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interrupt_handling.dot
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interrupt_handling.dot
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digraph {
label = <
<font point-size="42">Interrupt Handling</font><br />
<font point-size="22">For GPIO libraries with software interrupt callbacks,<br />and how they handle being an interrupt for other modules</font>
>;
labelloc = "t";
newrank=true;
node[shape=box, style=rounded]
mcp_gpio_input [label="MCP input pin logic level changes"];
mcp_int_output [label="MCP interrupt output pin logic level changes"];
pi_gpio_input [label="Pi input pin logic level changes"];
pi_int_callback [label="Pi interrupt callback is triggered"];
# server.MqttIo
subgraph cluster_main_int_callback {
label = <<font point-size="22">MqttIo.interrupt_callback()</font>>
node [shape=diamond]
q_is_remote_int [label="Configured as interrupt for other module's pin(s)?"];
q_acquire_interrupt_lock [label="Acquire lock for this interrupt pin?"];
node [shape=box, style=rounded]
main_int_callback [label="Gets called by module's software\ncallback with whichever args supplied"];
ignore_interrupt [label="Ignore this interrupt", style=striped];
fire_digital_input_changed_event_main [label="Fire DigitalInputChangedEvent", style="striped"];
get_all_interrupt_for_pins [label="Get list of pin names that this pin_name is an interrupt for"]
get_interrupt_value [label="Get value of pin that caused the interrupt\nusing [module].GPIO.get_interrupt_value(pin)"];
}
subgraph cluster_handle_remote_int {
label = <<font point-size="22">MqttIo.handle_remote_interrupt()</font>>
node [shape=box, style=rounded]
organise_into_modules [label="Organise pins by module"]
make_funcs_to_get_pin_vals_and_fire_event [label="Make async closure functions to call get_interrupt_values_remote(pins)\non each module and fire events if/when the values are received"]
add_the_functions_to_a_list [label="Add these functions to a list"];
make_func_to_await_the_funcs [label="Make async closure function to await all of the functions"];
add_awaiting_func_to_task_list [label="Add the awaiting function to the task list"];
subgraph cluster_handle_remote_int_closure_func {
label = <<font point-size="22">handle_remote_interrupt_task()</font>>
node [shape=box, style=rounded]
call_modules_to_get_int_values [label="Call get_interrupt_values_remote(pins) on the module"];
fire_digital_input_changed_event_closure [label="Fire DigitalInputChangedEvent", style=striped];
}
subgraph cluster_await_remote_ints {
label = <<font point-size="22">await_remote_interrupts()</font>>
await_all_remote_int_tasks [label="Await all remote interrupt tasks"];
release_int_lock [label="Release interrupt lock", style="striped"];
}
}
# END server.MqttIO
# modules.gpio.GenericGPIO
subgraph cluster_get_int_pin_values {
label = <<font point-size="22">GenericGPIO.get_interrupt_values_remote(pins)</font>>;
node[shape=diamond]
q_can_identify_pin [label="Can identify which pin caused the interrupt?\n(InterruptSupport.FLAG_REGISTER)"];
q_can_capture_pin_val [label="Can get captured pin interrupt value?\n(InterruptSupport.CAPTURE_REGISTER)"];
q_which_edge [label="Which edge(s) were these interrupt(s) configured for?"];
q_any_pins_changed [label="Pin(s) value changed?"]
node[shape=box, style=rounded]
check_all_possible_pins [label="Check all pins on this module that\ncould have triggered the interrupt"]
poll_pin [label="Poll the pin for its current value"];
get_flagged_pins [label=<
<b>gpio_module.get_int_pins()</b><br />
Get flagged interrupt pins
>]
capture_pin_value [label=<
<b>gpio_module.get_captured_int_pin_values(pins)</b><br />
Get captured pin value at time of interrupt
>]
pin_value_high [label="Pin's value is 'high'"]
pin_value_low [label="Pin's value is 'low'"]
return_pin_values [label="Return pin numbers and their values", style="striped"];
do_nothing [label="Return empty list?\nTODO: Make this behaviour configurable", style="striped"]
}
# END modules.gpio.GenericGPIO
mcp_gpio_input ->
mcp_int_output ->
pi_gpio_input ->
pi_int_callback ->
main_int_callback ->
q_acquire_interrupt_lock;
q_acquire_interrupt_lock -> q_is_remote_int [label="Acquired"];
q_acquire_interrupt_lock -> ignore_interrupt [label="Locked"];
q_is_remote_int -> get_all_interrupt_for_pins [label="Yes"];
get_all_interrupt_for_pins ->
organise_into_modules ->
make_funcs_to_get_pin_vals_and_fire_event ->
add_the_functions_to_a_list ->
make_func_to_await_the_funcs ->
add_awaiting_func_to_task_list ->
await_all_remote_int_tasks ->
call_modules_to_get_int_values ->
q_can_identify_pin;
q_is_remote_int -> get_interrupt_value [label="No"];
get_interrupt_value -> fire_digital_input_changed_event_main;
# GenericGPIO.get_int_pin_values()
q_can_identify_pin -> get_flagged_pins [label="Yes"];
q_can_identify_pin -> check_all_possible_pins [label="No"];
get_flagged_pins -> q_can_capture_pin_val;
check_all_possible_pins -> q_can_capture_pin_val;
q_any_pins_changed -> return_pin_values [label="Yes"];
q_any_pins_changed -> do_nothing [label="No"];
q_can_capture_pin_val -> capture_pin_value [label="Yes"];
q_can_capture_pin_val -> q_which_edge [label="No"];
capture_pin_value -> return_pin_values;
q_which_edge -> pin_value_high [label="Rising"];
q_which_edge -> pin_value_low [label="Falling"];
q_which_edge -> poll_pin [label="Both"];
poll_pin -> q_any_pins_changed;
pin_value_high -> return_pin_values;
pin_value_low -> return_pin_values;
# END GenericGPIO.get_int_pin_values()
return_pin_values -> fire_digital_input_changed_event_closure -> release_int_lock;
# Do we want to call the callback, even though this could be the wrong value?
# The alternative is to only call the callback if it's changed.
# Perhaps this should be a config option?
}