This is a getting-started guide for the Repo R package, which implements an R objects repository manager. It is a data-centered data flow manager.
The Repo package builds one (or more) centralized local repository where R objects are stored together with corresponding annotations, tags, dependency notes, provenance traces, source code. Once a repository has been populated, stored objects can be easily searched, navigated, edited, imported/exported. Annotations can be exploited to reconstruct data flows and perform typical pipeline management operations.
Additional information can be found in the paper: Napolitano, F. repo: an R package for data-centered management of bioinformatic pipelines. BMC Bioinformatics 18, 112 (2017).
Repo latest version can be found at: https://github.com/franapoli/repo
Repo is also on CRAN at: https://cran.r-project.org/package=repo
The following command creates a new repository in a temporary path (the default would be “~/.R_repo”). The same function opens existing repositories. The variable rp
will be used as the main interface to the repository throughout this guide.
Repo created.
This document is produced by a script named index.Rmd
. The script itself can be added to the repository and newly created resources annotated as being produced by it. The annotation is made automatic using the options
command.
Here is a normalized version of the Iris dataset to be stored in the repository:
The shortest way to permanently store the myiris
object in the repository is simply:
However, richer annotation is possible, for example:
## chunk "myiris" {
myiris <- scale(as.matrix(iris[,1:4]))
rp$put(
obj = myiris,
name = "myiris",
description = paste(
"A normalized version of the iris dataset coming with R.",
"Normalization is made with the scale function",
"with default parameters."
),
tags = c("dataset", "iris", "repodemo")
)
## }
The call provides the data to be stored (obj
), an identifier (name
), a longer description
, a list of tags
.
The comment lines (## chunk "myiris" {
and ## }
) have a special meaning: they associate the corresponding code to the resource. The code can be showed as follows:
myiris <- scale(as.matrix(iris[,1:4]))
rp$put(
obj = myiris,
name = "myiris",
description = paste(
"A normalized version of the iris dataset coming with R.",
"Normalization is made with the scale function",
"with default parameters."
),
tags = c("dataset", "iris", "repodemo")
)
The code associated with an item should take care of building and storing it. The build command executes the code in the current environment. It can automatically build dependencies, too.
In this example, the Iris class annotation will be stored separately:
The following code produces a 2D visualization of the Iris data and shows it:
irispca <- princomp(myiris)
iris2d <- irispca$scores[,c(1,2)]
plot(iris2d, main="2D visualization of the Iris dataset",
col=rp$get("irisLabels"))
Note that irisLabels
is loaded on the fly from the repository.
It would be nice to store the figure itself in the repo together with the Iris data. This is done using the attach
method, which stores any file in the repo as is (as opposed to R objects), plus annotations. Two parameters differ from put
:
filepath Instead of an identifier, attach
takes a file name (with path). The file name will be also the item identifier.
to This optional parameter tells Repo which item the new one is attached to. Can be empty.
fpath <- file.path(rp$root(), "iris2D.pdf")
pdf(fpath)
plot(iris2d, main="2D visualization of the Iris dataset",
col=rp$get("irisLabels"))
invisible(dev.off())
rp$attach(fpath, "Iris 2D visualization obtained with PCA.",
c("visualization", "iris", "repodemo"),
to="myiris")
The attached PDF can be accessed using an external PDF viewer directly from within Repo through the sys
command. On a Linux system, this command runs the Evince document viewer and shows iris2D.pdf
:
The following code makes a clustering of the Iris data and stores it in the repository. There is one parameter to note:
kiris
variable, myiris
is necessary. (This information is used by build
to build dependencies and by dependencies
to show them).kiris <- kmeans(myiris, 5)$cluster
rp$put(kiris, "iris_5clu", "Kmeans clustering of the Iris data, k=5.",
c("metadata", "iris", "kmeans", "clustering", "repodemo"),
depends="myiris")
The following shows what the clustering looks like. The figure will be attached to the repository as well.
fpath <- file.path(rp$root(), "iris2Dclu.pdf")
pdf(fpath)
plot(iris2d, main="Iris dataset kmeans clustering", col=kiris)
invisible(dev.off())
rp$attach(fpath, "Iris K-means clustering.",
c("visualization", "iris", "clustering", "kmeans", "repodemo"),
to="iris_5clu")
Finally, a contingency table of the Iris classes versus clusters is computed below. The special tag hide prevents an item from being shown unless explicitly requested.
res <- table(rp$get("irisLabels"), kiris)
rp$put(res, "iris_cluVsSpecies",
paste("Contingency table of the kmeans clustering versus the",
"original labels of the Iris dataset."),
c("result", "iris","validation", "clustering", "repodemo", "hide"),
src="index.Rmd", depends=c("myiris", "irisLabels", "iris_5clu"))
The info
command summarizes some information about a repository:
Root: /tmp/RtmpZDa3Bq
Number of items: 7
Total size: 26.58 kB
The Repo library supports an S3 print
method that shows the contents of the repository. All non-hidden items will be shown, together with some details, which by defaults are: name, dimensions, size.
ID Dims Size
myiris 150x4 1.83 kB
irisLabels 150 186 B
iris_5clu 150 120 B
Hidden items are… hidden. The following will show them too:
ID Dims Size
@index.Rmd - 12.42 kB
myiris 150x4 1.83 kB
irisLabels 150 186 B
@iris2D.pdf - 5.86 kB
iris_5clu 150 120 B
@iris2Dclu.pdf - 5.99 kB
iris_cluVsSpecies 3x5 194 B
Items can also be filtered. With the following call, only items tagged with “clustering” will be shown:
ID Dims Size
iris_5clu 150 120 B
@iris2Dclu.pdf - 5.99 kB
iris_cluVsSpecies 3x5 194 B
print
can show information selectively. This command shows tags and size on disk:
ID Tags Size
myiris dataset, iris, repodemo 1.83 kB
irisLabels labels, iris, repodemo 186 B
iris_5clu metadata, iris, kmeans, clustering, repodemo 120 B
The find
command will match a search string against all item fields in the repository:
ID Dims Size
iris_5clu 150 120 B
@iris2Dclu.pdf - 5.99 kB
iris_cluVsSpecies 3x5 194 B
It is also possible to obtain a visual synthetic summary of the repository by using the pies
command:
Finally, the check
command runs an integrity check verifying that the stored data has not been modified/corrupted. The command will also check the presence of extraneous (not indexed) files. Since the rp
repository was created in a temporary directory, a few extraneous files will pop up.
Checking: index.Rmd... ok.
Checking: myiris... ok.
Checking: irisLabels... ok.
Checking: iris2D.pdf... ok.
Checking: iris_5clu... ok.
Checking: iris2Dclu.pdf... ok.
Checking: iris_cluVsSpecies... ok.
Checking for extraneous files in repo root...
Some extraneous file found:
/tmp/RtmpZDa3Bq/iris2D.pdf
/tmp/RtmpZDa3Bq/iris2Dclu.pdf
In Repo, the relations “generated by”, “attached to” and “dependent on” are summarized in a dependency graph. The formal representation of the graph is a matrix, in which the entry (i,j) represent a relation from i to j of type 1, 2 or 3 (dependency, attachment or generation). Here’s how it looks like:
index.Rmd | myiris | irisLabels | iris2D.pdf | iris_5clu | iris2Dclu.pdf | iris_cluVsSpecies | |
---|---|---|---|---|---|---|---|
index.Rmd | 0 | 0 | 0 | 0 | 0 | 0 | 0 |
myiris | 3 | 0 | 0 | 0 | 0 | 0 | 0 |
irisLabels | 3 | 0 | 0 | 0 | 0 | 0 | 0 |
iris2D.pdf | 3 | 2 | 0 | 0 | 0 | 0 | 0 |
iris_5clu | 3 | 1 | 0 | 0 | 0 | 0 | 0 |
iris2Dclu.pdf | 3 | 0 | 0 | 0 | 2 | 0 | 0 |
iris_cluVsSpecies | 3 | 1 | 1 | 0 | 1 | 0 | 0 |
Omitting the plot=F
parameter, the dependencies method will plot the dependency graph. This plot requires the igraph library.
The three types of edges can be shown selectively, so here’s how the graph looks like without the “generated” edges:
The get
command is used to retrieve items from a repository. In the following the variable myiris
is loaded into the variable x
in the current environment.
An even simpler command is load
, which uses the item name also as variable name:
[1] TRUE
The info
command can provide additional information about an entry:
ID: myiris
Description: A normalized version of the iris dataset coming with R. Normalization is made with the scale function with default parameters.
Tags: dataset, iris, repodemo
Dimensions: 150x4
Timestamp: 2020-02-08 12:25:53
Size on disk: 1.83 kB
Provenance: index.Rmd
Attached to: -
Stored in: /tmp/RtmpZDa3Bq/m/myiris
MD5 checksum: 061bed5a8f8b717baea155c63fda25f6
URL: -
There are actually 3 different ways of adding an object to a repository:
rp$put
)rp$put(replace=T)
)rp$put(replace="addversion")
)Plus, item contents for an existing entry can be downloaded if an URL is provided with it (rp$pull
).
The K-means algorithm will likely provide different solutions over multiple runs. Alternative solutions can be stored as new versions of the iris_5clu
item as follows:
kiris2 <- kmeans(myiris, 5)$cluster
rp$put(kiris2, "iris_5clu",
"Kmeans clustering of the Iris data, k=5. Today's version!",
depends="myiris", replace="addversion")
The new repository looks like the old one:
ID Dims Size
myiris 150x4 1.83 kB
irisLabels 150 186 B
iris_5clu 150 126 B
Except that iris_5clu
is actually the one just put (look at the description):
ID: iris_5clu
Description: Kmeans clustering of the Iris data, k=5. Today's version!
Tags:
Dimensions: 150
Timestamp: 2020-02-08 12:25:54
Size on disk: 126 B
Provenance: index.Rmd
Attached to: -
Stored in: /tmp/RtmpZDa3Bq/i/iris_5clu1
MD5 checksum: 721ad66eac4a974a5b6f6de54c363829
URL: -
The old one has been renamed and hidden:
ID: iris_5clu#1
Description: Kmeans clustering of the Iris data, k=5.
Tags: metadata, iris, kmeans, clustering, repodemo, hide
Dimensions: 150
Timestamp: 2020-02-08 12:25:54
Size on disk: 120 B
Provenance: index.Rmd
Attached to: -
Stored in: /tmp/RtmpZDa3Bq/i/iris_5clu
MD5 checksum: e536f7c29ac47c0de16e708c73872e17
URL: -
It is also possible to use the repository for caching purposes by using the lazydo
command. It will run an expression and store the results. When the same expression is run again, the results will be loaded from the repository instead of being built again.
## First run
system.time(rp$lazydo(
{
Sys.sleep(.5)
result <- "This took half a second to compute"
}
))
lazydo is building resource from code.
Cached item name is: 36b10f25c707a3e623be91b1a2c526a8
user system elapsed
0.008 0.000 0.514
## Second run
system.time(rp$lazydo(
{
Sys.sleep(.5)
result <- "This took half a second to compute"
}
))
lazydo found precomputed resource.
user system elapsed
0.001 0.000 0.002
Existing items can feature an URL property. The pull
function is meant to update item contents by downloading them from the Internet. This allows for the distribution of “stub” repositories containing all items information without the actual data. The following code creates an item provided with a remote URL. A call to pull
overwrites the stub local content with the remote content.
rp$put("Local content", "item1",
"This points to big data you may want to download",
"tag", URL="http://exampleURL/repo")
print(rp$get("item1"))
[1] "Local content"
[1] "Remote content"
The handlers
method returns a list of functions by the same names of the items in the repo. Each of these functions can call Repo methods (get
by default) on the corresponding items. In this way all item names are loaded, which may be useful for example to exploit auto-completion features of the editor.
[1] "index.Rmd" "myiris"
[3] "irisLabels" "iris2D.pdf"
[5] "iris_5clu#1" "iris2Dclu.pdf"
[7] "iris_cluVsSpecies" "iris_5clu"
[9] "36b10f25c707a3e623be91b1a2c526a8" "item1"
[11] "repo"
Handlers call get
by default:
kiris
1 2 3 4 5
setosa 17 26 0 7 0
versicolor 0 0 39 0 11
virginica 0 0 14 0 36
The tag
command (not yet described) adds a tag to an item:
ID: iris_cluVsSpecies
Description: Contingency table of the kmeans clustering versus the original labels of the Iris dataset.
Tags: result, iris, validation, clustering, repodemo, hide, onenewtag
Dimensions: 3x5
Timestamp: 2020-02-08 12:25:55
Size on disk: 194 B
Provenance: index.Rmd
Attached to: -
Stored in: /tmp/RtmpZDa3Bq/i/iris_cluVsSpecies
MD5 checksum: 902cb22ba6f9479e78de6643fda0bab6
URL: -
One may want to open a repo directly with:
Found repo index in "/tmp/RtmpZDa3Bq/R_repo.RDS".
In that case, the handler to the repo itself will come handy:
ID Dims Size
myiris 150x4 1.83 kB
irisLabels 150 186 B
iris_5clu 150 126 B
item1 1 67 B
If items are removed or added, handlers may need a refresh:
The repo manual starts at:
In order to get help on the function “func”, try the following:
Based on Repo build 2.1.5