Two independent instances of the ControlSerializer class are in use at the IPC boundaries, one in the Proxy class that serializes data from the pipeline handler to the IPA, and one in the ProxyWorker which serializes data in the opposite direction. Each instance operates autonomously, without any centralized point of control, and each one assigns a numerical handle to each ControlInfoMap it serializes. This creates a risk of potential collision on the handle values, as both instances will use the same numerical space and are not aware of what handles has been already used by the instance "on the other side". To fix that, partition the handles numerical space by initializing the control serializer with a seed according to the role of the component that creates the serializer and increment the handle number by 2, to avoid any collision risk. While this is temporary and rather hacky solution, it solves an issue with isolated IPA modules without too much complexity added. Signed-off-by: Jacopo Mondi <jacopo@jmondi.org> Reviewed-by: Paul Elder <paul.elder@ideasonboard.com> Reviewed-by: Kieran Bingham <kieran.bingham@ideasonboard.com> Reviewed-by: Laurent Pinchart <laurent.pinchart@ideasonboard.com>
255 lines
7.2 KiB
Cheetah
255 lines
7.2 KiB
Cheetah
{#-
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# SPDX-License-Identifier: LGPL-2.1-or-later
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# Copyright (C) 2020, Google Inc.
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-#}
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{%- import "proxy_functions.tmpl" as proxy_funcs -%}
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/* SPDX-License-Identifier: LGPL-2.1-or-later */
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/*
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* Copyright (C) 2020, Google Inc.
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*
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* {{module_name}}_ipa_proxy.cpp - Image Processing Algorithm proxy for {{module_name}}
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*
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* This file is auto-generated. Do not edit.
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*/
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#include <libcamera/ipa/{{module_name}}_ipa_proxy.h>
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#include <memory>
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#include <string>
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#include <vector>
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#include <libcamera/ipa/ipa_module_info.h>
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#include <libcamera/ipa/{{module_name}}_ipa_interface.h>
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#include <libcamera/ipa/{{module_name}}_ipa_serializer.h>
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#include <libcamera/base/log.h>
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#include <libcamera/base/thread.h>
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#include "libcamera/internal/control_serializer.h"
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#include "libcamera/internal/ipa_data_serializer.h"
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#include "libcamera/internal/ipa_module.h"
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#include "libcamera/internal/ipa_proxy.h"
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#include "libcamera/internal/ipc_pipe.h"
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#include "libcamera/internal/ipc_pipe_unixsocket.h"
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#include "libcamera/internal/ipc_unixsocket.h"
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#include "libcamera/internal/process.h"
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namespace libcamera {
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LOG_DECLARE_CATEGORY(IPAProxy)
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{%- if has_namespace %}
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{% for ns in namespace %}
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namespace {{ns}} {
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{% endfor %}
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{%- endif %}
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{{proxy_name}}::{{proxy_name}}(IPAModule *ipam, bool isolate)
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: IPAProxy(ipam), isolate_(isolate),
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controlSerializer_(ControlSerializer::Role::Proxy), seq_(0)
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{
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LOG(IPAProxy, Debug)
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<< "initializing {{module_name}} proxy: loading IPA from "
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<< ipam->path();
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if (isolate_) {
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const std::string proxyWorkerPath = resolvePath("{{module_name}}_ipa_proxy");
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if (proxyWorkerPath.empty()) {
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LOG(IPAProxy, Error)
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<< "Failed to get proxy worker path";
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return;
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}
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ipc_ = std::make_unique<IPCPipeUnixSocket>(ipam->path().c_str(),
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proxyWorkerPath.c_str());
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if (!ipc_->isConnected()) {
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LOG(IPAProxy, Error) << "Failed to create IPCPipe";
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return;
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}
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ipc_->recv.connect(this, &{{proxy_name}}::recvMessage);
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valid_ = true;
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return;
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}
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if (!ipam->load())
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return;
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IPAInterface *ipai = ipam->createInterface();
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if (!ipai) {
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LOG(IPAProxy, Error)
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<< "Failed to create IPA context for " << ipam->path();
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return;
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}
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ipa_ = std::unique_ptr<{{interface_name}}>(static_cast<{{interface_name}} *>(ipai));
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proxy_.setIPA(ipa_.get());
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{% for method in interface_event.methods %}
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ipa_->{{method.mojom_name}}.connect(this, &{{proxy_name}}::{{method.mojom_name}}Thread);
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{%- endfor %}
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valid_ = true;
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}
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{{proxy_name}}::~{{proxy_name}}()
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{
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if (isolate_) {
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IPCMessage::Header header =
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{ static_cast<uint32_t>({{cmd_enum_name}}::Exit), seq_++ };
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IPCMessage msg(header);
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ipc_->sendAsync(msg);
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}
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}
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{% if interface_event.methods|length > 0 %}
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void {{proxy_name}}::recvMessage(const IPCMessage &data)
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{
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size_t dataSize = data.data().size();
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{{cmd_event_enum_name}} _cmd = static_cast<{{cmd_event_enum_name}}>(data.header().cmd);
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switch (_cmd) {
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{%- for method in interface_event.methods %}
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case {{cmd_event_enum_name}}::{{method.mojom_name|cap}}: {
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{{method.mojom_name}}IPC(data.data().cbegin(), dataSize, data.fds());
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break;
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}
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{%- endfor %}
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default:
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LOG(IPAProxy, Error) << "Unknown command " << static_cast<uint32_t>(_cmd);
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}
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}
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{%- endif %}
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{% for method in interface_main.methods %}
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{{proxy_funcs.func_sig(proxy_name, method)}}
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{
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if (isolate_)
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{{"return " if method|method_return_value != "void"}}{{method.mojom_name}}IPC(
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{%- for param in method|method_param_names -%}
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{{param}}{{- ", " if not loop.last}}
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{%- endfor -%}
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);
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else
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{{"return " if method|method_return_value != "void"}}{{method.mojom_name}}Thread(
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{%- for param in method|method_param_names -%}
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{{param}}{{- ", " if not loop.last}}
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{%- endfor -%}
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);
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}
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{{proxy_funcs.func_sig(proxy_name, method, "Thread")}}
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{
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{%- if method.mojom_name == "stop" %}
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{{proxy_funcs.stop_thread_body()}}
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{%- elif method.mojom_name == "init" %}
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{{ method|method_return_value + " _ret = " if method|method_return_value != "void" -}}
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ipa_->{{method.mojom_name}}(
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{%- for param in method|method_param_names -%}
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{{param}}{{- ", " if not loop.last}}
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{%- endfor -%}
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);
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proxy_.moveToThread(&thread_);
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return {{ "_ret" if method|method_return_value != "void" }};
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{%- elif method.mojom_name == "start" %}
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state_ = ProxyRunning;
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thread_.start();
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{{ "return " if method|method_return_value != "void" -}}
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proxy_.invokeMethod(&ThreadProxy::start, ConnectionTypeBlocking
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{{- ", " if method|method_param_names}}
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{%- for param in method|method_param_names -%}
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{{param}}{{- ", " if not loop.last}}
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{%- endfor -%}
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);
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{%- elif not method|is_async %}
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{{ "return " if method|method_return_value != "void" -}}
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ipa_->{{method.mojom_name}}(
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{%- for param in method|method_param_names -%}
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{{param}}{{- ", " if not loop.last}}
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{%- endfor -%}
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);
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{% elif method|is_async %}
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ASSERT(state_ == ProxyRunning);
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proxy_.invokeMethod(&ThreadProxy::{{method.mojom_name}}, ConnectionTypeQueued,
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{%- for param in method|method_param_names -%}
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{{param}}{{- ", " if not loop.last}}
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{%- endfor -%}
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);
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{%- endif %}
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}
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{{proxy_funcs.func_sig(proxy_name, method, "IPC")}}
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{
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{%- if method.mojom_name == "configure" %}
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controlSerializer_.reset();
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{%- endif %}
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{%- set has_output = true if method|method_param_outputs|length > 0 or method|method_return_value != "void" %}
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{%- set cmd = cmd_enum_name + "::" + method.mojom_name|cap %}
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IPCMessage::Header _header = { static_cast<uint32_t>({{cmd}}), seq_++ };
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IPCMessage _ipcInputBuf(_header);
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{%- if has_output %}
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IPCMessage _ipcOutputBuf;
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{%- endif %}
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{{proxy_funcs.serialize_call(method|method_param_inputs, '_ipcInputBuf.data()', '_ipcInputBuf.fds()')}}
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{% if method|is_async %}
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int _ret = ipc_->sendAsync(_ipcInputBuf);
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{%- else %}
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int _ret = ipc_->sendSync(_ipcInputBuf
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{{- ", &_ipcOutputBuf" if has_output -}}
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);
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{%- endif %}
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if (_ret < 0) {
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LOG(IPAProxy, Error) << "Failed to call {{method.mojom_name}}";
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{%- if method|method_return_value != "void" %}
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return static_cast<{{method|method_return_value}}>(_ret);
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{%- else %}
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return;
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{%- endif %}
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}
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{% if method|method_return_value != "void" %}
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{{method|method_return_value}} _retValue = IPADataSerializer<{{method|method_return_value}}>::deserialize(_ipcOutputBuf.data(), 0);
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{{proxy_funcs.deserialize_call(method|method_param_outputs, '_ipcOutputBuf.data()', '_ipcOutputBuf.fds()', init_offset = method|method_return_value|byte_width|int)}}
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return _retValue;
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{% elif method|method_param_outputs|length > 0 %}
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{{proxy_funcs.deserialize_call(method|method_param_outputs, '_ipcOutputBuf.data()', '_ipcOutputBuf.fds()')}}
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{% endif -%}
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}
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{% endfor %}
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{% for method in interface_event.methods %}
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{{proxy_funcs.func_sig(proxy_name, method, "Thread")}}
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{
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ASSERT(state_ != ProxyStopped);
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{{method.mojom_name}}.emit({{method.parameters|params_comma_sep}});
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}
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void {{proxy_name}}::{{method.mojom_name}}IPC(
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std::vector<uint8_t>::const_iterator data,
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size_t dataSize,
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[[maybe_unused]] const std::vector<FileDescriptor> &fds)
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{
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{%- for param in method.parameters %}
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{{param|name}} {{param.mojom_name}};
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{%- endfor %}
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{{proxy_funcs.deserialize_call(method.parameters, 'data', 'fds', false, false, true, 'dataSize')}}
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{{method.mojom_name}}.emit({{method.parameters|params_comma_sep}});
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}
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{% endfor %}
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{%- if has_namespace %}
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{% for ns in namespace|reverse %}
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} /* namespace {{ns}} */
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{% endfor %}
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{%- endif %}
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} /* namespace libcamera */
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