polishing firmware flasher UI and messages
parent
86aa6a282c
commit
f2aa899fe0
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@ -563,8 +563,8 @@
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"firmwareFlasherFirmwareNotLoaded": {
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"message": "<span style=\"color: red\">Firmware not loaded</span>"
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},
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"firmwareFlasherFirmwareLoaded": {
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"message": "<span style=\"color: green\">Firmware loaded, ready for flashing</span>"
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"firmwareFlasherLocalFirmwareLoaded": {
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"message": "<span style=\"color: green\">Local Firmware loaded, ready for flashing</span>"
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},
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"firmwareFlasherHexCorrupted": {
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"message": "<span style=\"color: red\">HEX file appears to be corrupted</span>"
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39
js/stm32.js
39
js/stm32.js
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@ -42,11 +42,6 @@ var STM32_protocol = function() {
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this.page_size = 0;
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};
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// string = string .. duh
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STM32_protocol.prototype.GUI_status = function(string) {
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$('span.status').html(string);
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};
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// no input parameters
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STM32_protocol.prototype.connect = function(hex) {
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var self = this;
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@ -118,7 +113,7 @@ STM32_protocol.prototype.connect = function(hex) {
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}
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} else {
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console.log('Please select valid serial port');
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STM32.GUI_status('<span style="color: red">Please select valid serial port</span>');
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GUI.log('<span style="color: red">Please select valid serial port</span>');
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}
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};
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@ -147,7 +142,7 @@ STM32_protocol.prototype.initialize = function() {
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self.upload_process_alive = false;
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} else {
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console.log('STM32 - timed out, programming failed ...');
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STM32.GUI_status('STM32 - timed out, programming: <strong style="color: red">FAILED</strong>');
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GUI.log('STM32 - timed out, programming: <strong style="color: red">FAILED</strong>');
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// protocol got stuck, clear timer and disconnect
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GUI.interval_remove('STM32_timeout');
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@ -155,7 +150,7 @@ STM32_protocol.prototype.initialize = function() {
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// exit
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self.upload_procedure(99);
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}
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}, 1000);
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}, 2000);
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self.upload_procedure(1);
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};
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@ -226,7 +221,7 @@ STM32_protocol.prototype.send = function(Array, bytes_to_read, callback) {
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STM32_protocol.prototype.verify_response = function(val, data) {
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if (val != data[0]) {
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console.log('STM32 Communication failed, wrong response, expected: ' + val + ' received: ' + data[0]);
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STM32.GUI_status('STM32 Communication <span style="color: red">failed</span>, wrong response, expected: ' + val + ' received: ' + data[0]);
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GUI.log('STM32 Communication <span style="color: red">failed</span>, wrong response, expected: ' + val + ' received: ' + data[0]);
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// disconnect
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this.upload_procedure(99);
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@ -334,6 +329,8 @@ STM32_protocol.prototype.upload_procedure = function(step) {
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switch (step) {
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case 1:
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// initialize serial interface on the MCU side, auto baud rate settings
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GUI.log('Contacting bootloader ...');
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var send_counter = 0;
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GUI.interval_add('stm32_initialize_mcu', function() { // 200 ms interval (just in case mcu was already initialized), we need to break the 2 bytes command requirement
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self.send([0x7F], 1, function(reply) {
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@ -345,7 +342,7 @@ STM32_protocol.prototype.upload_procedure = function(step) {
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self.upload_procedure(2);
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} else {
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GUI.interval_remove('stm32_initialize_mcu');
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STM32.GUI_status('STM32 Communication with bootloader <span style="color: red">failed</span>');
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GUI.log('Communication with bootloader <span style="color: red">failed</span>');
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// disconnect
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self.upload_procedure(99);
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@ -392,10 +389,11 @@ STM32_protocol.prototype.upload_procedure = function(step) {
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break;
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case 4:
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// erase memory
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GUI.log('Erasing ...');
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if (!$('input.erase_chip').is(':checked')) {
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// EXPERIMENTAL
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console.log('Executing local erase (only needed pages)');
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STM32.GUI_status('Erasing');
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self.send([self.command.erase, 0xBC], 1, function(reply) { // 0x43 ^ 0xFF
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if (self.verify_response(self.status.ACK, reply)) {
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@ -415,9 +413,6 @@ STM32_protocol.prototype.upload_procedure = function(step) {
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self.send(buff, 1, function(reply) {
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if (self.verify_response(self.status.ACK, reply)) {
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console.log('Erasing: done');
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console.log('Writing data ...');
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STM32.GUI_status('<span style="color: green">Flashing ...</span>');
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// proceed to next step
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self.upload_procedure(5);
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}
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@ -426,16 +421,12 @@ STM32_protocol.prototype.upload_procedure = function(step) {
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});
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} else {
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console.log('Executing global chip erase');
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STM32.GUI_status('Erasing');
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self.send([self.command.erase, 0xBC], 1, function(reply) { // 0x43 ^ 0xFF
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if (self.verify_response(self.status.ACK, reply)) {
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self.send([0xFF, 0x00], 1, function(reply) {
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if (self.verify_response(self.status.ACK, reply)) {
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console.log('Erasing: done');
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console.log('Writing data ...');
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STM32.GUI_status('<span style="color: green">Flashing ...</span>');
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// proceed to next step
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self.upload_procedure(5);
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}
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@ -446,6 +437,9 @@ STM32_protocol.prototype.upload_procedure = function(step) {
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break;
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case 5:
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// upload
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console.log('Writing data ...');
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GUI.log('Flashing ...');
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var blocks = self.hex.data.length - 1;
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var flashing_block = 0;
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var address = self.hex.data[flashing_block].address;
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@ -507,8 +501,6 @@ STM32_protocol.prototype.upload_procedure = function(step) {
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} else {
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// all blocks flashed
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console.log('Writing: done');
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console.log('Verifying data ...');
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STM32.GUI_status('<span style="color: green">Verifying ...</span>');
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// proceed to next step
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self.upload_procedure(6);
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@ -521,6 +513,9 @@ STM32_protocol.prototype.upload_procedure = function(step) {
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break;
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case 6:
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// verify
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console.log('Verifying data ...');
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GUI.log('Verifying ...');
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var blocks = self.hex.data.length - 1;
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var reading_block = 0;
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var address = self.hex.data[reading_block].address;
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@ -592,7 +587,7 @@ STM32_protocol.prototype.upload_procedure = function(step) {
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if (verify) {
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console.log('Programming: SUCCESSFUL');
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STM32.GUI_status('Programming: <strong style="color: green">SUCCESSFUL</strong>');
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GUI.log('Programming: <strong style="color: green">SUCCESSFUL</strong>');
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// update progress bar
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self.progress_bar_e.addClass('valid');
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@ -601,7 +596,7 @@ STM32_protocol.prototype.upload_procedure = function(step) {
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self.upload_procedure(7);
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} else {
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console.log('Programming: FAILED');
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STM32.GUI_status('Programming: <strong style="color: red">FAILED</strong>');
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GUI.log('Programming: <strong style="color: red">FAILED</strong>');
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// update progress bar
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self.progress_bar_e.addClass('invalid');
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@ -254,7 +254,7 @@ STM32DFU_protocol.prototype.upload_procedure = function(step) {
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case 2:
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// full chip erase
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console.log('Executing global chip erase');
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STM32.GUI_status('Erasing');
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GUI.log('Erasing ...');
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self.controlTransfer('out', self.request.DNLOAD, 0, 0, 0, [0x41], function() {
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self.controlTransfer('in', self.request.GETSTATUS, 0, 0, 6, 0, function(data) {
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@ -282,7 +282,7 @@ STM32DFU_protocol.prototype.upload_procedure = function(step) {
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// upload
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// we dont need to clear the state as we are already using DFU_DNLOAD
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console.log('Writing data ...');
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STM32.GUI_status('<span style="color: green">Flashing ...</span>');
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GUI.log('Flashing ...');
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var blocks = self.hex.data.length - 1;
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var flashing_block = 0;
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@ -353,7 +353,7 @@ STM32DFU_protocol.prototype.upload_procedure = function(step) {
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case 5:
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// verify
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console.log('Verifying data ...');
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STM32.GUI_status('<span style="color: green">Verifying ...</span>');
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GUI.log('Verifying ...');
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var blocks = self.hex.data.length - 1;
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var reading_block = 0;
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@ -420,7 +420,7 @@ STM32DFU_protocol.prototype.upload_procedure = function(step) {
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if (verify) {
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console.log('Programming: SUCCESSFUL');
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STM32.GUI_status('Programming: <strong style="color: green">SUCCESSFUL</strong>');
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GUI.log('Programming: <strong style="color: green">SUCCESSFUL</strong>');
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// update progress bar
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self.progress_bar_e.addClass('valid');
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@ -429,7 +429,7 @@ STM32DFU_protocol.prototype.upload_procedure = function(step) {
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self.upload_procedure(6);
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} else {
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console.log('Programming: FAILED');
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STM32.GUI_status('Programming: <strong style="color: red">FAILED</strong>');
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GUI.log('Programming: <strong style="color: red">FAILED</strong>');
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// update progress bar
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self.progress_bar_e.addClass('invalid');
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@ -27,10 +27,17 @@
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.tab-firmware_flasher .note p {
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margin-bottom: 5px;
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}
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.tab-firmware_flasher .note input {
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.tab-firmware_flasher .note label {
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float: left;
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}
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.tab-firmware_flasher .note label input {
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float: left;
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margin-top: 2px;
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}
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.tab-firmware_flasher .note label span {
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font-weight: bold;
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margin-left: 6px;
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}
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.tab-firmware_flasher .note .flash_on_connect_wrapper {
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display: none;
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}
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@ -2,7 +2,6 @@
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<div class="info">
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<strong i18n="firmwareFlasherPath"></strong><span class="path">empty</span><br />
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<strong i18n="firmwareFlasherSize"></strong><span class="size">0 bytes</span><br />
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<strong i18n="firmwareFlasherStatus"></strong><span class="status">Firmware not loaded</span><br />
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<strong i18n="firmwareFlasherProgress"></strong><progress class="progress" value="0" min="0" max="100"></progress>
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</div>
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<div class="note">
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@ -10,16 +9,19 @@
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</p>
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<label>
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<input class="updating" type="checkbox" />
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<span style="font-weight: bold; margin-left: 6px" i18n="firmwareFlasherNoReboot"></span>
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</label><br />
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<span i18n="firmwareFlasherNoReboot"></span>
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</label>
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<div class="clear-both"></div>
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<label class="flash_on_connect_wrapper">
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<input class="flash_on_connect" type="checkbox" />
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<span style="font-weight: bold; margin-left: 6px" i18n="firmwareFlasherFlashOnConnect"></span><br />
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<span i18n="firmwareFlasherFlashOnConnect"></span><br />
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</label>
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<div class="clear-both"></div>
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<label>
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<input class="erase_chip" type="checkbox" />
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<span style="font-weight: bold; margin-left: 6px" i18n="firmwareFlasherFullChipErase"></span>
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</label><br />
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<span i18n="firmwareFlasherFullChipErase"></span>
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</label>
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<div class="clear-both"></div>
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</div>
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<div class="clear-both"></div>
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<div class="git_info">
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@ -46,12 +46,12 @@ function tab_initialize_firmware_flasher() {
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parsed_hex = data;
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if (parsed_hex) {
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STM32.GUI_status(chrome.i18n.getMessage('firmwareFlasherFirmwareLoaded'));
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GUI.log(chrome.i18n.getMessage('firmwareFlasherLocalFirmwareLoaded'));
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$('a.flash_firmware').removeClass('locked');
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$('span.size').html(parsed_hex.bytes_total + ' bytes');
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} else {
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STM32.GUI_status(chrome.i18n.getMessage('firmwareFlasherHexCorrupted'));
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GUI.log(chrome.i18n.getMessage('firmwareFlasherHexCorrupted'));
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}
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});
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}
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@ -71,17 +71,17 @@ function tab_initialize_firmware_flasher() {
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parsed_hex = data;
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if (parsed_hex) {
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STM32.GUI_status(chrome.i18n.getMessage('firmwareFlasherRemoteFirmwareLoaded'));
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GUI.log(chrome.i18n.getMessage('firmwareFlasherRemoteFirmwareLoaded'));
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$('a.flash_firmware').removeClass('locked');
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$('span.path').text('Using remote Firmware');
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$('span.size').text(parsed_hex.bytes_total + ' bytes');
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} else {
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STM32.GUI_status(chrome.i18n.getMessage('firmwareFlasherHexCorrupted'));
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GUI.log(chrome.i18n.getMessage('firmwareFlasherHexCorrupted'));
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}
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});
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}).fail(function() {
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STM32.GUI_status(chrome.i18n.getMessage('firmwareFlasherFailedToLoadOnlineFirmware'));
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GUI.log(chrome.i18n.getMessage('firmwareFlasherFailedToLoadOnlineFirmware'));
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$('a.flash_firmware').addClass('locked');
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});
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@ -109,7 +109,7 @@ function tab_initialize_firmware_flasher() {
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STM32DFU.connect(parsed_hex);
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}
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} else {
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STM32.GUI_status(chrome.i18n.getMessage('firmwareFlasherFirmwareNotLoaded'));
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GUI.log(chrome.i18n.getMessage('firmwareFlasherFirmwareNotLoaded'));
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}
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}
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}
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