_lock) @@ -956,7 +956,7 @@ static int rkisp1_pipeline_stream_enable(struct rkisp1_capture *cap) * If the other capture is streaming, isp and sensor nodes are already * enabled, skip them. */ - if (rkisp1->pipe.streaming_count > 1) + if (rkisp1->pipe.start_count > 1) return 0; ret = v4l2_subdev_call(&rkisp1->isp.sd, video, s_stream, true); @@ -994,7 +994,7 @@ static void rkisp1_vb2_stop_streaming(struct vb2_queue *queue) rkisp1_dummy_buf_destroy(cap); - media_pipeline_stop(&node->vdev.entity); + video_device_pipeline_stop(&node->vdev); mutex_unlock(&cap->rkisp1->stream_lock); } @@ -1008,7 +1008,7 @@ rkisp1_vb2_start_streaming(struct vb2_queue *queue, unsigned int count) mutex_lock(&cap->rkisp1->stream_lock); - ret = media_pipeline_start(entity, &cap->rkisp1->pipe); + ret = video_device_pipeline_start(&cap->vnode.vdev, &cap->rkisp1->pipe); if (ret) { dev_err(cap->rkisp1->dev, "start pipeline failed %d\n", ret); goto err_ret_buffers; @@ -1044,7 +1044,7 @@ err_pipe_pm_put: err_destroy_dummy: rkisp1_dummy_buf_destroy(cap); err_pipeline_stop: - media_pipeline_stop(entity); + video_device_pipeline_stop(&cap->vnode.vdev); err_ret_buffers: rkisp1_return_all_buffers(cap, VB2_BUF_STATE_QUEUED); mutex_unlock(&cap->rkisp1->stream_lock); @@ -1273,11 +1273,12 @@ static int rkisp1_capture_link_validate(struct media_link *link) struct rkisp1_capture *cap = video_get_drvdata(vdev); const struct rkisp1_capture_fmt_cfg *fmt = rkisp1_find_fmt_cfg(cap, cap->pix.fmt.pixelformat); - struct v4l2_subdev_format sd_fmt; + struct v4l2_subdev_format sd_fmt = { + .which = V4L2_SUBDEV_FORMAT_ACTIVE, + .pad = link->source->index, + }; int ret; - sd_fmt.which = V4L2_SUBDEV_FORMAT_ACTIVE; - sd_fmt.pad = link->source->index; ret = v4l2_subdev_call(sd, pad, get_fmt, NULL, &sd_fmt); if (ret) return ret; diff --git a/drivers/media/platform/rockchip/rkisp1/rkisp1-common.h b/drivers/media/platform/rockchip/rkisp1/rkisp1-common.h index 8056997d5c29..a1293c45aae1 100644 --- a/drivers/media/platform/rockchip/rkisp1/rkisp1-common.h +++ b/drivers/media/platform/rockchip/rkisp1/rkisp1-common.h @@ -378,6 +378,7 @@ struct rkisp1_params { struct v4l2_format vdev_fmt; enum v4l2_quantization quantization; + enum v4l2_ycbcr_encoding ycbcr_encoding; enum rkisp1_fmt_raw_pat_type raw_type; }; @@ -556,17 +557,32 @@ void rkisp1_sd_adjust_crop(struct v4l2_rect *crop, */ const struct rkisp1_mbus_info *rkisp1_mbus_info_get_by_code(u32 mbus_code); -/* rkisp1_params_configure - configure the params when stream starts. - * This function is called by the isp entity upon stream starts. - * The function applies the initial configuration of the parameters. +/* + * rkisp1_params_pre_configure - Configure the params before stream start * - * @params: pointer to rkisp1_params. + * @params: pointer to rkisp1_params * @bayer_pat: the bayer pattern on the isp video sink pad * @quantization: the quantization configured on the isp's src pad + * @ycbcr_encoding: the ycbcr_encoding configured on the isp's src pad + * + * This function is called by the ISP entity just before the ISP gets started. + * It applies the initial ISP parameters from the first params buffer, but + * skips LSC as it needs to be configured after the ISP is started. + */ +void rkisp1_params_pre_configure(struct rkisp1_params *params, + enum rkisp1_fmt_raw_pat_type bayer_pat, + enum v4l2_quantization quantization, + enum v4l2_ycbcr_encoding ycbcr_encoding); + +/* + * rkisp1_params_post_configure - Configure the params after stream start + * + * @params: pointer to rkisp1_params + * + * This function is called by the ISP entity just after the ISP gets started. + * It applies the initial ISP LSC parameters from the first params buffer. */ -void rkisp1_params_configure(struct rkisp1_params *params, - enum rkisp1_fmt_raw_pat_type bayer_pat, - enum v4l2_quantization quantization); +void rkisp1_params_post_configure(struct rkisp1_params *params); /* rkisp1_params_disable - disable all parameters. * This function is called by the isp entity upon stream start diff --git a/drivers/media/platform/rockchip/rkisp1/rkisp1-isp.c b/drivers/media/platform/rockchip/rkisp1/rkisp1-isp.c index 383a3ec83ca9..585cf3f53469 100644 --- a/drivers/media/platform/rockchip/rkisp1/rkisp1-isp.c +++ b/drivers/media/platform/rockchip/rkisp1/rkisp1-isp.c @@ -231,10 +231,11 @@ static int rkisp1_config_isp(struct rkisp1_isp *isp, struct v4l2_mbus_framefmt *src_frm; src_frm = rkisp1_isp_get_pad_fmt(isp, NULL, - RKISP1_ISP_PAD_SINK_VIDEO, + RKISP1_ISP_PAD_SOURCE_VIDEO, V4L2_SUBDEV_FORMAT_ACTIVE); - rkisp1_params_configure(&rkisp1->params, sink_fmt->bayer_pat, - src_frm->quantization); + rkisp1_params_pre_configure(&rkisp1->params, sink_fmt->bayer_pat, + src_frm->quantization, + src_frm->ycbcr_enc); } return 0; @@ -340,6 +341,9 @@ static void rkisp1_isp_start(struct rkisp1_isp *isp) RKISP1_CIF_ISP_CTRL_ISP_ENABLE | RKISP1_CIF_ISP_CTRL_ISP_INFORM_ENABLE; rkisp1_write(rkisp1, RKISP1_CIF_ISP_CTRL, val); + + if (isp->src_fmt->pixel_enc != V4L2_PIXEL_ENC_BAYER) + rkisp1_params_post_configure(&rkisp1->params); } /* ---------------------------------------------------------------------------- @@ -431,12 +435,17 @@ static int rkisp1_isp_init_config(struct v4l2_subdev *sd, struct v4l2_mbus_framefmt *sink_fmt, *src_fmt; struct v4l2_rect *sink_crop, *src_crop; + /* Video. */ sink_fmt = v4l2_subdev_get_try_format(sd, sd_state, RKISP1_ISP_PAD_SINK_VIDEO); sink_fmt->width = RKISP1_DEFAULT_WIDTH; sink_fmt->height = RKISP1_DEFAULT_HEIGHT; sink_fmt->field = V4L2_FIELD_NONE; sink_fmt->code = RKISP1_DEF_SINK_PAD_FMT; + sink_fmt->colorspace = V4L2_COLORSPACE_RAW; + sink_fmt->xfer_func = V4L2_XFER_FUNC_NONE; + sink_fmt->ycbcr_enc = V4L2_YCBCR_ENC_601; + sink_fmt->quantization = V4L2_QUANTIZATION_FULL_RANGE; sink_crop = v4l2_subdev_get_try_crop(sd, sd_state, RKISP1_ISP_PAD_SINK_VIDEO); @@ -449,11 +458,16 @@ static int rkisp1_isp_init_config(struct v4l2_subdev *sd, RKISP1_ISP_PAD_SOURCE_VIDEO); *src_fmt = *sink_fmt; src_fmt->code = RKISP1_DEF_SRC_PAD_FMT; + src_fmt->colorspace = V4L2_COLORSPACE_SRGB; + src_fmt->xfer_func = V4L2_XFER_FUNC_SRGB; + src_fmt->ycbcr_enc = V4L2_YCBCR_ENC_601; + src_fmt->quantization = V4L2_QUANTIZATION_LIM_RANGE; src_crop = v4l2_subdev_get_try_crop(sd, sd_state, RKISP1_ISP_PAD_SOURCE_VIDEO); *src_crop = *sink_crop; + /* Parameters and statistics. */ sink_fmt = v4l2_subdev_get_try_format(sd, sd_state, RKISP1_ISP_PAD_SINK_PARAMS); src_fmt = v4l2_subdev_get_try_format(sd, sd_state, @@ -472,40 +486,105 @@ static void rkisp1_isp_set_src_fmt(struct rkisp1_isp *isp, struct v4l2_mbus_framefmt *format, unsigned int which) { - const struct rkisp1_mbus_info *mbus_info; + const struct rkisp1_mbus_info *sink_info; + const struct rkisp1_mbus_info *src_info; + struct v4l2_mbus_framefmt *sink_fmt; struct v4l2_mbus_framefmt *src_fmt; const struct v4l2_rect *src_crop; + bool set_csc; + sink_fmt = rkisp1_isp_get_pad_fmt(isp, sd_state, + RKISP1_ISP_PAD_SINK_VIDEO, which); src_fmt = rkisp1_isp_get_pad_fmt(isp, sd_state, RKISP1_ISP_PAD_SOURCE_VIDEO, which); src_crop = rkisp1_isp_get_pad_crop(isp, sd_state, RKISP1_ISP_PAD_SOURCE_VIDEO, which); + /* + * Media bus code. The ISP can operate in pass-through mode (Bayer in, + * Bayer out or YUV in, YUV out) or process Bayer data to YUV, but + * can't convert from YUV to Bayer. + */ + sink_info = rkisp1_mbus_info_get_by_code(sink_fmt->code); + src_fmt->code = format->code; - mbus_info = rkisp1_mbus_info_get_by_code(src_fmt->code); - if (!mbus_info || !(mbus_info->direction & RKISP1_ISP_SD_SRC)) { + src_info = rkisp1_mbus_info_get_by_code(src_fmt->code); + if (!src_info || !(src_info->direction & RKISP1_ISP_SD_SRC)) { src_fmt->code = RKISP1_DEF_SRC_PAD_FMT; - mbus_info = rkisp1_mbus_info_get_by_code(src_fmt->code); + src_info = rkisp1_mbus_info_get_by_code(src_fmt->code); } - if (which == V4L2_SUBDEV_FORMAT_ACTIVE) - isp->src_fmt = mbus_info; + + if (sink_info->pixel_enc == V4L2_PIXEL_ENC_YUV && + src_info->pixel_enc == V4L2_PIXEL_ENC_BAYER) { + src_fmt->code = sink_fmt->code; + src_info = sink_info; + } + + /* + * The source width and height must be identical to the source crop + * size. + */ src_fmt->width = src_crop->width; src_fmt->height = src_crop->height; /* - * The CSC API is used to allow userspace to force full - * quantization on YUV formats. + * Copy the color space for the sink pad. When converting from Bayer to + * YUV, default to a limited quantization range. */ - if (format->flags & V4L2_MBUS_FRAMEFMT_SET_CSC && - format->quantization == V4L2_QUANTIZATION_FULL_RANGE && - mbus_info->pixel_enc == V4L2_PIXEL_ENC_YUV) - src_fmt->quantization = V4L2_QUANTIZATION_FULL_RANGE; - else if (mbus_info->pixel_enc == V4L2_PIXEL_ENC_YUV) + src_fmt->colorspace = sink_fmt->colorspace; + src_fmt->xfer_func = sink_fmt->xfer_func; + src_fmt->ycbcr_enc = sink_fmt->ycbcr_enc; + + if (sink_info->pixel_enc == V4L2_PIXEL_ENC_BAYER && + src_info->pixel_enc == V4L2_PIXEL_ENC_YUV) src_fmt->quantization = V4L2_QUANTIZATION_LIM_RANGE; else - src_fmt->quantization = V4L2_QUANTIZATION_FULL_RANGE; + src_fmt->quantization = sink_fmt->quantization; + + /* + * Allow setting the source color space fields when the SET_CSC flag is + * set and the source format is YUV. If the sink format is YUV, don't + * set the color primaries, transfer function or YCbCr encoding as the + * ISP is bypassed in that case and passes YUV data through without + * modifications. + * + * The color primaries and transfer function are configured through the + * cross-talk matrix and tone curve respectively. Settings for those + * hardware blocks are conveyed through the ISP parameters buffer, as + * they need to combine color space information with other image tuning + * characteristics and can't thus be computed by the kernel based on the + * color space. The source pad colorspace and xfer_func fields are thus + * ignored by the driver, but can be set by userspace to propagate + * accurate color space information down the pipeline. + */ + set_csc = format->flags & V4L2_MBUS_FRAMEFMT_SET_CSC; + + if (set_csc && src_info->pixel_enc == V4L2_PIXEL_ENC_YUV) { + if (sink_info->pixel_enc == V4L2_PIXEL_ENC_BAYER) { + if (format->colorspace != V4L2_COLORSPACE_DEFAULT) + src_fmt->colorspace = format->colorspace; + if (format->xfer_func != V4L2_XFER_FUNC_DEFAULT) + src_fmt->xfer_func = format->xfer_func; + if (format->ycbcr_enc != V4L2_YCBCR_ENC_DEFAULT) + src_fmt->ycbcr_enc = format->ycbcr_enc; + } + + if (format->quantization != V4L2_QUANTIZATION_DEFAULT) + src_fmt->quantization = format->quantization; + } *format = *src_fmt; + + /* + * Restore the SET_CSC flag if it was set to indicate support for the + * CSC setting API. + */ + if (set_csc) + format->flags |= V4L2_MBUS_FRAMEFMT_SET_CSC; + + /* Store the source format info when setting the active format. */ + if (which == V4L2_SUBDEV_FORMAT_ACTIVE) + isp->src_fmt = src_info; } static void rkisp1_isp_set_src_crop(struct rkisp1_isp *isp, @@ -573,6 +652,7 @@ static void rkisp1_isp_set_sink_fmt(struct rkisp1_isp *isp, const struct rkisp1_mbus_info *mbus_info; struct v4l2_mbus_framefmt *sink_fmt; struct v4l2_rect *sink_crop; + bool is_yuv; sink_fmt = rkisp1_isp_get_pad_fmt(isp, sd_state, RKISP1_ISP_PAD_SINK_VIDEO, @@ -593,6 +673,36 @@ static void rkisp1_isp_set_sink_fmt(struct rkisp1_isp *isp, RKISP1_ISP_MIN_HEIGHT, RKISP1_ISP_MAX_HEIGHT); + /* + * Adjust the color space fields. Accept any color primaries and + * transfer function for both YUV and Bayer. For YUV any YCbCr encoding + * and quantization range is also accepted. For Bayer formats, the YCbCr + * encoding isn't applicable, and the quantization range can only be + * full. + */ + is_yuv = mbus_info->pixel_enc == V4L2_PIXEL_ENC_YUV; + + sink_fmt->colorspace = format->colorspace ? : + (is_yuv ? V4L2_COLORSPACE_SRGB : + V4L2_COLORSPACE_RAW); + sink_fmt->xfer_func = format->xfer_func ? : + V4L2_MAP_XFER_FUNC_DEFAULT(sink_fmt->colorspace); + if (is_yuv) { + sink_fmt->ycbcr_enc = format->ycbcr_enc ? : + V4L2_MAP_YCBCR_ENC_DEFAULT(sink_fmt->colorspace); + sink_fmt->quantization = format->quantization ? : + V4L2_MAP_QUANTIZATION_DEFAULT(false, sink_fmt->colorspace, + sink_fmt->ycbcr_enc); + } else { + /* + * The YCbCr encoding isn't applicable for non-YUV formats, but + * V4L2 has no "no encoding" value. Hardcode it to Rec. 601, it + * should be ignored by userspace. + */ + sink_fmt->ycbcr_enc = V4L2_YCBCR_ENC_601; + sink_fmt->quantization = V4L2_QUANTIZATION_FULL_RANGE; + } + *format = *sink_fmt; /* Propagate to in crop */ diff --git a/drivers/media/platform/rockchip/rkisp1/rkisp1-params.c b/drivers/media/platform/rockchip/rkisp1/rkisp1-params.c index 9da7dc1bc690..d8731ebbf479 100644 --- a/drivers/media/platform/rockchip/rkisp1/rkisp1-params.c +++ b/drivers/media/platform/rockchip/rkisp1/rkisp1-params.c @@ -18,6 +18,8 @@ #define RKISP1_ISP_PARAMS_REQ_BUFS_MIN 2 #define RKISP1_ISP_PARAMS_REQ_BUFS_MAX 8 +#define RKISP1_ISP_DPCC_METHODS_SET(n) \ + (RKISP1_CIF_ISP_DPCC_METHODS_SET_1 + 0x4 * (n)) #define RKISP1_ISP_DPCC_LINE_THRESH(n) \ (RKISP1_CIF_ISP_DPCC_LINE_THRESH_1 + 0x14 * (n)) #define RKISP1_ISP_DPCC_LINE_MAD_FAC(n) \ @@ -56,39 +58,47 @@ static void rkisp1_dpcc_config(struct rkisp1_params *params, unsigned int i; u32 mode; - /* avoid to override the old enable value */ + /* + * The enable bit is controlled in rkisp1_isp_isr_other_config() and + * must be preserved. The grayscale mode should be configured + * automatically based on the media bus code on the ISP sink pad, so + * only the STAGE1_ENABLE bit can be set by userspace. + */ mode = rkisp1_read(params->rkisp1, RKISP1_CIF_ISP_DPCC_MODE); - mode &= RKISP1_CIF_ISP_DPCC_ENA; - mode |= arg->mode & ~RKISP1_CIF_ISP_DPCC_ENA; + mode &= RKISP1_CIF_ISP_DPCC_MODE_DPCC_ENABLE; + mode |= arg->mode & RKISP1_CIF_ISP_DPCC_MODE_STAGE1_ENABLE; rkisp1_write(params->rkisp1, RKISP1_CIF_ISP_DPCC_MODE, mode); + rkisp1_write(params->rkisp1, RKISP1_CIF_ISP_DPCC_OUTPUT_MODE, - arg->output_mode); + arg->output_mode & RKISP1_CIF_ISP_DPCC_OUTPUT_MODE_MASK); rkisp1_write(params->rkisp1, RKISP1_CIF_ISP_DPCC_SET_USE, - arg->set_use); - - rkisp1_write(params->rkisp1, RKISP1_CIF_ISP_DPCC_METHODS_SET_1, - arg->methods[0].method); - rkisp1_write(params->rkisp1, RKISP1_CIF_ISP_DPCC_METHODS_SET_2, - arg->methods[1].method); - rkisp1_write(params->rkisp1, RKISP1_CIF_ISP_DPCC_METHODS_SET_3, - arg->methods[2].method); + arg->set_use & RKISP1_CIF_ISP_DPCC_SET_USE_MASK); + for (i = 0; i < RKISP1_CIF_ISP_DPCC_METHODS_MAX; i++) { + rkisp1_write(params->rkisp1, RKISP1_ISP_DPCC_METHODS_SET(i), + arg->methods[i].method & + RKISP1_CIF_ISP_DPCC_METHODS_SET_MASK); rkisp1_write(params->rkisp1, RKISP1_ISP_DPCC_LINE_THRESH(i), - arg->methods[i].line_thresh); + arg->methods[i].line_thresh & + RKISP1_CIF_ISP_DPCC_LINE_THRESH_MASK); rkisp1_write(params->rkisp1, RKISP1_ISP_DPCC_LINE_MAD_FAC(i), - arg->methods[i].line_mad_fac); + arg->methods[i].line_mad_fac & + RKISP1_CIF_ISP_DPCC_LINE_MAD_FAC_MASK); rkisp1_write(params->rkisp1, RKISP1_ISP_DPCC_PG_FAC(i), - arg->methods[i].pg_fac); + arg->methods[i].pg_fac & + RKISP1_CIF_ISP_DPCC_PG_FAC_MASK); rkisp1_write(params->rkisp1, RKISP1_ISP_DPCC_RND_THRESH(i), - arg->methods[i].rnd_thresh); + arg->methods[i].rnd_thresh & + RKISP1_CIF_ISP_DPCC_RND_THRESH_MASK); rkisp1_write(params->rkisp1, RKISP1_ISP_DPCC_RG_FAC(i), - arg->methods[i].rg_fac); + arg->methods[i].rg_fac & + RKISP1_CIF_ISP_DPCC_RG_FAC_MASK); } rkisp1_write(params->rkisp1, RKISP1_CIF_ISP_DPCC_RND_OFFS, - arg->rnd_offs); + arg->rnd_offs & RKISP1_CIF_ISP_DPCC_RND_OFFS_MASK); rkisp1_write(params->rkisp1, RKISP1_CIF_ISP_DPCC_RO_LIMITS, - arg->ro_limits); + arg->ro_limits & RKISP1_CIF_ISP_DPCC_RO_LIMIT_MASK); } /* ISP black level subtraction interface function */ @@ -188,149 +198,131 @@ static void rkisp1_lsc_matrix_config_v10(struct rkisp1_params *params, const struct rkisp1_cif_isp_lsc_config *pconfig) { - unsigned int isp_lsc_status, sram_addr, isp_lsc_table_sel, i, j, data; + struct rkisp1_device *rkisp1 = params->rkisp1; + u32 lsc_status, sram_addr, lsc_table_sel; + unsigned int i, j; - isp_lsc_status = rkisp1_read(params->rkisp1, RKISP1_CIF_ISP_LSC_STATUS); + lsc_status = rkisp1_read(rkisp1, RKISP1_CIF_ISP_LSC_STATUS); /* RKISP1_CIF_ISP_LSC_TABLE_ADDRESS_153 = ( 17 * 18 ) >> 1 */ - sram_addr = (isp_lsc_status & RKISP1_CIF_ISP_LSC_ACTIVE_TABLE) ? + sram_addr = lsc_status & RKISP1_CIF_ISP_LSC_ACTIVE_TABLE ? RKISP1_CIF_ISP_LSC_TABLE_ADDRESS_0 : RKISP1_CIF_ISP_LSC_TABLE_ADDRESS_153; - rkisp1_write(params->rkisp1, RKISP1_CIF_ISP_LSC_R_TABLE_ADDR, sram_addr); - rkisp1_write(params->rkisp1, RKISP1_CIF_ISP_LSC_GR_TABLE_ADDR, sram_addr); - rkisp1_write(params->rkisp1, RKISP1_CIF_ISP_LSC_GB_TABLE_ADDR, sram_addr); - rkisp1_write(params->rkisp1, RKISP1_CIF_ISP_LSC_B_TABLE_ADDR, sram_addr); + rkisp1_write(rkisp1, RKISP1_CIF_ISP_LSC_R_TABLE_ADDR, sram_addr); + rkisp1_write(rkisp1, RKISP1_CIF_ISP_LSC_GR_TABLE_ADDR, sram_addr); + rkisp1_write(rkisp1, RKISP1_CIF_ISP_LSC_GB_TABLE_ADDR, sram_addr); + rkisp1_write(rkisp1, RKISP1_CIF_ISP_LSC_B_TABLE_ADDR, sram_addr); /* program data tables (table size is 9 * 17 = 153) */ for (i = 0; i < RKISP1_CIF_ISP_LSC_SAMPLES_MAX; i++) { + const __u16 *r_tbl = pconfig->r_data_tbl[i]; + const __u16 *gr_tbl = pconfig->gr_data_tbl[i]; + const __u16 *gb_tbl = pconfig->gb_data_tbl[i]; + const __u16 *b_tbl = pconfig->b_data_tbl[i]; + /* * 17 sectors with 2 values in one DWORD = 9 * DWORDs (2nd value of last DWORD unused) */ for (j = 0; j < RKISP1_CIF_ISP_LSC_SAMPLES_MAX - 1; j += 2) { - data = RKISP1_CIF_ISP_LSC_TABLE_DATA_V10(pconfig->r_data_tbl[i][j], - pconfig->r_data_tbl[i][j + 1]); - rkisp1_write(params->rkisp1, - RKISP1_CIF_ISP_LSC_R_TABLE_DATA, data); - - data = RKISP1_CIF_ISP_LSC_TABLE_DATA_V10(pconfig->gr_data_tbl[i][j], - pconfig->gr_data_tbl[i][j + 1]); - rkisp1_write(params->rkisp1, - RKISP1_CIF_ISP_LSC_GR_TABLE_DATA, data); - - data = RKISP1_CIF_ISP_LSC_TABLE_DATA_V10(pconfig->gb_data_tbl[i][j], - pconfig->gb_data_tbl[i][j + 1]); - rkisp1_write(params->rkisp1, - RKISP1_CIF_ISP_LSC_GB_TABLE_DATA, data); - - data = RKISP1_CIF_ISP_LSC_TABLE_DATA_V10(pconfig->b_data_tbl[i][j], - pconfig->b_data_tbl[i][j + 1]); - rkisp1_write(params->rkisp1, - RKISP1_CIF_ISP_LSC_B_TABLE_DATA, data); + rkisp1_write(rkisp1, RKISP1_CIF_ISP_LSC_R_TABLE_DATA, + RKISP1_CIF_ISP_LSC_TABLE_DATA_V10( + r_tbl[j], r_tbl[j + 1])); + rkisp1_write(rkisp1, RKISP1_CIF_ISP_LSC_GR_TABLE_DATA, + RKISP1_CIF_ISP_LSC_TABLE_DATA_V10( + gr_tbl[j], gr_tbl[j + 1])); + rkisp1_write(rkisp1, RKISP1_CIF_ISP_LSC_GB_TABLE_DATA, + RKISP1_CIF_ISP_LSC_TABLE_DATA_V10( + gb_tbl[j], gb_tbl[j + 1])); + rkisp1_write(rkisp1, RKISP1_CIF_ISP_LSC_B_TABLE_DATA, + RKISP1_CIF_ISP_LSC_TABLE_DATA_V10( + b_tbl[j], b_tbl[j + 1])); } - data = RKISP1_CIF_ISP_LSC_TABLE_DATA_V10(pconfig->r_data_tbl[i][j], 0); - rkisp1_write(params->rkisp1, RKISP1_CIF_ISP_LSC_R_TABLE_DATA, - data); - data = RKISP1_CIF_ISP_LSC_TABLE_DATA_V10(pconfig->gr_data_tbl[i][j], 0); - rkisp1_write(params->rkisp1, RKISP1_CIF_ISP_LSC_GR_TABLE_DATA, - data); - - data = RKISP1_CIF_ISP_LSC_TABLE_DATA_V10(pconfig->gb_data_tbl[i][j], 0); - rkisp1_write(params->rkisp1, RKISP1_CIF_ISP_LSC_GB_TABLE_DATA, - data); - - data = RKISP1_CIF_ISP_LSC_TABLE_DATA_V10(pconfig->b_data_tbl[i][j], 0); - rkisp1_write(params->rkisp1, RKISP1_CIF_ISP_LSC_B_TABLE_DATA, - data); + rkisp1_write(rkisp1, RKISP1_CIF_ISP_LSC_R_TABLE_DATA, + RKISP1_CIF_ISP_LSC_TABLE_DATA_V10(r_tbl[j], 0)); + rkisp1_write(rkisp1, RKISP1_CIF_ISP_LSC_GR_TABLE_DATA, + RKISP1_CIF_ISP_LSC_TABLE_DATA_V10(gr_tbl[j], 0)); + rkisp1_write(rkisp1, RKISP1_CIF_ISP_LSC_GB_TABLE_DATA, + RKISP1_CIF_ISP_LSC_TABLE_DATA_V10(gb_tbl[j], 0)); + rkisp1_write(rkisp1, RKISP1_CIF_ISP_LSC_B_TABLE_DATA, + RKISP1_CIF_ISP_LSC_TABLE_DATA_V10(b_tbl[j], 0)); } - isp_lsc_table_sel = (isp_lsc_status & RKISP1_CIF_ISP_LSC_ACTIVE_TABLE) ? - RKISP1_CIF_ISP_LSC_TABLE_0 : - RKISP1_CIF_ISP_LSC_TABLE_1; - rkisp1_write(params->rkisp1, RKISP1_CIF_ISP_LSC_TABLE_SEL, - isp_lsc_table_sel); + + lsc_table_sel = lsc_status & RKISP1_CIF_ISP_LSC_ACTIVE_TABLE ? + RKISP1_CIF_ISP_LSC_TABLE_0 : RKISP1_CIF_ISP_LSC_TABLE_1; + rkisp1_write(rkisp1, RKISP1_CIF_ISP_LSC_TABLE_SEL, lsc_table_sel); } static void rkisp1_lsc_matrix_config_v12(struct rkisp1_params *params, const struct rkisp1_cif_isp_lsc_config *pconfig) { - unsigned int isp_lsc_status, sram_addr, isp_lsc_table_sel, i, j, data; + struct rkisp1_device *rkisp1 = params->rkisp1; + u32 lsc_status, sram_addr, lsc_table_sel; + unsigned int i, j; - isp_lsc_status = rkisp1_read(params->rkisp1, RKISP1_CIF_ISP_LSC_STATUS); + lsc_status = rkisp1_read(rkisp1, RKISP1_CIF_ISP_LSC_STATUS); /* RKISP1_CIF_ISP_LSC_TABLE_ADDRESS_153 = ( 17 * 18 ) >> 1 */ - sram_addr = (isp_lsc_status & RKISP1_CIF_ISP_LSC_ACTIVE_TABLE) ? - RKISP1_CIF_ISP_LSC_TABLE_ADDRESS_0 : - RKISP1_CIF_ISP_LSC_TABLE_ADDRESS_153; - rkisp1_write(params->rkisp1, RKISP1_CIF_ISP_LSC_R_TABLE_ADDR, sram_addr); - rkisp1_write(params->rkisp1, RKISP1_CIF_ISP_LSC_GR_TABLE_ADDR, sram_addr); - rkisp1_write(params->rkisp1, RKISP1_CIF_ISP_LSC_GB_TABLE_ADDR, sram_addr); - rkisp1_write(params->rkisp1, RKISP1_CIF_ISP_LSC_B_TABLE_ADDR, sram_addr); + sram_addr = lsc_status & RKISP1_CIF_ISP_LSC_ACTIVE_TABLE ? + RKISP1_CIF_ISP_LSC_TABLE_ADDRESS_0 : + RKISP1_CIF_ISP_LSC_TABLE_ADDRESS_153; + rkisp1_write(rkisp1, RKISP1_CIF_ISP_LSC_R_TABLE_ADDR, sram_addr); + rkisp1_write(rkisp1, RKISP1_CIF_ISP_LSC_GR_TABLE_ADDR, sram_addr); + rkisp1_write(rkisp1, RKISP1_CIF_ISP_LSC_GB_TABLE_ADDR, sram_addr); + rkisp1_write(rkisp1, RKISP1_CIF_ISP_LSC_B_TABLE_ADDR, sram_addr); /* program data tables (table size is 9 * 17 = 153) */ for (i = 0; i < RKISP1_CIF_ISP_LSC_SAMPLES_MAX; i++) { + const __u16 *r_tbl = pconfig->r_data_tbl[i]; + const __u16 *gr_tbl = pconfig->gr_data_tbl[i]; + const __u16 *gb_tbl = pconfig->gb_data_tbl[i]; + const __u16 *b_tbl = pconfig->b_data_tbl[i]; + /* * 17 sectors with 2 values in one DWORD = 9 * DWORDs (2nd value of last DWORD unused) */ for (j = 0; j < RKISP1_CIF_ISP_LSC_SAMPLES_MAX - 1; j += 2) { - data = RKISP1_CIF_ISP_LSC_TABLE_DATA_V12( - pconfig->r_data_tbl[i][j], - pconfig->r_data_tbl[i][j + 1]); - rkisp1_write(params->rkisp1, - RKISP1_CIF_ISP_LSC_R_TABLE_DATA, data); - - data = RKISP1_CIF_ISP_LSC_TABLE_DATA_V12( - pconfig->gr_data_tbl[i][j], - pconfig->gr_data_tbl[i][j + 1]); - rkisp1_write(params->rkisp1, - RKISP1_CIF_ISP_LSC_GR_TABLE_DATA, data); - - data = RKISP1_CIF_ISP_LSC_TABLE_DATA_V12( - pconfig->gb_data_tbl[i][j], - pconfig->gb_data_tbl[i][j + 1]); - rkisp1_write(params->rkisp1, - RKISP1_CIF_ISP_LSC_GB_TABLE_DATA, data); - - data = RKISP1_CIF_ISP_LSC_TABLE_DATA_V12( - pconfig->b_data_tbl[i][j], - pconfig->b_data_tbl[i][j + 1]); - rkisp1_write(params->rkisp1, - RKISP1_CIF_ISP_LSC_B_TABLE_DATA, data); + rkisp1_write(rkisp1, RKISP1_CIF_ISP_LSC_R_TABLE_DATA, + RKISP1_CIF_ISP_LSC_TABLE_DATA_V12( + r_tbl[j], r_tbl[j + 1])); + rkisp1_write(rkisp1, RKISP1_CIF_ISP_LSC_GR_TABLE_DATA, + RKISP1_CIF_ISP_LSC_TABLE_DATA_V12( + gr_tbl[j], gr_tbl[j + 1])); + rkisp1_write(rkisp1, RKISP1_CIF_ISP_LSC_GB_TABLE_DATA, + RKISP1_CIF_ISP_LSC_TABLE_DATA_V12( + gb_tbl[j], gb_tbl[j + 1])); + rkisp1_write(rkisp1, RKISP1_CIF_ISP_LSC_B_TABLE_DATA, + RKISP1_CIF_ISP_LSC_TABLE_DATA_V12( + b_tbl[j], b_tbl[j + 1])); } - data = RKISP1_CIF_ISP_LSC_TABLE_DATA_V12(pconfig->r_data_tbl[i][j], 0); - rkisp1_write(params->rkisp1, RKISP1_CIF_ISP_LSC_R_TABLE_DATA, - data); - - data = RKISP1_CIF_ISP_LSC_TABLE_DATA_V12(pconfig->gr_data_tbl[i][j], 0); - rkisp1_write(params->rkisp1, RKISP1_CIF_ISP_LSC_GR_TABLE_DATA, - data); - - data = RKISP1_CIF_ISP_LSC_TABLE_DATA_V12(pconfig->gb_data_tbl[i][j], 0); - rkisp1_write(params->rkisp1, RKISP1_CIF_ISP_LSC_GB_TABLE_DATA, - data); - - data = RKISP1_CIF_ISP_LSC_TABLE_DATA_V12(pconfig->b_data_tbl[i][j], 0); - rkisp1_write(params->rkisp1, RKISP1_CIF_ISP_LSC_B_TABLE_DATA, - data); + rkisp1_write(rkisp1, RKISP1_CIF_ISP_LSC_R_TABLE_DATA, + RKISP1_CIF_ISP_LSC_TABLE_DATA_V12(r_tbl[j], 0)); + rkisp1_write(rkisp1, RKISP1_CIF_ISP_LSC_GR_TABLE_DATA, + RKISP1_CIF_ISP_LSC_TABLE_DATA_V12(gr_tbl[j], 0)); + rkisp1_write(rkisp1, RKISP1_CIF_ISP_LSC_GB_TABLE_DATA, + RKISP1_CIF_ISP_LSC_TABLE_DATA_V12(gb_tbl[j], 0)); + rkisp1_write(rkisp1, RKISP1_CIF_ISP_LSC_B_TABLE_DATA, + RKISP1_CIF_ISP_LSC_TABLE_DATA_V12(b_tbl[j], 0)); } - isp_lsc_table_sel = (isp_lsc_status & RKISP1_CIF_ISP_LSC_ACTIVE_TABLE) ? - RKISP1_CIF_ISP_LSC_TABLE_0 : - RKISP1_CIF_ISP_LSC_TABLE_1; - rkisp1_write(params->rkisp1, RKISP1_CIF_ISP_LSC_TABLE_SEL, - isp_lsc_table_sel); + + lsc_table_sel = lsc_status & RKISP1_CIF_ISP_LSC_ACTIVE_TABLE ? + RKISP1_CIF_ISP_LSC_TABLE_0 : RKISP1_CIF_ISP_LSC_TABLE_1; + rkisp1_write(rkisp1, RKISP1_CIF_ISP_LSC_TABLE_SEL, lsc_table_sel); } static void rkisp1_lsc_config(struct rkisp1_params *params, const struct rkisp1_cif_isp_lsc_config *arg) { - unsigned int i, data; - u32 lsc_ctrl; + struct rkisp1_device *rkisp1 = params->rkisp1; + u32 lsc_ctrl, data; + unsigned int i; /* To config must be off , store the current status firstly */ - lsc_ctrl = rkisp1_read(params->rkisp1, RKISP1_CIF_ISP_LSC_CTRL); + lsc_ctrl = rkisp1_read(rkisp1, RKISP1_CIF_ISP_LSC_CTRL); rkisp1_param_clear_bits(params, RKISP1_CIF_ISP_LSC_CTRL, RKISP1_CIF_ISP_LSC_CTRL_ENA); params->ops->lsc_matrix_config(params, arg); @@ -339,38 +331,31 @@ static void rkisp1_lsc_config(struct rkisp1_params *params, /* program x size tables */ data = RKISP1_CIF_ISP_LSC_SECT_SIZE(arg->x_size_tbl[i * 2], arg->x_size_tbl[i * 2 + 1]); - rkisp1_write(params->rkisp1, - RKISP1_CIF_ISP_LSC_XSIZE_01 + i * 4, data); + rkisp1_write(rkisp1, RKISP1_CIF_ISP_LSC_XSIZE(i), data); /* program x grad tables */ - data = RKISP1_CIF_ISP_LSC_SECT_SIZE(arg->x_grad_tbl[i * 2], + data = RKISP1_CIF_ISP_LSC_SECT_GRAD(arg->x_grad_tbl[i * 2], arg->x_grad_tbl[i * 2 + 1]); - rkisp1_write(params->rkisp1, - RKISP1_CIF_ISP_LSC_XGRAD_01 + i * 4, data); + rkisp1_write(rkisp1, RKISP1_CIF_ISP_LSC_XGRAD(i), data); /* program y size tables */ data = RKISP1_CIF_ISP_LSC_SECT_SIZE(arg->y_size_tbl[i * 2], arg->y_size_tbl[i * 2 + 1]); - rkisp1_write(params->rkisp1, - RKISP1_CIF_ISP_LSC_YSIZE_01 + i * 4, data); + rkisp1_write(rkisp1, RKISP1_CIF_ISP_LSC_YSIZE(i), data); /* program y grad tables */ - data = RKISP1_CIF_ISP_LSC_SECT_SIZE(arg->y_grad_tbl[i * 2], + data = RKISP1_CIF_ISP_LSC_SECT_GRAD(arg->y_grad_tbl[i * 2], arg->y_grad_tbl[i * 2 + 1]); - rkisp1_write(params->rkisp1, - RKISP1_CIF_ISP_LSC_YGRAD_01 + i * 4, data); + rkisp1_write(rkisp1, RKISP1_CIF_ISP_LSC_YGRAD(i), data); } /* restore the lsc ctrl status */ - if (lsc_ctrl & RKISP1_CIF_ISP_LSC_CTRL_ENA) { - rkisp1_param_set_bits(params, - RKISP1_CIF_ISP_LSC_CTRL, + if (lsc_ctrl & RKISP1_CIF_ISP_LSC_CTRL_ENA) + rkisp1_param_set_bits(params, RKISP1_CIF_ISP_LSC_CTRL, RKISP1_CIF_ISP_LSC_CTRL_ENA); - } else { - rkisp1_param_clear_bits(params, - RKISP1_CIF_ISP_LSC_CTRL, + else + rkisp1_param_clear_bits(params, RKISP1_CIF_ISP_LSC_CTRL, RKISP1_CIF_ISP_LSC_CTRL_ENA); - } } /* ISP Filtering function */ @@ -1066,39 +1051,96 @@ static void rkisp1_ie_enable(struct rkisp1_params *params, bool en) } } -static void rkisp1_csm_config(struct rkisp1_params *params, bool full_range) +static void rkisp1_csm_config(struct rkisp1_params *params) { - static const u16 full_range_coeff[] = { - 0x0026, 0x004b, 0x000f, - 0x01ea, 0x01d6, 0x0040, - 0x0040, 0x01ca, 0x01f6 + struct csm_coeffs { + u16 limited[9]; + u16 full[9]; + }; + static const struct csm_coeffs rec601_coeffs = { + .limited = { + 0x0021, 0x0042, 0x000d, + 0x01ed, 0x01db, 0x0038, + 0x0038, 0x01d1, 0x01f7, + }, + .full = { + 0x0026, 0x004b, 0x000f, + 0x01ea, 0x01d6, 0x0040, + 0x0040, 0x01ca, 0x01f6, + }, }; - static const u16 limited_range_coeff[] = { - 0x0021, 0x0040, 0x000d, - 0x01ed, 0x01db, 0x0038, - 0x0038, 0x01d1, 0x01f7, + static const struct csm_coeffs rec709_coeffs = { + .limited = { + 0x0018, 0x0050, 0x0008, + 0x01f3, 0x01d5, 0x0038, + 0x0038, 0x01cd, 0x01fb, + }, + .full = { + 0x001b, 0x005c, 0x0009, + 0x01f1, 0x01cf, 0x0040, + 0x0040, 0x01c6, 0x01fa, + }, }; + static const struct csm_coeffs rec2020_coeffs = { + .limited = { + 0x001d, 0x004c, 0x0007, + 0x01f0, 0x01d8, 0x0038, + 0x0038, 0x01cd, 0x01fb, + }, + .full = { + 0x0022, 0x0057, 0x0008, + 0x01ee, 0x01d2, 0x0040, + 0x0040, 0x01c5, 0x01fb, + }, + }; + static const struct csm_coeffs smpte240m_coeffs = { + .limited = { + 0x0018, 0x004f, 0x000a, + 0x01f3, 0x01d5, 0x0038, + 0x0038, 0x01ce, 0x01fa, + }, + .full = { + 0x001b, 0x005a, 0x000b, + 0x01f1, 0x01cf, 0x0040, + 0x0040, 0x01c7, 0x01f9, + }, + }; + + const struct csm_coeffs *coeffs; + const u16 *csm; unsigned int i; - if (full_range) { - for (i = 0; i < ARRAY_SIZE(full_range_coeff); i++) - rkisp1_write(params->rkisp1, - RKISP1_CIF_ISP_CC_COEFF_0 + i * 4, - full_range_coeff[i]); + switch (params->ycbcr_encoding) { + case V4L2_YCBCR_ENC_601: + default: + coeffs = &rec601_coeffs; + break; + case V4L2_YCBCR_ENC_709: + coeffs = &rec709_coeffs; + break; + case V4L2_YCBCR_ENC_BT2020: + coeffs = &rec2020_coeffs; + break; + case V4L2_YCBCR_ENC_SMPTE240M: + coeffs = &smpte240m_coeffs; + break; + } + if (params->quantization == V4L2_QUANTIZATION_FULL_RANGE) { + csm = coeffs->full; rkisp1_param_set_bits(params, RKISP1_CIF_ISP_CTRL, RKISP1_CIF_ISP_CTRL_ISP_CSM_Y_FULL_ENA | RKISP1_CIF_ISP_CTRL_ISP_CSM_C_FULL_ENA); } else { - for (i = 0; i < ARRAY_SIZE(limited_range_coeff); i++) - rkisp1_write(params->rkisp1, - RKISP1_CIF_ISP_CC_COEFF_0 + i * 4, - limited_range_coeff[i]); - + csm = coeffs->limited; rkisp1_param_clear_bits(params, RKISP1_CIF_ISP_CTRL, RKISP1_CIF_ISP_CTRL_ISP_CSM_Y_FULL_ENA | RKISP1_CIF_ISP_CTRL_ISP_CSM_C_FULL_ENA); } + + for (i = 0; i < 9; i++) + rkisp1_write(params->rkisp1, RKISP1_CIF_ISP_CC_COEFF_0 + i * 4, + csm[i]); } /* ISP De-noise Pre-Filter(DPF) function */ @@ -1216,11 +1258,11 @@ rkisp1_isp_isr_other_config(struct rkisp1_params *params, if (module_ens & RKISP1_CIF_ISP_MODULE_DPCC) rkisp1_param_set_bits(params, RKISP1_CIF_ISP_DPCC_MODE, - RKISP1_CIF_ISP_DPCC_ENA); + RKISP1_CIF_ISP_DPCC_MODE_DPCC_ENABLE); else rkisp1_param_clear_bits(params, RKISP1_CIF_ISP_DPCC_MODE, - RKISP1_CIF_ISP_DPCC_ENA); + RKISP1_CIF_ISP_DPCC_MODE_DPCC_ENABLE); } /* update bls config */ @@ -1255,22 +1297,6 @@ rkisp1_isp_isr_other_config(struct rkisp1_params *params, RKISP1_CIF_ISP_CTRL_ISP_GAMMA_IN_ENA); } - /* update lsc config */ - if (module_cfg_update & RKISP1_CIF_ISP_MODULE_LSC) - rkisp1_lsc_config(params, - &new_params->others.lsc_config); - - if (module_en_update & RKISP1_CIF_ISP_MODULE_LSC) { - if (module_ens & RKISP1_CIF_ISP_MODULE_LSC) - rkisp1_param_set_bits(params, - RKISP1_CIF_ISP_LSC_CTRL, - RKISP1_CIF_ISP_LSC_CTRL_ENA); - else - rkisp1_param_clear_bits(params, - RKISP1_CIF_ISP_LSC_CTRL, - RKISP1_CIF_ISP_LSC_CTRL_ENA); - } - /* update awb gains */ if (module_cfg_update & RKISP1_CIF_ISP_MODULE_AWB_GAIN) params->ops->awb_gain_config(params, &new_params->others.awb_gain_config); @@ -1387,6 +1413,33 @@ rkisp1_isp_isr_other_config(struct rkisp1_params *params, } } +static void +rkisp1_isp_isr_lsc_config(struct rkisp1_params *params, + const struct rkisp1_params_cfg *new_params) +{ + unsigned int module_en_update, module_cfg_update, module_ens; + + module_en_update = new_params->module_en_update; + module_cfg_update = new_params->module_cfg_update; + module_ens = new_params->module_ens; + + /* update lsc config */ + if (module_cfg_update & RKISP1_CIF_ISP_MODULE_LSC) + rkisp1_lsc_config(params, + &new_params->others.lsc_config); + + if (module_en_update & RKISP1_CIF_ISP_MODULE_LSC) { + if (module_ens & RKISP1_CIF_ISP_MODULE_LSC) + rkisp1_param_set_bits(params, + RKISP1_CIF_ISP_LSC_CTRL, + RKISP1_CIF_ISP_LSC_CTRL_ENA); + else + rkisp1_param_clear_bits(params, + RKISP1_CIF_ISP_LSC_CTRL, + RKISP1_CIF_ISP_LSC_CTRL_ENA); + } +} + static void rkisp1_isp_isr_meas_config(struct rkisp1_params *params, struct rkisp1_params_cfg *new_params) { @@ -1448,47 +1501,60 @@ static void rkisp1_isp_isr_meas_config(struct rkisp1_params *params, } } -static void rkisp1_params_apply_params_cfg(struct rkisp1_params *params, - unsigned int frame_sequence) +static bool rkisp1_params_get_buffer(struct rkisp1_params *params, + struct rkisp1_buffer **buf, + struct rkisp1_params_cfg **cfg) { - struct rkisp1_params_cfg *new_params; - struct rkisp1_buffer *cur_buf = NULL; - if (list_empty(¶ms->params)) - return; - - cur_buf = list_first_entry(¶ms->params, - struct rkisp1_buffer, queue); + return false; - new_params = (struct rkisp1_params_cfg *)vb2_plane_vaddr(&cur_buf->vb.vb2_buf, 0); + *buf = list_first_entry(¶ms->params, struct rkisp1_buffer, queue); + *cfg = vb2_plane_vaddr(&(*buf)->vb.vb2_buf, 0); - rkisp1_isp_isr_other_config(params, new_params); - rkisp1_isp_isr_meas_config(params, new_params); - - /* update shadow register immediately */ - rkisp1_param_set_bits(params, RKISP1_CIF_ISP_CTRL, RKISP1_CIF_ISP_CTRL_ISP_CFG_UPD); + return true; +} - list_del(&cur_buf->queue); +static void rkisp1_params_complete_buffer(struct rkisp1_params *params, + struct rkisp1_buffer *buf, + unsigned int frame_sequence) +{ + list_del(&buf->queue); - cur_buf->vb.sequence = frame_sequence; - vb2_buffer_done(&cur_buf->vb.vb2_buf, VB2_BUF_STATE_DONE); + buf->vb.sequence = frame_sequence; + vb2_buffer_done(&buf->vb.vb2_buf, VB2_BUF_STATE_DONE); } void rkisp1_params_isr(struct rkisp1_device *rkisp1) { - /* - * This isr is called when the ISR finishes processing a frame (RKISP1_CIF_ISP_FRAME). - * Configurations performed here will be applied on the next frame. - * Since frame_sequence is updated on the vertical sync signal, we should use - * frame_sequence + 1 here to indicate to userspace on which frame these parameters - * are being applied. - */ - unsigned int frame_sequence = rkisp1->isp.frame_sequence + 1; struct rkisp1_params *params = &rkisp1->params; + struct rkisp1_params_cfg *new_params; + struct rkisp1_buffer *cur_buf; spin_lock(¶ms->config_lock); - rkisp1_params_apply_params_cfg(params, frame_sequence); + if (!rkisp1_params_get_buffer(params, &cur_buf, &new_params)) + goto unlock; + + rkisp1_isp_isr_other_config(params, new_params); + rkisp1_isp_isr_lsc_config(params, new_params); + rkisp1_isp_isr_meas_config(params, new_params); + + /* update shadow register immediately */ + rkisp1_param_set_bits(params, RKISP1_CIF_ISP_CTRL, + RKISP1_CIF_ISP_CTRL_ISP_CFG_UPD); + + /* + * This isr is called when the ISR finishes processing a frame + * (RKISP1_CIF_ISP_FRAME). Configurations performed here will be + * applied on the next frame. Since frame_sequence is updated on the + * vertical sync signal, we should use frame_sequence + 1 here to + * indicate to userspace on which frame these parameters are being + * applied. + */ + rkisp1_params_complete_buffer(params, cur_buf, + rkisp1->isp.frame_sequence + 1); + +unlock: spin_unlock(¶ms->config_lock); } @@ -1531,9 +1597,18 @@ static const struct rkisp1_cif_isp_afc_config rkisp1_afc_params_default_config = 14 }; -static void rkisp1_params_config_parameter(struct rkisp1_params *params) +void rkisp1_params_pre_configure(struct rkisp1_params *params, + enum rkisp1_fmt_raw_pat_type bayer_pat, + enum v4l2_quantization quantization, + enum v4l2_ycbcr_encoding ycbcr_encoding) { struct rkisp1_cif_isp_hst_config hst = rkisp1_hst_params_default_config; + struct rkisp1_params_cfg *new_params; + struct rkisp1_buffer *cur_buf; + + params->quantization = quantization; + params->ycbcr_encoding = ycbcr_encoding; + params->raw_type = bayer_pat; params->ops->awb_meas_config(params, &rkisp1_awb_params_default_config); params->ops->awb_meas_enable(params, &rkisp1_awb_params_default_config, @@ -1552,27 +1627,55 @@ static void rkisp1_params_config_parameter(struct rkisp1_params *params) rkisp1_param_set_bits(params, RKISP1_CIF_ISP_HIST_PROP_V10, rkisp1_hst_params_default_config.mode); - /* set the range */ - if (params->quantization == V4L2_QUANTIZATION_FULL_RANGE) - rkisp1_csm_config(params, true); - else - rkisp1_csm_config(params, false); + rkisp1_csm_config(params); spin_lock_irq(¶ms->config_lock); /* apply the first buffer if there is one already */ - rkisp1_params_apply_params_cfg(params, 0); + if (!rkisp1_params_get_buffer(params, &cur_buf, &new_params)) + goto unlock; + + rkisp1_isp_isr_other_config(params, new_params); + rkisp1_isp_isr_meas_config(params, new_params); + + /* update shadow register immediately */ + rkisp1_param_set_bits(params, RKISP1_CIF_ISP_CTRL, + RKISP1_CIF_ISP_CTRL_ISP_CFG_UPD); + +unlock: spin_unlock_irq(¶ms->config_lock); } -void rkisp1_params_configure(struct rkisp1_params *params, - enum rkisp1_fmt_raw_pat_type bayer_pat, - enum v4l2_quantization quantization) +void rkisp1_params_post_configure(struct rkisp1_params *params) { - params->quantization = quantization; - params->raw_type = bayer_pat; - rkisp1_params_config_parameter(params); + struct rkisp1_params_cfg *new_params; + struct rkisp1_buffer *cur_buf; + + spin_lock_irq(¶ms->config_lock); + + /* + * Apply LSC parameters from the first buffer (if any is already + * available. This must be done after the ISP gets started in the + * ISP8000Nano v18.02 (found in the i.MX8MP) as access to the LSC RAM + * is gated by the ISP_CTRL.ISP_ENABLE bit. As this initialization + * ordering doesn't affect other ISP versions negatively, do so + * unconditionally. + */ + + if (!rkisp1_params_get_buffer(params, &cur_buf, &new_params)) + goto unlock; + + rkisp1_isp_isr_lsc_config(params, new_params); + + /* update shadow register immediately */ + rkisp1_param_set_bits(params, RKISP1_CIF_ISP_CTRL, + RKISP1_CIF_ISP_CTRL_ISP_CFG_UPD); + + rkisp1_params_complete_buffer(params, cur_buf, 0); + +unlock: + spin_unlock_irq(¶ms->config_lock); } /* @@ -1582,7 +1685,7 @@ void rkisp1_params_configure(struct rkisp1_params *params, void rkisp1_params_disable(struct rkisp1_params *params) { rkisp1_param_clear_bits(params, RKISP1_CIF_ISP_DPCC_MODE, - RKISP1_CIF_ISP_DPCC_ENA); + RKISP1_CIF_ISP_DPCC_MODE_DPCC_ENABLE); rkisp1_param_clear_bits(params, RKISP1_CIF_ISP_LSC_CTRL, RKISP1_CIF_ISP_LSC_CTRL_ENA); rkisp1_param_clear_bits(params, RKISP1_CIF_ISP_BLS_CTRL, diff --git a/drivers/media/platform/rockchip/rkisp1/rkisp1-regs.h b/drivers/media/platform/rockchip/rkisp1/rkisp1-regs.h index dd3e6c38be67..421cc73355db 100644 --- a/drivers/media/platform/rockchip/rkisp1/rkisp1-regs.h +++ b/drivers/media/platform/rockchip/rkisp1/rkisp1-regs.h @@ -576,7 +576,7 @@ (((v0) & 0x1FFF) | (((v1) & 0x1FFF) << 13)) #define RKISP1_CIF_ISP_LSC_SECT_SIZE(v0, v1) \ (((v0) & 0xFFF) | (((v1) & 0xFFF) << 16)) -#define RKISP1_CIF_ISP_LSC_GRAD_SIZE(v0, v1) \ +#define RKISP1_CIF_ISP_LSC_SECT_GRAD(v0, v1) \ (((v0) & 0xFFF) | (((v1) & 0xFFF) << 16)) /* LSC: ISP_LSC_TABLE_SEL */ @@ -618,19 +618,18 @@ #define RKISP1_CIF_ISP_CTRL_ISP_GAMMA_OUT_ENA_READ(x) (((x) >> 11) & 1) /* DPCC */ -/* ISP_DPCC_MODE */ -#define RKISP1_CIF_ISP_DPCC_ENA BIT(0) -#define RKISP1_CIF_ISP_DPCC_MODE_MAX 0x07 -#define RKISP1_CIF_ISP_DPCC_OUTPUTMODE_MAX 0x0F -#define RKISP1_CIF_ISP_DPCC_SETUSE_MAX 0x0F -#define RKISP1_CIF_ISP_DPCC_METHODS_SET_RESERVED 0xFFFFE000 -#define RKISP1_CIF_ISP_DPCC_LINE_THRESH_RESERVED 0xFFFF0000 -#define RKISP1_CIF_ISP_DPCC_LINE_MAD_FAC_RESERVED 0xFFFFC0C0 -#define RKISP1_CIF_ISP_DPCC_PG_FAC_RESERVED 0xFFFFC0C0 -#define RKISP1_CIF_ISP_DPCC_RND_THRESH_RESERVED 0xFFFF0000 -#define RKISP1_CIF_ISP_DPCC_RG_FAC_RESERVED 0xFFFFC0C0 -#define RKISP1_CIF_ISP_DPCC_RO_LIMIT_RESERVED 0xFFFFF000 -#define RKISP1_CIF_ISP_DPCC_RND_OFFS_RESERVED 0xFFFFF000 +#define RKISP1_CIF_ISP_DPCC_MODE_DPCC_ENABLE BIT(0) +#define RKISP1_CIF_ISP_DPCC_MODE_GRAYSCALE_MODE BIT(1) +#define RKISP1_CIF_ISP_DPCC_OUTPUT_MODE_MASK GENMASK(3, 0) +#define RKISP1_CIF_ISP_DPCC_SET_USE_MASK GENMASK(3, 0) +#define RKISP1_CIF_ISP_DPCC_METHODS_SET_MASK 0x00001f1f +#define RKISP1_CIF_ISP_DPCC_LINE_THRESH_MASK 0x0000ffff +#define RKISP1_CIF_ISP_DPCC_LINE_MAD_FAC_MASK 0x00003f3f +#define RKISP1_CIF_ISP_DPCC_PG_FAC_MASK 0x00003f3f +#define RKISP1_CIF_ISP_DPCC_RND_THRESH_MASK 0x0000ffff +#define RKISP1_CIF_ISP_DPCC_RG_FAC_MASK 0x00003f3f +#define RKISP1_CIF_ISP_DPCC_RO_LIMIT_MASK 0x00000fff +#define RKISP1_CIF_ISP_DPCC_RND_OFFS_MASK 0x00000fff /* BLS */ /* ISP_BLS_CTRL */ @@ -1073,22 +1072,10 @@ #define RKISP1_CIF_ISP_LSC_GR_TABLE_DATA (RKISP1_CIF_ISP_LSC_BASE + 0x00000018) #define RKISP1_CIF_ISP_LSC_B_TABLE_DATA (RKISP1_CIF_ISP_LSC_BASE + 0x0000001C) #define RKISP1_CIF_ISP_LSC_GB_TABLE_DATA (RKISP1_CIF_ISP_LSC_BASE + 0x00000020) -#define RKISP1_CIF_ISP_LSC_XGRAD_01 (RKISP1_CIF_ISP_LSC_BASE + 0x00000024) -#define RKISP1_CIF_ISP_LSC_XGRAD_23 (RKISP1_CIF_ISP_LSC_BASE + 0x00000028) -#define RKISP1_CIF_ISP_LSC_XGRAD_45 (RKISP1_CIF_ISP_LSC_BASE + 0x0000002C) -#define RKISP1_CIF_ISP_LSC_XGRAD_67 (RKISP1_CIF_ISP_LSC_BASE + 0x00000030) -#define RKISP1_CIF_ISP_LSC_YGRAD_01 (RKISP1_CIF_ISP_LSC_BASE + 0x00000034) -#define RKISP1_CIF_ISP_LSC_YGRAD_23 (RKISP1_CIF_ISP_LSC_BASE + 0x00000038) -#define RKISP1_CIF_ISP_LSC_YGRAD_45 (RKISP1_CIF_ISP_LSC_BASE + 0x0000003C) -#define RKISP1_CIF_ISP_LSC_YGRAD_67 (RKISP1_CIF_ISP_LSC_BASE + 0x00000040) -#define RKISP1_CIF_ISP_LSC_XSIZE_01 (RKISP1_CIF_ISP_LSC_BASE + 0x00000044) -#define RKISP1_CIF_ISP_LSC_XSIZE_23 (RKISP1_CIF_ISP_LSC_BASE + 0x00000048) -#define RKISP1_CIF_ISP_LSC_XSIZE_45 (RKISP1_CIF_ISP_LSC_BASE + 0x0000004C) -#define RKISP1_CIF_ISP_LSC_XSIZE_67 (RKISP1_CIF_ISP_LSC_BASE + 0x00000050) -#define RKISP1_CIF_ISP_LSC_YSIZE_01 (RKISP1_CIF_ISP_LSC_BASE + 0x00000054) -#define RKISP1_CIF_ISP_LSC_YSIZE_23 (RKISP1_CIF_ISP_LSC_BASE + 0x00000058) -#define RKISP1_CIF_ISP_LSC_YSIZE_45 (RKISP1_CIF_ISP_LSC_BASE + 0x0000005C) -#define RKISP1_CIF_ISP_LSC_YSIZE_67 (RKISP1_CIF_ISP_LSC_BASE + 0x00000060) +#define RKISP1_CIF_ISP_LSC_XGRAD(n) (RKISP1_CIF_ISP_LSC_BASE + 0x00000024 + (n) * 4) +#define RKISP1_CIF_ISP_LSC_YGRAD(n) (RKISP1_CIF_ISP_LSC_BASE + 0x00000034 + (n) * 4) +#define RKISP1_CIF_ISP_LSC_XSIZE(n) (RKISP1_CIF_ISP_LSC_BASE + 0x00000044 + (n) * 4) +#define RKISP1_CIF_ISP_LSC_YSIZE(n) (RKISP1_CIF_ISP_LSC_BASE + 0x00000054 + (n) * 4) #define RKISP1_CIF_ISP_LSC_TABLE_SEL (RKISP1_CIF_ISP_LSC_BASE + 0x00000064) #define RKISP1_CIF_ISP_LSC_STATUS (RKISP1_CIF_ISP_LSC_BASE + 0x00000068) diff --git a/drivers/media/platform/rockchip/rkisp1/rkisp1-resizer.c b/drivers/media/platform/rockchip/rkisp1/rkisp1-resizer.c index f4caa8f684aa..f76afd8112b2 100644 --- a/drivers/media/platform/rockchip/rkisp1/rkisp1-resizer.c +++ b/drivers/media/platform/rockchip/rkisp1/rkisp1-resizer.c @@ -411,6 +411,10 @@ static int rkisp1_rsz_init_config(struct v4l2_subdev *sd, sink_fmt->height = RKISP1_DEFAULT_HEIGHT; sink_fmt->field = V4L2_FIELD_NONE; sink_fmt->code = RKISP1_DEF_FMT; + sink_fmt->colorspace = V4L2_COLORSPACE_SRGB; + sink_fmt->xfer_func = V4L2_XFER_FUNC_SRGB; + sink_fmt->ycbcr_enc = V4L2_YCBCR_ENC_601; + sink_fmt->quantization = V4L2_QUANTIZATION_LIM_RANGE; sink_crop = v4l2_subdev_get_try_crop(sd, sd_state, RKISP1_RSZ_PAD_SINK); @@ -503,6 +507,7 @@ static void rkisp1_rsz_set_sink_fmt(struct rkisp1_resizer *rsz, const struct rkisp1_mbus_info *mbus_info; struct v4l2_mbus_framefmt *sink_fmt, *src_fmt; struct v4l2_rect *sink_crop; + bool is_yuv; sink_fmt = rkisp1_rsz_get_pad_fmt(rsz, sd_state, RKISP1_RSZ_PAD_SINK, which); @@ -524,9 +529,6 @@ static void rkisp1_rsz_set_sink_fmt(struct rkisp1_resizer *rsz, if (which == V4L2_SUBDEV_FORMAT_ACTIVE) rsz->pixel_enc = mbus_info->pixel_enc; - /* Propagete to source pad */ - src_fmt->code = sink_fmt->code; - sink_fmt->width = clamp_t(u32, format->width, RKISP1_ISP_MIN_WIDTH, RKISP1_ISP_MAX_WIDTH); @@ -534,8 +536,45 @@ static void rkisp1_rsz_set_sink_fmt(struct rkisp1_resizer *rsz, RKISP1_ISP_MIN_HEIGHT, RKISP1_ISP_MAX_HEIGHT); + /* + * Adjust the color space fields. Accept any color primaries and + * transfer function for both YUV and Bayer. For YUV any YCbCr encoding + * and quantization range is also accepted. For Bayer formats, the YCbCr + * encoding isn't applicable, and the quantization range can only be + * full. + */ + is_yuv = mbus_info->pixel_enc == V4L2_PIXEL_ENC_YUV; + + sink_fmt->colorspace = format->colorspace ? : + (is_yuv ? V4L2_COLORSPACE_SRGB : + V4L2_COLORSPACE_RAW); + sink_fmt->xfer_func = format->xfer_func ? : + V4L2_MAP_XFER_FUNC_DEFAULT(sink_fmt->colorspace); + if (is_yuv) { + sink_fmt->ycbcr_enc = format->ycbcr_enc ? : + V4L2_MAP_YCBCR_ENC_DEFAULT(sink_fmt->colorspace); + sink_fmt->quantization = format->quantization ? : + V4L2_MAP_QUANTIZATION_DEFAULT(false, sink_fmt->colorspace, + sink_fmt->ycbcr_enc); + } else { + /* + * The YCbCr encoding isn't applicable for non-YUV formats, but + * V4L2 has no "no encoding" value. Hardcode it to Rec. 601, it + * should be ignored by userspace. + */ + sink_fmt->ycbcr_enc = V4L2_YCBCR_ENC_601; + sink_fmt->quantization = V4L2_QUANTIZATION_FULL_RANGE; + } + *format = *sink_fmt; + /* Propagate the media bus code and color space to the source pad. */ + src_fmt->code = sink_fmt->code; + src_fmt->colorspace = sink_fmt->colorspace; + src_fmt->xfer_func = sink_fmt->xfer_func; + src_fmt->ycbcr_enc = sink_fmt->ycbcr_enc; + src_fmt->quantization = sink_fmt->quantization; + /* Update sink crop */ rkisp1_rsz_set_sink_crop(rsz, sd_state, sink_crop, which); } |