gendispatch.pl 60.3 KB
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#!/usr/bin/perl -w
#
# This script parses remote_protocol.x or qemu_protocol.x and produces lots of
# boilerplate code for both ends of the remote connection.
#
# The first non-option argument specifies the prefix to be searched for, and
# output to, the boilerplate code.  The second non-option argument is the
# file you want to operate on.  For instance, to generate the dispatch table
# for both remote_protocol.x and qemu_protocol.x, you would run the
# following:
#
# remote_generator.pl -c -t remote ../src/remote/remote_protocol.x
# remote_generator.pl -t qemu ../src/remote/qemu_protocol.x
#
# By Richard Jones <rjones@redhat.com>
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# Extended by Matthias Bolte <matthias.bolte@googlemail.com>
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use strict;

use Getopt::Std;

# Command line options.
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our ($opt_p, $opt_t, $opt_a, $opt_r, $opt_d, $opt_c, $opt_b, $opt_k);
getopts ('ptardcbk');
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my $structprefix = shift or die "missing prefix argument";
my $protocol = shift or die "missing protocol argument";
my @autogen;

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my $procprefix = uc $structprefix;

# Convert name_of_call to NameOfCall.
sub name_to_ProcName {
    my $name = shift;
    my @elems = split /_/, $name;
    @elems = map ucfirst, @elems;
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    @elems = map { $_ =~ s/Nwfilter/NWFilter/; $_ =~ s/Xml/XML/;
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                   $_ =~ s/Uri/URI/; $_ =~ s/Uuid/UUID/; $_ =~ s/Id/ID/;
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                   $_ =~ s/Mac/MAC/; $_ =~ s/Cpu/CPU/; $_ =~ s/Os/OS/;
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                   $_ =~ s/Nmi/NMI/; $_ } @elems;
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    join "", @elems
}

# Read the input file (usually remote_protocol.x) and form an
# opinion about the name, args and return type of each RPC.
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my ($name, $ProcName, $id, $flags, %calls, @calls);
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# only generate a close method if -c was passed
if ($opt_c) {
    # REMOTE_PROC_CLOSE has no args or ret.
    $calls{close} = {
        name => "close",
        ProcName => "Close",
        UC_NAME => "CLOSE",
        args => "void",
        ret => "void",
    };
}

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my $collect_args_members = 0;
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my $collect_ret_members = 0;
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my $last_name;

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open PROTOCOL, "<$protocol" or die "cannot open $protocol: $!";

while (<PROTOCOL>) {
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    if ($collect_args_members) {
        if (/^};/) {
            $collect_args_members = 0;
        } elsif ($_ =~ m/^\s*(.*\S)\s*$/) {
            push(@{$calls{$name}->{args_members}}, $1);
        }
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    } elsif ($collect_ret_members) {
        if (/^};/) {
            $collect_ret_members = 0;
        } elsif ($_ =~ m/^\s*(.*\S)\s*$/) {
            push(@{$calls{$name}->{ret_members}}, $1);
        }
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    } elsif (/^struct ${structprefix}_(.*)_args/) {
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        $name = $1;
        $ProcName = name_to_ProcName ($name);

        die "duplicate definition of ${structprefix}_${name}_args"
            if exists $calls{$name};

        $calls{$name} = {
            name => $name,
            ProcName => $ProcName,
            UC_NAME => uc $name,
            args => "${structprefix}_${name}_args",
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            args_members => [],
            ret => "void"
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        };

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        $collect_args_members = 1;
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        $collect_ret_members = 0;
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        $last_name = $name;
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    } elsif (/^struct ${structprefix}_(.*)_ret\s+{(.*)$/) {
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        $name = $1;
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        $flags = $2;
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        $ProcName = name_to_ProcName ($name);

        if (exists $calls{$name}) {
            $calls{$name}->{ret} = "${structprefix}_${name}_ret";
        } else {
            $calls{$name} = {
                name => $name,
                ProcName => $ProcName,
                UC_NAME => uc $name,
                args => "void",
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                ret => "${structprefix}_${name}_ret",
                ret_members => []
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            }
        }
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        if ($flags ne "" and ($opt_b or $opt_k)) {
            if (!($flags =~ m/^\s*\/\*\s*insert@(\d+)\s*\*\/\s*$/)) {
                die "invalid generator flags for $calls{$name}->{ret}";
            }

            $calls{$name}->{ret_offset} = int($1);
        }

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        $collect_args_members = 0;
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        $collect_ret_members = 1;
        $last_name = $name;
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    } elsif (/^struct ${structprefix}_(.*)_msg/) {
        $name = $1;
        $ProcName = name_to_ProcName ($name);

        $calls{$name} = {
            name => $name,
            ProcName => $ProcName,
            UC_NAME => uc $name,
            msg => "${structprefix}_${name}_msg"
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        };

        $collect_args_members = 0;
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        $collect_ret_members = 0;
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    } elsif (/^\s*${procprefix}_PROC_(.*?)\s*=\s*(\d+)\s*,?(.*)$/) {
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        $name = lc $1;
        $id = $2;
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        $flags = $3;
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        $ProcName = name_to_ProcName ($name);

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        if ($opt_b or $opt_k) {
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            if (!($flags =~ m/^\s*\/\*\s*(\S+)\s+(\S+)\s*(.*)\*\/\s*$/)) {
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                die "invalid generator flags for ${procprefix}_PROC_${name}"
            }

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            my $genmode = $opt_b ? $1 : $2;
            my $genflags = $3;
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            if ($genmode eq "autogen") {
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                push(@autogen, $ProcName);
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            } elsif ($genmode eq "skipgen") {
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                # ignore it
            } else {
                die "invalid generator flags for ${procprefix}_PROC_${name}"
            }
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            if (defined $genflags and $genflags ne "") {
                if ($genflags =~ m/^\|\s*(read|write)stream@(\d+)\s*$/) {
                    $calls{$name}->{streamflag} = $1;
                    $calls{$name}->{streamoffset} = int($2);
                } else {
                    die "invalid generator flags for ${procprefix}_PROC_${name}"
                }
            } else {
                $calls{$name}->{streamflag} = "none";
            }
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        }

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        $calls[$id] = $calls{$name};
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        $collect_args_members = 0;
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        $collect_ret_members = 0;
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    } else {
        $collect_args_members = 0;
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        $collect_ret_members = 0;
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    }
}

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close(PROTOCOL);

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# this hash contains the procedures that are allowed to map [unsigned] hyper
# to [unsigned] long for legacy reasons in their signature and return type.
# this list is fixed. new procedures and public APIs have to map [unsigned]
# hyper to [unsigned] long long
my $long_legacy = {
    DomainGetMaxMemory          => { ret => { memory => 1 } },
    DomainGetInfo               => { ret => { maxMem => 1, memory => 1 } },
    DomainMigrate               => { arg => { flags => 1, resource => 1 } },
    DomainMigrate2              => { arg => { flags => 1, resource => 1 } },
    DomainMigrateBegin3         => { arg => { flags => 1, resource => 1 } },
    DomainMigrateConfirm3       => { arg => { flags => 1, resource => 1 } },
    DomainMigrateDirect         => { arg => { flags => 1, resource => 1 } },
    DomainMigrateFinish         => { arg => { flags => 1 } },
    DomainMigrateFinish2        => { arg => { flags => 1 } },
    DomainMigrateFinish3        => { arg => { flags => 1 } },
    DomainMigratePeer2Peer      => { arg => { flags => 1, resource => 1 } },
    DomainMigratePerform        => { arg => { flags => 1, resource => 1 } },
    DomainMigratePerform3       => { arg => { flags => 1, resource => 1 } },
    DomainMigratePrepare        => { arg => { flags => 1, resource => 1 } },
    DomainMigratePrepare2       => { arg => { flags => 1, resource => 1 } },
    DomainMigratePrepare3       => { arg => { flags => 1, resource => 1 } },
    DomainMigratePrepareTunnel  => { arg => { flags => 1, resource => 1 } },
    DomainMigratePrepareTunnel3 => { arg => { flags => 1, resource => 1 } },
    DomainMigrateToURI          => { arg => { flags => 1, resource => 1 } },
    DomainMigrateToURI2         => { arg => { flags => 1, resource => 1 } },
    DomainMigrateVersion1       => { arg => { flags => 1, resource => 1 } },
    DomainMigrateVersion2       => { arg => { flags => 1, resource => 1 } },
    DomainMigrateVersion3       => { arg => { flags => 1, resource => 1 } },
    DomainMigrateSetMaxSpeed    => { arg => { bandwidth => 1 } },
    DomainSetMaxMemory          => { arg => { memory => 1 } },
    DomainSetMemory             => { arg => { memory => 1 } },
    DomainSetMemoryFlags        => { arg => { memory => 1 } },
    GetLibVersion               => { ret => { lib_ver => 1 } },
    GetVersion                  => { ret => { hv_ver => 1 } },
    NodeGetInfo                 => { ret => { memory => 1 } },
};

sub hyper_to_long
{
    my $proc_name = shift;
    my $ret_or_arg = shift;
    my $member = shift;

    if ($long_legacy->{$proc_name} and
        $long_legacy->{$proc_name}->{$ret_or_arg} and
        $long_legacy->{$proc_name}->{$ret_or_arg}->{$member}) {
        return 1;
    } else {
        return 0
    }
}

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#----------------------------------------------------------------------
# Output

print <<__EOF__;
/* Automatically generated by remote_generator.pl.
 * Do not edit this file.  Any changes you make will be lost.
 */
__EOF__

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if (!$opt_b and !$opt_k) {
    print "\n";
}

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# Debugging.
if ($opt_d) {
    my @keys = sort (keys %calls);
    foreach (@keys) {
        print "$_:\n";
        print "        name $calls{$_}->{name} ($calls{$_}->{ProcName})\n";
        print "        $calls{$_}->{args} -> $calls{$_}->{ret}\n";
    }
}

# Prototypes for dispatch functions ("remote_dispatch_prototypes.h").
elsif ($opt_p) {
    my @keys = sort (keys %calls);
    foreach (@keys) {
        # Skip things which are REMOTE_MESSAGE
        next if $calls{$_}->{msg};

        print "static int ${structprefix}Dispatch$calls{$_}->{ProcName}(\n";
        print "    struct qemud_server *server,\n";
        print "    struct qemud_client *client,\n";
        print "    virConnectPtr conn,\n";
        print "    remote_message_header *hdr,\n";
        print "    remote_error *rerr,\n";
        print "    $calls{$_}->{args} *args,\n";
        print "    $calls{$_}->{ret} *ret);\n";
    }
}

# Union of all arg types
# ("remote_dispatch_args.h").
elsif ($opt_a) {
    for ($id = 0 ; $id <= $#calls ; $id++) {
        if (defined $calls[$id] &&
            !$calls[$id]->{msg} &&
            $calls[$id]->{args} ne "void") {
            print "    $calls[$id]->{args} val_$calls[$id]->{args};\n";
        }
    }
}

# Union of all arg types
# ("remote_dispatch_ret.h").
elsif ($opt_r) {
    for ($id = 0 ; $id <= $#calls ; $id++) {
        if (defined $calls[$id] &&
            !$calls[$id]->{msg} &&
            $calls[$id]->{ret} ne "void") {
            print "    $calls[$id]->{ret} val_$calls[$id]->{ret};\n";
        }
    }
}

# Inside the switch statement, prepare the 'fn', 'args_filter', etc
# ("remote_dispatch_table.h").
elsif ($opt_t) {
    for ($id = 0 ; $id <= $#calls ; $id++) {
        if (defined $calls[$id] && !$calls[$id]->{msg}) {
            print "{   /* $calls[$id]->{ProcName} => $id */\n";
            print "    .fn = (dispatch_fn) ${structprefix}Dispatch$calls[$id]->{ProcName},\n";
            if ($calls[$id]->{args} ne "void") {
                print "    .args_filter = (xdrproc_t) xdr_$calls[$id]->{args},\n";
            } else {
                print "    .args_filter = (xdrproc_t) xdr_void,\n";
            }
            if ($calls[$id]->{ret} ne "void") {
                print "    .ret_filter = (xdrproc_t) xdr_$calls[$id]->{ret},\n";
            } else {
                print "    .ret_filter = (xdrproc_t) xdr_void,\n";
            }
            print "},\n";
        } else {
            if ($calls[$id]->{msg}) {
                print "{   /* Async event $calls[$id]->{ProcName} => $id */\n";
            } else {
                print "{   /* (unused) => $id */\n";
            }
            print "    .fn = NULL,\n";
            print "    .args_filter = (xdrproc_t) xdr_void,\n";
            print "    .ret_filter = (xdrproc_t) xdr_void,\n";
            print "},\n";
        }
    }
}
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# Bodies for dispatch functions ("remote_dispatch_bodies.h").
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elsif ($opt_b) {
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    my %generate = map { $_ => 1 } @autogen;
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    my @keys = sort (keys %calls);

    foreach (@keys) {
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        my $call = $calls{$_};

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        # skip things which are REMOTE_MESSAGE
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        next if $call->{msg};
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        # skip procedures not on generate list
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        next if ! exists($generate{$call->{ProcName}});
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        my $has_node_device = 0;
        my @vars_list = ();
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        my @optionals_list = ();
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        my @getters_list = ();
        my @args_list = ();
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        my @prepare_ret_list = ();
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        my @ret_list = ();
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        my @free_list = ();
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        my @free_list_on_error = ("remoteDispatchError(rerr);");
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        # handle arguments to the function
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        if ($call->{args} ne "void") {
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            # node device is special, as it's identified by name
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            if ($call->{args} =~ m/^remote_node_device_/ and
                !($call->{args} =~ m/^remote_node_device_lookup_by_name_/) and
                !($call->{args} =~ m/^remote_node_device_create_xml_/)) {
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                $has_node_device = 1;
                push(@vars_list, "virNodeDevicePtr dev = NULL");
                push(@getters_list,
                     "    if (!(dev = virNodeDeviceLookupByName(conn, args->name)))\n" .
                     "        goto cleanup;\n");
                push(@args_list, "dev");
                push(@free_list,
                     "    if (dev)\n" .
                     "        virNodeDeviceFree(dev);");
            }

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            foreach my $args_member (@{$call->{args_members}}) {
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                if ($args_member =~ m/^remote_nonnull_string name;/ and $has_node_device) {
                    # ignore the name arg for node devices
                    next
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                } elsif ($args_member =~ m/^remote_nonnull_(domain|network|storage_pool|storage_vol|interface|secret|nwfilter) (\S+);/) {
                    my $type_name = name_to_ProcName($1);

                    push(@vars_list, "vir${type_name}Ptr $2 = NULL");
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                    push(@getters_list,
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                         "    if (!($2 = get_nonnull_$1(conn, args->$2)))\n" .
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                         "        goto cleanup;\n");
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                    push(@args_list, "$2");
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                    push(@free_list,
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                         "    if ($2)\n" .
                         "        vir${type_name}Free($2);");
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                } elsif ($args_member =~ m/^remote_nonnull_domain_snapshot /) {
                    push(@vars_list, "virDomainPtr dom = NULL");
                    push(@vars_list, "virDomainSnapshotPtr snapshot = NULL");
                    push(@getters_list,
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                         "    if (!(dom = get_nonnull_domain(conn, args->snap.dom)))\n" .
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                         "        goto cleanup;\n" .
                         "\n" .
                         "    if (!(snapshot = get_nonnull_domain_snapshot(dom, args->snap)))\n" .
                         "        goto cleanup;\n");
                    push(@args_list, "snapshot");
                    push(@free_list,
                         "    if (snapshot)\n" .
                         "        virDomainSnapshotFree(snapshot);\n" .
                         "    if (dom)\n" .
                         "        virDomainFree(dom);");
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                } elsif ($args_member =~ m/^(?:remote_string|remote_uuid) (\S+)<\S+>;/) {
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                    if (! @args_list) {
                        push(@args_list, "conn");
                    }

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                    push(@args_list, "args->$1.$1_val");
                    push(@args_list, "args->$1.$1_len");
                } elsif ($args_member =~ m/^(?:opaque|remote_nonnull_string) (\S+)<\S+>;(.*)$/) {
                    if (! @args_list) {
                        push(@args_list, "conn");
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                    }

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                    my $cast = "";
                    my $arg_name = $1;
                    my $annotation = $2;

                    if ($annotation ne "") {
                        if ($annotation =~ m/\s*\/\*\s*(.*)\s*\*\//) {
                            $cast = $1;
                        } else {
                            die "malformed cast annotation for argument: $args_member";
                        }
                    }

                    push(@args_list, "${cast}args->$arg_name.${arg_name}_val");
                    push(@args_list, "args->$arg_name.${arg_name}_len");
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                } elsif ($args_member =~ m/^(?:unsigned )?int (\S+)<\S+>;/) {
                    if (! @args_list) {
                        push(@args_list, "conn");
                    }

                    push(@args_list, "args->$1.$1_val");
                    push(@args_list, "args->$1.$1_len");
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                } elsif ($args_member =~ m/^remote_typed_param (\S+)<(\S+)>;/) {
                    push(@vars_list, "virTypedParameterPtr $1 = NULL");
                    push(@vars_list, "int n$1");
                    push(@args_list, "$1");
                    push(@args_list, "n$1");
                    push(@getters_list, "    if (($1 = remoteDeserializeTypedParameters(args->$1.$1_val,\n" .
                                        "                                                   args->$1.$1_len,\n" .
                                        "                                                   $2,\n" .
                                        "                                                   &n$1)) == NULL)\n" .
                                        "        goto cleanup;\n");
                    push(@free_list, "    VIR_FREE(params);");
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                } elsif ($args_member =~ m/<\S+>;/ or $args_member =~ m/\[\S+\];/) {
                    # just make all other array types fail
                    die "unhandled type for argument value: $args_member";
                } elsif ($args_member =~ m/^remote_uuid (\S+);/) {
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                    if (! @args_list) {
                        push(@args_list, "conn");
                    }

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                    push(@args_list, "(unsigned char *) args->$1");
                } elsif ($args_member =~ m/^remote_string (\S+);/) {
                    if (! @args_list) {
                        push(@args_list, "conn");
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                    }
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                    push(@vars_list, "char *$1");
                    push(@optionals_list, "$1");
                    push(@args_list, "$1");
                } elsif ($args_member =~ m/^remote_nonnull_string (\S+);/) {
                    if (! @args_list) {
                        push(@args_list, "conn");
                    }

                    push(@args_list, "args->$1");
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                } elsif ($args_member =~ m/^(unsigned )?int (\S+);/) {
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                    if (! @args_list) {
                        push(@args_list, "conn");
                    }

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                    push(@args_list, "args->$2");
                } elsif ($args_member =~ m/^(unsigned )?hyper (\S+);/) {
                    if (! @args_list) {
                        push(@args_list, "conn");
                    }

                    my $arg_name = $2;

                    if (hyper_to_long($call->{ProcName}, "arg", $arg_name)) {
                        my $type_name = $1; $type_name .= "long";
                        my $sign = ""; $sign = "U" if ($1);

                        push(@vars_list, "$type_name $arg_name");
                        push(@getters_list, "    HYPER_TO_${sign}LONG($arg_name, args->$arg_name);\n");
                        push(@args_list, "$arg_name");
                    } else {
                        push(@args_list, "args->$arg_name");
                    }
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                } elsif ($args_member =~ m/^(\/)?\*/) {
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                    # ignore comments
                } else {
                    die "unhandled type for argument value: $args_member";
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                }
            }
        }

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        # handle return values of the function
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        my $single_ret_var = "undefined";
        my $single_ret_by_ref = 0;
        my $single_ret_check = " == undefined";
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        my $single_ret_as_list = 0;
        my $single_ret_list_name = "undefined";
        my $single_ret_list_max_var = "undefined";
        my $single_ret_list_max_define = "undefined";
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        my $multi_ret = 0;

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        if ($call->{ret} ne "void" and
            scalar(@{$call->{ret_members}}) > 1) {
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            $multi_ret = 1;
        }
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        if ($call->{ret} ne "void") {
            foreach my $ret_member (@{$call->{ret_members}}) {
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                if ($multi_ret) {
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                    if ($ret_member =~ m/^(unsigned )?(char|short|int|hyper) (\S+)\[\S+\];/) {
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                        if ($2 eq "hyper" and hyper_to_long($call->{ProcName}, "ret", $3)) {
                            die "legacy [u]long hyper arrays aren't supported";
                        }

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                        push(@ret_list, "memcpy(ret->$3, tmp.$3, sizeof ret->$3);");
                    } elsif ($ret_member =~ m/^(unsigned )?(char|short|int|hyper) (\S+);/) {
                        push(@ret_list, "ret->$3 = tmp.$3;");
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                    } else {
                        die "unhandled type for multi-return-value: $ret_member";
                    }
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                } elsif ($ret_member =~ m/^remote_nonnull_string (\S+)<(\S+)>;\s*\/\*\s*insert@(\d+)\s*\*\//) {
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                    push(@vars_list, "int len");
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                    splice(@args_list, int($3), 0, ("ret->$1.$1_val"));
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                    push(@ret_list, "ret->$1.$1_len = len;");
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                    push(@free_list_on_error, "VIR_FREE(ret->$1.$1_val);");
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                    $single_ret_var = "len";
                    $single_ret_by_ref = 0;
                    $single_ret_check = " < 0";
                    $single_ret_as_list = 1;
                    $single_ret_list_name = $1;
                    $single_ret_list_max_var = "max$1";
                    $single_ret_list_max_define = $2;
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                } elsif ($ret_member =~ m/^remote_nonnull_string (\S+)<\S+>;/) {
                    # error out on unannotated arrays
                    die "remote_nonnull_string array without insert@<offset> annotation: $ret_member";
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                } elsif ($ret_member =~ m/^remote_nonnull_string (\S+);/) {
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                    if ($call->{ProcName} eq "GetType") {
                        # SPECIAL: virConnectGetType returns a constant string that must
                        #          not be freed. Therefore, duplicate the string here.
                        push(@vars_list, "const char *$1");
                        push(@ret_list, "/* We have to strdup because remoteDispatchClientRequest will");
                        push(@ret_list, " * free this string after it's been serialised. */");
                        push(@ret_list, "if (!(ret->type = strdup(type))) {");
                        push(@ret_list, "    virReportOOMError();");
                        push(@ret_list, "    goto cleanup;");
                        push(@ret_list, "}");
                    } else {
                        push(@vars_list, "char *$1");
                        push(@ret_list, "ret->$1 = $1;");
                    }

564 565 566 567 568 569 570 571 572 573 574 575 576 577 578 579 580 581 582 583 584
                    $single_ret_var = $1;
                    $single_ret_by_ref = 0;
                    $single_ret_check = " == NULL";
                } elsif ($ret_member =~ m/^remote_string (\S+);/) {
                    push(@vars_list, "char *$1 = NULL");
                    push(@vars_list, "char **$1_p = NULL");
                    push(@ret_list, "ret->$1 = $1_p;");
                    push(@free_list, "    VIR_FREE($1);");
                    push(@free_list_on_error, "VIR_FREE($1_p);");
                    push(@prepare_ret_list,
                         "if (VIR_ALLOC($1_p) < 0) {\n" .
                         "        virReportOOMError();\n" .
                         "        goto cleanup;\n" .
                         "    }\n" .
                         "    \n" .
                         "    *$1_p = strdup($1);\n" .
                         "    if (*$1_p == NULL) {\n" .
                         "        virReportOOMError();\n" .
                         "        goto cleanup;\n" .
                         "    }\n");

585 586 587
                    $single_ret_var = $1;
                    $single_ret_by_ref = 0;
                    $single_ret_check = " == NULL";
588
                } elsif ($ret_member =~ m/^remote_nonnull_(domain|network|storage_pool|storage_vol|interface|node_device|secret|nwfilter|domain_snapshot) (\S+);/) {
589 590
                    my $type_name = name_to_ProcName($1);

591 592 593 594 595 596 597 598 599 600 601 602 603 604 605 606
                    if ($call->{ProcName} eq "DomainCreateWithFlags") {
                        # SPECIAL: virDomainCreateWithFlags updates the given
                        #          domain object instead of returning a new one
                        push(@ret_list, "make_nonnull_$1(&ret->$2, $2);");
                        $single_ret_var = undef;
                        $single_ret_by_ref = 1;
                    } else {
                        push(@vars_list, "vir${type_name}Ptr $2 = NULL");
                        push(@ret_list, "make_nonnull_$1(&ret->$2, $2);");
                        push(@free_list,
                             "    if ($2)\n" .
                             "        vir${type_name}Free($2);");
                        $single_ret_var = $2;
                        $single_ret_by_ref = 0;
                        $single_ret_check = " == NULL";
                    }
607
                } elsif ($ret_member =~ m/^int (\S+)<(\S+)>;\s*\/\*\s*insert@(\d+)\s*\*\//) {
608
                    push(@vars_list, "int len");
609
                    splice(@args_list, int($3), 0, ("ret->$1.$1_val"));
610
                    push(@ret_list, "ret->$1.$1_len = len;");
611
                    push(@free_list_on_error, "VIR_FREE(ret->$1.$1_val);");
612 613 614 615 616 617 618
                    $single_ret_var = "len";
                    $single_ret_by_ref = 0;
                    $single_ret_check = " < 0";
                    $single_ret_as_list = 1;
                    $single_ret_list_name = $1;
                    $single_ret_list_max_var = "max$1";
                    $single_ret_list_max_define = $2;
619 620 621
                } elsif ($ret_member =~ m/^int (\S+)<\S+>;/) {
                    # error out on unannotated arrays
                    die "int array without insert@<offset> annotation: $ret_member";
622
                } elsif ($ret_member =~ m/^int (\S+);/) {
623 624 625 626
                    push(@vars_list, "int $1");
                    push(@ret_list, "ret->$1 = $1;");
                    $single_ret_var = $1;

627
                    if ($call->{ProcName} =~ m/GetAutostart$/) {
628 629 630
                        $single_ret_by_ref = 1;
                    } else {
                        $single_ret_by_ref = 0;
631

632
                        if ($call->{ProcName} eq "CPUCompare") {
633 634 635 636
                            $single_ret_check = " == VIR_CPU_COMPARE_ERROR";
                        } else {
                            $single_ret_check = " < 0";
                        }
637
                    }
638
                } elsif ($ret_member =~ m/^(?:unsigned )?hyper (\S+)<(\S+)>;\s*\/\*\s*insert@(\d+)\s*\*\//) {
639 640 641 642
                    if (hyper_to_long($call->{ProcName}, "ret", $1)) {
                        die "legacy [u]long hyper arrays aren't supported";
                    }

643 644
                    push(@vars_list, "int len");
                    push(@ret_list, "ret->$1.$1_len = len;");
645
                    push(@free_list_on_error, "VIR_FREE(ret->$1.$1_val);");
646 647 648 649
                    $single_ret_var = "len";
                    $single_ret_by_ref = 0;
                    $single_ret_as_list = 1;
                    $single_ret_list_name = $1;
650
                    $single_ret_list_max_var = "max$1";
651 652
                    $single_ret_list_max_define = $2;

653
                    if ($call->{ProcName} eq "NodeGetCellsFreeMemory") {
654
                        $single_ret_check = " <= 0";
655
                        splice(@args_list, int($3), 0, ("(unsigned long long *)ret->$1.$1_val"));
656 657
                    } else {
                        $single_ret_check = " < 0";
658
                        splice(@args_list, int($3), 0, ("ret->$1.$1_val"));
659
                    }
660
                } elsif ($ret_member =~ m/^(?:unsigned )?hyper (\S+)<\S+>;/) {
661 662
                    # error out on unannotated arrays
                    die "hyper array without insert@<offset> annotation: $ret_member";
663
                } elsif ($ret_member =~ m/^(unsigned )?hyper (\S+);/) {
664
                    my $type_name = $1;
665
                    my $ret_name = $2;
666
                    my $ret_assign;
667

668 669 670 671 672 673 674 675 676
                    if (hyper_to_long($call->{ProcName}, "ret", $ret_name)) {
                        my $sign = ""; $sign = "U" if ($1);

                        $type_name .= "long";
                        $ret_assign = "HYPER_TO_${sign}LONG(ret->$ret_name, $ret_name);";
                    } else {
                        $type_name .= "long long";
                        $ret_assign = "ret->$ret_name = $ret_name;";
                    }
677 678

                    push(@vars_list, "$type_name $ret_name");
679
                    push(@ret_list, $ret_assign);
680
                    $single_ret_var = $ret_name;
681

682 683
                    if ($call->{ProcName} eq "DomainGetMaxMemory" or
                        $call->{ProcName} eq "NodeGetFreeMemory") {
684 685 686
                        # SPECIAL: virDomainGetMaxMemory and virNodeGetFreeMemory
                        #          return the actual value directly and 0 indicates
                        #          an error
687 688 689 690 691
                        $single_ret_by_ref = 0;
                        $single_ret_check = " == 0";
                    } else {
                        $single_ret_by_ref = 1;
                    }
692 693 694 695 696 697 698 699 700 701 702 703
                } elsif ($ret_member =~ m/^opaque (\S+)<(\S+)>;\s*\/\*\s*insert@(\d+)\s*\*\//) {
                    push(@vars_list, "char *$1 = NULL");
                    push(@vars_list, "int $1_len = 0");
                    splice(@args_list, int($3), 0, ("&$1", "&$1_len"));
                    push(@ret_list, "ret->$1.$1_val = $1;");
                    push(@ret_list, "ret->$1.$1_len = $1_len;");
                    push(@free_list_on_error, "VIR_FREE($1);");
                    $single_ret_var = undef;
                    $single_ret_by_ref = 1;
                } elsif ($ret_member =~ m/^opaque (\S+)<\S+>;/) {
                    # error out on unannotated arrays
                    die "opaque array without insert@<offset> annotation: $ret_member";
704 705
                } elsif ($ret_member =~ m/^(\/)?\*/) {
                    # ignore comments
706 707
                } else {
                    die "unhandled type for return value: $ret_member";
708 709 710 711
                }
            }
        }

712
        # select struct type for multi-return-value functions
713
        if ($multi_ret) {
714 715 716 717 718
            if (!(defined $call->{ret_offset})) {
                die "multi-return-value without insert@<offset> annotation: $call->{ret}";
            }

            if (!@args_list) {
719 720 721
                push(@args_list, "conn");
            }

722
            my $struct_name = $call->{ProcName};
723 724
            $struct_name =~ s/Get//;

725 726 727 728
            splice(@args_list, $call->{ret_offset}, 0, ("&tmp"));

            if ($call->{ProcName} eq "DomainBlockStats" ||
                $call->{ProcName} eq "DomainInterfaceStats") {
729 730 731
                # SPECIAL: virDomainBlockStats and virDomainInterfaceStats
                #          have a 'Struct' suffix on the actual struct name
                #          and take the struct size as additional argument
732
                $struct_name .= "Struct";
733
                splice(@args_list, $call->{ret_offset} + 1, 0, ("sizeof tmp"));
734 735 736 737 738
            }

            push(@vars_list, "vir$struct_name tmp");
        }

739 740 741 742 743 744 745 746
        if ($call->{streamflag} ne "none") {
            splice(@args_list, $call->{streamoffset}, 0, ("stream->st"));
            push(@free_list_on_error, "if (stream) {");
            push(@free_list_on_error, "    virStreamAbort(stream->st);");
            push(@free_list_on_error, "    remoteFreeClientStream(client, stream);");
            push(@free_list_on_error, "}");
        }

747 748 749
        # print functions signature
        print "\n";
        print "static int\n";
750
        print "${structprefix}Dispatch$call->{ProcName}(\n";
751 752 753 754 755
        print "    struct qemud_server *server ATTRIBUTE_UNUSED,\n";
        print "    struct qemud_client *client ATTRIBUTE_UNUSED,\n";
        print "    virConnectPtr conn,\n";
        print "    remote_message_header *hdr ATTRIBUTE_UNUSED,\n";
        print "    remote_error *rerr,\n";
756
        print "    $call->{args} *args";
757

758
        if ($call->{args} eq "void") {
759 760 761 762
            print " ATTRIBUTE_UNUSED"
        }

        print ",\n";
763
        print "    $call->{ret} *ret";
764

765
        if ($call->{ret} eq "void") {
766 767 768 769 770 771 772 773 774
            print " ATTRIBUTE_UNUSED"
        }

        print ")\n";

        # print function body
        print "{\n";
        print "    int rv = -1;\n";

775 776 777 778
        foreach my $var (@vars_list) {
            print "    $var;\n";
        }

779 780 781 782
        if ($call->{streamflag} ne "none") {
            print "    struct qemud_client_stream *stream = NULL;\n";
        }

783 784 785 786 787 788 789
        print "\n";
        print "    if (!conn) {\n";
        print "        virNetError(VIR_ERR_INTERNAL_ERROR, \"%s\", _(\"connection not open\"));\n";
        print "        goto cleanup;\n";
        print "    }\n";
        print "\n";

790 791 792 793 794 795 796 797 798
        if ($single_ret_as_list) {
            print "    if (args->$single_ret_list_max_var > $single_ret_list_max_define) {\n";
            print "        virNetError(VIR_ERR_INTERNAL_ERROR,\n";
            print "                    \"%s\", _(\"max$single_ret_list_name > $single_ret_list_max_define\"));\n";
            print "        goto cleanup;\n";
            print "    }\n";
            print "\n";
        }

799 800
        print join("\n", @getters_list);

801 802 803
        if (@getters_list) {
            print "\n";
        }
804

805 806 807 808 809 810 811 812
        foreach my $optional (@optionals_list) {
            print "    $optional = args->$optional ? *args->$optional : NULL;\n";
        }

        if (@optionals_list) {
            print "\n";
        }

813 814 815 816 817 818
        if ($call->{streamflag} ne "none") {
            print "    if (!(stream = remoteCreateClientStream(conn, hdr)))\n";
            print "        goto cleanup;\n";
            print "\n";
        }

819 820
        if ($call->{ret} eq "void") {
            print "    if (vir$call->{ProcName}(";
821 822 823 824
            print join(', ', @args_list);
            print ") < 0)\n";
            print "        goto cleanup;\n";
            print "\n";
825
        } elsif (!$multi_ret) {
826
            my $prefix = "";
827
            my $proc_name = $call->{ProcName};
828 829 830

            if (! @args_list) {
                push(@args_list, "conn");
831

832
                if ($call->{ProcName} ne "NodeGetFreeMemory") {
833 834
                    $prefix = "Connect"
                }
835 836
            }

837 838 839 840 841 842
            if ($call->{ProcName} eq "GetSysinfo" or
                $call->{ProcName} eq "GetMaxVcpus" or
                $call->{ProcName} eq "DomainXMLFromNative" or
                $call->{ProcName} eq "DomainXMLToNative" or
                $call->{ProcName} eq "FindStoragePoolSources" or
                $call->{ProcName} =~ m/^List/) {
843
                $prefix = "Connect"
844
            } elsif ($call->{ProcName} eq "SupportsFeature") {
845
                $prefix = "Drv"
846
            } elsif ($call->{ProcName} eq "CPUBaseline") {
847
                $proc_name = "ConnectBaselineCPU"
848
            } elsif ($call->{ProcName} eq "CPUCompare") {
849
                $proc_name = "ConnectCompareCPU"
850 851
            }

852 853 854 855 856 857 858 859 860 861
            if ($single_ret_as_list) {
                print "    /* Allocate return buffer. */\n";
                print "    if (VIR_ALLOC_N(ret->$single_ret_list_name.${single_ret_list_name}_val," .
                      " args->$single_ret_list_max_var) < 0) {\n";
                print "        virReportOOMError();\n";
                print "        goto cleanup;\n";
                print "    }\n";
                print "\n";
            }

862 863 864
            if ($single_ret_by_ref) {
                print "    if (vir$prefix$proc_name(";
                print join(', ', @args_list);
865 866 867 868 869 870

                if (defined $single_ret_var) {
                    print ", &$single_ret_var";
                }

                print ") < 0)\n";
871 872 873 874 875 876 877 878
            } else {
                print "    if (($single_ret_var = vir$prefix$proc_name(";
                print join(', ', @args_list);
                print "))$single_ret_check)\n";
            }

            print "        goto cleanup;\n";
            print "\n";
879
        } else {
880
            print "    if (vir$call->{ProcName}(";
881 882 883 884
            print join(', ', @args_list);
            print ") < 0)\n";
            print "        goto cleanup;\n";
            print "\n";
885
        }
886

887 888 889 890 891 892 893
        if ($call->{streamflag} ne "none") {
            print "    if (remoteAddClientStream(client, stream, ";

            if ($call->{streamflag} eq "write") {
                print "0";
            } else {
                print "1";
894 895
            }

896 897 898 899 900
            print ") < 0)\n";
            print "        goto cleanup;\n";
            print "\n";
        }

901 902 903 904 905 906
        if (@prepare_ret_list) {
            print "    ";
            print join("\n    ", @prepare_ret_list);
            print "\n";
        }

907 908
        if (@ret_list) {
            print "    ";
909
            print join("\n    ", @ret_list);
910
            print "\n";
911 912 913 914 915
        }

        print "    rv = 0;\n";
        print "\n";
        print "cleanup:\n";
916 917 918 919 920 921 922 923 924 925 926 927 928
        print "    if (rv < 0)";

        if (scalar(@free_list_on_error) > 1) {
            print " {";
        }

        print "\n        ";
        print join("\n        ", @free_list_on_error);
        print "\n";

        if (scalar(@free_list_on_error) > 1) {
            print "    }\n";
        }
929 930 931

        print join("\n", @free_list);

932 933 934 935
        if (@free_list) {
            print "\n";
        }

936 937 938 939
        print "    return rv;\n";
        print "}\n";
    }
}
940

941
# Bodies for client functions ("remote_client_bodies.h").
942
elsif ($opt_k) {
943
    my %generate = map { $_ => 1 } @autogen;
944 945 946 947 948 949 950 951
    my @keys = sort (keys %calls);

    foreach (@keys) {
        my $call = $calls{$_};

        # skip things which are REMOTE_MESSAGE
        next if $call->{msg};

952 953
        # skip procedures not on generate list
        next if ! exists($generate{$call->{ProcName}});
954

955
        # handle arguments to the function
956 957
        my @args_list = ();
        my @vars_list = ();
958
        my @args_check_list = ();
959
        my @setters_list = ();
960
        my @setters_list2 = ();
961 962
        my $priv_src = "conn";
        my $priv_name = "privateData";
963
        my $call_args = "&args";
964 965

        if ($call->{args} eq "void") {
966
            $call_args = "NULL";
967 968 969 970 971 972 973
        } else {
            push(@vars_list, "$call->{args} args");

            my $is_first_arg = 1;
            my $has_node_device = 0;

            # node device is special
974 975 976
            if ($call->{args} =~ m/^remote_node_/ and
                !($call->{args} =~ m/^remote_node_device_lookup_by_name_/) and
                !($call->{args} =~ m/^remote_node_device_create_xml_/)) {
977
                $has_node_device = 1;
978
                $priv_name = "devMonPrivateData";
979 980 981 982 983 984 985 986 987
            }

            foreach my $args_member (@{$call->{args_members}}) {
                if ($args_member =~ m/^remote_nonnull_string name;/ and $has_node_device) {
                    $priv_src = "dev->conn";
                    push(@args_list, "virNodeDevicePtr dev");
                    push(@setters_list, "args.name = dev->name;");
                } elsif ($args_member =~ m/^remote_nonnull_(domain|network|storage_pool|storage_vol|interface|secret|nwfilter|domain_snapshot) (\S+);/) {
                    my $name = $1;
988
                    my $arg_name = $2;
989 990 991 992
                    my $type_name = name_to_ProcName($name);

                    if ($is_first_arg) {
                        if ($name eq "domain_snapshot") {
993
                            $priv_src = "$arg_name->domain->conn";
994
                        } else {
995
                            $priv_src = "$arg_name->conn";
996 997 998 999 1000 1001 1002 1003 1004
                        }

                        if ($name =~ m/^storage_/) {
                            $priv_name = "storagePrivateData";
                        } elsif (!($name =~ m/^domain/)) {
                            $priv_name = "${name}PrivateData";
                        }
                    }

1005 1006 1007 1008 1009
                    push(@args_list, "vir${type_name}Ptr $arg_name");
                    push(@setters_list, "make_nonnull_$1(&args.$arg_name, $arg_name);");
                } elsif ($args_member =~ m/^remote_uuid (\S+);/) {
                    push(@args_list, "const unsigned char *$1");
                    push(@setters_list, "memcpy(args.$1, $1, VIR_UUID_BUFLEN);");
1010 1011 1012
                } elsif ($args_member =~ m/^remote_string (\S+);/) {
                    push(@args_list, "const char *$1");
                    push(@setters_list, "args.$1 = $1 ? (char **)&$1 : NULL;");
1013 1014 1015 1016 1017 1018 1019 1020 1021 1022 1023 1024 1025 1026 1027 1028 1029 1030 1031
                } elsif ($args_member =~ m/^remote_nonnull_string (\S+)<(\S+)>;(.*)$/) {
                    my $type_name = "const char **";
                    my $arg_name = $1;
                    my $limit = $2;
                    my $annotation = $3;

                    if ($annotation ne "") {
                        if ($annotation =~ m/\s*\/\*\s*\((.*)\)\s*\*\//) {
                            $type_name = $1;
                        } else {
                            die "malformed cast annotation for argument: $args_member";
                        }
                    }

                    push(@args_list, "$type_name$arg_name");
                    push(@args_list, "unsigned int ${arg_name}len");
                    push(@setters_list, "args.$arg_name.${arg_name}_val = (char **)$arg_name;");
                    push(@setters_list, "args.$arg_name.${arg_name}_len = ${arg_name}len;");
                    push(@args_check_list, { name => "\"$arg_name\"", arg => "${arg_name}len", limit => $2 });
1032 1033 1034
                } elsif ($args_member =~ m/^remote_nonnull_string (\S+);/) {
                    push(@args_list, "const char *$1");
                    push(@setters_list, "args.$1 = (char *)$1;");
1035 1036 1037 1038 1039 1040 1041 1042 1043 1044 1045 1046 1047 1048 1049
                } elsif ($args_member =~ m/^opaque (\S+)<(\S+)>;(.*)$/) {
                    my $type_name = "const char *";
                    my $arg_name = $1;
                    my $limit = $2;
                    my $annotation = $3;

                    if ($annotation ne "") {
                        if ($annotation =~ m/\s*\/\*\s*\((.*)\)\s*\*\//) {
                            $type_name = $1;
                        } else {
                            die "malformed cast annotation for argument: $args_member";
                        }
                    }

                    push(@args_list, "$type_name$arg_name");
1050

1051
                    if ($call->{ProcName} eq "SecretSetValue") {
1052
                        # SPECIAL: virSecretSetValue uses size_t instead of int
1053
                        push(@args_list, "size_t ${arg_name}len");
1054
                    } else {
1055
                        push(@args_list, "int ${arg_name}len");
1056 1057
                    }

1058 1059 1060 1061 1062 1063 1064 1065 1066
                    push(@setters_list, "args.$arg_name.${arg_name}_val = (char *)$arg_name;");
                    push(@setters_list, "args.$arg_name.${arg_name}_len = ${arg_name}len;");
                    push(@args_check_list, { name => "\"$arg_name\"", arg => "${arg_name}len", limit => $limit });
                } elsif ($args_member =~ m/^remote_string (\S+)<(\S+)>;/) {
                    my $arg_name = $1;
                    my $limit = $2;

                    push(@args_list, "const char *$arg_name");
                    push(@args_list, "int ${arg_name}len");
1067 1068 1069
                    push(@setters_list, "args.$arg_name.${arg_name}_val = (char *)$arg_name;");
                    push(@setters_list, "args.$arg_name.${arg_name}_len = ${arg_name}len;");
                    push(@args_check_list, { name => "\"$arg_name\"", arg => "${arg_name}len", limit => $limit });
1070 1071 1072 1073 1074 1075
                } elsif ($args_member =~ m/^((?:unsigned )?int) (\S+)<(\S+)>;/) {
                    my $type_name = $1;
                    my $arg_name = $2;
                    my $limit = $3;

                    push(@args_list, "${type_name} *$arg_name");
1076
                    push(@args_list, "int ${arg_name}len");
1077 1078 1079
                    push(@setters_list, "args.$arg_name.${arg_name}_val = $arg_name;");
                    push(@setters_list, "args.$arg_name.${arg_name}_len = ${arg_name}len;");
                    push(@args_check_list, { name => "\"$arg_name\"", arg => "${arg_name}len", limit => $limit });
1080 1081 1082 1083 1084 1085 1086
                } elsif ($args_member =~ m/^remote_typed_param (\S+)<(\S+)>;/) {
                    push(@args_list, "virTypedParameterPtr $1");
                    push(@args_list, "int n$1");
                    push(@setters_list2, "if (remoteSerializeTypedParameters($1, n$1, &args.$1.$1_val, &args.$1.$1_len) < 0) {\n" .
                                         "        xdr_free((xdrproc_t)xdr_$call->{args}, (char *)&args);\n" .
                                         "        goto done;\n" .
                                         "    }");
1087 1088
                } elsif ($args_member =~ m/^((?:unsigned )?int) (\S+);\s*\/\*\s*call-by-reference\s*\*\//) {
                    my $type_name = "$1 *";
1089 1090 1091 1092
                    my $arg_name = $2;

                    push(@args_list, "$type_name $arg_name");
                    push(@setters_list, "args.$arg_name = *$arg_name;");
1093 1094
                } elsif ($args_member =~ m/^((?:unsigned )?int) (\S+);/) {
                    my $type_name = $1;
1095 1096 1097 1098 1099 1100 1101 1102 1103 1104 1105 1106
                    my $arg_name = $2;

                    push(@args_list, "$type_name $arg_name");
                    push(@setters_list, "args.$arg_name = $arg_name;");
                } elsif ($args_member =~ m/^(unsigned )?hyper (\S+);/) {
                    my $type_name = $1;
                    my $arg_name = $2;

                    if (hyper_to_long($call->{ProcName}, "arg", $arg_name)) {
                        $type_name .= "long";
                    } else {
                        $type_name .= "long long";
1107 1108 1109 1110
                    }

                    push(@args_list, "$type_name $arg_name");
                    push(@setters_list, "args.$arg_name = $arg_name;");
1111
                } elsif ($args_member =~ m/^(\/)?\*/) {
1112 1113 1114 1115 1116 1117 1118 1119 1120 1121 1122 1123 1124
                    # ignore comments
                } else {
                    die "unhandled type for argument value: $args_member";
                }

                if ($is_first_arg and $priv_src eq "conn") {
                    unshift(@args_list, "virConnectPtr conn");
                }

                $is_first_arg = 0;
            }
        }

1125 1126 1127 1128
        if (! @args_list) {
            push(@args_list, "virConnectPtr conn");
        }

1129 1130
        # fix priv_name for the NumOf* functions
        if ($priv_name eq "privateData" and
1131 1132 1133
            !($call->{ProcName} =~ m/(Domains|DomainSnapshot)/) and
            ($call->{ProcName} =~ m/NumOf(Defined|Domain)*(\S+)s/ or
             $call->{ProcName} =~ m/List(Defined|Domain)*(\S+)s/)) {
1134 1135 1136 1137 1138
            my $prefix = lc $2;
            $prefix =~ s/(pool|vol)$//;
            $priv_name = "${prefix}PrivateData";
        }

1139 1140
        # handle return values of the function
        my @ret_list = ();
1141
        my @ret_list2 = ();
1142 1143 1144
        my $call_ret = "&ret";
        my $single_ret_var = "int rv = -1";
        my $single_ret_type = "int";
1145 1146 1147 1148 1149
        my $single_ret_as_list = 0;
        my $single_ret_list_error_msg_type = "undefined";
        my $single_ret_list_name = "undefined";
        my $single_ret_list_max_var = "undefined";
        my $single_ret_list_max_define = "undefined";
1150
        my $single_ret_cleanup = 0;
1151 1152 1153 1154 1155 1156 1157
        my $multi_ret = 0;

        if ($call->{ret} ne "void" and
            scalar(@{$call->{ret_members}}) > 1) {
            $multi_ret = 1;
        }

1158
        if ($call->{ret} eq "void") {
1159
            $call_ret = "NULL";
1160 1161
        } else {
            push(@vars_list, "$call->{ret} ret");
1162 1163

            foreach my $ret_member (@{$call->{ret_members}}) {
1164
                if ($multi_ret) {
1165
                    if ($ret_member =~ m/^(unsigned )?(char|short|int|hyper) (\S+)\[\S+\];/) {
1166 1167 1168 1169
                        if ($2 eq "hyper" and hyper_to_long($call->{ProcName}, "ret", $3)) {
                            die "legacy [u]long hyper arrays aren't supported";
                        }

1170 1171 1172
                        push(@ret_list, "memcpy(result->$3, ret.$3, sizeof result->$3);");
                    } elsif ($ret_member =~ m/<\S+>;/ or $ret_member =~ m/\[\S+\];/) {
                        # just make all other array types fail
1173 1174
                        die "unhandled type for multi-return-value for " .
                            "procedure $call->{name}: $ret_member";
1175
                    } elsif ($ret_member =~ m/^(unsigned )?(char|short|int|hyper) (\S+);/) {
1176 1177 1178 1179 1180 1181 1182
                        if ($2 eq "hyper" and hyper_to_long($call->{ProcName}, "ret", $3)) {
                            my $sign = ""; $sign = "U" if ($1);

                            push(@ret_list, "HYPER_TO_${sign}LONG(result->$3, ret.$3);");
                        } else {
                            push(@ret_list, "result->$3 = ret.$3;");
                        }
1183
                    } else {
1184 1185
                        die "unhandled type for multi-return-value for " .
                            "procedure $call->{name}: $ret_member";
1186
                    }
1187 1188 1189 1190 1191
                } elsif ($ret_member =~ m/^remote_nonnull_string (\S+)<(\S+)>;\s*\/\*\s*insert@(\d+)\s*\*\//) {
                    splice(@args_list, int($3), 0, ("char **const $1"));
                    push(@ret_list, "rv = ret.$1.$1_len;");
                    $single_ret_var = "int rv = -1";
                    $single_ret_type = "int";
1192 1193 1194 1195
                    $single_ret_as_list = 1;
                    $single_ret_list_name = $1;
                    $single_ret_list_max_var = "max$1";
                    $single_ret_list_max_define = $2;
1196 1197 1198
                } elsif ($ret_member =~ m/^remote_nonnull_string (\S+)<\S+>;/) {
                    # error out on unannotated arrays
                    die "remote_nonnull_string array without insert@<offset> annotation: $ret_member";
1199
                } elsif ($ret_member =~ m/^remote_nonnull_string (\S+);/) {
1200 1201 1202
                    push(@ret_list, "rv = ret.$1;");
                    $single_ret_var = "char *rv = NULL";
                    $single_ret_type = "char *";
1203 1204 1205 1206 1207
                } elsif ($ret_member =~ m/^remote_string (\S+);/) {
                    push(@ret_list, "rv = ret.$1 ? *ret.$1 : NULL;");
                    push(@ret_list, "VIR_FREE(ret.$1);");
                    $single_ret_var = "char *rv = NULL";
                    $single_ret_type = "char *";
1208
                } elsif ($ret_member =~ m/^remote_nonnull_(domain|network|storage_pool|storage_vol|node_device|interface|secret|nwfilter|domain_snapshot) (\S+);/) {
1209 1210 1211 1212 1213 1214 1215 1216 1217 1218 1219 1220
                    my $name = $1;
                    my $arg_name = $2;
                    my $type_name = name_to_ProcName($name);

                    if ($name eq "node_device") {
                        $priv_name = "devMonPrivateData";
                    } elsif ($name =~ m/^storage_/) {
                        $priv_name = "storagePrivateData";
                    } elsif (!($name =~ m/^domain/)) {
                        $priv_name = "${name}PrivateData";
                    }

1221 1222 1223 1224 1225 1226 1227 1228
                    if ($call->{ProcName} eq "DomainCreateWithFlags") {
                        # SPECIAL: virDomainCreateWithFlags updates the given
                        #          domain object instead of returning a new one
                        push(@ret_list, "dom->id = ret.dom.id;");
                        push(@ret_list, "xdr_free((xdrproc_t)xdr_$call->{ret}, (char *)&ret);");
                        push(@ret_list, "rv = 0;");
                        $single_ret_var = "int rv = -1";
                        $single_ret_type = "int";
1229
                    } else {
1230 1231 1232 1233 1234
                        if ($name eq "domain_snapshot") {
                            push(@ret_list, "rv = get_nonnull_$name(dom, ret.$arg_name);");
                        } else {
                            push(@ret_list, "rv = get_nonnull_$name($priv_src, ret.$arg_name);");
                        }
1235

1236 1237 1238 1239
                        push(@ret_list, "xdr_free((xdrproc_t)xdr_$call->{ret}, (char *)&ret);");
                        $single_ret_var = "vir${type_name}Ptr rv = NULL";
                        $single_ret_type = "vir${type_name}Ptr";
                    }
1240 1241 1242 1243 1244 1245 1246 1247 1248 1249 1250 1251
                } elsif ($ret_member =~ m/^remote_typed_param (\S+)<(\S+)>;\s*\/\*\s*insert@(\d+)\s*\*\//) {
                    splice(@args_list, int($3), 0, ("virTypedParameterPtr $1"));
                    push(@ret_list2, "if (remoteDeserializeTypedParameters(ret.$1.$1_val,\n" .
                                     "                                         ret.$1.$1_len,\n" .
                                     "                                         $2,\n" .
                                     "                                         $1,\n" .
                                     "                                         n$1) < 0)\n" .
                                     "        goto cleanup;\n");
                    $single_ret_cleanup = 1;
                } elsif ($ret_member =~ m/^remote_typed_param (\S+)<\S+>;/) {
                    # error out on unannotated arrays
                    die "remote_typed_param array without insert@<offset> annotation: $ret_member";
1252
                } elsif ($ret_member =~ m/^int (\S+);/) {
1253 1254 1255 1256 1257 1258 1259 1260 1261 1262
                    my $arg_name = $1;

                    if ($call->{ProcName} =~ m/GetAutostart$/) {
                        push(@args_list, "int *$arg_name");
                        push(@ret_list, "if ($arg_name) *$arg_name = ret.$arg_name;");
                        push(@ret_list, "rv = 0;");
                    } else {
                        push(@ret_list, "rv = ret.$arg_name;");
                    }

1263 1264
                    $single_ret_var = "int rv = -1";
                    $single_ret_type = "int";
1265
                } elsif ($ret_member =~ m/^unsigned hyper (\S+);/) {
1266
                    my $ret_name = $1;
1267

1268
                    if ($call->{ProcName} =~ m/Get(Lib)?Version/) {
1269 1270
                        push(@args_list, "unsigned long *$ret_name");
                        push(@ret_list, "if ($ret_name) HYPER_TO_ULONG(*$ret_name, ret.$ret_name);");
1271 1272 1273
                        push(@ret_list, "rv = 0;");
                        $single_ret_var = "int rv = -1";
                        $single_ret_type = "int";
1274 1275
                    } elsif (hyper_to_long($call->{ProcName}, "ret", $ret_name)) {
                        push(@ret_list, "HYPER_TO_ULONG(rv, ret.$ret_name);");
1276 1277
                        $single_ret_var = "unsigned long rv = 0";
                        $single_ret_type = "unsigned long";
1278 1279 1280 1281
                    } else {
                        push(@ret_list, "rv = ret.$ret_name;");
                        $single_ret_var = "unsigned long long rv = 0";
                        $single_ret_type = "unsigned long long";
1282
                    }
1283 1284
                } elsif ($ret_member =~ m/^(\/)?\*/) {
                    # ignore comments
1285
                } else {
1286 1287
                    die "unhandled type for return value for procedure " .
                        "$call->{name}: $ret_member";
1288 1289 1290 1291
                }
            }
        }

1292 1293
        # select struct type for multi-return-value functions
        if ($multi_ret) {
1294 1295
            if (!(defined $call->{ret_offset})) {
                die "multi-return-value without insert@<offset> annotation: $call->{ret}";
1296 1297
            }

1298 1299
            my $struct_name = $call->{ProcName};
            $struct_name =~ s/Get//;
1300

1301
            splice(@args_list, $call->{ret_offset}, 0, ("vir${struct_name}Ptr result"));
1302 1303
        }

1304 1305 1306 1307
        if ($call->{streamflag} ne "none") {
            splice(@args_list, $call->{streamoffset}, 0, ("virStreamPtr st"));
        }

1308 1309
        # print function
        print "\n";
1310
        print "static $single_ret_type\n";
1311 1312 1313 1314 1315 1316
        print "remote$call->{ProcName}(";

        print join(", ", @args_list);

        print ")\n";
        print "{\n";
1317
        print "    $single_ret_var;\n";
1318 1319 1320 1321 1322 1323
        print "    struct private_data *priv = $priv_src->$priv_name;\n";

        foreach my $var (@vars_list) {
            print "    $var;\n";
        }

1324 1325 1326 1327
        if ($single_ret_as_list) {
            print "    int i;\n";
        }

1328 1329 1330 1331
        if ($call->{streamflag} ne "none") {
            print "    struct private_stream_data *privst = NULL;\n";
        }

1332 1333 1334
        print "\n";
        print "    remoteDriverLock(priv);\n";

1335 1336 1337 1338 1339 1340 1341 1342 1343
        if ($call->{streamflag} ne "none") {
            print "\n";
            print "    if (!(privst = remoteStreamOpen(st, REMOTE_PROC_$call->{UC_NAME}, priv->counter)))\n";
            print "       goto done;\n";
            print "\n";
            print "    st->driver = &remoteStreamDrv;\n";
            print "    st->privateData = privst;\n";
        }

1344 1345 1346 1347 1348 1349 1350 1351 1352
        if ($call->{ProcName} eq "SupportsFeature") {
            # SPECIAL: VIR_DRV_FEATURE_REMOTE feature is handled directly
            print "\n";
            print "    if (feature == VIR_DRV_FEATURE_REMOTE) {\n";
            print "        rv = 1;\n";
            print "        goto done;\n";
            print "    }\n";
        }

1353 1354 1355 1356 1357 1358 1359 1360 1361 1362
        foreach my $args_check (@args_check_list) {
            print "\n";
            print "    if ($args_check->{arg} > $args_check->{limit}) {\n";
            print "        remoteError(VIR_ERR_RPC,\n";
            print "                    _(\"%s length greater than maximum: %d > %d\"),\n";
            print "                    $args_check->{name}, (int)$args_check->{arg}, $args_check->{limit});\n";
            print "        goto done;\n";
            print "    }\n";
        }

1363 1364 1365 1366 1367 1368 1369 1370 1371 1372
        if ($single_ret_as_list) {
            print "\n";
            print "    if ($single_ret_list_max_var > $single_ret_list_max_define) {\n";
            print "        remoteError(VIR_ERR_RPC,\n";
            print "                    _(\"too many remote ${single_ret_list_error_msg_type}s: %d > %d\"),\n";
            print "                    $single_ret_list_max_var, $single_ret_list_max_define);\n";
            print "        goto done;\n";
            print "    }\n";
        }

1373
        if (@setters_list) {
1374
            print "\n";
1375 1376 1377 1378 1379 1380 1381 1382 1383
            print "    ";
        }

        print join("\n    ", @setters_list);

        if (@setters_list) {
            print "\n";
        }

1384 1385 1386 1387 1388 1389 1390 1391 1392 1393 1394
        if (@setters_list2) {
            print "\n";
            print "    ";
        }

        print join("\n    ", @setters_list2);

        if (@setters_list2) {
            print "\n";
        }

1395 1396 1397 1398 1399
        if ($call->{ret} ne "void") {
            print "\n";
            print "    memset(&ret, 0, sizeof ret);\n";
        }

1400 1401
        print "\n";
        print "    if (call($priv_src, priv, 0, ${procprefix}_PROC_$call->{UC_NAME},\n";
1402
        print "             (xdrproc_t)xdr_$call->{args}, (char *)$call_args,\n";
1403 1404 1405 1406 1407 1408
        print "             (xdrproc_t)xdr_$call->{ret}, (char *)$call_ret) == -1) {\n";

        if ($call->{streamflag} ne "none") {
            print "        remoteStreamRelease(st);\n";
        }

1409
        print "        goto done;\n";
1410
        print "    }\n";
1411
        print "\n";
1412

1413 1414 1415 1416 1417 1418 1419 1420 1421 1422 1423 1424 1425 1426 1427 1428 1429 1430 1431 1432 1433 1434 1435 1436 1437 1438
        if ($single_ret_as_list) {
            print "    if (ret.$single_ret_list_name.${single_ret_list_name}_len > $single_ret_list_max_var) {\n";
            print "        remoteError(VIR_ERR_RPC,\n";
            print "                    _(\"too many remote ${single_ret_list_error_msg_type}s: %d > %d\"),\n";
            print "                    ret.$single_ret_list_name.${single_ret_list_name}_len, $single_ret_list_max_var);\n";
            print "        goto cleanup;\n";
            print "    }\n";
            print "\n";
            print "    /* This call is caller-frees (although that isn't clear from\n";
            print "     * the documentation).  However xdr_free will free up both the\n";
            print "     * names and the list of pointers, so we have to strdup the\n";
            print "     * names here. */\n";
            print "    for (i = 0; i < ret.$single_ret_list_name.${single_ret_list_name}_len; ++i) {\n";
            print "        ${single_ret_list_name}[i] = strdup(ret.$single_ret_list_name.${single_ret_list_name}_val[i]);\n";
            print "\n";
            print "        if (${single_ret_list_name}[i] == NULL) {\n";
            print "            for (--i; i >= 0; --i)\n";
            print "                VIR_FREE(${single_ret_list_name}[i]);\n";
            print "\n";
            print "            virReportOOMError();\n";
            print "            goto cleanup;\n";
            print "        }\n";
            print "    }\n";
            print "\n";
        }

1439 1440 1441 1442 1443 1444
        if (@ret_list2) {
            print "    ";
            print join("\n    ", @ret_list2);
            print "\n";
        }

1445 1446 1447 1448
        if (@ret_list) {
            print "    ";
            print join("\n    ", @ret_list);
            print "\n";
1449 1450
        }

1451 1452 1453 1454 1455
        if ($call->{ProcName} eq "DomainDestroy" ||
	    $call->{ProcName} eq "DomainSave" ||
	    $call->{ProcName} eq "DomainManagedSave") {
            # SPECIAL: virDomain{Destroy|Save|ManagedSave} need to reset
	    # the domain id explicitly on success
1456 1457 1458
            print "    dom->id = -1;\n";
        }

1459
        if ($multi_ret or !@ret_list) {
1460 1461 1462
            print "    rv = 0;\n";
        }

1463
        if ($single_ret_as_list or $single_ret_cleanup) {
1464 1465 1466 1467 1468
            print "\n";
            print "cleanup:\n";
            print "    xdr_free((xdrproc_t)xdr_remote_$call->{name}_ret, (char *)&ret);\n";
        }

1469 1470 1471 1472 1473 1474 1475
        print "\n";
        print "done:\n";
        print "    remoteDriverUnlock(priv);\n";
        print "    return rv;\n";
        print "}\n";
    }
}