introduce pixel schedules
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25c324dd7d
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39bc663b26
3 changed files with 36 additions and 19 deletions
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@ -81,6 +81,24 @@ matrix_map make_matrixmap(size_t width, size_t height, size_t n_addr_lines,
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return result;
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}
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struct schedule_entry {
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uint32_t shift, active_time;
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};
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using schedule = std::vector<schedule_entry>;
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schedule make_simple_schedule(int n_planes, int pixels_across) {
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schedule result;
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uint32_t max_count = 1 << n_planes;
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while (max_count < pixels_across)
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max_count <<= 1;
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for (int i = 0; i < n_planes; i++) {
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result.emplace_back(10 - i, max_count >> i);
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}
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return result;
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}
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struct matrix_geometry {
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template <typename Cb>
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matrix_geometry(size_t pixels_across, size_t n_addr_lines, int n_planes,
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@ -91,9 +109,16 @@ struct matrix_geometry {
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matrix_geometry(size_t pixels_across, size_t n_addr_lines, int n_planes,
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size_t width, size_t height, matrix_map map, size_t n_lanes)
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: matrix_geometry(pixels_across, n_addr_lines, width, height, map,
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n_lanes,
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make_simple_schedule(n_planes, pixels_across)) {}
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matrix_geometry(size_t pixels_across, size_t n_addr_lines, size_t width,
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size_t height, matrix_map map, size_t n_lanes,
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const std::vector<schedule_entry> schedule)
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: pixels_across(pixels_across), n_addr_lines(n_addr_lines),
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n_lanes(n_lanes), n_planes(n_planes), width(width), height(height),
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map(map) {
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n_lanes(n_lanes), width(width), height(height),
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map(map), schedule{schedule} {
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size_t pixels_down = n_lanes << n_addr_lines;
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if (map.size() != pixels_down * pixels_across) {
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throw std::range_error(
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@ -102,7 +127,7 @@ struct matrix_geometry {
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}
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size_t pixels_across, n_addr_lines, n_lanes;
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int n_planes;
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std::vector<schedule_entry> schedule;
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size_t width, height;
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matrix_map map;
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};
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@ -3,7 +3,7 @@
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const int protomatter_wrap = 4;
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const int protomatter_wrap_target = 0;
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const int protomatter_sideset_pin_count = 1;
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const bool protomatter_sideset_enable = true;
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const bool protomatter_sideset_enable = 1;
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const uint16_t protomatter[] = {
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// ; data format (out-shift-right):
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// ; MSB ... LSB
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@ -183,32 +183,22 @@ void protomatter_render_rgb10(std::vector<uint32_t> &result,
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return data;
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};
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int last_bit = 0;
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// illuminate the right row for data in the shift register (the previous
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// address)
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const size_t n_addr = 1u << matrixmap.n_addr_lines;
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const int n_planes = matrixmap.n_planes;
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constexpr size_t n_bits = 10u;
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unsigned offset = n_bits - n_planes;
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const size_t pixels_across = matrixmap.pixels_across;
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size_t prev_addr = n_addr - 1;
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uint32_t addr_bits = calc_addr_bits(prev_addr);
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for (size_t addr = 0; addr < n_addr; addr++) {
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// printf("addr=%zu/%zu\n", addr, n_addr);
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for (int bit = n_planes - 1; bit >= 0; bit--) {
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// printf("bit=%d/%d\n", bit, n_planes);
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uint32_t r_mask = 1 << (20 + offset + bit);
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uint32_t g_mask = 1 << (10 + offset + bit);
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uint32_t b_mask = 1 << (0 + offset + bit);
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// the shortest /OE we can do is one DATA_OVERHEAD...
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// TODO: should make sure desired duration of MSB is at least
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// `pixels_across`
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active_time = 1 << last_bit;
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last_bit = bit;
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uint32_t active_time = matrixmap.schedule.back().active_time;
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for (auto &schedule_ent : matrixmap.schedule) {
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uint32_t r_mask = 1 << (20 + schedule_ent.shift);
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uint32_t g_mask = 1 << (10 + schedule_ent.shift);
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uint32_t b_mask = 1 << (0 + schedule_ent.shift);
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prep_data(pixels_across);
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auto mapiter = matrixmap.map.begin() +
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@ -242,6 +232,8 @@ void protomatter_render_rgb10(std::vector<uint32_t> &result,
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do_data_delay(addr_bits | pinout::oe_inactive | pinout::lat_bit,
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pinout::post_latch_delay);
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active_time = schedule_ent.active_time;
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// with oe inactive, set address bits to illuminate THIS line
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if (addr != prev_addr) {
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addr_bits = calc_addr_bits(addr);
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