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1150 lines
37 KiB
1150 lines
37 KiB
/*
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* Copyright (C) 2010 The Android Open Source Project
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* Copyright (C) 2012-2013, The Linux Foundation All rights reserved.
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*
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* Not a Contribution, Apache license notifications and license are retained
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* 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 HWC_UTILS_DEBUG 0
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#include <sys/ioctl.h>
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#include <binder/IServiceManager.h>
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#include <EGL/egl.h>
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#include <cutils/properties.h>
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#include <gralloc_priv.h>
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#include <overlay.h>
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#include <overlayRotator.h>
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#include "hwc_utils.h"
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#include "hwc_mdpcomp.h"
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#include "hwc_fbupdate.h"
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#include "mdp_version.h"
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#include "hwc_copybit.h"
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#include "external.h"
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#include "hwc_qclient.h"
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#include "QService.h"
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#include "comptype.h"
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using namespace qClient;
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using namespace qService;
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using namespace android;
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using namespace overlay;
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using namespace overlay::utils;
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namespace ovutils = overlay::utils;
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namespace qhwc {
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static int openFramebufferDevice(hwc_context_t *ctx)
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{
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struct fb_fix_screeninfo finfo;
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struct fb_var_screeninfo info;
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int fb_fd = openFb(HWC_DISPLAY_PRIMARY);
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if (ioctl(fb_fd, FBIOGET_VSCREENINFO, &info) == -1)
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return -errno;
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if (int(info.width) <= 0 || int(info.height) <= 0) {
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// the driver doesn't return that information
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// default to 160 dpi
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info.width = ((info.xres * 25.4f)/160.0f + 0.5f);
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info.height = ((info.yres * 25.4f)/160.0f + 0.5f);
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}
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float xdpi = (info.xres * 25.4f) / info.width;
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float ydpi = (info.yres * 25.4f) / info.height;
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#ifdef MSMFB_METADATA_GET
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struct msmfb_metadata metadata;
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memset(&metadata, 0 , sizeof(metadata));
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metadata.op = metadata_op_frame_rate;
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if (ioctl(fb_fd, MSMFB_METADATA_GET, &metadata) == -1) {
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ALOGE("Error retrieving panel frame rate");
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return -errno;
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}
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float fps = metadata.data.panel_frame_rate;
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#else
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//XXX: Remove reserved field usage on all baselines
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//The reserved[3] field is used to store FPS by the driver.
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float fps = info.reserved[3] & 0xFF;
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#endif
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if (ioctl(fb_fd, FBIOGET_FSCREENINFO, &finfo) == -1)
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return -errno;
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if (finfo.smem_len <= 0)
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return -errno;
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ctx->dpyAttr[HWC_DISPLAY_PRIMARY].fd = fb_fd;
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//xres, yres may not be 32 aligned
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ctx->dpyAttr[HWC_DISPLAY_PRIMARY].stride = finfo.line_length /(info.xres/8);
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ctx->dpyAttr[HWC_DISPLAY_PRIMARY].xres = info.xres;
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ctx->dpyAttr[HWC_DISPLAY_PRIMARY].yres = info.yres;
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ctx->dpyAttr[HWC_DISPLAY_PRIMARY].xdpi = xdpi;
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ctx->dpyAttr[HWC_DISPLAY_PRIMARY].ydpi = ydpi;
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ctx->dpyAttr[HWC_DISPLAY_PRIMARY].vsync_period = 1000000000l / fps;
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//Unblank primary on first boot
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if(ioctl(fb_fd, FBIOBLANK,FB_BLANK_UNBLANK) < 0) {
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ALOGE("%s: Failed to unblank display", __FUNCTION__);
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return -errno;
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}
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ctx->dpyAttr[HWC_DISPLAY_PRIMARY].isActive = true;
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return 0;
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}
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static int ppdComm(const char* cmd, hwc_context_t *ctx) {
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int ret = -1;
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ret = send(ctx->mCablProp.daemon_socket, cmd, strlen(cmd), MSG_NOSIGNAL);
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if(ret < 0) {
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if (errno == EPIPE) {
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//For broken pipe case, we will close the socket and
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//re-establish the connection
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close(ctx->mCablProp.daemon_socket);
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int daemon_socket = socket_local_client(DAEMON_SOCKET,
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ANDROID_SOCKET_NAMESPACE_RESERVED,
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SOCK_STREAM);
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if(!daemon_socket) {
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ALOGE("Connecting to socket failed: %s", strerror(errno));
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ctx->mCablProp.enabled = false;
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return -1;
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}
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struct timeval timeout;
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timeout.tv_sec = 1;//wait 1 second before timeout
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timeout.tv_usec = 0;
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if (setsockopt(daemon_socket, SOL_SOCKET, SO_SNDTIMEO,
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(char*)&timeout, sizeof(timeout )) < 0)
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ALOGE("setsockopt failed");
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ctx->mCablProp.daemon_socket = daemon_socket;
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//resend the cmd after connection is re-established
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ret = send(ctx->mCablProp.daemon_socket, cmd, strlen(cmd),
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MSG_NOSIGNAL);
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if (ret < 0) {
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ALOGE("Failed to send data over socket: %s",
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strerror(errno));
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return ret;
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}
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} else {
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ALOGE("Failed to send data over socket: %s",
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strerror(errno));
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return ret;
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}
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}
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ALOGD_IF(HWC_UTILS_DEBUG, "%s: Sent command: %s", __FUNCTION__, cmd);
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return 0;
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}
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static void connectPPDaemon(hwc_context_t *ctx)
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{
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char property[PROPERTY_VALUE_MAX];
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if ((property_get("ro.qualcomm.cabl", property, NULL) > 0) &&
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(atoi(property) == 1)) {
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ALOGD("%s: CABL is enabled", __FUNCTION__);
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ctx->mCablProp.enabled = true;
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} else {
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ALOGD("%s: CABL is disabled", __FUNCTION__);
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ctx->mCablProp.enabled = false;
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return;
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}
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if ((property_get("persist.qcom.cabl.video_only", property, NULL) > 0) &&
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(atoi(property) == 1)) {
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ALOGD("%s: CABL is in video only mode", __FUNCTION__);
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ctx->mCablProp.videoOnly = true;
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} else {
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ctx->mCablProp.videoOnly = false;
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}
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int daemon_socket = socket_local_client(DAEMON_SOCKET,
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ANDROID_SOCKET_NAMESPACE_RESERVED,
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SOCK_STREAM);
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if(!daemon_socket) {
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ALOGE("Connecting to socket failed: %s", strerror(errno));
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ctx->mCablProp.enabled = false;
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return;
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}
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struct timeval timeout;
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timeout.tv_sec = 1; //wait 1 second before timeout
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timeout.tv_usec = 0;
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if (setsockopt(daemon_socket, SOL_SOCKET, SO_SNDTIMEO,
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(char*)&timeout, sizeof(timeout )) < 0)
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ALOGE("setsockopt failed");
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ctx->mCablProp.daemon_socket = daemon_socket;
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}
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void initContext(hwc_context_t *ctx)
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{
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if(openFramebufferDevice(ctx) < 0) {
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ALOGE("%s: failed to open framebuffer!!", __FUNCTION__);
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}
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overlay::Overlay::initOverlay();
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ctx->mOverlay = overlay::Overlay::getInstance();
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ctx->mRotMgr = new RotMgr();
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ctx->mMDP.version = qdutils::MDPVersion::getInstance().getMDPVersion();
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ctx->mMDP.hasOverlay = qdutils::MDPVersion::getInstance().hasOverlay();
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ctx->mMDP.panel = qdutils::MDPVersion::getInstance().getPanelType();
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overlay::Overlay::initOverlay();
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ctx->mOverlay = overlay::Overlay::getInstance();
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ctx->mRotMgr = new RotMgr();
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//Is created and destroyed only once for primary
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//For external it could get created and destroyed multiple times depending
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//on what external we connect to.
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ctx->mFBUpdate[HWC_DISPLAY_PRIMARY] =
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IFBUpdate::getObject(ctx->dpyAttr[HWC_DISPLAY_PRIMARY].xres,
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HWC_DISPLAY_PRIMARY);
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// Check if the target supports copybit compostion (dyn/mdp/c2d) to
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// decide if we need to open the copybit module.
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int compositionType =
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qdutils::QCCompositionType::getInstance().getCompositionType();
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if (compositionType & (qdutils::COMPOSITION_TYPE_DYN |
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qdutils::COMPOSITION_TYPE_MDP |
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qdutils::COMPOSITION_TYPE_C2D)) {
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ctx->mCopyBit[HWC_DISPLAY_PRIMARY] = new CopyBit();
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}
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ctx->mExtDisplay = new ExternalDisplay(ctx);
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for (uint32_t i = 0; i < MAX_DISPLAYS; i++) {
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ctx->mLayerRotMap[i] = new LayerRotMap();
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}
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ctx->mMDPComp[HWC_DISPLAY_PRIMARY] =
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MDPComp::getObject(ctx->dpyAttr[HWC_DISPLAY_PRIMARY].xres,
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HWC_DISPLAY_PRIMARY);
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MDPComp::init(ctx);
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ctx->vstate.enable = false;
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ctx->vstate.fakevsync = false;
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ctx->mExtDispConfiguring = false;
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ctx->mBasePipeSetup = false;
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//Right now hwc starts the service but anybody could do it, or it could be
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//independent process as well.
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QService::init();
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sp<IQClient> client = new QClient(ctx);
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interface_cast<IQService>(
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defaultServiceManager()->getService(
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String16("display.qservice")))->connect(client);
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ALOGI("Initializing Qualcomm Hardware Composer");
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ALOGI("MDP version: %d", ctx->mMDP.version);
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connectPPDaemon(ctx);
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}
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void closeContext(hwc_context_t *ctx)
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{
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if(ctx->mOverlay) {
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delete ctx->mOverlay;
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ctx->mOverlay = NULL;
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}
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if(ctx->mRotMgr) {
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delete ctx->mRotMgr;
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ctx->mRotMgr = NULL;
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}
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for(int i = 0; i < MAX_DISPLAYS; i++) {
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if(ctx->mCopyBit[i]) {
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delete ctx->mCopyBit[i];
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ctx->mCopyBit[i] = NULL;
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}
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}
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if(ctx->dpyAttr[HWC_DISPLAY_PRIMARY].fd) {
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close(ctx->dpyAttr[HWC_DISPLAY_PRIMARY].fd);
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ctx->dpyAttr[HWC_DISPLAY_PRIMARY].fd = -1;
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}
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if(ctx->mExtDisplay) {
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delete ctx->mExtDisplay;
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ctx->mExtDisplay = NULL;
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}
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for(int i = 0; i < MAX_DISPLAYS; i++) {
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if(ctx->mFBUpdate[i]) {
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delete ctx->mFBUpdate[i];
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ctx->mFBUpdate[i] = NULL;
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}
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if(ctx->mMDPComp[i]) {
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delete ctx->mMDPComp[i];
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ctx->mMDPComp[i] = NULL;
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}
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if(ctx->mLayerRotMap[i]) {
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delete ctx->mLayerRotMap[i];
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ctx->mLayerRotMap[i] = NULL;
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}
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}
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}
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void dumpsys_log(android::String8& buf, const char* fmt, ...)
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{
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va_list varargs;
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va_start(varargs, fmt);
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buf.appendFormatV(fmt, varargs);
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va_end(varargs);
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}
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/* Calculates the destination position based on the action safe rectangle */
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void getActionSafePosition(hwc_context_t *ctx, int dpy, uint32_t& x,
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uint32_t& y, uint32_t& w, uint32_t& h) {
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// if external supports underscan, do nothing
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// it will be taken care in the driver
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if(ctx->mExtDisplay->isCEUnderscanSupported())
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return;
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float wRatio = 1.0;
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float hRatio = 1.0;
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float xRatio = 1.0;
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float yRatio = 1.0;
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float fbWidth = ctx->dpyAttr[dpy].xres;
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float fbHeight = ctx->dpyAttr[dpy].yres;
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float asX = 0;
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float asY = 0;
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float asW = fbWidth;
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float asH= fbHeight;
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char value[PROPERTY_VALUE_MAX];
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// Apply action safe parameters
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property_get("hw.actionsafe.width", value, "0");
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int asWidthRatio = atoi(value);
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property_get("hw.actionsafe.height", value, "0");
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int asHeightRatio = atoi(value);
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// based on the action safe ratio, get the Action safe rectangle
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asW = fbWidth * (1.0f - asWidthRatio / 100.0f);
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asH = fbHeight * (1.0f - asHeightRatio / 100.0f);
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asX = (fbWidth - asW) / 2;
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asY = (fbHeight - asH) / 2;
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// calculate the position ratio
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xRatio = (float)x/fbWidth;
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yRatio = (float)y/fbHeight;
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wRatio = (float)w/fbWidth;
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hRatio = (float)h/fbHeight;
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//Calculate the position...
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x = (xRatio * asW) + asX;
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y = (yRatio * asH) + asY;
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w = (wRatio * asW);
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h = (hRatio * asH);
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return;
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}
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bool needsScaling(hwc_layer_1_t const* layer) {
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int dst_w, dst_h, src_w, src_h;
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hwc_rect_t displayFrame = layer->displayFrame;
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hwc_rect_t sourceCrop = layer->sourceCrop;
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dst_w = displayFrame.right - displayFrame.left;
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dst_h = displayFrame.bottom - displayFrame.top;
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src_w = sourceCrop.right - sourceCrop.left;
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src_h = sourceCrop.bottom - sourceCrop.top;
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if(((src_w != dst_w) || (src_h != dst_h)))
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return true;
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return false;
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}
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bool isAlphaScaled(hwc_layer_1_t const* layer) {
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if(needsScaling(layer) && isAlphaPresent(layer)) {
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return true;
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}
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return false;
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}
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bool isAlphaPresent(hwc_layer_1_t const* layer) {
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private_handle_t *hnd = (private_handle_t *)layer->handle;
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if(hnd) {
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int format = hnd->format;
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switch(format) {
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case HAL_PIXEL_FORMAT_RGBA_8888:
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case HAL_PIXEL_FORMAT_BGRA_8888:
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// In any more formats with Alpha go here..
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return true;
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default : return false;
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}
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}
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return false;
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}
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// Switch ppd on/off for YUV
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static void configurePPD(hwc_context_t *ctx, int yuvCount) {
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if (!ctx->mCablProp.enabled)
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return;
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if (yuvCount > 0 && !ctx->mCablProp.start) {
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ctx->mCablProp.start = true;
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if(ctx->mCablProp.videoOnly)
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ppdComm("cabl:on", ctx);
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else
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ppdComm("cabl:yuv_on", ctx);
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} else if (yuvCount == 0 && ctx->mCablProp.start) {
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ctx->mCablProp.start = false;
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if(ctx->mCablProp.videoOnly)
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ppdComm("cabl:off", ctx);
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else
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ppdComm("cabl:yuv_off", ctx);
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return;
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}
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}
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void setListStats(hwc_context_t *ctx,
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const hwc_display_contents_1_t *list, int dpy) {
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const int prevYuvCount = ctx->listStats[dpy].yuvCount;
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ctx->listStats[dpy].numAppLayers = list->numHwLayers - 1;
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ctx->listStats[dpy].fbLayerIndex = list->numHwLayers - 1;
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ctx->listStats[dpy].skipCount = 0;
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ctx->listStats[dpy].needsAlphaScale = false;
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ctx->listStats[dpy].preMultipliedAlpha = false;
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ctx->listStats[dpy].planeAlpha = false;
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ctx->listStats[dpy].yuvCount = 0;
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//reset yuv indices
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memset(ctx->listStats[dpy].yuvIndices, -1, MAX_NUM_APP_LAYERS);
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for (size_t i = 0; i < (list->numHwLayers - 1); i++) {
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hwc_layer_1_t const* layer = &list->hwLayers[i];
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private_handle_t *hnd = (private_handle_t *)layer->handle;
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// continue if i reaches MAX_NUM_APP_LAYERS
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if(i >= MAX_NUM_APP_LAYERS)
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continue;
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if(list->hwLayers[i].compositionType == HWC_FRAMEBUFFER_TARGET) {
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continue;
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//We disregard FB being skip for now! so the else if
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} else if (isSkipLayer(&list->hwLayers[i])) {
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ctx->listStats[dpy].skipCount++;
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} else if (UNLIKELY(isYuvBuffer(hnd))) {
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int& yuvCount = ctx->listStats[dpy].yuvCount;
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ctx->listStats[dpy].yuvIndices[yuvCount] = i;
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yuvCount++;
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if(layer->transform & HWC_TRANSFORM_ROT_90)
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ctx->mNeedsRotator = true;
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}
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if(layer->blending == HWC_BLENDING_PREMULT)
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ctx->listStats[dpy].preMultipliedAlpha = true;
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if(layer->planeAlpha < 0xFF)
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ctx->listStats[dpy].planeAlpha = true;
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if(!ctx->listStats[dpy].needsAlphaScale)
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ctx->listStats[dpy].needsAlphaScale = isAlphaScaled(layer);
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}
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//The marking of video begin/end is useful on some targets where we need
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//to have a padding round to be able to shift pipes across mixers.
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if(prevYuvCount != ctx->listStats[dpy].yuvCount) {
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ctx->mVideoTransFlag = true;
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}
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if (dpy == HWC_DISPLAY_PRIMARY)
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configurePPD(ctx, ctx->listStats[dpy].yuvCount);
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}
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static inline void calc_cut(float& leftCutRatio, float& topCutRatio,
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float& rightCutRatio, float& bottomCutRatio, int orient) {
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if(orient & HAL_TRANSFORM_FLIP_H) {
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swap(leftCutRatio, rightCutRatio);
|
|
}
|
|
if(orient & HAL_TRANSFORM_FLIP_V) {
|
|
swap(topCutRatio, bottomCutRatio);
|
|
}
|
|
if(orient & HAL_TRANSFORM_ROT_90) {
|
|
//Anti clock swapping
|
|
float tmpCutRatio = leftCutRatio;
|
|
leftCutRatio = topCutRatio;
|
|
topCutRatio = rightCutRatio;
|
|
rightCutRatio = bottomCutRatio;
|
|
bottomCutRatio = tmpCutRatio;
|
|
}
|
|
}
|
|
|
|
bool isSecuring(hwc_context_t* ctx, hwc_layer_1_t const* layer) {
|
|
if((ctx->mMDP.version < qdutils::MDSS_V5) &&
|
|
(ctx->mMDP.version > qdutils::MDP_V3_0) &&
|
|
ctx->mSecuring) {
|
|
return true;
|
|
}
|
|
// On A-Family, Secure policy is applied system wide and not on
|
|
// buffers.
|
|
if (isSecureModePolicy(ctx->mMDP.version)) {
|
|
private_handle_t *hnd = (private_handle_t *)layer->handle;
|
|
if(ctx->mSecureMode) {
|
|
if (! isSecureBuffer(hnd)) {
|
|
// This code path executes for the following usecase:
|
|
// Some Apps in which first few seconds, framework
|
|
// sends non-secure buffer and with out destroying
|
|
// surfaces, switches to secure buffer thereby exposing
|
|
// vulnerability on A-family devices. Catch this situation
|
|
// and handle it gracefully by allowing it to be composed by
|
|
// GPU.
|
|
ALOGD_IF(HWC_UTILS_DEBUG, "%s: Handle non-secure video layer"
|
|
"during secure playback gracefully", __FUNCTION__);
|
|
return true;
|
|
}
|
|
} else {
|
|
if (isSecureBuffer(hnd)) {
|
|
// This code path executes for the following usecase:
|
|
// For some Apps, when User terminates playback, Framework
|
|
// doesnt destroy video surface and video surface still
|
|
// comes to Display HAL. This exposes vulnerability on
|
|
// A-family. Catch this situation and handle it gracefully
|
|
// by allowing it to be composed by GPU.
|
|
ALOGD_IF(HWC_UTILS_DEBUG, "%s: Handle secure video layer"
|
|
"during non-secure playback gracefully", __FUNCTION__);
|
|
return true;
|
|
}
|
|
}
|
|
}
|
|
return false;
|
|
}
|
|
|
|
bool isSecureModePolicy(int mdpVersion) {
|
|
if (mdpVersion < qdutils::MDSS_V5)
|
|
return true;
|
|
else
|
|
return false;
|
|
}
|
|
|
|
int getBlending(int blending) {
|
|
switch(blending) {
|
|
case HWC_BLENDING_NONE:
|
|
return overlay::utils::OVERLAY_BLENDING_OPAQUE;
|
|
case HWC_BLENDING_PREMULT:
|
|
return overlay::utils::OVERLAY_BLENDING_PREMULT;
|
|
case HWC_BLENDING_COVERAGE :
|
|
default:
|
|
return overlay::utils::OVERLAY_BLENDING_COVERAGE;
|
|
}
|
|
}
|
|
|
|
//Crops source buffer against destination and FB boundaries
|
|
void calculate_crop_rects(hwc_rect_t& crop, hwc_rect_t& dst,
|
|
const hwc_rect_t& scissor, int orient) {
|
|
|
|
int& crop_l = crop.left;
|
|
int& crop_t = crop.top;
|
|
int& crop_r = crop.right;
|
|
int& crop_b = crop.bottom;
|
|
int crop_w = crop.right - crop.left;
|
|
int crop_h = crop.bottom - crop.top;
|
|
|
|
int& dst_l = dst.left;
|
|
int& dst_t = dst.top;
|
|
int& dst_r = dst.right;
|
|
int& dst_b = dst.bottom;
|
|
int dst_w = abs(dst.right - dst.left);
|
|
int dst_h = abs(dst.bottom - dst.top);
|
|
|
|
const int& sci_l = scissor.left;
|
|
const int& sci_t = scissor.top;
|
|
const int& sci_r = scissor.right;
|
|
const int& sci_b = scissor.bottom;
|
|
|
|
float leftCutRatio = 0.0f, rightCutRatio = 0.0f, topCutRatio = 0.0f,
|
|
bottomCutRatio = 0.0f;
|
|
|
|
if(dst_l < sci_l) {
|
|
leftCutRatio = (float)(sci_l - dst_l) / (float)dst_w;
|
|
dst_l = sci_l;
|
|
}
|
|
|
|
if(dst_r > sci_r) {
|
|
rightCutRatio = (float)(dst_r - sci_r) / (float)dst_w;
|
|
dst_r = sci_r;
|
|
}
|
|
|
|
if(dst_t < sci_t) {
|
|
topCutRatio = (float)(sci_t - dst_t) / (float)dst_h;
|
|
dst_t = sci_t;
|
|
}
|
|
|
|
if(dst_b > sci_b) {
|
|
bottomCutRatio = (float)(dst_b - sci_b) / (float)dst_h;
|
|
dst_b = sci_b;
|
|
}
|
|
|
|
calc_cut(leftCutRatio, topCutRatio, rightCutRatio, bottomCutRatio, orient);
|
|
crop_l += crop_w * leftCutRatio;
|
|
crop_t += crop_h * topCutRatio;
|
|
crop_r -= crop_w * rightCutRatio;
|
|
crop_b -= crop_h * bottomCutRatio;
|
|
}
|
|
|
|
void getNonWormholeRegion(hwc_display_contents_1_t* list,
|
|
hwc_rect_t& nwr)
|
|
{
|
|
uint32_t last = list->numHwLayers - 1;
|
|
hwc_rect_t fbDisplayFrame = list->hwLayers[last].displayFrame;
|
|
//Initiliaze nwr to first frame
|
|
nwr.left = list->hwLayers[0].displayFrame.left;
|
|
nwr.top = list->hwLayers[0].displayFrame.top;
|
|
nwr.right = list->hwLayers[0].displayFrame.right;
|
|
nwr.bottom = list->hwLayers[0].displayFrame.bottom;
|
|
|
|
for (uint32_t i = 1; i < last; i++) {
|
|
hwc_rect_t displayFrame = list->hwLayers[i].displayFrame;
|
|
nwr.left = min(nwr.left, displayFrame.left);
|
|
nwr.top = min(nwr.top, displayFrame.top);
|
|
nwr.right = max(nwr.right, displayFrame.right);
|
|
nwr.bottom = max(nwr.bottom, displayFrame.bottom);
|
|
}
|
|
|
|
//Intersect with the framebuffer
|
|
nwr.left = max(nwr.left, fbDisplayFrame.left);
|
|
nwr.top = max(nwr.top, fbDisplayFrame.top);
|
|
nwr.right = min(nwr.right, fbDisplayFrame.right);
|
|
nwr.bottom = min(nwr.bottom, fbDisplayFrame.bottom);
|
|
|
|
}
|
|
|
|
bool isExternalActive(hwc_context_t* ctx) {
|
|
return ctx->dpyAttr[HWC_DISPLAY_EXTERNAL].isActive;
|
|
}
|
|
|
|
void closeAcquireFds(hwc_display_contents_1_t* list) {
|
|
if(LIKELY(list)) {
|
|
for(uint32_t i = 0; i < list->numHwLayers; i++) {
|
|
//Close the acquireFenceFds
|
|
//HWC_FRAMEBUFFER are -1 already by SF, rest we close.
|
|
if(list->hwLayers[i].acquireFenceFd >= 0) {
|
|
close(list->hwLayers[i].acquireFenceFd);
|
|
list->hwLayers[i].acquireFenceFd = -1;
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
int hwc_sync(hwc_context_t *ctx, hwc_display_contents_1_t* list, int dpy,
|
|
int fd) {
|
|
int ret = 0;
|
|
int acquireFd[MAX_NUM_APP_LAYERS];
|
|
int count = 0;
|
|
int releaseFd = -1;
|
|
int retireFd = -1;
|
|
int fbFd = -1;
|
|
bool swapzero = false;
|
|
int mdpVersion = qdutils::MDPVersion::getInstance().getMDPVersion();
|
|
|
|
struct mdp_buf_sync data;
|
|
memset(&data, 0, sizeof(data));
|
|
//Until B-family supports sync for rotator
|
|
if(mdpVersion >= qdutils::MDSS_V5) {
|
|
data.flags = MDP_BUF_SYNC_FLAG_WAIT;
|
|
}
|
|
data.acq_fen_fd = acquireFd;
|
|
data.rel_fen_fd = &releaseFd;
|
|
data.retire_fen_fd = &retireFd;
|
|
|
|
#ifdef DEBUG_SWAPINTERVAL
|
|
char property[PROPERTY_VALUE_MAX];
|
|
if(property_get("debug.egl.swapinterval", property, "1") > 0) {
|
|
if(atoi(property) == 0)
|
|
swapzero = true;
|
|
}
|
|
#endif
|
|
|
|
#ifndef MDSS_TARGET
|
|
//Send acquireFenceFds to rotator
|
|
if(mdpVersion < qdutils::MDSS_V5) {
|
|
//A-family
|
|
int rotFd = ctx->mRotMgr->getRotDevFd();
|
|
struct msm_rotator_buf_sync rotData;
|
|
|
|
for(uint32_t i = 0; i < ctx->mLayerRotMap[dpy]->getCount(); i++) {
|
|
memset(&rotData, 0, sizeof(rotData));
|
|
int& acquireFenceFd =
|
|
ctx->mLayerRotMap[dpy]->getLayer(i)->acquireFenceFd;
|
|
rotData.acq_fen_fd = acquireFenceFd;
|
|
rotData.session_id = ctx->mLayerRotMap[dpy]->getRot(i)->getSessId();
|
|
ioctl(rotFd, MSM_ROTATOR_IOCTL_BUFFER_SYNC, &rotData);
|
|
close(acquireFenceFd);
|
|
//For MDP to wait on.
|
|
acquireFenceFd = dup(rotData.rel_fen_fd);
|
|
//A buffer is free to be used by producer as soon as its copied to
|
|
//rotator.
|
|
ctx->mLayerRotMap[dpy]->getLayer(i)->releaseFenceFd =
|
|
rotData.rel_fen_fd;
|
|
}
|
|
} else {
|
|
//TODO B-family
|
|
}
|
|
|
|
#endif
|
|
//Accumulate acquireFenceFds for MDP
|
|
for(uint32_t i = 0; i < list->numHwLayers; i++) {
|
|
if(list->hwLayers[i].compositionType == HWC_OVERLAY &&
|
|
list->hwLayers[i].acquireFenceFd >= 0) {
|
|
if(UNLIKELY(swapzero))
|
|
acquireFd[count++] = -1;
|
|
else
|
|
acquireFd[count++] = list->hwLayers[i].acquireFenceFd;
|
|
}
|
|
if(list->hwLayers[i].compositionType == HWC_FRAMEBUFFER_TARGET) {
|
|
if(UNLIKELY(swapzero))
|
|
acquireFd[count++] = -1;
|
|
else if(fd >= 0) {
|
|
//set the acquireFD from fd - which is coming from c2d
|
|
acquireFd[count++] = fd;
|
|
// Buffer sync IOCTL should be async when using c2d fence is
|
|
// used
|
|
data.flags &= ~MDP_BUF_SYNC_FLAG_WAIT;
|
|
} else if(list->hwLayers[i].acquireFenceFd >= 0)
|
|
acquireFd[count++] = list->hwLayers[i].acquireFenceFd;
|
|
}
|
|
}
|
|
|
|
data.acq_fen_fd_cnt = count;
|
|
fbFd = ctx->dpyAttr[dpy].fd;
|
|
|
|
//Waits for acquire fences, returns a release fence
|
|
if(LIKELY(!swapzero)) {
|
|
uint64_t start = systemTime();
|
|
ret = ioctl(fbFd, MSMFB_BUFFER_SYNC, &data);
|
|
ALOGD_IF(HWC_UTILS_DEBUG, "%s: time taken for MSMFB_BUFFER_SYNC IOCTL = %d",
|
|
__FUNCTION__, (size_t) ns2ms(systemTime() - start));
|
|
}
|
|
|
|
if(ret < 0) {
|
|
ALOGE("ioctl MSMFB_BUFFER_SYNC failed, err=%s",
|
|
strerror(errno));
|
|
}
|
|
|
|
for(uint32_t i = 0; i < list->numHwLayers; i++) {
|
|
if(list->hwLayers[i].compositionType == HWC_OVERLAY ||
|
|
list->hwLayers[i].compositionType == HWC_FRAMEBUFFER_TARGET) {
|
|
//Populate releaseFenceFds.
|
|
if(UNLIKELY(swapzero)) {
|
|
list->hwLayers[i].releaseFenceFd = -1;
|
|
} else if(list->hwLayers[i].releaseFenceFd < 0) {
|
|
//If rotator has not already populated this field.
|
|
list->hwLayers[i].releaseFenceFd = dup(releaseFd);
|
|
}
|
|
}
|
|
}
|
|
|
|
if(fd >= 0) {
|
|
close(fd);
|
|
fd = -1;
|
|
}
|
|
|
|
if (ctx->mCopyBit[dpy])
|
|
ctx->mCopyBit[dpy]->setReleaseFd(releaseFd);
|
|
|
|
//A-family
|
|
if(mdpVersion < qdutils::MDSS_V5) {
|
|
//Signals when MDP finishes reading rotator buffers.
|
|
ctx->mLayerRotMap[dpy]->setReleaseFd(releaseFd);
|
|
}
|
|
close(releaseFd);
|
|
if(UNLIKELY(swapzero))
|
|
list->retireFenceFd = -1;
|
|
else
|
|
list->retireFenceFd = retireFd;
|
|
return ret;
|
|
}
|
|
|
|
void trimLayer(hwc_context_t *ctx, const int& dpy, const int& transform,
|
|
hwc_rect_t& crop, hwc_rect_t& dst) {
|
|
int hw_w = ctx->dpyAttr[dpy].xres;
|
|
int hw_h = ctx->dpyAttr[dpy].yres;
|
|
if(dst.left < 0 || dst.top < 0 ||
|
|
dst.right > hw_w || dst.bottom > hw_h) {
|
|
hwc_rect_t scissor = {0, 0, hw_w, hw_h };
|
|
qhwc::calculate_crop_rects(crop, dst, scissor, transform);
|
|
}
|
|
}
|
|
|
|
void setMdpFlags(hwc_layer_1_t *layer,
|
|
ovutils::eMdpFlags &mdpFlags,
|
|
int rotDownscale) {
|
|
private_handle_t *hnd = (private_handle_t *)layer->handle;
|
|
MetaData_t *metadata = (MetaData_t *)hnd->base_metadata;
|
|
const int& transform = layer->transform;
|
|
|
|
if(layer->blending == HWC_BLENDING_PREMULT) {
|
|
ovutils::setMdpFlags(mdpFlags,
|
|
ovutils::OV_MDP_BLEND_FG_PREMULT);
|
|
}
|
|
|
|
if(isYuvBuffer(hnd)) {
|
|
if(isSecureBuffer(hnd)) {
|
|
ovutils::setMdpFlags(mdpFlags,
|
|
ovutils::OV_MDP_SECURE_OVERLAY_SESSION);
|
|
}
|
|
if(metadata && (metadata->operation & PP_PARAM_INTERLACED) &&
|
|
metadata->interlaced) {
|
|
ovutils::setMdpFlags(mdpFlags,
|
|
ovutils::OV_MDP_DEINTERLACE);
|
|
}
|
|
//Pre-rotation will be used using rotator.
|
|
if(transform & HWC_TRANSFORM_ROT_90) {
|
|
ovutils::setMdpFlags(mdpFlags,
|
|
ovutils::OV_MDP_SOURCE_ROTATED_90);
|
|
}
|
|
}
|
|
|
|
//No 90 component and no rot-downscale then flips done by MDP
|
|
//If we use rot then it might as well do flips
|
|
if(!(layer->transform & HWC_TRANSFORM_ROT_90) && !rotDownscale) {
|
|
if(layer->transform & HWC_TRANSFORM_FLIP_H) {
|
|
ovutils::setMdpFlags(mdpFlags, ovutils::OV_MDP_FLIP_H);
|
|
}
|
|
|
|
if(layer->transform & HWC_TRANSFORM_FLIP_V) {
|
|
ovutils::setMdpFlags(mdpFlags, ovutils::OV_MDP_FLIP_V);
|
|
}
|
|
}
|
|
|
|
if(metadata &&
|
|
((metadata->operation & PP_PARAM_HSIC)
|
|
|| (metadata->operation & PP_PARAM_IGC)
|
|
|| (metadata->operation & PP_PARAM_SHARP2))) {
|
|
ovutils::setMdpFlags(mdpFlags, ovutils::OV_MDP_PP_EN);
|
|
}
|
|
}
|
|
|
|
static inline int configRotator(Rotator *rot, const Whf& whf,
|
|
const Whf& origWhf, const eMdpFlags& mdpFlags,
|
|
const eTransform& orient,
|
|
const int& downscale) {
|
|
rot->setSource(whf, origWhf);
|
|
rot->setFlags(mdpFlags);
|
|
rot->setTransform(orient);
|
|
rot->setDownscale(downscale);
|
|
if(!rot->commit()) return -1;
|
|
return 0;
|
|
}
|
|
|
|
/*
|
|
* Sets up BORDERFILL as default base pipe and detaches RGB0.
|
|
* Framebuffer is always updated using PLAY ioctl.
|
|
*/
|
|
bool setupBasePipe(hwc_context_t *ctx) {
|
|
const int dpy = HWC_DISPLAY_PRIMARY;
|
|
int fb_width = ctx->dpyAttr[dpy].xres;
|
|
int fb_height = ctx->dpyAttr[dpy].yres;
|
|
int fb_fd = ctx->dpyAttr[dpy].fd;
|
|
|
|
mdp_overlay ovInfo;
|
|
msmfb_overlay_data ovData;
|
|
memset(&ovInfo, 0, sizeof(mdp_overlay));
|
|
memset(&ovData, 0, sizeof(msmfb_overlay_data));
|
|
|
|
ovInfo.src.format = MDP_RGB_BORDERFILL;
|
|
ovInfo.src.width = fb_width;
|
|
ovInfo.src.height = fb_height;
|
|
ovInfo.src_rect.w = fb_width;
|
|
ovInfo.src_rect.h = fb_height;
|
|
ovInfo.dst_rect.w = fb_width;
|
|
ovInfo.dst_rect.h = fb_height;
|
|
ovInfo.id = MSMFB_NEW_REQUEST;
|
|
|
|
if (ioctl(fb_fd, MSMFB_OVERLAY_SET, &ovInfo) < 0) {
|
|
ALOGE("Failed to call ioctl MSMFB_OVERLAY_SET err=%s",
|
|
strerror(errno));
|
|
return false;
|
|
}
|
|
|
|
ovData.id = ovInfo.id;
|
|
if (ioctl(fb_fd, MSMFB_OVERLAY_PLAY, &ovData) < 0) {
|
|
ALOGE("Failed to call ioctl MSMFB_OVERLAY_PLAY err=%s",
|
|
strerror(errno));
|
|
return false;
|
|
}
|
|
ctx->mBasePipeSetup = true;
|
|
return true;
|
|
}
|
|
|
|
|
|
static inline int configMdp(Overlay *ov, const PipeArgs& parg,
|
|
const eTransform& orient, const hwc_rect_t& crop,
|
|
const hwc_rect_t& pos, const MetaData_t *metadata,
|
|
const eDest& dest) {
|
|
ov->setSource(parg, dest);
|
|
ov->setTransform(orient, dest);
|
|
|
|
int crop_w = crop.right - crop.left;
|
|
int crop_h = crop.bottom - crop.top;
|
|
Dim dcrop(crop.left, crop.top, crop_w, crop_h);
|
|
ov->setCrop(dcrop, dest);
|
|
|
|
int posW = pos.right - pos.left;
|
|
int posH = pos.bottom - pos.top;
|
|
Dim position(pos.left, pos.top, posW, posH);
|
|
ov->setPosition(position, dest);
|
|
|
|
if (metadata)
|
|
ov->setVisualParams(*metadata, dest);
|
|
|
|
if (!ov->commit(dest)) {
|
|
return -1;
|
|
}
|
|
return 0;
|
|
}
|
|
|
|
static inline void updateSource(eTransform& orient, Whf& whf,
|
|
hwc_rect_t& crop) {
|
|
Dim srcCrop(crop.left, crop.top,
|
|
crop.right - crop.left,
|
|
crop.bottom - crop.top);
|
|
//getMdpOrient will switch the flips if the source is 90 rotated.
|
|
//Clients in Android dont factor in 90 rotation while deciding the flip.
|
|
orient = static_cast<eTransform>(ovutils::getMdpOrient(orient));
|
|
preRotateSource(orient, whf, srcCrop);
|
|
crop.left = srcCrop.x;
|
|
crop.top = srcCrop.y;
|
|
crop.right = srcCrop.x + srcCrop.w;
|
|
crop.bottom = srcCrop.y + srcCrop.h;
|
|
}
|
|
|
|
int configureLowRes(hwc_context_t *ctx, hwc_layer_1_t *layer,
|
|
const int& dpy, eMdpFlags& mdpFlags, const eZorder& z,
|
|
const eIsFg& isFg, const eDest& dest, Rotator **rot) {
|
|
|
|
private_handle_t *hnd = (private_handle_t *)layer->handle;
|
|
if(!hnd) {
|
|
ALOGE("%s: layer handle is NULL", __FUNCTION__);
|
|
return -1;
|
|
}
|
|
|
|
MetaData_t *metadata = (MetaData_t *)hnd->base_metadata;
|
|
|
|
hwc_rect_t crop = layer->sourceCrop;
|
|
hwc_rect_t dst = layer->displayFrame;
|
|
int transform = layer->transform;
|
|
eTransform orient = static_cast<eTransform>(transform);
|
|
int downscale = 0;
|
|
int rotFlags = ovutils::ROT_FLAGS_NONE;
|
|
Whf whf(getWidth(hnd), getHeight(hnd),
|
|
getMdpFormat(hnd->format), hnd->size);
|
|
bool forceRot = false;
|
|
|
|
if(isYuvBuffer(hnd) && ctx->mMDP.version >= qdutils::MDP_V4_2 &&
|
|
ctx->mMDP.version < qdutils::MDSS_V5) {
|
|
downscale = getDownscaleFactor(
|
|
crop.right - crop.left,
|
|
crop.bottom - crop.top,
|
|
dst.right - dst.left,
|
|
dst.bottom - dst.top);
|
|
if(downscale) {
|
|
rotFlags = ROT_DOWNSCALE_ENABLED;
|
|
}
|
|
unsigned int& prevWidth = ctx->mPrevWHF[dpy].w;
|
|
unsigned int& prevHeight = ctx->mPrevWHF[dpy].h;
|
|
if(prevWidth != (uint32_t)getWidth(hnd) ||
|
|
prevHeight != (uint32_t)getHeight(hnd)) {
|
|
uint32_t prevBufArea = (prevWidth * prevHeight);
|
|
if(prevBufArea) {
|
|
forceRot = true;
|
|
}
|
|
prevWidth = (uint32_t)getWidth(hnd);
|
|
prevHeight = (uint32_t)getHeight(hnd);
|
|
}
|
|
}
|
|
|
|
setMdpFlags(layer, mdpFlags, downscale);
|
|
trimLayer(ctx, dpy, transform, crop, dst);
|
|
|
|
if(isYuvBuffer(hnd) && //if 90 component or downscale, use rot
|
|
((transform & HWC_TRANSFORM_ROT_90) || downscale || forceRot)) {
|
|
*rot = ctx->mRotMgr->getNext();
|
|
if(*rot == NULL) return -1;
|
|
//Configure rotator for pre-rotation
|
|
Whf origWhf(hnd->width, hnd->height,
|
|
getMdpFormat(hnd->format), hnd->size);
|
|
if(configRotator(*rot, whf, origWhf, mdpFlags, orient, downscale) < 0)
|
|
return -1;
|
|
ctx->mLayerRotMap[dpy]->add(layer, *rot);
|
|
whf.format = (*rot)->getDstFormat();
|
|
updateSource(orient, whf, crop);
|
|
rotFlags |= ovutils::ROT_PREROTATED;
|
|
}
|
|
|
|
//For the mdp, since either we are pre-rotating or MDP does flips
|
|
orient = OVERLAY_TRANSFORM_0;
|
|
transform = 0;
|
|
|
|
PipeArgs parg(mdpFlags, whf, z, isFg,
|
|
static_cast<eRotFlags>(rotFlags), layer->planeAlpha,
|
|
(ovutils::eBlending) getBlending(layer->blending));
|
|
|
|
if(configMdp(ctx->mOverlay, parg, orient, crop, dst, metadata, dest) < 0) {
|
|
ALOGE("%s: commit failed for low res panel", __FUNCTION__);
|
|
ctx->mLayerRotMap[dpy]->reset();
|
|
return -1;
|
|
}
|
|
return 0;
|
|
}
|
|
|
|
int configureHighRes(hwc_context_t *ctx, hwc_layer_1_t *layer,
|
|
const int& dpy, eMdpFlags& mdpFlagsL, const eZorder& z,
|
|
const eIsFg& isFg, const eDest& lDest, const eDest& rDest,
|
|
Rotator **rot) {
|
|
private_handle_t *hnd = (private_handle_t *)layer->handle;
|
|
if(!hnd) {
|
|
ALOGE("%s: layer handle is NULL", __FUNCTION__);
|
|
return -1;
|
|
}
|
|
|
|
MetaData_t *metadata = (MetaData_t *)hnd->base_metadata;
|
|
|
|
int hw_w = ctx->dpyAttr[dpy].xres;
|
|
int hw_h = ctx->dpyAttr[dpy].yres;
|
|
hwc_rect_t crop = layer->sourceCrop;
|
|
hwc_rect_t dst = layer->displayFrame;
|
|
int transform = layer->transform;
|
|
eTransform orient = static_cast<eTransform>(transform);
|
|
const int downscale = 0;
|
|
int rotFlags = ROT_FLAGS_NONE;
|
|
|
|
Whf whf(getWidth(hnd), getHeight(hnd),
|
|
getMdpFormat(hnd->format), hnd->size);
|
|
|
|
setMdpFlags(layer, mdpFlagsL);
|
|
trimLayer(ctx, dpy, transform, crop, dst);
|
|
|
|
if(isYuvBuffer(hnd) && (transform & HWC_TRANSFORM_ROT_90)) {
|
|
(*rot) = ctx->mRotMgr->getNext();
|
|
if((*rot) == NULL) return -1;
|
|
//Configure rotator for pre-rotation
|
|
Whf origWhf(hnd->width, hnd->height,
|
|
getMdpFormat(hnd->format), hnd->size);
|
|
if(configRotator(*rot, whf, origWhf, mdpFlagsL, orient, downscale) < 0)
|
|
return -1;
|
|
ctx->mLayerRotMap[dpy]->add(layer, *rot);
|
|
whf.format = (*rot)->getDstFormat();
|
|
updateSource(orient, whf, crop);
|
|
rotFlags |= ROT_PREROTATED;
|
|
}
|
|
|
|
eMdpFlags mdpFlagsR = mdpFlagsL;
|
|
setMdpFlags(mdpFlagsR, OV_MDSS_MDP_RIGHT_MIXER);
|
|
|
|
hwc_rect_t tmp_cropL, tmp_dstL;
|
|
hwc_rect_t tmp_cropR, tmp_dstR;
|
|
|
|
if(lDest != OV_INVALID) {
|
|
tmp_cropL = crop;
|
|
tmp_dstL = dst;
|
|
hwc_rect_t scissor = {0, 0, hw_w/2, hw_h };
|
|
qhwc::calculate_crop_rects(tmp_cropL, tmp_dstL, scissor, 0);
|
|
}
|
|
if(rDest != OV_INVALID) {
|
|
tmp_cropR = crop;
|
|
tmp_dstR = dst;
|
|
hwc_rect_t scissor = {hw_w/2, 0, hw_w, hw_h };
|
|
qhwc::calculate_crop_rects(tmp_cropR, tmp_dstR, scissor, 0);
|
|
}
|
|
|
|
//When buffer is flipped, contents of mixer config also needs to swapped.
|
|
//Not needed if the layer is confined to one half of the screen.
|
|
//If rotator has been used then it has also done the flips, so ignore them.
|
|
if((orient & OVERLAY_TRANSFORM_FLIP_V) && lDest != OV_INVALID
|
|
&& rDest != OV_INVALID && rot == NULL) {
|
|
hwc_rect_t new_cropR;
|
|
new_cropR.left = tmp_cropL.left;
|
|
new_cropR.right = new_cropR.left + (tmp_cropR.right - tmp_cropR.left);
|
|
|
|
hwc_rect_t new_cropL;
|
|
new_cropL.left = new_cropR.right;
|
|
new_cropL.right = tmp_cropR.right;
|
|
|
|
tmp_cropL.left = new_cropL.left;
|
|
tmp_cropL.right = new_cropL.right;
|
|
|
|
tmp_cropR.left = new_cropR.left;
|
|
tmp_cropR.right = new_cropR.right;
|
|
|
|
}
|
|
|
|
//For the mdp, since either we are pre-rotating or MDP does flips
|
|
orient = OVERLAY_TRANSFORM_0;
|
|
transform = 0;
|
|
|
|
//configure left mixer
|
|
if(lDest != OV_INVALID) {
|
|
PipeArgs pargL(mdpFlagsL, whf, z, isFg,
|
|
static_cast<eRotFlags>(rotFlags), layer->planeAlpha,
|
|
(ovutils::eBlending) getBlending(layer->blending));
|
|
|
|
if(configMdp(ctx->mOverlay, pargL, orient,
|
|
tmp_cropL, tmp_dstL, metadata, lDest) < 0) {
|
|
ALOGE("%s: commit failed for left mixer config", __FUNCTION__);
|
|
return -1;
|
|
}
|
|
}
|
|
|
|
//configure right mixer
|
|
if(rDest != OV_INVALID) {
|
|
PipeArgs pargR(mdpFlagsR, whf, z, isFg,
|
|
static_cast<eRotFlags>(rotFlags), layer->planeAlpha,
|
|
(ovutils::eBlending) getBlending(layer->blending));
|
|
|
|
tmp_dstR.right = tmp_dstR.right - tmp_dstR.left;
|
|
tmp_dstR.left = 0;
|
|
if(configMdp(ctx->mOverlay, pargR, orient,
|
|
tmp_cropR, tmp_dstR, metadata, rDest) < 0) {
|
|
ALOGE("%s: commit failed for right mixer config", __FUNCTION__);
|
|
return -1;
|
|
}
|
|
}
|
|
|
|
return 0;
|
|
}
|
|
|
|
void LayerRotMap::add(hwc_layer_1_t* layer, Rotator *rot) {
|
|
if(mCount >= MAX_SESS) return;
|
|
mLayer[mCount] = layer;
|
|
mRot[mCount] = rot;
|
|
mCount++;
|
|
}
|
|
|
|
void LayerRotMap::reset() {
|
|
for (int i = 0; i < MAX_SESS; i++) {
|
|
mLayer[i] = 0;
|
|
mRot[i] = 0;
|
|
}
|
|
mCount = 0;
|
|
}
|
|
|
|
void LayerRotMap::setReleaseFd(const int& fence) {
|
|
for(uint32_t i = 0; i < mCount; i++) {
|
|
mRot[i]->setReleaseFd(dup(fence));
|
|
}
|
|
}
|
|
|
|
};//namespace qhwc
|