nixpkgs/lib/test-driver/test-driver.pl
Eelco Dolstra 0966854590 * Use makeWrapper in building the test driver.
* In the interactive test driver, provide a function "testScript" to
  run the non-interactive test script.

svn path=/nixos/trunk/; revision=25426
2011-01-05 14:04:38 +00:00

93 lines
2.4 KiB
Perl

#! /somewhere/perl
use strict;
use Machine;
use Term::ReadLine;
use IO::File;
use XML::Writer;
$SIG{PIPE} = 'IGNORE'; # because Unix domain sockets may die unexpectedly
STDERR->autoflush(1);
my %vms;
my $context = "";
foreach my $vmScript (@ARGV) {
my $vm = Machine->new({startCommand => $vmScript});
$vms{$vm->name} = $vm;
$context .= "my \$" . $vm->name . " = \$vms{'" . $vm->name . "'}; ";
}
sub startAll {
$_->start foreach values %vms;
}
# In interactive tests, this allows the non-interactive test script to
# be executed conveniently.
sub testScript {
eval "$context $ENV{testScript};\n";
warn $@ if $@;
}
sub runTests {
if (defined $ENV{tests}) {
eval "$context $ENV{tests}";
die $@ if $@;
} else {
my $term = Term::ReadLine->new('nixos-vm-test');
$term->ReadHistory;
while (defined ($_ = $term->readline("> "))) {
eval "$context $_\n";
warn $@ if $@;
}
$term->WriteHistory;
}
# Copy the kernel coverage data for each machine, if the kernel
# has been compiled with coverage instrumentation.
foreach my $vm (values %vms) {
my $gcovDir = "/sys/kernel/debug/gcov";
next unless $vm->isUp();
my ($status, $out) = $vm->execute("test -e $gcovDir");
next if $status != 0;
# Figure out where to put the *.gcda files so that the report
# generator can find the corresponding kernel sources.
my $kernelDir = $vm->mustSucceed("echo \$(dirname \$(readlink -f /var/run/current-system/kernel))/.build/linux-*");
chomp $kernelDir;
my $coverageDir = "/hostfs" . $vm->stateDir() . "/coverage-data/$kernelDir";
# Copy all the *.gcda files.
$vm->execute("for d in $gcovDir/nix/store/*/.build/linux-*; do for i in \$(cd \$d && find -name '*.gcda'); do echo \$i; mkdir -p $coverageDir/\$(dirname \$i); cp -v \$d/\$i $coverageDir/\$i; done; done");
}
}
# Create an empty qcow2 virtual disk with the given name and size (in
# MiB).
sub createDisk {
my ($name, $size) = @_;
system("qemu-img create -f qcow2 $name ${size}M") == 0
or die "cannot create image of size $size";
}
END {
foreach my $vm (values %vms) {
if ($vm->{pid}) {
print STDERR "killing ", $vm->{name}, " (pid ", $vm->{pid}, ")\n";
kill 9, $vm->{pid};
}
}
}
runTests;