mirror of
https://codeberg.org/forgejo/forgejo.git
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1770117178
- Add a `purpose` column, this allows the `forgejo_auth_token` table to
be used by other parts of Forgejo, while still enjoying the
no-compromise architecture.
- Remove the 'roll your own crypto' time limited code functions and
migrate them to the `forgejo_auth_token` table. This migration ensures
generated codes can only be used for their purpose and ensure they are
invalidated after their usage by deleting it from the database, this
also should help making auditing of the security code easier, as we're
no longer trying to stuff a lot of data into a HMAC construction.
-Helper functions are rewritten to ensure a safe-by-design approach to
these tokens.
- Add the `forgejo_auth_token` to dbconsistency doctor and add it to the
`deleteUser` function.
- TODO: Add cron job to delete expired authorization tokens.
- Unit and integration tests added.
(cherry picked from commit 1ce33aa38d
)
v9: Removed migration - XORM can handle this case automatically without
migration. Add `DEFAULT 'long_term_authorization'`.
129 lines
4.1 KiB
Go
129 lines
4.1 KiB
Go
// Copyright 2020 The Gitea Authors. All rights reserved.
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// SPDX-License-Identifier: MIT
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package base
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import (
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"testing"
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"github.com/stretchr/testify/assert"
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"github.com/stretchr/testify/require"
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)
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func TestEncodeSha256(t *testing.T) {
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assert.Equal(t,
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"c3ab8ff13720e8ad9047dd39466b3c8974e592c2fa383d4a3960714caef0c4f2",
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EncodeSha256("foobar"),
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)
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}
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func TestShortSha(t *testing.T) {
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assert.Equal(t, "veryverylo", ShortSha("veryverylong"))
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}
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func TestBasicAuthDecode(t *testing.T) {
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_, _, err := BasicAuthDecode("?")
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assert.Equal(t, "illegal base64 data at input byte 0", err.Error())
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user, pass, err := BasicAuthDecode("Zm9vOmJhcg==")
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require.NoError(t, err)
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assert.Equal(t, "foo", user)
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assert.Equal(t, "bar", pass)
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_, _, err = BasicAuthDecode("aW52YWxpZA==")
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require.Error(t, err)
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_, _, err = BasicAuthDecode("invalid")
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require.Error(t, err)
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_, _, err = BasicAuthDecode("YWxpY2U=") // "alice", no colon
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require.Error(t, err)
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}
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func TestFileSize(t *testing.T) {
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var size int64 = 512
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assert.Equal(t, "512 B", FileSize(size))
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size *= 1024
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assert.Equal(t, "512 KiB", FileSize(size))
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size *= 1024
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assert.Equal(t, "512 MiB", FileSize(size))
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size *= 1024
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assert.Equal(t, "512 GiB", FileSize(size))
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size *= 1024
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assert.Equal(t, "512 TiB", FileSize(size))
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size *= 1024
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assert.Equal(t, "512 PiB", FileSize(size))
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size *= 4
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assert.Equal(t, "2.0 EiB", FileSize(size))
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}
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func TestEllipsisString(t *testing.T) {
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assert.Equal(t, "...", EllipsisString("foobar", 0))
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assert.Equal(t, "...", EllipsisString("foobar", 1))
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assert.Equal(t, "...", EllipsisString("foobar", 2))
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assert.Equal(t, "...", EllipsisString("foobar", 3))
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assert.Equal(t, "f...", EllipsisString("foobar", 4))
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assert.Equal(t, "fo...", EllipsisString("foobar", 5))
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assert.Equal(t, "foobar", EllipsisString("foobar", 6))
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assert.Equal(t, "foobar", EllipsisString("foobar", 10))
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assert.Equal(t, "测...", EllipsisString("测试文本一二三四", 4))
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assert.Equal(t, "测试...", EllipsisString("测试文本一二三四", 5))
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assert.Equal(t, "测试文...", EllipsisString("测试文本一二三四", 6))
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assert.Equal(t, "测试文本一二三四", EllipsisString("测试文本一二三四", 10))
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}
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func TestTruncateString(t *testing.T) {
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assert.Equal(t, "", TruncateString("foobar", 0))
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assert.Equal(t, "f", TruncateString("foobar", 1))
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assert.Equal(t, "fo", TruncateString("foobar", 2))
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assert.Equal(t, "foo", TruncateString("foobar", 3))
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assert.Equal(t, "foob", TruncateString("foobar", 4))
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assert.Equal(t, "fooba", TruncateString("foobar", 5))
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assert.Equal(t, "foobar", TruncateString("foobar", 6))
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assert.Equal(t, "foobar", TruncateString("foobar", 7))
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assert.Equal(t, "测试文本", TruncateString("测试文本一二三四", 4))
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assert.Equal(t, "测试文本一", TruncateString("测试文本一二三四", 5))
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assert.Equal(t, "测试文本一二", TruncateString("测试文本一二三四", 6))
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assert.Equal(t, "测试文本一二三", TruncateString("测试文本一二三四", 7))
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}
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func TestStringsToInt64s(t *testing.T) {
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testSuccess := func(input []string, expected []int64) {
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result, err := StringsToInt64s(input)
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require.NoError(t, err)
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assert.Equal(t, expected, result)
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}
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testSuccess(nil, nil)
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testSuccess([]string{}, []int64{})
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testSuccess([]string{"-1234"}, []int64{-1234})
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testSuccess([]string{"1", "4", "16", "64", "256"}, []int64{1, 4, 16, 64, 256})
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ints, err := StringsToInt64s([]string{"-1", "a"})
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assert.Empty(t, ints)
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require.Error(t, err)
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}
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func TestInt64sToStrings(t *testing.T) {
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assert.Equal(t, []string{}, Int64sToStrings([]int64{}))
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assert.Equal(t,
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[]string{"1", "4", "16", "64", "256"},
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Int64sToStrings([]int64{1, 4, 16, 64, 256}),
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)
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}
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// TODO: Test EntryIcon
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func TestSetupGiteaRoot(t *testing.T) {
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t.Setenv("GITEA_ROOT", "test")
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assert.Equal(t, "test", SetupGiteaRoot())
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t.Setenv("GITEA_ROOT", "")
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assert.NotEqual(t, "test", SetupGiteaRoot())
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}
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func TestFormatNumberSI(t *testing.T) {
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assert.Equal(t, "125", FormatNumberSI(int(125)))
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assert.Equal(t, "1.3k", FormatNumberSI(int64(1317)))
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assert.Equal(t, "21.3M", FormatNumberSI(21317675))
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assert.Equal(t, "45.7G", FormatNumberSI(45721317675))
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assert.Equal(t, "", FormatNumberSI("test"))
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}
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