drm: rcar-du: Hardcode encoders types to DRM_MODE_ENCODER_NONE
Unlike the connector type, the encoder type is unused by userspace. As it is equally unused in the driver, except in a single location where the connector type can be used instead, hardcode it to DRM_MODE_ENCODER_NONE. This allow removing all code that tries to determine (unsuccessfully in case a bridge is used) the encoder type. Signed-off-by: Laurent Pinchart <laurent.pinchart+renesas@ideasonboard.com>
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@ -44,12 +44,10 @@ static const struct rcar_du_device_info rcar_du_r8a7779_info = {
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*/
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[RCAR_DU_OUTPUT_DPAD0] = {
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.possible_crtcs = BIT(0),
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.encoder_type = DRM_MODE_ENCODER_NONE,
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.port = 0,
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},
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[RCAR_DU_OUTPUT_DPAD1] = {
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.possible_crtcs = BIT(1) | BIT(0),
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.encoder_type = DRM_MODE_ENCODER_NONE,
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.port = 1,
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},
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},
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@ -68,17 +66,14 @@ static const struct rcar_du_device_info rcar_du_r8a7790_info = {
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*/
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[RCAR_DU_OUTPUT_DPAD0] = {
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.possible_crtcs = BIT(2) | BIT(1) | BIT(0),
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.encoder_type = DRM_MODE_ENCODER_NONE,
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.port = 0,
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},
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[RCAR_DU_OUTPUT_LVDS0] = {
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.possible_crtcs = BIT(0),
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.encoder_type = DRM_MODE_ENCODER_LVDS,
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.port = 1,
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},
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[RCAR_DU_OUTPUT_LVDS1] = {
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.possible_crtcs = BIT(2) | BIT(1),
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.encoder_type = DRM_MODE_ENCODER_LVDS,
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.port = 2,
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},
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},
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@ -97,12 +92,10 @@ static const struct rcar_du_device_info rcar_du_r8a7791_info = {
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*/
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[RCAR_DU_OUTPUT_DPAD0] = {
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.possible_crtcs = BIT(1) | BIT(0),
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.encoder_type = DRM_MODE_ENCODER_NONE,
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.port = 0,
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},
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[RCAR_DU_OUTPUT_LVDS0] = {
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.possible_crtcs = BIT(0),
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.encoder_type = DRM_MODE_ENCODER_LVDS,
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.port = 1,
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},
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},
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@ -118,12 +111,10 @@ static const struct rcar_du_device_info rcar_du_r8a7792_info = {
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/* R8A7792 has two RGB outputs. */
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[RCAR_DU_OUTPUT_DPAD0] = {
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.possible_crtcs = BIT(0),
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.encoder_type = DRM_MODE_ENCODER_NONE,
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.port = 0,
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},
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[RCAR_DU_OUTPUT_DPAD1] = {
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.possible_crtcs = BIT(1),
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.encoder_type = DRM_MODE_ENCODER_NONE,
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.port = 1,
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},
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},
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@ -141,12 +132,10 @@ static const struct rcar_du_device_info rcar_du_r8a7794_info = {
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*/
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[RCAR_DU_OUTPUT_DPAD0] = {
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.possible_crtcs = BIT(0),
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.encoder_type = DRM_MODE_ENCODER_NONE,
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.port = 0,
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},
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[RCAR_DU_OUTPUT_DPAD1] = {
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.possible_crtcs = BIT(1),
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.encoder_type = DRM_MODE_ENCODER_NONE,
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.port = 1,
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},
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},
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@ -165,12 +154,10 @@ static const struct rcar_du_device_info rcar_du_r8a7795_info = {
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*/
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[RCAR_DU_OUTPUT_DPAD0] = {
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.possible_crtcs = BIT(3),
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.encoder_type = DRM_MODE_ENCODER_NONE,
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.port = 0,
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},
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[RCAR_DU_OUTPUT_LVDS0] = {
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.possible_crtcs = BIT(0),
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.encoder_type = DRM_MODE_ENCODER_LVDS,
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.port = 3,
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},
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},
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@ -189,12 +176,10 @@ static const struct rcar_du_device_info rcar_du_r8a7796_info = {
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*/
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[RCAR_DU_OUTPUT_DPAD0] = {
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.possible_crtcs = BIT(2),
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.encoder_type = DRM_MODE_ENCODER_NONE,
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.port = 0,
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},
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[RCAR_DU_OUTPUT_LVDS0] = {
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.possible_crtcs = BIT(0),
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.encoder_type = DRM_MODE_ENCODER_LVDS,
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.port = 2,
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},
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},
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@ -38,7 +38,6 @@ struct rcar_du_lvdsenc;
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/*
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* struct rcar_du_output_routing - Output routing specification
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* @possible_crtcs: bitmask of possible CRTCs for the output
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* @encoder_type: DRM type of the internal encoder associated with the output
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* @port: device tree port number corresponding to this output route
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*
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* The DU has 5 possible outputs (DPAD0/1, LVDS0/1, TCON). Output routing data
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@ -47,7 +46,6 @@ struct rcar_du_lvdsenc;
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*/
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struct rcar_du_output_routing {
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unsigned int possible_crtcs;
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unsigned int encoder_type;
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unsigned int port;
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};
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@ -68,7 +68,7 @@ static int rcar_du_encoder_atomic_check(struct drm_encoder *encoder,
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* Only panel-related encoder types require validation here, everything
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* else is handled by the bridge drivers.
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*/
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if (encoder->encoder_type == DRM_MODE_ENCODER_LVDS) {
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if (connector->connector_type == DRM_MODE_CONNECTOR_LVDS) {
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const struct drm_display_mode *panel_mode;
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if (list_empty(&connector->modes)) {
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@ -156,7 +156,6 @@ static const struct drm_encoder_funcs encoder_funcs = {
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};
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int rcar_du_encoder_init(struct rcar_du_device *rcdu,
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enum rcar_du_encoder_type type,
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enum rcar_du_output output,
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struct device_node *enc_node,
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struct device_node *con_node)
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@ -164,7 +163,6 @@ int rcar_du_encoder_init(struct rcar_du_device *rcdu,
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struct rcar_du_encoder *renc;
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struct drm_encoder *encoder;
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struct drm_bridge *bridge = NULL;
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unsigned int encoder_type;
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int ret;
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renc = devm_kzalloc(rcdu->dev, sizeof(*renc), GFP_KERNEL);
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@ -188,33 +186,23 @@ int rcar_du_encoder_init(struct rcar_du_device *rcdu,
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}
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if (enc_node) {
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dev_dbg(rcdu->dev, "initializing encoder %s for output %u\n",
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of_node_full_name(enc_node), output);
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/* Locate the DRM bridge from the encoder DT node. */
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bridge = of_drm_find_bridge(enc_node);
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if (!bridge) {
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ret = -EPROBE_DEFER;
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goto done;
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}
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}
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switch (type) {
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case RCAR_DU_ENCODER_VGA:
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encoder_type = DRM_MODE_ENCODER_DAC;
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break;
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case RCAR_DU_ENCODER_LVDS:
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encoder_type = DRM_MODE_ENCODER_LVDS;
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break;
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case RCAR_DU_ENCODER_HDMI:
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encoder_type = DRM_MODE_ENCODER_TMDS;
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break;
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case RCAR_DU_ENCODER_NONE:
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default:
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/* No external encoder, use the internal encoder type. */
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encoder_type = rcdu->info->routes[output].encoder_type;
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break;
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} else {
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dev_dbg(rcdu->dev,
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"initializing internal encoder for output %u\n",
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output);
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}
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ret = drm_encoder_init(rcdu->ddev, encoder, &encoder_funcs,
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encoder_type, NULL);
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DRM_MODE_ENCODER_NONE, NULL);
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if (ret < 0)
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goto done;
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@ -21,14 +21,6 @@ struct drm_panel;
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struct rcar_du_device;
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struct rcar_du_lvdsenc;
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enum rcar_du_encoder_type {
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RCAR_DU_ENCODER_UNUSED = 0,
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RCAR_DU_ENCODER_NONE,
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RCAR_DU_ENCODER_VGA,
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RCAR_DU_ENCODER_LVDS,
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RCAR_DU_ENCODER_HDMI,
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};
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struct rcar_du_encoder {
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struct drm_encoder base;
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enum rcar_du_output output;
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@ -51,7 +43,6 @@ struct rcar_du_connector {
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container_of(c, struct rcar_du_connector, connector)
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int rcar_du_encoder_init(struct rcar_du_device *rcdu,
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enum rcar_du_encoder_type type,
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enum rcar_du_output output,
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struct device_node *enc_node,
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struct device_node *con_node);
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@ -284,16 +284,6 @@ static int rcar_du_encoders_init_one(struct rcar_du_device *rcdu,
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enum rcar_du_output output,
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struct of_endpoint *ep)
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{
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static const struct {
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const char *compatible;
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enum rcar_du_encoder_type type;
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} encoders[] = {
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{ "adi,adv7123", RCAR_DU_ENCODER_VGA },
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{ "adi,adv7511w", RCAR_DU_ENCODER_HDMI },
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{ "thine,thc63lvdm83d", RCAR_DU_ENCODER_LVDS },
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};
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enum rcar_du_encoder_type enc_type = RCAR_DU_ENCODER_NONE;
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struct device_node *connector = NULL;
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struct device_node *encoder = NULL;
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struct device_node *ep_node = NULL;
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@ -340,30 +330,7 @@ static int rcar_du_encoders_init_one(struct rcar_du_device *rcdu,
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of_node_put(entity_ep_node);
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if (encoder) {
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/*
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* If an encoder has been found, get its type based on its
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* compatible string.
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*/
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unsigned int i;
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for (i = 0; i < ARRAY_SIZE(encoders); ++i) {
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if (of_device_is_compatible(encoder,
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encoders[i].compatible)) {
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enc_type = encoders[i].type;
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break;
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}
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}
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if (i == ARRAY_SIZE(encoders)) {
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dev_warn(rcdu->dev,
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"unknown encoder type for %s, skipping\n",
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encoder->full_name);
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of_node_put(encoder);
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of_node_put(connector);
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return -EINVAL;
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}
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} else {
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if (!encoder) {
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/*
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* If no encoder has been found the entity must be the
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* connector.
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@ -371,7 +338,7 @@ static int rcar_du_encoders_init_one(struct rcar_du_device *rcdu,
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connector = entity;
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}
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ret = rcar_du_encoder_init(rcdu, enc_type, output, encoder, connector);
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ret = rcar_du_encoder_init(rcdu, output, encoder, connector);
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if (ret && ret != -EPROBE_DEFER)
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dev_warn(rcdu->dev,
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"failed to initialize encoder %s on output %u (%d), skipping\n",
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