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Attempts also to implement 1Mhz access costs.
Subject to TODO, and same observation as before: this is as to my current understanding only.
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@ -642,8 +642,12 @@ class ConcreteMachine:
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// Below is very vague on real details. Won't do.
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// Below is very vague on real details. Won't do.
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Cycles duration;
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Cycles duration;
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if(is_1Mhz) {
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if(is_1Mhz) {
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// TODO: (i) get into phase; (ii) allow for the 1Mhz bus length being sporadically 16 rather than 14.
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// TODO: this is very implicitly linked to the video timing; make that overt somehow. Even if it's just with a redundant video setter at construction.
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duration = Cycles(14);
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const int current_length = 14 + 2*(slow_access_phase_ / 896); // Length of cycle currently ongoing.
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const int phase_adjust = (current_length - slow_access_phase_%14)%current_length; // Amount of time to expand waiting until end of cycle, if not actually at start.
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const int access_phase = (slow_access_phase_ + phase_adjust)%912; // Phase at which access will begin.
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const int next_length = 14 + 2*(access_phase / 896); // Length of cycle that this access will occur within.
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duration = Cycles(next_length + phase_adjust);
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} else {
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} else {
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// Clues as to 'fast' refresh timing:
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// Clues as to 'fast' refresh timing:
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//
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//
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@ -660,7 +664,7 @@ class ConcreteMachine:
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duration = Cycles(5 + phase_adjust + refresh);
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duration = Cycles(5 + phase_adjust + refresh);
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}
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}
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fast_access_phase_ = (fast_access_phase_ + duration.as<int>()) % 50;
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fast_access_phase_ = (fast_access_phase_ + duration.as<int>()) % 50;
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slow_access_phase_ = (slow_access_phase_ + duration.as<int>()) % 14; // TODO: modulo something else, to allow for stretched cycles.
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slow_access_phase_ = (slow_access_phase_ + duration.as<int>()) % 912;
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// Propagate time far and wide.
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// Propagate time far and wide.
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