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//: Instructions can read from addresses pointing at other locations using the
//: 'deref' property.

:(scenario "copy_indirect")
recipe main [
  1:address:integer <- copy 2:literal
  2:integer <- copy 34:literal
  # This loads location 1 as an address and looks up *that* location.
  3:integer <- copy 1:address:integer/deref
]
+run: instruction main/2
+mem: location 1 is 2
+mem: location 2 is 34
+mem: storing 34 in location 3

:(before "int base = x.value" following "vector<int> read_memory(reagent x)")
x = canonize(x);

//: similarly, write to addresses pointing at other locations using the
//: 'deref' property
:(scenario "store_indirect")
recipe main [
  1:address:integer <- copy 2:literal
  1:address:integer/deref <- copy 34:literal
]
+run: instruction main/1
+mem: location 1 is 2
+mem: storing 34 in location 2

:(before "int base = x.value" following "void write_memory(reagent x, vector<int> data)")
x = canonize(x);

:(code)
reagent canonize(reagent x) {
  if (isa_literal(x)) return x;
//?   cout << "canonize\n"; //? 1
  reagent r = x;
//?   cout << x.to_string() << " => " << r.to_string() << '\n'; //? 1
  while (has_property(r, "deref"))
    r = deref(r);
  return r;
}

bool has_property(reagent x, string name) {
  for (size_t i = 0; i < x.properties.size(); ++i) {
    if (x.properties[i].first == name) return true;
  }
  return false;
}

reagent deref(reagent x) {
//?   cout << "deref: " << x.to_string() << "\n"; //? 2
  static const int ADDRESS = Type_number["address"];
  reagent result;
  assert(x.types[0] == ADDRESS);

  // compute value
  result.set_value(Memory[x.value]);
  trace("mem") << "location " << x.value << " is " << result.value;

  // populate types
  copy(++x.types.begin(), x.types.end(), inserter(result.types, result.types.begin()));

  // drop-one 'deref'
  int i = 0;
  int len = x.properties.size();
  for (i = 0; i < len; ++i) {
    if (x.properties[i].first == "deref") break;
    result.properties.push_back(x.properties[i]);
  }
  ++i;  // skip first deref
  for (; i < len; ++i) {
    result.properties.push_back(x.properties[i]);
  }
  return result;
}

//:: 'get' can read from container address
:(scenario "get_indirect")
recipe main [
  1:integer <- copy 2:literal
  2:integer <- copy 34:literal
  3:integer <- copy 35:literal
  4:integer <- get 1:address:point/deref, 0:offset
]
+run: instruction main/3
+run: address to copy is 2
+run: product 0 is 34
+mem: storing 34 in location 4

:(scenario "include_nonderef_properties")
recipe main [
  1:integer <- copy 2:literal
  2:integer <- copy 34:literal
  3:integer <- copy 35:literal
  4:integer <- get 1:address:point/deref/foo, 0:offset
]
+run: instruction main/3
+run: address to copy is 2
+run: product 0 is 34
+mem: storing 34 in location 4

:(after "reagent base = " following "case GET:")
base = canonize(base);

:(scenario "get_address_indirect")
# 'get' can read from container address
recipe main [
  1:integer <- copy 2:literal
  2:integer <- copy 34:literal
  3:integer <- copy 35:literal
  4:integer <- get-address 1:address:point/deref, 0:offset
]
+run: instruction main/3
+run: address to copy is 2
+run: product 0 is 2

:(after "reagent base = " following "case GET_ADDRESS:")
base = canonize(base);
"n">win = Fake() self.fm = Fake() self.env = Fake() self.settings = Fake() self.initdict = {'win': self.win, 'settings': self.settings, 'fm': self.fm, 'env': self.env} self.disp = Displayable(**self.initdict) self.disc = DisplayableContainer(**self.initdict) self.disc.add_child(self.disp) hei, wid = 100, 100 self.env.termsize = (hei, wid) def tearDown(self): self.disp.destroy() self.disc.destroy() def test_colorscheme(self): # Using a color method implies change of window attributes disp = self.disp disp.win.chgat = raise_ok disp.win.attrset = raise_ok self.assertRaises(OK, disp.color, 'a', 'b') self.assertRaises(OK, disp.color_at, 0, 0, 0, 'a', 'b') self.assertRaises(OK, disp.color_reset) def test_focused_object(self): d1 = Displayable(**self.initdict) d2 = DisplayableContainer(**self.initdict) for obj in (Displayable(**self.initdict) for x in range(5)): d2.add_child(obj) d3 = DisplayableContainer(**self.initdict) for obj in (Displayable(**self.initdict) for x in range(5)): d3.add_child(obj) for obj in (d1, d2, d3): self.disc.add_child(obj) d3.container[3].focused = True self.assertEqual(self.disc._get_focused_obj(), d3.container[3]) d3.container[3].focused = False d2.container[0].focused = True self.assertEqual(self.disc._get_focused_obj(), d2.container[0]) gWin = None class TestDisplayableWithCurses(unittest.TestCase): def setUp(self): global gWin if not gWin: gWin = curses.initscr() self.win = gWin curses.cbreak() curses.noecho() curses.start_color() curses.use_default_colors() self.fm = Fake() self.env = Fake() self.settings = Fake() self.initdict = {'win': self.win, 'settings': self.settings, 'fm': self.fm, 'env': self.env} self.disp = Displayable(**self.initdict) self.disc = DisplayableContainer(**self.initdict) self.disc.add_child(self.disp) self.env.termsize = self.win.getmaxyx() def tearDown(self): self.disp.destroy() curses.nocbreak() curses.echo() curses.endwin() @TODO def test_boundaries(self): disp = self.disp hei, wid = self.env.termsize self.assertRaises(ValueError, disp.resize, 0, 0, hei + 1, wid) self.assertRaises(ValueError, disp.resize, 0, 0, hei, wid + 1) self.assertRaises(ValueError, disp.resize, -1, 0, hei, wid) self.assertRaises(ValueError, disp.resize, 0, -1, hei, wid) for i in range(1000): box = [int(randint(0, hei) * 0.2), int(randint(0, wid) * 0.2)] box.append(randint(0, hei - box[0])) box.append(randint(0, wid - box[1])) def in_box(y, x): return (y >= box[1] and y < box[1] + box[3]) and \ (x >= box[0] and x < box[0] + box[2]) disp.resize(*box) self.assertEqual(box, [disp.y, disp.x, disp.hei, disp.wid], "Resizing failed for some reason on loop " + str(i)) for y, x in zip(range(10), range(10)): is_in_box = in_box(y, x) point1 = (y, x) self.assertEqual(is_in_box, point1 in disp) point2 = Fake() point2.x = x point2.y = y self.assertEqual(is_in_box, point2 in disp) def test_click(self): self.disp.click = raise_ok hei, wid = self.env.termsize for i in range(50): winwid = randint(2, wid-1) winhei = randint(2, hei-1) self.disc.resize(0, 0, hei, wid) self.disp.resize(0, 0, winhei, winwid) fakepos = Fake() fakepos.x = winwid - 2 fakepos.y = winhei - 2 self.assertRaises(OK, self.disc.click, fakepos) fakepos.x = winwid fakepos.y = winhei self.disc.click(fakepos) if __name__ == '__main__': unittest.main()