clarified signature: support meaningful subclasses for Build.Engine implementations;
/* Title: Pure/Tools/build_process.scala
Author: Makarius
Build process for sessions, with build database, optional heap, and
optional presentation.
*/
package isabelle
import scala.math.Ordering
import scala.annotation.tailrec
object Build_Process {
/* static information */
object Session_Context {
def empty(session: String, timeout: Time): Session_Context =
new Session_Context(session, timeout, Time.zero, Nil)
def apply(
session: String,
timeout: Time,
store: Sessions.Store,
progress: Progress = new Progress
): Session_Context = {
store.try_open_database(session) match {
case None => empty(session, timeout)
case Some(db) =>
def ignore_error(msg: String) = {
progress.echo_warning("Ignoring bad database " + db +
" for session " + quote(session) + (if (msg == "") "" else ":\n" + msg))
empty(session, timeout)
}
try {
val command_timings = store.read_command_timings(db, session)
val elapsed =
store.read_session_timing(db, session) match {
case Markup.Elapsed(s) => Time.seconds(s)
case _ => Time.zero
}
new Session_Context(session, timeout, elapsed, command_timings)
}
catch {
case ERROR(msg) => ignore_error(msg)
case exn: java.lang.Error => ignore_error(Exn.message(exn))
case _: XML.Error => ignore_error("XML.Error")
}
finally { db.close() }
}
}
}
final class Session_Context(
val session: String,
val timeout: Time,
val old_time: Time,
val old_command_timings: List[Properties.T]
) {
def is_empty: Boolean = old_time.is_zero && old_command_timings.isEmpty
override def toString: String = session
}
object Context {
def apply(
store: Sessions.Store,
deps: Sessions.Deps,
progress: Progress = new Progress,
build_heap: Boolean = false,
numa_shuffling: Boolean = false,
max_jobs: Int = 1,
fresh_build: Boolean = false,
no_build: Boolean = false,
verbose: Boolean = false,
session_setup: (String, Session) => Unit = (_, _) => ()
): Context = {
val sessions_structure = deps.sessions_structure
val build_graph = sessions_structure.build_graph
val sessions =
Map.from(
for (name <- build_graph.keys_iterator)
yield {
val timeout = sessions_structure(name).timeout
name -> Build_Process.Session_Context(name, timeout, store, progress = progress)
})
val sessions_time = {
val maximals = build_graph.maximals.toSet
def descendants_time(name: String): Double = {
if (maximals.contains(name)) sessions(name).old_time.seconds
else {
val descendants = build_graph.all_succs(List(name)).toSet
val g = build_graph.restrict(descendants)
(0.0 :: g.maximals.flatMap { desc =>
val ps = g.all_preds(List(desc))
if (ps.exists(p => !sessions.isDefinedAt(p))) None
else Some(ps.map(p => sessions(p).old_time.seconds).sum)
}).max
}
}
Map.from(
for (name <- sessions.keysIterator)
yield name -> descendants_time(name)).withDefaultValue(0.0)
}
val ordering =
new Ordering[String] {
def compare(name1: String, name2: String): Int =
sessions_time(name2) compare sessions_time(name1) match {
case 0 =>
sessions(name2).timeout compare sessions(name1).timeout match {
case 0 => name1 compare name2
case ord => ord
}
case ord => ord
}
}
val numa_nodes = NUMA.nodes(enabled = numa_shuffling)
new Context(store, deps, sessions, ordering, progress, numa_nodes,
build_heap = build_heap, max_jobs = max_jobs, fresh_build = fresh_build,
no_build = no_build, verbose = verbose, session_setup)
}
}
final class Context private(
val store: Sessions.Store,
val deps: Sessions.Deps,
sessions: Map[String, Session_Context],
val ordering: Ordering[String],
val progress: Progress,
val numa_nodes: List[Int],
val build_heap: Boolean,
val max_jobs: Int,
val fresh_build: Boolean,
val no_build: Boolean,
val verbose: Boolean,
val session_setup: (String, Session) => Unit
) {
def sessions_structure: Sessions.Structure = deps.sessions_structure
def apply(session: String): Session_Context =
sessions.getOrElse(session, Session_Context.empty(session, Time.zero))
def do_store(session: String): Boolean =
build_heap || Sessions.is_pure(session) || !sessions_structure.build_graph.is_maximal(session)
}
/* main */
case class Entry(name: String, deps: List[String]) {
def is_ready: Boolean = deps.isEmpty
def resolve(dep: String): Entry =
if (deps.contains(dep)) copy(deps = deps.filterNot(_ == dep)) else this
}
case class Result(
current: Boolean,
output_heap: SHA1.Shasum,
process_result: Process_Result
) {
def ok: Boolean = process_result.ok
}
def session_finished(session_name: String, process_result: Process_Result): String =
"Finished " + session_name + " (" + process_result.timing.message_resources + ")"
def session_timing(session_name: String, build_log: Build_Log.Session_Info): String = {
val props = build_log.session_timing
val threads = Markup.Session_Timing.Threads.unapply(props) getOrElse 1
val timing = Markup.Timing_Properties.get(props)
"Timing " + session_name + " (" + threads + " threads, " + timing.message_factor + ")"
}
}
class Build_Process(protected val build_context: Build_Process.Context) {
protected val store = build_context.store
protected val build_options = store.options
protected val build_deps = build_context.deps
protected val progress = build_context.progress
protected val verbose = build_context.verbose
protected val log =
build_options.string("system_log") match {
case "" => No_Logger
case "-" => Logger.make(progress)
case log_file => Logger.make(Some(Path.explode(log_file)))
}
// global state
protected var _numa_index = 0
protected var _pending: List[Build_Process.Entry] =
(for ((name, (_, (preds, _))) <- build_context.sessions_structure.build_graph.iterator)
yield Build_Process.Entry(name, preds.toList)).toList
protected var _running = Map.empty[String, Build_Job]
protected var _results = Map.empty[String, Build_Process.Result]
protected def test_pending(): Boolean = synchronized { _pending.nonEmpty }
protected def remove_pending(name: String): Unit = synchronized {
_pending = _pending.flatMap(entry => if (entry.name == name) None else Some(entry.resolve(name)))
}
protected def next_pending(): Option[String] = synchronized {
if (_running.size < (build_context.max_jobs max 1)) {
_pending.filter(entry => entry.is_ready && !_running.isDefinedAt(entry.name))
.sortBy(_.name)(build_context.ordering)
.headOption.map(_.name)
}
else None
}
protected def next_numa_node(): Option[Int] = synchronized {
val available = build_context.numa_nodes.zipWithIndex
if (available.isEmpty) None
else {
val used = Set.from(for (job <- _running.valuesIterator; i <- job.numa_node) yield i)
val index = _numa_index
val candidates = available.drop(index) ::: available.take(index)
val (n, i) =
candidates.find({ case (n, i) => i == index && !used(n) }) orElse
candidates.find({ case (n, _) => !used(n) }) getOrElse candidates.head
_numa_index = (i + 1) % available.length
Some(n)
}
}
protected def stop_running(): Unit = synchronized {
_running.valuesIterator.foreach(_.terminate())
}
protected def finished_running(): List[Build_Job.Build_Session] = synchronized {
List.from(
_running.valuesIterator.flatMap {
case job: Build_Job.Build_Session if job.is_finished => Some(job)
case _ => None
})
}
protected def job_running(name: String, job: Build_Job): Build_Job = synchronized {
_running += (name -> job)
job
}
protected def remove_running(name: String): Unit = synchronized {
_running -= name
}
protected def add_result(
name: String,
current: Boolean,
output_heap: SHA1.Shasum,
process_result: Process_Result
): Unit = synchronized {
_results += (name -> Build_Process.Result(current, output_heap, process_result))
}
protected def get_results(names: List[String]): List[Build_Process.Result] = synchronized {
names.map(_results.apply)
}
protected def finish_job(job: Build_Job.Build_Session): Unit = {
val session_name = job.session_name
val process_result = job.join
val output_heap = job.finish
val log_lines = process_result.out_lines.filterNot(Protocol_Message.Marker.test)
val process_result_tail = {
val tail = job.info.options.int("process_output_tail")
process_result.copy(
out_lines =
"(more details via \"isabelle log -H Error " + session_name + "\")" ::
(if (tail == 0) log_lines else log_lines.drop(log_lines.length - tail max 0)))
}
val build_log =
Build_Log.Log_File(session_name, process_result.out_lines).
parse_session_info(
command_timings = true,
theory_timings = true,
ml_statistics = true,
task_statistics = true)
// write log file
if (process_result.ok) {
File.write_gzip(store.output_log_gz(session_name), terminate_lines(log_lines))
}
else File.write(store.output_log(session_name), terminate_lines(log_lines))
// write database
using(store.open_database(session_name, output = true))(db =>
store.write_session_info(db, session_name, job.session_sources,
build_log =
if (process_result.timeout) build_log.error("Timeout") else build_log,
build =
Sessions.Build_Info(build_deps.sources_shasum(session_name), job.input_heaps,
output_heap, process_result.rc, UUID.random().toString)))
// messages
process_result.err_lines.foreach(progress.echo)
if (process_result.ok) {
if (verbose) progress.echo(Build_Process.session_timing(session_name, build_log))
progress.echo(Build_Process.session_finished(session_name, process_result))
}
else {
progress.echo(session_name + " FAILED")
if (!process_result.interrupted) progress.echo(process_result_tail.out)
}
synchronized {
remove_pending(session_name)
remove_running(session_name)
add_result(session_name, false, output_heap, process_result_tail)
}
}
protected def start_job(session_name: String): Unit = {
val ancestor_results =
get_results(
build_deps.sessions_structure.build_requirements(List(session_name)).
filterNot(_ == session_name))
val input_heaps =
if (ancestor_results.isEmpty) {
SHA1.shasum_meta_info(SHA1.digest(Path.explode("$POLYML_EXE")))
}
else SHA1.flat_shasum(ancestor_results.map(_.output_heap))
val do_store = build_context.do_store(session_name)
val (current, output_heap) = {
store.try_open_database(session_name) match {
case Some(db) =>
using(db)(store.read_build(_, session_name)) match {
case Some(build) =>
val output_heap = store.find_heap_shasum(session_name)
val current =
!build_context.fresh_build &&
build.ok &&
build.sources == build_deps.sources_shasum(session_name) &&
build.input_heaps == input_heaps &&
build.output_heap == output_heap &&
!(do_store && output_heap.is_empty)
(current, output_heap)
case None => (false, SHA1.no_shasum)
}
case None => (false, SHA1.no_shasum)
}
}
val all_current = current && ancestor_results.forall(_.current)
if (all_current) {
synchronized {
remove_pending(session_name)
add_result(session_name, true, output_heap, Process_Result.ok)
}
}
else if (build_context.no_build) {
progress.echo_if(verbose, "Skipping " + session_name + " ...")
synchronized {
remove_pending(session_name)
add_result(session_name, false, output_heap, Process_Result.error)
}
}
else if (ancestor_results.forall(_.ok) && !progress.stopped) {
progress.echo((if (do_store) "Building " else "Running ") + session_name + " ...")
store.clean_output(session_name)
using(store.open_database(session_name, output = true))(
store.init_session_info(_, session_name))
val session_background = build_deps.background(session_name)
val resources =
new Resources(session_background, log = log,
command_timings = build_context(session_name).old_command_timings)
val job =
synchronized {
val numa_node = next_numa_node()
job_running(session_name,
new Build_Job.Build_Session(progress, session_background, store, do_store,
resources, build_context.session_setup, input_heaps, numa_node))
}
job.start()
}
else {
progress.echo(session_name + " CANCELLED")
synchronized {
remove_pending(session_name)
add_result(session_name, false, output_heap, Process_Result.undefined)
}
}
}
protected def sleep(): Unit =
Isabelle_Thread.interrupt_handler(_ => progress.stop()) {
build_options.seconds("editor_input_delay").sleep()
}
def run(): Map[String, Process_Result] = {
if (test_pending()) {
while (test_pending()) {
if (progress.stopped) stop_running()
for (job <- finished_running()) finish_job(job)
next_pending() match {
case Some(session_name) => start_job(session_name)
case None => sleep()
}
}
synchronized {
for ((name, result) <- _results) yield name -> result.process_result
}
}
else {
progress.echo_warning("Nothing to build")
Map.empty[String, Process_Result]
}
}
}