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796 lines
27 KiB
796 lines
27 KiB
/* |
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* Copyright (C) 2010 The Android Open Source Project |
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* Copyright (C) 2012-2015, The Linux Foundation. All rights reserved. |
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* |
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* Not a Contribution, Apache license notifications and license are |
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* retained for attribution purposes only. |
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* |
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* Licensed under the Apache License, Version 2.0 (the "License"); |
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* you may not use this file except in compliance with the License. |
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* You may obtain a copy of the License at |
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* |
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* http://www.apache.org/licenses/LICENSE-2.0 |
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* |
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* Unless required by applicable law or agreed to in writing, software |
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* distributed under the License is distributed on an "AS IS" BASIS, |
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. |
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* See the License for the specific language governing permissions and |
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* limitations under the License. |
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*/ |
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#define DEBUG 0 |
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#include <fcntl.h> |
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#include <linux/msm_mdp.h> |
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#include <video/msm_hdmi_modes.h> |
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#include <linux/fb.h> |
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#include <sys/ioctl.h> |
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#include <cutils/properties.h> |
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#include "hwc_utils.h" |
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#include "hdmi.h" |
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#include "overlayUtils.h" |
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#include "overlay.h" |
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#include "qd_utils.h" |
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|
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using namespace android; |
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using namespace qdutils; |
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namespace qhwc { |
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#define UNKNOWN_STRING "unknown" |
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#define SPD_NAME_LENGTH 16 |
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|
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/* The array gEDIDData contains a list of modes currently |
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* supported by HDMI and display, and modes that are not |
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* supported i.e. interlaced modes. |
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|
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* In order to add support for a new mode, the mode must be |
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* appended to the end of the array. |
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* |
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* Each new entry must contain the following: |
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* -Mode: a video format defined in msm_hdmi_modes.h |
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* -Width: x resolution for the mode |
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* -Height: y resolution for the mode |
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* -FPS: the frame rate for the mode |
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* -Mode Order: the priority for the new mode that is used when determining |
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* the best mode when the HDMI display is connected. |
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*/ |
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EDIDData gEDIDData [] = { |
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EDIDData(HDMI_VFRMT_1440x480i60_4_3, 1440, 480, 60, 1), |
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EDIDData(HDMI_VFRMT_1440x480i60_16_9, 1440, 480, 60, 2), |
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EDIDData(HDMI_VFRMT_1440x576i50_4_3, 1440, 576, 50, 3), |
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EDIDData(HDMI_VFRMT_1440x576i50_16_9, 1440, 576, 50, 4), |
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EDIDData(HDMI_VFRMT_1920x1080i60_16_9, 1920, 1080, 60, 5), |
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EDIDData(HDMI_VFRMT_640x480p60_4_3, 640, 480, 60, 6), |
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EDIDData(HDMI_VFRMT_720x480p60_4_3, 720, 480, 60, 7), |
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EDIDData(HDMI_VFRMT_720x480p60_16_9, 720, 480, 60, 8), |
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EDIDData(HDMI_VFRMT_720x576p50_4_3, 720, 576, 50, 9), |
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EDIDData(HDMI_VFRMT_720x576p50_16_9, 720, 576, 50, 10), |
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EDIDData(HDMI_VFRMT_800x600p60_4_3, 800, 600, 60, 11), |
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EDIDData(HDMI_VFRMT_848x480p60_16_9, 848, 480, 60, 12), |
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EDIDData(HDMI_VFRMT_1024x768p60_4_3, 1024, 768, 60, 13), |
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EDIDData(HDMI_VFRMT_1280x1024p60_5_4, 1280, 1024, 60, 14), |
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EDIDData(HDMI_VFRMT_1280x720p50_16_9, 1280, 720, 50, 15), |
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EDIDData(HDMI_VFRMT_1280x720p60_16_9, 1280, 720, 60, 16), |
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EDIDData(HDMI_VFRMT_1280x800p60_16_10, 1280, 800, 60, 17), |
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EDIDData(HDMI_VFRMT_1280x960p60_4_3, 1280, 960, 60, 18), |
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EDIDData(HDMI_VFRMT_1360x768p60_16_9, 1360, 768, 60, 19), |
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EDIDData(HDMI_VFRMT_1366x768p60_16_10, 1366, 768, 60, 20), |
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EDIDData(HDMI_VFRMT_1440x900p60_16_10, 1440, 900, 60, 21), |
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EDIDData(HDMI_VFRMT_1400x1050p60_4_3, 1400, 1050, 60, 22), |
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EDIDData(HDMI_VFRMT_1680x1050p60_16_10, 1680, 1050, 60, 23), |
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EDIDData(HDMI_VFRMT_1600x1200p60_4_3, 1600, 1200, 60, 24), |
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EDIDData(HDMI_VFRMT_1920x1080p24_16_9, 1920, 1080, 24, 25), |
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EDIDData(HDMI_VFRMT_1920x1080p25_16_9, 1920, 1080, 25, 26), |
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EDIDData(HDMI_VFRMT_1920x1080p30_16_9, 1920, 1080, 30, 27), |
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EDIDData(HDMI_VFRMT_1920x1080p50_16_9, 1920, 1080, 50, 28), |
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EDIDData(HDMI_VFRMT_1920x1080p60_16_9, 1920, 1080, 60, 29), |
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EDIDData(HDMI_VFRMT_1920x1200p60_16_10, 1920, 1200, 60, 30), |
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EDIDData(HDMI_VFRMT_2560x1600p60_16_9, 2560, 1600, 60, 31), |
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EDIDData(HDMI_VFRMT_3840x2160p24_16_9, 3840, 2160, 24, 32), |
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EDIDData(HDMI_VFRMT_3840x2160p25_16_9, 3840, 2160, 25, 33), |
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EDIDData(HDMI_VFRMT_3840x2160p30_16_9, 3840, 2160, 30, 34), |
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EDIDData(HDMI_VFRMT_4096x2160p24_16_9, 4096, 2160, 24, 35), |
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}; |
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// Number of modes in gEDIDData |
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const int gEDIDCount = (sizeof(gEDIDData)/sizeof(gEDIDData)[0]); |
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|
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int HDMIDisplay::configure() { |
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if(!openFrameBuffer()) { |
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ALOGE("%s: Failed to open FB: %d", __FUNCTION__, mFbNum); |
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return -1; |
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} |
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readCEUnderscanInfo(); |
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readResolution(); |
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/* Used for changing the resolution |
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* getUserConfig will get the preferred |
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* config index set thru adb shell */ |
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mActiveConfig = getUserConfig(); |
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if (mActiveConfig == -1) { |
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//Get the best mode and set |
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mActiveConfig = getBestConfig(); |
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} |
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|
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// Read the system property to determine if downscale feature is enabled. |
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char value[PROPERTY_VALUE_MAX]; |
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mMDPDownscaleEnabled = false; |
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if(property_get("sys.hwc.mdp_downscale_enabled", value, "false") |
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&& !strcmp(value, "true")) { |
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mMDPDownscaleEnabled = true; |
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} |
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|
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// Set the mode corresponding to the active index |
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mCurrentMode = mEDIDModes[mActiveConfig]; |
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setAttributes(); |
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// set system property |
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property_set("hw.hdmiON", "1"); |
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|
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// XXX: A debug property can be used to enable resolution change for |
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// testing purposes: debug.hwc.enable_resolution_change |
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mEnableResolutionChange = false; |
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if(property_get("debug.hwc.enable_resolution_change", value, "false") |
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&& !strcmp(value, "true")) { |
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mEnableResolutionChange = true; |
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} |
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return 0; |
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} |
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void HDMIDisplay::getAttributes(uint32_t& width, uint32_t& height) { |
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uint32_t fps = 0; |
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getAttrForMode(width, height, fps); |
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} |
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int HDMIDisplay::teardown() { |
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closeFrameBuffer(); |
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resetInfo(); |
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// unset system property |
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property_set("hw.hdmiON", "0"); |
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return 0; |
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} |
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HDMIDisplay::HDMIDisplay():mFd(-1), |
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mCurrentMode(-1), mModeCount(0), mPrimaryWidth(0), mPrimaryHeight(0), |
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mUnderscanSupported(false), mMDPDownscaleEnabled(false) |
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{ |
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memset(&mVInfo, 0, sizeof(mVInfo)); |
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mFbNum = qdutils::getHDMINode(); |
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|
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mDisplayId = HWC_DISPLAY_EXTERNAL; |
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// Update the display if HDMI is connected as primary |
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if (isHDMIPrimaryDisplay()) { |
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mDisplayId = HWC_DISPLAY_PRIMARY; |
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} |
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// Disable HPD at start if HDMI is external, it will be enabled later |
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// when the display powers on |
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// This helps for framework reboot or adb shell stop/start |
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if (mDisplayId) { |
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writeHPDOption(0); |
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} |
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// for HDMI - retreive all the modes supported by the driver |
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if(mFbNum != -1) { |
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supported_video_mode_lut = |
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new msm_hdmi_mode_timing_info[HDMI_VFRMT_MAX]; |
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// Populate the mode table for supported modes |
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MSM_HDMI_MODES_INIT_TIMINGS(supported_video_mode_lut); |
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MSM_HDMI_MODES_SET_SUPP_TIMINGS(supported_video_mode_lut, |
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MSM_HDMI_MODES_ALL); |
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// Update the Source Product Information |
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// Vendor Name |
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setSPDInfo("vendor_name", "ro.product.manufacturer"); |
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// Product Description |
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setSPDInfo("product_description", "ro.product.name"); |
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} |
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ALOGD_IF(DEBUG, "%s mDisplayId(%d) mFbNum(%d)", |
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__FUNCTION__, mDisplayId, mFbNum); |
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} |
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/* gets the product manufacturer and product name and writes it |
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* to the sysfs node, so that the driver can get that information |
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* Used to show QCOM 8974 instead of Input 1 for example |
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*/ |
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void HDMIDisplay::setSPDInfo(const char* node, const char* property) { |
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char info[PROPERTY_VALUE_MAX]; |
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ssize_t err = -1; |
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int spdFile = openDeviceNode(node, O_RDWR); |
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if (spdFile >= 0) { |
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memset(info, 0, sizeof(info)); |
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property_get(property, info, UNKNOWN_STRING); |
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ALOGD_IF(DEBUG, "In %s: %s = %s", |
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__FUNCTION__, property, info); |
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if (strncmp(info, UNKNOWN_STRING, SPD_NAME_LENGTH)) { |
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err = write(spdFile, info, strlen(info)); |
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if (err <= 0) { |
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ALOGE("%s: file write failed for '%s'" |
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"err no = %d", __FUNCTION__, node, errno); |
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} |
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} else { |
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ALOGD_IF(DEBUG, "%s: property_get failed for SPD %s", |
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__FUNCTION__, node); |
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} |
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close(spdFile); |
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} |
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} |
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void HDMIDisplay::setHPD(uint32_t value) { |
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ALOGD_IF(DEBUG,"HPD enabled=%d", value); |
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writeHPDOption(value); |
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} |
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void HDMIDisplay::setActionSafeDimension(int w, int h) { |
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ALOGD_IF(DEBUG,"ActionSafe w=%d h=%d", w, h); |
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char actionsafeWidth[PROPERTY_VALUE_MAX]; |
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char actionsafeHeight[PROPERTY_VALUE_MAX]; |
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snprintf(actionsafeWidth, sizeof(actionsafeWidth), "%d", w); |
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property_set("persist.sys.actionsafe.width", actionsafeWidth); |
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snprintf(actionsafeHeight, sizeof(actionsafeHeight), "%d", h); |
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property_set("persist.sys.actionsafe.height", actionsafeHeight); |
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} |
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int HDMIDisplay::getModeCount() const { |
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ALOGD_IF(DEBUG,"HPD mModeCount=%d", mModeCount); |
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return mModeCount; |
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} |
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void HDMIDisplay::readCEUnderscanInfo() |
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{ |
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int hdmiScanInfoFile = -1; |
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ssize_t len = -1; |
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char scanInfo[17]; |
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char *ce_info_str = NULL; |
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char *save_ptr; |
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const char token[] = ", \n"; |
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int ce_info = -1; |
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memset(scanInfo, 0, sizeof(scanInfo)); |
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hdmiScanInfoFile = openDeviceNode("scan_info", O_RDONLY); |
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if (hdmiScanInfoFile < 0) { |
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return; |
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} else { |
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len = read(hdmiScanInfoFile, scanInfo, sizeof(scanInfo)-1); |
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ALOGD("%s: Scan Info string: %s length = %zu", |
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__FUNCTION__, scanInfo, len); |
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if (len <= 0) { |
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close(hdmiScanInfoFile); |
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ALOGE("%s: Scan Info file empty", __FUNCTION__); |
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return; |
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} |
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scanInfo[len] = '\0'; /* null terminate the string */ |
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close(hdmiScanInfoFile); |
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} |
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/* |
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* The scan_info contains the three fields |
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* PT - preferred video format |
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* IT - video format |
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* CE video format - containing the underscan support information |
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*/ |
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/* PT */ |
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ce_info_str = strtok_r(scanInfo, token, &save_ptr); |
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if (ce_info_str) { |
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/* IT */ |
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ce_info_str = strtok_r(NULL, token, &save_ptr); |
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if (ce_info_str) { |
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/* CE */ |
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ce_info_str = strtok_r(NULL, token, &save_ptr); |
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if (ce_info_str) |
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ce_info = atoi(ce_info_str); |
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} |
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} |
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if (ce_info_str) { |
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// ce_info contains the underscan information |
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if (ce_info == HDMI_SCAN_ALWAYS_UNDERSCANED || |
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ce_info == HDMI_SCAN_BOTH_SUPPORTED) |
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// if TV supported underscan, then driver will always underscan |
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// hence no need to apply action safe rectangle |
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mUnderscanSupported = true; |
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} else { |
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ALOGE("%s: scan_info string error", __FUNCTION__); |
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} |
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// Store underscan support info in a system property |
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const char* prop = (mUnderscanSupported) ? "1" : "0"; |
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property_set("hw.underscan_supported", prop); |
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return; |
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} |
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HDMIDisplay::~HDMIDisplay() |
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{ |
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delete [] supported_video_mode_lut; |
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closeFrameBuffer(); |
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} |
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/* |
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* sets the fb_var_screeninfo from the hdmi_mode_timing_info |
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*/ |
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void setDisplayTiming(struct fb_var_screeninfo &info, |
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const msm_hdmi_mode_timing_info* mode) |
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{ |
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info.reserved[0] = 0; |
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info.reserved[1] = 0; |
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info.reserved[2] = 0; |
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#ifndef FB_METADATA_VIDEO_INFO_CODE_SUPPORT |
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info.reserved[3] = (info.reserved[3] & 0xFFFF) | |
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(mode->video_format << 16); |
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#endif |
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info.xoffset = 0; |
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info.yoffset = 0; |
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info.xres = mode->active_h; |
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info.yres = mode->active_v; |
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|
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info.pixclock = (mode->pixel_freq)*1000; |
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info.vmode = mode->interlaced ? |
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FB_VMODE_INTERLACED : FB_VMODE_NONINTERLACED; |
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info.right_margin = mode->front_porch_h; |
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info.hsync_len = mode->pulse_width_h; |
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info.left_margin = mode->back_porch_h; |
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info.lower_margin = mode->front_porch_v; |
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info.vsync_len = mode->pulse_width_v; |
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info.upper_margin = mode->back_porch_v; |
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} |
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int HDMIDisplay::parseResolution(char* edidStr) |
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{ |
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char delim = ','; |
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int count = 0; |
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char *start, *end; |
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// EDIDs are string delimited by ',' |
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// Ex: 16,4,5,3,32,34,1 |
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// Parse this string to get mode(int) |
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start = (char*) edidStr; |
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end = &delim; |
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while(*end == delim) { |
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mEDIDModes[count] = (int) strtol(start, &end, 10); |
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start = end+1; |
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count++; |
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} |
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ALOGD_IF(DEBUG, "In %s: count = %d", __FUNCTION__, count); |
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for (int i = 0; i < count; i++) |
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ALOGD_IF(DEBUG, "Mode[%d] = %d", i, mEDIDModes[i]); |
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return count; |
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} |
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bool HDMIDisplay::readResolution() |
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{ |
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ssize_t len = -1; |
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char edidStr[128] = {'\0'}; |
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|
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int hdmiEDIDFile = openDeviceNode("edid_modes", O_RDONLY); |
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if (hdmiEDIDFile < 0) { |
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return false; |
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} else { |
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len = read(hdmiEDIDFile, edidStr, sizeof(edidStr)-1); |
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ALOGD_IF(DEBUG, "%s: EDID string: %s length = %zu", |
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__FUNCTION__, edidStr, len); |
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if (len <= 0) { |
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ALOGE("%s: edid_modes file empty", __FUNCTION__); |
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edidStr[0] = '\0'; |
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} |
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else { |
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while (len > 1 && isspace(edidStr[len-1])) { |
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--len; |
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} |
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edidStr[len] = '\0'; |
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} |
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close(hdmiEDIDFile); |
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} |
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if(len > 0) { |
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// Get EDID modes from the EDID strings |
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mModeCount = parseResolution(edidStr); |
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ALOGD_IF(DEBUG, "%s: mModeCount = %d", __FUNCTION__, |
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mModeCount); |
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} |
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|
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return (len > 0); |
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} |
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|
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bool HDMIDisplay::openFrameBuffer() |
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{ |
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if (mFd == -1) { |
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char strDevPath[MAX_SYSFS_FILE_PATH]; |
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snprintf(strDevPath, MAX_SYSFS_FILE_PATH, "/dev/graphics/fb%d", mFbNum); |
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mFd = open(strDevPath, O_RDWR); |
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if (mFd < 0) |
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ALOGE("%s: %s is not available", __FUNCTION__, strDevPath); |
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} |
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return (mFd > 0); |
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} |
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bool HDMIDisplay::closeFrameBuffer() |
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{ |
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int ret = 0; |
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if(mFd >= 0) { |
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ret = close(mFd); |
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mFd = -1; |
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} |
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return (ret == 0); |
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} |
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|
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// clears the vinfo, edid, best modes |
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void HDMIDisplay::resetInfo() |
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{ |
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memset(&mVInfo, 0, sizeof(mVInfo)); |
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memset(mEDIDModes, 0, sizeof(mEDIDModes)); |
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mModeCount = 0; |
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mCurrentMode = -1; |
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mUnderscanSupported = false; |
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mXres = 0; |
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mYres = 0; |
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mVsyncPeriod = 0; |
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mMDPScalingMode = false; |
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// Reset the underscan supported system property |
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const char* prop = "0"; |
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property_set("hw.underscan_supported", prop); |
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} |
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|
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int HDMIDisplay::getModeOrder(int mode) |
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{ |
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for (int dataIndex = 0; dataIndex < gEDIDCount; dataIndex++) { |
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if (gEDIDData[dataIndex].mMode == mode) { |
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return gEDIDData[dataIndex].mModeOrder; |
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} |
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} |
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ALOGE("%s Mode not found: %d", __FUNCTION__, mode); |
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return -1; |
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} |
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|
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/// Returns the index of the user mode set(if any) using adb shell |
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int HDMIDisplay::getUserConfig() { |
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/* Based on the property set the resolution */ |
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char property_value[PROPERTY_VALUE_MAX]; |
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property_get("hw.hdmi.resolution", property_value, "-1"); |
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int mode = atoi(property_value); |
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// We dont support interlaced modes |
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if(isValidMode(mode) && !isInterlacedMode(mode)) { |
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ALOGD_IF(DEBUG, "%s: setting the HDMI mode = %d", __FUNCTION__, mode); |
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return getModeIndex(mode); |
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} |
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return -1; |
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} |
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|
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// Get the index of the best mode for the current HD TV |
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int HDMIDisplay::getBestConfig() { |
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int bestOrder = 0; |
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int bestMode = HDMI_VFRMT_640x480p60_4_3; |
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int bestModeIndex = -1; |
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// for all the edid read, get the best mode |
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for(int i = 0; i < mModeCount; i++) { |
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int mode = mEDIDModes[i]; |
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int order = getModeOrder(mode); |
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if (order > bestOrder) { |
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bestOrder = order; |
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bestMode = mode; |
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bestModeIndex = i; |
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} |
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} |
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// If we fail to read from EDID when HDMI is connected, then |
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// mModeCount will be 0 and bestModeIndex will be invalid. |
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// In this case, we populate the mEDIDModes structure with |
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// a default mode at index 0. |
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if (bestModeIndex == -1) { |
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bestModeIndex = 0; |
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mModeCount = 1; |
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mEDIDModes[bestModeIndex] = bestMode; |
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} |
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return bestModeIndex; |
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} |
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|
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inline bool HDMIDisplay::isValidMode(int ID) |
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{ |
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bool valid = false; |
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for (int i = 0; i < mModeCount; i++) { |
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if(ID == mEDIDModes[i]) { |
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valid = true; |
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break; |
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} |
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} |
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return valid; |
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} |
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|
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// returns true if the mode(ID) is interlaced mode format |
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bool HDMIDisplay::isInterlacedMode(int ID) { |
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bool interlaced = false; |
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switch(ID) { |
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case HDMI_VFRMT_1440x480i60_4_3: |
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case HDMI_VFRMT_1440x480i60_16_9: |
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case HDMI_VFRMT_1440x576i50_4_3: |
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case HDMI_VFRMT_1440x576i50_16_9: |
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case HDMI_VFRMT_1920x1080i60_16_9: |
|
interlaced = true; |
|
break; |
|
default: |
|
interlaced = false; |
|
break; |
|
} |
|
return interlaced; |
|
} |
|
|
|
// Does a put_vscreen info on the HDMI interface which will update |
|
// the configuration (resolution, timing info) to match mCurrentMode |
|
void HDMIDisplay::activateDisplay() |
|
{ |
|
int ret = 0; |
|
ret = ioctl(mFd, FBIOGET_VSCREENINFO, &mVInfo); |
|
if(ret < 0) { |
|
ALOGD("In %s: FBIOGET_VSCREENINFO failed Err Str = %s", __FUNCTION__, |
|
strerror(errno)); |
|
} |
|
ALOGD_IF(DEBUG, "%s: GET Info<ID=%d %dx%d (%d,%d,%d)," |
|
"(%d,%d,%d) %dMHz>", __FUNCTION__, |
|
mVInfo.reserved[3], mVInfo.xres, mVInfo.yres, |
|
mVInfo.right_margin, mVInfo.hsync_len, mVInfo.left_margin, |
|
mVInfo.lower_margin, mVInfo.vsync_len, mVInfo.upper_margin, |
|
mVInfo.pixclock/1000/1000); |
|
|
|
const struct msm_hdmi_mode_timing_info *mode = |
|
&supported_video_mode_lut[0]; |
|
for (unsigned int i = 0; i < HDMI_VFRMT_MAX; ++i) { |
|
const struct msm_hdmi_mode_timing_info *cur = |
|
&supported_video_mode_lut[i]; |
|
if (cur->video_format == (uint32_t)mCurrentMode) { |
|
mode = cur; |
|
break; |
|
} |
|
} |
|
setDisplayTiming(mVInfo, mode); |
|
ALOGD_IF(DEBUG, "%s: SET Info<ID=%d => Info<ID=%d %dx %d" |
|
"(%d,%d,%d), (%d,%d,%d) %dMHz>", __FUNCTION__, mCurrentMode, |
|
mode->video_format, mVInfo.xres, mVInfo.yres, |
|
mVInfo.right_margin, mVInfo.hsync_len, mVInfo.left_margin, |
|
mVInfo.lower_margin, mVInfo.vsync_len, mVInfo.upper_margin, |
|
mVInfo.pixclock/1000/1000); |
|
#ifdef FB_METADATA_VIDEO_INFO_CODE_SUPPORT |
|
struct msmfb_metadata metadata; |
|
memset(&metadata, 0 , sizeof(metadata)); |
|
metadata.op = metadata_op_vic; |
|
metadata.data.video_info_code = mode->video_format; |
|
if (ioctl(mFd, MSMFB_METADATA_SET, &metadata) == -1) { |
|
ALOGD("In %s: MSMFB_METADATA_SET failed Err Str = %s", |
|
__FUNCTION__, strerror(errno)); |
|
} |
|
#endif |
|
mVInfo.activate = FB_ACTIVATE_NOW | FB_ACTIVATE_ALL | FB_ACTIVATE_FORCE; |
|
ret = ioctl(mFd, FBIOPUT_VSCREENINFO, &mVInfo); |
|
if(ret < 0) { |
|
ALOGD("In %s: FBIOPUT_VSCREENINFO failed Err Str = %s", |
|
__FUNCTION__, strerror(errno)); |
|
} |
|
} |
|
|
|
bool HDMIDisplay::writeHPDOption(int userOption) const |
|
{ |
|
bool ret = true; |
|
if(mFbNum != -1) { |
|
int hdmiHPDFile = openDeviceNode("hpd", O_RDWR); |
|
if (hdmiHPDFile >= 0) { |
|
ssize_t err = -1; |
|
ALOGD_IF(DEBUG, "%s: option = %d", |
|
__FUNCTION__, userOption); |
|
if(userOption) |
|
err = write(hdmiHPDFile, "1", 2); |
|
else |
|
err = write(hdmiHPDFile, "0" , 2); |
|
if (err <= 0) { |
|
ALOGE("%s: file write failed 'hpd'", __FUNCTION__); |
|
ret = false; |
|
} |
|
close(hdmiHPDFile); |
|
} |
|
} |
|
return ret; |
|
} |
|
|
|
|
|
void HDMIDisplay::setAttributes() { |
|
uint32_t fps = 0; |
|
// Always set dpyAttr res to mVInfo res |
|
getAttrForMode(mXres, mYres, fps); |
|
mMDPScalingMode = false; |
|
|
|
if(overlay::Overlay::getInstance()->isUIScalingOnExternalSupported() |
|
&& mMDPDownscaleEnabled) { |
|
// if primary resolution is more than the hdmi resolution |
|
// configure dpy attr to primary resolution and set MDP |
|
// scaling mode |
|
// Restrict this upto 1080p resolution max, if target does not |
|
// support source split feature. |
|
uint32_t primaryArea = mPrimaryWidth * mPrimaryHeight; |
|
if(((primaryArea) > (mXres * mYres)) && |
|
(((primaryArea) <= SUPPORTED_DOWNSCALE_AREA) || |
|
qdutils::MDPVersion::getInstance().isSrcSplit())) { |
|
// tmpW and tmpH will hold the primary dimensions before we |
|
// update the aspect ratio if necessary. |
|
int tmpW = mPrimaryWidth; |
|
int tmpH = mPrimaryHeight; |
|
// HDMI is always in landscape, so always assign the higher |
|
// dimension to hdmi's xres |
|
if(mPrimaryHeight > mPrimaryWidth) { |
|
tmpW = mPrimaryHeight; |
|
tmpH = mPrimaryWidth; |
|
} |
|
// The aspect ratios of the external and primary displays |
|
// can be different. As a result, directly assigning primary |
|
// resolution could lead to an incorrect final image. |
|
// We get around this by calculating a new resolution by |
|
// keeping aspect ratio intact. |
|
hwc_rect r = {0, 0, 0, 0}; |
|
qdutils::getAspectRatioPosition(tmpW, tmpH, mXres, mYres, r); |
|
uint32_t newExtW = r.right - r.left; |
|
uint32_t newExtH = r.bottom - r.top; |
|
uint32_t alignedExtW; |
|
uint32_t alignedExtH; |
|
// On 8994 and below targets MDP supports only 4X downscaling, |
|
// Restricting selected external resolution to be exactly 4X |
|
// greater resolution than actual external resolution |
|
uint32_t maxMDPDownScale = |
|
qdutils::MDPVersion::getInstance().getMaxMDPDownscale(); |
|
if((mXres * mYres * maxMDPDownScale) < (newExtW * newExtH)) { |
|
float upScaleFactor = (float)maxMDPDownScale / 2.0f; |
|
newExtW = (int)((float)mXres * upScaleFactor); |
|
newExtH = (int)((float)mYres * upScaleFactor); |
|
} |
|
// Align it down so that the new aligned resolution does not |
|
// exceed the maxMDPDownscale factor |
|
alignedExtW = overlay::utils::aligndown(newExtW, 4); |
|
alignedExtH = overlay::utils::aligndown(newExtH, 4); |
|
mXres = alignedExtW; |
|
mYres = alignedExtH; |
|
// Set External Display MDP Downscale mode indicator |
|
mMDPScalingMode = true; |
|
} |
|
} |
|
ALOGD_IF(DEBUG_MDPDOWNSCALE, "Selected external resolution [%d X %d] " |
|
"maxMDPDownScale %d mMDPScalingMode %d srcSplitEnabled %d " |
|
"MDPDownscale feature %d", |
|
mXres, mYres, |
|
qdutils::MDPVersion::getInstance().getMaxMDPDownscale(), |
|
mMDPScalingMode, qdutils::MDPVersion::getInstance().isSrcSplit(), |
|
mMDPDownscaleEnabled); |
|
mVsyncPeriod = (int) 1000000000l / fps; |
|
ALOGD_IF(DEBUG, "%s xres=%d, yres=%d", __FUNCTION__, mXres, mYres); |
|
} |
|
|
|
void HDMIDisplay::getAttrForMode(uint32_t& width, uint32_t& height, |
|
uint32_t& fps) { |
|
for (int dataIndex = 0; dataIndex < gEDIDCount; dataIndex++) { |
|
if (gEDIDData[dataIndex].mMode == mCurrentMode) { |
|
width = gEDIDData[dataIndex].mWidth; |
|
height = gEDIDData[dataIndex].mHeight; |
|
fps = gEDIDData[dataIndex].mFps; |
|
return; |
|
} |
|
} |
|
ALOGE("%s Unable to get attributes for %d", __FUNCTION__, mCurrentMode); |
|
} |
|
|
|
/* returns the fd related to the node specified*/ |
|
int HDMIDisplay::openDeviceNode(const char* node, int fileMode) const { |
|
char sysFsFilePath[MAX_SYSFS_FILE_PATH]; |
|
memset(sysFsFilePath, 0, sizeof(sysFsFilePath)); |
|
snprintf(sysFsFilePath , sizeof(sysFsFilePath), |
|
"/sys/devices/virtual/graphics/fb%d/%s", |
|
mFbNum, node); |
|
|
|
int fd = open(sysFsFilePath, fileMode, 0); |
|
|
|
if (fd < 0) { |
|
ALOGE("%s: file '%s' not found : ret = %d err str: %s", |
|
__FUNCTION__, sysFsFilePath, fd, strerror(errno)); |
|
} |
|
return fd; |
|
} |
|
|
|
bool HDMIDisplay::isHDMIPrimaryDisplay() { |
|
return (mFbNum == HWC_DISPLAY_PRIMARY); |
|
} |
|
|
|
int HDMIDisplay::getConnectedState() { |
|
int ret = -1; |
|
int mFbNum = qdutils::getHDMINode(); |
|
int connectedNode = openDeviceNode("connected", O_RDONLY); |
|
if(connectedNode >= 0) { |
|
char opStr[4]; |
|
ssize_t bytesRead = read(connectedNode, opStr, sizeof(opStr) - 1); |
|
if(bytesRead > 0) { |
|
opStr[bytesRead] = '\0'; |
|
ret = atoi(opStr); |
|
ALOGD_IF(DEBUG, "%s: Read %d from connected", __FUNCTION__, ret); |
|
} else if(bytesRead == 0) { |
|
ALOGE("%s: HDMI connected node empty", __FUNCTION__); |
|
} else { |
|
ALOGE("%s: Read from HDMI connected node failed with error %s", |
|
__FUNCTION__, strerror(errno)); |
|
} |
|
close(connectedNode); |
|
} else { |
|
ALOGD("%s: /sys/class/graphics/fb%d/connected could not be opened : %s", |
|
__FUNCTION__, mFbNum, strerror(errno)); |
|
} |
|
return ret; |
|
} |
|
|
|
void HDMIDisplay::setPrimaryAttributes(uint32_t primaryWidth, |
|
uint32_t primaryHeight) { |
|
mPrimaryHeight = primaryHeight; |
|
mPrimaryWidth = primaryWidth; |
|
} |
|
|
|
int HDMIDisplay::setActiveConfig(int newConfig) { |
|
if(newConfig < 0 || newConfig > mModeCount) { |
|
ALOGE("%s Invalid configuration %d", __FUNCTION__, newConfig); |
|
return -EINVAL; |
|
} |
|
|
|
// XXX: Currently, we only support a change in frame rate. |
|
// We need to validate the new config before proceeding. |
|
if (!isValidConfigChange(newConfig)) { |
|
ALOGE("%s Invalid configuration %d", __FUNCTION__, newConfig); |
|
return -EINVAL; |
|
} |
|
|
|
mCurrentMode = mEDIDModes[newConfig]; |
|
mActiveConfig = newConfig; |
|
activateDisplay(); |
|
ALOGD("%s config(%d) mode(%d)", __FUNCTION__, mActiveConfig, mCurrentMode); |
|
return 0; |
|
} |
|
|
|
// returns false if the xres or yres of the new config do |
|
// not match the current config |
|
bool HDMIDisplay::isValidConfigChange(int newConfig) { |
|
int newMode = mEDIDModes[newConfig]; |
|
uint32_t width = 0, height = 0, refresh = 0; |
|
getAttrForConfig(newConfig, width, height, refresh); |
|
return ((mXres == width) && (mYres == height)) || mEnableResolutionChange; |
|
} |
|
|
|
int HDMIDisplay::getModeIndex(int mode) { |
|
int modeIndex = -1; |
|
for(int i = 0; i < mModeCount; i++) { |
|
if(mode == mEDIDModes[i]) { |
|
modeIndex = i; |
|
break; |
|
} |
|
} |
|
return modeIndex; |
|
} |
|
|
|
int HDMIDisplay::getAttrForConfig(int config, uint32_t& xres, |
|
uint32_t& yres, uint32_t& refresh) const { |
|
if(config < 0 || config > mModeCount) { |
|
ALOGE("%s Invalid configuration %d", __FUNCTION__, config); |
|
return -EINVAL; |
|
} |
|
int mode = mEDIDModes[config]; |
|
uint32_t fps = 0; |
|
// Retrieve the mode attributes from gEDIDData |
|
for (int dataIndex = 0; dataIndex < gEDIDCount; dataIndex++) { |
|
if (gEDIDData[dataIndex].mMode == mode) { |
|
xres = gEDIDData[dataIndex].mWidth; |
|
yres = gEDIDData[dataIndex].mHeight; |
|
fps = gEDIDData[dataIndex].mFps; |
|
} |
|
} |
|
refresh = (uint32_t) 1000000000l / fps; |
|
ALOGD_IF(DEBUG, "%s xres(%d) yres(%d) fps(%d) refresh(%d)", __FUNCTION__, |
|
xres, yres, fps, refresh); |
|
return 0; |
|
} |
|
|
|
int HDMIDisplay::getDisplayConfigs(uint32_t* configs, |
|
size_t* numConfigs) const { |
|
if (*numConfigs <= 0) { |
|
ALOGE("%s Invalid number of configs (%zu)", __FUNCTION__, *numConfigs); |
|
return -EINVAL; |
|
} |
|
*numConfigs = mModeCount; |
|
for (int configIndex = 0; configIndex < mModeCount; configIndex++) { |
|
configs[configIndex] = (uint32_t)configIndex; |
|
} |
|
return 0; |
|
} |
|
|
|
};
|
|
|