Ejemplo n.º 1
0
def problem_to_storage_values(problem):
    app = problem.get_application()

    if app.name:
        name = app.name
    else:
        name = problem['human_type']

    if name == "kernel" or name.startswith("kernel-"):
        # Translators: if the kernel crashed we display the word "System"
        # instead of "kernel". In this context "System" is like a proper
        # package name, probably a nominative noun.
        name = C_("package name", "System")

    problem_type = problem['type']
    if problem_type == "CCpp":
        # Translators: These are the problem types displayed in the problem
        # list under the application name
        problem_type = _("Application Crash")
    elif problem_type == "vmcore":
        problem_type = _("System Crash")
    elif problem_type == "Kerneloops":
        problem_type = _("System Failure")
    else:
        problem_type = _("Misbehavior")

    return (smart_truncate(name, length=40), fancydate(problem['date_last']),
            problem_type, problem['count'], problem)
Ejemplo n.º 2
0
def problem_to_storage_values(problem):
    app = problem.get_application()

    if app.name:
        name = app.name
    else:
        name = problem['human_type']

    if name == "kernel" or name.startswith("kernel-"):
        # Translators: if the kernel crashed we display the word "System"
        # instead of "kernel". In this context "System" is like a proper
        # package name, probably a nominative noun.
        name = C_("package name", "System")

    problem_type = problem['type']
    if problem_type == "CCpp":
        # Translators: These are the problem types displayed in the problem
        # list under the application name
        problem_type = _("Application Crash")
    elif problem_type == "vmcore":
        problem_type = _("System Crash")
    elif problem_type == "Kerneloops":
        problem_type = _("System Failure")
    else:
        problem_type = _("Misbehavior")

    return (smart_truncate(name, length=40),
            fancydate(problem['date_last']),
            problem_type,
            problem['count'],
            problem)
Ejemplo n.º 3
0
def problem_to_storage_values(problem):
    # not localizable, it is a format for tree view column
    app = problem.get_application()
    return ["{0!s}\n{1!s}".format(app.name or _("N/A"),
                                  problem['type'] or ""),
            "{0!s}\n{1!s}".format(fancydate(problem['date']),
                                  problem['count']),
            problem]
Ejemplo n.º 4
0
def problem_to_storage_values(problem):
    app = problem.get_application()

    if app.name:
        name = app.name
    else:
        name = problem["human_type"]

    if name == "kernel":
        name = _("System")

    return (smart_truncate(name, length=40), fancydate(problem["date_last"]), problem["count"], problem)
Ejemplo n.º 5
0
def problem_to_storage_values(problem):
    app = problem.get_application()

    if app.name:
        name = app.name
    else:
        name = problem['human_type']

    if name == "kernel":
        name = _("System")

    return (smart_truncate(name, length=40), fancydate(problem['date_last']),
            problem['count'], problem)
Ejemplo n.º 6
0
def problem_to_storage_values(problem):
    # not localizable, it is a format for tree view column
    app = problem.get_application()

    if app.name:
        name = app.name
    else:
        name = problem['human_type']

    if name == "kernel":
        name = _("System")

    return ["{0!s}\n".format(smart_truncate(name, length=40)),
            "{0!s}\n{1!s}".format(fancydate(problem['date_last']),
                                  problem['count']),
            problem]