[3ae31e9] | 1 | Thunder main scan algorithm Rev 1 1988-12-15
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| 2 | --------------------------- ------------------
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| 3 |
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| 4 | * Global variables:
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| 5 |
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| 6 | s22stat switch 22 status
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| 7 | s24stat switch 24 status
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| 8 | s25stat switch 25 status
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| 9 |
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| 10 | s22pres switch 22 pressure
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| 11 | s24pres switch 24 pressure
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| 12 | s25pres switch 25 pressure
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| 13 |
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| 14 | pedal1 foot pedal 1 value
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| 15 | pedal2 foot pedal 2 value
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| 16 |
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| 17 | * Global variable tables:
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| 18 |
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| 19 | eltab[] raw element value table 64 entries
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| 20 | (A/D input, may not need to be a table)
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| 21 |
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| 22 | osube[] element offset value table 64 entries
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| 23 | ksube[] element pressure table 64 entries
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| 24 |
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| 25 | switch[] switch status table 20 entries
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| 26 | (10 edit and 10 performance switches)
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| 27 |
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| 28 | potstat[] pot status table 13 entries
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| 29 | potpres[] pot pressure table 13 entries
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| 30 | potvals[] pot value table 13 entries
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| 31 |
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| 32 | * Constant tables:
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| 33 |
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| 34 | caplin[] element linearization table 255 entries
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| 35 | ovrnm02[] 2 element pot value multiplier table 512 entries
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| 36 | ovrnm08[] 8 element pot value multiplier table 512 entries
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| 37 | potamap[] pot index to sensor element A map 12 entries
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| 38 | potbmap[] pot index to sensor element B map 12 entries
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| 39 | swmap[] switch index to sensor element map 20 entries
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| 40 |
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| 41 | |
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| 42 |
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| 43 | * Process raw sensor element readings into element pressures
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| 44 |
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| 45 | Note that this is shown as a background loop, but could be done on interrupt
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| 46 | by setting the element index, e, to the element number input from the scanner,
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| 47 | and replacing references to eltab[] with the element value from the scanner.
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| 48 |
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| 49 | register short e, j, jsube, oldk;
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| 50 |
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| 51 | for (e = 0; e < 64; e++) { /* for each element ... */
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| 52 |
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| 53 | if ((e EQ FOOT1) OR (e EQ FOOT2)) { /* pedal inputs ? */
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| 54 |
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| 55 | ksube[e] = eltab[e]; /* pass pedals thru intact */
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| 56 |
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| 57 | } else { /* elements ? */
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| 58 |
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| 59 | j = 255 - eltab[e]; /* invert A/D input */
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| 60 |
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| 61 | j = j - osube[e]; /* subtract offset */
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| 62 |
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| 63 | if (j < 0) /* limit at 0 */
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| 64 | j = 0;
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| 65 |
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| 66 | jsube = caplin[j]; /* linearize the value */
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| 67 |
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| 68 | oldk = ksube[e]; /* get old pressure */
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| 69 |
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| 70 | if (jsube > oldk + HYST) /* apply hysteresis */
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| 71 | ksube[e] = jsube - HYST;
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| 72 | else if (jsube < oldk)
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| 73 | ksube[e] = jsube;
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| 74 | }
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| 75 | }
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| 76 |
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| 77 | pedal1 = ksube[FOOT1]; /* update pedal 1 value */
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| 78 | pedal2 = ksube[FOOT2]; /* update pedal 2 value */
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| 79 | |
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| 80 |
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| 81 | * Process 1-element switch pressures into switch closures and releases
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| 82 |
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| 83 | register short sw, elval;
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| 84 |
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| 85 | for (sw = 0; sw < 20; sw++) { /* for each switch ... */
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| 86 |
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| 87 | elval = ksube[swmap[sw]]; /* get current value */
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| 88 |
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| 89 | if (elval > ONTHR) /* determine switch status */
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| 90 | switch[sw] = TRUE;
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| 91 | else if (elval > OFFTHR)
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| 92 | switch[sw] = FALSE;
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| 93 | }
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| 94 |
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| 95 | * Process the 4-element switch (switch #22)
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| 96 |
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| 97 | register short sum;
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| 98 |
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| 99 | /* sum the elements */
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| 100 |
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| 101 | sum = ksube[SW22A] +
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| 102 | ksube[SW22B] +
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| 103 | ksube[SW22C] +
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| 104 | ksube[SW22D];
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| 105 |
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| 106 | if (sum > 255) /* determine switch pressure */
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| 107 | s22pres = 255;
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| 108 | else
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| 109 | s22pres = sum;
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| 110 |
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| 111 | if (s22pres > ONTHR) /* determine switch status */
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| 112 | s22stat = TRUE;
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| 113 | else if (s22pres < OFFTHR)
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| 114 | s22stat = FALSE;
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| 115 | |
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| 116 |
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| 117 | * Process the 3-element switches (switch #24 and switch #25)
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| 118 |
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| 119 | register short sum;
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| 120 |
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| 121 | /* sum the elements for switch #24 */
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| 122 |
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| 123 | sum = ksube[SW24A] +
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| 124 | ksube[SW24B] +
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| 125 | ksube[SW24C];
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| 126 |
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| 127 | if (sum > 255) /* determine pressure */
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| 128 | s24pres = 255;
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| 129 | else
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| 130 | s24pres = sum;
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| 131 |
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| 132 | if (s24pres > ONTHR) /* determine switch status */
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| 133 | s24stat = TRUE;
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| 134 | else if (sw24pres < OFFTHR)
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| 135 | s24stat = FALSE;
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| 136 |
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| 137 | /* sum the elements for switch #25 */
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| 138 |
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| 139 | sum = ksube[SW25A] +
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| 140 | ksube[SW25B] +
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| 141 | ksube[SW25C];
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| 142 |
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| 143 | if (sum > 255) /* determine pressure */
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| 144 | s25pres = 255
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| 145 | else
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| 146 | s25pres = sum;
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| 147 |
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| 148 | if (s25pres > ONTHR) /* determine switch status */
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| 149 | s25stat = TRUE;
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| 150 | else if (s25pres < OFFTHR)
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| 151 | s25stat = FALSE;
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| 152 |
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| 153 | |
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| 154 |
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| 155 | * Process Pot 1 (8 elements)
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| 156 |
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| 157 | register short pres, sum;
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| 158 | register long temp;
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| 159 |
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| 160 | sum = ksube[POT1A] + /* sum the elements */
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| 161 | ksube[POT1B] +
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| 162 | ksube[POT1C] +
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| 163 | ksube[POT1D] +
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| 164 | ksube[POT1E] +
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| 165 | ksube[POT1F] +
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| 166 | ksube[POT1G] +
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| 167 | ksube[POT1H];
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| 168 |
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| 169 | if (sum > 255) /* determine pot pressure */
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| 170 | pres = 255;
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| 171 | else
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| 172 | pres = sum;
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| 173 |
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| 174 | if (pres > ONTHR) /* determine pot status */
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| 175 | potstat[0] = TRUE;
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| 176 | else if (pres < OFFTHR)
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| 177 | potstat[0] = FALSE;
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| 178 |
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| 179 | if (potstat[0]) { /* if active, calculate pot value */
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| 180 |
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| 181 | temp = pot1b + /* pot1b * 1 */
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| 182 | (pot1c << 1) + /* pot1c * 2 */
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| 183 | (pot1d << 1) + /* pot1d * 3 */
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| 184 | pot1d +
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| 185 | (pot1e << 2) + /* pot1e * 4 */
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| 186 | (pot1f << 2) + /* pot1f * 5 */
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| 187 | pot1f +
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| 188 | (pot1g << 2) + /* pot1g * 6 */
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| 189 | (pot1g << 1) +
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| 190 | (pot1h << 2) + /* pot1h * 7 */
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| 191 | (pot1h << 1) +
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| 192 | pot1h;
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| 193 |
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| 194 | if (sum > 511) /* limt sum to table range */
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| 195 | sum = 511;
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| 196 |
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| 197 | potvals[0] = ovrnm08[sum] * temp;
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| 198 | }
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| 199 | |
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| 200 |
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| 201 | * Process Pots 2..13 (2 elements each)
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| 202 |
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| 203 | register short elemb, pot, pres, sum;
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| 204 |
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| 205 | for (pot = 1; pot < 13; pot++) { /* for each pot ... */
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| 206 |
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| 207 | /* sum the elements */
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| 208 |
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| 209 | elemb = ksube[potbmap[pot]];
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| 210 |
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| 211 | sum = ksube[potamap[pot]] + elemb;
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| 212 |
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| 213 | if (sum > 255) /* determine pressure */
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| 214 | pres = 255
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| 215 | else
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| 216 | pres = sum;
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| 217 |
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| 218 | potpres[pot] = pres;
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| 219 |
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| 220 | if (pres > ONTHR) /* determine status */
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| 221 | potstat[pot] = TRUE;
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| 222 | else if (pres < OFFTHR)
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| 223 | potstat[pot] = FALSE;
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| 224 |
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| 225 | /* if pot is active, calculate pot value */
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| 226 |
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| 227 | if (potstat[pot]) {
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| 228 |
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| 229 | if (sum > 511) /* limit sum to table range */
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| 230 | sum = 511;
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| 231 |
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| 232 | potvals[pot] = ovrnm02[sum] * elemb;
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| 233 | }
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| 234 | }
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