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986 lines
29 KiB
986 lines
29 KiB
/* |
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* Copyright (C) 2015 The Android Open Source Project |
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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 ATRACE_TAG ATRACE_TAG_GRAPHICS |
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#define LOG_TAG "hwcomposer-drm" |
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#include "drmhwcomposer.h" |
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#include "drmeventlistener.h" |
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#include "drmresources.h" |
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#include "platform.h" |
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#include "virtualcompositorworker.h" |
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#include "vsyncworker.h" |
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#include <stdlib.h> |
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#include <cinttypes> |
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#include <map> |
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#include <vector> |
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#include <sstream> |
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#include <errno.h> |
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#include <fcntl.h> |
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#include <sys/param.h> |
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#include <sys/resource.h> |
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#include <xf86drm.h> |
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#include <xf86drmMode.h> |
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#include <cutils/log.h> |
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#include <cutils/properties.h> |
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#include <hardware/hardware.h> |
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#include <hardware/hwcomposer.h> |
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#include <sw_sync.h> |
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#include <sync/sync.h> |
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#include <utils/Trace.h> |
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#define UM_PER_INCH 25400 |
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namespace android { |
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class DummySwSyncTimeline { |
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public: |
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int Init() { |
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int ret = timeline_fd_.Set(sw_sync_timeline_create()); |
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if (ret < 0) |
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return ret; |
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return 0; |
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} |
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UniqueFd CreateDummyFence() { |
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int ret = sw_sync_fence_create(timeline_fd_.get(), "dummy fence", |
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timeline_pt_ + 1); |
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if (ret < 0) { |
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ALOGE("Failed to create dummy fence %d", ret); |
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return ret; |
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} |
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UniqueFd ret_fd(ret); |
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ret = sw_sync_timeline_inc(timeline_fd_.get(), 1); |
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if (ret) { |
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ALOGE("Failed to increment dummy sync timeline %d", ret); |
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return ret; |
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} |
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++timeline_pt_; |
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return ret_fd; |
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} |
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private: |
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UniqueFd timeline_fd_; |
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int timeline_pt_ = 0; |
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}; |
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struct CheckedOutputFd { |
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CheckedOutputFd(int *fd, const char *description, |
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DummySwSyncTimeline &timeline) |
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: fd_(fd), description_(description), timeline_(timeline) { |
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} |
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CheckedOutputFd(CheckedOutputFd &&rhs) |
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: description_(rhs.description_), timeline_(rhs.timeline_) { |
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std::swap(fd_, rhs.fd_); |
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} |
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CheckedOutputFd &operator=(const CheckedOutputFd &rhs) = delete; |
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~CheckedOutputFd() { |
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if (fd_ == NULL) |
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return; |
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if (*fd_ >= 0) |
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return; |
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*fd_ = timeline_.CreateDummyFence().Release(); |
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if (*fd_ < 0) |
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ALOGE("Failed to fill %s (%p == %d) before destruction", |
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description_.c_str(), fd_, *fd_); |
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} |
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private: |
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int *fd_ = NULL; |
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std::string description_; |
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DummySwSyncTimeline &timeline_; |
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}; |
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typedef struct hwc_drm_display { |
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struct hwc_context_t *ctx; |
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int display; |
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std::vector<uint32_t> config_ids; |
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VSyncWorker vsync_worker; |
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} hwc_drm_display_t; |
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class DrmHotplugHandler : public DrmEventHandler { |
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public: |
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void Init(DrmResources *drm, const struct hwc_procs *procs) { |
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drm_ = drm; |
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procs_ = procs; |
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} |
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void HandleEvent(uint64_t timestamp_us) { |
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for (auto &conn : drm_->connectors()) { |
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drmModeConnection old_state = conn->state(); |
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conn->UpdateModes(); |
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drmModeConnection cur_state = conn->state(); |
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if (cur_state == old_state) |
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continue; |
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ALOGI("%s event @%" PRIu64 " for connector %u\n", |
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cur_state == DRM_MODE_CONNECTED ? "Plug" : "Unplug", timestamp_us, |
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conn->id()); |
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if (cur_state == DRM_MODE_CONNECTED) { |
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// Take the first one, then look for the preferred |
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DrmMode mode = *(conn->modes().begin()); |
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for (auto &m : conn->modes()) { |
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if (m.type() & DRM_MODE_TYPE_PREFERRED) { |
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mode = m; |
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break; |
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} |
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} |
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ALOGI("Setting mode %dx%d for connector %d\n", mode.h_display(), |
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mode.v_display(), conn->id()); |
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int ret = drm_->SetDisplayActiveMode(conn->display(), mode); |
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if (ret) { |
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ALOGE("Failed to set active config %d", ret); |
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return; |
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} |
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} else { |
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int ret = drm_->SetDpmsMode(conn->display(), DRM_MODE_DPMS_OFF); |
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if (ret) { |
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ALOGE("Failed to set dpms mode off %d", ret); |
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return; |
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} |
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} |
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procs_->hotplug(procs_, conn->display(), |
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cur_state == DRM_MODE_CONNECTED ? 1 : 0); |
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} |
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} |
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private: |
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DrmResources *drm_ = NULL; |
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const struct hwc_procs *procs_ = NULL; |
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}; |
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struct hwc_context_t { |
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// map of display:hwc_drm_display_t |
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typedef std::map<int, hwc_drm_display_t> DisplayMap; |
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~hwc_context_t() { |
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virtual_compositor_worker.Exit(); |
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} |
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hwc_composer_device_1_t device; |
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hwc_procs_t const *procs = NULL; |
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DisplayMap displays; |
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DrmResources drm; |
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std::unique_ptr<Importer> importer; |
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const gralloc_module_t *gralloc; |
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DummySwSyncTimeline dummy_timeline; |
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VirtualCompositorWorker virtual_compositor_worker; |
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DrmHotplugHandler hotplug_handler; |
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}; |
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static native_handle_t *dup_buffer_handle(buffer_handle_t handle) { |
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native_handle_t *new_handle = |
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native_handle_create(handle->numFds, handle->numInts); |
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if (new_handle == NULL) |
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return NULL; |
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const int *old_data = handle->data; |
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int *new_data = new_handle->data; |
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for (int i = 0; i < handle->numFds; i++) { |
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*new_data = dup(*old_data); |
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old_data++; |
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new_data++; |
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} |
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memcpy(new_data, old_data, sizeof(int) * handle->numInts); |
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return new_handle; |
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} |
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static void free_buffer_handle(native_handle_t *handle) { |
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int ret = native_handle_close(handle); |
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if (ret) |
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ALOGE("Failed to close native handle %d", ret); |
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ret = native_handle_delete(handle); |
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if (ret) |
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ALOGE("Failed to delete native handle %d", ret); |
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} |
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const hwc_drm_bo *DrmHwcBuffer::operator->() const { |
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if (importer_ == NULL) { |
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ALOGE("Access of non-existent BO"); |
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exit(1); |
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return NULL; |
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} |
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return &bo_; |
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} |
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void DrmHwcBuffer::Clear() { |
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if (importer_ != NULL) { |
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importer_->ReleaseBuffer(&bo_); |
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importer_ = NULL; |
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} |
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} |
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int DrmHwcBuffer::ImportBuffer(buffer_handle_t handle, Importer *importer) { |
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hwc_drm_bo tmp_bo; |
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int ret = importer->ImportBuffer(handle, &tmp_bo); |
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if (ret) |
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return ret; |
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if (importer_ != NULL) { |
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importer_->ReleaseBuffer(&bo_); |
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} |
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importer_ = importer; |
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bo_ = tmp_bo; |
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return 0; |
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} |
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int DrmHwcNativeHandle::CopyBufferHandle(buffer_handle_t handle, |
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const gralloc_module_t *gralloc) { |
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native_handle_t *handle_copy = dup_buffer_handle(handle); |
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if (handle_copy == NULL) { |
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ALOGE("Failed to duplicate handle"); |
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return -ENOMEM; |
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} |
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int ret = gralloc->registerBuffer(gralloc, handle_copy); |
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if (ret) { |
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ALOGE("Failed to register buffer handle %d", ret); |
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free_buffer_handle(handle_copy); |
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return ret; |
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} |
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Clear(); |
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gralloc_ = gralloc; |
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handle_ = handle_copy; |
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return 0; |
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} |
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DrmHwcNativeHandle::~DrmHwcNativeHandle() { |
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Clear(); |
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} |
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void DrmHwcNativeHandle::Clear() { |
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if (gralloc_ != NULL && handle_ != NULL) { |
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gralloc_->unregisterBuffer(gralloc_, handle_); |
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free_buffer_handle(handle_); |
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gralloc_ = NULL; |
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handle_ = NULL; |
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} |
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} |
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int DrmHwcLayer::InitFromHwcLayer(hwc_layer_1_t *sf_layer, Importer *importer, |
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const gralloc_module_t *gralloc) { |
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sf_handle = sf_layer->handle; |
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alpha = sf_layer->planeAlpha; |
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source_crop = DrmHwcRect<float>( |
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sf_layer->sourceCropf.left, sf_layer->sourceCropf.top, |
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sf_layer->sourceCropf.right, sf_layer->sourceCropf.bottom); |
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display_frame = DrmHwcRect<int>( |
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sf_layer->displayFrame.left, sf_layer->displayFrame.top, |
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sf_layer->displayFrame.right, sf_layer->displayFrame.bottom); |
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transform = 0; |
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// 270* and 180* cannot be combined with flips. More specifically, they |
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// already contain both horizontal and vertical flips, so those fields are |
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// redundant in this case. 90* rotation can be combined with either horizontal |
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// flip or vertical flip, so treat it differently |
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if (sf_layer->transform == HWC_TRANSFORM_ROT_270) { |
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transform = DrmHwcTransform::kRotate270; |
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} else if (sf_layer->transform == HWC_TRANSFORM_ROT_180) { |
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transform = DrmHwcTransform::kRotate180; |
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} else { |
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if (sf_layer->transform & HWC_TRANSFORM_FLIP_H) |
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transform |= DrmHwcTransform::kFlipH; |
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if (sf_layer->transform & HWC_TRANSFORM_FLIP_V) |
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transform |= DrmHwcTransform::kFlipV; |
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if (sf_layer->transform & HWC_TRANSFORM_ROT_90) |
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transform |= DrmHwcTransform::kRotate90; |
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} |
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switch (sf_layer->blending) { |
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case HWC_BLENDING_NONE: |
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blending = DrmHwcBlending::kNone; |
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break; |
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case HWC_BLENDING_PREMULT: |
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blending = DrmHwcBlending::kPreMult; |
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break; |
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case HWC_BLENDING_COVERAGE: |
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blending = DrmHwcBlending::kCoverage; |
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break; |
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default: |
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ALOGE("Invalid blending in hwc_layer_1_t %d", sf_layer->blending); |
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return -EINVAL; |
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} |
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int ret = buffer.ImportBuffer(sf_layer->handle, importer); |
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if (ret) |
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return ret; |
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ret = handle.CopyBufferHandle(sf_layer->handle, gralloc); |
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if (ret) |
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return ret; |
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ret = gralloc->perform(gralloc, GRALLOC_MODULE_PERFORM_GET_USAGE, |
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handle.get(), &gralloc_buffer_usage); |
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if (ret) { |
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ALOGE("Failed to get usage for buffer %p (%d)", handle.get(), ret); |
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return ret; |
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} |
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return 0; |
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} |
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static void hwc_dump(struct hwc_composer_device_1 *dev, char *buff, |
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int buff_len) { |
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struct hwc_context_t *ctx = (struct hwc_context_t *)&dev->common; |
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std::ostringstream out; |
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ctx->drm.compositor()->Dump(&out); |
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std::string out_str = out.str(); |
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strncpy(buff, out_str.c_str(), |
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std::min((size_t)buff_len, out_str.length() + 1)); |
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buff[buff_len - 1] = '\0'; |
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} |
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static bool hwc_skip_layer(const std::pair<int, int> &indices, int i) { |
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return indices.first >= 0 && i >= indices.first && i <= indices.second; |
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} |
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static int hwc_prepare(hwc_composer_device_1_t *dev, size_t num_displays, |
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hwc_display_contents_1_t **display_contents) { |
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struct hwc_context_t *ctx = (struct hwc_context_t *)&dev->common; |
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for (int i = 0; i < (int)num_displays; ++i) { |
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if (!display_contents[i]) |
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continue; |
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bool use_framebuffer_target = false; |
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DrmMode mode; |
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if (i == HWC_DISPLAY_VIRTUAL) { |
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use_framebuffer_target = true; |
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} else { |
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DrmConnector *c = ctx->drm.GetConnectorForDisplay(i); |
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if (!c) { |
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ALOGE("Failed to get DrmConnector for display %d", i); |
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return -ENODEV; |
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} |
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mode = c->active_mode(); |
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} |
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// Since we can't composite HWC_SKIP_LAYERs by ourselves, we'll let SF |
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// handle all layers in between the first and last skip layers. So find the |
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// outer indices and mark everything in between as HWC_FRAMEBUFFER |
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std::pair<int, int> skip_layer_indices(-1, -1); |
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int num_layers = display_contents[i]->numHwLayers; |
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for (int j = 0; !use_framebuffer_target && j < num_layers; ++j) { |
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hwc_layer_1_t *layer = &display_contents[i]->hwLayers[j]; |
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if (!(layer->flags & HWC_SKIP_LAYER)) |
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continue; |
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if (skip_layer_indices.first == -1) |
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skip_layer_indices.first = j; |
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skip_layer_indices.second = j; |
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} |
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for (int j = 0; j < num_layers; ++j) { |
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hwc_layer_1_t *layer = &display_contents[i]->hwLayers[j]; |
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if (!use_framebuffer_target && !hwc_skip_layer(skip_layer_indices, j)) { |
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// If the layer is off the screen, don't earmark it for an overlay. |
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// We'll leave it as-is, which effectively just drops it from the frame |
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const hwc_rect_t *frame = &layer->displayFrame; |
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if ((frame->right - frame->left) <= 0 || |
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(frame->bottom - frame->top) <= 0 || |
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frame->right <= 0 || frame->bottom <= 0 || |
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frame->left >= (int)mode.h_display() || |
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frame->top >= (int)mode.v_display()) |
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continue; |
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if (layer->compositionType == HWC_FRAMEBUFFER) |
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layer->compositionType = HWC_OVERLAY; |
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} else { |
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switch (layer->compositionType) { |
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case HWC_OVERLAY: |
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case HWC_BACKGROUND: |
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case HWC_SIDEBAND: |
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case HWC_CURSOR_OVERLAY: |
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layer->compositionType = HWC_FRAMEBUFFER; |
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break; |
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} |
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} |
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} |
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} |
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return 0; |
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} |
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static void hwc_add_layer_to_retire_fence( |
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hwc_layer_1_t *layer, hwc_display_contents_1_t *display_contents) { |
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if (layer->releaseFenceFd < 0) |
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return; |
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|
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if (display_contents->retireFenceFd >= 0) { |
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int old_retire_fence = display_contents->retireFenceFd; |
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display_contents->retireFenceFd = |
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sync_merge("dc_retire", old_retire_fence, layer->releaseFenceFd); |
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close(old_retire_fence); |
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} else { |
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display_contents->retireFenceFd = dup(layer->releaseFenceFd); |
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} |
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} |
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static int hwc_set(hwc_composer_device_1_t *dev, size_t num_displays, |
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hwc_display_contents_1_t **sf_display_contents) { |
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ATRACE_CALL(); |
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struct hwc_context_t *ctx = (struct hwc_context_t *)&dev->common; |
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int ret = 0; |
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|
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std::vector<CheckedOutputFd> checked_output_fences; |
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std::vector<DrmHwcDisplayContents> displays_contents; |
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std::vector<DrmCompositionDisplayLayersMap> layers_map; |
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std::vector<std::vector<size_t>> layers_indices; |
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displays_contents.reserve(num_displays); |
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// layers_map.reserve(num_displays); |
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layers_indices.reserve(num_displays); |
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|
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// Phase one does nothing that would cause errors. Only take ownership of FDs. |
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for (size_t i = 0; i < num_displays; ++i) { |
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hwc_display_contents_1_t *dc = sf_display_contents[i]; |
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displays_contents.emplace_back(); |
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DrmHwcDisplayContents &display_contents = displays_contents.back(); |
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layers_indices.emplace_back(); |
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std::vector<size_t> &indices_to_composite = layers_indices.back(); |
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|
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if (!sf_display_contents[i]) |
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continue; |
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|
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if (i == HWC_DISPLAY_VIRTUAL) { |
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ctx->virtual_compositor_worker.QueueComposite(dc); |
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continue; |
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} |
|
|
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std::ostringstream display_index_formatter; |
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display_index_formatter << "retire fence for display " << i; |
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std::string display_fence_description(display_index_formatter.str()); |
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checked_output_fences.emplace_back(&dc->retireFenceFd, |
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display_fence_description.c_str(), |
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ctx->dummy_timeline); |
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display_contents.retire_fence = OutputFd(&dc->retireFenceFd); |
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|
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size_t num_dc_layers = dc->numHwLayers; |
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int framebuffer_target_index = -1; |
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for (size_t j = 0; j < num_dc_layers; ++j) { |
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hwc_layer_1_t *sf_layer = &dc->hwLayers[j]; |
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if (sf_layer->compositionType == HWC_FRAMEBUFFER_TARGET) { |
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framebuffer_target_index = j; |
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break; |
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} |
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} |
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|
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for (size_t j = 0; j < num_dc_layers; ++j) { |
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hwc_layer_1_t *sf_layer = &dc->hwLayers[j]; |
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|
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display_contents.layers.emplace_back(); |
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DrmHwcLayer &layer = display_contents.layers.back(); |
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|
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// In prepare() we marked all layers FRAMEBUFFER between SKIP_LAYER's. |
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// This means we should insert the FB_TARGET layer in the composition |
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// stack at the location of the first skip layer, and ignore the rest. |
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if (sf_layer->flags & HWC_SKIP_LAYER) { |
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if (framebuffer_target_index < 0) |
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continue; |
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int idx = framebuffer_target_index; |
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framebuffer_target_index = -1; |
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hwc_layer_1_t *fbt_layer = &dc->hwLayers[idx]; |
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if (!fbt_layer->handle || (fbt_layer->flags & HWC_SKIP_LAYER)) { |
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ALOGE("Invalid HWC_FRAMEBUFFER_TARGET with HWC_SKIP_LAYER present"); |
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continue; |
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} |
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indices_to_composite.push_back(idx); |
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continue; |
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} |
|
|
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if (sf_layer->compositionType == HWC_OVERLAY) |
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indices_to_composite.push_back(j); |
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|
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layer.acquire_fence.Set(sf_layer->acquireFenceFd); |
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sf_layer->acquireFenceFd = -1; |
|
|
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std::ostringstream layer_fence_formatter; |
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layer_fence_formatter << "release fence for layer " << j << " of display " |
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<< i; |
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std::string layer_fence_description(layer_fence_formatter.str()); |
|
checked_output_fences.emplace_back(&sf_layer->releaseFenceFd, |
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layer_fence_description.c_str(), |
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ctx->dummy_timeline); |
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layer.release_fence = OutputFd(&sf_layer->releaseFenceFd); |
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} |
|
|
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// This is a catch-all in case we get a frame without any overlay layers, or |
|
// skip layers, but with a value fb_target layer. This _shouldn't_ happen, |
|
// but it's not ruled out by the hwc specification |
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if (indices_to_composite.empty() && framebuffer_target_index >= 0) { |
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hwc_layer_1_t *sf_layer = &dc->hwLayers[framebuffer_target_index]; |
|
if (!sf_layer->handle || (sf_layer->flags & HWC_SKIP_LAYER)) { |
|
ALOGE( |
|
"Expected valid layer with HWC_FRAMEBUFFER_TARGET when all " |
|
"HWC_OVERLAY layers are skipped."); |
|
ret = -EINVAL; |
|
} |
|
indices_to_composite.push_back(framebuffer_target_index); |
|
} |
|
} |
|
|
|
if (ret) |
|
return ret; |
|
|
|
for (size_t i = 0; i < num_displays; ++i) { |
|
hwc_display_contents_1_t *dc = sf_display_contents[i]; |
|
DrmHwcDisplayContents &display_contents = displays_contents[i]; |
|
if (!sf_display_contents[i] || i == HWC_DISPLAY_VIRTUAL) |
|
continue; |
|
|
|
layers_map.emplace_back(); |
|
DrmCompositionDisplayLayersMap &map = layers_map.back(); |
|
map.display = i; |
|
map.geometry_changed = |
|
(dc->flags & HWC_GEOMETRY_CHANGED) == HWC_GEOMETRY_CHANGED; |
|
std::vector<size_t> &indices_to_composite = layers_indices[i]; |
|
for (size_t j : indices_to_composite) { |
|
hwc_layer_1_t *sf_layer = &dc->hwLayers[j]; |
|
|
|
DrmHwcLayer &layer = display_contents.layers[j]; |
|
|
|
ret = layer.InitFromHwcLayer(sf_layer, ctx->importer.get(), ctx->gralloc); |
|
if (ret) { |
|
ALOGE("Failed to init composition from layer %d", ret); |
|
return ret; |
|
} |
|
map.layers.emplace_back(std::move(layer)); |
|
} |
|
} |
|
|
|
std::unique_ptr<DrmComposition> composition( |
|
ctx->drm.compositor()->CreateComposition(ctx->importer.get())); |
|
if (!composition) { |
|
ALOGE("Drm composition init failed"); |
|
return -EINVAL; |
|
} |
|
|
|
ret = composition->SetLayers(layers_map.size(), layers_map.data()); |
|
if (ret) { |
|
return -EINVAL; |
|
} |
|
|
|
ret = ctx->drm.compositor()->QueueComposition(std::move(composition)); |
|
if (ret) { |
|
return -EINVAL; |
|
} |
|
|
|
for (size_t i = 0; i < num_displays; ++i) { |
|
hwc_display_contents_1_t *dc = sf_display_contents[i]; |
|
if (!dc) |
|
continue; |
|
|
|
size_t num_dc_layers = dc->numHwLayers; |
|
for (size_t j = 0; j < num_dc_layers; ++j) { |
|
hwc_layer_1_t *layer = &dc->hwLayers[j]; |
|
if (layer->flags & HWC_SKIP_LAYER) |
|
continue; |
|
hwc_add_layer_to_retire_fence(layer, dc); |
|
} |
|
} |
|
|
|
composition.reset(NULL); |
|
|
|
return ret; |
|
} |
|
|
|
static int hwc_event_control(struct hwc_composer_device_1 *dev, int display, |
|
int event, int enabled) { |
|
if (event != HWC_EVENT_VSYNC || (enabled != 0 && enabled != 1)) |
|
return -EINVAL; |
|
|
|
struct hwc_context_t *ctx = (struct hwc_context_t *)&dev->common; |
|
hwc_drm_display_t *hd = &ctx->displays[display]; |
|
hd->vsync_worker.VSyncControl(enabled); |
|
return 0; |
|
} |
|
|
|
static int hwc_set_power_mode(struct hwc_composer_device_1 *dev, int display, |
|
int mode) { |
|
struct hwc_context_t *ctx = (struct hwc_context_t *)&dev->common; |
|
|
|
uint64_t dpmsValue = 0; |
|
switch (mode) { |
|
case HWC_POWER_MODE_OFF: |
|
dpmsValue = DRM_MODE_DPMS_OFF; |
|
break; |
|
|
|
/* We can't support dozing right now, so go full on */ |
|
case HWC_POWER_MODE_DOZE: |
|
case HWC_POWER_MODE_DOZE_SUSPEND: |
|
case HWC_POWER_MODE_NORMAL: |
|
dpmsValue = DRM_MODE_DPMS_ON; |
|
break; |
|
}; |
|
return ctx->drm.SetDpmsMode(display, dpmsValue); |
|
} |
|
|
|
static int hwc_query(struct hwc_composer_device_1 * /* dev */, int what, |
|
int *value) { |
|
switch (what) { |
|
case HWC_BACKGROUND_LAYER_SUPPORTED: |
|
*value = 0; /* TODO: We should do this */ |
|
break; |
|
case HWC_VSYNC_PERIOD: |
|
ALOGW("Query for deprecated vsync value, returning 60Hz"); |
|
*value = 1000 * 1000 * 1000 / 60; |
|
break; |
|
case HWC_DISPLAY_TYPES_SUPPORTED: |
|
*value = HWC_DISPLAY_PRIMARY_BIT | HWC_DISPLAY_EXTERNAL_BIT | |
|
HWC_DISPLAY_VIRTUAL_BIT; |
|
break; |
|
} |
|
return 0; |
|
} |
|
|
|
static void hwc_register_procs(struct hwc_composer_device_1 *dev, |
|
hwc_procs_t const *procs) { |
|
struct hwc_context_t *ctx = (struct hwc_context_t *)&dev->common; |
|
|
|
ctx->procs = procs; |
|
|
|
for (std::pair<const int, hwc_drm_display> &display_entry : ctx->displays) |
|
display_entry.second.vsync_worker.SetProcs(procs); |
|
|
|
ctx->hotplug_handler.Init(&ctx->drm, procs); |
|
ctx->drm.event_listener()->RegisterHotplugHandler(&ctx->hotplug_handler); |
|
} |
|
|
|
static int hwc_get_display_configs(struct hwc_composer_device_1 *dev, |
|
int display, uint32_t *configs, |
|
size_t *num_configs) { |
|
if (!*num_configs) |
|
return 0; |
|
|
|
struct hwc_context_t *ctx = (struct hwc_context_t *)&dev->common; |
|
hwc_drm_display_t *hd = &ctx->displays[display]; |
|
hd->config_ids.clear(); |
|
|
|
DrmConnector *connector = ctx->drm.GetConnectorForDisplay(display); |
|
if (!connector) { |
|
ALOGE("Failed to get connector for display %d", display); |
|
return -ENODEV; |
|
} |
|
|
|
int ret = connector->UpdateModes(); |
|
if (ret) { |
|
ALOGE("Failed to update display modes %d", ret); |
|
return ret; |
|
} |
|
|
|
for (const DrmMode &mode : connector->modes()) { |
|
size_t idx = hd->config_ids.size(); |
|
if (idx == *num_configs) |
|
break; |
|
hd->config_ids.push_back(mode.id()); |
|
configs[idx] = mode.id(); |
|
} |
|
*num_configs = hd->config_ids.size(); |
|
return *num_configs == 0 ? -1 : 0; |
|
} |
|
|
|
static int hwc_get_display_attributes(struct hwc_composer_device_1 *dev, |
|
int display, uint32_t config, |
|
const uint32_t *attributes, |
|
int32_t *values) { |
|
struct hwc_context_t *ctx = (struct hwc_context_t *)&dev->common; |
|
DrmConnector *c = ctx->drm.GetConnectorForDisplay(display); |
|
if (!c) { |
|
ALOGE("Failed to get DrmConnector for display %d", display); |
|
return -ENODEV; |
|
} |
|
DrmMode mode; |
|
for (const DrmMode &conn_mode : c->modes()) { |
|
if (conn_mode.id() == config) { |
|
mode = conn_mode; |
|
break; |
|
} |
|
} |
|
if (mode.id() == 0) { |
|
ALOGE("Failed to find active mode for display %d", display); |
|
return -ENOENT; |
|
} |
|
|
|
uint32_t mm_width = c->mm_width(); |
|
uint32_t mm_height = c->mm_height(); |
|
for (int i = 0; attributes[i] != HWC_DISPLAY_NO_ATTRIBUTE; ++i) { |
|
switch (attributes[i]) { |
|
case HWC_DISPLAY_VSYNC_PERIOD: |
|
values[i] = 1000 * 1000 * 1000 / mode.v_refresh(); |
|
break; |
|
case HWC_DISPLAY_WIDTH: |
|
values[i] = mode.h_display(); |
|
break; |
|
case HWC_DISPLAY_HEIGHT: |
|
values[i] = mode.v_display(); |
|
break; |
|
case HWC_DISPLAY_DPI_X: |
|
/* Dots per 1000 inches */ |
|
values[i] = mm_width ? (mode.h_display() * UM_PER_INCH) / mm_width : 0; |
|
break; |
|
case HWC_DISPLAY_DPI_Y: |
|
/* Dots per 1000 inches */ |
|
values[i] = |
|
mm_height ? (mode.v_display() * UM_PER_INCH) / mm_height : 0; |
|
break; |
|
} |
|
} |
|
return 0; |
|
} |
|
|
|
static int hwc_get_active_config(struct hwc_composer_device_1 *dev, |
|
int display) { |
|
struct hwc_context_t *ctx = (struct hwc_context_t *)&dev->common; |
|
DrmConnector *c = ctx->drm.GetConnectorForDisplay(display); |
|
if (!c) { |
|
ALOGE("Failed to get DrmConnector for display %d", display); |
|
return -ENODEV; |
|
} |
|
|
|
DrmMode mode = c->active_mode(); |
|
hwc_drm_display_t *hd = &ctx->displays[display]; |
|
for (size_t i = 0; i < hd->config_ids.size(); ++i) { |
|
if (hd->config_ids[i] == mode.id()) |
|
return i; |
|
} |
|
return -1; |
|
} |
|
|
|
static int hwc_set_active_config(struct hwc_composer_device_1 *dev, int display, |
|
int index) { |
|
struct hwc_context_t *ctx = (struct hwc_context_t *)&dev->common; |
|
hwc_drm_display_t *hd = &ctx->displays[display]; |
|
if (index >= (int)hd->config_ids.size()) { |
|
ALOGE("Invalid config index %d passed in", index); |
|
return -EINVAL; |
|
} |
|
|
|
DrmConnector *c = ctx->drm.GetConnectorForDisplay(display); |
|
if (!c) { |
|
ALOGE("Failed to get connector for display %d", display); |
|
return -ENODEV; |
|
} |
|
|
|
if (c->state() != DRM_MODE_CONNECTED) |
|
return -ENODEV; |
|
|
|
DrmMode mode; |
|
for (const DrmMode &conn_mode : c->modes()) { |
|
if (conn_mode.id() == hd->config_ids[index]) { |
|
mode = conn_mode; |
|
break; |
|
} |
|
} |
|
if (mode.id() != hd->config_ids[index]) { |
|
ALOGE("Could not find active mode for %d/%d", index, hd->config_ids[index]); |
|
return -ENOENT; |
|
} |
|
int ret = ctx->drm.SetDisplayActiveMode(display, mode); |
|
if (ret) { |
|
ALOGE("Failed to set active config %d", ret); |
|
return ret; |
|
} |
|
ret = ctx->drm.SetDpmsMode(display, DRM_MODE_DPMS_ON); |
|
if (ret) { |
|
ALOGE("Failed to set dpms mode on %d", ret); |
|
return ret; |
|
} |
|
return ret; |
|
} |
|
|
|
static int hwc_device_close(struct hw_device_t *dev) { |
|
struct hwc_context_t *ctx = (struct hwc_context_t *)dev; |
|
delete ctx; |
|
return 0; |
|
} |
|
|
|
/* |
|
* TODO: This function sets the active config to the first one in the list. This |
|
* should be fixed such that it selects the preferred mode for the display, or |
|
* some other, saner, method of choosing the config. |
|
*/ |
|
static int hwc_set_initial_config(hwc_drm_display_t *hd) { |
|
uint32_t config; |
|
size_t num_configs = 1; |
|
int ret = hwc_get_display_configs(&hd->ctx->device, hd->display, &config, |
|
&num_configs); |
|
if (ret || !num_configs) |
|
return 0; |
|
|
|
ret = hwc_set_active_config(&hd->ctx->device, hd->display, 0); |
|
if (ret) { |
|
ALOGE("Failed to set active config d=%d ret=%d", hd->display, ret); |
|
return ret; |
|
} |
|
|
|
return ret; |
|
} |
|
|
|
static int hwc_initialize_display(struct hwc_context_t *ctx, int display) { |
|
hwc_drm_display_t *hd = &ctx->displays[display]; |
|
hd->ctx = ctx; |
|
hd->display = display; |
|
|
|
int ret = hwc_set_initial_config(hd); |
|
if (ret) { |
|
ALOGE("Failed to set initial config for d=%d ret=%d", display, ret); |
|
return ret; |
|
} |
|
|
|
ret = hd->vsync_worker.Init(&ctx->drm, display); |
|
if (ret) { |
|
ALOGE("Failed to create event worker for display %d %d\n", display, ret); |
|
return ret; |
|
} |
|
|
|
return 0; |
|
} |
|
|
|
static int hwc_enumerate_displays(struct hwc_context_t *ctx) { |
|
int ret; |
|
for (auto &conn : ctx->drm.connectors()) { |
|
ret = hwc_initialize_display(ctx, conn->display()); |
|
if (ret) { |
|
ALOGE("Failed to initialize display %d", conn->display()); |
|
return ret; |
|
} |
|
} |
|
|
|
ret = ctx->virtual_compositor_worker.Init(); |
|
if (ret) { |
|
ALOGE("Failed to initialize virtual compositor worker"); |
|
return ret; |
|
} |
|
return 0; |
|
} |
|
|
|
static int hwc_device_open(const struct hw_module_t *module, const char *name, |
|
struct hw_device_t **dev) { |
|
if (strcmp(name, HWC_HARDWARE_COMPOSER)) { |
|
ALOGE("Invalid module name- %s", name); |
|
return -EINVAL; |
|
} |
|
|
|
std::unique_ptr<hwc_context_t> ctx(new hwc_context_t()); |
|
if (!ctx) { |
|
ALOGE("Failed to allocate hwc context"); |
|
return -ENOMEM; |
|
} |
|
|
|
int ret = ctx->drm.Init(); |
|
if (ret) { |
|
ALOGE("Can't initialize Drm object %d", ret); |
|
return ret; |
|
} |
|
|
|
ret = hw_get_module(GRALLOC_HARDWARE_MODULE_ID, |
|
(const hw_module_t **)&ctx->gralloc); |
|
if (ret) { |
|
ALOGE("Failed to open gralloc module %d", ret); |
|
return ret; |
|
} |
|
|
|
ret = ctx->dummy_timeline.Init(); |
|
if (ret) { |
|
ALOGE("Failed to create dummy sw sync timeline %d", ret); |
|
return ret; |
|
} |
|
|
|
ctx->importer.reset(Importer::CreateInstance(&ctx->drm)); |
|
if (!ctx->importer) { |
|
ALOGE("Failed to create importer instance"); |
|
return ret; |
|
} |
|
|
|
ret = hwc_enumerate_displays(ctx.get()); |
|
if (ret) { |
|
ALOGE("Failed to enumerate displays: %s", strerror(ret)); |
|
return ret; |
|
} |
|
|
|
ctx->device.common.tag = HARDWARE_DEVICE_TAG; |
|
ctx->device.common.version = HWC_DEVICE_API_VERSION_1_4; |
|
ctx->device.common.module = const_cast<hw_module_t *>(module); |
|
ctx->device.common.close = hwc_device_close; |
|
|
|
ctx->device.dump = hwc_dump; |
|
ctx->device.prepare = hwc_prepare; |
|
ctx->device.set = hwc_set; |
|
ctx->device.eventControl = hwc_event_control; |
|
ctx->device.setPowerMode = hwc_set_power_mode; |
|
ctx->device.query = hwc_query; |
|
ctx->device.registerProcs = hwc_register_procs; |
|
ctx->device.getDisplayConfigs = hwc_get_display_configs; |
|
ctx->device.getDisplayAttributes = hwc_get_display_attributes; |
|
ctx->device.getActiveConfig = hwc_get_active_config; |
|
ctx->device.setActiveConfig = hwc_set_active_config; |
|
ctx->device.setCursorPositionAsync = NULL; /* TODO: Add cursor */ |
|
|
|
*dev = &ctx->device.common; |
|
ctx.release(); |
|
|
|
return 0; |
|
} |
|
} |
|
|
|
static struct hw_module_methods_t hwc_module_methods = { |
|
.open = android::hwc_device_open |
|
}; |
|
|
|
hwc_module_t HAL_MODULE_INFO_SYM = { |
|
.common = { |
|
.tag = HARDWARE_MODULE_TAG, |
|
.version_major = 1, |
|
.version_minor = 0, |
|
.id = HWC_HARDWARE_MODULE_ID, |
|
.name = "DRM hwcomposer module", |
|
.author = "The Android Open Source Project", |
|
.methods = &hwc_module_methods, |
|
.dso = NULL, |
|
.reserved = {0}, |
|
} |
|
};
|
|
|