mirror of
https://gitlab.freedesktop.org/monado/monado.git
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d/steamvr_lh: Support loading SlimeVR OpenVR driver alongside lighthouse
Part-of: <https://gitlab.freedesktop.org/monado/monado/-/merge_requests/2251>
This commit is contained in:
parent
9422aca625
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1
doc/changes/drivers/mr.2251.md
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1
doc/changes/drivers/mr.2251.md
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@ -0,0 +1 @@
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steamvr_lh: Support loading SlimeVR OpenVR driver alongside lighthouse
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@ -810,6 +810,23 @@ ControllerDevice::handle_property_write(const vr::PropertyWrite_t &prop)
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}
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}
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break;
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break;
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}
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}
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case vr::Prop_ModelNumber_String: {
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using namespace std::literals::string_view_literals;
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vr::PropertyWrite_t fixedProp = prop;
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const std::string_view name = {static_cast<char *>(prop.pvBuffer), prop.unBufferSize};
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if (name == "SlimeVR Virtual Tracker\0"sv) {
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static const InputClass input_class = {
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XRT_DEVICE_VIVE_TRACKER, {XRT_INPUT_GENERIC_TRACKER_POSE}, {}, {}};
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this->name = input_class.name;
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set_input_class(&input_class);
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this->manufacturer = name.substr(0, name.find_first_of(' '));
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fixedProp.pvBuffer = (char *)fixedProp.pvBuffer + this->manufacturer.size() +
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(this->manufacturer.size() != name.size());
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fixedProp.unBufferSize = name.end() - (char *)fixedProp.pvBuffer;
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}
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Device::handle_property_write(fixedProp);
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break;
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}
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case vr::Prop_ControllerRoleHint_Int32: {
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case vr::Prop_ControllerRoleHint_Int32: {
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vr::ETrackedControllerRole role = *static_cast<vr::ETrackedControllerRole *>(prop.pvBuffer);
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vr::ETrackedControllerRole role = *static_cast<vr::ETrackedControllerRole *>(prop.pvBuffer);
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switch (role) {
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switch (role) {
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@ -102,7 +102,7 @@ class Context final : public xrt_tracking_origin,
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bool
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bool
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setup_controller(const char *serial, vr::ITrackedDeviceServerDriver *driver);
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setup_controller(const char *serial, vr::ITrackedDeviceServerDriver *driver);
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vr::IServerTrackedDeviceProvider *provider;
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std::vector<vr::IServerTrackedDeviceProvider *> providers;
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inline vr::VRInputComponentHandle_t
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inline vr::VRInputComponentHandle_t
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new_handle()
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new_handle()
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@ -112,10 +112,9 @@ class Context final : public xrt_tracking_origin,
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return h;
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return h;
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}
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}
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protected:
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public:
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Context(const std::string &steam_install, const std::string &steamvr_install, u_logging_level level);
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Context(const std::string &steam_install, const std::string &steamvr_install, u_logging_level level);
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public:
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// These are owned by monado, context is destroyed when these are destroyed
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// These are owned by monado, context is destroyed when these are destroyed
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class HmdDevice *hmd{nullptr};
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class HmdDevice *hmd{nullptr};
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class ControllerDevice *controller[16]{nullptr};
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class ControllerDevice *controller[16]{nullptr};
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@ -126,7 +125,10 @@ public:
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[[nodiscard]] static std::shared_ptr<Context>
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[[nodiscard]] static std::shared_ptr<Context>
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create(const std::string &steam_install,
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create(const std::string &steam_install,
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const std::string &steamvr_install,
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const std::string &steamvr_install,
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vr::IServerTrackedDeviceProvider *p);
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std::vector<vr::IServerTrackedDeviceProvider *> providers);
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void
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run_frame();
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void
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void
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maybe_run_frame(uint64_t new_frame);
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maybe_run_frame(uint64_t new_frame);
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@ -15,6 +15,7 @@
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#include <string_view>
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#include <string_view>
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#include <filesystem>
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#include <filesystem>
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#include <istream>
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#include <istream>
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#include <thread>
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#include "openvr_driver.h"
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#include "openvr_driver.h"
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#include "vdf_parser.hpp"
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#include "vdf_parser.hpp"
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@ -29,9 +30,12 @@
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#include "util/u_system_helpers.h"
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#include "util/u_system_helpers.h"
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#include "vive/vive_bindings.h"
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#include "vive/vive_bindings.h"
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#include "math/m_api.h"
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namespace {
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namespace {
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DEBUG_GET_ONCE_LOG_OPTION(lh_log, "LIGHTHOUSE_LOG", U_LOGGING_INFO)
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DEBUG_GET_ONCE_LOG_OPTION(lh_log, "LIGHTHOUSE_LOG", U_LOGGING_INFO)
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DEBUG_GET_ONCE_BOOL_OPTION(lh_load_slimevr, "LH_LOAD_SLIMEVR", false)
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static const size_t MAX_CONTROLLERS = 16;
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static const size_t MAX_CONTROLLERS = 16;
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@ -47,9 +51,6 @@ struct steamvr_lh_system
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//! Pointer to driver context
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//! Pointer to driver context
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std::shared_ptr<Context> ctx;
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std::shared_ptr<Context> ctx;
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// Controller as index and value as xdev
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int32_t controller_to_xdev_map[MAX_CONTROLLERS];
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//! Index to the left controller.
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//! Index to the left controller.
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int32_t left_index;
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int32_t left_index;
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@ -106,15 +107,23 @@ find_steamvr_install()
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std::shared_ptr<Context>
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std::shared_ptr<Context>
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Context::create(const std::string &steam_install,
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Context::create(const std::string &steam_install,
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const std::string &steamvr_install,
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const std::string &steamvr_install,
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vr::IServerTrackedDeviceProvider *p)
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std::vector<vr::IServerTrackedDeviceProvider *> providers)
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{
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{
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// xrt_tracking_origin initialization
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// xrt_tracking_origin initialization
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Context *c = new Context(steam_install, steamvr_install, debug_get_log_option_lh_log());
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std::shared_ptr<Context> c =
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c->provider = p;
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std::make_shared<Context>(steam_install, steamvr_install, debug_get_log_option_lh_log());
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c->providers = std::move(providers);
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std::strncpy(c->name, "SteamVR Lighthouse Tracking", XRT_TRACKING_NAME_LEN);
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std::strncpy(c->name, "SteamVR Lighthouse Tracking", XRT_TRACKING_NAME_LEN);
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c->type = XRT_TRACKING_TYPE_LIGHTHOUSE;
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c->type = XRT_TRACKING_TYPE_LIGHTHOUSE;
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c->offset = XRT_POSE_IDENTITY;
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c->offset = XRT_POSE_IDENTITY;
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return std::shared_ptr<Context>(c);
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for (vr::IServerTrackedDeviceProvider *const &driver : c->providers) {
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vr::EVRInitError err = driver->Init(c.get());
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if (err != vr::VRInitError_None) {
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U_LOG_IFL_E(c->log_level, "OpenVR driver initialization failed: error %u", err);
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return nullptr;
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}
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}
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return c;
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}
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}
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Context::Context(const std::string &steam_install, const std::string &steamvr_install, u_logging_level level)
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Context::Context(const std::string &steam_install, const std::string &steamvr_install, u_logging_level level)
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@ -123,7 +132,8 @@ Context::Context(const std::string &steam_install, const std::string &steamvr_in
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Context::~Context()
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Context::~Context()
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{
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{
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provider->Cleanup();
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for (vr::IServerTrackedDeviceProvider *const &provider : providers)
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provider->Cleanup();
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}
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}
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/***** IVRDriverContext methods *****/
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/***** IVRDriverContext methods *****/
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@ -269,12 +279,19 @@ Context::setup_controller(const char *serial, vr::ITrackedDeviceServerDriver *dr
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return true;
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return true;
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}
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}
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void
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Context::run_frame()
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{
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for (vr::IServerTrackedDeviceProvider *const &provider : providers)
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provider->RunFrame();
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}
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void
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void
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Context::maybe_run_frame(uint64_t new_frame)
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Context::maybe_run_frame(uint64_t new_frame)
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{
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{
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if (new_frame > current_frame) {
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if (new_frame > current_frame) {
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++current_frame;
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++current_frame;
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provider->RunFrame();
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run_frame();
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}
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}
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}
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}
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// NOLINTBEGIN(bugprone-easily-swappable-parameters)
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// NOLINTBEGIN(bugprone-easily-swappable-parameters)
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@ -314,8 +331,8 @@ Context::TrackedDevicePoseUpdated(uint32_t unWhichDevice, const vr::DriverPose_t
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{
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{
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assert(sizeof(newPose) == unPoseStructSize);
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assert(sizeof(newPose) == unPoseStructSize);
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// Check for valid device index, allowing for the HMD plus up to 16 controllers
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// Check for valid device index, allowing for the HMD plus up to MAX_CONTROLLERS controllers
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if (unWhichDevice > 16)
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if (unWhichDevice > MAX_CONTROLLERS)
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return;
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return;
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Device *dev = nullptr;
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Device *dev = nullptr;
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@ -387,7 +404,23 @@ void
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Context::GetRawTrackedDevicePoses(float fPredictedSecondsFromNow,
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Context::GetRawTrackedDevicePoses(float fPredictedSecondsFromNow,
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vr::TrackedDevicePose_t *pTrackedDevicePoseArray,
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vr::TrackedDevicePose_t *pTrackedDevicePoseArray,
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uint32_t unTrackedDevicePoseArrayCount)
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uint32_t unTrackedDevicePoseArrayCount)
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{}
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{
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// This is the bare minimum required for SlimeVR's HMD feedback to work
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if (unTrackedDevicePoseArrayCount != 10 || this->hmd == nullptr)
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return;
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const uint64_t time =
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std::chrono::duration_cast<std::chrono::nanoseconds>(std::chrono::steady_clock::now().time_since_epoch())
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.count();
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xrt_space_relation head = {};
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xrt_device_get_tracked_pose(this->hmd, XRT_INPUT_GENERIC_HEAD_POSE, time, &head);
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xrt_matrix_3x3 rot = {};
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math_matrix_3x3_from_quat(&head.pose.orientation, &rot);
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pTrackedDevicePoseArray[0].mDeviceToAbsoluteTracking = {{
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{rot.v[0], rot.v[3], rot.v[6], head.pose.position.x},
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{rot.v[1], rot.v[4], rot.v[7], head.pose.position.y},
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{rot.v[2], rot.v[5], rot.v[8], head.pose.position.z},
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}};
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}
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void
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void
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Context::RequestRestart(const char *pchLocalizedReason,
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Context::RequestRestart(const char *pchLocalizedReason,
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@ -672,7 +705,7 @@ Context::TrackedDeviceToPropertyContainer(vr::TrackedDeviceIndex_t nDevice)
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if (nDevice == 0 && this->hmd) {
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if (nDevice == 0 && this->hmd) {
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return container;
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return container;
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}
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}
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if (nDevice >= 1 && nDevice <= 16 && this->controller[nDevice - 1]) {
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if (nDevice >= 1 && nDevice <= MAX_CONTROLLERS && this->controller[nDevice - 1]) {
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return container;
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return container;
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}
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}
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@ -727,49 +760,52 @@ steamvr_lh_create_devices(struct xrt_session_event_sink *broadcast,
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U_LOG_IFL_I(level, "Found SteamVR install: %s", steamvr.c_str());
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U_LOG_IFL_I(level, "Found SteamVR install: %s", steamvr.c_str());
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// TODO: support windows?
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std::vector<vr::IServerTrackedDeviceProvider *> drivers = {};
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auto driver_so = steamvr + "/drivers/lighthouse/bin/linux64/driver_lighthouse.so";
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const auto loadDriver = [&](std::string soPath, bool require) {
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// TODO: support windows?
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void *driver_lib = dlopen((steamvr + soPath).c_str(), RTLD_LAZY);
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if (!driver_lib) {
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U_LOG_IFL_E(level, "Couldn't open driver lib: %s", dlerror());
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return !require;
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}
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void *lighthouse_lib = dlopen(driver_so.c_str(), RTLD_LAZY);
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void *sym = dlsym(driver_lib, "HmdDriverFactory");
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if (!lighthouse_lib) {
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if (!sym) {
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U_LOG_IFL_E(level, "Couldn't open lighthouse lib: %s", dlerror());
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U_LOG_IFL_E(level, "Couldn't find HmdDriverFactory in driver lib: %s", dlerror());
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return false;
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}
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using HmdDriverFactory_t = void *(*)(const char *, int *);
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auto factory = reinterpret_cast<HmdDriverFactory_t>(sym);
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vr::EVRInitError err = vr::VRInitError_None;
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drivers.push_back(static_cast<vr::IServerTrackedDeviceProvider *>(
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factory(vr::IServerTrackedDeviceProvider_Version, (int *)&err)));
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if (err != vr::VRInitError_None) {
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U_LOG_IFL_E(level, "Couldn't get tracked device driver: error %u", err);
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return false;
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}
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return true;
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};
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if (!loadDriver("/drivers/lighthouse/bin/linux64/driver_lighthouse.so", true))
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return xrt_result::XRT_ERROR_DEVICE_CREATION_FAILED;
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return xrt_result::XRT_ERROR_DEVICE_CREATION_FAILED;
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}
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if (debug_get_bool_option_lh_load_slimevr() &&
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!loadDriver("/drivers/slimevr/bin/linux64/driver_slimevr.so", false))
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void *sym = dlsym(lighthouse_lib, "HmdDriverFactory");
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if (!sym) {
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U_LOG_IFL_E(level, "Couldn't find HmdDriverFactory in lighthouse lib: %s", dlerror());
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return xrt_result::XRT_ERROR_DEVICE_CREATION_FAILED;
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return xrt_result::XRT_ERROR_DEVICE_CREATION_FAILED;
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}
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svrs->ctx = Context::create(STEAM_INSTALL_DIR, steamvr, std::move(drivers));
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using HmdDriverFactory_t = void *(*)(const char *, int *);
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if (svrs->ctx == nullptr)
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auto factory = reinterpret_cast<HmdDriverFactory_t>(sym);
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vr::EVRInitError err = vr::VRInitError_None;
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auto *driver = static_cast<vr::IServerTrackedDeviceProvider *>(
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factory(vr::IServerTrackedDeviceProvider_Version, (int *)&err));
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if (err != vr::VRInitError_None) {
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U_LOG_IFL_E(level, "Couldn't get tracked device driver: error %u", err);
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return xrt_result::XRT_ERROR_DEVICE_CREATION_FAILED;
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return xrt_result::XRT_ERROR_DEVICE_CREATION_FAILED;
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}
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svrs->ctx = Context::create(STEAM_INSTALL_DIR, steamvr, driver);
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err = driver->Init(svrs->ctx.get());
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if (err != vr::VRInitError_None) {
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U_LOG_IFL_E(level, "Lighthouse driver initialization failed: error %u", err);
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return xrt_result::XRT_ERROR_DEVICE_CREATION_FAILED;
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}
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U_LOG_IFL_I(level, "Lighthouse initialization complete, giving time to setup connected devices...");
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U_LOG_IFL_I(level, "Lighthouse initialization complete, giving time to setup connected devices...");
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// RunFrame needs to be called to detect controllers
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// RunFrame needs to be called to detect controllers
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using namespace std::chrono_literals;
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using namespace std::chrono_literals;
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auto start_time = std::chrono::steady_clock::now();
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auto start_time = std::chrono::steady_clock::now();
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while (true) {
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while (true) {
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driver->RunFrame();
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svrs->ctx->run_frame();
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auto cur_time = std::chrono::steady_clock::now();
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auto cur_time = std::chrono::steady_clock::now();
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if (cur_time - start_time >= 3s) {
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if (cur_time - start_time >= 3s) {
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break;
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break;
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}
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}
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std::this_thread::sleep_for(20ms);
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}
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}
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U_LOG_IFL_I(level, "Device search time complete.");
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U_LOG_IFL_I(level, "Device search time complete.");
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@ -803,11 +839,10 @@ steamvr_lh_create_devices(struct xrt_session_event_sink *broadcast,
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xsysd->static_roles.head = head;
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xsysd->static_roles.head = head;
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}
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}
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// Include the controllers (up to 16)
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// Include the controllers
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for (int i = 0; i < 16; i++) {
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for (int i = 0; i < MAX_CONTROLLERS; i++) {
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if (svrs->ctx->controller[i]) {
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if (svrs->ctx->controller[i]) {
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xsysd->xdevs[xsysd->xdev_count] = svrs->ctx->controller[i];
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xsysd->xdevs[xsysd->xdev_count++] = svrs->ctx->controller[i];
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svrs->controller_to_xdev_map[i] = xsysd->xdev_count++;
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}
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}
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}
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}
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