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# Copyright (c) 2022-2026, The Isaac Lab Project Developers (https://github.com/isaac-sim/IsaacLab/blob/main/CONTRIBUTORS.md).
# All rights reserved.
#
# SPDX-License-Identifier: BSD-3-Clause
import contextlib
import os
import select
import signal
import subprocess
import sys
import time
import pytest
from junitparser import Error, JUnitXml, TestCase, TestSuite
from prettytable import PrettyTable
# Local imports
import test_settings as test_settings # isort: skip
def pytest_ignore_collect(collection_path, config):
# Skip collection and run each test script individually
return True
COLD_CACHE_BUFFER = 700
"""Extra seconds added to the first camera-enabled test's hard timeout.
The first test that uses ``enable_cameras=True`` may compile shaders during its
run (~600 s). This buffer prevents that from being misreported as a test
timeout. Only the first such test gets the extension — after it runs, the
on-disk cache is populated.
"""
STARTUP_DEADLINE = 120
"""Seconds to wait for AppLauncher init or pytest collection before declaring a
startup hang.
AppLauncher prints ``[ISAACLAB] AppLauncher initialization complete`` to
``sys.__stderr__`` (never suppressed) when Kit finishes initializing, and pytest
prints ``collected N items`` to stdout after collection. If neither appears
within this deadline the process is treated as hung. Kit startup can exceed
60 s on cold CI workers, so this catches real startup hangs without killing
legitimate slow launches.
"""
STARTUP_HANG_RETRIES = 2
"""Number of times to retry a test that hangs during startup before giving up."""
TIMEOUT_RETRIES = 0
"""Number of times to retry a test that reaches its hard timeout before giving up."""
PROCESS_FAILURE_RETRIES_BY_FILE = {
"test_visualizer_integration_physx.py": 4,
"test_visualizer_integration_newton.py": 4,
"test_visualizer_tiled_integration_physx.py": 4,
"test_visualizer_tiled_integration_newton.py": 4,
}
"""Extra fresh-process attempts for visualizer tests that can enter stale render states."""
SHUTDOWN_GRACE_PERIOD = 30
"""Seconds to wait for clean exit after the JUnit XML report file appears.
When a test completes and writes its JUnit report, the subprocess may hang
during ``SimulationApp.close()`` or Kit shutdown. Rather than wasting the
full hard timeout, we give the process a short grace period to exit, then
kill it. The test results are taken from the report file (pass/fail), not
from the kill.
"""
def capture_test_output_with_timeout(cmd, timeout, env, startup_deadline=0, report_file=""):
"""Run a command with timeout and capture all output while streaming in real-time.
Args:
cmd: Command to execute.
timeout: Maximum wall-clock seconds before the process is killed.
env: Environment variables for the subprocess.
startup_deadline: If > 0, the process is killed early when neither
``AppLauncher initialization complete`` (stderr) nor ``collected``
(stdout) appears within this many seconds.
report_file: Path to the JUnit XML report file. When set, the process
is given only :data:`SHUTDOWN_GRACE_PERIOD` seconds to exit after
the file appears on disk.
Returns:
Tuple of ``(returncode, stdout_bytes, stderr_bytes, kill_reason,
wall_time, pre_kill_diag)``. *kill_reason* is ``""`` for normal exits,
``"timeout"`` for hard timeouts, ``"startup_hang"`` when the process
did not reach pytest collection in time, or ``"shutdown_hang"`` when
the test completed but the process hung during shutdown.
"""
stdout_data = b""
stderr_data = b""
process = None
try:
# Each test gets its own session so orphaned Kit/Isaac Sim child
# processes cannot send SIGHUP to the next test's process group.
process = subprocess.Popen(
cmd,
env=env,
stdout=subprocess.PIPE,
stderr=subprocess.PIPE,
bufsize=0,
universal_newlines=False,
start_new_session=True,
)
pgid = os.getpgid(process.pid)
stdout_fd = process.stdout.fileno()
stderr_fd = process.stderr.fileno()
try:
import fcntl
for fd in [stdout_fd, stderr_fd]:
flags = fcntl.fcntl(fd, fcntl.F_GETFL)
fcntl.fcntl(fd, fcntl.F_SETFL, flags | os.O_NONBLOCK)
except ImportError:
pass
start_time = time.time()
startup_done = startup_deadline <= 0
shutdown_deadline = 0.0
while process.poll() is None:
elapsed = time.time() - start_time
if not startup_done:
if b"AppLauncher initialization complete" in stderr_data or b"collected " in stdout_data:
startup_done = True
if report_file and not shutdown_deadline and os.path.exists(report_file):
shutdown_deadline = time.time() + SHUTDOWN_GRACE_PERIOD
kill_reason = None
if not startup_done and elapsed > startup_deadline:
kill_reason = "startup_hang"
elif shutdown_deadline and time.time() > shutdown_deadline:
kill_reason = "shutdown_hang"
elif elapsed > timeout:
kill_reason = "timeout"
if kill_reason:
pre_kill_diag = _capture_system_diagnostics()
# Kill the entire process group (test + any Kit children).
try:
os.killpg(pgid, signal.SIGKILL)
except (ProcessLookupError, PermissionError, OSError):
process.kill()
try:
remaining_stdout, remaining_stderr = process.communicate(timeout=5)
stdout_data += remaining_stdout
stderr_data += remaining_stderr
except subprocess.TimeoutExpired:
pass
wall_time = time.time() - start_time
return -1, stdout_data, stderr_data, kill_reason, wall_time, pre_kill_diag
try:
ready_fds, _, _ = select.select([stdout_fd, stderr_fd], [], [], 0.1)
for fd in ready_fds:
with contextlib.suppress(OSError):
if fd == stdout_fd:
chunk = process.stdout.read(1024)
if chunk:
stdout_data += chunk
sys.stdout.buffer.write(chunk)
sys.stdout.buffer.flush()
elif fd == stderr_fd:
chunk = process.stderr.read(1024)
if chunk:
stderr_data += chunk
sys.stderr.buffer.write(chunk)
sys.stderr.buffer.flush()
except OSError:
time.sleep(0.1)
continue
# Drain any output the process wrote before or just after exiting.
try:
remaining_stdout, remaining_stderr = process.communicate(timeout=10)
stdout_data += remaining_stdout
stderr_data += remaining_stderr
except Exception:
pass
# Kill any orphaned child processes (Kit, Isaac Sim) left by the test.
try:
os.killpg(pgid, signal.SIGKILL)
time.sleep(1)
except (ProcessLookupError, PermissionError, OSError):
pass
wall_time = time.time() - start_time
return process.returncode, stdout_data, stderr_data, "", wall_time, ""
except Exception as e:
if process is not None and process.poll() is None:
process.kill()
with contextlib.suppress(Exception):
rem_out, rem_err = process.communicate(timeout=5)
stdout_data += rem_out
stderr_data += rem_err
stdout_data += f"\n[capture error: {e}]\n".encode()
return -1, stdout_data, stderr_data, "", 0.0, ""
_SIGNAL_DESCRIPTIONS = {
1: "SIGHUP — session leader exit or orphaned process cleanup",
6: "SIGABRT",
9: "SIGKILL — likely OOM killed",
11: "SIGSEGV — segmentation fault",
15: "SIGTERM",
}
def _signal_description(sig):
"""Return a human-readable description for a process killed by a signal."""
base = f"Process killed by signal {sig}"
desc = _SIGNAL_DESCRIPTIONS.get(sig)
return f"{base} ({desc})" if desc else base
def _create_error_report(prefix, file_name, message, details):
"""Create a JUnit XML error report for a test that failed to produce its own.
Returns a :class:`JUnitXml` object ready to be written to disk.
"""
suite_name = os.path.splitext(file_name)[0]
suite = TestSuite(name=f"{prefix}_{suite_name}")
case = TestCase(name="test_execution", classname=suite_name)
error = Error(message=message)
error.text = details
case.result = error
suite.add_testcase(case)
report = JUnitXml()
report.add_testsuite(suite)
return report
def _get_diagnostics(pre_kill_diag=""):
"""Return system diagnostics, truncated to 10 000 chars."""
diag = pre_kill_diag or _capture_system_diagnostics()
if len(diag) > 10000:
diag = diag[:10000] + "\n... (truncated)"
return diag
def _capture_system_diagnostics():
"""Capture system diagnostics (GPU, memory, processes) for crash investigation.
All errors are caught and reported inline so this never raises.
"""
sections = []
try:
r = subprocess.run(["nvidia-smi"], capture_output=True, text=True, timeout=10)
if r.stdout:
sections.append(f"--- nvidia-smi ---\n{r.stdout.strip()}")
except Exception as e:
sections.append(f"--- nvidia-smi --- FAILED: {e}")
try:
with open("/proc/meminfo") as f:
lines = f.readlines()
keys = ("MemTotal", "MemFree", "MemAvailable", "Committed_AS", "SwapTotal", "SwapFree")
relevant = [line.strip() for line in lines if any(line.startswith(k) for k in keys)]
if relevant:
sections.append("--- /proc/meminfo ---\n" + "\n".join(relevant))
except Exception as e:
sections.append(f"--- /proc/meminfo --- FAILED: {e}")
cgroup_lines = []
for path in (
"/sys/fs/cgroup/memory.current",
"/sys/fs/cgroup/memory.max",
"/sys/fs/cgroup/memory.events",
"/sys/fs/cgroup/memory/memory.usage_in_bytes",
"/sys/fs/cgroup/memory/memory.limit_in_bytes",
"/sys/fs/cgroup/memory/memory.oom_control",
):
try:
with open(path) as f:
cgroup_lines.append(f"{path}: {f.read().strip()}")
except FileNotFoundError:
pass
except Exception as e:
cgroup_lines.append(f"{path}: FAILED ({e})")
if cgroup_lines:
sections.append("--- cgroup memory ---\n" + "\n".join(cgroup_lines))
try:
r = subprocess.run(["ps", "auxf"], capture_output=True, text=True, timeout=5)
if r.stdout:
sections.append(f"--- process tree (ps auxf) ---\n{r.stdout.strip()}")
except Exception as e:
sections.append(f"--- process tree --- FAILED: {e}")
try:
r = subprocess.run(["dmesg", "-T"], capture_output=True, text=True, timeout=5)
if r.stdout:
lines = r.stdout.strip().split("\n")
sections.append("--- dmesg (last 30 lines) ---\n" + "\n".join(lines[-30:]))
except Exception:
pass
return "\n\n".join(sections)
def _read_test_report(report_file, file_name):
"""Read a pytest JUnit report and return its summary fields."""
report = JUnitXml.fromfile(report_file)
for suite in report:
if suite.name == "pytest":
suite.name = os.path.splitext(file_name)[0]
report.write(report_file)
errors = int(report.errors) if report.errors is not None else 0
failures = int(report.failures) if report.failures is not None else 0
skipped = int(report.skipped) if report.skipped is not None else 0
tests = int(report.tests) if report.tests is not None else 0
time_elapsed = float(report.time) if report.time is not None else 0.0
return report, errors, failures, skipped, tests, time_elapsed
def _retry_failed_test_in_fresh_process(
*,
test_file,
file_name,
cmd,
timeout,
env,
startup_deadline,
report_file,
report,
errors,
failures,
skipped,
tests,
time_elapsed,
returncode,
stdout_data,
stderr_data,
kill_reason,
wall_time,
pre_kill_diag,
):
"""Retry selected failed test files in a fresh subprocess."""
has_test_failures = errors > 0 or failures > 0
process_failure_attempts = 0
max_process_failure_retries = PROCESS_FAILURE_RETRIES_BY_FILE.get(file_name, 0)
while has_test_failures and process_failure_attempts < max_process_failure_retries:
process_failure_attempts += 1
print(
f"⚠️ {test_file}: failed in subprocess"
f" (attempt {process_failure_attempts}/{max_process_failure_retries + 1}), retrying in fresh process..."
)
with contextlib.suppress(FileNotFoundError):
os.remove(report_file)
returncode, stdout_data, stderr_data, kill_reason, wall_time, pre_kill_diag = capture_test_output_with_timeout(
cmd, timeout, env, startup_deadline=startup_deadline, report_file=report_file
)
if not os.path.exists(report_file):
break
try:
report, errors, failures, skipped, tests, time_elapsed = _read_test_report(report_file, file_name)
has_test_failures = errors > 0 or failures > 0
except Exception as e:
print(f"Error reading retry test report {report_file}: {e}")
has_test_failures = True
errors = 1
failures = 0
skipped = 0
tests = 0
time_elapsed = 0.0
break
return (
report,
errors,
failures,
skipped,
tests,
time_elapsed,
returncode,
stdout_data,
stderr_data,
kill_reason,
wall_time,
pre_kill_diag,
has_test_failures,
)
def run_individual_tests(test_files, workspace_root, isaacsim_ci):
"""Run each test file separately, ensuring one finishes before starting the next."""
failed_tests = []
test_status = {}
xml_reports = []
cold_cache_applied = False
for test_file in test_files:
print(f"\n\n🚀 Running {test_file} independently...\n")
file_name = os.path.basename(test_file)
env = os.environ.copy()
env["PYTHONFAULTHANDLER"] = "1"
timeout = test_settings.PER_TEST_TIMEOUTS.get(file_name, test_settings.DEFAULT_TIMEOUT)
# Read the test file once for cold-cache check.
try:
with open(test_file) as fh:
test_content = fh.read()
except OSError:
test_content = ""
# The first camera-enabled test in a fresh container compiles shaders
# (~600 s). Give it extra time so that doesn't look like a test timeout.
is_cold_cache_test = not cold_cache_applied and "enable_cameras=True" in test_content
if is_cold_cache_test:
timeout += COLD_CACHE_BUFFER
cold_cache_applied = True
print(f"⏱️ Adding {COLD_CACHE_BUFFER}s cold-cache buffer (timeout now {timeout}s)")
extra = COLD_CACHE_BUFFER if is_cold_cache_test else 0
startup_deadline = min(timeout, STARTUP_DEADLINE + extra)
cmd = [
sys.executable,
"-m",
"pytest",
"-s",
"--no-header",
f"--config-file={workspace_root}/pyproject.toml",
f"--junitxml=tests/test-reports-{str(file_name)}.xml",
"--tb=short",
]
if isaacsim_ci:
cmd.append("-m")
cmd.append("isaacsim_ci")
cmd.append(str(test_file))
report_file = f"tests/test-reports-{str(file_name)}.xml"
# -- Run with retry on startup hang or hard timeout -----------------
returncode, stdout_data, stderr_data, kill_reason = -1, b"", b"", ""
wall_time, pre_kill_diag = 0.0, ""
startup_hang_attempts = 0
timeout_attempts = 0
while True:
with contextlib.suppress(FileNotFoundError):
os.remove(report_file)
returncode, stdout_data, stderr_data, kill_reason, wall_time, pre_kill_diag = (
capture_test_output_with_timeout(
cmd, timeout, env, startup_deadline=startup_deadline, report_file=report_file
)
)
has_report = os.path.exists(report_file)
if kill_reason == "startup_hang" and startup_hang_attempts < STARTUP_HANG_RETRIES:
startup_hang_attempts += 1
print(
f"⚠️ {test_file}: startup hang detected after {startup_deadline}s"
f" (attempt {startup_hang_attempts}/{STARTUP_HANG_RETRIES + 1}), retrying..."
)
if stderr_data:
print("=== STDERR (last 5000 chars) ===")
print(stderr_data.decode("utf-8", errors="replace")[-5000:])
diag = pre_kill_diag or _capture_system_diagnostics()
if len(diag) > 10000:
diag = diag[:10000] + "\n... (truncated)"
print(diag)
continue
if kill_reason == "timeout" and not has_report and timeout_attempts < TIMEOUT_RETRIES:
timeout_attempts += 1
print(
f"⚠️ {test_file}: timeout detected after {timeout}s"
f" (attempt {timeout_attempts}/{TIMEOUT_RETRIES + 1}), retrying..."
)
if stdout_data:
print("=== STDOUT (last 5000 chars) ===")
print(stdout_data.decode("utf-8", errors="replace")[-5000:])
if stderr_data:
print("=== STDERR (last 5000 chars) ===")
print(stderr_data.decode("utf-8", errors="replace")[-5000:])
diag = pre_kill_diag or _capture_system_diagnostics()
if len(diag) > 10000:
diag = diag[:10000] + "\n... (truncated)"
print(diag)
continue
break
# -- Resolve result from kill_reason and report file ----------------
has_report = os.path.exists(report_file)
if kill_reason == "startup_hang":
diag = _get_diagnostics(pre_kill_diag)
print(f"⚠️ {test_file}: startup hang after {STARTUP_HANG_RETRIES + 1} attempt(s)")
print(diag)
msg = f"Startup hang after {startup_deadline}s (retried {STARTUP_HANG_RETRIES} time(s))"
details = f"{msg}\n\n=== SYSTEM DIAGNOSTICS ===\n{diag}\n\n"
if stderr_data:
details += "=== STDERR (last 5000 chars) ===\n"
details += stderr_data.decode("utf-8", errors="replace")[-5000:] + "\n"
if stdout_data:
details += "=== STDOUT (last 2000 chars) ===\n"
details += stdout_data.decode("utf-8", errors="replace")[-2000:] + "\n"
error_report = _create_error_report("startup_hang", file_name, msg, details)
error_report.write(report_file)
xml_reports.append(error_report)
failed_tests.append(test_file)
test_status[test_file] = {
"errors": 1,
"failures": 0,
"skipped": 0,
"tests": 1,
"result": "STARTUP_HANG",
"time_elapsed": 0.0,
"wall_time": wall_time,
}
continue
if kill_reason == "timeout" and not has_report:
diag = _get_diagnostics(pre_kill_diag)
print(f"Test {test_file} timed out after {timeout} seconds...")
print(diag)
msg = f"Timeout after {timeout} seconds (retried {timeout_attempts} time(s))"
details = f"{msg}\n\n=== SYSTEM DIAGNOSTICS ===\n{diag}\n\n"
if stdout_data:
details += "=== STDOUT (last 5000 chars) ===\n"
details += stdout_data.decode("utf-8", errors="replace")[-5000:] + "\n"
if stderr_data:
details += "=== STDERR (last 5000 chars) ===\n"
details += stderr_data.decode("utf-8", errors="replace")[-5000:] + "\n"
error_report = _create_error_report("timeout", file_name, msg, details)
error_report.write(report_file)
xml_reports.append(error_report)
failed_tests.append(test_file)
test_status[test_file] = {
"errors": 1,
"failures": 0,
"skipped": 0,
"tests": 1,
"result": "TIMEOUT",
"time_elapsed": timeout,
"wall_time": wall_time,
}
continue
if not has_report:
reason = (
_signal_description(-returncode)
if returncode < 0
else f"Process exited with code {returncode} but produced no report"
)
diag = _get_diagnostics()
print(f"⚠️ {test_file}: {reason}")
print(diag)
details = f"{reason}\n\n=== SYSTEM DIAGNOSTICS ===\n{diag}\n\n"
if stdout_data:
details += "=== STDOUT (last 2000 chars) ===\n"
details += stdout_data.decode("utf-8", errors="replace")[-2000:] + "\n"
if stderr_data:
details += "=== STDERR (last 2000 chars) ===\n"
details += stderr_data.decode("utf-8", errors="replace")[-2000:] + "\n"
error_report = _create_error_report("crash", file_name, reason, details)
error_report.write(report_file)
xml_reports.append(error_report)
failed_tests.append(test_file)
test_status[test_file] = {
"errors": 1,
"failures": 0,
"skipped": 0,
"tests": 1,
"result": "CRASHED",
"time_elapsed": 0.0,
"wall_time": wall_time,
}
continue
# -- Report file exists: parse actual test results -----------------
if kill_reason in ("shutdown_hang", "timeout"):
print(f"⚠️ {test_file}: shutdown hanged (killed after {wall_time:.0f}s, test had completed)")
try:
report, errors, failures, skipped, tests, time_elapsed = _read_test_report(report_file, file_name)
except Exception as e:
print(f"Error reading test report {report_file}: {e}")
failed_tests.append(test_file)
test_status[test_file] = {
"errors": 1,
"failures": 0,
"skipped": 0,
"tests": 0,
"result": "FAILED",
"time_elapsed": 0.0,
"wall_time": wall_time,
}
continue
has_test_failures = errors > 0 or failures > 0
(
report,
errors,
failures,
skipped,
tests,
time_elapsed,
returncode,
stdout_data,
stderr_data,
kill_reason,
wall_time,
pre_kill_diag,
has_test_failures,
) = _retry_failed_test_in_fresh_process(
test_file=test_file,
file_name=file_name,
cmd=cmd,
timeout=timeout,
env=env,
startup_deadline=startup_deadline,
report_file=report_file,
report=report,
errors=errors,
failures=failures,
skipped=skipped,
tests=tests,
time_elapsed=time_elapsed,
returncode=returncode,
stdout_data=stdout_data,
stderr_data=stderr_data,
kill_reason=kill_reason,
wall_time=wall_time,
pre_kill_diag=pre_kill_diag,
)
xml_reports.append(report)
shutdown_hanged = kill_reason in ("shutdown_hang", "timeout") and not has_test_failures
if has_test_failures or (returncode != 0 and not shutdown_hanged):
failed_tests.append(test_file)
if shutdown_hanged:
result = "passed (shutdown hanged)"
elif has_test_failures:
result = "FAILED"
else:
result = "passed"
test_status[test_file] = {
"errors": errors,
"failures": failures,
"skipped": skipped,
"tests": tests,
"result": result,
"time_elapsed": time_elapsed,
"wall_time": wall_time,
}
print("~~~~~~~~~~~~ Finished running all tests")
return failed_tests, test_status, xml_reports
def _collect_test_files(
source_dirs,
filter_pattern,
exclude_pattern,
include_files,
quarantined_only,
curobo_only,
):
"""Collect test files from source directories, applying all active filters."""
test_files = []
for source_dir in source_dirs:
if not os.path.exists(source_dir):
print(f"Error: source directory not found at {source_dir}")
pytest.exit("Source directory not found", returncode=1)
for root, _, files in os.walk(source_dir):
for file in files:
if not (file.startswith("test_") and file.endswith(".py")):
continue
# Mode-exclusive filters (each bypasses TESTS_TO_SKIP)
if quarantined_only:
if file not in test_settings.QUARANTINED_TESTS:
continue
elif curobo_only:
if file not in test_settings.CUROBO_TESTS:
continue
else:
# An explicit include_files entry overrides TESTS_TO_SKIP, allowing
# dedicated jobs (e.g. test-environments-training) to run tests that
# are otherwise excluded from general CI runs.
if file in test_settings.TESTS_TO_SKIP and file not in include_files:
print(f"Skipping {file} as it's in the skip list")
continue
full_path = os.path.join(root, file)
if filter_pattern and filter_pattern not in full_path:
print(f"Skipping {full_path} (does not match include pattern: {filter_pattern})")
continue
if exclude_pattern and any(p.strip() in full_path for p in exclude_pattern.split(",")):
print(f"Skipping {full_path} (matches exclude pattern: {exclude_pattern})")
continue
if include_files and file not in include_files:
print(f"Skipping {full_path} (not in include files list)")
continue
test_files.append(full_path)
# Apply file-level sharding: sort deterministically, then select every Nth file.
# Skip when include_files is set — in that case the test's own conftest handles
# sharding at the test-item level (e.g. parametrized test cases).
shard_index = os.environ.get("TEST_SHARD_INDEX", "")
shard_count = os.environ.get("TEST_SHARD_COUNT", "")
if shard_index and shard_count and not include_files:
shard_index = int(shard_index)
shard_count = int(shard_count)
test_files.sort()
test_files = [f for i, f in enumerate(test_files) if i % shard_count == shard_index]
print(f"Shard {shard_index}/{shard_count}: selected {len(test_files)} test files")
return test_files
def _write_empty_report():
"""Write an empty JUnit XML report so downstream CI steps find a valid file."""
os.makedirs("tests", exist_ok=True)
result_file = os.environ.get("TEST_RESULT_FILE", "full_report.xml")
report = JUnitXml()
report.write(f"tests/{result_file}")
print(f"Wrote empty report to tests/{result_file}")
def pytest_sessionstart(session):
"""Intercept pytest startup to execute tests in the correct order."""
# Get the workspace root directory (one level up from tools)
workspace_root = os.path.dirname(os.path.dirname(os.path.abspath(__file__)))
source_dirs = [
os.path.join(workspace_root, "scripts"),
os.path.join(workspace_root, "source"),
]
# Get filter pattern from environment variable or command line
filter_pattern = os.environ.get("TEST_FILTER_PATTERN", "")
exclude_pattern = os.environ.get("TEST_EXCLUDE_PATTERN", "")
include_files_str = os.environ.get("TEST_INCLUDE_FILES", "")
quarantined_only = os.environ.get("TEST_QUARANTINED_ONLY", "false") == "true"
curobo_only = os.environ.get("TEST_CUROBO_ONLY", "false") == "true"
isaacsim_ci = os.environ.get("ISAACSIM_CI_SHORT", "false") == "true"
# Parse include files list (comma-separated paths)
include_files = set()
if include_files_str:
for f in include_files_str.split(","):
f = f.strip()
if f:
include_files.add(os.path.basename(f))
# Also try to get from pytest config
if hasattr(session.config, "option") and hasattr(session.config.option, "filter_pattern"):
filter_pattern = filter_pattern or getattr(session.config.option, "filter_pattern", "")
if hasattr(session.config, "option") and hasattr(session.config.option, "exclude_pattern"):
exclude_pattern = exclude_pattern or getattr(session.config.option, "exclude_pattern", "")
print("=" * 50)
print("CONFTEST.PY DEBUG INFO")
print("=" * 50)
print(f"Filter pattern: '{filter_pattern}'")
print(f"Exclude pattern: '{exclude_pattern}'")
print(f"Include files: {include_files if include_files else 'none'}")
print(f"Quarantined-only mode: {quarantined_only}")
print(f"Curobo-only mode: {curobo_only}")
print(f"TEST_FILTER_PATTERN env var: '{os.environ.get('TEST_FILTER_PATTERN', 'NOT_SET')}'")
print(f"TEST_EXCLUDE_PATTERN env var: '{os.environ.get('TEST_EXCLUDE_PATTERN', 'NOT_SET')}'")
print(f"TEST_INCLUDE_FILES env var: '{os.environ.get('TEST_INCLUDE_FILES', 'NOT_SET')}'")
print(f"TEST_QUARANTINED_ONLY env var: '{os.environ.get('TEST_QUARANTINED_ONLY', 'NOT_SET')}'")
print(f"TEST_CUROBO_ONLY env var: '{os.environ.get('TEST_CUROBO_ONLY', 'NOT_SET')}'")
print("=" * 50)
# Get all test files in the source directories
test_files = _collect_test_files(
source_dirs,
filter_pattern,
exclude_pattern,
include_files,
quarantined_only,
curobo_only,
)
if isaacsim_ci:
new_test_files = []
for test_file in test_files:
with open(test_file) as f:
if "@pytest.mark.isaacsim_ci" in f.read():
new_test_files.append(test_file)
test_files = new_test_files
if not test_files:
if quarantined_only:
print("No quarantined tests configured — nothing to run.")
_write_empty_report()
pytest.exit("No quarantined tests configured", returncode=0)
if filter_pattern:
print(f"No test files found matching filter pattern '{filter_pattern}' — nothing to run.")
_write_empty_report()
pytest.exit("No test files found for filter", returncode=0)
print("No test files found in source directory")
pytest.exit("No test files found", returncode=1)
print(f"Found {len(test_files)} test files after filtering:")
for test_file in test_files:
print(f" - {test_file}")
# Run all tests individually
failed_tests, test_status, xml_reports = run_individual_tests(test_files, workspace_root, isaacsim_ci)
print("failed tests:", failed_tests)
# Collect reports
print("~~~~~~~~~ Collecting final report...")
# Merge in-memory report objects collected during the test run. Reading the
# on-disk files again risks losing <failure> elements if the junitparser
# read/write round-trip does not preserve them faithfully.
full_report = JUnitXml()
for xml_report in xml_reports:
print(xml_report)
full_report += xml_report
print("~~~~~~~~~~~~ Writing final report...")
# write content to full report
result_file = os.environ.get("TEST_RESULT_FILE", "full_report.xml")
full_report_path = f"tests/{result_file}"
print(f"Using result file: {result_file}")
full_report.write(full_report_path)
print("~~~~~~~~~~~~ Report written to", full_report_path)
# print test status in a nice table
# Calculate the number and percentage of passing tests
num_tests = len(test_status)
num_passing = len([p for p in test_files if test_status[p]["result"].startswith("passed")])
num_failing = len([p for p in test_files if test_status[p]["result"] == "FAILED"])
num_timeout = len([p for p in test_files if test_status[p]["result"] == "TIMEOUT"])
num_crashed = len([p for p in test_files if test_status[p]["result"] == "CRASHED"])
num_startup_hang = len([p for p in test_files if test_status[p]["result"] == "STARTUP_HANG"])
if num_tests == 0:
passing_percentage = 100
else:
passing_percentage = num_passing / num_tests * 100
# Print summaries of test results
summary_str = "\n\n"
summary_str += "===================\n"
summary_str += "Test Result Summary\n"
summary_str += "===================\n"
summary_str += f"Total: {num_tests}\n"
summary_str += f"Passing: {num_passing}\n"
summary_str += f"Failing: {num_failing}\n"
summary_str += f"Crashed: {num_crashed}\n"
summary_str += f"Startup Hang: {num_startup_hang}\n"
summary_str += f"Timeout: {num_timeout}\n"
summary_str += f"Passing Percentage: {passing_percentage:.2f}%\n"
total_wall = sum(test_status[test_path]["wall_time"] for test_path in test_files)
total_test = sum(test_status[test_path]["time_elapsed"] for test_path in test_files)
summary_str += f"Total Wall Time: {total_wall // 3600:.0f}h{total_wall // 60 % 60:.0f}m{total_wall % 60:.2f}s\n"
summary_str += f"Total Test Time: {total_test // 3600:.0f}h{total_test // 60 % 60:.0f}m{total_test % 60:.2f}s"
summary_str += "\n\n=======================\n"
summary_str += "Per Test Result Summary\n"
summary_str += "=======================\n"
per_test_result_table = PrettyTable(field_names=["Test Path", "Result", "Test (s)", "Wall (s)", "# Tests"])
per_test_result_table.align["Test Path"] = "l"
per_test_result_table.align["Test (s)"] = "r"
per_test_result_table.align["Wall (s)"] = "r"
for test_path in test_files:
num_tests_passed = (
test_status[test_path]["tests"]
- test_status[test_path]["failures"]
- test_status[test_path]["errors"]
- test_status[test_path]["skipped"]
)
per_test_result_table.add_row(
[
test_path,
test_status[test_path]["result"],
f"{test_status[test_path]['time_elapsed']:0.2f}",
f"{test_status[test_path]['wall_time']:0.2f}",
f"{num_tests_passed}/{test_status[test_path]['tests']}",
]
)
summary_str += per_test_result_table.get_string()
# Print summary to console and log file
print(summary_str)
# Exit pytest after custom execution to prevent normal pytest from overwriting our report
pytest.exit(
"Custom test execution completed",
returncode=0 if (num_failing == 0 and num_timeout == 0 and num_crashed == 0 and num_startup_hang == 0) else 1,
)