static int rk2928_hdmi_config_video(struct hdmi_video_para *vpara) { int value; struct fb_videomode *mode; hdmi_dbg(hdmi->dev, "[%s]\n", __FUNCTION__); if(vpara == NULL) { hdmi_err(hdmi->dev, "[%s] input parameter error\n", __FUNCTION__); return -1; } if(hdmi->hdcp_power_off_cb) hdmi->hdcp_power_off_cb(); // Diable video and audio output HDMIWrReg(AV_MUTE, v_AUDIO_MUTE(1) | v_VIDEO_MUTE(1)); // Input video mode is SDR RGB24bit, Data enable signal from external HDMIWrReg(VIDEO_CONTRL1, v_VIDEO_INPUT_FORMAT(VIDEO_INPUT_SDR_RGB444) | v_DE_EXTERNAL); HDMIWrReg(VIDEO_CONTRL2, v_VIDEO_INPUT_BITS(VIDEO_INPUT_8BITS) | (vpara->output_color & 0xFF)); // Set HDMI Mode HDMIWrReg(HDCP_CTRL, v_HDMI_DVI(vpara->output_mode)); // Enable or disalbe color space convert if(vpara->input_color != vpara->output_color) { value = v_SOF_DISABLE | v_CSC_ENABLE; } else value = v_SOF_DISABLE; HDMIWrReg(VIDEO_CONTRL3, value); // Set ext video #if 1 HDMIWrReg(VIDEO_TIMING_CTL, 0); mode = (struct fb_videomode *)hdmi_vic_to_videomode(vpara->vic); if(mode == NULL) { hdmi_err(hdmi->dev, "[%s] not found vic %d\n", __FUNCTION__, vpara->vic); return -ENOENT; } hdmi->tmdsclk = mode->pixclock; #else value = v_EXTERANL_VIDEO(1) | v_INETLACE(mode->vmode); if(mode->sync & FB_SYNC_HOR_HIGH_ACT) value |= v_HSYNC_POLARITY(1); if(mode->sync & FB_SYNC_VERT_HIGH_ACT) value |= v_VSYNC_POLARITY(1); HDMIWrReg(VIDEO_TIMING_CTL, value); value = mode->left_margin + mode->xres + mode->right_margin + mode->hsync_len; HDMIWrReg(VIDEO_EXT_HTOTAL_L, value & 0xFF); HDMIWrReg(VIDEO_EXT_HTOTAL_H, (value >> 8) & 0xFF); value = mode->left_margin + mode->right_margin + mode->hsync_len; HDMIWrReg(VIDEO_EXT_HBLANK_L, value & 0xFF); HDMIWrReg(VIDEO_EXT_HBLANK_H, (value >> 8) & 0xFF); value = mode->left_margin + mode->hsync_len; HDMIWrReg(VIDEO_EXT_HDELAY_L, value & 0xFF); HDMIWrReg(VIDEO_EXT_HDELAY_H, (value >> 8) & 0xFF); value = mode->hsync_len; HDMIWrReg(VIDEO_EXT_HDURATION_L, value & 0xFF); HDMIWrReg(VIDEO_EXT_HDURATION_H, (value >> 8) & 0xFF); value = mode->upper_margin + mode->yres + mode->lower_margin + mode->vsync_len; HDMIWrReg(VIDEO_EXT_VTOTAL_L, value & 0xFF); HDMIWrReg(VIDEO_EXT_VTOTAL_H, (value >> 8) & 0xFF); value = mode->upper_margin + mode->vsync_len + mode->lower_margin; HDMIWrReg(VIDEO_EXT_VBLANK, value & 0xFF); if(vpara->vic == HDMI_720x480p_60Hz_4_3 || vpara->vic == HDMI_720x480p_60Hz_16_9) value = 42; else value = mode->upper_margin + mode->vsync_len; HDMIWrReg(VIDEO_EXT_VDELAY, value & 0xFF); value = mode->vsync_len; HDMIWrReg(VIDEO_EXT_VDURATION, value & 0xFF); #endif if(vpara->output_mode == OUTPUT_HDMI) { rk2928_hdmi_config_avi(vpara->vic, vpara->output_color); hdmi_dbg(hdmi->dev, "[%s] sucess output HDMI.\n", __FUNCTION__); } else { hdmi_dbg(hdmi->dev, "[%s] sucess output DVI.\n", __FUNCTION__); } return 0; }
int rk610_hdmi_sys_config_video(struct hdmi *hdmi, int vic, int input_color, int output_color) { char value; struct fb_videomode *mode; // Diable HDCP if(rk610_hdmi->hdcp_power_off_cb) rk610_hdmi->hdcp_power_off_cb(); // Diable video and audio output HDMIWrReg(AV_MUTE, v_AUDIO_MUTE(1) | v_VIDEO_MUTE(1)); // Input video mode is SDR RGB24bit, Data enable signal from external HDMIWrReg(VIDEO_CONTRL1, v_VIDEO_INPUT_FORMAT(VIDEO_INPUT_SDR_RGB444) | v_DE_EXTERNAL); HDMIWrReg(VIDEO_CONTRL2, v_VIDEO_INPUT_BITS(VIDEO_INPUT_8BITS) | (output_color & 0xFF)); // Set HDMI Mode HDMIWrReg(HDCP_CTRL, v_HDMI_DVI(hdmi->edid.is_hdmi)); // Enable or disalbe color space convert if(input_color != output_color) { value = v_SOF_DISABLE | v_CSC_ENABLE; } else value = v_SOF_DISABLE; HDMIWrReg(VIDEO_CONTRL3, value); #if 1 HDMIWrReg(VIDEO_TIMING_CTL, 0); mode = (struct fb_videomode *)ext_hdmi_vic_to_videomode(vic); if(mode == NULL) { hdmi_dbg(hdmi->dev, "[%s] not found vic %d\n", __FUNCTION__, vic); return -ENOENT; } rk610_hdmi->frequency = mode->pixclock; #else // Set ext video value = v_EXTERANL_VIDEO(1) | v_INETLACE(mode->vmode); if(mode->sync & FB_SYNC_HOR_HIGH_ACT) value |= v_HSYNC_POLARITY(1); if(mode->sync & FB_SYNC_VERT_HIGH_ACT) value |= v_VSYNC_POLARITY(1); HDMIWrReg(VIDEO_TIMING_CTL, value); value = mode->left_margin + mode->xres + mode->right_margin + mode->hsync_len; HDMIWrReg(VIDEO_EXT_HTOTAL_L, value & 0xFF); HDMIWrReg(VIDEO_EXT_HTOTAL_H, (value >> 8) & 0xFF); value = mode->left_margin + mode->right_margin + mode->hsync_len; HDMIWrReg(VIDEO_EXT_HBLANK_L, value & 0xFF); HDMIWrReg(VIDEO_EXT_HBLANK_H, (value >> 8) & 0xFF); value = mode->left_margin + mode->hsync_len; HDMIWrReg(VIDEO_EXT_HDELAY_L, value & 0xFF); HDMIWrReg(VIDEO_EXT_HDELAY_H, (value >> 8) & 0xFF); value = mode->hsync_len; HDMIWrReg(VIDEO_EXT_HDURATION_L, value & 0xFF); HDMIWrReg(VIDEO_EXT_HDURATION_H, (value >> 8) & 0xFF); value = mode->upper_margin + mode->yres + mode->lower_margin + mode->vsync_len; HDMIWrReg(VIDEO_EXT_VTOTAL_L, value & 0xFF); HDMIWrReg(VIDEO_EXT_VTOTAL_H, (value >> 8) & 0xFF); value = mode->upper_margin + mode->vsync_len + mode->lower_margin; HDMIWrReg(VIDEO_EXT_VBLANK, value & 0xFF); value = mode->upper_margin + mode->vsync_len; HDMIWrReg(VIDEO_EXT_VDELAY, value & 0xFF); value = mode->vsync_len; HDMIWrReg(VIDEO_EXT_VDURATION, value & 0xFF); #endif if(hdmi->edid.is_hdmi) { rk610_hdmi_config_avi(vic, output_color); hdmi_dbg(hdmi->dev, "[%s] sucess output HDMI.\n", __FUNCTION__); } else { hdmi_dbg(hdmi->dev, "[%s] sucess output DVI.\n", __FUNCTION__); } // Power on TMDS HDMIWrReg(PHY_PRE_EMPHASIS, v_PRE_EMPHASIS(0) | v_TMDS_PWRDOWN(0)); // TMDS power on // Enable TMDS value = 0; rk610_hdmi_i2c_read_reg(PHY_DRIVER, &value); value |= v_TX_ENABLE(1); HDMIWrReg(PHY_DRIVER, value); return 0; }