Merge remote-tracking branch 'upstream/development' into jckand/SliceDeprecationAutomationUtils

Signed-off-by: jckand-amzn <jckand@amazon.com>
This commit is contained in:
jckand-amzn
2021-11-15 10:14:51 -06:00
2058 changed files with 219928 additions and 11743 deletions
@@ -54,6 +54,7 @@ set(ENABLED_GEMS
AWSMetrics
PrefabBuilder
AudioSystem
Terrain
Profiler
Multiplayer
)
@@ -29,6 +29,10 @@ class TestAutomation(EditorTestSuite):
class AtomEditorComponents_DepthOfFieldAdded(EditorSharedTest):
from Atom.tests import hydra_AtomEditorComponents_DepthOfFieldAdded as test_module
@pytest.mark.test_case_id("C36525659")
class AtomEditorComponents_DiffuseProbeGridAdded(EditorSharedTest):
from Atom.tests import hydra_AtomEditorComponents_DiffuseProbeGridAdded as test_module
@pytest.mark.test_case_id("C32078120")
class AtomEditorComponents_DirectionalLightAdded(EditorSharedTest):
from Atom.tests import hydra_AtomEditorComponents_DirectionalLightAdded as test_module
@@ -37,6 +41,10 @@ class TestAutomation(EditorTestSuite):
class AtomEditorComponents_DisplayMapperAdded(EditorSharedTest):
from Atom.tests import hydra_AtomEditorComponents_DisplayMapperAdded as test_module
@pytest.mark.test_case_id("C36525661")
class AtomEditorComponents_EntityReferenceAdded(EditorSharedTest):
from Atom.tests import hydra_AtomEditorComponents_EntityReferenceAdded as test_module
@pytest.mark.test_case_id("C32078121")
class AtomEditorComponents_ExposureControlAdded(EditorSharedTest):
from Atom.tests import hydra_AtomEditorComponents_ExposureControlAdded as test_module
@@ -57,6 +65,10 @@ class TestAutomation(EditorTestSuite):
class AtomEditorComponents_LightAdded(EditorSharedTest):
from Atom.tests import hydra_AtomEditorComponents_LightAdded as test_module
@pytest.mark.test_case_id("C36525662")
class AtomEditorComponents_LookModificationAdded(EditorSharedTest):
from Atom.tests import hydra_AtomEditorComponents_LookModificationAdded as test_module
@pytest.mark.test_case_id("C32078123")
class AtomEditorComponents_MaterialAdded(EditorSharedTest):
from Atom.tests import hydra_AtomEditorComponents_MaterialAdded as test_module
@@ -94,5 +106,9 @@ class TestAutomation(EditorTestSuite):
class AtomEditorComponents_ReflectionProbeAdded(EditorSharedTest):
from Atom.tests import hydra_AtomEditorComponents_ReflectionProbeAdded as test_module
@pytest.mark.test_case_id("C36525666")
class AtomEditorComponents_SSAOAdded(EditorSharedTest):
from Atom.tests import hydra_AtomEditorComponents_SSAOAdded as test_module
class ShaderAssetBuilder_RecompilesShaderAsChainOfDependenciesChanges(EditorSharedTest):
from Atom.tests import hydra_ShaderAssetBuilder_RecompilesShaderAsChainOfDependenciesChanges as test_module
@@ -172,8 +172,7 @@ def create_basic_atom_level(level_name):
entity_position=default_position,
components=["HDRi Skybox", "Global Skylight (IBL)"],
parent_id=default_level.id)
global_skylight_asset_path = os.path.join(
"LightingPresets", "greenwich_park_02_4k_iblskyboxcm_iblspecular.exr.streamingimage")
global_skylight_asset_path = os.path.join("LightingPresets", "default_iblskyboxcm.exr.streamingimage")
global_skylight_asset_value = asset.AssetCatalogRequestBus(
bus.Broadcast, "GetAssetIdByPath", global_skylight_asset_path, math.Uuid(), False)
global_skylight.get_set_test(0, "Controller|Configuration|Cubemap Texture", global_skylight_asset_value)
@@ -57,11 +57,13 @@ class AtomComponentProperties:
def camera(property: str = 'name') -> str:
"""
Camera component properties.
- 'Field of view': Sets the value for the camera's FOV (Field of View) in degrees, i.e. 60.0
:param property: From the last element of the property tree path. Default 'name' for component name string.
:return: Full property path OR component name if no property specified.
"""
properties = {
'name': 'Camera',
'Field of view': 'Controller|Configuration|Field of view'
}
return properties[property]
@@ -115,7 +117,7 @@ class AtomComponentProperties:
return properties[property]
@staticmethod
def diffuse_probe(property: str = 'name') -> str:
def diffuse_probe_grid(property: str = 'name') -> str:
"""
Diffuse Probe Grid component properties. Requires one of 'shapes'.
- 'shapes' a list of supported shapes as component names.
@@ -202,11 +204,13 @@ class AtomComponentProperties:
def grid(property: str = 'name') -> str:
"""
Grid component properties.
- 'Secondary Grid Spacing': The spacing value for the secondary grid, i.e. 1.0
:param property: From the last element of the property tree path. Default 'name' for component name string.
:return: Full property path OR component name if no property specified.
"""
properties = {
'name': 'Grid',
'Secondary Grid Spacing': 'Controller|Configuration|Secondary Grid Spacing',
}
return properties[property]
@@ -231,11 +235,13 @@ class AtomComponentProperties:
def hdri_skybox(property: str = 'name') -> str:
"""
HDRi Skybox component properties.
- 'Cubemap Texture': Asset.id for the cubemap texture to set.
:param property: From the last element of the property tree path. Default 'name' for component name string.
:return: Full property path OR component name if no property specified.
"""
properties = {
'name': 'HDRi Skybox',
'Cubemap Texture': 'Controller|Configuration|Cubemap Texture',
}
return properties[property]
@@ -259,12 +265,16 @@ class AtomComponentProperties:
Look Modification component properties. Requires PostFX Layer component.
- 'requires' a list of component names as strings required by this component.
Use editor_entity_utils EditorEntity.add_components(list) to add this list of requirements.\n
- 'Enable look modification' Toggle active state of the component True/False
- 'Color Grading LUT' Asset.id for the LUT used for affecting level look.
:param property: From the last element of the property tree path. Default 'name' for component name string.
:return: Full property path OR component name if no property specified.
"""
properties = {
'name': 'Look Modification',
'requires': [AtomComponentProperties.postfx_layer()],
'Enable look modification': 'Controller|Configuration|Enable look modification',
'Color Grading LUT': 'Controller|Configuration|Color Grading LUT',
}
return properties[property]
@@ -274,12 +284,14 @@ class AtomComponentProperties:
Material component properties. Requires one of Actor OR Mesh component.
- 'requires' a list of component names as strings required by this component.
Only one of these is required at a time for this component.\n
- 'Material Asset': the material Asset.id of the material.
:param property: From the last element of the property tree path. Default 'name' for component name string.
:return: Full property path OR component name if no property specified.
"""
properties = {
'name': 'Material',
'requires': [AtomComponentProperties.actor(), AtomComponentProperties.mesh()],
'Material Asset': 'Default Material|Material Asset',
}
return properties[property]
@@ -1,3 +1,3 @@
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@@ -0,0 +1,187 @@
"""
Copyright (c) Contributors to the Open 3D Engine Project.
For complete copyright and license terms please see the LICENSE at the root of this distribution.
SPDX-License-Identifier: Apache-2.0 OR MIT
"""
class Tests:
creation_undo = (
"UNDO Entity creation success",
"UNDO Entity creation failed")
creation_redo = (
"REDO Entity creation success",
"REDO Entity creation failed")
diffuse_probe_grid_creation = (
"Diffuse Probe Grid Entity successfully created",
"Diffuse Probe Grid Entity failed to be created")
diffuse_probe_grid_component = (
"Entity has a Diffuse Probe Grid component",
"Entity failed to find Diffuse Probe Grid component")
diffuse_probe_grid_disabled = (
"Diffuse Probe Grid component disabled",
"Diffuse Probe Grid component was not disabled")
diffuse_probe_grid_enabled = (
"Diffuse Probe Grid component enabled",
"Diffuse Probe Grid component was not enabled")
enter_game_mode = (
"Entered game mode",
"Failed to enter game mode")
exit_game_mode = (
"Exited game mode",
"Couldn't exit game mode")
is_visible = (
"Entity is visible",
"Entity was not visible")
is_hidden = (
"Entity is hidden",
"Entity was not hidden")
entity_deleted = (
"Entity deleted",
"Entity was not deleted")
deletion_undo = (
"UNDO deletion success",
"UNDO deletion failed")
deletion_redo = (
"REDO deletion success",
"REDO deletion failed")
def AtomEditorComponents_DiffuseProbeGrid_AddedToEntity():
"""
Summary:
Tests the Diffuse Probe Grid component can be added to an entity and has the expected functionality.
Test setup:
- Wait for Editor idle loop.
- Open the "Base" level.
Expected Behavior:
The component can be added, used in game mode, hidden/shown, deleted, and has accurate required components.
Creation and deletion undo/redo should also work.
Test Steps:
1) Create a Diffuse Probe Grid entity with no components.
2) Add a Diffuse Probe Grid component to Diffuse Probe Grid entity.
3) UNDO the entity creation and component addition.
4) REDO the entity creation and component addition.
5) Verify Diffuse Probe Grid component not enabled.
6) Add Shape component since it is required by the Diffuse Probe Grid component.
7) Verify Diffuse Probe Grid component is enabled.
8) Enter/Exit game mode.
9) Test IsHidden.
10) Test IsVisible.
11) Delete Diffuse Probe Grid entity.
12) UNDO deletion.
13) REDO deletion.
14) Look for errors.
:return: None
"""
import azlmbr.legacy.general as general
from editor_python_test_tools.editor_entity_utils import EditorEntity
from editor_python_test_tools.utils import Report, Tracer, TestHelper
from Atom.atom_utils.atom_constants import AtomComponentProperties
with Tracer() as error_tracer:
# Test setup begins.
# Setup: Wait for Editor idle loop before executing Python hydra scripts then open "Base" level.
TestHelper.init_idle()
TestHelper.open_level("", "Base")
# Test steps begin.
# 1. Create a Diffuse Probe Grid entity with no components.
diffuse_probe_grid_entity = EditorEntity.create_editor_entity(AtomComponentProperties.diffuse_probe_grid())
Report.critical_result(Tests.diffuse_probe_grid_creation, diffuse_probe_grid_entity.exists())
# 2. Add a Diffuse Probe Grid component to Diffuse Probe Grid entity.
diffuse_probe_grid_component = diffuse_probe_grid_entity.add_component(
AtomComponentProperties.diffuse_probe_grid())
Report.critical_result(
Tests.diffuse_probe_grid_component,
diffuse_probe_grid_entity.has_component(AtomComponentProperties.diffuse_probe_grid()))
# 3. UNDO the entity creation and component addition.
# -> UNDO component addition.
general.undo()
# -> UNDO naming entity.
general.undo()
# -> UNDO selecting entity.
general.undo()
# -> UNDO entity creation.
general.undo()
general.idle_wait_frames(1)
Report.result(Tests.creation_undo, not diffuse_probe_grid_entity.exists())
# 4. REDO the entity creation and component addition.
# -> REDO entity creation.
general.redo()
# -> REDO selecting entity.
general.redo()
# -> REDO naming entity.
general.redo()
# -> REDO component addition.
general.redo()
general.idle_wait_frames(1)
Report.result(Tests.creation_redo, diffuse_probe_grid_entity.exists())
# 5. Verify Diffuse Probe Grid component not enabled.
Report.result(Tests.diffuse_probe_grid_disabled, not diffuse_probe_grid_component.is_enabled())
# 6. Add Shape component since it is required by the Diffuse Probe Grid component.
for shape in AtomComponentProperties.diffuse_probe_grid('shapes'):
diffuse_probe_grid_entity.add_component(shape)
test_shape = (
f"Entity has a {shape} component",
f"Entity did not have a {shape} component")
Report.result(test_shape, diffuse_probe_grid_entity.has_component(shape))
# 7. Check if required shape allows Diffuse Probe Grid to be enabled
Report.result(Tests.diffuse_probe_grid_enabled, diffuse_probe_grid_component.is_enabled())
# Undo to remove each added shape except the last one and verify Diffuse Probe Grid is not enabled.
if not (shape == AtomComponentProperties.diffuse_probe_grid('shapes')[-1]):
general.undo()
TestHelper.wait_for_condition(lambda: not diffuse_probe_grid_entity.has_component(shape), 1.0)
Report.result(Tests.diffuse_probe_grid_disabled, not diffuse_probe_grid_component.is_enabled())
# 8. Enter/Exit game mode.
TestHelper.enter_game_mode(Tests.enter_game_mode)
general.idle_wait_frames(1)
TestHelper.exit_game_mode(Tests.exit_game_mode)
# 9. Test IsHidden.
diffuse_probe_grid_entity.set_visibility_state(False)
Report.result(Tests.is_hidden, diffuse_probe_grid_entity.is_hidden() is True)
# 10. Test IsVisible.
diffuse_probe_grid_entity.set_visibility_state(True)
general.idle_wait_frames(1)
Report.result(Tests.is_visible, diffuse_probe_grid_entity.is_visible() is True)
# 11. Delete Diffuse Probe Grid entity.
diffuse_probe_grid_entity.delete()
Report.result(Tests.entity_deleted, not diffuse_probe_grid_entity.exists())
# 12. UNDO deletion.
general.undo()
Report.result(Tests.deletion_undo, diffuse_probe_grid_entity.exists())
# 13. REDO deletion.
general.redo()
Report.result(Tests.deletion_redo, not diffuse_probe_grid_entity.exists())
# 14. Look for errors or asserts.
TestHelper.wait_for_condition(lambda: error_tracer.has_errors or error_tracer.has_asserts, 1.0)
for error_info in error_tracer.errors:
Report.info(f"Error: {error_info.filename} {error_info.function} | {error_info.message}")
for assert_info in error_tracer.asserts:
Report.info(f"Assert: {assert_info.filename} {assert_info.function} | {assert_info.message}")
if __name__ == "__main__":
from editor_python_test_tools.utils import Report
Report.start_test(AtomEditorComponents_DiffuseProbeGrid_AddedToEntity)
@@ -0,0 +1,158 @@
"""
Copyright (c) Contributors to the Open 3D Engine Project.
For complete copyright and license terms please see the LICENSE at the root of this distribution.
SPDX-License-Identifier: Apache-2.0 OR MIT
"""
class Tests:
creation_undo = (
"UNDO Entity creation success",
"UNDO Entity creation failed")
creation_redo = (
"REDO Entity creation success",
"REDO Entity creation failed")
entity_reference_creation = (
"Entity Reference Entity successfully created",
"Entity Reference Entity failed to be created")
entity_reference_component = (
"Entity has an Entity Reference component",
"Entity failed to find Entity Reference component")
enter_game_mode = (
"Entered game mode",
"Failed to enter game mode")
exit_game_mode = (
"Exited game mode",
"Couldn't exit game mode")
is_visible = (
"Entity is visible",
"Entity was not visible")
is_hidden = (
"Entity is hidden",
"Entity was not hidden")
entity_deleted = (
"Entity deleted",
"Entity was not deleted")
deletion_undo = (
"UNDO deletion success",
"UNDO deletion failed")
deletion_redo = (
"REDO deletion success",
"REDO deletion failed")
def AtomEditorComponents_EntityReference_AddedToEntity():
"""
Summary:
Tests the Entity Reference component can be added to an entity and has the expected functionality.
Test setup:
- Wait for Editor idle loop.
- Open the "Base" level.
Expected Behavior:
The component can be added, used in game mode, hidden/shown, deleted, and has accurate required components.
Creation and deletion undo/redo should also work.
Test Steps:
1) Create an Entity Reference entity with no components.
2) Add Entity Reference component to Entity Reference entity.
3) UNDO the entity creation and component addition.
4) REDO the entity creation and component addition.
5) Enter/Exit game mode.
6) Test IsHidden.
7) Test IsVisible.
8) Delete Entity Reference entity.
9) UNDO deletion.
10) REDO deletion.
11) Look for errors.
:return: None
"""
import azlmbr.legacy.general as general
from editor_python_test_tools.editor_entity_utils import EditorEntity
from editor_python_test_tools.utils import Report, Tracer, TestHelper
from Atom.atom_utils.atom_constants import AtomComponentProperties
with Tracer() as error_tracer:
# Test setup begins.
# Setup: Wait for Editor idle loop before executing Python hydra scripts then open "Base" level.
TestHelper.init_idle()
TestHelper.open_level("", "Base")
# Test steps begin.
# 1. Create an Entity Reference entity with no components.
entity_reference_entity = EditorEntity.create_editor_entity(AtomComponentProperties.entity_reference())
Report.critical_result(Tests.entity_reference_creation, entity_reference_entity.exists())
# 2. Add Entity Reference component to Entity Reference entity.
entity_reference_component = entity_reference_entity.add_component(
AtomComponentProperties.entity_reference())
Report.critical_result(
Tests.entity_reference_component,
entity_reference_entity.has_component(AtomComponentProperties.entity_reference()))
# 3. UNDO the entity creation and component addition.
# -> UNDO component addition.
general.undo()
# -> UNDO naming entity.
general.undo()
# -> UNDO selecting entity.
general.undo()
# -> UNDO entity creation.
general.undo()
general.idle_wait_frames(1)
Report.result(Tests.creation_undo, not entity_reference_entity.exists())
# 4. REDO the entity creation and component addition.
# -> REDO entity creation.
general.redo()
# -> REDO selecting entity.
general.redo()
# -> REDO naming entity.
general.redo()
# -> REDO component addition.
general.redo()
general.idle_wait_frames(1)
Report.result(Tests.creation_redo, entity_reference_entity.exists())
# 5. Enter/Exit game mode.
TestHelper.enter_game_mode(Tests.enter_game_mode)
general.idle_wait_frames(1)
TestHelper.exit_game_mode(Tests.exit_game_mode)
# 6. Test IsHidden.
entity_reference_entity.set_visibility_state(False)
Report.result(Tests.is_hidden, entity_reference_entity.is_hidden() is True)
# 7. Test IsVisible.
entity_reference_entity.set_visibility_state(True)
general.idle_wait_frames(1)
Report.result(Tests.is_visible, entity_reference_entity.is_visible() is True)
# 8. Delete Entity Reference entity.
entity_reference_entity.delete()
Report.result(Tests.entity_deleted, not entity_reference_entity.exists())
# 9. UNDO deletion.
general.undo()
Report.result(Tests.deletion_undo, entity_reference_entity.exists())
# 10. REDO deletion.
general.redo()
Report.result(Tests.deletion_redo, not entity_reference_entity.exists())
# 11. Look for errors and asserts.
TestHelper.wait_for_condition(lambda: error_tracer.has_errors or error_tracer.has_asserts, 1.0)
for error_info in error_tracer.errors:
Report.info(f"Error: {error_info.filename} {error_info.function} | {error_info.message}")
for assert_info in error_tracer.asserts:
Report.info(f"Assert: {assert_info.filename} {assert_info.function} | {assert_info.message}")
if __name__ == "__main__":
from editor_python_test_tools.utils import Report
Report.start_test(AtomEditorComponents_EntityReference_AddedToEntity)
@@ -151,7 +151,7 @@ def AtomEditorComponents_GlobalSkylightIBL_AddedToEntity():
Report.result(Tests.is_visible, global_skylight_entity.is_visible() is True)
# 8. Set the Diffuse Image asset on the Global Skylight (IBL) entity.
diffuse_image_path = os.path.join("LightingPresets", "greenwich_park_02_4k_iblskyboxcm.exr.streamingimage")
diffuse_image_path = os.path.join("LightingPresets", "default_iblskyboxcm.exr.streamingimage")
diffuse_image_asset = Asset.find_asset_by_path(diffuse_image_path, False)
global_skylight_component.set_component_property_value(
AtomComponentProperties.global_skylight('Diffuse Image'), diffuse_image_asset.id)
@@ -161,7 +161,7 @@ def AtomEditorComponents_GlobalSkylightIBL_AddedToEntity():
AtomComponentProperties.global_skylight('Diffuse Image')))
# 9. Set the Specular Image asset on the Global Light (IBL) entity.
specular_image_path = os.path.join("LightingPresets", "greenwich_park_02_4k_iblskyboxcm.exr.streamingimage")
specular_image_path = os.path.join("LightingPresets", "default_iblskyboxcm.exr.streamingimage")
specular_image_asset = Asset.find_asset_by_path(specular_image_path, False)
global_skylight_component.set_component_property_value(
AtomComponentProperties.global_skylight('Specular Image'), specular_image_asset.id)
@@ -0,0 +1,211 @@
"""
Copyright (c) Contributors to the Open 3D Engine Project.
For complete copyright and license terms please see the LICENSE at the root of this distribution.
SPDX-License-Identifier: Apache-2.0 OR MIT
"""
class Tests:
creation_undo = (
"UNDO Entity creation success",
"UNDO Entity creation failed")
creation_redo = (
"REDO Entity creation success",
"REDO Entity creation failed")
look_modification_creation = (
"Look Modification Entity successfully created",
"Look Modification Entity failed to be created")
look_modification_component = (
"Entity has a Look Modification component",
"Entity failed to find Look Modification component")
look_modification_disabled = (
"Look Modification component disabled",
"Look Modification component was not disabled")
postfx_layer_component = (
"Entity has a PostFX Layer component",
"Entity did not have an PostFX Layer component")
look_modification_enabled = (
"Look Modification component enabled",
"Look Modification component was not enabled")
enable_look_modification_parameter_enabled = (
"Enable look modification parameter enabled",
"Enable look modification parameter was not enabled")
color_grading_lut_set = (
"Entity has the Color Grading LUT set",
"Entity did not the Color Grading LUT set")
enter_game_mode = (
"Entered game mode",
"Failed to enter game mode")
exit_game_mode = (
"Exited game mode",
"Couldn't exit game mode")
is_visible = (
"Entity is visible",
"Entity was not visible")
is_hidden = (
"Entity is hidden",
"Entity was not hidden")
entity_deleted = (
"Entity deleted",
"Entity was not deleted")
deletion_undo = (
"UNDO deletion success",
"UNDO deletion failed")
deletion_redo = (
"REDO deletion success",
"REDO deletion failed")
def AtomEditorComponents_LookModification_AddedToEntity():
"""
Summary:
Tests the Look Modification component can be added to an entity and has the expected functionality.
Test setup:
- Wait for Editor idle loop.
- Open the "Base" level.
Expected Behavior:
The component can be added, used in game mode, hidden/shown, deleted, and has accurate required components.
Creation and deletion undo/redo should also work.
Test Steps:
1) Create an Look Modification entity with no components.
2) Add Look Modification component to Look Modification entity.
3) UNDO the entity creation and component addition.
4) REDO the entity creation and component addition.
5) Verify Look Modification component not enabled.
6) Add PostFX Layer component since it is required by the Look Modification component.
7) Verify Look Modification component is enabled.
8) Enable the "Enable Look Modification" parameter.
9) Add LUT asset to the Color Grading LUT parameter.
9) Enter/Exit game mode.
10) Test IsHidden.
11) Test IsVisible.
12) Delete Look Modification entity.
13) UNDO deletion.
14) REDO deletion.
15) Look for errors.
:return: None
"""
import os
import azlmbr.legacy.general as general
from editor_python_test_tools.asset_utils import Asset
from editor_python_test_tools.editor_entity_utils import EditorEntity
from editor_python_test_tools.utils import Report, Tracer, TestHelper
from Atom.atom_utils.atom_constants import AtomComponentProperties
with Tracer() as error_tracer:
# Test setup begins.
# Setup: Wait for Editor idle loop before executing Python hydra scripts then open "Base" level.
TestHelper.init_idle()
TestHelper.open_level("", "Base")
# Test steps begin.
# 1. Create an Look Modification entity with no components.
look_modification_entity = EditorEntity.create_editor_entity(AtomComponentProperties.look_modification())
Report.critical_result(Tests.look_modification_creation, look_modification_entity.exists())
# 2. Add Look Modification component to Look Modification entity.
look_modification_component = look_modification_entity.add_component(
AtomComponentProperties.look_modification())
Report.critical_result(
Tests.look_modification_component,
look_modification_entity.has_component(AtomComponentProperties.look_modification()))
# 3. UNDO the entity creation and component addition.
# -> UNDO component addition.
general.undo()
# -> UNDO naming entity.
general.undo()
# -> UNDO selecting entity.
general.undo()
# -> UNDO entity creation.
general.undo()
general.idle_wait_frames(1)
Report.result(Tests.creation_undo, not look_modification_entity.exists())
# 4. REDO the entity creation and component addition.
# -> REDO entity creation.
general.redo()
# -> REDO selecting entity.
general.redo()
# -> REDO naming entity.
general.redo()
# -> REDO component addition.
general.redo()
general.idle_wait_frames(1)
Report.result(Tests.creation_redo, look_modification_entity.exists())
# 5. Verify Look Modification component not enabled.
Report.result(Tests.look_modification_disabled, not look_modification_component.is_enabled())
# 6. Add PostFX Layer component since it is required by the Look Modification component.
look_modification_entity.add_component(AtomComponentProperties.postfx_layer())
Report.result(
Tests.postfx_layer_component,
look_modification_entity.has_component(AtomComponentProperties.postfx_layer()))
# 7. Verify Look Modification component is enabled.
Report.result(Tests.look_modification_enabled, look_modification_component.is_enabled())
# 8. Enable the "Enable look modification" parameter.
look_modification_component.set_component_property_value(
AtomComponentProperties.look_modification('Enable look modification'), True)
Report.result(Tests.enable_look_modification_parameter_enabled,
look_modification_component.get_component_property_value(
AtomComponentProperties.look_modification('Enable look modification')) is True)
# 9. Set the Color Grading LUT asset on the Look Modification entity.
color_grading_lut_path = os.path.join("ColorGrading", "TestData", "Photoshop", "inv-Log2-48nits",
"test_3dl_32_lut.azasset")
color_grading_lut_asset = Asset.find_asset_by_path(color_grading_lut_path, False)
look_modification_component.set_component_property_value(
AtomComponentProperties.look_modification('Color Grading LUT'), color_grading_lut_asset.id)
Report.result(
Tests.color_grading_lut_set,
color_grading_lut_asset.id == look_modification_component.get_component_property_value(
AtomComponentProperties.look_modification('Color Grading LUT')))
# 10. Enter/Exit game mode.
TestHelper.enter_game_mode(Tests.enter_game_mode)
general.idle_wait_frames(1)
TestHelper.exit_game_mode(Tests.exit_game_mode)
# 11. Test IsHidden.
look_modification_entity.set_visibility_state(False)
Report.result(Tests.is_hidden, look_modification_entity.is_hidden() is True)
# 12. Test IsVisible.
look_modification_entity.set_visibility_state(True)
general.idle_wait_frames(1)
Report.result(Tests.is_visible, look_modification_entity.is_visible() is True)
# 13. Delete Look Modification entity.
look_modification_entity.delete()
Report.result(Tests.entity_deleted, not look_modification_entity.exists())
# 14. UNDO deletion.
general.undo()
Report.result(Tests.deletion_undo, look_modification_entity.exists())
# 15. REDO deletion.
general.redo()
Report.result(Tests.deletion_redo, not look_modification_entity.exists())
# 16. Look for errors and asserts.
TestHelper.wait_for_condition(lambda: error_tracer.has_errors or error_tracer.has_asserts, 1.0)
for error_info in error_tracer.errors:
Report.info(f"Error: {error_info.filename} {error_info.function} | {error_info.message}")
for assert_info in error_tracer.asserts:
Report.info(f"Assert: {assert_info.filename} {assert_info.function} | {assert_info.message}")
if __name__ == "__main__":
from editor_python_test_tools.utils import Report
Report.start_test(AtomEditorComponents_LookModification_AddedToEntity)
@@ -0,0 +1,182 @@
"""
Copyright (c) Contributors to the Open 3D Engine Project.
For complete copyright and license terms please see the LICENSE at the root of this distribution.
SPDX-License-Identifier: Apache-2.0 OR MIT
"""
class Tests:
creation_undo = (
"UNDO Entity creation success",
"UNDO Entity creation failed")
creation_redo = (
"REDO Entity creation success",
"REDO Entity creation failed")
ssao_creation = (
"SSAO Entity successfully created",
"SSAO Entity failed to be created")
ssao_component = (
"Entity has a SSAO component",
"Entity failed to find SSAO component")
ssao_disabled = (
"SSAO component disabled",
"SSAO component was not disabled.")
postfx_layer_component = (
"Entity has a PostFX Layer component",
"Entity did not have an PostFX Layer component")
ssao_enabled = (
"SSAO component enabled",
"SSAO component was not enabled.")
enter_game_mode = (
"Entered game mode",
"Failed to enter game mode")
exit_game_mode = (
"Exited game mode",
"Couldn't exit game mode")
is_visible = (
"Entity is visible",
"Entity was not visible")
is_hidden = (
"Entity is hidden",
"Entity was not hidden")
entity_deleted = (
"Entity deleted",
"Entity was not deleted")
deletion_undo = (
"UNDO deletion success",
"UNDO deletion failed")
deletion_redo = (
"REDO deletion success",
"REDO deletion failed")
def AtomEditorComponents_SSAO_AddedToEntity():
"""
Summary:
Tests the SSAO component can be added to an entity and has the expected functionality.
Screen Space Ambient Occlusion (SSAO) is a PostFX shadow lighting effect.
Test setup:
- Wait for Editor idle loop.
- Open the "Base" level.
Expected Behavior:
The component can be added, used in game mode, hidden/shown, deleted, and has accurate required components.
Creation and deletion undo/redo should also work.
Test Steps:
1) Create a SSAO entity with no components.
2) Add SSAO component to SSAO entity.
3) UNDO the entity creation and component addition.
4) REDO the entity creation and component addition.
5) Verify SSAO component not enabled.
6) Add PostFX Layer component since it is required by the SSAO component.
7) Verify SSAO component is enabled.
8) Enter/Exit game mode.
9) Test IsHidden.
10) Test IsVisible.
11) Delete SSAO entity.
12) UNDO deletion.
13) REDO deletion.
14) Look for errors.
:return: None
"""
import azlmbr.legacy.general as general
from editor_python_test_tools.editor_entity_utils import EditorEntity
from editor_python_test_tools.utils import Report, Tracer, TestHelper
from Atom.atom_utils.atom_constants import AtomComponentProperties
with Tracer() as error_tracer:
# Test setup begins.
# Setup: Wait for Editor idle loop before executing Python hydra scripts then open "Base" level.
TestHelper.init_idle()
TestHelper.open_level("", "Base")
# Test steps begin.
# 1. Create a SSAO entity with no components.
ssao_entity = EditorEntity.create_editor_entity(AtomComponentProperties.ssao())
Report.critical_result(Tests.ssao_creation, ssao_entity.exists())
# 2. Add SSAO component to SSAO entity.
ssao_component = ssao_entity.add_component(AtomComponentProperties.ssao())
Report.critical_result(
Tests.ssao_component,
ssao_entity.has_component(AtomComponentProperties.ssao()))
ssao_component.get_property_tree()
# 3. UNDO the entity creation and component addition.
# -> UNDO component addition.
general.undo()
# -> UNDO naming entity.
general.undo()
# -> UNDO selecting entity.
general.undo()
# -> UNDO entity creation.
general.undo()
general.idle_wait_frames(1)
Report.result(Tests.creation_undo, not ssao_entity.exists())
# 4. REDO the entity creation and component addition.
# -> REDO entity creation.
general.redo()
# -> REDO selecting entity.
general.redo()
# -> REDO naming entity.
general.redo()
# -> REDO component addition.
general.redo()
general.idle_wait_frames(1)
Report.result(Tests.creation_redo, ssao_entity.exists())
# 5. Verify SSAO component not enabled.
Report.result(Tests.ssao_disabled, not ssao_component.is_enabled())
# 6. Add PostFX Layer component since it is required by the SSAO component.
ssao_entity.add_component(AtomComponentProperties.postfx_layer())
Report.result(
Tests.postfx_layer_component,
ssao_entity.has_component(AtomComponentProperties.postfx_layer()))
# 7. Verify SSAO component is enabled.
Report.result(Tests.ssao_enabled, ssao_component.is_enabled())
# 8. Enter/Exit game mode.
TestHelper.enter_game_mode(Tests.enter_game_mode)
general.idle_wait_frames(1)
TestHelper.exit_game_mode(Tests.exit_game_mode)
# 9. Test IsHidden.
ssao_entity.set_visibility_state(False)
Report.result(Tests.is_hidden, ssao_entity.is_hidden() is True)
# 10. Test IsVisible.
ssao_entity.set_visibility_state(True)
general.idle_wait_frames(1)
Report.result(Tests.is_visible, ssao_entity.is_visible() is True)
# 11. Delete SSAO entity.
ssao_entity.delete()
Report.result(Tests.entity_deleted, not ssao_entity.exists())
# 12. UNDO deletion.
general.undo()
Report.result(Tests.deletion_undo, ssao_entity.exists())
# 13. REDO deletion.
general.redo()
Report.result(Tests.deletion_redo, not ssao_entity.exists())
# 14. Look for errors and asserts.
TestHelper.wait_for_condition(lambda: error_tracer.has_errors or error_tracer.has_asserts, 1.0)
for error_info in error_tracer.errors:
Report.info(f"Error: {error_info.filename} {error_info.function} | {error_info.message}")
for assert_info in error_tracer.asserts:
Report.info(f"Assert: {assert_info.filename} {assert_info.function} | {assert_info.message}")
if __name__ == "__main__":
from editor_python_test_tools.utils import Report
Report.start_test(AtomEditorComponents_SSAO_AddedToEntity)
@@ -6,30 +6,70 @@ SPDX-License-Identifier: Apache-2.0 OR MIT
"""
# fmt: off
class Tests :
camera_component_added = ("Camera component was added", "Camera component wasn't added")
camera_fov_set = ("Camera component FOV property set", "Camera component FOV property wasn't set")
directional_light_component_added = ("Directional Light component added", "Directional Light component wasn't added")
enter_game_mode = ("Entered game mode", "Failed to enter game mode")
exit_game_mode = ("Exited game mode", "Couldn't exit game mode")
global_skylight_component_added = ("Global Skylight (IBL) component added", "Global Skylight (IBL) component wasn't added")
global_skylight_diffuse_image_set = ("Global Skylight Diffuse Image property set", "Global Skylight Diffuse Image property wasn't set")
global_skylight_specular_image_set = ("Global Skylight Specular Image property set", "Global Skylight Specular Image property wasn't set")
ground_plane_material_asset_set = ("Ground Plane Material Asset was set", "Ground Plane Material Asset wasn't set")
ground_plane_material_component_added = ("Ground Plane Material component added", "Ground Plane Material component wasn't added")
ground_plane_mesh_asset_set = ("Ground Plane Mesh Asset property was set", "Ground Plane Mesh Asset property wasn't set")
hdri_skybox_component_added = ("HDRi Skybox component added", "HDRi Skybox component wasn't added")
hdri_skybox_cubemap_texture_set = ("HDRi Skybox Cubemap Texture property set", "HDRi Skybox Cubemap Texture property wasn't set")
mesh_component_added = ("Mesh component added", "Mesh component wasn't added")
no_assert_occurred = ("No asserts detected", "Asserts were detected")
no_error_occurred = ("No errors detected", "Errors were detected")
secondary_grid_spacing = ("Secondary Grid Spacing set", "Secondary Grid Spacing not set")
sphere_material_component_added = ("Sphere Material component added", "Sphere Material component wasn't added")
sphere_material_set = ("Sphere Material Asset was set", "Sphere Material Asset wasn't set")
sphere_mesh_asset_set = ("Sphere Mesh Asset was set", "Sphere Mesh Asset wasn't set")
viewport_set = ("Viewport set to correct size", "Viewport not set to correct size")
# fmt: on
class Tests:
camera_component_added = (
"Camera component was added",
"Camera component wasn't added")
camera_fov_set = (
"Camera component FOV property set",
"Camera component FOV property wasn't set")
directional_light_component_added = (
"Directional Light component added",
"Directional Light component wasn't added")
enter_game_mode = (
"Entered game mode",
"Failed to enter game mode")
exit_game_mode = (
"Exited game mode",
"Couldn't exit game mode")
global_skylight_component_added = (
"Global Skylight (IBL) component added",
"Global Skylight (IBL) component wasn't added")
global_skylight_diffuse_image_set = (
"Global Skylight Diffuse Image property set",
"Global Skylight Diffuse Image property wasn't set")
global_skylight_specular_image_set = (
"Global Skylight Specular Image property set",
"Global Skylight Specular Image property wasn't set")
ground_plane_material_asset_set = (
"Ground Plane Material Asset was set",
"Ground Plane Material Asset wasn't set")
ground_plane_material_component_added = (
"Ground Plane Material component added",
"Ground Plane Material component wasn't added")
ground_plane_mesh_asset_set = (
"Ground Plane Mesh Asset property was set",
"Ground Plane Mesh Asset property wasn't set")
hdri_skybox_component_added = (
"HDRi Skybox component added",
"HDRi Skybox component wasn't added")
hdri_skybox_cubemap_texture_set = (
"HDRi Skybox Cubemap Texture property set",
"HDRi Skybox Cubemap Texture property wasn't set")
mesh_component_added = (
"Mesh component added",
"Mesh component wasn't added")
no_assert_occurred = (
"No asserts detected",
"Asserts were detected")
no_error_occurred = (
"No errors detected",
"Errors were detected")
secondary_grid_spacing = (
"Secondary Grid Spacing set",
"Secondary Grid Spacing not set")
sphere_material_component_added = (
"Sphere Material component added",
"Sphere Material component wasn't added")
sphere_material_set = (
"Sphere Material Asset was set",
"Sphere Material Asset wasn't set")
sphere_mesh_asset_set = (
"Sphere Mesh Asset was set",
"Sphere Mesh Asset wasn't set")
viewport_set = (
"Viewport set to correct size",
"Viewport not set to correct size")
def AtomGPU_BasicLevelSetup_SetsUpLevel():
@@ -77,19 +117,17 @@ def AtomGPU_BasicLevelSetup_SetsUpLevel():
import os
from math import isclose
import azlmbr.asset as asset
import azlmbr.bus as bus
import azlmbr.legacy.general as general
import azlmbr.math as math
import azlmbr.paths
from editor_python_test_tools.asset_utils import Asset
from editor_python_test_tools.editor_entity_utils import EditorEntity
from editor_python_test_tools.utils import Report, Tracer, TestHelper as helper
from editor_python_test_tools.utils import Report, Tracer, TestHelper
from Atom.atom_utils.atom_constants import AtomComponentProperties
from Atom.atom_utils.screenshot_utils import ScreenshotHelper
MATERIAL_COMPONENT_NAME = "Material"
MESH_COMPONENT_NAME = "Mesh"
SCREENSHOT_NAME = "AtomBasicLevelSetup"
SCREEN_WIDTH = 1280
SCREEN_HEIGHT = 720
@@ -98,24 +136,24 @@ def AtomGPU_BasicLevelSetup_SetsUpLevel():
def initial_viewport_setup(screen_width, screen_height):
general.set_viewport_size(screen_width, screen_height)
general.update_viewport()
result = isclose(
a=general.get_viewport_size().x, b=SCREEN_WIDTH, rel_tol=0.1) and isclose(
a=general.get_viewport_size().y, b=SCREEN_HEIGHT, rel_tol=0.1)
return result
TestHelper.wait_for_condition(
function=lambda: isclose(a=general.get_viewport_size().x, b=SCREEN_WIDTH, rel_tol=0.1)
and isclose(a=general.get_viewport_size().y, b=SCREEN_HEIGHT, rel_tol=0.1),
timeout_in_seconds=4.0
)
with Tracer() as error_tracer:
# Test setup begins.
# Setup: Wait for Editor idle loop before executing Python hydra scripts then open "Base" level.
helper.init_idle()
helper.open_level("", "Base")
TestHelper.init_idle()
TestHelper.open_level("", "Base")
# Test steps begin.
# 1. Close error windows and display helpers then update the viewport size.
helper.close_error_windows()
helper.close_display_helpers()
TestHelper.close_error_windows()
TestHelper.close_display_helpers()
initial_viewport_setup(SCREEN_WIDTH, SCREEN_HEIGHT)
general.update_viewport()
Report.critical_result(Tests.viewport_set, initial_viewport_setup(SCREEN_WIDTH, SCREEN_HEIGHT))
# 2. Create Default Level Entity.
default_level_entity_name = "Default Level"
@@ -123,168 +161,167 @@ def AtomGPU_BasicLevelSetup_SetsUpLevel():
math.Vector3(0.0, 0.0, 0.0), default_level_entity_name)
# 3. Create Grid Entity as a child entity of the Default Level Entity.
grid_name = "Grid"
grid_entity = EditorEntity.create_editor_entity(grid_name, default_level_entity.id)
grid_entity = EditorEntity.create_editor_entity(AtomComponentProperties.grid(), default_level_entity.id)
# 4. Add Grid component to Grid Entity and set Secondary Grid Spacing.
grid_component = grid_entity.add_component(grid_name)
secondary_grid_spacing_property = "Controller|Configuration|Secondary Grid Spacing"
grid_component = grid_entity.add_component(AtomComponentProperties.grid())
secondary_grid_spacing_value = 1.0
grid_component.set_component_property_value(secondary_grid_spacing_property, secondary_grid_spacing_value)
grid_component.set_component_property_value(
AtomComponentProperties.grid('Secondary Grid Spacing'), secondary_grid_spacing_value)
secondary_grid_spacing_set = grid_component.get_component_property_value(
secondary_grid_spacing_property) == secondary_grid_spacing_value
AtomComponentProperties.grid('Secondary Grid Spacing')) == secondary_grid_spacing_value
Report.result(Tests.secondary_grid_spacing, secondary_grid_spacing_set)
# 5. Create Global Skylight (IBL) Entity as a child entity of the Default Level Entity.
global_skylight_name = "Global Skylight (IBL)"
global_skylight_entity = EditorEntity.create_editor_entity(global_skylight_name, default_level_entity.id)
global_skylight_entity = EditorEntity.create_editor_entity(
AtomComponentProperties.global_skylight(), default_level_entity.id)
# 6. Add HDRi Skybox component to the Global Skylight (IBL) Entity.
hdri_skybox_name = "HDRi Skybox"
hdri_skybox_component = global_skylight_entity.add_component(hdri_skybox_name)
Report.result(Tests.hdri_skybox_component_added, global_skylight_entity.has_component(hdri_skybox_name))
hdri_skybox_component = global_skylight_entity.add_component(AtomComponentProperties.hdri_skybox())
Report.result(Tests.hdri_skybox_component_added, global_skylight_entity.has_component(
AtomComponentProperties.hdri_skybox()))
# 7. Add Global Skylight (IBL) component to the Global Skylight (IBL) Entity.
global_skylight_component = global_skylight_entity.add_component(global_skylight_name)
Report.result(Tests.global_skylight_component_added, global_skylight_entity.has_component(global_skylight_name))
global_skylight_component = global_skylight_entity.add_component(AtomComponentProperties.global_skylight())
Report.result(Tests.global_skylight_component_added, global_skylight_entity.has_component(
AtomComponentProperties.global_skylight()))
# 8. Set the Cubemap Texture property of the HDRi Skybox component.
global_skylight_image_asset_path = os.path.join(
"LightingPresets", "greenwich_park_02_4k_iblskyboxcm_iblspecular.exr.streamingimage")
global_skylight_image_asset = asset.AssetCatalogRequestBus(
bus.Broadcast, "GetAssetIdByPath", global_skylight_image_asset_path, math.Uuid(), False)
hdri_skybox_cubemap_texture_property = "Controller|Configuration|Cubemap Texture"
global_skylight_image_asset_path = os.path.join("LightingPresets", "default_iblskyboxcm.exr.streamingimage")
global_skylight_image_asset = Asset.find_asset_by_path(global_skylight_image_asset_path, False)
hdri_skybox_component.set_component_property_value(
hdri_skybox_cubemap_texture_property, global_skylight_image_asset)
AtomComponentProperties.hdri_skybox('Cubemap Texture'), global_skylight_image_asset.id)
Report.result(
Tests.hdri_skybox_cubemap_texture_set,
hdri_skybox_component.get_component_property_value(
hdri_skybox_cubemap_texture_property) == global_skylight_image_asset)
AtomComponentProperties.hdri_skybox('Cubemap Texture')) == global_skylight_image_asset.id)
# 9. Set the Diffuse Image property of the Global Skylight (IBL) component.
# Re-use the same image that was used in the previous test step.
global_skylight_diffuse_image_property = "Controller|Configuration|Diffuse Image"
global_skylight_diffuse_image_asset_path = os.path.join(
"LightingPresets", "default_iblskyboxcm_ibldiffuse.exr.streamingimage")
global_skylight_diffuse_image_asset = Asset.find_asset_by_path(global_skylight_diffuse_image_asset_path, False)
global_skylight_component.set_component_property_value(
global_skylight_diffuse_image_property, global_skylight_image_asset)
AtomComponentProperties.global_skylight('Diffuse Image'), global_skylight_diffuse_image_asset.id)
Report.result(
Tests.global_skylight_diffuse_image_set,
global_skylight_component.get_component_property_value(
global_skylight_diffuse_image_property) == global_skylight_image_asset)
AtomComponentProperties.global_skylight('Diffuse Image')) == global_skylight_diffuse_image_asset.id)
# 10. Set the Specular Image property of the Global Skylight (IBL) component.
# Re-use the same image that was used in the previous test step.
global_skylight_specular_image_property = "Controller|Configuration|Specular Image"
global_skylight_specular_image_asset_path = os.path.join(
"LightingPresets", "default_iblskyboxcm_iblspecular.exr.streamingimage")
global_skylight_specular_image_asset = Asset.find_asset_by_path(
global_skylight_specular_image_asset_path, False)
global_skylight_component.set_component_property_value(
global_skylight_specular_image_property, global_skylight_image_asset)
AtomComponentProperties.global_skylight('Specular Image'), global_skylight_specular_image_asset.id)
global_skylight_specular_image_set = global_skylight_component.get_component_property_value(
global_skylight_specular_image_property)
AtomComponentProperties.global_skylight('Specular Image'))
Report.result(
Tests.global_skylight_specular_image_set, global_skylight_specular_image_set == global_skylight_image_asset)
Tests.global_skylight_specular_image_set,
global_skylight_specular_image_set == global_skylight_specular_image_asset.id)
# 11. Create a Ground Plane Entity with a Material component that is a child entity of the Default Level Entity.
ground_plane_name = "Ground Plane"
ground_plane_entity = EditorEntity.create_editor_entity(ground_plane_name, default_level_entity.id)
ground_plane_material_component = ground_plane_entity.add_component(MATERIAL_COMPONENT_NAME)
ground_plane_material_component = ground_plane_entity.add_component(AtomComponentProperties.material())
Report.result(
Tests.ground_plane_material_component_added, ground_plane_entity.has_component(MATERIAL_COMPONENT_NAME))
Tests.ground_plane_material_component_added,
ground_plane_entity.has_component(AtomComponentProperties.material()))
# 12. Set the Material Asset property of the Material component for the Ground Plane Entity.
ground_plane_entity.set_local_uniform_scale(32.0)
ground_plane_material_asset_path = os.path.join("Materials", "Presets", "PBR", "metal_chrome.azmaterial")
ground_plane_material_asset = asset.AssetCatalogRequestBus(
bus.Broadcast, "GetAssetIdByPath", ground_plane_material_asset_path, math.Uuid(), False)
ground_plane_material_asset_property = "Default Material|Material Asset"
ground_plane_material_asset = Asset.find_asset_by_path(ground_plane_material_asset_path, False)
ground_plane_material_component.set_component_property_value(
ground_plane_material_asset_property, ground_plane_material_asset)
AtomComponentProperties.material('Material Asset'), ground_plane_material_asset.id)
Report.result(
Tests.ground_plane_material_asset_set,
ground_plane_material_component.get_component_property_value(
ground_plane_material_asset_property) == ground_plane_material_asset)
AtomComponentProperties.material('Material Asset')) == ground_plane_material_asset.id)
# 13. Add the Mesh component to the Ground Plane Entity and set the Mesh component Mesh Asset property.
ground_plane_mesh_component = ground_plane_entity.add_component(MESH_COMPONENT_NAME)
Report.result(Tests.mesh_component_added, ground_plane_entity.has_component(MESH_COMPONENT_NAME))
ground_plane_mesh_asset_path = os.path.join("Objects", "plane.azmodel")
ground_plane_mesh_asset = asset.AssetCatalogRequestBus(
bus.Broadcast, "GetAssetIdByPath", ground_plane_mesh_asset_path, math.Uuid(), False)
ground_plane_mesh_asset_property = "Controller|Configuration|Mesh Asset"
ground_plane_mesh_component = ground_plane_entity.add_component(AtomComponentProperties.mesh())
Report.result(Tests.mesh_component_added, ground_plane_entity.has_component(AtomComponentProperties.mesh()))
ground_plane_mesh_asset_path = os.path.join("TestData", "Objects", "plane.azmodel")
ground_plane_mesh_asset = Asset.find_asset_by_path(ground_plane_mesh_asset_path, False)
ground_plane_mesh_component.set_component_property_value(
ground_plane_mesh_asset_property, ground_plane_mesh_asset)
AtomComponentProperties.mesh('Mesh Asset'), ground_plane_mesh_asset.id)
Report.result(
Tests.ground_plane_mesh_asset_set,
ground_plane_mesh_component.get_component_property_value(
ground_plane_mesh_asset_property) == ground_plane_mesh_asset)
AtomComponentProperties.mesh('Mesh Asset')) == ground_plane_mesh_asset.id)
# 14. Create a Directional Light Entity as a child entity of the Default Level Entity.
directional_light_name = "Directional Light"
directional_light_entity = EditorEntity.create_editor_entity_at(
math.Vector3(0.0, 0.0, 10.0), directional_light_name, default_level_entity.id)
math.Vector3(0.0, 0.0, 10.0), AtomComponentProperties.directional_light(), default_level_entity.id)
# 15. Add Directional Light component to Directional Light Entity and set entity rotation.
directional_light_entity.add_component(directional_light_name)
directional_light_entity.add_component(AtomComponentProperties.directional_light())
directional_light_entity_rotation = math.Vector3(DEGREE_RADIAN_FACTOR * -90.0, 0.0, 0.0)
directional_light_entity.set_local_rotation(directional_light_entity_rotation)
Report.result(
Tests.directional_light_component_added, directional_light_entity.has_component(directional_light_name))
Tests.directional_light_component_added, directional_light_entity.has_component(
AtomComponentProperties.directional_light()))
# 16. Create a Sphere Entity as a child entity of the Default Level Entity then add a Material component.
sphere_entity = EditorEntity.create_editor_entity_at(
math.Vector3(0.0, 0.0, 1.0), "Sphere", default_level_entity.id)
sphere_material_component = sphere_entity.add_component(MATERIAL_COMPONENT_NAME)
Report.result(Tests.sphere_material_component_added, sphere_entity.has_component(MATERIAL_COMPONENT_NAME))
sphere_material_component = sphere_entity.add_component(AtomComponentProperties.material())
Report.result(Tests.sphere_material_component_added, sphere_entity.has_component(
AtomComponentProperties.material()))
# 17. Set the Material Asset property of the Material component for the Sphere Entity.
sphere_material_asset_path = os.path.join("Materials", "Presets", "PBR", "metal_brass_polished.azmaterial")
sphere_material_asset = asset.AssetCatalogRequestBus(
bus.Broadcast, "GetAssetIdByPath", sphere_material_asset_path, math.Uuid(), False)
sphere_material_asset_property = "Default Material|Material Asset"
sphere_material_component.set_component_property_value(sphere_material_asset_property, sphere_material_asset)
sphere_material_asset = Asset.find_asset_by_path(sphere_material_asset_path, False)
sphere_material_component.set_component_property_value(
AtomComponentProperties.material('Material Asset'), sphere_material_asset.id)
Report.result(Tests.sphere_material_set, sphere_material_component.get_component_property_value(
sphere_material_asset_property) == sphere_material_asset)
AtomComponentProperties.material('Material Asset')) == sphere_material_asset.id)
# 18. Add Mesh component to Sphere Entity and set the Mesh Asset property for the Mesh component.
sphere_mesh_component = sphere_entity.add_component(MESH_COMPONENT_NAME)
sphere_mesh_component = sphere_entity.add_component(AtomComponentProperties.mesh())
sphere_mesh_asset_path = os.path.join("Models", "sphere.azmodel")
sphere_mesh_asset = asset.AssetCatalogRequestBus(
bus.Broadcast, "GetAssetIdByPath", sphere_mesh_asset_path, math.Uuid(), False)
sphere_mesh_asset_property = "Controller|Configuration|Mesh Asset"
sphere_mesh_component.set_component_property_value(sphere_mesh_asset_property, sphere_mesh_asset)
sphere_mesh_asset = Asset.find_asset_by_path(sphere_mesh_asset_path, False)
sphere_mesh_component.set_component_property_value(
AtomComponentProperties.mesh('Mesh Asset'), sphere_mesh_asset.id)
Report.result(Tests.sphere_mesh_asset_set, sphere_mesh_component.get_component_property_value(
sphere_mesh_asset_property) == sphere_mesh_asset)
AtomComponentProperties.mesh('Mesh Asset')) == sphere_mesh_asset.id)
# 19. Create a Camera Entity as a child entity of the Default Level Entity then add a Camera component.
camera_name = "Camera"
camera_entity = EditorEntity.create_editor_entity_at(
math.Vector3(5.5, -12.0, 9.0), camera_name, default_level_entity.id)
camera_component = camera_entity.add_component(camera_name)
Report.result(Tests.camera_component_added, camera_entity.has_component(camera_name))
math.Vector3(5.5, -12.0, 9.0), AtomComponentProperties.camera(), default_level_entity.id)
camera_component = camera_entity.add_component(AtomComponentProperties.camera())
Report.result(Tests.camera_component_added, camera_entity.has_component(AtomComponentProperties.camera()))
# 20. Set the Camera Entity rotation value and set the Camera component Field of View value.
camera_entity_rotation = math.Vector3(
DEGREE_RADIAN_FACTOR * -27.0, DEGREE_RADIAN_FACTOR * -12.0, DEGREE_RADIAN_FACTOR * 25.0)
camera_entity.set_local_rotation(camera_entity_rotation)
camera_fov_property = "Controller|Configuration|Field of view"
camera_fov_value = 60.0
camera_component.set_component_property_value(camera_fov_property, camera_fov_value)
camera_component.set_component_property_value(AtomComponentProperties.camera('Field of view'), camera_fov_value)
azlmbr.camera.EditorCameraViewRequestBus(azlmbr.bus.Event, "ToggleCameraAsActiveView", camera_entity.id)
Report.result(Tests.camera_fov_set, camera_component.get_component_property_value(
camera_fov_property) == camera_fov_value)
AtomComponentProperties.camera('Field of view')) == camera_fov_value)
# 21. Enter game mode.
helper.enter_game_mode(Tests.enter_game_mode)
helper.wait_for_condition(function=lambda: general.is_in_game_mode(), timeout_in_seconds=4.0)
TestHelper.enter_game_mode(Tests.enter_game_mode)
TestHelper.wait_for_condition(function=lambda: general.is_in_game_mode(), timeout_in_seconds=4.0)
# 22. Take screenshot.
ScreenshotHelper(general.idle_wait_frames).capture_screenshot_blocking(f"{SCREENSHOT_NAME}.ppm")
# 23. Exit game mode.
helper.exit_game_mode(Tests.exit_game_mode)
helper.wait_for_condition(function=lambda: not general.is_in_game_mode(), timeout_in_seconds=4.0)
TestHelper.exit_game_mode(Tests.exit_game_mode)
TestHelper.wait_for_condition(function=lambda: not general.is_in_game_mode(), timeout_in_seconds=4.0)
# 24. Look for errors.
helper.wait_for_condition(lambda: error_tracer.has_errors or error_tracer.has_asserts, 1.0)
Report.result(Tests.no_assert_occurred, not error_tracer.has_asserts)
Report.result(Tests.no_error_occurred, not error_tracer.has_errors)
TestHelper.wait_for_condition(lambda: error_tracer.has_errors or error_tracer.has_asserts, 1.0)
for error_info in error_tracer.errors:
Report.info(f"Error: {error_info.filename} {error_info.function} | {error_info.message}")
for assert_info in error_tracer.asserts:
Report.info(f"Assert: {assert_info.filename} {assert_info.function} | {assert_info.message}")
if __name__ == "__main__":
@@ -106,8 +106,7 @@ def run():
components=["HDRi Skybox", "Global Skylight (IBL)"],
parent_id=default_level.id
)
global_skylight_image_asset_path = os.path.join(
"LightingPresets", "greenwich_park_02_4k_iblskyboxcm_iblspecular.exr.streamingimage")
global_skylight_image_asset_path = os.path.join("LightingPresets", "default_iblskyboxcm.exr.streamingimage")
global_skylight_image_asset = asset.AssetCatalogRequestBus(
bus.Broadcast, "GetAssetIdByPath", global_skylight_image_asset_path, math.Uuid(), False)
global_skylight.get_set_test(0, "Controller|Configuration|Cubemap Texture", global_skylight_image_asset)
@@ -56,6 +56,9 @@ add_subdirectory(streaming)
## Smoke ##
add_subdirectory(smoke)
## Terrain ##
add_subdirectory(Terrain)
## AWS ##
add_subdirectory(AWS)
@@ -50,6 +50,7 @@ def NvCloth_AddClothSimulationToActor():
# Constants
FRAMES_IN_GAME_MODE = 200
CLOTH_GEM_ERROR_WARNING_LIST = ["Cloth", "NvCloth", "ClothComponentMesh", "ActorClothSkinning", "ActorClothSkinning", "TangentSpaceHelper", "MeshAssetHelper", "ActorAssetHelper", "ClothDebugDisplay"]
helper.init_idle()
# 1) Load the level
@@ -64,14 +65,16 @@ def NvCloth_AddClothSimulationToActor():
general.idle_wait_frames(FRAMES_IN_GAME_MODE)
# 5) Verify there are no errors and warnings in the logs
success_condition = not (section_tracer.has_errors or section_tracer.has_warnings)
Report.result(Tests.no_errors_and_warnings_found, success_condition)
if not success_condition:
if section_tracer.has_warnings:
Report.info(f"Warnings found: {section_tracer.warnings}")
if section_tracer.has_errors:
Report.info(f"Errors found: {section_tracer.errors}")
Report.failure(Tests.no_errors_and_warnings_found)
has_errors_or_warnings = False
for error_msg in section_tracer.errors:
if error_msg.window in CLOTH_GEM_ERROR_WARNING_LIST:
has_errors_or_warnings = True
Report.info(f"Cloth error found: {error_msg}")
for warning_msg in section_tracer.warnings:
if warning_msg.window in CLOTH_GEM_ERROR_WARNING_LIST:
has_errors_or_warnings = True
Report.info(f"Cloth warning found: {warning_msg}")
Report.result(Tests.no_errors_and_warnings_found, not has_errors_or_warnings)
# 6) Exit game mode
helper.exit_game_mode(Tests.exit_game_mode)
@@ -50,6 +50,7 @@ def NvCloth_AddClothSimulationToMesh():
# Constants
FRAMES_IN_GAME_MODE = 200
CLOTH_GEM_ERROR_WARNING_LIST = ["Cloth", "NvCloth", "ClothComponentMesh", "ActorClothSkinning", "ActorClothSkinning", "TangentSpaceHelper", "MeshAssetHelper", "ActorAssetHelper", "ClothDebugDisplay"]
helper.init_idle()
# 1) Load the level
@@ -64,14 +65,16 @@ def NvCloth_AddClothSimulationToMesh():
general.idle_wait_frames(FRAMES_IN_GAME_MODE)
# 5) Verify there are no errors and warnings in the logs
success_condition = not (section_tracer.has_errors or section_tracer.has_warnings)
Report.result(Tests.no_errors_and_warnings_found, success_condition)
if not success_condition:
if section_tracer.has_warnings:
Report.info(f"Warnings found: {section_tracer.warnings}")
if section_tracer.has_errors:
Report.info(f"Errors found: {section_tracer.errors}")
Report.failure(Tests.no_errors_and_warnings_found)
has_errors_or_warnings = False
for error_msg in section_tracer.errors:
if error_msg.window in CLOTH_GEM_ERROR_WARNING_LIST:
has_errors_or_warnings = True
Report.info(f"Cloth error found: {error_msg}")
for warning_msg in section_tracer.warnings:
if warning_msg.window in CLOTH_GEM_ERROR_WARNING_LIST:
has_errors_or_warnings = True
Report.info(f"Cloth warning found: {warning_msg}")
Report.result(Tests.no_errors_and_warnings_found, not has_errors_or_warnings)
# 6) Exit game mode
helper.exit_game_mode(Tests.exit_game_mode)
@@ -91,4 +91,16 @@ class TestAutomation(TestAutomationBase):
@revert_physics_config
def test_C15425929_Undo_Redo(self, request, workspace, editor, launcher_platform):
from .tests import Physics_UndoRedoWorksOnEntityWithPhysComponents as test_module
self._run_test(request, workspace, editor, test_module)
self._run_test(request, workspace, editor, test_module)
@pytest.mark.GROUP_tick
@pytest.mark.xfail(reason="Test still under development.")
def test_Tick_InterpolatedRigidBodyMotionIsSmooth(self, request, workspace, editor, launcher_platform):
from .tests.tick import Tick_InterpolatedRigidBodyMotionIsSmooth as test_module
self._run_test(request, workspace, editor, test_module)
@pytest.mark.GROUP_tick
@pytest.mark.xfail(reason="Test still under development.")
def test_Tick_CharacterGameplayComponentMotionIsSmooth(self, request, workspace, editor, launcher_platform):
from .tests.tick import Tick_CharacterGameplayComponentMotionIsSmooth as test_module
self._run_test(request, workspace, editor, test_module)
@@ -0,0 +1,99 @@
"""
Copyright (c) Contributors to the Open 3D Engine Project.
For complete copyright and license terms please see the LICENSE at the root of this distribution.
SPDX-License-Identifier: Apache-2.0 OR MIT
Test Case Title : Verify that an entity with a character gameplay component moves smoothly.
"""
# fmt: off
class Tests():
create_entity = ("Created test entity", "Failed to create test entity")
character_controller_added = ("Added PhysX Character Controller component", "Failed to add PhysX Character Controller component")
character_gameplay_added = ("Added PhysX Character Gameplay component", "Failed to add PhysX Character Gameplay component")
enter_game_mode = ("Entered game mode", "Failed to enter game mode")
exit_game_mode = ("Exited game mode", "Failed to exit game mode")
character_motion_smooth = ("Character motion passed smoothness threshold", "Failed to meet smoothness threshold for character motion")
# fmt: on
def Tick_CharacterGameplayComponentMotionIsSmooth():
"""
Summary:
Create entity with PhysX Character Controller and PhysX Character Gameplay components.
Verify that the motion of the character controller under gravity is smooth.
Expected Behavior:
1) The motion of the character controller under gravity is a smooth curve, rather than an erratic/jittery movement.
Test Steps:
1) Load the empty level
2) Create an entity
3) Add a PhysX Character Controller Component and PhysX Character Gameplay component
4) Enter game mode and collect data for the character controller's z co-ordinate and the time values for a series of frames
5) Check if the motion of the character controller was sufficiently smooth
:return: None
"""
# imports
import os
import azlmbr.legacy.general as general
import azlmbr.math as math
from editor_python_test_tools.editor_entity_utils import EditorEntity as Entity
from editor_python_test_tools.utils import Report
from editor_python_test_tools.utils import TestHelper as helper
from editor_python_test_tools.asset_utils import Asset
import numpy as np
# constants
COEFFICIENT_OF_DETERMINATION_THRESHOLD = 1 - 1e-4 # curves with values below this are not considered sufficiently smooth
helper.init_idle()
# 1) Load the empty level
helper.open_level("", "Base")
# 2) Create an entity
test_entity = Entity.create_editor_entity("test_entity")
Report.result(Tests.create_entity, test_entity.id.IsValid())
azlmbr.components.TransformBus(
azlmbr.bus.Event, "SetWorldTranslation", test_entity.id, math.Vector3(0.0, 0.0, 0.0))
# 3) Add character controller and character gameplay components
character_controller_component = test_entity.add_component("PhysX Character Controller")
Report.result(Tests.character_controller_added, test_entity.has_component("PhysX Character Controller"))
character_gameplay_component = test_entity.add_component("PhysX Character Gameplay")
Report.result(Tests.character_gameplay_added, test_entity.has_component("PhysX Character Gameplay"))
# 4) Enter game mode and collect data for the rigid body's z co-ordinate and the time values for a series of frames
t = []
z = []
helper.enter_game_mode(Tests.enter_game_mode)
general.idle_wait_frames(1)
game_entity_id = general.find_game_entity("test_entity")
for frame in range(100):
t.append(azlmbr.components.TickRequestBus(azlmbr.bus.Broadcast, "GetTimeAtCurrentTick").GetSeconds())
z.append(azlmbr.components.TransformBus(azlmbr.bus.Event, "GetWorldZ", game_entity_id))
general.idle_wait_frames(1)
helper.exit_game_mode(Tests.exit_game_mode)
# 5) Test that the z vs t curve is sufficiently smooth (if the interpolation is not working well, the curve will be less smooth)
# normalize the t and z data
t = np.array(t) - np.mean(t)
z = np.array(z) - np.mean(z)
# fit a polynomial to the z vs t curve
fit = np.poly1d(np.polyfit(t, z, 4))
residual = fit(t) - z
# calculate the coefficient of determination (a measure of how closely the polynomial curve fits the data)
# if the coefficient is very close to 1, then the curve fits the data very well, suggesting that the rigid body motion is smooth
# if the coefficient is significantly less than 1, then the z values vary more erratically relative to the smooth curve,
# indicating that the motion of the rigid body is not smooth
coefficient_of_determination = (1 - np.sum(residual * residual) / np.sum(z * z))
Report.result(Tests.character_motion_smooth, bool(coefficient_of_determination > COEFFICIENT_OF_DETERMINATION_THRESHOLD))
if __name__ == "__main__":
from editor_python_test_tools.utils import Report
Report.start_test(Tick_CharacterGameplayComponentMotionIsSmooth)
@@ -0,0 +1,98 @@
"""
Copyright (c) Contributors to the Open 3D Engine Project.
For complete copyright and license terms please see the LICENSE at the root of this distribution.
SPDX-License-Identifier: Apache-2.0 OR MIT
Test Case Title : Verify that a rigid body with "Interpolate motion" option selected moves smoothly.
"""
# fmt: off
class Tests():
create_entity = ("Created test entity", "Failed to create test entity")
rigid_body_added = ("Added PhysX Rigid Body component", "Failed to add PhysX Rigid Body component")
enter_game_mode = ("Entered game mode", "Failed to enter game mode")
exit_game_mode = ("Exited game mode", "Failed to exit game mode")
rigid_body_smooth = ("Rigid body motion passed smoothness threshold", "Failed to meet smoothness threshold for rigid body motion")
# fmt: on
def Tick_InterpolatedRigidBodyMotionIsSmooth():
"""
Summary:
Create entity with PhysX Rigid Body component and turn on the Interpolate motion setting.
Verify that the position of the rigid body varies smoothly with time.
Expected Behavior:
1) The motion of the rigid body under gravity is a smooth curve, rather than an erratic/jittery movement.
Test Steps:
1) Load the empty level
2) Create an entity
3) Add rigid body component
4) Enter game mode and collect data for the rigid body's z co-ordinate and the time values for a series of frames
5) Check if the motion of the rigid body was sufficiently smooth
:return: None
"""
# imports
import os
import azlmbr.legacy.general as general
import azlmbr.math as math
from editor_python_test_tools.editor_entity_utils import EditorEntity as Entity
from editor_python_test_tools.utils import Report
from editor_python_test_tools.utils import TestHelper as helper
from editor_python_test_tools.asset_utils import Asset
import numpy as np
# constants
COEFFICIENT_OF_DETERMINATION_THRESHOLD = 1 - 1e-4 # curves with values below this are not considered sufficiently smooth
helper.init_idle()
# 1) Load the empty level
helper.open_level("", "Base")
# 2) Create an entity
test_entity = Entity.create_editor_entity("test_entity")
Report.result(Tests.create_entity, test_entity.id.IsValid())
azlmbr.components.TransformBus(
azlmbr.bus.Event, "SetWorldTranslation", test_entity.id, math.Vector3(0.0, 0.0, 0.0))
# 3) Add rigid body component
rigid_body_component = test_entity.add_component("PhysX Rigid Body")
rigid_body_component.set_component_property_value("Configuration|Interpolate motion", True)
azlmbr.physics.RigidBodyRequestBus(azlmbr.bus.Event, "SetLinearDamping", test_entity.id, 0.0)
Report.result(Tests.rigid_body_added, test_entity.has_component("PhysX Rigid Body"))
# 4) Enter game mode and collect data for the rigid body's z co-ordinate and the time values for a series of frames
t = []
z = []
helper.enter_game_mode(Tests.enter_game_mode)
general.idle_wait_frames(1)
game_entity_id = general.find_game_entity("test_entity")
for frame in range(100):
t.append(azlmbr.components.TickRequestBus(azlmbr.bus.Broadcast, "GetTimeAtCurrentTick").GetSeconds())
z.append(azlmbr.components.TransformBus(azlmbr.bus.Event, "GetWorldZ", game_entity_id))
general.idle_wait_frames(1)
helper.exit_game_mode(Tests.exit_game_mode)
# 5) Test that the z vs t curve is sufficiently smooth (if the interpolation is not working well, the curve will be less smooth)
# normalize the t and z data
t = np.array(t) - np.mean(t)
z = np.array(z) - np.mean(z)
# fit a polynomial to the z vs t curve
fit = np.poly1d(np.polyfit(t, z, 4))
residual = fit(t) - z
# calculate the coefficient of determination (a measure of how closely the polynomial curve fits the data)
# if the coefficient is very close to 1, then the curve fits the data very well, suggesting that the rigid body motion is smooth
# if the coefficient is significantly less than 1, then the z values vary more erratically relative to the smooth curve,
# indicating that the motion of the rigid body is not smooth
coefficient_of_determination = (1 - np.sum(residual * residual) / np.sum(z * z))
Report.result(Tests.rigid_body_smooth, bool(coefficient_of_determination > COEFFICIENT_OF_DETERMINATION_THRESHOLD))
if __name__ == "__main__":
from editor_python_test_tools.utils import Report
Report.start_test(Tick_InterpolatedRigidBodyMotionIsSmooth)
@@ -218,6 +218,7 @@ class FileManagement:
src_file_path = os.path.join(src_path, src_file)
if os.path.exists(target_file_path):
fs.unlock_file(target_file_path)
os.makedirs(target_path, exist_ok=True)
shutil.copyfile(src_file_path, target_file_path)
@staticmethod
@@ -0,0 +1,24 @@
#
# Copyright (c) Contributors to the Open 3D Engine Project.
# For complete copyright and license terms please see the LICENSE at the root of this distribution.
#
# SPDX-License-Identifier: Apache-2.0 OR MIT
#
#
if(PAL_TRAIT_BUILD_TESTS_SUPPORTED AND PAL_TRAIT_BUILD_HOST_TOOLS)
ly_add_pytest(
NAME AutomatedTesting::TerrainTests_Main
TEST_SUITE main
TEST_SERIAL
PATH ${CMAKE_CURRENT_LIST_DIR}/TestSuite_Main.py
RUNTIME_DEPENDENCIES
Legacy::Editor
AZ::AssetProcessor
AutomatedTesting.Assets
COMPONENT
Terrain
)
endif()
@@ -0,0 +1,90 @@
"""
Copyright (c) Contributors to the Open 3D Engine Project.
For complete copyright and license terms please see the LICENSE at the root of this distribution.
SPDX-License-Identifier: Apache-2.0 OR MIT
"""
#fmt: off
class Tests():
create_test_entity = ("Entity created successfully", "Failed to create Entity")
add_axis_aligned_box_shape = ("Axis Aligned Box Shape component added", "Failed to add Axis Aligned Box Shape component")
add_terrain_collider = ("Terrain Physics Heightfield Collider component added", "Failed to add a Terrain Physics Heightfield Collider component")
box_dimensions_changed = ("Aabb dimensions changed successfully", "Failed change Aabb dimensions")
configuration_changed = ("Terrain size changed successfully", "Failed terrain size change")
no_errors_and_warnings_found = ("No errors and warnings found", "Found errors and warnings")
#fmt: on
def TerrainPhysicsCollider_ChangesSizeWithAxisAlignedBoxShapeChanges():
"""
Summary:
Test aspects of the TerrainHeightGradientList through the BehaviorContext and the Property Tree.
Test Steps:
Expected Behavior:
The Editor is stable there are no warnings or errors.
Test Steps:
1) Load the base level
2) Create test entity
3) Start the Tracer to catch any errors and warnings
4) Add the Axis Aligned Box Shape and Terrain Physics Heightfield Collider components
5) Change the Axis Aligned Box Shape dimensions
6) Check the Heightfield provider is returning the correct size
7) Verify there are no errors and warnings in the logs
:return: None
"""
from editor_python_test_tools.editor_entity_utils import EditorEntity
from editor_python_test_tools.utils import TestHelper as helper
from editor_python_test_tools.utils import Report, Tracer
import azlmbr.legacy.general as general
import azlmbr.physics as physics
import azlmbr.math as azmath
import azlmbr.bus as bus
import sys
import math
SET_BOX_X_SIZE = 5.0
SET_BOX_Y_SIZE = 6.0
EXPECTED_COLUMN_SIZE = SET_BOX_X_SIZE + 1
EXPECTED_ROW_SIZE = SET_BOX_Y_SIZE + 1
helper.init_idle()
# 1) Load the level
helper.open_level("", "Base")
# 2) Create test entity
test_entity = EditorEntity.create_editor_entity("TestEntity")
Report.result(Tests.create_test_entity, test_entity.id.IsValid())
# 3) Start the Tracer to catch any errors and warnings
with Tracer() as section_tracer:
# 4) Add the Axis Aligned Box Shape and Terrain Physics Heightfield Collider components
aaBoxShape_component = test_entity.add_component("Axis Aligned Box Shape")
Report.result(Tests.add_axis_aligned_box_shape, test_entity.has_component("Axis Aligned Box Shape"))
terrainPhysics_component = test_entity.add_component("Terrain Physics Heightfield Collider")
Report.result(Tests.add_terrain_collider, test_entity.has_component("Terrain Physics Heightfield Collider"))
# 5) Change the Axis Aligned Box Shape dimensions
aaBoxShape_component.set_component_property_value("Axis Aligned Box Shape|Box Configuration|Dimensions", azmath.Vector3(SET_BOX_X_SIZE, SET_BOX_Y_SIZE, 1.0))
add_check = aaBoxShape_component.get_component_property_value("Axis Aligned Box Shape|Box Configuration|Dimensions") == azmath.Vector3(SET_BOX_X_SIZE, SET_BOX_Y_SIZE, 1.0)
Report.result(Tests.box_dimensions_changed, add_check)
# 6) Check the Heightfield provider is returning the correct size
columns = physics.HeightfieldProviderRequestsBus(bus.Broadcast, "GetHeightfieldGridColumns")
rows = physics.HeightfieldProviderRequestsBus(bus.Broadcast, "GetHeightfieldGridRows")
Report.result(Tests.configuration_changed, math.isclose(columns, EXPECTED_COLUMN_SIZE) and math.isclose(rows, EXPECTED_ROW_SIZE))
helper.wait_for_condition(lambda: section_tracer.has_errors or section_tracer.has_asserts, 1.0)
for error_info in section_tracer.errors:
Report.info(f"Error: {error_info.filename} {error_info.function} | {error_info.message}")
for assert_info in section_tracer.asserts:
Report.info(f"Assert: {assert_info.filename} {assert_info.function} | {assert_info.message}")
if __name__ == "__main__":
from editor_python_test_tools.utils import Report
Report.start_test(TerrainPhysicsCollider_ChangesSizeWithAxisAlignedBoxShapeChanges)
@@ -0,0 +1,25 @@
"""
Copyright (c) Contributors to the Open 3D Engine Project.
For complete copyright and license terms please see the LICENSE at the root of this distribution.
SPDX-License-Identifier: Apache-2.0 OR MIT
"""
# This suite consists of all test cases that are passing and have been verified.
import pytest
import os
import sys
from ly_test_tools import LAUNCHERS
from ly_test_tools.o3de.editor_test import EditorTestSuite, EditorSingleTest
@pytest.mark.SUITE_main
@pytest.mark.parametrize("launcher_platform", ['windows_editor'])
@pytest.mark.parametrize("project", ["AutomatedTesting"])
class TestAutomation(EditorTestSuite):
#global_extra_cmdline_args=["--regset=/Amazon/Preferences/EnablePrefabSystem=true"]
class test_AxisAlignedBoxShape_ConfigurationWorks(EditorSingleTest):
from .EditorScripts import TerrainPhysicsCollider_ChangesSizeWithAxisAlignedBoxShapeChanges as test_module
@@ -0,0 +1,6 @@
"""
Copyright (c) Contributors to the Open 3D Engine Project.
For complete copyright and license terms please see the LICENSE at the root of this distribution.
SPDX-License-Identifier: Apache-2.0 OR MIT
"""
@@ -158,7 +158,7 @@ def bundler_batch_setup_fixture(request, workspace, asset_processor, timeout) ->
else:
cmd.append(f"--{key}")
if append_defaults:
cmd.append(f"--project-path={workspace.project}")
cmd.append(f"--project-path={os.path.join(workspace.paths.engine_root(), workspace.project)}")
return cmd
# ******
@@ -165,7 +165,7 @@ class TestAutomationBase:
for line in f.readlines():
error_str += f"|{log_basename}| {line}"
except Exception as ex:
error_str += "-- No log available --"
error_str += f"-- No log available ({ex})--"
pytest.fail(error_str)
@@ -140,13 +140,13 @@ def Docking_BasicDockedTools():
# 2.5,6) Send a console command.
console_line_edit = console.findChild(QtWidgets.QLineEdit, "lineEdit")
console_line_edit.setText("t_Scale 2")
console_line_edit.setText("t_simulationTickScale 2")
QtTest.QTest.keyClick(console_line_edit, QtCore.Qt.Key_Enter)
general.get_cvar("t_Scale")
Report.result(Tests.docked_console_works, general.get_cvar("t_Scale") == "2")
general.get_cvar("t_simulationTickScale")
Report.result(Tests.docked_console_works, general.get_cvar("t_simulationTickScale") == "2")
# Reset the altered cvar
console_line_edit.setText("t_Scale 1")
console_line_edit.setText("t_simulationTickScale 1")
QtTest.QTest.keyClick(console_line_edit, QtCore.Qt.Key_Enter)
run_test()
@@ -0,0 +1,146 @@
"""
Copyright (c) Contributors to the Open 3D Engine Project.
For complete copyright and license terms please see the LICENSE at the root of this distribution.
SPDX-License-Identifier: Apache-2.0 OR MIT
"""
class Tests:
entities_sorted = (
"Entities sorted in the expected order",
"Entities sorted in an incorrect order",
)
def EntityOutliner_EntityOrdering():
"""
Summary:
Verify that manual entity ordering in the entity outliner works and is stable.
Expected Behavior:
Several entities are created, some are manually ordered, and their order
is maintained, even when new entities are added.
Test Steps:
1) Open the empty Prefab Base level
2) Add 5 entities to the outliner
3) Move "Entity1" to the top of the order
4) Move "Entity4" to the bottom of the order
5) Add another new entity, ensure the rest of the order is unchanged
"""
import editor_python_test_tools.pyside_utils as pyside_utils
import azlmbr.legacy.general as general
from editor_python_test_tools.utils import Report
from editor_python_test_tools.utils import TestHelper as helper
from PySide2 import QtCore, QtWidgets, QtGui, QtTest
# Grab the Editor, Entity Outliner, and Outliner Model
editor_window = pyside_utils.get_editor_main_window()
entity_outliner = pyside_utils.find_child_by_hierarchy(
editor_window, ..., "EntityOutlinerWidgetUI", ..., "m_objectTree"
)
entity_outliner_model = entity_outliner.model()
# Get the outliner index for the root prefab container entity
def get_root_prefab_container_index():
return entity_outliner_model.index(0, 0)
# Get the outliner index for the top level entity of a given name
def index_for_name(name):
root_index = get_root_prefab_container_index()
for row in range(entity_outliner_model.rowCount(root_index)):
row_index = entity_outliner_model.index(row, 0, root_index)
if row_index.data() == name:
return row_index
return None
# Validate that the outliner top level entity order matches the expected order
def verify_entities_sorted(expected_order):
actual_order = []
root_index = get_root_prefab_container_index()
for row in range(entity_outliner_model.rowCount(root_index)):
row_index = entity_outliner_model.index(row, 0, root_index)
actual_order.append(row_index.data())
sorted_correctly = actual_order == expected_order
Report.result(Tests.entities_sorted, sorted_correctly)
if not sorted_correctly:
print(f"Expected entity order: {expected_order}")
print(f"Actual entity order: {actual_order}")
# Creates an entity from the outliner context menu
def create_entity():
pyside_utils.trigger_context_menu_entry(
entity_outliner, "Create entity", index=get_root_prefab_container_index()
)
# Wait a tick after entity creation to let events process
general.idle_wait(0.0)
# Moves an entity (wrapped by move_entity_before and move_entity_after)
def _move_entity(source_name, target_name, move_after=False):
source_index = index_for_name(source_name)
target_index = index_for_name(target_name)
target_row = target_index.row()
if move_after:
target_row += 1
# Generate MIME data and directly inject it into the model instead of
# generating mouse click operations, as it's more reliable and we're
# testing the underlying drag & drop logic as opposed to Qt's mouse
# handling here
mime_data = entity_outliner_model.mimeData([source_index])
entity_outliner_model.dropMimeData(
mime_data, QtCore.Qt.MoveAction, target_row, 0, target_index.parent()
)
QtWidgets.QApplication.processEvents()
# Move an entity before another entity in the order by dragging the source above the target
move_entity_before = lambda source_name, target_name: _move_entity(
source_name, target_name, move_after=False
)
# Move an entity after another entity in the order by dragging the source beloew the target
move_entity_after = lambda source_name, target_name: _move_entity(
source_name, target_name, move_after=True
)
expected_order = []
# 1) Open the empty Prefab Base level
helper.init_idle()
helper.open_level("Prefab", "Base")
# 2) Add 5 entities to the outliner
ENTITIES_TO_ADD = 5
for i in range(ENTITIES_TO_ADD):
create_entity()
# Our new entity should be given a name with a number automatically
new_entity = f"Entity{i+1}"
# The new entity should be added to the top of its parent entity
expected_order = [new_entity] + expected_order
verify_entities_sorted(expected_order)
# 3) Move "Entity1" to the top of the order
move_entity_before("Entity1", "Entity5")
expected_order = ["Entity1", "Entity5", "Entity4", "Entity3", "Entity2"]
verify_entities_sorted(expected_order)
# 4) Move "Entity4" to the bottom of the order
move_entity_after("Entity4", "Entity2")
expected_order = ["Entity1", "Entity5", "Entity3", "Entity2", "Entity4"]
verify_entities_sorted(expected_order)
# 5) Add another new entity, ensure the rest of the order is unchanged
create_entity()
expected_order = ["Entity6", "Entity1", "Entity5", "Entity3", "Entity2", "Entity4"]
verify_entities_sorted(expected_order)
if __name__ == "__main__":
from editor_python_test_tools.utils import Report
Report.start_test(EntityOutliner_EntityOrdering)
@@ -41,3 +41,15 @@ class TestAutomation(TestAutomationBase):
from .EditorScripts import BasicEditorWorkflows_LevelEntityComponentCRUD as test_module
self._run_test(request, workspace, editor, test_module, batch_mode=False, autotest_mode=False,
use_null_renderer=False)
def test_EntityOutlienr_EntityOrdering(self, request, workspace, editor, launcher_platform):
from .EditorScripts import EntityOutliner_EntityOrdering as test_module
self._run_test(
request,
workspace,
editor,
test_module,
batch_mode=False,
autotest_mode=True,
extra_cmdline_args=["--regset=/Amazon/Preferences/EnablePrefabSystem=true"]
)
@@ -28,4 +28,4 @@ class TestAutomation(TestAutomationBase):
from . import Editor_NewExistingLevels_Works as test_module
self._run_test(request, workspace, editor, test_module)
self._run_test(request, workspace, editor, test_module, extra_cmdline_args=["--regset=/Amazon/Preferences/EnablePrefabSystem=false"])