implement async handlers for pulsing pw_sw
This commit is contained in:
parent
c0e774c08c
commit
426c04116f
2
.gitignore
vendored
2
.gitignore
vendored
@ -1,3 +1,3 @@
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**/build/*
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**/secret.h
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**/htmldata.c
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**/wwwdata.c
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17
Makefile
17
Makefile
@ -1,16 +1,13 @@
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#TOPTARGETS := all clean
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.PHONY: all clean build makefsdata
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SUBDIRS := build
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all: clean makefsdata build
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all: makefsdata $(SUBDIRS)
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clean:
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$(MAKE) -C build/ clean
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rm -rf wwwdata.c
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makefsdata:
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python3 makefsdata.py
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clean: $(SUBDIRS)
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rm -rf htmldata.c
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$(SUBDIRS):
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$(MAKE) -C $@ $(MAKECMDGOALS)
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.PHONY: all makefsdata clean $(SUBDIRS)
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build:
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$(MAKE) -C build/
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56
cgi.h
56
cgi.h
@ -1,32 +1,40 @@
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#ifndef CGI_H
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#define CGI_H
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#include "lwip/apps/httpd.h"
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#include "pico/cyw43_arch.h"
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#include "handlers.h"
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// CGI handler which is run when a request for /led.cgi is detected
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const char * cgi_led_handler(int iIndex, int iNumParams, char *pcParam[], char *pcValue[])
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{
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// Check if an request for LED has been made (/led.cgi?led=x)
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if (strcmp(pcParam[0] , "led") == 0){
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// Look at the argument to check if LED is to be turned on (x=1) or off (x=0)
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if(strcmp(pcValue[0], "0") == 0)
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cyw43_arch_gpio_put(CYW43_WL_GPIO_LED_PIN, 0);
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else if(strcmp(pcValue[0], "1") == 0)
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cyw43_arch_gpio_put(CYW43_WL_GPIO_LED_PIN, 1);
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}
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// Send the index page back to the user
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return "/index.shtml";
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const char * cgi_power_handler (int iIndex, int iNumParams, char *pcParam[], char *pcValue[]) {
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// Check if an request for power has been made (/power?requested_state=x)
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if (strcmp(pcParam[0] , "requested_state") == 0){
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// Look at the argument to check if LED is to be turned on (x=1) or off (x=0)
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if(strcmp(pcValue[0], "0") == 0) {
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bmc_power_handler(false);
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}
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else if(strcmp(pcValue[0], "1") == 0) {
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bmc_power_handler(true);
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}
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}
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// Send the index page back to the user
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return "/power.ssi";
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}
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const char * cgi_status_handler (int iIndex, int iNumParams, char *pcParam[], char *pcValue[]) {
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return "/status.ssi";
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}
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// tCGI Struct
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// Fill this with all of the CGI requests and their respective handlers
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static const tCGI cgi_handlers[] = {
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{
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// Html request for "/led.cgi" triggers cgi_handler
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"/led.cgi", cgi_led_handler
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},
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{
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"/power", cgi_power_handler
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},
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{
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"/status", cgi_status_handler
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}
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};
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void cgi_init(void)
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{
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http_set_cgi_handlers(cgi_handlers, 1);
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}
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void cgi_init(void) {
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http_set_cgi_handlers(cgi_handlers, 2);
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}
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#endif
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38
handlers.h
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38
handlers.h
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@ -0,0 +1,38 @@
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#ifndef HANDLERS_H
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#define HANDLERS_H
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#include "pico/stdlib.h"
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#define PW_SW_DELAY_MS 100
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#define STATE_UPDATE_REPEAT_DELAY_MS 100
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bool current_state = false;
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int64_t pw_sw_on_async (alarm_id_t id, void * user_data) {
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cyw43_arch_gpio_put(CYW43_WL_GPIO_LED_PIN, 1);
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return 0; // do not reschedule alarm
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}
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int64_t pw_sw_off_async (alarm_id_t id, void * user_data) {
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cyw43_arch_gpio_put(CYW43_WL_GPIO_LED_PIN, 0);
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return 0; // do not reschedule alarm
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}
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bool update_current_state_async (repeating_timer_t * rt) {
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return true; // continue repeating alarm
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}
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bool bmc_power_handler (bool requested_state) {
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if (requested_state != current_state) {
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add_alarm_in_ms(0, pw_sw_on_async, NULL, true);
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add_alarm_in_ms(PW_SW_DELAY_MS, pw_sw_off_async, NULL, true);
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}
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}
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struct repeating_timer * bmc_handler_init () {
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struct repeating_timer * timer = malloc(sizeof(struct repeating_timer));
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add_repeating_timer_ms(STATE_UPDATE_REPEAT_DELAY_MS, update_current_state_async, NULL, timer);
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return timer;
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}
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#endif
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@ -1,20 +0,0 @@
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<!DOCTYPE html>
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<html>
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<head>
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<title>PicoW Webserver</title>
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</head>
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<body> <h1>PicoW Webserver Tutorial</h1>
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<br>
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<h2>This bit is SSI:</h2>
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<p>Voltage: <!--#volt--></p>
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<p>Temp: <!--#temp--> C</p>
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<p>LED is: <!--#led--></p>
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<br>
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<h2>This bit is CGI:</h2>
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<a href="/led.cgi?led=1"><button>LED ON</button></a>
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<a href="/led.cgi?led=0"><button>LED OFF</button></a>
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<br>
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<br>
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<a href="/index.shtml">Refresh</a>
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</body>
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</html>
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@ -90,4 +90,4 @@
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#define LWIP_HTTPD_CGI 1
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#define LWIP_HTTPD_SSI_INCLUDE_TAG 0
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#define HTTPD_SERVER_PORT 80
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#define HTTPD_FSDATA_FILE "htmldata.c"
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#define HTTPD_FSDATA_FILE "wwwdata.c"
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142
makefsdata.py
142
makefsdata.py
@ -8,13 +8,13 @@ import os
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import binascii
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#Create file to write output into
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output = open('htmldata.c', 'w')
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output = open('wwwdata.c', 'w')
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#Traverse directory, generate list of files
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files = list()
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os.chdir('./html_files')
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os.chdir('./www')
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for(dirpath, dirnames, filenames) in os.walk('.'):
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files += [os.path.join(dirpath, file) for file in filenames]
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files += [os.path.join(dirpath, file) for file in filenames]
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filenames = list()
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varnames = list()
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@ -22,85 +22,87 @@ varnames = list()
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#Generate appropriate HTTP headers
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for file in files:
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if '404' in file:
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header = "HTTP/1.0 404 File not found\r\n"
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else:
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header = "HTTP/1.0 200 OK\r\n"
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if '404' in file:
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header = "HTTP/1.0 404 File not found\r\n"
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else:
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header = "HTTP/1.0 200 OK\r\n"
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header += "Server: lwIP/pre-0.6 (http://www.sics.se/~adam/lwip/)\r\n"
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header += "Server: lwIP/pre-0.6 (http://www.sics.se/~adam/lwip/)\r\n"
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if '.html' in file:
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header += "Content-type: text/html\r\n"
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elif '.shtml' in file:
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header += "Content-type: text/html\r\n"
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elif '.jpg' in file:
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header += "Content-type: image/jpeg\r\n"
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elif '.gif' in file:
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header += "Content-type: image/gif\r\n"
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elif '.png' in file:
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header += "Content-type: image/png\r\n"
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elif '.class' in file:
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header += "Content-type: application/octet-stream\r\n"
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elif '.js' in file:
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header += "Content-type: text/javascript\r\n"
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elif '.css' in file:
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header += "Content-type: text/css\r\n"
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elif '.svg' in file:
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header += "Content-type: image/svg+xml\r\n"
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else:
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header += "Content-type: text/plain\r\n"
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if '.html' in file:
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header += "Content-type: text/html\r\n"
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elif '.shtml' in file:
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header += "Content-type: text/html\r\n"
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elif '.jpg' in file:
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header += "Content-type: image/jpeg\r\n"
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elif '.gif' in file:
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header += "Content-type: image/gif\r\n"
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elif '.png' in file:
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header += "Content-type: image/png\r\n"
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elif '.class' in file:
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header += "Content-type: application/octet-stream\r\n"
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elif '.js' in file:
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header += "Content-type: text/javascript\r\n"
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elif '.css' in file:
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header += "Content-type: text/css\r\n"
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elif '.svg' in file:
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header += "Content-type: image/svg+xml\r\n"
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elif ".ssi" in file:
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header += "Content-type: application/json\r\n"
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else:
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header += "Content-type: text/plain\r\n"
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header += "\r\n"
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header += "\r\n"
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fvar = file[1:] #remove leading dot in filename
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fvar = fvar.replace('/', '_') #replace *nix path separator with underscore
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fvar = fvar.replace('\\', '_') #replace DOS path separator with underscore
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fvar = fvar.replace('.', '_') #replace file extension dot with underscore
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fvar = file[1:] #remove leading dot in filename
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fvar = fvar.replace('/', '_') #replace *nix path separator with underscore
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fvar = fvar.replace('\\', '_') #replace DOS path separator with underscore
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fvar = fvar.replace('.', '_') #replace file extension dot with underscore
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output.write("static const unsigned char data{}[] = {{\n".format(fvar))
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output.write("\t/* {} */\n\t".format(file))
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output.write("static const unsigned char data{}[] = {{\n".format(fvar))
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output.write("\t/* {} */\n\t".format(file))
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#first set of hex data encodes the filename
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b = bytes(file[1:].replace('\\', '/'), 'utf-8') #change DOS path separator to forward slash
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for byte in binascii.hexlify(b, b' ', 1).split():
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output.write("0x{}, ".format(byte.decode()))
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output.write("0,\n\t")
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#first set of hex data encodes the filename
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b = bytes(file[1:].replace('\\', '/'), 'utf-8') #change DOS path separator to forward slash
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for byte in binascii.hexlify(b, b' ', 1).split():
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output.write("0x{}, ".format(byte.decode()))
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output.write("0,\n\t")
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#second set of hex data is the HTTP header/mime type we generated above
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b = bytes(header, 'utf-8')
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count = 0
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for byte in binascii.hexlify(b, b' ', 1).split():
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output.write("0x{}, ".format(byte.decode()))
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count = count + 1
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if(count == 10):
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output.write("\n\t")
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count = 0
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output.write("\n\t")
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#second set of hex data is the HTTP header/mime type we generated above
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b = bytes(header, 'utf-8')
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count = 0
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for byte in binascii.hexlify(b, b' ', 1).split():
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output.write("0x{}, ".format(byte.decode()))
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count = count + 1
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if(count == 10):
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output.write("\n\t")
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count = 0
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output.write("\n\t")
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#finally, dump raw hex data from files
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with open(file, 'rb') as f:
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count = 0
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while(byte := f.read(1)):
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byte = binascii.hexlify(byte)
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output.write("0x{}, ".format(byte.decode()))
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count = count + 1
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if(count == 10):
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output.write("\n\t")
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count = 0
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output.write("};\n\n")
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#finally, dump raw hex data from files
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with open(file, 'rb') as f:
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count = 0
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while(byte := f.read(1)):
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byte = binascii.hexlify(byte)
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output.write("0x{}, ".format(byte.decode()))
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count = count + 1
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if(count == 10):
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output.write("\n\t")
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count = 0
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output.write("};\n\n")
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filenames.append(file[1:])
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varnames.append(fvar)
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filenames.append(file[1:])
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varnames.append(fvar)
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for i in range(len(filenames)):
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prevfile = "NULL"
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if(i > 0):
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prevfile = "file" + varnames[i-1]
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prevfile = "NULL"
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if(i > 0):
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prevfile = "file" + varnames[i-1]
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output.write("const struct fsdata_file file{0}[] = {{{{ {1}, data{2}, ".format(varnames[i], prevfile, varnames[i]))
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output.write("data{} + {}, ".format(varnames[i], len(filenames[i]) + 1))
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output.write("sizeof(data{}) - {}, ".format(varnames[i], len(filenames[i]) + 1))
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output.write("FS_FILE_FLAGS_HEADER_INCLUDED | FS_FILE_FLAGS_HEADER_PERSISTENT}};\n")
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output.write("const struct fsdata_file file{0}[] = {{{{ {1}, data{2}, ".format(varnames[i], prevfile, varnames[i]))
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output.write("data{} + {}, ".format(varnames[i], len(filenames[i]) + 1))
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output.write("sizeof(data{}) - {}, ".format(varnames[i], len(filenames[i]) + 1))
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output.write("FS_FILE_FLAGS_HEADER_INCLUDED | FS_FILE_FLAGS_HEADER_PERSISTENT}};\n")
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output.write("\n#define FS_ROOT file{}\n".format(varnames[-1]))
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output.write("#define FS_NUMFILES {}\n".format(len(filenames)))
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40
ssi.h
40
ssi.h
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#ifndef SSI_H
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#define SSI_H
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#include "lwip/apps/httpd.h"
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#include "pico/cyw43_arch.h"
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#include "hardware/adc.h"
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#include "handlers.h"
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// SSI tags - tag length limited to 8 bytes by default
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const char * ssi_tags[] = {"volt","temp","led"};
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const char * ssi_tags[] = {"volt", "temp", "power"};
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u16_t ssi_handler(int iIndex, char *pcInsert, int iInsertLen) {
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size_t printed;
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switch (iIndex) {
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case 0: // volt
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{
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const float voltage = adc_read() * 3.3f / (1 << 12);
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printed = snprintf(pcInsert, iInsertLen, "%f", voltage);
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const float voltage = adc_read() * 3.3f / (1 << 12);
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printed = snprintf(pcInsert, iInsertLen, "%f", voltage);
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}
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break;
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case 1: // temp
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{
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const float voltage = adc_read() * 3.3f / (1 << 12);
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const float tempC = 27.0f - (voltage - 0.706f) / 0.001721f;
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printed = snprintf(pcInsert, iInsertLen, "%f", tempC);
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const float voltage = adc_read() * 3.3f / (1 << 12);
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const float tempC = 27.0f - (voltage - 0.706f) / 0.001721f;
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printed = snprintf(pcInsert, iInsertLen, "%f", tempC);
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}
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break;
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case 2: // led
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case 2: // power
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{
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bool led_status = cyw43_arch_gpio_get(CYW43_WL_GPIO_LED_PIN);
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if(led_status == true){
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printed = snprintf(pcInsert, iInsertLen, "ON");
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}
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else{
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printed = snprintf(pcInsert, iInsertLen, "OFF");
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}
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printed = snprintf(pcInsert, iInsertLen, "%d", current_state);
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}
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break;
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default:
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printed = 0;
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{
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printed = 0;
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}
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break;
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}
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return (u16_t)printed;
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return (u16_t) printed;
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}
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// Initialise the SSI handler
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void ssi_init() {
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// Initialise ADC (internal pin)
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adc_init();
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adc_set_temp_sensor_enabled(true);
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adc_select_input(4);
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http_set_ssi_handler(ssi_handler, ssi_tags, LWIP_ARRAYSIZE(ssi_tags));
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}
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}
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#endif
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1
www/power.ssi
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1
www/power.ssi
Normal file
@ -0,0 +1 @@
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{}
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5
www/status.ssi
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5
www/status.ssi
Normal file
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{
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"volt": <!--#volt-->,
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"temp": <!--#temp-->,
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"power": <!--#power-->
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}
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