X-Git-Url: https://fleuret.org/cgi-bin/gitweb/gitweb.cgi?a=blobdiff_plain;f=tasks.py;h=a4ef557d2adde2f7df591adba4d3efc6b31e7d5f;hb=12671bdc1a083514de11399041f74747a6ca601b;hp=0f80d4fc3499a44138f0f86ab3f2fd9f0ca38337;hpb=3168a3161668caacb36ebd717e308e36c9eef2b1;p=picoclvr.git diff --git a/tasks.py b/tasks.py index 0f80d4f..a4ef557 100755 --- a/tasks.py +++ b/tasks.py @@ -1885,20 +1885,15 @@ class Escape(Task): self.width = width states, actions, rewards = escape.generate_episodes( - nb_train_samples + nb_test_samples, height, width, T + nb_train_samples + nb_test_samples, height, width, 3 * T ) - seq = escape.episodes2seq(states, actions, rewards, lookahead_delta=5) + seq = escape.episodes2seq(states, actions, rewards, lookahead_delta=T) + seq = seq[:, seq.size(1) // 3 : 2 * seq.size(1) // 3] self.train_input = seq[:nb_train_samples].to(self.device) self.test_input = seq[nb_train_samples:].to(self.device) self.nb_codes = max(self.train_input.max(), self.test_input.max()) + 1 - # if logger is not None: - # for s, a in zip(self.train_input[:100], self.train_ar_mask[:100]): - # logger(f"train_sequences {self.problem.seq2str(s)}") - # a = "".join(["01"[x.item()] for x in a]) - # logger(f" {a}") - def batches(self, split="train", nb_to_use=-1, desc=None): assert split in {"train", "test"} input = self.train_input if split == "train" else self.test_input @@ -1914,13 +1909,81 @@ class Escape(Task): def vocabulary_size(self): return self.nb_codes + def thinking_autoregression( + self, n_epoch, model, result_dir, logger, deterministic_synthesis, nmax=1000 + ): + result = self.test_input[:100].clone() + t = torch.arange(result.size(1), device=result.device) + state_len = self.height * self.width + iteration_len = state_len + 3 + + def ar(): + masked_inplace_autoregression( + model, + self.batch_size, + result, + ar_mask, + deterministic_synthesis, + device=self.device, + ) + + for u in range( + iteration_len, result.size(1) - iteration_len + 1, iteration_len + ): + # Put a lookahead reward to -1, sample the next state + result[:, u - 1] = (-1) + 1 + escape.first_lookahead_rewards_code + ar_mask = (t >= u).long() * (t < u + state_len).long() + ar_mask = ar_mask[None, :] + ar_mask = ar_mask.expand_as(result) + result *= 1 - ar_mask + ar() + + # Put a lookahead reward to +1, sample the action and reward + result[:, u - 1] = (1) + 1 + escape.first_lookahead_rewards_code + ar_mask = (t >= state_len).long() * (t < state_len + 2).long() + ar_mask = ar_mask[None, :] + ar_mask = ar_mask.expand_as(result) + result *= 1 - ar_mask + ar() + + # Saving the generated sequences + + s, a, r, lr = escape.seq2episodes( + result, self.height, self.width, lookahead=True + ) + str = escape.episodes2str( + s, a, r, lookahead_rewards=lr, unicode=True, ansi_colors=True + ) + + filename = os.path.join(result_dir, f"test_thinking_seq_{n_epoch:04d}.txt") + with open(filename, "w") as f: + f.write(str) + logger(f"wrote {filename}") + def produce_results( self, n_epoch, model, result_dir, logger, deterministic_synthesis, nmax=1000 ): result = self.test_input[:100].clone() + + # Saving the ground truth + + s, a, r, lr = escape.seq2episodes( + result, self.height, self.width, lookahead=True + ) + str = escape.episodes2str( + s, a, r, lookahead_rewards=lr, unicode=True, ansi_colors=True + ) + + filename = os.path.join(result_dir, f"test_true_seq_{n_epoch:04d}.txt") + with open(filename, "w") as f: + f.write(str) + logger(f"wrote {filename}") + + # Re-generating from the first frame + ar_mask = ( torch.arange(result.size(1), device=result.device) - > self.height * self.width + 2 + >= self.height * self.width + 3 ).long()[None, :] ar_mask = ar_mask.expand_as(result) result *= 1 - ar_mask # paraaaaanoiaaaaaaa @@ -1934,6 +1997,8 @@ class Escape(Task): device=self.device, ) + # Saving the generated sequences + s, a, r, lr = escape.seq2episodes( result, self.height, self.width, lookahead=True ) @@ -1946,5 +2011,9 @@ class Escape(Task): f.write(str) logger(f"wrote {filename}") + self.thinking_autoregression( + n_epoch, model, result_dir, logger, deterministic_synthesis, nmax + ) + ######################################################################