Commit Graph

9 Commits

Author SHA1 Message Date
Pete Bacon Darwin 4acd658635 refactor(ngcc): move locking code into its own folder (#35861)
PR Close #35861
2020-03-05 18:17:15 -05:00
Pete Bacon Darwin 94fa140888 refactor(ngcc): separate `(Async/Sync)Locker` and `LockFile` (#35861)
The previous implementation mixed up the management
of locking a piece of code (both sync and async) with the
management of writing and removing the lockFile that is
used as the flag for which process has locked the code.

This change splits these two concepts up. Apart from
avoiding the awkward base class it allows the `LockFile`
implementation to be replaced cleanly.

PR Close #35861
2020-03-05 18:17:15 -05:00
Alan Agius d7efc45c04 perf(ngcc): only create tasks for non-processed formats (#35719)
Change the behaviour in `analyzeEntryPoints` to only create tasks for non-processed formats.

PR Close #35719
2020-03-02 08:17:02 -08:00
Pete Bacon Darwin eef07539a6 feat(ngcc): pause async ngcc processing if another process has the lockfile (#35131)
ngcc uses a lockfile to prevent two ngcc instances from executing at the
same time. Previously, if a lockfile was found the current process would
error and exit.

Now, when in async mode, the current process is able to wait for the previous
process to release the lockfile before continuing itself.

PR Close #35131
2020-02-18 17:20:41 -08:00
George Kalpakas 93ffc67bfb fix(ngcc): update `package.json` deterministically (#34870)
Ngcc adds properties to the `package.json` files of the entry-points it
processes to mark them as processed for a format and point to the
created Ivy entry-points (in case of `--create-ivy-entry-points`). When
running ngcc in parallel mode (which is the default for the standalone
ngcc command), multiple formats can be processed simultaneously for the
same entry-point and the order of completion is not deterministic.

Previously, ngcc would append new properties at the end of the target
object in `package.json` as soon as the format processing was completed.
As a result, the order of properties in the resulting `package.json`
(when processing multiple formats for an entry-point in parallel) was
not deterministic. For tools that use file hashes for caching purposes
(such as Bazel), this lead to a high probability of cache misses.

This commit fixes the problem by ensuring that the position of
properties added to `package.json` files is deterministic and
independent of the order in which each format is processed.

Jira issue: [FW-1801](https://angular-team.atlassian.net/browse/FW-1801)

Fixes #34635

PR Close #34870
2020-01-23 10:16:35 -08:00
George Kalpakas 43db4ffcd6 test(ngcc): verify that `PackageJsonUpdater` does not write to files from worker processes (#34870)
PR Close #34870
2020-01-23 10:16:35 -08:00
Pete Bacon Darwin a107e9edc6 feat(ngcc): lock ngcc when processing (#34722)
Previously, it was possible for multiple instance of ngcc to be running
at the same time, but this is not supported and can cause confusing and
flakey errors at build time.

Now, only one instance of ngcc can run at a time. If a second instance
tries to execute it fails with an appropriate error message.

See https://github.com/angular/angular/issues/32431#issuecomment-571825781

PR Close #34722
2020-01-22 15:35:34 -08:00
George Kalpakas cd8a837956 refactor(ngcc): add debug messages to help with debugging in parallel mode (#34437)
PR Close #34437
2019-12-17 11:39:18 -08:00
George Kalpakas e36e6c85ef perf(ngcc): process tasks in parallel in async mode (#32427)
`ngcc` supports both synchronous and asynchronous execution. The default
mode when using `ngcc` programmatically (which is how `@angular/cli` is
using it) is synchronous. When running `ngcc` from the command line
(i.e. via the `ivy-ngcc` script), it runs in async mode.

Previously, the work would be executed in the same way in both modes.

This commit improves the performance of `ngcc` in async mode by
processing tasks in parallel on multiple processes. It uses the Node.js
built-in [`cluster` module](https://nodejs.org/api/cluster.html) to
launch a cluster of Node.js processes and take advantage of multi-core
systems.

Preliminary comparisons indicate a 1.8x to 2.6x speed improvement when
processing the angular.io app (apparently depending on the OS, number of
available cores, system load, etc.). Further investigation is needed to
better understand these numbers and identify potential areas of
improvement.

Inspired by/Based on @alxhub's prototype: alxhub/angular@cb631bdb1
Original design doc: https://hackmd.io/uYG9CJrFQZ-6FtKqpnYJAA?view

Jira issue: [FW-1460](https://angular-team.atlassian.net/browse/FW-1460)

PR Close #32427
2019-09-09 15:55:13 -04:00