mirror of
https://github.com/subsurface/subsurface.git
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Lift code out to read_ostc_settings
This lifts the reading of settings out of the run() method and introduces better error handling when libdivecomputer returns a error. Signed-off-by: Anton Lundin <glance@acc.umu.se> Signed-off-by: Dirk Hohndel <dirk@hohndel.org>
This commit is contained in:
parent
3655a726c2
commit
89e197a16b
1 changed files with 314 additions and 301 deletions
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@ -547,6 +547,314 @@ static dc_status_t read_ostc3_settings(dc_device_t *device, DeviceDetails *m_dev
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return rc;
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}
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static dc_status_t read_ostc_settings(dc_device_t *device, DeviceDetails *m_deviceDetails)
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{
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dc_status_t rc;
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unsigned char data[256] = {};
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#ifdef DEBUG_OSTC_CF
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// FIXME: how should we report settings not supported back?
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unsigned char max_CF = 0;
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#endif
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rc = hw_ostc_device_eeprom_read(device, 0, data, sizeof(data));
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if (rc != DC_STATUS_SUCCESS)
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return rc;
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m_deviceDetails->setSerialNo(QString::number(data[1] << 8 ^ data[0]));
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m_deviceDetails->setNumberOfDives(data[3] << 8 ^ data[2]);
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//Byte5-6:
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//Gas 1 default (%O2=21, %He=0)
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gas gas1;
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gas1.oxygen = data[6];
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gas1.helium = data[7];
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//Byte9-10:
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//Gas 2 default (%O2=21, %He=0)
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gas gas2;
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gas2.oxygen = data[10];
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gas2.helium = data[11];
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//Byte13-14:
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//Gas 3 default (%O2=21, %He=0)
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gas gas3;
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gas3.oxygen = data[14];
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gas3.helium = data[15];
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//Byte17-18:
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//Gas 4 default (%O2=21, %He=0)
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gas gas4;
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gas4.oxygen = data[18];
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gas4.helium = data[19];
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//Byte21-22:
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//Gas 5 default (%O2=21, %He=0)
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gas gas5;
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gas5.oxygen = data[22];
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gas5.helium = data[23];
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//Byte25-26:
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//Gas 6 current (%O2, %He)
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m_deviceDetails->setSalinity(data[26]);
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// Active Gas Flag Register
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gas1.type = data[27] & 0x01;
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gas2.type = (data[27] & 0x02) >> 1;
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gas3.type = (data[27] & 0x04) >> 2;
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gas4.type = (data[27] & 0x08) >> 3;
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gas5.type = (data[27] & 0x10) >> 4;
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// Gas switch depths
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gas1.depth = data[28];
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gas2.depth = data[29];
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gas3.depth = data[30];
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gas4.depth = data[31];
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gas5.depth = data[32];
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// 33 which gas is Fist gas
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switch(data[33]) {
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case 1:
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gas1.type = 2;
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break;
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case 2:
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gas2.type = 2;
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break;
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case 3:
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gas3.type = 2;
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break;
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case 4:
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gas4.type = 2;
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break;
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case 5:
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gas5.type = 2;
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break;
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default:
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//Error?
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break;
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}
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// Data filled up, set the gases.
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m_deviceDetails->setGas1(gas1);
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m_deviceDetails->setGas2(gas2);
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m_deviceDetails->setGas3(gas3);
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m_deviceDetails->setGas4(gas4);
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m_deviceDetails->setGas5(gas5);
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m_deviceDetails->setDecoType(data[34]);
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//Byte36:
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//Use O2 Sensor Module in CC Modes (0= OFF, 1= ON) (Only available in old OSTC1 - unused for OSTC Mk.2/2N)
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//m_deviceDetails->setCcrMode(data[35]);
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setpoint sp1;
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sp1.sp = data[36];
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sp1.depth = 0;
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setpoint sp2;
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sp2.sp = data[37];
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sp2.depth = 0;
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setpoint sp3;
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sp3.sp = data[38];
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sp3.depth = 0;
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m_deviceDetails->setSp1(sp1);
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m_deviceDetails->setSp2(sp2);
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m_deviceDetails->setSp3(sp3);
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// Byte41-42:
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// Lowest Battery voltage seen (in mV)
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// Byte43:
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// Lowest Battery voltage seen at (Month)
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// Byte44:
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// Lowest Battery voltage seen at (Day)
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// Byte45:
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// Lowest Battery voltage seen at (Year)
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// Byte46-47:
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// Lowest Battery voltage seen at (Temperature in 0.1 °C)
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// Byte48:
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// Last complete charge at (Month)
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// Byte49:
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// Last complete charge at (Day)
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// Byte50:
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// Last complete charge at (Year)
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// Byte51-52:
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// Total charge cycles
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// Byte53-54:
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// Total complete charge cycles
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// Byte55-56:
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// Temperature Extrema minimum (Temperature in 0.1 °C)
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// Byte57:
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// Temperature Extrema minimum at (Month)
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// Byte58:
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// Temperature Extrema minimum at (Day)
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// Byte59:
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// Temperature Extrema minimum at (Year)
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// Byte60-61:
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// Temperature Extrema maximum (Temperature in 0.1 °C)
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// Byte62:
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// Temperature Extrema maximum at (Month)
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// Byte63:
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// Temperature Extrema maximum at (Day)
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// Byte64:
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// Temperature Extrema maximum at (Year)
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// Byte65:
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// Custom Text active (=1), Custom Text Disabled (<>1)
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// Byte66-90:
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// TO FIX EDITOR SYNTAX/INDENT {
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// (25Bytes): Custom Text for Surfacemode (Real text must end with "}")
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// Example: OSTC Dive Computer} (19 Characters incl. "}") Bytes 85-90 will be ignored.
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if (data[64] == 1) {
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// Make shure the data is null-terminated
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data[89] = 0;
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// Find the internal termination and replace it with 0
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char *term = strchr((char *)data + 65, (int)'}');
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if (term)
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*term = 0;
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m_deviceDetails->setCustomText((const char *)data + 65);
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}
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// Byte91:
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// Dim OLED in Divemode (>0), Normal mode (=0)
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// Byte92:
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// Date format for all outputs:
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// =0: MM/DD/YY
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// =1: DD/MM/YY
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// =2: YY/MM/DD
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m_deviceDetails->setDateFormat(data[91]);
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// Byte93:
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// Total number of CF used in installed firmware
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#ifdef DEBUG_OSTC_CF
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max_CF = data[92];
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#endif
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// Byte94:
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// Last selected view for customview area in surface mode
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// Byte95:
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// Last selected view for customview area in dive mode
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// Byte96-97:
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// Diluent 1 Default (%O2,%He)
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// Byte98-99:
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// Diluent 1 Current (%O2,%He)
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gas dil1 = {};
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dil1.oxygen = data[97];
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dil1.helium = data[98];
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// Byte100-101:
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// Gasuent 2 Default (%O2,%He)
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// Byte102-103:
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// Gasuent 2 Current (%O2,%He)
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gas dil2 = {};
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dil2.oxygen = data[101];
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dil2.helium = data[102];
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// Byte104-105:
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// Gasuent 3 Default (%O2,%He)
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// Byte106-107:
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// Gasuent 3 Current (%O2,%He)
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gas dil3 = {};
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dil3.oxygen = data[105];
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dil3.helium = data[106];
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// Byte108-109:
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// Gasuent 4 Default (%O2,%He)
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// Byte110-111:
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// Gasuent 4 Current (%O2,%He)
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gas dil4 = {};
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dil4.oxygen = data[109];
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dil4.helium = data[110];
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// Byte112-113:
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// Gasuent 5 Default (%O2,%He)
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// Byte114-115:
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// Gasuent 5 Current (%O2,%He)
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gas dil5 = {};
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dil5.oxygen = data[113];
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dil5.helium = data[114];
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// Byte116:
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// First Diluent (1-5)
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switch(data[115]) {
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case 1:
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dil1.type = 2;
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break;
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case 2:
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dil2.type = 2;
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break;
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case 3:
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dil3.type = 2;
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break;
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case 4:
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dil4.type = 2;
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break;
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case 5:
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dil5.type = 2;
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break;
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default:
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//Error?
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break;
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}
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m_deviceDetails->setDil1(dil1);
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m_deviceDetails->setDil2(dil2);
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m_deviceDetails->setDil3(dil3);
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m_deviceDetails->setDil4(dil4);
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m_deviceDetails->setDil5(dil5);
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// Byte117-128:
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// not used/reserved
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// Byte129-256:
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// 32 custom Functions (CF0-CF31)
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// Decode the relevant ones
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// CF11: Factor for saturation processes
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m_deviceDetails->setSaturation(read_ostc_cf(data, 11));
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// CF12: Factor for desaturation processes
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m_deviceDetails->setDesaturation(read_ostc_cf(data, 12));
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// CF17: Lower threshold for ppO2 warning
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m_deviceDetails->setPpO2Min(read_ostc_cf(data, 17));
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// CF18: Upper threshold for ppO2 warning
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m_deviceDetails->setPpO2Max(read_ostc_cf(data, 18));
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// CF20: Depth sampling rate for Profile storage
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m_deviceDetails->setSamplingRate(read_ostc_cf(data, 20));
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// CF29: Depth of last decompression stop
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m_deviceDetails->setLastDeco(read_ostc_cf(data, 29));
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#ifdef DEBUG_OSTC_CF
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for (int cf = 0; cf <= 31 && cf <= max_CF; cf++)
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printf("CF %d: %d\n", cf, read_ostc_cf(data, cf));
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#endif
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rc = hw_ostc_device_eeprom_read(device, 1, data, sizeof(data));
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if (rc != DC_STATUS_SUCCESS)
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return rc;
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// Byte1:
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// Logbook version indicator (Not writable!)
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// Byte2-3:
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// Last Firmware installed, 1st Byte.2nd Byte (e.g. „1.90“) (Not writable!)
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m_deviceDetails->setFirmwareVersion(QString::number(data[1]) + "." + QString::number(data[2]));
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// Byte4:
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// OLED brightness (=0: Eco, =1 High) (Not writable!)
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// Byte5-11:
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// Time/Date vault during firmware updates
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// Byte12-128
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// not used/reserved
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// Byte129-256:
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// 32 custom Functions (CF 32-63)
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// Decode the relevant ones
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// CF32: Gradient Factor low
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m_deviceDetails->setGfLow(read_ostc_cf(data, 32));
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// CF33: Gradient Factor high
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m_deviceDetails->setGfHigh(read_ostc_cf(data, 33));
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// CF58: Future time to surface setFutureTTS
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m_deviceDetails->setFutureTTS(read_ostc_cf(data, 58));
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#ifdef DEBUG_OSTC_CF
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for (int cf = 32; cf <= 63 && cf <= max_CF; cf++)
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printf("CF %d: %d\n", cf, read_ostc_cf(data, cf));
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#endif
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rc = hw_ostc_device_eeprom_read(device, 2, data, sizeof(data));
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if (rc != DC_STATUS_SUCCESS)
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return rc;
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// Byte1-4:
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// not used/reserved (Not writable!)
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// Byte5-128:
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// not used/reserved
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// Byte129-256:
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// 32 custom Functions (CF 64-95)
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// Decode the relevant ones
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// CF65: Show safety stop
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m_deviceDetails->setSafetyStop(read_ostc_cf(data, 65));
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// CF67: Alternaitve Gradient Factor low
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m_deviceDetails->setAGFLow(read_ostc_cf(data, 67));
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// CF68: Alternative Gradient Factor high
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m_deviceDetails->setAGFHigh(read_ostc_cf(data, 68));
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// CF69: Allow Gradient Factor change
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m_deviceDetails->setAGFSelectable(read_ostc_cf(data, 69));
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#ifdef DEBUG_OSTC_CF
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for (int cf = 64; cf <= 95 && cf <= max_CF; cf++)
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printf("CF %d: %d\n", cf, read_ostc_cf(data, cf));
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#endif
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return rc;
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}
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void ReadSettingsThread::run()
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{
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bool supported = false;
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@ -584,309 +892,14 @@ void ReadSettingsThread::run()
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#ifdef DEBUG_OSTC
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case DC_FAMILY_NULL:
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#endif
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case DC_FAMILY_HW_OSTC: {
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case DC_FAMILY_HW_OSTC:
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supported = true;
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unsigned char data[256] = {};
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#ifdef DEBUG_OSTC_CF
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// FIXME: how should we report settings not supported back?
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unsigned char max_CF = 0;
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#endif
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rc = hw_ostc_device_eeprom_read(m_data->device, 0, data, sizeof(data));
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if (rc == DC_STATUS_SUCCESS) {
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m_deviceDetails->setSerialNo(QString::number(data[1] << 8 ^ data[0]));
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m_deviceDetails->setNumberOfDives(data[3] << 8 ^ data[2]);
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//Byte5-6:
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//Gas 1 default (%O2=21, %He=0)
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gas gas1;
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gas1.oxygen = data[6];
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gas1.helium = data[7];
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//Byte9-10:
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//Gas 2 default (%O2=21, %He=0)
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gas gas2;
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gas2.oxygen = data[10];
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gas2.helium = data[11];
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//Byte13-14:
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//Gas 3 default (%O2=21, %He=0)
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gas gas3;
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gas3.oxygen = data[14];
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gas3.helium = data[15];
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//Byte17-18:
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//Gas 4 default (%O2=21, %He=0)
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gas gas4;
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gas4.oxygen = data[18];
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gas4.helium = data[19];
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//Byte21-22:
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//Gas 5 default (%O2=21, %He=0)
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gas gas5;
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gas5.oxygen = data[22];
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gas5.helium = data[23];
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//Byte25-26:
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//Gas 6 current (%O2, %He)
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m_deviceDetails->setSalinity(data[26]);
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// Active Gas Flag Register
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gas1.type = data[27] & 0x01;
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gas2.type = (data[27] & 0x02) >> 1;
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gas3.type = (data[27] & 0x04) >> 2;
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gas4.type = (data[27] & 0x08) >> 3;
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gas5.type = (data[27] & 0x10) >> 4;
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// Gas switch depths
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gas1.depth = data[28];
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gas2.depth = data[29];
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gas3.depth = data[30];
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gas4.depth = data[31];
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gas5.depth = data[32];
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// 33 which gas is Fist gas
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switch (data[33]) {
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case 1:
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gas1.type = 2;
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break;
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case 2:
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gas2.type = 2;
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break;
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case 3:
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gas3.type = 2;
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break;
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case 4:
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gas4.type = 2;
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break;
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case 5:
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gas5.type = 2;
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break;
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default:
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//Error?
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break;
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}
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// Data filled up, set the gases.
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m_deviceDetails->setGas1(gas1);
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m_deviceDetails->setGas2(gas2);
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m_deviceDetails->setGas3(gas3);
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m_deviceDetails->setGas4(gas4);
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m_deviceDetails->setGas5(gas5);
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m_deviceDetails->setDecoType(data[34]);
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//Byte36:
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//Use O2 Sensor Module in CC Modes (0= OFF, 1= ON) (Only available in old OSTC1 - unused for OSTC Mk.2/2N)
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//m_deviceDetails->setCcrMode(data[35]);
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setpoint sp1;
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sp1.sp = data[36];
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sp1.depth = 0;
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setpoint sp2;
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sp2.sp = data[37];
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sp2.depth = 0;
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setpoint sp3;
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sp3.sp = data[38];
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sp3.depth = 0;
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m_deviceDetails->setSp1(sp1);
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m_deviceDetails->setSp2(sp2);
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m_deviceDetails->setSp3(sp3);
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// Byte41-42:
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// Lowest Battery voltage seen (in mV)
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// Byte43:
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// Lowest Battery voltage seen at (Month)
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// Byte44:
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// Lowest Battery voltage seen at (Day)
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// Byte45:
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// Lowest Battery voltage seen at (Year)
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// Byte46-47:
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// Lowest Battery voltage seen at (Temperature in 0.1 °C)
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// Byte48:
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// Last complete charge at (Month)
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// Byte49:
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// Last complete charge at (Day)
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// Byte50:
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// Last complete charge at (Year)
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// Byte51-52:
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// Total charge cycles
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// Byte53-54:
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// Total complete charge cycles
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// Byte55-56:
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// Temperature Extrema minimum (Temperature in 0.1 °C)
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// Byte57:
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// Temperature Extrema minimum at (Month)
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// Byte58:
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// Temperature Extrema minimum at (Day)
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// Byte59:
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// Temperature Extrema minimum at (Year)
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// Byte60-61:
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// Temperature Extrema maximum (Temperature in 0.1 °C)
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// Byte62:
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// Temperature Extrema maximum at (Month)
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// Byte63:
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// Temperature Extrema maximum at (Day)
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// Byte64:
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// Temperature Extrema maximum at (Year)
|
||||
// Byte65:
|
||||
// Custom Text active (=1), Custom Text Disabled (<>1)
|
||||
// Byte66-90:
|
||||
// TO FIX EDITOR SYNTAX/INDENT {
|
||||
// (25Bytes): Custom Text for Surfacemode (Real text must end with "}")
|
||||
// Example: OSTC Dive Computer} (19 Characters incl. "}") Bytes 85-90 will be ignored.
|
||||
if (data[64] == 1) {
|
||||
// Make shure the data is null-terminated
|
||||
data[89] = 0;
|
||||
// Find the internal termination and replace it with 0
|
||||
char *term = strchr((char *)data + 65, (int)'}');
|
||||
if (term)
|
||||
*term = 0;
|
||||
m_deviceDetails->setCustomText((const char *)data + 65);
|
||||
}
|
||||
// Byte91:
|
||||
// Dim OLED in Divemode (>0), Normal mode (=0)
|
||||
// Byte92:
|
||||
// Date format for all outputs:
|
||||
// =0: MM/DD/YY
|
||||
// =1: DD/MM/YY
|
||||
// =2: YY/MM/DD
|
||||
m_deviceDetails->setDateFormat(data[91]);
|
||||
// Byte93:
|
||||
// Total number of CF used in installed firmware
|
||||
#ifdef DEBUG_OSTC_CF
|
||||
max_CF = data[92];
|
||||
#endif
|
||||
// Byte94:
|
||||
// Last selected view for customview area in surface mode
|
||||
// Byte95:
|
||||
// Last selected view for customview area in dive mode
|
||||
// Byte96-97:
|
||||
// Diluent 1 Default (%O2,%He)
|
||||
// Byte98-99:
|
||||
// Diluent 1 Current (%O2,%He)
|
||||
gas dil1 = {};
|
||||
dil1.oxygen = data[97];
|
||||
dil1.helium = data[98];
|
||||
// Byte100-101:
|
||||
// Gasuent 2 Default (%O2,%He)
|
||||
// Byte102-103:
|
||||
// Gasuent 2 Current (%O2,%He)
|
||||
gas dil2 = {};
|
||||
dil2.oxygen = data[101];
|
||||
dil2.helium = data[102];
|
||||
// Byte104-105:
|
||||
// Gasuent 3 Default (%O2,%He)
|
||||
// Byte106-107:
|
||||
// Gasuent 3 Current (%O2,%He)
|
||||
gas dil3 = {};
|
||||
dil3.oxygen = data[105];
|
||||
dil3.helium = data[106];
|
||||
// Byte108-109:
|
||||
// Gasuent 4 Default (%O2,%He)
|
||||
// Byte110-111:
|
||||
// Gasuent 4 Current (%O2,%He)
|
||||
gas dil4 = {};
|
||||
dil4.oxygen = data[109];
|
||||
dil4.helium = data[110];
|
||||
// Byte112-113:
|
||||
// Gasuent 5 Default (%O2,%He)
|
||||
// Byte114-115:
|
||||
// Gasuent 5 Current (%O2,%He)
|
||||
gas dil5 = {};
|
||||
dil5.oxygen = data[113];
|
||||
dil5.helium = data[114];
|
||||
// Byte116:
|
||||
// First Diluent (1-5)
|
||||
switch (data[115]) {
|
||||
case 1:
|
||||
dil1.type = 2;
|
||||
break;
|
||||
case 2:
|
||||
dil2.type = 2;
|
||||
break;
|
||||
case 3:
|
||||
dil3.type = 2;
|
||||
break;
|
||||
case 4:
|
||||
dil4.type = 2;
|
||||
break;
|
||||
case 5:
|
||||
dil5.type = 2;
|
||||
break;
|
||||
default:
|
||||
//Error?
|
||||
break;
|
||||
}
|
||||
m_deviceDetails->setDil1(dil1);
|
||||
m_deviceDetails->setDil2(dil2);
|
||||
m_deviceDetails->setDil3(dil3);
|
||||
m_deviceDetails->setDil4(dil4);
|
||||
m_deviceDetails->setDil5(dil5);
|
||||
// Byte117-128:
|
||||
// not used/reserved
|
||||
// Byte129-256:
|
||||
// 32 custom Functions (CF0-CF31)
|
||||
|
||||
// Decode the relevant ones
|
||||
// CF11: Factor for saturation processes
|
||||
m_deviceDetails->setSaturation(read_ostc_cf(data, 11));
|
||||
// CF12: Factor for desaturation processes
|
||||
m_deviceDetails->setDesaturation(read_ostc_cf(data, 12));
|
||||
// CF17: Lower threshold for ppO2 warning
|
||||
m_deviceDetails->setPpO2Min(read_ostc_cf(data, 17));
|
||||
// CF18: Upper threshold for ppO2 warning
|
||||
m_deviceDetails->setPpO2Max(read_ostc_cf(data, 18));
|
||||
// CF20: Depth sampling rate for Profile storage
|
||||
m_deviceDetails->setSamplingRate(read_ostc_cf(data, 20));
|
||||
// CF29: Depth of last decompression stop
|
||||
m_deviceDetails->setLastDeco(read_ostc_cf(data, 29));
|
||||
|
||||
#ifdef DEBUG_OSTC_CF
|
||||
for (int cf = 0; cf <= 31 && cf <= max_CF; cf++)
|
||||
printf("CF %d: %d\n", cf, read_ostc_cf(data, cf));
|
||||
#endif
|
||||
}
|
||||
rc = hw_ostc_device_eeprom_read(m_data->device, 1, data, sizeof(data));
|
||||
if (rc == DC_STATUS_SUCCESS) {
|
||||
// Byte1:
|
||||
// Logbook version indicator (Not writable!)
|
||||
// Byte2-3:
|
||||
// Last Firmware installed, 1st Byte.2nd Byte (e.g. „1.90“) (Not writable!)
|
||||
m_deviceDetails->setFirmwareVersion(QString::number(data[1]) + "." + QString::number(data[2]));
|
||||
// Byte4:
|
||||
// OLED brightness (=0: Eco, =1 High) (Not writable!)
|
||||
// Byte5-11:
|
||||
// Time/Date vault during firmware updates
|
||||
// Byte12-128
|
||||
// not used/reserved
|
||||
// Byte129-256:
|
||||
// 32 custom Functions (CF 32-63)
|
||||
|
||||
// Decode the relevant ones
|
||||
// CF32: Gradient Factor low
|
||||
m_deviceDetails->setGfLow(read_ostc_cf(data, 32));
|
||||
// CF33: Gradient Factor high
|
||||
m_deviceDetails->setGfHigh(read_ostc_cf(data, 33));
|
||||
// CF58: Future time to surface setFutureTTS
|
||||
m_deviceDetails->setFutureTTS(read_ostc_cf(data, 58));
|
||||
#ifdef DEBUG_OSTC_CF
|
||||
for (int cf = 32; cf <= 63 && cf <= max_CF; cf++)
|
||||
printf("CF %d: %d\n", cf, read_ostc_cf(data, cf));
|
||||
#endif
|
||||
}
|
||||
rc = hw_ostc_device_eeprom_read(m_data->device, 2, data, sizeof(data));
|
||||
if (rc == DC_STATUS_SUCCESS) {
|
||||
// Byte1-4:
|
||||
// not used/reserved (Not writable!)
|
||||
// Byte5-128:
|
||||
// not used/reserved
|
||||
// Byte129-256:
|
||||
// 32 custom Functions (CF 64-95)
|
||||
|
||||
// Decode the relevant ones
|
||||
// CF65: Show safety stop
|
||||
m_deviceDetails->setSafetyStop(read_ostc_cf(data, 65));
|
||||
// CF67: Alternaitve Gradient Factor low
|
||||
m_deviceDetails->setAGFLow(read_ostc_cf(data, 67));
|
||||
// CF68: Alternative Gradient Factor high
|
||||
m_deviceDetails->setAGFHigh(read_ostc_cf(data, 68));
|
||||
// CF69: Allow Gradient Factor change
|
||||
m_deviceDetails->setAGFSelectable(read_ostc_cf(data, 69));
|
||||
#ifdef DEBUG_OSTC_CF
|
||||
for (int cf = 64; cf <= 95 && cf <= max_CF; cf++)
|
||||
printf("CF %d: %d\n", cf, read_ostc_cf(data, cf));
|
||||
#endif
|
||||
}
|
||||
emit devicedetails(m_deviceDetails);
|
||||
rc = read_ostc_settings(m_data->device, m_deviceDetails);
|
||||
if (rc == DC_STATUS_SUCCESS)
|
||||
emit devicedetails(m_deviceDetails);
|
||||
else
|
||||
emit error("Failed!");
|
||||
break;
|
||||
}
|
||||
default:
|
||||
supported = false;
|
||||
break;
|
||||
|
|
Loading…
Reference in a new issue