Add RunInterceptor test helper and update MigrateToStep ones
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1 changed files with 50 additions and 9 deletions
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@ -22,6 +22,7 @@ type Migrator interface {
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DriverName() string
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DriverName() string
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Setup() error
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Setup() error
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MigrateToStep(step int) error
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MigrateToStep(step int) error
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Interceptors() map[int]Interceptor
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TearDown() error
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TearDown() error
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}
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}
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@ -42,10 +43,13 @@ func New(t *testing.T, migrator Migrator) *Foundation {
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// instead of just once with the final step
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// instead of just once with the final step
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stepByStep: false,
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stepByStep: false,
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migrator: migrator,
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migrator: migrator,
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interceptors: migrator.Interceptors(),
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db: db,
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db: db,
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}
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}
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}
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}
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// RegisterInterceptors replaced the migrator interceptors with new
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// ones, in case we want to check a special case for a given test
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func (f *Foundation) RegisterInterceptors(interceptors map[int]Interceptor) *Foundation {
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func (f *Foundation) RegisterInterceptors(interceptors map[int]Interceptor) *Foundation {
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f.interceptors = interceptors
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f.interceptors = interceptors
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return f
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return f
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@ -83,7 +87,7 @@ func (f *Foundation) calculateNextStep(step int) int {
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return i
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return i
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}
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}
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func (f *Foundation) MigrateToStep(step int) *Foundation {
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func (f *Foundation) migrateToStep(step int, skipLastInterceptor bool) *Foundation {
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if step == f.currentStep {
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if step == f.currentStep {
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// log nothing to do
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// log nothing to do
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return f
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return f
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@ -95,7 +99,7 @@ func (f *Foundation) MigrateToStep(step int) *Foundation {
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// if there are no interceptors, just migrate to the last step
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// if there are no interceptors, just migrate to the last step
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if f.interceptors == nil {
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if f.interceptors == nil {
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if err := f.migrateToStep(step); err != nil {
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if err := f.doMigrateToStep(step); err != nil {
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f.t.Fatalf("migration to step %d failed: %s", step, err)
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f.t.Fatalf("migration to step %d failed: %s", step, err)
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}
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}
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@ -105,14 +109,20 @@ func (f *Foundation) MigrateToStep(step int) *Foundation {
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for f.currentStep < step {
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for f.currentStep < step {
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nextStep := f.calculateNextStep(step)
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nextStep := f.calculateNextStep(step)
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if err := f.migrateToStep(nextStep); err != nil {
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if err := f.doMigrateToStep(nextStep); err != nil {
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f.t.Fatalf("migration to step %d failed: %s", nextStep, err)
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f.t.Fatalf("migration to step %d failed: %s", nextStep, err)
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}
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}
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// if we want to skip the last interceptor and we're in the
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// last step, just continue
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if skipLastInterceptor && nextStep == step {
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continue
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}
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interceptorFn, ok := f.interceptors[nextStep]
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interceptorFn, ok := f.interceptors[nextStep]
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if ok {
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if ok {
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if err := interceptorFn(); err != nil {
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if err := interceptorFn(); err != nil {
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f.t.Fatalf("interceptor function for step %d failed", nextStep)
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f.t.Fatalf("interceptor function for step %d failed: %s", nextStep, err)
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}
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}
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}
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}
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}
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}
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@ -120,11 +130,42 @@ func (f *Foundation) MigrateToStep(step int) *Foundation {
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return f
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return f
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}
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}
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// migrateToStep executes the migrator function to migrate to a
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// MigrateToStep instructs the migrator to move forward until step is
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// reached. While migrating, it will run the interceptors after the
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// step they're defined for
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func (f *Foundation) MigrateToStep(step int) *Foundation {
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return f.migrateToStep(step, false)
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}
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// MigrateToStepSkippingLastInterceptor instructs the migrator to move
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// forward until step is reached, skipping the last interceptor. This
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// is useful if we want to load fixtures on the last step but before
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// running the interceptor code, so we can check how that data is
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// modified by the interceptor
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func (f *Foundation) MigrateToStepSkippingLastInterceptor(step int) *Foundation {
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return f.migrateToStep(step, true)
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}
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// RunInterceptor executes the code of the interceptor corresponding
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// to step
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func (f *Foundation) RunInterceptor(step int) *Foundation {
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interceptorFn, ok := f.interceptors[step]
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if !ok {
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f.t.Fatalf("no interceptor found for step %d", step)
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}
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if err := interceptorFn(); err != nil {
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f.t.Fatalf("interceptor function for step %d failed: %s", step, err)
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}
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return f
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}
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// doMigrateToStep executes the migrator function to migrate to a
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// specific step and updates the foundation currentStep to reflect the
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// specific step and updates the foundation currentStep to reflect the
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// result. This function doesn't take into account interceptors, that
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// result. This function doesn't take into account interceptors, that
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// happens on MigrateToStep
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// happens on MigrateToStep
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func (f *Foundation) migrateToStep(step int) error {
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func (f *Foundation) doMigrateToStep(step int) error {
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if f.stepByStep {
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if f.stepByStep {
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for f.currentStep < step {
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for f.currentStep < step {
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if err := f.migrator.MigrateToStep(f.currentStep + 1); err != nil {
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if err := f.migrator.MigrateToStep(f.currentStep + 1); err != nil {
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