mirror of
https://git.robbyzambito.me/zaprus
synced 2025-12-20 16:24:50 +00:00
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push-kruxs
| Author | SHA1 | Date | |
|---|---|---|---|
| 59034f239b | |||
| 1512ec1a86 | |||
| f1dce257be | |||
| bcab1e4d00 | |||
| 0e8f016978 | |||
| fc53e87389 | |||
| cbf554e853 | |||
| 775212013f | |||
| 339ac5cfe5 | |||
| eacfaffb6b | |||
| 1731b2e643 | |||
| dae66a0039 | |||
| 683a2015b0 | |||
| c34748dab3 | |||
| 5b88f0df6a | |||
| 23f7ad8f94 |
19
build.zig
19
build.zig
@@ -15,6 +15,12 @@ pub fn build(b: *std.Build) void {
|
||||
// set a preferred release mode, allowing the user to decide how to optimize.
|
||||
const optimize = b.standardOptimizeOption(.{});
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||||
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const lib_mod = b.createModule(.{
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.root_source_file = b.path("src/root.zig"),
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.target = target,
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.optimize = optimize,
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});
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||||
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// We will also create a module for our other entry point, 'main.zig'.
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const exe_mod = b.createModule(.{
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||||
// `root_source_file` is the Zig "entry point" of the module. If a module
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||||
@@ -26,9 +32,20 @@ pub fn build(b: *std.Build) void {
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.optimize = optimize,
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});
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||||
exe_mod.addImport("network", b.dependency("network", .{}).module("network"));
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lib_mod.addImport("network", b.dependency("network", .{}).module("network"));
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lib_mod.addImport("gatorcat", b.dependency("gatorcat", .{}).module("gatorcat"));
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exe_mod.addImport("zaprus", lib_mod);
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exe_mod.addImport("clap", b.dependency("clap", .{}).module("clap"));
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const lib = b.addLibrary(.{
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.linkage = .static,
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.name = "zaprus",
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.root_module = lib_mod,
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});
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b.installArtifact(lib);
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// This creates another `std.Build.Step.Compile`, but this one builds an executable
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// rather than a static library.
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const exe = b.addExecutable(.{
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||||
|
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@@ -44,6 +44,10 @@
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.url = "git+https://github.com/Hejsil/zig-clap?ref=0.10.0#e47028deaefc2fb396d3d9e9f7bd776ae0b2a43a",
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.hash = "clap-0.10.0-oBajB434AQBDh-Ei3YtoKIRxZacVPF1iSwp3IX_ZB8f0",
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},
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.gatorcat = .{
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.url = "git+https://github.com/kj4tmp/gatorcat#bb1847f6c95852e7a0ec8c07870a948c171d5f98",
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.hash = "gatorcat-0.3.2-WcrpTf1mBwDrmPaIhKCfLJO064v8Sjjn7DBq4CKZSgHH",
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},
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},
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.paths = .{
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"build.zig",
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@@ -39,10 +39,10 @@ fn broadcastSaprusMessage(msg: SaprusMessage, udp_port: u16, allocator: Allocato
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_ = try sock.sendTo(dest_addr, msg_bytes);
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}
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pub fn sendRelay(payload: []const u8, allocator: Allocator) !void {
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pub fn sendRelay(payload: []const u8, dest: [4]u8, allocator: Allocator) !void {
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const msg = SaprusMessage{
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.relay = .{
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.header = .{ .dest = .{ 70, 70, 70, 70 } },
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.header = .{ .dest = dest },
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.payload = payload,
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},
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};
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@@ -76,7 +76,10 @@ pub fn sendInitialConnection(payload: []const u8, initial_port: u16, allocator:
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return msg;
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}
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pub fn connect(payload: []const u8, allocator: Allocator) !?SaprusMessage {
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pub fn connect(payload: []const u8, allocator: Allocator) !?SaprusConnection {
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var foo: gcat.nic.RawSocket = try .init("enp7s0"); // /proc/net/dev
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defer foo.deinit();
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var initial_port: u16 = 0;
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if (rand) |r| {
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initial_port = r.intRangeAtMost(u16, 1024, 65000);
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@@ -109,10 +112,14 @@ pub fn connect(payload: []const u8, allocator: Allocator) !?SaprusMessage {
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// Complete handshake after awaiting response
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try broadcastSaprusMessage(msg, randomPort(), allocator);
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return initial_conn_res;
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if (false) {
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return initial_conn_res.?;
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}
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return null;
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}
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pub const SaprusMessage = @import("./saprus_message.zig").SaprusMessage;
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const SaprusMessage = @import("message.zig").Message;
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const SaprusConnection = @import("Connection.zig");
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const std = @import("std");
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const Random = std.Random;
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@@ -120,5 +127,6 @@ const posix = std.posix;
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const mem = std.mem;
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const network = @import("network");
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const gcat = @import("gatorcat");
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const Allocator = mem.Allocator;
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||||
0
src/Connection.zig
Normal file
0
src/Connection.zig
Normal file
40
src/main.zig
40
src/main.zig
@@ -23,6 +23,7 @@ pub fn main() !void {
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const params = comptime clap.parseParamsComptime(
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\\-h, --help Display this help and exit.
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\\-r, --relay <str> A relay message to send.
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\\-d, --dest <str> An IPv4 or <= 4 ASCII byte string.
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\\-c, --connect <str> A connection message to send.
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\\
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);
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@@ -41,40 +42,53 @@ pub fn main() !void {
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};
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defer res.deinit();
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try Saprus.init();
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defer Saprus.deinit();
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try SaprusClient.init();
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defer SaprusClient.deinit();
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if (res.args.help != 0) {
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return clap.help(std.io.getStdErr().writer(), clap.Help, ¶ms, .{});
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}
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if (res.args.relay) |r| {
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try Saprus.sendRelay(if (r.len > 0) r else "Hello darkness my old friend", gpa);
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const dest = parseDest(res.args.dest);
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try SaprusClient.sendRelay(
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if (r.len > 0) r else "Hello darkness my old friend",
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dest,
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gpa,
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);
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// std.debug.print("Sent: {s}\n", .{r});
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return;
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} else if (res.args.connect) |c| {
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const conn_res: ?SaprusMessage = Saprus.connect(if (c.len > 0) c else "Hello darkness my old friend", gpa) catch |err| switch (err) {
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_ = SaprusClient.connect(if (c.len > 0) c else "Hello darkness my old friend", gpa) catch |err| switch (err) {
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error.WouldBlock => null,
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||||
else => return err,
|
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};
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defer if (conn_res) |r| r.deinit(gpa);
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if (conn_res) |r| {
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std.debug.print("{s}\n", .{r.connection.payload});
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} else {
|
||||
std.debug.print("No response from connection request\n", .{});
|
||||
}
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||||
return;
|
||||
}
|
||||
|
||||
return clap.help(std.io.getStdErr().writer(), clap.Help, ¶ms, .{});
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}
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fn parseDest(in: ?[]const u8) [4]u8 {
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if (in) |dest| {
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if (dest.len <= 4) {
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var res: [4]u8 = @splat(0);
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@memcpy(res[0..dest.len], dest);
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return res;
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}
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||||
|
||||
const addr = std.net.Ip4Address.parse(dest, 0) catch return "FAIL".*;
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return @bitCast(addr.sa.addr);
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}
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return "zap\x00".*;
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}
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const builtin = @import("builtin");
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const std = @import("std");
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const DebugAllocator = std.heap.DebugAllocator(.{});
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const ArrayList = std.ArrayList;
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|
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const Saprus = @import("./saprus.zig");
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const SaprusMessage = Saprus.SaprusMessage;
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const zaprus = @import("zaprus");
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const SaprusClient = zaprus.Client;
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const SaprusMessage = zaprus.Message;
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|
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const clap = @import("clap");
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|
||||
415
src/message.zig
Normal file
415
src/message.zig
Normal file
@@ -0,0 +1,415 @@
|
||||
const base64Enc = std.base64.Base64Encoder.init(std.base64.standard_alphabet_chars, '=');
|
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const base64Dec = std.base64.Base64Decoder.init(std.base64.standard_alphabet_chars, '=');
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||||
|
||||
/// Type tag for Message union.
|
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/// This is the first value in the actual packet sent over the network.
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pub const PacketType = enum(u16) {
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relay = 0x003C,
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file_transfer = 0x8888,
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connection = 0x00E9,
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_,
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};
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/// Reserved option values.
|
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/// Currently unused.
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pub const ConnectionOptions = packed struct(u8) {
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opt1: bool = false,
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opt2: bool = false,
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opt3: bool = false,
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opt4: bool = false,
|
||||
opt5: bool = false,
|
||||
opt6: bool = false,
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||||
opt7: bool = false,
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||||
opt8: bool = false,
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||||
};
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||||
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||||
pub const Error = error{
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NotImplementedSaprusType,
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UnknownSaprusType,
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InvalidMessage,
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||||
};
|
||||
|
||||
// ZERO COPY STUFF
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// &payload could be a void value that is treated as a pointer to a [*]u8
|
||||
pub const ZeroCopyMessage = packed struct {
|
||||
const Relay = packed struct {
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||||
dest: @Vector(4, u8),
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payload: void,
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||||
|
||||
pub fn getPayload(self: *align(@alignOf(ZeroCopyMessage)) Relay) []u8 {
|
||||
// Cast the 'self' pointer (which points to the Relay header,
|
||||
// located at the same memory as the parent's 'bytes' field)
|
||||
// to a pointer to void, as required by @fieldParentPtr for a void field.
|
||||
// Preserve the known alignment.
|
||||
const self_as_void_ptr: *align(@alignOf(ZeroCopyMessage)) void = @ptrCast(self);
|
||||
|
||||
// Cast the resulting *void pointer to the parent type *ZeroCopyMessage.
|
||||
// This cast performs the necessary alignment check.
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const parent: *ZeroCopyMessage = @alignCast(@fieldParentPtr("bytes", self_as_void_ptr));
|
||||
|
||||
// The 'length' field in the parent ZeroCopyMessage contains
|
||||
// the size of the header (Relay) + payload length.
|
||||
const total_len = parent.length;
|
||||
|
||||
// Payload length = total_len - size of the Relay header
|
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const payload_len = total_len - @sizeOf(Relay);
|
||||
|
||||
// The payload starts immediately after the fixed fields of the Relay struct.
|
||||
// The address of the 'payload' field represents this starting point.
|
||||
const payload_start_ptr: [*]u8 = @ptrCast(&self.payload);
|
||||
|
||||
// Return a slice from the payload start address with the calculated length.
|
||||
return payload_start_ptr[0..payload_len];
|
||||
}
|
||||
};
|
||||
const Connection = packed struct {
|
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src_port: u16, // random number > 1024
|
||||
dest_port: u16, // random number > 1024
|
||||
seq_num: u32 = 0,
|
||||
msg_id: u32 = 0,
|
||||
reserved: u8 = 0,
|
||||
options: ConnectionOptions = .{},
|
||||
payload: void,
|
||||
|
||||
pub fn getPayload(self: *align(1) Connection) []u8 {
|
||||
const len: *u16 = @ptrFromInt(@intFromPtr(self) - @sizeOf(u16));
|
||||
return @as([*]u8, @ptrCast(&self.payload))[0 .. len.* - @sizeOf(Connection)];
|
||||
}
|
||||
|
||||
fn nativeFromNetworkEndian(self: *align(1) Connection) Error!void {
|
||||
self.src_port = bigToNative(@TypeOf(self.src_port), self.src_port);
|
||||
self.dest_port = bigToNative(@TypeOf(self.dest_port), self.dest_port);
|
||||
self.seq_num = bigToNative(@TypeOf(self.seq_num), self.seq_num);
|
||||
self.msg_id = bigToNative(@TypeOf(self.msg_id), self.msg_id);
|
||||
}
|
||||
|
||||
fn networkFromNativeEndian(self: *align(1) Connection) Error!void {
|
||||
self.src_port = nativeToBig(@TypeOf(self.src_port), self.src_port);
|
||||
self.dest_port = nativeToBig(@TypeOf(self.dest_port), self.dest_port);
|
||||
self.seq_num = nativeToBig(@TypeOf(self.seq_num), self.seq_num);
|
||||
self.msg_id = nativeToBig(@TypeOf(self.msg_id), self.msg_id);
|
||||
}
|
||||
};
|
||||
|
||||
const Self = @This();
|
||||
|
||||
type: PacketType,
|
||||
length: u16,
|
||||
bytes: void = {},
|
||||
|
||||
pub fn init(allocator: Allocator, comptime @"type": PacketType, payload_len: u16) !*Self {
|
||||
const header_size = @sizeOf(switch (@"type") {
|
||||
.relay => Relay,
|
||||
.connection => Connection,
|
||||
else => return error.Bad,
|
||||
});
|
||||
const size = payload_len + @sizeOf(Self) + header_size;
|
||||
const bytes = try allocator.alignedAlloc(u8, @alignOf(Self), size);
|
||||
const res: *Self = @ptrCast(bytes.ptr);
|
||||
res.type = @"type";
|
||||
res.length = payload_len + header_size;
|
||||
return res;
|
||||
}
|
||||
|
||||
pub fn deinit(self: *Self, allocator: Allocator) void {
|
||||
allocator.free(self.asBytes());
|
||||
}
|
||||
|
||||
fn getRelay(self: *Self) *align(@alignOf(Self)) Relay {
|
||||
return std.mem.bytesAsValue(Relay, &self.bytes);
|
||||
}
|
||||
fn getConnection(self: *Self) *align(@alignOf(Self)) Connection {
|
||||
return std.mem.bytesAsValue(Connection, &self.bytes);
|
||||
}
|
||||
|
||||
pub fn getSaprusTypePayload(self: *Self) Error!(union(PacketType) {
|
||||
relay: *align(@alignOf(Self)) Relay,
|
||||
file_transfer: void,
|
||||
connection: *align(@alignOf(Self)) Connection,
|
||||
}) {
|
||||
return switch (self.type) {
|
||||
.relay => .{ .relay = self.getRelay() },
|
||||
.connection => .{ .connection = self.getConnection() },
|
||||
.file_transfer => Error.NotImplementedSaprusType,
|
||||
else => Error.UnknownSaprusType,
|
||||
};
|
||||
}
|
||||
|
||||
pub fn nativeFromNetworkEndian(self: *Self) Error!void {
|
||||
self.type = @enumFromInt(bigToNative(
|
||||
@typeInfo(@TypeOf(self.type)).@"enum".tag_type,
|
||||
@intFromEnum(self.type),
|
||||
));
|
||||
self.length = bigToNative(@TypeOf(self.length), self.length);
|
||||
switch (try self.getSaprusTypePayload()) {
|
||||
.relay => {},
|
||||
.connection => |*con| try con.*.nativeFromNetworkEndian(),
|
||||
// We know other values are unreachable,
|
||||
// because they would have returned an error from the switch condition.
|
||||
else => unreachable,
|
||||
}
|
||||
}
|
||||
|
||||
pub fn networkFromNativeEndian(self: *Self) Error!void {
|
||||
try switch (try self.getSaprusTypePayload()) {
|
||||
.relay => {},
|
||||
.connection => |*con| con.*.networkFromNativeEndian(),
|
||||
.file_transfer => Error.NotImplementedSaprusType,
|
||||
else => Error.UnknownSaprusType,
|
||||
};
|
||||
self.type = @enumFromInt(nativeToBig(
|
||||
@typeInfo(@TypeOf(self.type)).@"enum".tag_type,
|
||||
@intFromEnum(self.type),
|
||||
));
|
||||
self.length = nativeToBig(@TypeOf(self.length), self.length);
|
||||
}
|
||||
|
||||
pub fn bytesAsValueUnchecked(bytes: []align(@alignOf(Self)) u8) *Self {
|
||||
return std.mem.bytesAsValue(Self, bytes);
|
||||
}
|
||||
|
||||
pub fn bytesAsValue(bytes: []align(@alignOf(Self)) u8) !*Self {
|
||||
const res = bytesAsValueUnchecked(bytes);
|
||||
return switch (res.type) {
|
||||
.relay, .connection => if (bytes.len == res.length + @sizeOf(Self))
|
||||
res
|
||||
else
|
||||
Error.InvalidMessage,
|
||||
.file_transfer => Error.NotImplementedSaprusType,
|
||||
else => Error.UnknownSaprusType,
|
||||
};
|
||||
}
|
||||
|
||||
pub fn asBytes(self: *Self) []align(@alignOf(Self)) u8 {
|
||||
const size = @sizeOf(Self) + self.length;
|
||||
return @as([*]align(@alignOf(Self)) u8, @ptrCast(self))[0..size];
|
||||
}
|
||||
};
|
||||
|
||||
test "testing variable length zero copy struct" {
|
||||
const gpa = std.testing.allocator;
|
||||
const payload = "Hello darkness my old friend";
|
||||
|
||||
// Create a view of the byte slice as a ZeroCopyMessage
|
||||
const zcm: *ZeroCopyMessage = try .init(gpa, .relay, payload.len);
|
||||
defer zcm.deinit(gpa);
|
||||
std.debug.print("outer: {*}\n", .{zcm});
|
||||
|
||||
{
|
||||
// Set the message values
|
||||
{
|
||||
// These are both set by the init call.
|
||||
// zcm.type = .relay;
|
||||
// zcm.length = payload_len;
|
||||
}
|
||||
const relay = (try zcm.getSaprusTypePayload()).relay;
|
||||
relay.dest = .{ 1, 2, 3, 4 };
|
||||
@memcpy(relay.getPayload(), payload);
|
||||
}
|
||||
|
||||
{
|
||||
const bytes = zcm.asBytes();
|
||||
|
||||
// Print the message as hex using the network byte order
|
||||
try zcm.networkFromNativeEndian();
|
||||
// We know the error from nativeFromNetworkEndian is unreachable because
|
||||
// it would have returned an error from networkFromNativeEndian.
|
||||
defer zcm.nativeFromNetworkEndian() catch unreachable;
|
||||
std.debug.print("network bytes: {x}\n", .{bytes});
|
||||
std.debug.print("bytes len: {d}\n", .{bytes.len});
|
||||
}
|
||||
|
||||
if (false) {
|
||||
// Illegal behavior
|
||||
std.debug.print("{any}\n", .{(try zcm.getSaprusTypePayload()).connection});
|
||||
}
|
||||
|
||||
try std.testing.expectEqualDeep(zcm, try ZeroCopyMessage.bytesAsValue(zcm.asBytes()));
|
||||
}
|
||||
|
||||
/// All Saprus messages
|
||||
pub const Message = union(PacketType) {
|
||||
pub const Relay = struct {
|
||||
pub const Header = packed struct {
|
||||
dest: @Vector(4, u8),
|
||||
};
|
||||
header: Header,
|
||||
payload: []const u8,
|
||||
};
|
||||
pub const Connection = struct {
|
||||
pub const Header = packed struct {
|
||||
src_port: u16, // random number > 1024
|
||||
dest_port: u16, // random number > 1024
|
||||
seq_num: u32 = 0,
|
||||
msg_id: u32 = 0,
|
||||
reserved: u8 = 0,
|
||||
options: ConnectionOptions = .{},
|
||||
};
|
||||
header: Header,
|
||||
payload: []const u8,
|
||||
};
|
||||
relay: Relay,
|
||||
file_transfer: void, // unimplemented
|
||||
connection: Connection,
|
||||
|
||||
/// Should be called for any Message that was declared using a function that you pass an allocator to.
|
||||
pub fn deinit(self: Message, allocator: Allocator) void {
|
||||
switch (self) {
|
||||
.relay => |r| allocator.free(r.payload),
|
||||
.connection => |c| allocator.free(c.payload),
|
||||
else => unreachable,
|
||||
}
|
||||
}
|
||||
|
||||
fn toBytesAux(
|
||||
header: anytype,
|
||||
payload: []const u8,
|
||||
buf: *std.ArrayList(u8),
|
||||
allocator: Allocator,
|
||||
) !void {
|
||||
const Header = @TypeOf(header);
|
||||
// Create a growable string to store the base64 bytes in.
|
||||
// Doing this first so I can use the length of the encoded bytes for the length field.
|
||||
var payload_list = std.ArrayList(u8).init(allocator);
|
||||
defer payload_list.deinit();
|
||||
const buf_w = payload_list.writer();
|
||||
|
||||
// Write the payload bytes as base64 to the growable string.
|
||||
try base64Enc.encodeWriter(buf_w, payload);
|
||||
|
||||
// At this point, payload_list contains the base64 encoded payload.
|
||||
|
||||
// Add the payload length to the output buf.
|
||||
try buf.*.appendSlice(
|
||||
asBytes(&nativeToBig(u16, @intCast(payload_list.items.len + @bitSizeOf(Header) / 8))),
|
||||
);
|
||||
|
||||
// Add the header bytes to the output buf.
|
||||
var header_buf: [@sizeOf(Header)]u8 = undefined;
|
||||
var header_buf_stream = std.io.fixedBufferStream(&header_buf);
|
||||
try header_buf_stream.writer().writeStructEndian(header, .big);
|
||||
// Add the exact number of bits in the header without padding.
|
||||
try buf.*.appendSlice(header_buf[0 .. @bitSizeOf(Header) / 8]);
|
||||
|
||||
try buf.*.appendSlice(payload_list.items);
|
||||
}
|
||||
|
||||
/// Caller is responsible for freeing the returned bytes.
|
||||
pub fn toBytes(self: Message, allocator: Allocator) ![]u8 {
|
||||
// Create a growable list of bytes to store the output in.
|
||||
var buf = std.ArrayList(u8).init(allocator);
|
||||
errdefer buf.deinit();
|
||||
|
||||
// Start with writing the message type, which is the first 16 bits of every Saprus message.
|
||||
try buf.appendSlice(asBytes(&nativeToBig(u16, @intFromEnum(self))));
|
||||
|
||||
// Write the proper header and payload for the given packet type.
|
||||
switch (self) {
|
||||
.relay => |r| try toBytesAux(r.header, r.payload, &buf, allocator),
|
||||
.connection => |c| try toBytesAux(c.header, c.payload, &buf, allocator),
|
||||
.file_transfer => return Error.NotImplementedSaprusType,
|
||||
}
|
||||
|
||||
// Collect the growable list as a slice and return it.
|
||||
return buf.toOwnedSlice();
|
||||
}
|
||||
|
||||
fn fromBytesAux(
|
||||
comptime packet: PacketType,
|
||||
len: u16,
|
||||
r: std.io.FixedBufferStream([]const u8).Reader,
|
||||
allocator: Allocator,
|
||||
) !Message {
|
||||
const Header = @field(@FieldType(Message, @tagName(packet)), "Header");
|
||||
|
||||
// Read the header for the current message type.
|
||||
var header_bytes: [@sizeOf(Header)]u8 = undefined;
|
||||
_ = try r.read(header_bytes[0 .. @bitSizeOf(Header) / 8]);
|
||||
var header_stream = std.io.fixedBufferStream(&header_bytes);
|
||||
const header = try header_stream.reader().readStructEndian(Header, .big);
|
||||
|
||||
// Read the base64 bytes into a list to be able to call the decoder on it.
|
||||
const payload_buf = try allocator.alloc(u8, len - @bitSizeOf(Header) / 8);
|
||||
defer allocator.free(payload_buf);
|
||||
_ = try r.readAll(payload_buf);
|
||||
|
||||
// Create a buffer to store the payload in, and decode the base64 bytes into the payload field.
|
||||
const payload = try allocator.alloc(u8, try base64Dec.calcSizeForSlice(payload_buf));
|
||||
try base64Dec.decode(payload, payload_buf);
|
||||
|
||||
// Return the type of Message specified by the `packet` argument.
|
||||
return @unionInit(Message, @tagName(packet), .{
|
||||
.header = header,
|
||||
.payload = payload,
|
||||
});
|
||||
}
|
||||
|
||||
/// Caller is responsible for calling .deinit on the returned value.
|
||||
pub fn fromBytes(bytes: []const u8, allocator: Allocator) !Message {
|
||||
var s = std.io.fixedBufferStream(bytes);
|
||||
const r = s.reader();
|
||||
|
||||
// Read packet type
|
||||
const packet_type = @as(PacketType, @enumFromInt(try r.readInt(u16, .big)));
|
||||
|
||||
// Read the length of the header + base64 encoded payload.
|
||||
const len = try r.readInt(u16, .big);
|
||||
|
||||
switch (packet_type) {
|
||||
.relay => return fromBytesAux(.relay, len, r, allocator),
|
||||
.connection => return fromBytesAux(.connection, len, r, allocator),
|
||||
.file_transfer => return Error.NotImplementedSaprusType,
|
||||
else => return Error.UnknownSaprusType,
|
||||
}
|
||||
}
|
||||
};
|
||||
|
||||
const std = @import("std");
|
||||
const Allocator = std.mem.Allocator;
|
||||
|
||||
const asBytes = std.mem.asBytes;
|
||||
const nativeToBig = std.mem.nativeToBig;
|
||||
const bigToNative = std.mem.bigToNative;
|
||||
|
||||
test "Round trip Relay toBytes and fromBytes" {
|
||||
const gpa = std.testing.allocator;
|
||||
const msg = Message{
|
||||
.relay = .{
|
||||
.header = .{ .dest = .{ 255, 255, 255, 255 } },
|
||||
.payload = "Hello darkness my old friend",
|
||||
},
|
||||
};
|
||||
|
||||
const to_bytes = try msg.toBytes(gpa);
|
||||
defer gpa.free(to_bytes);
|
||||
|
||||
const from_bytes = try Message.fromBytes(to_bytes, gpa);
|
||||
defer from_bytes.deinit(gpa);
|
||||
|
||||
try std.testing.expectEqualDeep(msg, from_bytes);
|
||||
}
|
||||
|
||||
test "Round trip Connection toBytes and fromBytes" {
|
||||
const gpa = std.testing.allocator;
|
||||
const msg = Message{
|
||||
.connection = .{
|
||||
.header = .{
|
||||
.src_port = 0,
|
||||
.dest_port = 0,
|
||||
},
|
||||
.payload = "Hello darkness my old friend",
|
||||
},
|
||||
};
|
||||
|
||||
const to_bytes = try msg.toBytes(gpa);
|
||||
defer gpa.free(to_bytes);
|
||||
|
||||
const from_bytes = try Message.fromBytes(to_bytes, gpa);
|
||||
defer from_bytes.deinit(gpa);
|
||||
|
||||
try std.testing.expectEqualDeep(msg, from_bytes);
|
||||
}
|
||||
|
||||
test {
|
||||
std.testing.refAllDeclsRecursive(@This());
|
||||
}
|
||||
4
src/root.zig
Normal file
4
src/root.zig
Normal file
@@ -0,0 +1,4 @@
|
||||
pub const Client = @import("Client.zig");
|
||||
pub const Connection = @import("Connection.zig");
|
||||
|
||||
pub usingnamespace @import("message.zig");
|
||||
@@ -1,211 +0,0 @@
|
||||
const base64Enc = std.base64.Base64Encoder.init(std.base64.standard_alphabet_chars, '=');
|
||||
const base64Dec = std.base64.Base64Decoder.init(std.base64.standard_alphabet_chars, '=');
|
||||
|
||||
/// Type tag for SaprusMessage union.
|
||||
/// This is the first value in the actual packet sent over the network.
|
||||
pub const SaprusPacketType = enum(u16) {
|
||||
relay = 0x003C,
|
||||
file_transfer = 0x8888,
|
||||
connection = 0x00E9,
|
||||
_,
|
||||
};
|
||||
|
||||
/// Reserved option values.
|
||||
/// Currently unused.
|
||||
pub const SaprusConnectionOptions = packed struct(u8) {
|
||||
opt1: bool = false,
|
||||
opt2: bool = false,
|
||||
opt3: bool = false,
|
||||
opt4: bool = false,
|
||||
opt5: bool = false,
|
||||
opt6: bool = false,
|
||||
opt7: bool = false,
|
||||
opt8: bool = false,
|
||||
};
|
||||
|
||||
pub const SaprusError = error{
|
||||
NotImplementedSaprusType,
|
||||
UnknownSaprusType,
|
||||
};
|
||||
|
||||
/// All Saprus messages
|
||||
pub const SaprusMessage = union(SaprusPacketType) {
|
||||
pub const Relay = struct {
|
||||
pub const Header = packed struct {
|
||||
dest: @Vector(4, u8),
|
||||
};
|
||||
header: Header,
|
||||
payload: []const u8,
|
||||
};
|
||||
pub const Connection = struct {
|
||||
pub const Header = packed struct {
|
||||
src_port: u16, // random number > 1024
|
||||
dest_port: u16, // random number > 1024
|
||||
seq_num: u32 = 0,
|
||||
msg_id: u32 = 0,
|
||||
reserved: u8 = 0,
|
||||
options: SaprusConnectionOptions = .{},
|
||||
};
|
||||
header: Header,
|
||||
payload: []const u8,
|
||||
};
|
||||
relay: Relay,
|
||||
file_transfer: void, // unimplemented
|
||||
connection: Connection,
|
||||
|
||||
/// Should be called for any SaprusMessage that was declared using a function that you pass an allocator to.
|
||||
pub fn deinit(self: SaprusMessage, allocator: Allocator) void {
|
||||
switch (self) {
|
||||
.relay => |r| allocator.free(r.payload),
|
||||
.connection => |c| allocator.free(c.payload),
|
||||
else => unreachable,
|
||||
}
|
||||
}
|
||||
|
||||
fn toBytesAux(
|
||||
header: anytype,
|
||||
payload: []const u8,
|
||||
buf: *std.ArrayList(u8),
|
||||
allocator: Allocator,
|
||||
) !void {
|
||||
const Header = @TypeOf(header);
|
||||
// Create a growable string to store the base64 bytes in.
|
||||
// Doing this first so I can use the length of the encoded bytes for the length field.
|
||||
var payload_list = std.ArrayList(u8).init(allocator);
|
||||
defer payload_list.deinit();
|
||||
const buf_w = payload_list.writer();
|
||||
|
||||
// Write the payload bytes as base64 to the growable string.
|
||||
try base64Enc.encodeWriter(buf_w, payload);
|
||||
|
||||
// At this point, payload_list contains the base64 encoded payload.
|
||||
|
||||
// Add the payload length to the output buf.
|
||||
try buf.*.appendSlice(
|
||||
asBytes(&nativeToBig(u16, @intCast(payload_list.items.len + @bitSizeOf(Header) / 8))),
|
||||
);
|
||||
|
||||
// Add the header bytes to the output buf.
|
||||
var header_buf: [@sizeOf(Header)]u8 = undefined;
|
||||
var header_buf_stream = std.io.fixedBufferStream(&header_buf);
|
||||
try header_buf_stream.writer().writeStructEndian(header, .big);
|
||||
// Add the exact number of bits in the header without padding.
|
||||
try buf.*.appendSlice(header_buf[0 .. @bitSizeOf(Header) / 8]);
|
||||
|
||||
try buf.*.appendSlice(payload_list.items);
|
||||
}
|
||||
|
||||
/// Caller is responsible for freeing the returned bytes.
|
||||
pub fn toBytes(self: SaprusMessage, allocator: Allocator) ![]u8 {
|
||||
// Create a growable list of bytes to store the output in.
|
||||
var buf = std.ArrayList(u8).init(allocator);
|
||||
errdefer buf.deinit();
|
||||
|
||||
// Start with writing the message type, which is the first 16 bits of every Saprus message.
|
||||
try buf.appendSlice(asBytes(&nativeToBig(u16, @intFromEnum(self))));
|
||||
|
||||
// Write the proper header and payload for the given packet type.
|
||||
switch (self) {
|
||||
.relay => |r| try toBytesAux(r.header, r.payload, &buf, allocator),
|
||||
.connection => |c| try toBytesAux(c.header, c.payload, &buf, allocator),
|
||||
.file_transfer => return SaprusError.NotImplementedSaprusType,
|
||||
}
|
||||
|
||||
// Collect the growable list as a slice and return it.
|
||||
return buf.toOwnedSlice();
|
||||
}
|
||||
|
||||
fn fromBytesAux(
|
||||
comptime packet: SaprusPacketType,
|
||||
len: u16,
|
||||
r: std.io.FixedBufferStream([]const u8).Reader,
|
||||
allocator: Allocator,
|
||||
) !SaprusMessage {
|
||||
const Header = @field(@FieldType(SaprusMessage, @tagName(packet)), "Header");
|
||||
|
||||
// Read the header for the current message type.
|
||||
var header_bytes: [@sizeOf(Header)]u8 = undefined;
|
||||
_ = try r.read(header_bytes[0 .. @bitSizeOf(Header) / 8]);
|
||||
var header_stream = std.io.fixedBufferStream(&header_bytes);
|
||||
const header = try header_stream.reader().readStructEndian(Header, .big);
|
||||
|
||||
// Read the base64 bytes into a list to be able to call the decoder on it.
|
||||
const payload_buf = try allocator.alloc(u8, len - @bitSizeOf(Header) / 8);
|
||||
defer allocator.free(payload_buf);
|
||||
_ = try r.readAll(payload_buf);
|
||||
|
||||
// Create a buffer to store the payload in, and decode the base64 bytes into the payload field.
|
||||
const payload = try allocator.alloc(u8, try base64Dec.calcSizeForSlice(payload_buf));
|
||||
try base64Dec.decode(payload, payload_buf);
|
||||
|
||||
// Return the type of SaprusMessage specified by the `packet` argument.
|
||||
return @unionInit(SaprusMessage, @tagName(packet), .{
|
||||
.header = header,
|
||||
.payload = payload,
|
||||
});
|
||||
}
|
||||
|
||||
/// Caller is responsible for calling .deinit on the returned value.
|
||||
pub fn fromBytes(bytes: []const u8, allocator: Allocator) !SaprusMessage {
|
||||
var s = std.io.fixedBufferStream(bytes);
|
||||
const r = s.reader();
|
||||
|
||||
// Read packet type
|
||||
const packet_type = @as(SaprusPacketType, @enumFromInt(try r.readInt(u16, .big)));
|
||||
|
||||
// Read the length of the header + base64 encoded payload.
|
||||
const len = try r.readInt(u16, .big);
|
||||
|
||||
switch (packet_type) {
|
||||
.relay => return fromBytesAux(.relay, len, r, allocator),
|
||||
.connection => return fromBytesAux(.connection, len, r, allocator),
|
||||
.file_transfer => return SaprusError.NotImplementedSaprusType,
|
||||
else => return SaprusError.UnknownSaprusType,
|
||||
}
|
||||
}
|
||||
};
|
||||
|
||||
const std = @import("std");
|
||||
const Allocator = std.mem.Allocator;
|
||||
|
||||
const asBytes = std.mem.asBytes;
|
||||
const nativeToBig = std.mem.nativeToBig;
|
||||
|
||||
test "Round trip Relay toBytes and fromBytes" {
|
||||
const gpa = std.testing.allocator;
|
||||
const msg = SaprusMessage{
|
||||
.relay = .{
|
||||
.header = .{ .dest = .{ 255, 255, 255, 255 } },
|
||||
.payload = "Hello darkness my old friend",
|
||||
},
|
||||
};
|
||||
|
||||
const to_bytes = try msg.toBytes(gpa);
|
||||
defer gpa.free(to_bytes);
|
||||
|
||||
const from_bytes = try SaprusMessage.fromBytes(to_bytes, gpa);
|
||||
defer from_bytes.deinit(gpa);
|
||||
|
||||
try std.testing.expectEqualDeep(msg, from_bytes);
|
||||
}
|
||||
|
||||
test "Round trip Connection toBytes and fromBytes" {
|
||||
const gpa = std.testing.allocator;
|
||||
const msg = SaprusMessage{
|
||||
.connection = .{
|
||||
.header = .{
|
||||
.src_port = 0,
|
||||
.dest_port = 0,
|
||||
},
|
||||
.payload = "Hello darkness my old friend",
|
||||
},
|
||||
};
|
||||
|
||||
const to_bytes = try msg.toBytes(gpa);
|
||||
defer gpa.free(to_bytes);
|
||||
|
||||
const from_bytes = try SaprusMessage.fromBytes(to_bytes, gpa);
|
||||
defer from_bytes.deinit(gpa);
|
||||
|
||||
try std.testing.expectEqualDeep(msg, from_bytes);
|
||||
}
|
||||
Reference in New Issue
Block a user