rusefi-1/firmware/hw_layer/pin_repository.cpp

188 lines
4.6 KiB
C++

/**
* @file pin_repository.cpp
* @brief I/O pin registry code
*
* This job of this class is to make sure that we are not using same hardware pin for two
* different purposes.
*
* @date Jan 15, 2013
* @author Andrey Belomutskiy, (c) 2012-2018
*/
#include "main.h"
#include "pin_repository.h"
#include "eficonsole.h"
#include "memstreams.h"
#include "chprintf.h"
#include "rusefi.h"
#define PIN_REPO_SIZE 7 * PORT_SIZE
// todo: move this into PinRepository class
const char *PIN_USED[PIN_REPO_SIZE];
static int initialized = FALSE;
static LoggingWithStorage logger("pin repos");
static int totalPinsUsed = 0;
static ioportid_t ports[7] = {GPIOA,
GPIOB,
GPIOC,
GPIOD,
GPIOE,
GPIOF,
GPIOH,
};
PinRepository::PinRepository() {
}
static int getPortIndex(ioportid_t port) {
efiAssert(port != NULL, "null port", -1);
if (port == GPIOA)
return 0;
if (port == GPIOB)
return 1;
if (port == GPIOC)
return 2;
if (port == GPIOD)
return 3;
#if defined(STM32F4XX)
if (port == GPIOE)
return 4;
#endif /* defined(STM32F4XX) */
if (port == GPIOF)
return 5;
#if defined(STM32F4XX)
if (port == GPIOH)
return 6;
#endif /* defined(STM32F4XX) */
firmwareError(CUSTOM_ERR_UNKNOWN_PORT, "unknown port");
return -1;
}
static void reportPins(void) {
for (int i = 0; i < PIN_REPO_SIZE; i++) {
const char *name = PIN_USED[i];
int portIndex = i / PORT_SIZE;
int pin = i % PORT_SIZE;
ioportid_t port = ports[portIndex];
if (name != NULL) {
scheduleMsg(&logger, "pin %s%d: %s", portname(port), pin, name);
}
}
scheduleMsg(&logger, "Total pins count: %d", totalPinsUsed);
}
static MemoryStream portNameStream;
static char portNameBuffer[20];
/**
* Parse string representation of physical pin into brain_pin_e ordinal.
*
* @return GPIO_UNASSIGNED for "none", GPIO_INVALID for invalid entry
*/
brain_pin_e parseBrainPin(const char *str) {
if (strEqual(str, "none"))
return GPIO_UNASSIGNED;
// todo: create method toLowerCase?
if (str[0] != 'p' && str[0] != 'P') {
return GPIO_INVALID;
}
char port = str[1];
brain_pin_e basePin;
if (port >= 'a' && port <= 'z') {
basePin = (brain_pin_e) ((int) GPIOA_0 + 16 * (port - 'a'));
} else if (port >= 'A' && port <= 'Z') {
basePin = (brain_pin_e) ((int) GPIOA_0 + 16 * (port - 'A'));
} else {
return GPIO_INVALID;
}
const char *pinStr = str + 2;
int pin = atoi(pinStr);
return (brain_pin_e)(basePin + pin);
}
const char *hwPortname(brain_pin_e brainPin) {
if (brainPin == GPIO_INVALID) {
return "INVALID";
}
ioportid_t hwPort = getHwPort("hostname", brainPin);
if (hwPort == GPIO_NULL) {
return "NONE";
}
int hwPin = getHwPin("hostname", brainPin);
portNameStream.eos = 0; // reset
chprintf((BaseSequentialStream *) &portNameStream, "%s%d", portname(hwPort), hwPin);
portNameStream.buffer[portNameStream.eos] = 0; // need to terminate explicitly
return portNameBuffer;
}
void initPinRepository(void) {
/**
* this method cannot use console because this method is invoked before console is initialized
*/
msObjectInit(&portNameStream, (uint8_t*) portNameBuffer, sizeof(portNameBuffer), 0);
for (int i = 0; i < PIN_REPO_SIZE; i++)
PIN_USED[i] = 0;
initialized = true;
addConsoleAction("pins", reportPins);
}
static int getIndex(ioportid_t port, ioportmask_t pin) {
int portIndex = getPortIndex(port);
return portIndex * PORT_SIZE + pin;
}
/**
* See also unmarkPin()
* @return true if this pin was already used, false otherwise
*/
bool markUsed(ioportid_t port, ioportmask_t pin, const char *msg) {
if (!initialized) {
firmwareError(CUSTOM_ERR_PIN_REPO, "repository not initialized");
return false;
}
int index = getIndex(port, pin);
if (PIN_USED[index] != NULL) {
/**
* todo: the problem is that this warning happens before the console is even
* connected, so the warning is never displayed on the console and that's quite a problem!
*/
// warning(OBD_PCM_Processor_Fault, "%s%d req by %s used by %s", portname(port), pin, msg, PIN_USED[index]);
firmwareError(CUSTOM_ERR_PIN_ALREADY_USED_1, "%s%d req by %s used by %s", portname(port), pin, msg, PIN_USED[index]);
return true;
}
PIN_USED[index] = msg;
totalPinsUsed++;
return false;
}
const char * getPinFunction(brain_input_pin_e brainPin) {
ioportid_t port = getHwPort("getF", brainPin);
ioportmask_t pin = getHwPin("getF", brainPin);
int index = getIndex(port, pin);
return PIN_USED[index];
}
void unmarkPin(brain_pin_e brainPin) {
if (brainPin == GPIO_UNASSIGNED) {
return;
}
ioportid_t port = getHwPort("unmark", brainPin);
ioportmask_t pin = getHwPin("unmark", brainPin);
int index = getIndex(port, pin);
if (PIN_USED[index] != NULL) {
PIN_USED[index] = NULL;
totalPinsUsed--;
}
}