| Index: content/browser/vr/android/cardboard/cardboard_vr_device.cc
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| diff --git a/content/browser/vr/android/cardboard/cardboard_vr_device.cc b/content/browser/vr/android/cardboard/cardboard_vr_device.cc
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| new file mode 100644
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| index 0000000000000000000000000000000000000000..378a85501f385d6ee56d74ef507778cd6b927bdb
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| --- /dev/null
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| +++ b/content/browser/vr/android/cardboard/cardboard_vr_device.cc
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| @@ -0,0 +1,166 @@
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| +// Copyright 2015 The Chromium Authors. All rights reserved.
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| +// Use of this source code is governed by a BSD-style license that can be
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| +// found in the LICENSE file.
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| +
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| +#include "content/browser/vr/android/cardboard/cardboard_vr_device.h"
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| +
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| +#include <math.h>
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| +#include <algorithm>
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| +
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| +#include "base/android/jni_android.h"
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| +#include "base/android/jni_array.h"
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| +#include "base/android/jni_string.h"
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| +#include "base/strings/string_util.h"
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| +#include "base/strings/utf_string_conversions.h"
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| +#include "base/time/time.h"
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| +#include "base/trace_event/trace_event.h"
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| +#include "jni/CardboardVRDevice_jni.h"
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| +#include "ui/gfx/transform.h"
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| +#include "ui/gfx/transform_util.h"
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| +
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| +using base::android::AttachCurrentThread;
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| +
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| +namespace content {
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| +
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| +bool CardboardVRDevice::RegisterCardboardVRDevice(JNIEnv* env) {
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| +  return RegisterNativesImpl(env);
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| +}
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| +
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| +CardboardVRDevice::CardboardVRDevice(VRDeviceProvider* provider)
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| +    : VRDevice(provider), frame_index_(0) {
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| +  JNIEnv* env = AttachCurrentThread();
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| +  j_cardboard_device_.Reset(Java_CardboardVRDevice_create(
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| +      env, base::android::GetApplicationContext()));
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| +  j_head_matrix_.Reset(env, env->NewFloatArray(16));
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| +}
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| +
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| +CardboardVRDevice::~CardboardVRDevice() {
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| +  Java_CardboardVRDevice_stopTracking(AttachCurrentThread(),
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| +                                      j_cardboard_device_.obj());
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| +}
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| +
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| +VRDeviceInfoPtr CardboardVRDevice::GetVRDevice() {
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| +  TRACE_EVENT0("input", "CardboardVRDevice::GetVRDevice");
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| +  VRDeviceInfoPtr device = VRDeviceInfo::New();
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| +
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| +  JNIEnv* env = AttachCurrentThread();
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| +
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| +  ScopedJavaLocalRef<jstring> j_device_name =
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| +      Java_CardboardVRDevice_getDeviceName(env, j_cardboard_device_.obj());
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| +  device->deviceName =
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| +      base::android::ConvertJavaStringToUTF8(env, j_device_name.obj());
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| +
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| +  ScopedJavaLocalRef<jfloatArray> j_fov(env, env->NewFloatArray(4));
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| +  Java_CardboardVRDevice_getFieldOfView(env, j_cardboard_device_.obj(),
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| +                                        j_fov.obj());
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| +
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| +  std::vector<float> fov;
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| +  base::android::JavaFloatArrayToFloatVector(env, j_fov.obj(), &fov);
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| +
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| +  device->hmdInfo = VRHMDInfo::New();
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| +  VRHMDInfoPtr& hmdInfo = device->hmdInfo;
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| +
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| +  hmdInfo->leftEye = VREyeParameters::New();
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| +  hmdInfo->rightEye = VREyeParameters::New();
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| +  VREyeParametersPtr& left_eye = hmdInfo->leftEye;
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| +  VREyeParametersPtr& right_eye = hmdInfo->rightEye;
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| +
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| +  left_eye->recommendedFieldOfView = VRFieldOfView::New();
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| +  left_eye->recommendedFieldOfView->upDegrees = fov[0];
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| +  left_eye->recommendedFieldOfView->downDegrees = fov[1];
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| +  left_eye->recommendedFieldOfView->leftDegrees = fov[2];
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| +  left_eye->recommendedFieldOfView->rightDegrees = fov[3];
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| +
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| +  // Cardboard devices always assume a mirrored FOV, so this is just the left
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| +  // eye FOV with the left and right degrees swapped.
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| +  right_eye->recommendedFieldOfView = VRFieldOfView::New();
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| +  right_eye->recommendedFieldOfView->upDegrees = fov[0];
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| +  right_eye->recommendedFieldOfView->downDegrees = fov[1];
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| +  right_eye->recommendedFieldOfView->leftDegrees = fov[3];
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| +  right_eye->recommendedFieldOfView->rightDegrees = fov[2];
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| +
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| +  // Cardboard does not support configurable FOV.
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| +  left_eye->maximumFieldOfView = left_eye->recommendedFieldOfView.Clone();
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| +  right_eye->maximumFieldOfView = right_eye->recommendedFieldOfView.Clone();
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| +  left_eye->minimumFieldOfView = left_eye->recommendedFieldOfView.Clone();
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| +  right_eye->minimumFieldOfView = right_eye->recommendedFieldOfView.Clone();
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| +
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| +  float ipd = Java_CardboardVRDevice_getIpd(env, j_cardboard_device_.obj());
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| +
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| +  left_eye->eyeTranslation = VRVector3::New();
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| +  left_eye->eyeTranslation->x = ipd * -0.5f;
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| +  left_eye->eyeTranslation->y = 0.0f;
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| +  left_eye->eyeTranslation->z = 0.0f;
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| +
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| +  right_eye->eyeTranslation = VRVector3::New();
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| +  right_eye->eyeTranslation->x = ipd * 0.5f;
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| +  right_eye->eyeTranslation->y = 0.0f;
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| +  right_eye->eyeTranslation->z = 0.0f;
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| +
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| +  ScopedJavaLocalRef<jintArray> j_screen_size(env, env->NewIntArray(2));
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| +  Java_CardboardVRDevice_getScreenSize(env, j_cardboard_device_.obj(),
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| +                                       j_screen_size.obj());
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| +
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| +  std::vector<int> screen_size;
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| +  base::android::JavaIntArrayToIntVector(env, j_screen_size.obj(),
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| +                                         &screen_size);
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| +
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| +  left_eye->renderRect = VRRect::New();
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| +  left_eye->renderRect->x = 0;
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| +  left_eye->renderRect->y = 0;
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| +  left_eye->renderRect->width = screen_size[0] / 2.0;
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| +  left_eye->renderRect->height = screen_size[1];
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| +
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| +  right_eye->renderRect = VRRect::New();
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| +  right_eye->renderRect->x = screen_size[0] / 2.0;
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| +  right_eye->renderRect->y = 0;
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| +  right_eye->renderRect->width = screen_size[0] / 2.0;
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| +  right_eye->renderRect->height = screen_size[1];
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| +
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| +  return device.Pass();
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| +}
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| +
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| +VRSensorStatePtr CardboardVRDevice::GetSensorState() {
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| +  TRACE_EVENT0("input", "CardboardVRDevice::GetSensorState");
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| +  VRSensorStatePtr state = VRSensorState::New();
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| +
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| +  state->timestamp = base::Time::Now().ToJsTime();
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| +  state->frameIndex = frame_index_++;
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| +
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| +  JNIEnv* env = AttachCurrentThread();
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| +  Java_CardboardVRDevice_getSensorState(env, j_cardboard_device_.obj(),
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| +                                        j_head_matrix_.obj());
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| +
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| +  std::vector<float> head_matrix;
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| +  base::android::JavaFloatArrayToFloatVector(env, j_head_matrix_.obj(),
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| +                                             &head_matrix);
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| +
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| +  gfx::Transform transform(
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| +      head_matrix[0], head_matrix[1], head_matrix[2], head_matrix[3],
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| +      head_matrix[4], head_matrix[5], head_matrix[6], head_matrix[7],
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| +      head_matrix[8], head_matrix[9], head_matrix[10], head_matrix[11],
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| +      head_matrix[12], head_matrix[13], head_matrix[14], head_matrix[15]);
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| +
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| +  gfx::DecomposedTransform decomposed_transform;
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| +  gfx::DecomposeTransform(&decomposed_transform, transform);
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| +
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| +  state->orientation = VRVector4::New();
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| +  state->orientation->x = decomposed_transform.quaternion[0];
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| +  state->orientation->y = decomposed_transform.quaternion[1];
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| +  state->orientation->z = decomposed_transform.quaternion[2];
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| +  state->orientation->w = decomposed_transform.quaternion[3];
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| +
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| +  state->position = VRVector3::New();
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| +  state->position->x = decomposed_transform.translate[0];
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| +  state->position->y = decomposed_transform.translate[1];
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| +  state->position->z = decomposed_transform.translate[2];
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| +
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| +  return state.Pass();
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| +}
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| +
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| +void CardboardVRDevice::ResetSensor() {
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| +  Java_CardboardVRDevice_resetSensor(AttachCurrentThread(),
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| +                                     j_cardboard_device_.obj());
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| +}
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| +
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| +}  // namespace content
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| 
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