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https://github.com/bblanchon/ArduinoJson.git
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Updated the examples on wandbox.org
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@ -8,11 +8,11 @@
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#include "ArduinoJson.h"
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int main() {
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// The JSON document
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// Allocate the JSON document
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//
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// Inside the brackets, 200 is the RAM allocated to this document.
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// Don't forget to change this value to match your requirement.
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// Use arduinojson.org/assistant to compute the capacity.
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// Use arduinojson.org/v6/assistant to compute the capacity.
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StaticJsonDocument<200> doc;
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// StaticJsonObject allocates memory on the stack, it can be
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@ -20,30 +20,35 @@ int main() {
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//
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// DynamicJsonDocument doc(200);
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// Make our document be an object
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JsonObject root = doc.to<JsonObject>();
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// Add values in the object
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// StaticJsonObject allocates memory on the stack, it can be
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// replaced by DynamicJsonDocument which allocates in the heap.
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//
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// Most of the time, you can rely on the implicit casts.
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// In other case, you can do root.set<long>("time", 1351824120);
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root["sensor"] = "gps";
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root["time"] = 1351824120;
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// DynamicJsonDocument doc(200);
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// Add values in the document
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//
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doc["sensor"] = "gps";
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doc["time"] = 1351824120;
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// Add an array.
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//
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JsonArray data = root.createNestedArray("data");
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JsonArray data = doc.createNestedArray("data");
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data.add(48.756080);
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data.add(2.302038);
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serializeJson(root, std::cout);
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// This prints:
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// Generate the minified JSON and send it to STDOUT
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//
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serializeJson(doc, std::cout);
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// The above line prints:
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// {"sensor":"gps","time":1351824120,"data":[48.756080,2.302038]}
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// Start a new line
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std::cout << std::endl;
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serializeJsonPretty(root, std::cout);
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// This prints:
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// Generate the prettified JSON and send it to STDOUT
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//
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serializeJsonPretty(doc, std::cout);
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// The above line prints:
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// {
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// "sensor": "gps",
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// "time": 1351824120,
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@ -52,6 +57,4 @@ int main() {
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// 2.302038
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// ]
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// }
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return 0;
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}
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@ -8,23 +8,26 @@
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#include "ArduinoJson.h"
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int main() {
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// Root JSON object
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// Allocate the JSON document
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//
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// Inside the brackets, 300 is the size of the memory pool in bytes.
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// Inside the brackets, 200 is the capacity of the memory pool in bytes.
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// Don't forget to change this value to match your JSON document.
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// Use arduinojson.org/assistant to compute the capacity.
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// Use arduinojson.org/v6/assistant to compute the capacity.
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StaticJsonDocument<300> doc;
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// StaticJsonDocument<N> allocates memory on the stack, it can be
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// replaced by DynamicJsonObject which allocates in the heap.
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// replaced by DynamicJsonDocument which allocates in the heap.
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//
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// DynamicJsonObject doc(200);
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// DynamicJsonDocument doc(200);
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// JSON input string.
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//
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// It's better to use a char[] as shown here.
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// If you use a const char* or a String, ArduinoJson will
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// have to make a copy of the input in the JsonBuffer.
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// Using a char[], as shown here, enables the "zero-copy" mode. This mode uses
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// the minimal amount of memory because the JsonDocument stores pointers to
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// the input buffer.
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// If you use another type of input, ArduinoJson must copy the strings from
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// the input to the JsonDocument, so you need to increase the capacity of the
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// JsonDocument.
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char json[] =
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"{\"sensor\":\"gps\",\"time\":1351824120,\"data\":[48.756080,2.302038]}";
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@ -37,17 +40,14 @@ int main() {
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return 1;
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}
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// Get the root object in the document
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JsonObject root = doc.as<JsonObject>();
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// Fetch values.
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//
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// Most of the time, you can rely on the implicit casts.
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// In other case, you can do doc["time"].as<long>();
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const char* sensor = root["sensor"];
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long time = root["time"];
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double latitude = root["data"][0];
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double longitude = root["data"][1];
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const char* sensor = doc["sensor"];
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long time = doc["time"];
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double latitude = doc["data"][0];
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double longitude = doc["data"][1];
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// Print values.
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std::cout << sensor << std::endl;
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@ -49,17 +49,14 @@ int main() {
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return 1;
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}
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// Get the root object in the document
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JsonObject root = doc.as<JsonObject>();
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// Fetch values.
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//
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// Most of the time, you can rely on the implicit casts.
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// In other case, you can do doc["time"].as<long>();
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const char* sensor = root["sensor"];
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long time = root["time"];
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double latitude = root["data"][0];
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double longitude = root["data"][1];
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const char* sensor = doc["sensor"];
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long time = doc["time"];
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double latitude = doc["data"][0];
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double longitude = doc["data"][1];
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// Print values.
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std::cout << sensor << std::endl;
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