Compare commits

...

4 Commits

Author SHA1 Message Date
1722ba7e5d Clean up shell.c 2021-10-10 21:00:28 +02:00
7a44a383ff Fix style in file 2021-10-10 20:49:42 +02:00
7a2c77a83e Fix style problems in main-cycle-counter 2021-10-10 20:47:15 +02:00
c8e3bf5de2 Fix style problems in main.c 2021-10-10 20:45:59 +02:00
4 changed files with 61 additions and 129 deletions

View File

@ -1,39 +1,39 @@
/* Reflow Oven Controller
*
* Copyright (C) 2020 Mario Hüttel <mario.huettel@gmx.net>
*
* This file is part of the Reflow Oven Controller Project.
*
* The reflow oven controller is free software: you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* The Reflow Oven Control Firmware is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License
* along with the reflow oven controller project.
* If not, see <http://www.gnu.org/licenses/>.
*/
*
* Copyright (C) 2020 Mario Hüttel <mario.huettel@gmx.net>
*
* This file is part of the Reflow Oven Controller Project.
*
* The reflow oven controller is free software: you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* The Reflow Oven Control Firmware is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License
* along with the reflow oven controller project.
* If not, see <http://www.gnu.org/licenses/>.
*/
#include <reflow-controller/main-cycle-counter.h>
#include <helper-macros/helper-macros.h>
static uint64_t IN_SECTION(.ccm.bss) main_cycle_counter;
void main_cycle_counter_init()
void main_cycle_counter_init(void)
{
main_cycle_counter = 0ULL;
}
void main_cycle_counter_inc()
void main_cycle_counter_inc(void)
{
main_cycle_counter++;
}
uint64_t main_cycle_counter_get()
uint64_t main_cycle_counter_get(void)
{
return main_cycle_counter;
}

View File

@ -140,9 +140,9 @@ static bool mount_sd_card_if_avail(bool mounted)
if (res == FR_OK) {
led_set(1, 1);
return true;
}
else
} else {
return false;
}
}
return mounted;
@ -202,9 +202,8 @@ static inline void setup_system(void)
settings_setup();
/* Load the overtemperature limit from eeprom if available. Otherwise the default value will be used */
if (settings_load_overtemp_limit(&tmp) == SETT_LOAD_SUCCESS) {
if (settings_load_overtemp_limit(&tmp) == SETT_LOAD_SUCCESS)
safety_controller_set_overtemp_limit(tmp);
}
handle_boot_status();
@ -241,9 +240,8 @@ int main(void)
/* Try load the calibration. This will only succeed if there's an EEPROM */
status = settings_load_calibration(&sens, &offset);
if (!status) {
if (!status)
adc_pt1000_set_resistance_calibration(offset, sens, true);
}
shell_handle = shell_init(write_shell_callback);
shell_print_motd(shell_handle);
@ -261,9 +259,8 @@ int main(void)
adc_pt1000_get_resistance_calibration(NULL, NULL, &cal_active);
if (!cal_active) {
status = settings_load_calibration(&sens, &offset);
if (!status) {
if (!status)
adc_pt1000_set_resistance_calibration(offset, sens, true);
}
}
}
@ -277,9 +274,9 @@ int main(void)
temp_profile_executer_handle();
safety_controller_handle();
if (oven_pid_get_status() == OVEN_PID_RUNNING) {
if (oven_pid_get_status() == OVEN_PID_RUNNING)
oven_pid_handle();
}
oven_driver_apply_power_level();
safety_controller_report_timing(ERR_TIMING_MAIN_LOOP);

View File

@ -89,7 +89,8 @@ float pid_sample(struct pid_controller *pid, float deviation)
}
/* Calculate derivative part */
pid->derivate = pid->k_deriv_t * (deviation - pid->last_in) + pid->k_inv_deriv_t * pid->derivate;
pid->derivate = pid->k_deriv_t * (deviation - pid->last_in) +
pid->k_inv_deriv_t * pid->derivate;
output += pid->derivate;
output += pid->integral;

View File

@ -51,7 +51,6 @@
#define GIT_VER "VERSION NOT SET"
#endif
extern struct stm_uart shell_uart;
static shellmatta_instance_t shell;
static char shell_buffer[512];
static char IN_SECTION(.ccm.bss) history_buffer[512];
@ -71,7 +70,7 @@ static shellmatta_retCode_t shell_cmd_ver(const shellmatta_handle_t handle,
unique_id_get(&high_id, &mid_id, &low_id);
shellmatta_printf(handle, "Reflow Oven Controller Firmware " xstr(GIT_VER) "\r\n"
"Compiled: " __DATE__ " at " __TIME__ "\r\n");
"Compiled: " __DATE__ " at " __TIME__ "\r\n");
shellmatta_printf(handle, "Serial: %08X-%08X-%08X\r\n", high_id, mid_id, low_id);
pcb_rev = get_pcb_hardware_version();
@ -163,13 +162,12 @@ static shellmatta_retCode_t shell_cmd_pt1000_res(const shellmatta_handle_t han
pt1000_status = adc_pt1000_get_current_resistance(&resistance);
if (pt1000_status == 2) {
if (pt1000_status == 2)
strcat(display_status, "UNSTABLE");
} else if (pt1000_status) {
else if (pt1000_status)
strcpy(display_status, "ERROR");
} else {
else
strcpy(display_status, "VALID");
}
temp_conv_status = temp_converter_convert_resistance_to_temp(resistance, &temp);
switch (temp_conv_status) {
@ -186,7 +184,8 @@ static shellmatta_retCode_t shell_cmd_pt1000_res(const shellmatta_handle_t han
break;
}
shellmatta_printf(handle, "PT1000 resistance: %.2f Ohm (%s%.1f °C) [%s]\r\n", resistance, temp_prefix,temp, display_status);
shellmatta_printf(handle, "PT1000 resistance: %.2f Ohm (%s%.1f °C) [%s]\r\n",
resistance, temp_prefix, temp, display_status);
return SHELLMATTA_OK;
}
@ -342,9 +341,8 @@ static shellmatta_retCode_t shell_cmd_read_flags(const shellmatta_handle_t handl
do {
opt_ret = shellmatta_opt_long(handle, options, &option, &argument, &len);
if (opt_ret != SHELLMATTA_OK) {
if (opt_ret != SHELLMATTA_OK)
break;
}
switch (option) {
case 'a':
@ -353,7 +351,7 @@ static shellmatta_retCode_t shell_cmd_read_flags(const shellmatta_handle_t handl
default:
break;
}
} while(1);
} while (1);
@ -377,7 +375,11 @@ static shellmatta_retCode_t shell_cmd_read_flags(const shellmatta_handle_t handl
if (tryack)
safety_controller_ack_flag(flag_enum);
shellmatta_printf(handle, "\t%2lu) %-20s\t[%s]\r\n", i+1, name, (flag ? "\e[1;31mERR\e[m" : "\e[32mOK\e[m"));
shellmatta_printf(handle,
"\t%2lu) %-20s\t[%s]\r\n",
i+1,
name,
(flag ? "\e[1;31mERR\e[m" : "\e[32mOK\e[m"));
}
shellmatta_printf(handle, "\r\nAnalog Monitors\r\n"
@ -421,7 +423,7 @@ static shellmatta_retCode_t shell_cmd_read_flags(const shellmatta_handle_t handl
shellmatta_printf(handle, "\t%2lu) %-20s\t", i+1, name);
if (timing_info.enabled)
shellmatta_printf(handle, "last tick: %lu ms\r\n", (unsigned long int)timing_info.delta);
shellmatta_printf(handle, "last tick: %lu ms\r\n", (unsigned long)timing_info.delta);
else
shellmatta_printf(handle, "\e[1;31mDISABLED\e[m\r\n");
}
@ -442,11 +444,10 @@ static shellmatta_retCode_t shell_cmd_save_cal(const shellmatta_handle_t handle,
adc_pt1000_get_resistance_calibration(&offset, &sens_dev, &active);
res = settings_save_calibration(sens_dev, offset, active);
if (res) {
if (res)
shellmatta_printf(handle, "Error saving %d\r\n", res);
} else {
else
shellmatta_printf(handle, "Saved!\r\n");
}
return SHELLMATTA_OK;
}
@ -458,7 +459,8 @@ static shellmatta_retCode_t shell_cmd_hang(const shellmatta_handle_t handle, con
(void)arguments;
(void)length;
while (1337);
while (1337)
;
return SHELLMATTA_OK;
}
@ -577,9 +579,9 @@ static shellmatta_retCode_t shell_cmd_dump_safety_mem(const shellmatta_handle_t
}
fres = f_write(&file, buffer, used_bytes - 1, &bw);
if (fres != FR_OK) {
if (fres != FR_OK)
shellmatta_printf(handle, "Error writing to file %s\r\n", token);
}
free(buffer);
f_close(&file);
return SHELLMATTA_OK;
@ -777,9 +779,9 @@ shellmatta_retCode_t shell_cmd_execute(const shellmatta_handle_t handle, const c
if (state->status != TPE_RUNNING) {
shellmatta_printf(handle, "Profile executed.\r\n");
running = false;
if(state->status == TPE_ABORT) {
if (state->status == TPE_ABORT)
shellmatta_printf(handle, "Profile execution aborted!\r\n");
}
return SHELLMATTA_OK;
}
@ -875,81 +877,6 @@ shellmatta_retCode_t shell_cmd_filter_alpha(const shellmatta_handle_t handle, co
return SHELLMATTA_OK;
}
#if 0
shellmatta_retCode_t shell_cmd_hf_stream(const shellmatta_handle_t handle, const char *args, uint32_t len)
{
float *data1;
volatile int flag;
FRESULT fres;
char *strbuff;
FIL f;
const size_t buff_size = 2000UL;
uint32_t idx;
uint32_t blocks;
uint32_t remainder;
int cnt;
UINT bw;
data1 = (float *)malloc(buff_size*sizeof(float));
strbuff = (char *)malloc(1024);
if (!data1 || !strbuff) {
shellmatta_printf(handle, "Allocating memory failed!\r\n");
goto free_data;
}
fres = f_open(&f, "pt1000_hf.dat", FA_CREATE_ALWAYS | FA_WRITE);
if (fres != FR_OK) {
shellmatta_printf(handle, "Cannot open file.\r\n");
goto free_data;
}
shellmatta_printf(handle, "Acquire data...\r\n");
flag = 0;
adc_pt1000_stream_raw_value_to_memory(data1, buff_size, &flag);
while (!flag) {
safety_controller_handle();
}
shellmatta_printf(handle, "Finished. Writing file...\r\n");
blocks = buff_size / 10UL;
remainder = buff_size % 10UL;
for (idx = 0; idx < blocks; idx++) {
cnt = snprintf(strbuff, 1024, "%.2f\n%.2f\n%.2f\n%.2f\n%.2f\n%.2f\n%.2f\n%.2f\n%.2f\n%.2f\n",
data1[idx * 10+0],
data1[idx * 10+1],
data1[idx * 10+2],
data1[idx * 10+3],
data1[idx * 10+4],
data1[idx * 10+5],
data1[idx * 10+6],
data1[idx * 10+7],
data1[idx * 10+8],
data1[idx * 10+9]);
f_write(&f, strbuff, (UINT)cnt, &bw);
safety_controller_handle();
}
for (idx = 0; idx < remainder; idx++) {
cnt = snprintf(strbuff, 1024, "%.2f\n", data1[blocks * 10 + idx]);
f_write(&f, strbuff, (UINT)cnt, &bw);
}
f_close(&f);
shellmatta_printf(handle, "Completed!\r\n");
free_data:
if (data1)
free(data1);
if (strbuff)
free(strbuff);
return SHELLMATTA_OK;
}
#endif
//typedef struct shellmatta_cmd
//{
// char *cmd; /**< command name */
@ -1152,8 +1079,15 @@ shellmatta_handle_t shell_init(shellmatta_write_t write_func)
shellmatta_handle_t handle;
shellmatta_retCode_t ret;
ret = shellmatta_doInit(&shell, &handle, shell_buffer, sizeof(shell_buffer), history_buffer, sizeof(history_buffer),
"\e[1;32mReflow Controller>\e[m ", cmd, write_func);
ret = shellmatta_doInit(&shell,
&handle,
shell_buffer,
sizeof(shell_buffer),
history_buffer,
sizeof(history_buffer),
"\e[1;32mReflow Controller>\e[m ",
cmd,
write_func);
if (ret != SHELLMATTA_OK)
handle = NULL;