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resolver.cpp
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resolver.cpp
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#include "playdar/application.h"
#include <sstream>
#include <boost/foreach.hpp>
#include <boost/thread/mutex.hpp>
#include <boost/filesystem.hpp>
#include "playdar/resolver.h"
#include "playdar/rs_local_library.h"
#include "playdar/rs_script.h"
#include "playdar/library.h"
// PDL stuff:
#include <DynamicLoader.hpp>
#include <DynamicClass.hpp>
#include <DynamicLibrary.hpp>
#include <DynamicLibraryManager.hpp>
#include <LoaderException.hpp>
#include <platform.h>
// end PDL stuff
Resolver::Resolver(MyApplication * app)
:m_app(app), m_exiting(false)
{
m_id_counter = 0;
cout << "Resolver starting..." << endl;
m_t = new boost::thread(boost::bind(&Resolver::dispatch_runner, this));
// set up io_service with work so it never ends:
m_io_service = new boost::asio::io_service();
m_work = new boost::asio::io_service::work(*m_io_service);
m_iothr = new boost::thread(boost::bind(
&boost::asio::io_service::run,
m_io_service));
// Initialize built-in local library resolver:
load_library_resolver();
// Load all non built-in resolvers:
try
{
load_resolver_scripts(); // external processes
load_resolver_plugins(); // DLL plugins
}
catch(...)
{
cout << "Error loading resolver plugins." << endl;
}
// sort the list of resolvers by weight, descending:
boost::function<bool (const loaded_rs &, const loaded_rs &)> sortfun =
boost::bind(&Resolver::loaded_rs_sorter, this, _1, _2);
sort(m_resolvers.begin(), m_resolvers.end(), sortfun);
cout << endl;
cout << "Loaded resolvers (" << m_resolvers.size() << ")" << endl;
BOOST_FOREACH( loaded_rs & lrs, m_resolvers )
{
cout << "RESOLVER w:" << lrs.weight << "\tt:" << lrs.targettime
<< "\t[" << (lrs.script?"script":"plugin") << "] "
<< lrs.rs->name() << endl;
}
cout << endl;
}
void
Resolver::load_library_resolver()
{
loaded_rs cr;
cr.rs = new RS_local_library();
// local library resolver is special, it gets a handle to app:
((RS_local_library *)cr.rs)->set_app(m_app);
cr.weight = cr.rs->weight();
cr.targettime = cr.rs->target_time();
cr.rs->init(m_app->conf(), this);
m_resolvers.push_back( cr );
}
Resolver::~Resolver()
{
m_exiting = true;
m_cond.notify_one();
m_t->join();
delete(m_work);
m_io_service->stop();
m_iothr->join();
}
bool
Resolver::loaded_rs_sorter(const loaded_rs & lhs, const loaded_rs & rhs)
{
return lhs.weight > rhs.weight;
}
/// spawn resolver scripts:
void
Resolver::load_resolver_scripts()
{
cout << "Loading resolver scripts:" << endl;
typedef map<string,string> st;
vector< st > scripts = app()->conf()->get_scriptlist();
BOOST_FOREACH( st & p, scripts )
{
cout << "-> Loading: " << p["path"] << endl;
try
{
loaded_rs cr;
cr.script = true;
cr.rs = new playdar::resolvers::rs_script();
// custom init method for scripts:
((playdar::resolvers::rs_script *)cr.rs)->init(app()->conf(), this, p["path"]);
if(p.find("targettime")!=p.end())
cr.targettime = boost::lexical_cast<int>(p["targettime"]);
else
cr.targettime = cr.rs->target_time();
if(p.find("weight")!=p.end())
cr.weight = boost::lexical_cast<int>(p["weight"]);
else
cr.weight = cr.rs->weight();
if(cr.weight > 0)
{
m_resolvers.push_back( cr );
cout << "-> OK [w:" << cr.weight << " t:" << cr.targettime
<< "] " << cr.rs->name() << endl;
}
}
catch(...)
{
cout << "Error initializing script" << endl;
}
}
}
/// dynamically load resolver plugins:
void
Resolver::load_resolver_plugins()
{
namespace bfs = boost::filesystem;
bfs::directory_iterator end_itr;
//bfs::path appdir = bfs::initial_path();
//bfs::path p(appdir.string() +"/plugins/");
bfs::path p("plugins");
cout << "Loading resolver plugins from: "
<< p.string() << endl;
for(bfs::directory_iterator itr( p ); itr != end_itr; ++itr)
{
if ( bfs::is_directory(itr->status()) ) continue;
string pluginfile = itr->string();
if(bfs::extension(pluginfile)!=".resolver")
{
//cerr << "Skipping '" << pluginfile
// << "' from plugins directory" << endl;
continue;
}
string classname = bfs::basename(pluginfile);
string confopt = "resolvers.";
confopt += classname;
confopt += ".enabled";
if(app()->conf()->get<string>(confopt, "yes") == "no")
{
cout << "Skipping '" << classname
<<"' - disabled in config file." << endl;
continue;
}
try
{
PDL::DynamicLoader & dynamicLoader =
PDL::DynamicLoader::Instance();
cout << "Loading resolver: " << pluginfile << endl;
ResolverService * instance =
dynamicLoader.GetClassInstance< ResolverService >
( pluginfile.c_str(), classname.c_str() );
instance->init(app()->conf(), this);
// does this plugin handle any URLs?
vector<string> handlers = instance->get_http_handlers();
if(handlers.size())
{
cout << "-> Registering " << handlers.size() << " HTTP handlers" << endl;
//typedef pair<string, http_req_cb> pair_t;
BOOST_FOREACH(string url, handlers)
{
cout << "-> " << url << endl;
m_http_handlers[url] = instance;
}
}
loaded_rs cr;
cr.script = false;
cr.rs = instance;
string rsopt = "resolvers.";
confopt += classname;
cr.weight = app()->conf()->get<int>(rsopt + ".weight",
instance->weight());
cr.targettime = app()->conf()->get<int>(rsopt + ".targettime",
instance->target_time());
m_resolvers.push_back( cr );
cout << "-> OK [w:" << cr.weight << " t:" << cr.targettime << "] "
<< instance->name() << endl;
}
catch( PDL::LoaderException & ex )
{
cerr << "-> Error: " << ex.what() << endl;
}
}
}
ResolverService *
Resolver::get_url_handler(string url)
{
if(m_http_handlers.find(url)==m_http_handlers.end()) return 0;
return m_http_handlers[url];
}
/// start resolving! (non-blocking)
/// returns a query_uid so you can check status of this query later
query_uid
Resolver::dispatch(boost::shared_ptr<ResolverQuery> rq)
{
rq_callback_t null_cb;
return dispatch(rq, null_cb);
}
query_uid
Resolver::dispatch(boost::shared_ptr<ResolverQuery> rq,
rq_callback_t cb)
{
if(!rq->valid())
{
// probably malformed, eg no track name specified.
throw;
}
boost::mutex::scoped_lock lk(m_mutex);
if(!add_new_query(rq))
{
// already running
return rq->id();
}
if(cb) rq->register_callback(cb);
m_pending.push_front( pair<rq_ptr, unsigned short>(rq, 999) );
m_cond.notify_one();
return rq->id();
}
/// thread that loops forever dispatching stuff in the queue
void
Resolver::dispatch_runner()
{
try
{
pair<rq_ptr, unsigned short> p;
while(true)
{
{
boost::mutex::scoped_lock lk(m_mutex);
if(m_pending.size() == 0) m_cond.wait(lk);
if(m_exiting) break;
p = m_pending.back();
m_pending.pop_back();
}
run_pipeline( p.first, p.second );
}
}
catch(...)
{
cout << "Error exiting Resolver::dispatch_runner" << endl;
}
cout << "Resolver dispatch_runner terminating" << endl;
}
/// go thru list of resolversservices and dispatch in order
/// lastweight is the weight of the last resolver we dispatched to.
void
Resolver::run_pipeline( rq_ptr rq, unsigned short lastweight )
{
unsigned short atweight;
unsigned int mintime;
bool started = false;
BOOST_FOREACH( loaded_rs & lrs, m_resolvers )
{
if(lrs.weight >= lastweight) continue;
if(!started)
{
atweight = lrs.weight;
mintime = lrs.targettime;
started = true;
cout << "Pipeline at weight: " << atweight << endl;
}
if(lrs.weight != atweight)
{
// we've dispatched to everything of weight "atweight"
// and the shortest targettime at that weight is "mintime"
// so schedule a callaback after mintime to carry on down the
// chain and dispatch to the next lowest weighted resolver services.
cout << "Will continue pipeline after " << mintime << "ms." << endl;
boost::shared_ptr<boost::asio::deadline_timer>
t(new boost::asio::deadline_timer( m_work->get_io_service() ));
t->expires_from_now(boost::posix_time::milliseconds(mintime));
// pass the timer pointer to the handler so it doesnt autodestruct:
t->async_wait(boost::bind(&Resolver::run_pipeline_cont, this,
rq, atweight, t));
break;
}
if(lrs.targettime < mintime) mintime = lrs.targettime;
// dispatch to this resolver:
cout << "Pipeline dispatching to " << lrs.rs->name()
<< " (lastweight: " << lastweight << ")" << endl;
lrs.rs->start_resolving(rq);
}
}
void
Resolver::run_pipeline_cont( rq_ptr rq,
unsigned short lastweight,
boost::shared_ptr<boost::asio::deadline_timer> oldtimer)
{
cout << "Pipeline continues.." << endl;
if(rq->solved())
{
cout << "Bailing from pipeline: SOLVED @ lastweight: " << lastweight
<< endl;
}
else
{
boost::mutex::scoped_lock lk(m_mutex);
m_pending.push_front( pair<rq_ptr, unsigned short>(rq, lastweight) );
m_cond.notify_one();
}
}
// a resolver will report results here
// false means give up on this query, it's over
// true means carry on as normal
bool
Resolver::add_results(query_uid qid, vector< pi_ptr > results, string via)
{
if(results.size()==0)
{
return true;
}
boost::mutex::scoped_lock lock(m_mut_results);
if(!query_exists(qid)) return false; // query was deleted
// add these new results to the ResolverQuery object
BOOST_FOREACH(boost::shared_ptr<PlayableItem> pip, results)
{
m_queries[qid]->add_result(pip);
// update map of source id -> playable item
m_pis[pip->id()] = pip;
}
return true;
}
// gets all the current results for a query
// but leaves query active. (ie, results may change later)
vector< pi_ptr >
Resolver::get_results(query_uid qid)
{
vector< pi_ptr > ret;
boost::mutex::scoped_lock lock(m_mut_results);
if(!query_exists(qid)) return ret; // query was deleted
return m_queries[qid]->results();
}
void
Resolver::end_query(query_uid qid)
{
//boost::mutex::scoped_lock lock(m_mut);
//m_queries.erase(qid);
}
// check how many results we found for this query id
int
Resolver::num_results(query_uid qid)
{
{
boost::mutex::scoped_lock lock(m_mut_results);
if(query_exists(qid))
{
return m_queries[qid]->results().size();
}
}
cerr << "Query id '"<< qid <<"' does not exist" << endl;
return 0;
}
// does this qid still exist?
bool
Resolver::query_exists(const query_uid & qid)
{
return (m_queries.find(qid) != m_queries.end());
}
// true on success, false if it already exists.
bool
Resolver::add_new_query(boost::shared_ptr<ResolverQuery> rq)
{
if(query_exists(rq->id())) return false;
m_queries[rq->id()] = rq;
m_qidlist.push_front(rq->id());
return true;
}
boost::shared_ptr<ResolverQuery>
Resolver::rq(query_uid qid)
{
return m_queries[qid];
}
size_t
Resolver::num_seen_queries()
{
return m_queries.size();
}
boost::shared_ptr<PlayableItem>
Resolver::get_pi(source_uid sid)
{
return m_pis[sid];
}