account id -> u40, use Access Key embedding
This commit is contained in:
parent
9d6527acf4
commit
4f0c608392
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@ -1,3 +1,4 @@
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const builtin = @import("builtin");
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const std = @import("std");
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const encryption = @import("encryption.zig");
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const sqlite = @import("sqlite"); // TODO: If we use this across all services, Account should not have this, and we should have a localdbaccount struct
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@ -10,10 +11,10 @@ const Self = @This();
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allocator: std.mem.Allocator,
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root_account_key: *[encryption.key_length]u8,
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pub var root_key_mapping: ?std.StringHashMap([]const u8) = null;
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pub var root_key_mapping: ?std.AutoHashMap(u40, []const u8) = null;
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pub fn accountForId(allocator: std.mem.Allocator, account_id: []const u8) !Self {
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if (std.mem.eql(u8, account_id, "1234")) {
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pub fn accountForId(allocator: std.mem.Allocator, account_id: u40) !Self {
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if (account_id == 1234) {
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var key = try allocator.alloc(u8, encryption.key_length);
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errdefer allocator.free(key);
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try encryption.decodeKey(key[0..encryption.key_length], test_account_key.*);
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@ -37,7 +38,7 @@ pub fn accountForId(allocator: std.mem.Allocator, account_id: []const u8) !Self
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}
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// TODO: Check STS
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log.err("Got account id '{s}', but could not find this ('1234' is test account). STS GetAccessKeyInfo not implemented", .{account_id});
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log.err("Got account id '{d}', but could not find this ('1234' is test account). STS GetAccessKeyInfo not implemented", .{account_id});
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return error.NotImplemented;
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}
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@ -59,14 +60,13 @@ pub fn testDbDeinit() void {
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}
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/// Gets the database for this account. If under test, a memory database is used
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/// instead. Will initialize the database with appropriate metadata tables
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pub fn dbForAccount(allocator: std.mem.Allocator, account_id: []const u8) !*sqlite.Db {
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const builtin = @import("builtin");
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pub fn dbForAccount(allocator: std.mem.Allocator, account_id: u40) !*sqlite.Db {
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if (builtin.is_test and test_retain_db)
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if (test_db) |db| return db;
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// TODO: Need to move this function somewhere central
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// TODO: Need configuration for what directory to use
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// TODO: Should this be a pool, and if so, how would we know when to close?
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const file_without_path = try std.fmt.allocPrint(allocator, "ddb-{s}.sqlite3", .{account_id});
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const file_without_path = try std.fmt.allocPrint(allocator, "ddb-{d}.sqlite3", .{account_id});
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defer allocator.free(file_without_path);
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const db_file_name = try std.fs.path.joinZ(allocator, &[_][]const u8{ data_dir, file_without_path });
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defer allocator.free(db_file_name);
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@ -5,7 +5,7 @@ event_data: []const u8,
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headers: std.http.Headers,
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status: std.http.Status,
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reason: ?[]const u8,
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account_id: []const u8,
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account_id: u40,
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output_format: OutputFormat,
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pub const OutputFormat = enum {
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@ -33,6 +33,13 @@ pub fn handler(request: *AuthenticatedRequest, writer: anytype) ![]const u8 {
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var parsed = try std.json.parseFromSlice(std.json.Value, allocator, request.event_data, .{});
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defer parsed.deinit();
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const request_params = try parseRequest(request, parsed, writer);
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defer {
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for (request_params.table_info.attribute_definitions) |d| {
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allocator.free(d.*.name);
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allocator.destroy(d);
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}
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allocator.free(request_params.table_info.attribute_definitions);
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}
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// Parsing does most validation for us, but we also need to make sure that
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// the attributes specified in the key schema actually exist
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var found_keys: u2 = if (request_params.table_info.range_key_attribute_name == null) 0b01 else 0b00;
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@ -54,13 +61,6 @@ pub fn handler(request: *AuthenticatedRequest, writer: anytype) ![]const u8 {
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writer,
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"Attribute names in KeySchema must also exist in AttributeDefinitions",
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);
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defer {
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for (request_params.table_info.attribute_definitions) |d| {
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allocator.free(d.*.name);
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allocator.destroy(d);
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}
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allocator.free(request_params.table_info.attribute_definitions);
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}
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var db = try Account.dbForAccount(allocator, account_id);
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defer allocator.destroy(db);
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defer db.deinit();
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@ -144,7 +144,7 @@ pub fn handler(request: *AuthenticatedRequest, writer: anytype) ![]const u8 {
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var al = std.ArrayList(u8).init(allocator);
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var response_writer = al.writer();
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try response_writer.print("table created for account {s}\n", .{account_id});
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try response_writer.print("table created for account {d}\n", .{account_id});
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return al.toOwnedSlice();
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}
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10
src/ddb.zig
10
src/ddb.zig
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@ -482,7 +482,7 @@ pub const Table = struct {
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/// are stored in here, realistically, this will be the first function called
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/// every time anything interacts with the database, so this function opens
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/// the database for you
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pub fn tablesForAccount(allocator: std.mem.Allocator, account_id: []const u8) !AccountTables {
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pub fn tablesForAccount(allocator: std.mem.Allocator, account_id: u40) !AccountTables {
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// TODO: This function should take a list of table names, which can then be used
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// to filter the query below rather than just grabbing everything
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@ -676,7 +676,7 @@ fn insertIntoDm(
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});
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}
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fn testCreateTable(allocator: std.mem.Allocator, account_id: []const u8) !*sqlite.Db {
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fn testCreateTable(allocator: std.mem.Allocator, account_id: u40) !*sqlite.Db {
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var db = try Account.dbForAccount(allocator, account_id);
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const account = try Account.accountForId(allocator, account_id); // This will get us the encryption key needed
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defer account.deinit();
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@ -707,7 +707,7 @@ fn testCreateTable(allocator: std.mem.Allocator, account_id: []const u8) !*sqlit
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}
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test "can create a table" {
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const allocator = std.testing.allocator;
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const account_id = "1234";
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const account_id = 1234;
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var db = try testCreateTable(allocator, account_id);
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defer allocator.destroy(db);
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defer db.deinit();
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@ -715,7 +715,7 @@ test "can create a table" {
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test "can list tables in an account" {
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Account.test_retain_db = true;
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const allocator = std.testing.allocator;
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const account_id = "1234";
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const account_id = 1234;
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var db = try testCreateTable(allocator, account_id);
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defer allocator.destroy(db);
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defer Account.testDbDeinit();
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@ -729,7 +729,7 @@ test "can list tables in an account" {
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test "can put an item in a table in an account" {
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Account.test_retain_db = true;
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const allocator = std.testing.allocator;
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const account_id = "1234";
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const account_id = 1234;
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var db = try testCreateTable(allocator, account_id);
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defer allocator.destroy(db);
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defer Account.testDbDeinit();
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101
src/main.zig
101
src/main.zig
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@ -1,3 +1,4 @@
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const builtin = @import("builtin");
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const std = @import("std");
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const universal_lambda = @import("universal_lambda_handler");
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const universal_lambda_interface = @import("universal_lambda_interface");
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@ -24,24 +25,6 @@ pub fn main() !u8 {
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}
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pub fn handler(allocator: std.mem.Allocator, event_data: []const u8, context: universal_lambda_interface.Context) ![]const u8 {
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const builtin = @import("builtin");
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var rss: if (builtin.os.tag == .linux) std.os.rusage else usize = undefined;
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if (builtin.os.tag == .linux and builtin.mode == .Debug)
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rss = std.os.getrusage(std.os.rusage.SELF);
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defer if (builtin.os.tag == .linux and builtin.mode == .Debug) { // and debug mode) {
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const rusage = std.os.getrusage(std.os.rusage.SELF);
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log.debug(
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"Request complete, max RSS of process: {d}M. Incremental: {d}K, User: {d}μs, System: {d}μs",
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.{
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@divTrunc(rusage.maxrss, 1024),
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rusage.maxrss - rss.maxrss,
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(rusage.utime.tv_sec - rss.utime.tv_sec) * std.time.us_per_s +
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rusage.utime.tv_usec - rss.utime.tv_usec,
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(rusage.stime.tv_sec - rss.stime.tv_sec) * std.time.us_per_s +
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rusage.stime.tv_usec - rss.stime.tv_usec,
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},
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);
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};
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const access_key = try allocator.dupe(u8, "ACCESS");
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const secret_key = try allocator.dupe(u8, "SECRET");
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test_credential = signing.Credentials.init(allocator, access_key, secret_key, null);
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@ -146,7 +129,7 @@ fn authenticateUser(allocator: std.mem.Allocator, context: universal_lambda_inte
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var test_credential: signing.Credentials = undefined;
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var root_creds: std.StringHashMap(signing.Credentials) = undefined;
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var root_account_mapping: std.StringHashMap([]const u8) = undefined;
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// var root_account_mapping: std.StringHashMap([]const u8) = undefined;
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var creds_buf: [8192]u8 = undefined;
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fn getCreds(access: []const u8) ?signing.Credentials {
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// We have 3 levels of access here
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@ -163,8 +146,8 @@ fn getCreds(access: []const u8) ?signing.Credentials {
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fn fillRootCreds(allocator: std.mem.Allocator) !void {
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root_creds = std.StringHashMap(signing.Credentials).init(allocator);
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root_account_mapping = std.StringHashMap([]const u8).init(allocator);
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Account.root_key_mapping = std.StringHashMap([]const u8).init(allocator);
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// root_account_mapping = std.StringHashMap([]const u8).init(allocator);
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Account.root_key_mapping = std.AutoHashMap(u40, []const u8).init(allocator);
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var file = std.fs.cwd().openFile("access_keys.csv", .{}) catch |e| {
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log.err("Could not open access_keys.csv to access root creds: {}", .{e});
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return e;
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@ -219,8 +202,9 @@ fn fillRootCreds(allocator: std.mem.Allocator) !void {
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.session_token = null,
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.allocator = NullAllocator.init(),
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});
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const global_account_id = try allocator.dupe(u8, account_id);
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try root_account_mapping.put(global_access_key, global_account_id);
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const global_account_id = try std.fmt.parseInt(u40, account_id, 10);
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// unnecessary. Account ids are embedded in access keys!
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// try root_account_mapping.put(global_access_key, global_account_id);
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try Account.root_key_mapping.?.put(global_account_id, try allocator.dupe(u8, existing_key));
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// TODO: key rotation will need another hash map, can be triggered on val_num == 5
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@ -270,19 +254,21 @@ const NullAllocator = struct {
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}
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};
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fn accountForAccessKey(allocator: std.mem.Allocator, access_key: []const u8) ![]const u8 {
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fn accountForAccessKey(allocator: std.mem.Allocator, access_key: []const u8) !u40 {
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_ = allocator;
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log.debug("Finding account for access key: '{s}'", .{access_key});
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if (access_key.len != 20) return error.InvalidAccessKey;
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return try accountIdForAccessKey(@as(*[20]u8, @ptrCast(@constCast(access_key))).*);
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// Since this happens after authentication, we can assume our root creds store
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// is populated
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if (root_account_mapping.get(access_key)) |account| return account;
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log.err("Creds not found in store. STS GetAccessKeyInfo call is not yet implemented", .{});
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return error.NotImplemented;
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// if (root_account_mapping.get(access_key)) |account| return account;
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// log.err("Creds not found in store. STS GetAccessKeyInfo call is not yet implemented", .{});
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// return error.NotImplemented;
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}
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/// Function assumes an authenticated request, so signing.verify must be called
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/// and returned true before calling this function. If authentication header
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/// is not found, environment variable will be used
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fn accountId(allocator: std.mem.Allocator, headers: std.http.Headers) ![]const u8 {
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fn accountId(allocator: std.mem.Allocator, headers: std.http.Headers) !u40 {
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const auth_header = headers.getFirstValue("Authorization");
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if (auth_header) |h| {
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// AWS4-HMAC-SHA256 Credential=ACCESS/20230908/us-west-2/s3/aws4_request, SignedHeaders=accept;content-length;content-type;host;x-amz-content-sha256;x-amz-date;x-amz-storage-class, Signature=fcc43ce73a34c9bd1ddf17e8a435f46a859812822f944f9eeb2aabcd64b03523
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@ -326,8 +312,8 @@ fn iamCredentials(allocator: std.mem.Allocator) ![]const u8 {
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iam_credential = signing.Credentials.init(allocator, try iamAccessKey(allocator), try iamSecretKey(allocator), null);
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return iam_credential.?;
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}
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fn iamAccountId(allocator: std.mem.Allocator) ![]const u8 {
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return try getVariable(allocator, &iam_account_id, "IAM_ACCOUNT_ID");
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fn iamAccountId(allocator: std.mem.Allocator) !u40 {
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return std.fmt.parseInt(u40, try getVariable(allocator, &iam_account_id, "IAM_ACCOUNT_ID"), 10);
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}
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fn iamAccessKey(allocator: std.mem.Allocator) ![]const u8 {
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return try getVariable(allocator, &iam_access_key, "IAM_ACCESS_KEY");
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@ -346,3 +332,58 @@ test {
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std.testing.refAllDecls(@import("batchwriteitem.zig"));
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std.testing.refAllDecls(@import("batchgetitem.zig"));
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}
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test "can get account id from access key" {
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// ELAKM5YGIGQQAD2B54IZ, Account 888534479904
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// Also, https://medium.com/@TalBeerySec/a-short-note-on-aws-key-id-f88cc4317489
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// aws_access_key_id: ASIAY34FZKBOKMUTVV7A yields the expected account id "609629065308"
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try std.testing.expectEqual(@as(u40, 609629065308), try accountIdForAccessKey(@as(*[20]u8, @ptrCast(@constCast("ASIAY34FZKBOKMUTVV7A"))).*));
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try std.testing.expectEqual(@as(u40, 888534479904), try accountIdForAccessKey(@as(*[20]u8, @ptrCast(@constCast("ELAKM5YGIGQQAD2B54IZ"))).*));
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}
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fn accountIdForAccessKey(access_key: [20]u8) !u40 {
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const ak_integer_part = access_key[4..];
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const ak_integer = try base32Decode(u80, @as(*[16]u8, @ptrCast(@constCast(ak_integer_part.ptr))).*);
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const account_id = ak_integer >> 39;
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return @as(u40, @truncate(account_id));
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// Do we want an array like this? Probably so
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// import base64
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// import binascii
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//
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// def AWSAccount_from_AWSKeyID(AWSKeyID):
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//
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// trimmed_AWSKeyID = AWSKeyID[4:] #remove KeyID prefix
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// x = base64.b32decode(trimmed_AWSKeyID) #base32 decode
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// y = x[0:6]
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//
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// z = int.from_bytes(y, byteorder='big', signed=False)
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// mask = int.from_bytes(binascii.unhexlify(b'7fffffffff80'), byteorder='big', signed=False)
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//
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// e = (z & mask)>>7
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// return (e)
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}
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fn base32Decode(comptime T: type, data: [@typeInfo(T).Int.bits / 5]u8) !T {
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// const alphabet = "ABCDEFGHIJKLMNOPQRSTUVWXYZ234567";
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const ti = @typeInfo(T);
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if (ti != .Int or ti.Int.signedness != .unsigned)
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@compileError("decode only works with unsigned integers");
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if (ti.Int.bits % 5 != 0)
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@compileError("unsigned integer bit length must be a multiple of 5 to use this function");
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const Shift_type = @Type(.{ .Int = .{
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.signedness = .unsigned,
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.bits = @ceil(@log2(@as(f128, @floatFromInt(ti.Int.bits)))),
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} });
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var rc: T = 0;
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for (data, 0..) |b, i| {
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var curr: T = 0;
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if (b >= 'A' and b <= 'Z') {
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curr = b - 'A';
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} else if (b >= '2' and b <= '7') {
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curr = b - '2' + 26;
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} else return error.InvalidCharacter;
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curr <<= @as(Shift_type, @intCast((data.len - 1 - i) * 5));
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rc |= curr;
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}
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return rc;
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}
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