Files
mattermost/server/einterfaces/mocks/SamlInterface.go
T
Jesse HallamandNuno Simões cc7acaf2f7 [release-11.8] Backport CI buildenv + cache-warming changes (#37448)
* ci: standardize checkout action inputs across workflows (#36876)

* ci: standardize checkout action inputs across workflows

* ci: checkout in claude pipeline use default

* ci: make setup-go-work a Makefile prereq, remove explicit CI steps (#37268)

* ci: auto-build missing buildenv images for in-flight Go version bumps (#37286)

* ci: replace volatile e2e-platform-pkgs cache with shared webapp-setup (#37182)

* ci: replace volatile e2e-platform-pkgs cache with shared webapp-setup

* ci: replace volatile e2e-platform-pkgs cache in cypress template v2

* ci: tighten prep-deps comments

* fix: typo in webapp-setup comment

* chore(ci): warm node and npm caches daily; make CI jobs restore read-only (#37393)

* chore(ci): warm node and npm caches daily; make CI jobs restore read-only

Add daily scheduled workflows on master that warm two independent caches,
each in its own workflow mirroring its consumers:

- webapp-ci-cache-warm.yml warms the webapp node_modules cache
  (keyed on webapp/package-lock.json)
- e2e-ci-cache-warm.yml warms the E2E ~/.npm registry cache
  (keyed on the cypress/playwright/api lockfiles)

Webapp CI and the E2E/api CI jobs now restore these caches read-only instead
of writing them, so the daily jobs keep the caches warm. The E2E ~/.npm
restore is factored into a reusable restore-e2e-npm-cache composite action,
and webapp-setup gains a read-only mode for the node_modules cache.

* chore(ci): guard cache-warm workflows with a concurrency group

* chore(ci): drop unused node-cache-dependency-path output

* chore(ci): reuse webapp-setup for node_modules in e2e-tests-check

* Move e2e npm registry cache out of the node-cache- namespace (#37427)

The e2e npm registry cache keyed on node-cache-<os>-<arch>-npm-e2e-,
sharing the node-cache- prefix that actions/setup-node generates
automatically for its built-in npm cache (node-cache-<os>-<arch>-npm-).
Because the arch segment differs only by case (setup-node uses Node's
process.arch 'x64'; this action uses runner.arch 'X64') and GitHub matches
restore-key prefixes case-insensitively, the two buckets share a common
prefix. A future broad restore-key such as node-cache-<os>-<arch>-npm-
could then cross-restore one bucket's ~/.npm into the other.

Rename the key to e2e-npm-registry-<os>-<arch>-, giving it a distinct
namespace that is not a prefix of node-cache- in either direction and
matches the repo's content-descriptive e2e cache keys (e2e-cypress-deps-,
e2e-playwright-deps-, e2e-platform-pkgs-). Existing entries orphan and
age out; the daily warm job repopulates under the new key on next run.

* Adopt per-target .PHONY directives in server Makefiles (#37447)

* Converge generated-file CI checks on a single make generated target

The server-ci.yml workflow had many separate "run a make target, then fail
on any git diff" jobs, but make generated only covered a few of them, so the
target and CI drifted apart.

Expand make generated to regenerate every committed asset, adding
gen-serialized, migrations-extract, build-templates, mmctl-docs, and
modules-tidy, and collapse the per-asset check jobs into a single
check-generated job.

Split the backport migration guard into its own check-backport-migrations
job and make target, renaming the script to match.

* make generated

* git status --porcelain

* simplify permissions block given defaults

---------

Co-authored-by: Nuno Simões <nuno.simoes@mattermost.com>
2026-07-15 22:25:21 +03:00

171 lines
4.6 KiB
Go

// Code generated by mockery v2.53.4. DO NOT EDIT.
// Regenerate this file using `make einterfaces-mocks`.
package mocks
import (
saml2 "github.com/mattermost/gosaml2"
model "github.com/mattermost/mattermost/server/public/model"
request "github.com/mattermost/mattermost/server/public/shared/request"
mock "github.com/stretchr/testify/mock"
)
// SamlInterface is an autogenerated mock type for the SamlInterface type
type SamlInterface struct {
mock.Mock
}
// BuildRequest provides a mock function with given fields: rctx, relayState
func (_m *SamlInterface) BuildRequest(rctx request.CTX, relayState string) (*model.SamlAuthRequest, *model.AppError) {
ret := _m.Called(rctx, relayState)
if len(ret) == 0 {
panic("no return value specified for BuildRequest")
}
var r0 *model.SamlAuthRequest
var r1 *model.AppError
if rf, ok := ret.Get(0).(func(request.CTX, string) (*model.SamlAuthRequest, *model.AppError)); ok {
return rf(rctx, relayState)
}
if rf, ok := ret.Get(0).(func(request.CTX, string) *model.SamlAuthRequest); ok {
r0 = rf(rctx, relayState)
} else {
if ret.Get(0) != nil {
r0 = ret.Get(0).(*model.SamlAuthRequest)
}
}
if rf, ok := ret.Get(1).(func(request.CTX, string) *model.AppError); ok {
r1 = rf(rctx, relayState)
} else {
if ret.Get(1) != nil {
r1 = ret.Get(1).(*model.AppError)
}
}
return r0, r1
}
// CheckProviderAttributes provides a mock function with given fields: rctx, SS, ouser, patch
func (_m *SamlInterface) CheckProviderAttributes(rctx request.CTX, SS *model.SamlSettings, ouser *model.User, patch *model.UserPatch) string {
ret := _m.Called(rctx, SS, ouser, patch)
if len(ret) == 0 {
panic("no return value specified for CheckProviderAttributes")
}
var r0 string
if rf, ok := ret.Get(0).(func(request.CTX, *model.SamlSettings, *model.User, *model.UserPatch) string); ok {
r0 = rf(rctx, SS, ouser, patch)
} else {
r0 = ret.Get(0).(string)
}
return r0
}
// ConfigureSP provides a mock function with given fields: rctx
func (_m *SamlInterface) ConfigureSP(rctx request.CTX) error {
ret := _m.Called(rctx)
if len(ret) == 0 {
panic("no return value specified for ConfigureSP")
}
var r0 error
if rf, ok := ret.Get(0).(func(request.CTX) error); ok {
r0 = rf(rctx)
} else {
r0 = ret.Error(0)
}
return r0
}
// DoLogin provides a mock function with given fields: rctx, encodedXML, relayState
func (_m *SamlInterface) DoLogin(rctx request.CTX, encodedXML string, relayState map[string]string) (*model.User, *saml2.AssertionInfo, *model.AppError) {
ret := _m.Called(rctx, encodedXML, relayState)
if len(ret) == 0 {
panic("no return value specified for DoLogin")
}
var r0 *model.User
var r1 *saml2.AssertionInfo
var r2 *model.AppError
if rf, ok := ret.Get(0).(func(request.CTX, string, map[string]string) (*model.User, *saml2.AssertionInfo, *model.AppError)); ok {
return rf(rctx, encodedXML, relayState)
}
if rf, ok := ret.Get(0).(func(request.CTX, string, map[string]string) *model.User); ok {
r0 = rf(rctx, encodedXML, relayState)
} else {
if ret.Get(0) != nil {
r0 = ret.Get(0).(*model.User)
}
}
if rf, ok := ret.Get(1).(func(request.CTX, string, map[string]string) *saml2.AssertionInfo); ok {
r1 = rf(rctx, encodedXML, relayState)
} else {
if ret.Get(1) != nil {
r1 = ret.Get(1).(*saml2.AssertionInfo)
}
}
if rf, ok := ret.Get(2).(func(request.CTX, string, map[string]string) *model.AppError); ok {
r2 = rf(rctx, encodedXML, relayState)
} else {
if ret.Get(2) != nil {
r2 = ret.Get(2).(*model.AppError)
}
}
return r0, r1, r2
}
// GetMetadata provides a mock function with given fields: rctx
func (_m *SamlInterface) GetMetadata(rctx request.CTX) (string, *model.AppError) {
ret := _m.Called(rctx)
if len(ret) == 0 {
panic("no return value specified for GetMetadata")
}
var r0 string
var r1 *model.AppError
if rf, ok := ret.Get(0).(func(request.CTX) (string, *model.AppError)); ok {
return rf(rctx)
}
if rf, ok := ret.Get(0).(func(request.CTX) string); ok {
r0 = rf(rctx)
} else {
r0 = ret.Get(0).(string)
}
if rf, ok := ret.Get(1).(func(request.CTX) *model.AppError); ok {
r1 = rf(rctx)
} else {
if ret.Get(1) != nil {
r1 = ret.Get(1).(*model.AppError)
}
}
return r0, r1
}
// NewSamlInterface creates a new instance of SamlInterface. It also registers a testing interface on the mock and a cleanup function to assert the mocks expectations.
// The first argument is typically a *testing.T value.
func NewSamlInterface(t interface {
mock.TestingT
Cleanup(func())
}) *SamlInterface {
mock := &SamlInterface{}
mock.Mock.Test(t)
t.Cleanup(func() { mock.AssertExpectations(t) })
return mock
}