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200 lines
6.7 KiB
Groff
200 lines
6.7 KiB
Groff
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.TH "NPM\-PACKAGE\-LOCKS" "5" "December 2018" "" ""
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.SH "NAME"
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\fBnpm-package-locks\fR \- An explanation of npm lockfiles
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.SH DESCRIPTION
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.P
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Conceptually, the "input" to npm help install is a npm help 5 package\.json, while its
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"output" is a fully\-formed \fBnode_modules\fP tree: a representation of the
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dependencies you declared\. In an ideal world, npm would work like a pure
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function: the same \fBpackage\.json\fP should produce the exact same \fBnode_modules\fP
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tree, any time\. In some cases, this is indeed true\. But in many others, npm is
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unable to do this\. There are multiple reasons for this:
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.RS 0
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.IP \(bu 2
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different versions of npm (or other package managers) may have been used to install a package, each using slightly different installation algorithms\.
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.IP \(bu 2
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a new version of a direct semver\-range package may have been published since the last time your packages were installed, and thus a newer version will be used\.
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.IP \(bu 2
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A dependency of one of your dependencies may have published a new version, which will update even if you used pinned dependency specifiers (\fB1\.2\.3\fP instead of \fB^1\.2\.3\fP)
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.IP \(bu 2
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The registry you installed from is no longer available, or allows mutation of versions (unlike the primary npm registry), and a different version of a package exists under the same version number now\.
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.RE
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.P
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As an example, consider package A:
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.P
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.RS 2
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.nf
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{
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"name": "A",
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"version": "0\.1\.0",
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"dependencies": {
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"B": "<0\.1\.0"
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}
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}
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.fi
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.RE
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.P
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package B:
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.P
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.RS 2
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.nf
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{
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"name": "B",
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"version": "0\.0\.1",
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"dependencies": {
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"C": "<0\.1\.0"
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}
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}
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.fi
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.RE
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.P
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and package C:
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.P
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.RS 2
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.nf
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{
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"name": "C",
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"version": "0\.0\.1"
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}
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.fi
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.RE
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.P
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If these are the only versions of A, B, and C available in the
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registry, then a normal \fBnpm install A\fP will install:
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.P
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.RS 2
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.nf
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A@0\.1\.0
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`\-\- B@0\.0\.1
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`\-\- C@0\.0\.1
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.fi
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.RE
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.P
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However, if is published, then a fresh \fBnpm install A\fP will
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install:
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.P
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.RS 2
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.nf
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A@0\.1\.0
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`\-\- B@0\.0\.2
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`\-\- C@0\.0\.1
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.fi
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.RE
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.P
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assuming the new version did not modify B's dependencies\. Of course,
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the new version of B could include a new version of C and any number
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of new dependencies\. If such changes are undesirable, the author of A
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could specify a dependency on \|\. However, if A's author and B's
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author are not the same person, there's no way for A's author to say
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that he or she does not want to pull in newly published versions of C
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when B hasn't changed at all\.
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.P
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To prevent this potential issue, npm uses npm help 5 package\-lock\.json or, if present,
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npm help 5 shrinkwrap\.json\. These files are called package locks, or lockfiles\.
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.P
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Whenever you run \fBnpm install\fP, npm generates or updates your package lock,
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which will look something like this:
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.P
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.RS 2
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.nf
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{
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"name": "A",
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"version": "0\.1\.0",
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\.\.\.metadata fields\.\.\.
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"dependencies": {
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"B": {
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"version": "0\.0\.1",
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"resolved": "https://registry\.npmjs\.org/B/\-/B\-0\.0\.1\.tgz",
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"integrity": "sha512\-DeAdb33F+"
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"dependencies": {
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"C": {
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"version": "git://github\.com/org/C\.git#5c380ae319fc4efe9e7f2d9c78b0faa588fd99b4"
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}
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}
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}
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}
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}
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.fi
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.RE
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.P
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This file describes an \fIexact\fR, and more importantly \fIreproducible\fR
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\fBnode_modules\fP tree\. Once it's present, any future installation will base its
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work off this file, instead of recalculating dependency versions off
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npm help 5 package\.json\.
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.P
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The presence of a package lock changes the installation behavior such that:
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.RS 0
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.IP 1. 3
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The module tree described by the package lock is reproduced\. This means
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reproducing the structure described in the file, using the specific files
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referenced in "resolved" if available, falling back to normal package resolution
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using "version" if one isn't\.
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.IP 2. 3
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The tree is walked and any missing dependencies are installed in the usual
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fashion\.
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.RE
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.P
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If \fBpreshrinkwrap\fP, \fBshrinkwrap\fP or \fBpostshrinkwrap\fP are in the \fBscripts\fP
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property of the \fBpackage\.json\fP, they will be executed in order\. \fBpreshrinkwrap\fP
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and \fBshrinkwrap\fP are executed before the shrinkwrap, \fBpostshrinkwrap\fP is
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executed afterwards\. These scripts run for both \fBpackage\-lock\.json\fP and
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\fBnpm\-shrinkwrap\.json\fP\|\. For example to run some postprocessing on the generated
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file:
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.P
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.RS 2
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.nf
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"scripts": {
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"postshrinkwrap": "json \-I \-e \\"this\.myMetadata = $MY_APP_METADATA\\""
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}
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.fi
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.RE
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.SS Using locked packages
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.P
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Using a locked package is no different than using any package without a package
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lock: any commands that update \fBnode_modules\fP and/or \fBpackage\.json\fP\|'s
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dependencies will automatically sync the existing lockfile\. This includes \fBnpm
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install\fP, \fBnpm rm\fP, \fBnpm update\fP, etc\. To prevent this update from happening,
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you can use the \fB\-\-no\-save\fP option to prevent saving altogether, or
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\fB\-\-no\-shrinkwrap\fP to allow \fBpackage\.json\fP to be updated while leaving
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\fBpackage\-lock\.json\fP or \fBnpm\-shrinkwrap\.json\fP intact\.
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.P
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It is highly recommended you commit the generated package lock to source
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control: this will allow anyone else on your team, your deployments, your
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CI/continuous integration, and anyone else who runs \fBnpm install\fP in your
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package source to get the exact same dependency tree that you were developing
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on\. Additionally, the diffs from these changes are human\-readable and will
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inform you of any changes npm has made to your \fBnode_modules\fP, so you can notice
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if any transitive dependencies were updated, hoisted, etc\.
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.SS Resolving lockfile conflicts
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.P
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Occasionally, two separate npm install will create package locks that cause
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merge conflicts in source control systems\. As of \fB, these conflicts
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can be resolved by manually fixing any\fPpackage\.json\fBconflicts, and then
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running\fPnpm install [\-\-package\-lock\-only]\fBagain\. npm will automatically
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resolve any conflicts for you and write a merged package lock that includes all
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the dependencies from both branches in a reasonable tree\. If\fP\-\-package\-lock\-only\fBis provided, it will do this without also modifying your
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local\fPnode_modules/`\.
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.P
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To make this process seamless on git, consider installing
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\fBnpm\-merge\-driver\fP \fIhttps://npm\.im/npm\-merge\-driver\fR, which will teach git how
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to do this itself without any user interaction\. In short: \fB$ npx
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npm\-merge\-driver install \-g\fP will let you do this, and even works with
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\fBversions of npm 5, albeit a bit more noisily\. Note that if\fPpackage\.json\fBitself conflicts, you will have to resolve that by hand and run\fPnpm install` manually, even with the merge driver\.
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.SH SEE ALSO
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.RS 0
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.IP \(bu 2
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https://
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.IP \(bu 2
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npm help 5 package\.json
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.IP \(bu 2
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npm help 5 package\-lock\.json
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.IP \(bu 2
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npm help 5 shrinkwrap\.json
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.IP \(bu 2
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npm help shrinkwrap
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.RE
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