stash/pkg/sqlite/performer_test.go

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//go:build integration
// +build integration
package sqlite_test
import (
"database/sql"
"fmt"
"math"
"strconv"
"strings"
"testing"
"time"
"github.com/stretchr/testify/assert"
"github.com/stashapp/stash/pkg/hash/md5"
"github.com/stashapp/stash/pkg/models"
)
func TestPerformerFindBySceneID(t *testing.T) {
withTxn(func(r models.Repository) error {
pqb := r.Performer()
sceneID := sceneIDs[sceneIdxWithPerformer]
performers, err := pqb.FindBySceneID(sceneID)
if err != nil {
t.Errorf("Error finding performer: %s", err.Error())
}
assert.Equal(t, 1, len(performers))
performer := performers[0]
assert.Equal(t, getPerformerStringValue(performerIdxWithScene, "Name"), performer.Name.String)
performers, err = pqb.FindBySceneID(0)
if err != nil {
t.Errorf("Error finding performer: %s", err.Error())
}
assert.Equal(t, 0, len(performers))
return nil
})
}
func TestPerformerFindByNames(t *testing.T) {
getNames := func(p []*models.Performer) []string {
var ret []string
for _, pp := range p {
ret = append(ret, pp.Name.String)
}
return ret
}
withTxn(func(r models.Repository) error {
var names []string
pqb := r.Performer()
names = append(names, performerNames[performerIdxWithScene]) // find performers by names
performers, err := pqb.FindByNames(names, false)
if err != nil {
t.Errorf("Error finding performers: %s", err.Error())
}
assert.Len(t, performers, 1)
assert.Equal(t, performerNames[performerIdxWithScene], performers[0].Name.String)
performers, err = pqb.FindByNames(names, true) // find performers by names nocase
if err != nil {
t.Errorf("Error finding performers: %s", err.Error())
}
assert.Len(t, performers, 2) // performerIdxWithScene and performerIdxWithDupName
assert.Equal(t, strings.ToLower(performerNames[performerIdxWithScene]), strings.ToLower(performers[0].Name.String))
assert.Equal(t, strings.ToLower(performerNames[performerIdxWithScene]), strings.ToLower(performers[1].Name.String))
names = append(names, performerNames[performerIdx1WithScene]) // find performers by names ( 2 names )
performers, err = pqb.FindByNames(names, false)
if err != nil {
t.Errorf("Error finding performers: %s", err.Error())
}
retNames := getNames(performers)
assert.Equal(t, names, retNames)
performers, err = pqb.FindByNames(names, true) // find performers by names ( 2 names nocase)
if err != nil {
t.Errorf("Error finding performers: %s", err.Error())
}
retNames = getNames(performers)
assert.Equal(t, []string{
performerNames[performerIdxWithScene],
performerNames[performerIdx1WithScene],
performerNames[performerIdx1WithDupName],
performerNames[performerIdxWithDupName],
}, retNames)
return nil
})
}
func TestPerformerQueryEthnicityOr(t *testing.T) {
const performer1Idx = 1
const performer2Idx = 2
performer1Eth := getPerformerStringValue(performer1Idx, "Ethnicity")
performer2Eth := getPerformerStringValue(performer2Idx, "Ethnicity")
performerFilter := models.PerformerFilterType{
Ethnicity: &models.StringCriterionInput{
Value: performer1Eth,
Modifier: models.CriterionModifierEquals,
},
Or: &models.PerformerFilterType{
Ethnicity: &models.StringCriterionInput{
Value: performer2Eth,
Modifier: models.CriterionModifierEquals,
},
},
}
withTxn(func(r models.Repository) error {
sqb := r.Performer()
performers := queryPerformers(t, sqb, &performerFilter, nil)
assert.Len(t, performers, 2)
assert.Equal(t, performer1Eth, performers[0].Ethnicity.String)
assert.Equal(t, performer2Eth, performers[1].Ethnicity.String)
return nil
})
}
func TestPerformerQueryEthnicityAndRating(t *testing.T) {
const performerIdx = 1
performerEth := getPerformerStringValue(performerIdx, "Ethnicity")
performerRating := getRating(performerIdx)
performerFilter := models.PerformerFilterType{
Ethnicity: &models.StringCriterionInput{
Value: performerEth,
Modifier: models.CriterionModifierEquals,
},
And: &models.PerformerFilterType{
Rating: &models.IntCriterionInput{
Value: int(performerRating.Int64),
Modifier: models.CriterionModifierEquals,
},
},
}
withTxn(func(r models.Repository) error {
sqb := r.Performer()
performers := queryPerformers(t, sqb, &performerFilter, nil)
assert.Len(t, performers, 1)
assert.Equal(t, performerEth, performers[0].Ethnicity.String)
assert.Equal(t, performerRating.Int64, performers[0].Rating.Int64)
return nil
})
}
func TestPerformerQueryEthnicityNotRating(t *testing.T) {
const performerIdx = 1
performerRating := getRating(performerIdx)
ethCriterion := models.StringCriterionInput{
Value: "performer_.*1_Ethnicity",
Modifier: models.CriterionModifierMatchesRegex,
}
ratingCriterion := models.IntCriterionInput{
Value: int(performerRating.Int64),
Modifier: models.CriterionModifierEquals,
}
performerFilter := models.PerformerFilterType{
Ethnicity: &ethCriterion,
Not: &models.PerformerFilterType{
Rating: &ratingCriterion,
},
}
withTxn(func(r models.Repository) error {
sqb := r.Performer()
performers := queryPerformers(t, sqb, &performerFilter, nil)
for _, performer := range performers {
verifyString(t, performer.Ethnicity.String, ethCriterion)
ratingCriterion.Modifier = models.CriterionModifierNotEquals
verifyInt64(t, performer.Rating, ratingCriterion)
}
return nil
})
}
func TestPerformerIllegalQuery(t *testing.T) {
assert := assert.New(t)
const performerIdx = 1
subFilter := models.PerformerFilterType{
Ethnicity: &models.StringCriterionInput{
Value: getPerformerStringValue(performerIdx, "Ethnicity"),
Modifier: models.CriterionModifierEquals,
},
}
performerFilter := &models.PerformerFilterType{
And: &subFilter,
Or: &subFilter,
}
withTxn(func(r models.Repository) error {
sqb := r.Performer()
_, _, err := sqb.Query(performerFilter, nil)
assert.NotNil(err)
performerFilter.Or = nil
performerFilter.Not = &subFilter
_, _, err = sqb.Query(performerFilter, nil)
assert.NotNil(err)
performerFilter.And = nil
performerFilter.Or = &subFilter
_, _, err = sqb.Query(performerFilter, nil)
assert.NotNil(err)
return nil
})
}
func TestPerformerQueryIgnoreAutoTag(t *testing.T) {
withTxn(func(r models.Repository) error {
ignoreAutoTag := true
performerFilter := models.PerformerFilterType{
IgnoreAutoTag: &ignoreAutoTag,
}
sqb := r.Performer()
performers := queryPerformers(t, sqb, &performerFilter, nil)
assert.Len(t, performers, int(math.Ceil(float64(totalPerformers)/5)))
for _, p := range performers {
assert.True(t, p.IgnoreAutoTag)
}
return nil
})
}
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func TestPerformerQueryForAutoTag(t *testing.T) {
withTxn(func(r models.Repository) error {
tqb := r.Performer()
name := performerNames[performerIdx1WithScene] // find a performer by name
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performers, err := tqb.QueryForAutoTag([]string{name})
if err != nil {
t.Errorf("Error finding performers: %s", err.Error())
}
assert.Len(t, performers, 2)
assert.Equal(t, strings.ToLower(performerNames[performerIdx1WithScene]), strings.ToLower(performers[0].Name.String))
assert.Equal(t, strings.ToLower(performerNames[performerIdx1WithScene]), strings.ToLower(performers[1].Name.String))
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return nil
})
}
func TestPerformerUpdatePerformerImage(t *testing.T) {
if err := withTxn(func(r models.Repository) error {
qb := r.Performer()
// create performer to test against
const name = "TestPerformerUpdatePerformerImage"
performer := models.Performer{
Name: sql.NullString{String: name, Valid: true},
Checksum: md5.FromString(name),
Favorite: sql.NullBool{Bool: false, Valid: true},
}
created, err := qb.Create(performer)
if err != nil {
return fmt.Errorf("Error creating performer: %s", err.Error())
}
image := []byte("image")
err = qb.UpdateImage(created.ID, image)
if err != nil {
return fmt.Errorf("Error updating performer image: %s", err.Error())
}
// ensure image set
storedImage, err := qb.GetImage(created.ID)
if err != nil {
return fmt.Errorf("Error getting image: %s", err.Error())
}
assert.Equal(t, storedImage, image)
// set nil image
err = qb.UpdateImage(created.ID, nil)
if err == nil {
return fmt.Errorf("Expected error setting nil image")
}
return nil
}); err != nil {
t.Error(err.Error())
}
}
func TestPerformerDestroyPerformerImage(t *testing.T) {
if err := withTxn(func(r models.Repository) error {
qb := r.Performer()
// create performer to test against
const name = "TestPerformerDestroyPerformerImage"
performer := models.Performer{
Name: sql.NullString{String: name, Valid: true},
Checksum: md5.FromString(name),
Favorite: sql.NullBool{Bool: false, Valid: true},
}
created, err := qb.Create(performer)
if err != nil {
return fmt.Errorf("Error creating performer: %s", err.Error())
}
image := []byte("image")
err = qb.UpdateImage(created.ID, image)
if err != nil {
return fmt.Errorf("Error updating performer image: %s", err.Error())
}
err = qb.DestroyImage(created.ID)
if err != nil {
return fmt.Errorf("Error destroying performer image: %s", err.Error())
}
// image should be nil
storedImage, err := qb.GetImage(created.ID)
if err != nil {
return fmt.Errorf("Error getting image: %s", err.Error())
}
assert.Nil(t, storedImage)
return nil
}); err != nil {
t.Error(err.Error())
}
}
func TestPerformerQueryAge(t *testing.T) {
const age = 19
ageCriterion := models.IntCriterionInput{
Value: age,
Modifier: models.CriterionModifierEquals,
}
verifyPerformerAge(t, ageCriterion)
ageCriterion.Modifier = models.CriterionModifierNotEquals
verifyPerformerAge(t, ageCriterion)
ageCriterion.Modifier = models.CriterionModifierGreaterThan
verifyPerformerAge(t, ageCriterion)
ageCriterion.Modifier = models.CriterionModifierLessThan
verifyPerformerAge(t, ageCriterion)
}
func verifyPerformerAge(t *testing.T, ageCriterion models.IntCriterionInput) {
withTxn(func(r models.Repository) error {
qb := r.Performer()
performerFilter := models.PerformerFilterType{
Age: &ageCriterion,
}
performers, _, err := qb.Query(&performerFilter, nil)
if err != nil {
t.Errorf("Error querying performer: %s", err.Error())
}
now := time.Now()
for _, performer := range performers {
cd := now
if performer.DeathDate.Valid {
cd, _ = time.Parse("2006-01-02", performer.DeathDate.String)
}
bd := performer.Birthdate.String
d, _ := time.Parse("2006-01-02", bd)
age := cd.Year() - d.Year()
if cd.YearDay() < d.YearDay() {
age = age - 1
}
verifyInt(t, age, ageCriterion)
}
return nil
})
}
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func TestPerformerQueryCareerLength(t *testing.T) {
const value = "2005"
careerLengthCriterion := models.StringCriterionInput{
Value: value,
Modifier: models.CriterionModifierEquals,
}
verifyPerformerCareerLength(t, careerLengthCriterion)
careerLengthCriterion.Modifier = models.CriterionModifierNotEquals
verifyPerformerCareerLength(t, careerLengthCriterion)
careerLengthCriterion.Modifier = models.CriterionModifierMatchesRegex
verifyPerformerCareerLength(t, careerLengthCriterion)
careerLengthCriterion.Modifier = models.CriterionModifierNotMatchesRegex
verifyPerformerCareerLength(t, careerLengthCriterion)
}
func verifyPerformerCareerLength(t *testing.T, criterion models.StringCriterionInput) {
withTxn(func(r models.Repository) error {
qb := r.Performer()
performerFilter := models.PerformerFilterType{
CareerLength: &criterion,
}
performers, _, err := qb.Query(&performerFilter, nil)
if err != nil {
t.Errorf("Error querying performer: %s", err.Error())
}
for _, performer := range performers {
cl := performer.CareerLength
verifyNullString(t, cl, criterion)
}
return nil
})
}
func TestPerformerQueryURL(t *testing.T) {
const sceneIdx = 1
performerURL := getPerformerStringValue(sceneIdx, urlField)
urlCriterion := models.StringCriterionInput{
Value: performerURL,
Modifier: models.CriterionModifierEquals,
}
filter := models.PerformerFilterType{
URL: &urlCriterion,
}
verifyFn := func(g *models.Performer) {
t.Helper()
verifyNullString(t, g.URL, urlCriterion)
}
verifyPerformerQuery(t, filter, verifyFn)
urlCriterion.Modifier = models.CriterionModifierNotEquals
verifyPerformerQuery(t, filter, verifyFn)
urlCriterion.Modifier = models.CriterionModifierMatchesRegex
urlCriterion.Value = "performer_.*1_URL"
verifyPerformerQuery(t, filter, verifyFn)
urlCriterion.Modifier = models.CriterionModifierNotMatchesRegex
verifyPerformerQuery(t, filter, verifyFn)
urlCriterion.Modifier = models.CriterionModifierIsNull
urlCriterion.Value = ""
verifyPerformerQuery(t, filter, verifyFn)
urlCriterion.Modifier = models.CriterionModifierNotNull
verifyPerformerQuery(t, filter, verifyFn)
}
func verifyPerformerQuery(t *testing.T, filter models.PerformerFilterType, verifyFn func(s *models.Performer)) {
withTxn(func(r models.Repository) error {
t.Helper()
sqb := r.Performer()
performers := queryPerformers(t, sqb, &filter, nil)
// assume it should find at least one
assert.Greater(t, len(performers), 0)
for _, p := range performers {
verifyFn(p)
}
return nil
})
}
func queryPerformers(t *testing.T, qb models.PerformerReader, performerFilter *models.PerformerFilterType, findFilter *models.FindFilterType) []*models.Performer {
performers, _, err := qb.Query(performerFilter, findFilter)
if err != nil {
t.Errorf("Error querying performers: %s", err.Error())
}
return performers
}
func TestPerformerQueryTags(t *testing.T) {
withTxn(func(r models.Repository) error {
sqb := r.Performer()
Tag hierarchy (#1519) * Add migration script for tag relations table * Expand hierarchical filter features Expand the features of the hierarchical multi input filter with support for using a relations table, which only has parent_id and child_id columns, and support adding an additional intermediate table to join on, for example for scenes and tags which are linked by the scenes_tags table as well. * Add hierarchical filtering for tags * Add hierarchical tags support to scene markers Refactor filtering of scene markers to filterBuilder and in the process add support for hierarchical tags as well. * List parent and child tags on tag details page * Support setting parent and child tags Add support for setting parent and child tags during tag creation and tag updates. * Validate no loops are created in tags hierarchy * Update tag merging to support tag hierarcy * Add unit tests for tags.EnsureUniqueHierarchy * Fix applying recursive to with clause The SQL `RECURSIVE` of a `WITH` clause only needs to be applied once, imediately after the `WITH`. So this fixes the query building to do just that, automatically applying the `RECURSIVE` keyword when any added with clause is added as recursive. * Rename hierarchical root id column * Rewrite hierarchical filtering for performance Completely rewrite the hierarchical filtering to optimize for performance. Doing the recursive query in combination with a complex query seems to break SQLite optimizing some things which means that the recursive part might be 2,5 second slower than adding a static `VALUES()` list. This is mostly noticable in case of the tag hierarchy where setting an exclusion with any depth (or depth: all) being applied has this performance impact of 2,5 second. "Include" also suffered this issue, but some rewritten query by joining in the *_tags table in one pass and applying a `WHERE x IS NOT NULL` filter did seem to optimize that case. But that optimization isn't applied to the `IS NULL` filter of "exclude". Running a simple query beforehand to get all (recursive) items and then applying them to the query doesn't have this performance penalty. * Remove UI references to child studios and tags * Add parents to tag export * Support importing of parent relationship for tags * Assign stable ids to parent / child badges * Silence Apollo warning on parents/children fields on tags Silence warning triggered by Apollo GraphQL by explicitly instructing it to use the incoming parents/children values. By default it already does this, but it triggers a warning as it might be unintended that it uses the incoming values (instead of for example merging both arrays). Setting merge to false still applies the same behaviour (use only incoming values) but silences the warning as it's explicitly configured to work like this. * Rework detecting unique tag hierarchy Completely rework the unique tag hierarchy to detect invalid hierarchies for which a tag is "added in the middle". So when there are tags A <- B and A <- C, you could previously edit tag B and add tag C as a sub tag without it being noticed as parent A being applied twice (to tag C). While afterwards saving tag C would fail as tag A was applied as parent twice. The updated code correctly detects this scenario as well. Furthermore the error messaging has been reworked a bit and the message now mentions both the direct parent / sub tag as well as the tag which would results in the error. So in aboves example it would now show the message that tag C can't be applied because tag A already is a parent. * Update relations on cached tags when needed Update the relations on cached tags when a tag is created / updated / deleted so these always reflect the correct state. Otherwise (re)opening a tag might still show the old relations untill the page is fully reloaded or the list is navigated. But this obviously is strange when you for example have tag A, create or update tag B to have a relation to tag A, and from tags B page click through to tag A and it doesn't show that it is linked to tag B.
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tagCriterion := models.HierarchicalMultiCriterionInput{
Value: []string{
strconv.Itoa(tagIDs[tagIdxWithPerformer]),
strconv.Itoa(tagIDs[tagIdx1WithPerformer]),
},
Modifier: models.CriterionModifierIncludes,
}
performerFilter := models.PerformerFilterType{
Tags: &tagCriterion,
}
// ensure ids are correct
performers := queryPerformers(t, sqb, &performerFilter, nil)
assert.Len(t, performers, 2)
for _, performer := range performers {
assert.True(t, performer.ID == performerIDs[performerIdxWithTag] || performer.ID == performerIDs[performerIdxWithTwoTags])
}
Tag hierarchy (#1519) * Add migration script for tag relations table * Expand hierarchical filter features Expand the features of the hierarchical multi input filter with support for using a relations table, which only has parent_id and child_id columns, and support adding an additional intermediate table to join on, for example for scenes and tags which are linked by the scenes_tags table as well. * Add hierarchical filtering for tags * Add hierarchical tags support to scene markers Refactor filtering of scene markers to filterBuilder and in the process add support for hierarchical tags as well. * List parent and child tags on tag details page * Support setting parent and child tags Add support for setting parent and child tags during tag creation and tag updates. * Validate no loops are created in tags hierarchy * Update tag merging to support tag hierarcy * Add unit tests for tags.EnsureUniqueHierarchy * Fix applying recursive to with clause The SQL `RECURSIVE` of a `WITH` clause only needs to be applied once, imediately after the `WITH`. So this fixes the query building to do just that, automatically applying the `RECURSIVE` keyword when any added with clause is added as recursive. * Rename hierarchical root id column * Rewrite hierarchical filtering for performance Completely rewrite the hierarchical filtering to optimize for performance. Doing the recursive query in combination with a complex query seems to break SQLite optimizing some things which means that the recursive part might be 2,5 second slower than adding a static `VALUES()` list. This is mostly noticable in case of the tag hierarchy where setting an exclusion with any depth (or depth: all) being applied has this performance impact of 2,5 second. "Include" also suffered this issue, but some rewritten query by joining in the *_tags table in one pass and applying a `WHERE x IS NOT NULL` filter did seem to optimize that case. But that optimization isn't applied to the `IS NULL` filter of "exclude". Running a simple query beforehand to get all (recursive) items and then applying them to the query doesn't have this performance penalty. * Remove UI references to child studios and tags * Add parents to tag export * Support importing of parent relationship for tags * Assign stable ids to parent / child badges * Silence Apollo warning on parents/children fields on tags Silence warning triggered by Apollo GraphQL by explicitly instructing it to use the incoming parents/children values. By default it already does this, but it triggers a warning as it might be unintended that it uses the incoming values (instead of for example merging both arrays). Setting merge to false still applies the same behaviour (use only incoming values) but silences the warning as it's explicitly configured to work like this. * Rework detecting unique tag hierarchy Completely rework the unique tag hierarchy to detect invalid hierarchies for which a tag is "added in the middle". So when there are tags A <- B and A <- C, you could previously edit tag B and add tag C as a sub tag without it being noticed as parent A being applied twice (to tag C). While afterwards saving tag C would fail as tag A was applied as parent twice. The updated code correctly detects this scenario as well. Furthermore the error messaging has been reworked a bit and the message now mentions both the direct parent / sub tag as well as the tag which would results in the error. So in aboves example it would now show the message that tag C can't be applied because tag A already is a parent. * Update relations on cached tags when needed Update the relations on cached tags when a tag is created / updated / deleted so these always reflect the correct state. Otherwise (re)opening a tag might still show the old relations untill the page is fully reloaded or the list is navigated. But this obviously is strange when you for example have tag A, create or update tag B to have a relation to tag A, and from tags B page click through to tag A and it doesn't show that it is linked to tag B.
2021-09-09 04:58:43 +00:00
tagCriterion = models.HierarchicalMultiCriterionInput{
Value: []string{
strconv.Itoa(tagIDs[tagIdx1WithPerformer]),
strconv.Itoa(tagIDs[tagIdx2WithPerformer]),
},
Modifier: models.CriterionModifierIncludesAll,
}
performers = queryPerformers(t, sqb, &performerFilter, nil)
assert.Len(t, performers, 1)
assert.Equal(t, sceneIDs[performerIdxWithTwoTags], performers[0].ID)
Tag hierarchy (#1519) * Add migration script for tag relations table * Expand hierarchical filter features Expand the features of the hierarchical multi input filter with support for using a relations table, which only has parent_id and child_id columns, and support adding an additional intermediate table to join on, for example for scenes and tags which are linked by the scenes_tags table as well. * Add hierarchical filtering for tags * Add hierarchical tags support to scene markers Refactor filtering of scene markers to filterBuilder and in the process add support for hierarchical tags as well. * List parent and child tags on tag details page * Support setting parent and child tags Add support for setting parent and child tags during tag creation and tag updates. * Validate no loops are created in tags hierarchy * Update tag merging to support tag hierarcy * Add unit tests for tags.EnsureUniqueHierarchy * Fix applying recursive to with clause The SQL `RECURSIVE` of a `WITH` clause only needs to be applied once, imediately after the `WITH`. So this fixes the query building to do just that, automatically applying the `RECURSIVE` keyword when any added with clause is added as recursive. * Rename hierarchical root id column * Rewrite hierarchical filtering for performance Completely rewrite the hierarchical filtering to optimize for performance. Doing the recursive query in combination with a complex query seems to break SQLite optimizing some things which means that the recursive part might be 2,5 second slower than adding a static `VALUES()` list. This is mostly noticable in case of the tag hierarchy where setting an exclusion with any depth (or depth: all) being applied has this performance impact of 2,5 second. "Include" also suffered this issue, but some rewritten query by joining in the *_tags table in one pass and applying a `WHERE x IS NOT NULL` filter did seem to optimize that case. But that optimization isn't applied to the `IS NULL` filter of "exclude". Running a simple query beforehand to get all (recursive) items and then applying them to the query doesn't have this performance penalty. * Remove UI references to child studios and tags * Add parents to tag export * Support importing of parent relationship for tags * Assign stable ids to parent / child badges * Silence Apollo warning on parents/children fields on tags Silence warning triggered by Apollo GraphQL by explicitly instructing it to use the incoming parents/children values. By default it already does this, but it triggers a warning as it might be unintended that it uses the incoming values (instead of for example merging both arrays). Setting merge to false still applies the same behaviour (use only incoming values) but silences the warning as it's explicitly configured to work like this. * Rework detecting unique tag hierarchy Completely rework the unique tag hierarchy to detect invalid hierarchies for which a tag is "added in the middle". So when there are tags A <- B and A <- C, you could previously edit tag B and add tag C as a sub tag without it being noticed as parent A being applied twice (to tag C). While afterwards saving tag C would fail as tag A was applied as parent twice. The updated code correctly detects this scenario as well. Furthermore the error messaging has been reworked a bit and the message now mentions both the direct parent / sub tag as well as the tag which would results in the error. So in aboves example it would now show the message that tag C can't be applied because tag A already is a parent. * Update relations on cached tags when needed Update the relations on cached tags when a tag is created / updated / deleted so these always reflect the correct state. Otherwise (re)opening a tag might still show the old relations untill the page is fully reloaded or the list is navigated. But this obviously is strange when you for example have tag A, create or update tag B to have a relation to tag A, and from tags B page click through to tag A and it doesn't show that it is linked to tag B.
2021-09-09 04:58:43 +00:00
tagCriterion = models.HierarchicalMultiCriterionInput{
Value: []string{
strconv.Itoa(tagIDs[tagIdx1WithPerformer]),
},
Modifier: models.CriterionModifierExcludes,
}
q := getSceneStringValue(performerIdxWithTwoTags, titleField)
findFilter := models.FindFilterType{
Q: &q,
}
performers = queryPerformers(t, sqb, &performerFilter, &findFilter)
assert.Len(t, performers, 0)
return nil
})
}
func TestPerformerQueryTagCount(t *testing.T) {
const tagCount = 1
tagCountCriterion := models.IntCriterionInput{
Value: tagCount,
Modifier: models.CriterionModifierEquals,
}
verifyPerformersTagCount(t, tagCountCriterion)
tagCountCriterion.Modifier = models.CriterionModifierNotEquals
verifyPerformersTagCount(t, tagCountCriterion)
tagCountCriterion.Modifier = models.CriterionModifierGreaterThan
verifyPerformersTagCount(t, tagCountCriterion)
tagCountCriterion.Modifier = models.CriterionModifierLessThan
verifyPerformersTagCount(t, tagCountCriterion)
}
func verifyPerformersTagCount(t *testing.T, tagCountCriterion models.IntCriterionInput) {
withTxn(func(r models.Repository) error {
sqb := r.Performer()
performerFilter := models.PerformerFilterType{
TagCount: &tagCountCriterion,
}
performers := queryPerformers(t, sqb, &performerFilter, nil)
assert.Greater(t, len(performers), 0)
for _, performer := range performers {
ids, err := sqb.GetTagIDs(performer.ID)
if err != nil {
return err
}
verifyInt(t, len(ids), tagCountCriterion)
}
return nil
})
}
func TestPerformerQuerySceneCount(t *testing.T) {
const sceneCount = 1
sceneCountCriterion := models.IntCriterionInput{
Value: sceneCount,
Modifier: models.CriterionModifierEquals,
}
verifyPerformersSceneCount(t, sceneCountCriterion)
sceneCountCriterion.Modifier = models.CriterionModifierNotEquals
verifyPerformersSceneCount(t, sceneCountCriterion)
sceneCountCriterion.Modifier = models.CriterionModifierGreaterThan
verifyPerformersSceneCount(t, sceneCountCriterion)
sceneCountCriterion.Modifier = models.CriterionModifierLessThan
verifyPerformersSceneCount(t, sceneCountCriterion)
}
func verifyPerformersSceneCount(t *testing.T, sceneCountCriterion models.IntCriterionInput) {
withTxn(func(r models.Repository) error {
sqb := r.Performer()
performerFilter := models.PerformerFilterType{
SceneCount: &sceneCountCriterion,
}
performers := queryPerformers(t, sqb, &performerFilter, nil)
assert.Greater(t, len(performers), 0)
for _, performer := range performers {
ids, err := r.Scene().FindByPerformerID(performer.ID)
if err != nil {
return err
}
verifyInt(t, len(ids), sceneCountCriterion)
}
return nil
})
}
func TestPerformerQueryImageCount(t *testing.T) {
const imageCount = 1
imageCountCriterion := models.IntCriterionInput{
Value: imageCount,
Modifier: models.CriterionModifierEquals,
}
verifyPerformersImageCount(t, imageCountCriterion)
imageCountCriterion.Modifier = models.CriterionModifierNotEquals
verifyPerformersImageCount(t, imageCountCriterion)
imageCountCriterion.Modifier = models.CriterionModifierGreaterThan
verifyPerformersImageCount(t, imageCountCriterion)
imageCountCriterion.Modifier = models.CriterionModifierLessThan
verifyPerformersImageCount(t, imageCountCriterion)
}
func verifyPerformersImageCount(t *testing.T, imageCountCriterion models.IntCriterionInput) {
withTxn(func(r models.Repository) error {
sqb := r.Performer()
performerFilter := models.PerformerFilterType{
ImageCount: &imageCountCriterion,
}
performers := queryPerformers(t, sqb, &performerFilter, nil)
assert.Greater(t, len(performers), 0)
for _, performer := range performers {
pp := 0
result, err := r.Image().Query(models.ImageQueryOptions{
QueryOptions: models.QueryOptions{
FindFilter: &models.FindFilterType{
PerPage: &pp,
},
Count: true,
},
ImageFilter: &models.ImageFilterType{
Performers: &models.MultiCriterionInput{
Value: []string{strconv.Itoa(performer.ID)},
Modifier: models.CriterionModifierIncludes,
},
},
})
if err != nil {
return err
}
verifyInt(t, result.Count, imageCountCriterion)
}
return nil
})
}
func TestPerformerQueryGalleryCount(t *testing.T) {
const galleryCount = 1
galleryCountCriterion := models.IntCriterionInput{
Value: galleryCount,
Modifier: models.CriterionModifierEquals,
}
verifyPerformersGalleryCount(t, galleryCountCriterion)
galleryCountCriterion.Modifier = models.CriterionModifierNotEquals
verifyPerformersGalleryCount(t, galleryCountCriterion)
galleryCountCriterion.Modifier = models.CriterionModifierGreaterThan
verifyPerformersGalleryCount(t, galleryCountCriterion)
galleryCountCriterion.Modifier = models.CriterionModifierLessThan
verifyPerformersGalleryCount(t, galleryCountCriterion)
}
func verifyPerformersGalleryCount(t *testing.T, galleryCountCriterion models.IntCriterionInput) {
withTxn(func(r models.Repository) error {
sqb := r.Performer()
performerFilter := models.PerformerFilterType{
GalleryCount: &galleryCountCriterion,
}
performers := queryPerformers(t, sqb, &performerFilter, nil)
assert.Greater(t, len(performers), 0)
for _, performer := range performers {
pp := 0
_, count, err := r.Gallery().Query(&models.GalleryFilterType{
Performers: &models.MultiCriterionInput{
Value: []string{strconv.Itoa(performer.ID)},
Modifier: models.CriterionModifierIncludes,
},
}, &models.FindFilterType{
PerPage: &pp,
})
if err != nil {
return err
}
verifyInt(t, count, galleryCountCriterion)
}
return nil
})
}
func TestPerformerQueryStudio(t *testing.T) {
withTxn(func(r models.Repository) error {
testCases := []struct {
studioIndex int
performerIndex int
}{
{studioIndex: studioIdxWithScenePerformer, performerIndex: performerIdxWithSceneStudio},
{studioIndex: studioIdxWithImagePerformer, performerIndex: performerIdxWithImageStudio},
{studioIndex: studioIdxWithGalleryPerformer, performerIndex: performerIdxWithGalleryStudio},
}
sqb := r.Performer()
for _, tc := range testCases {
studioCriterion := models.HierarchicalMultiCriterionInput{
Value: []string{
strconv.Itoa(studioIDs[tc.studioIndex]),
},
Modifier: models.CriterionModifierIncludes,
}
performerFilter := models.PerformerFilterType{
Studios: &studioCriterion,
}
performers := queryPerformers(t, sqb, &performerFilter, nil)
assert.Len(t, performers, 1)
// ensure id is correct
assert.Equal(t, performerIDs[tc.performerIndex], performers[0].ID)
studioCriterion = models.HierarchicalMultiCriterionInput{
Value: []string{
strconv.Itoa(studioIDs[tc.studioIndex]),
},
Modifier: models.CriterionModifierExcludes,
}
q := getPerformerStringValue(tc.performerIndex, "Name")
findFilter := models.FindFilterType{
Q: &q,
}
performers = queryPerformers(t, sqb, &performerFilter, &findFilter)
assert.Len(t, performers, 0)
}
// test NULL/not NULL
q := getPerformerStringValue(performerIdx1WithImage, "Name")
performerFilter := &models.PerformerFilterType{
Studios: &models.HierarchicalMultiCriterionInput{
Modifier: models.CriterionModifierIsNull,
},
}
findFilter := &models.FindFilterType{
Q: &q,
}
performers := queryPerformers(t, sqb, performerFilter, findFilter)
assert.Len(t, performers, 1)
assert.Equal(t, imageIDs[performerIdx1WithImage], performers[0].ID)
q = getPerformerStringValue(performerIdxWithSceneStudio, "Name")
performers = queryPerformers(t, sqb, performerFilter, findFilter)
assert.Len(t, performers, 0)
performerFilter.Studios.Modifier = models.CriterionModifierNotNull
performers = queryPerformers(t, sqb, performerFilter, findFilter)
assert.Len(t, performers, 1)
assert.Equal(t, imageIDs[performerIdxWithSceneStudio], performers[0].ID)
q = getPerformerStringValue(performerIdx1WithImage, "Name")
performers = queryPerformers(t, sqb, performerFilter, findFilter)
assert.Len(t, performers, 0)
return nil
})
}
func TestPerformerStashIDs(t *testing.T) {
if err := withTxn(func(r models.Repository) error {
qb := r.Performer()
// create performer to test against
const name = "TestStashIDs"
performer := models.Performer{
Name: sql.NullString{String: name, Valid: true},
Checksum: md5.FromString(name),
Favorite: sql.NullBool{Bool: false, Valid: true},
}
created, err := qb.Create(performer)
if err != nil {
return fmt.Errorf("Error creating performer: %s", err.Error())
}
testStashIDReaderWriter(t, qb, created.ID)
return nil
}); err != nil {
t.Error(err.Error())
}
}
func TestPerformerQueryRating(t *testing.T) {
const rating = 3
ratingCriterion := models.IntCriterionInput{
Value: rating,
Modifier: models.CriterionModifierEquals,
}
verifyPerformersRating(t, ratingCriterion)
ratingCriterion.Modifier = models.CriterionModifierNotEquals
verifyPerformersRating(t, ratingCriterion)
ratingCriterion.Modifier = models.CriterionModifierGreaterThan
verifyPerformersRating(t, ratingCriterion)
ratingCriterion.Modifier = models.CriterionModifierLessThan
verifyPerformersRating(t, ratingCriterion)
ratingCriterion.Modifier = models.CriterionModifierIsNull
verifyPerformersRating(t, ratingCriterion)
ratingCriterion.Modifier = models.CriterionModifierNotNull
verifyPerformersRating(t, ratingCriterion)
}
func verifyPerformersRating(t *testing.T, ratingCriterion models.IntCriterionInput) {
withTxn(func(r models.Repository) error {
sqb := r.Performer()
performerFilter := models.PerformerFilterType{
Rating: &ratingCriterion,
}
performers := queryPerformers(t, sqb, &performerFilter, nil)
for _, performer := range performers {
verifyInt64(t, performer.Rating, ratingCriterion)
}
return nil
})
}
func TestPerformerQueryIsMissingRating(t *testing.T) {
withTxn(func(r models.Repository) error {
sqb := r.Performer()
isMissing := "rating"
performerFilter := models.PerformerFilterType{
IsMissing: &isMissing,
}
performers := queryPerformers(t, sqb, &performerFilter, nil)
assert.True(t, len(performers) > 0)
for _, performer := range performers {
assert.True(t, !performer.Rating.Valid)
}
return nil
})
}
func TestPerformerQueryIsMissingImage(t *testing.T) {
withTxn(func(r models.Repository) error {
isMissing := "image"
performerFilter := &models.PerformerFilterType{
IsMissing: &isMissing,
}
// ensure query does not error
performers, _, err := r.Performer().Query(performerFilter, nil)
if err != nil {
t.Errorf("Error querying performers: %s", err.Error())
}
assert.True(t, len(performers) > 0)
for _, performer := range performers {
img, err := r.Performer().GetImage(performer.ID)
if err != nil {
t.Errorf("error getting performer image: %s", err.Error())
}
assert.Nil(t, img)
}
return nil
})
}
func TestPerformerQuerySortScenesCount(t *testing.T) {
sort := "scenes_count"
direction := models.SortDirectionEnumDesc
findFilter := &models.FindFilterType{
Sort: &sort,
Direction: &direction,
}
withTxn(func(r models.Repository) error {
// just ensure it queries without error
performers, _, err := r.Performer().Query(nil, findFilter)
if err != nil {
t.Errorf("Error querying performers: %s", err.Error())
}
assert.True(t, len(performers) > 0)
// first performer should be performerIdxWithTwoScenes
firstPerformer := performers[0]
assert.Equal(t, performerIDs[performerIdxWithTwoScenes], firstPerformer.ID)
// sort in ascending order
direction = models.SortDirectionEnumAsc
performers, _, err = r.Performer().Query(nil, findFilter)
if err != nil {
t.Errorf("Error querying performers: %s", err.Error())
}
assert.True(t, len(performers) > 0)
lastPerformer := performers[len(performers)-1]
assert.Equal(t, performerIDs[performerIdxWithTwoScenes], lastPerformer.ID)
return nil
})
}
// TODO Update
// TODO Destroy
// TODO Find
// TODO Count
// TODO All
// TODO AllSlim
// TODO Query