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import re |
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import time |
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from typing import Optional |
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import IPython.display as disp |
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from ..trainer_callback import TrainerCallback |
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from ..trainer_utils import IntervalStrategy, has_length |
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def format_time(t): |
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"Format `t` (in seconds) to (h):mm:ss" |
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t = int(t) |
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h, m, s = t // 3600, (t // 60) % 60, t % 60 |
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return f"{h}:{m:02d}:{s:02d}" if h != 0 else f"{m:02d}:{s:02d}" |
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def html_progress_bar(value, total, prefix, label, width=300): |
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return f""" |
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<div> |
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{prefix} |
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<progress value='{value}' max='{total}' style='width:{width}px; height:20px; vertical-align: middle;'></progress> |
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{label} |
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</div> |
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""" |
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def text_to_html_table(items): |
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"Put the texts in `items` in an HTML table." |
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html_code = """<table border="1" class="dataframe">\n""" |
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html_code += """ <thead>\n <tr style="text-align: left;">\n""" |
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for i in items[0]: |
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html_code += f" <th>{i}</th>\n" |
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html_code += " </tr>\n </thead>\n <tbody>\n" |
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for line in items[1:]: |
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html_code += " <tr>\n" |
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for elt in line: |
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elt = f"{elt:.6f}" if isinstance(elt, float) else str(elt) |
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html_code += f" <td>{elt}</td>\n" |
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html_code += " </tr>\n" |
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html_code += " </tbody>\n</table><p>" |
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return html_code |
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class NotebookProgressBar: |
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""" |
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A progress par for display in a notebook. |
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Class attributes (overridden by derived classes) |
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- **warmup** (`int`) -- The number of iterations to do at the beginning while ignoring `update_every`. |
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- **update_every** (`float`) -- Since calling the time takes some time, we only do it every presumed |
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`update_every` seconds. The progress bar uses the average time passed up until now to guess the next value |
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for which it will call the update. |
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Args: |
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total (`int`): |
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The total number of iterations to reach. |
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prefix (`str`, *optional*): |
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A prefix to add before the progress bar. |
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leave (`bool`, *optional*, defaults to `True`): |
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Whether or not to leave the progress bar once it's completed. You can always call the |
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[`~utils.notebook.NotebookProgressBar.close`] method to make the bar disappear. |
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parent ([`~notebook.NotebookTrainingTracker`], *optional*): |
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A parent object (like [`~utils.notebook.NotebookTrainingTracker`]) that spawns progress bars and handle |
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their display. If set, the object passed must have a `display()` method. |
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width (`int`, *optional*, defaults to 300): |
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The width (in pixels) that the bar will take. |
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Example: |
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```python |
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import time |
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pbar = NotebookProgressBar(100) |
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for val in range(100): |
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pbar.update(val) |
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time.sleep(0.07) |
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pbar.update(100) |
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```""" |
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warmup = 5 |
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update_every = 0.2 |
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def __init__( |
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self, |
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total: int, |
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prefix: Optional[str] = None, |
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leave: bool = True, |
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parent: Optional["NotebookTrainingTracker"] = None, |
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width: int = 300, |
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): |
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self.total = total |
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self.prefix = "" if prefix is None else prefix |
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self.leave = leave |
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self.parent = parent |
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self.width = width |
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self.last_value = None |
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self.comment = None |
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self.output = None |
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def update(self, value: int, force_update: bool = False, comment: str = None): |
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""" |
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The main method to update the progress bar to `value`. |
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Args: |
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value (`int`): |
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The value to use. Must be between 0 and `total`. |
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force_update (`bool`, *optional*, defaults to `False`): |
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Whether or not to force and update of the internal state and display (by default, the bar will wait for |
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`value` to reach the value it predicted corresponds to a time of more than the `update_every` attribute |
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since the last update to avoid adding boilerplate). |
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comment (`str`, *optional*): |
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A comment to add on the left of the progress bar. |
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""" |
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self.value = value |
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if comment is not None: |
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self.comment = comment |
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if self.last_value is None: |
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self.start_time = self.last_time = time.time() |
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self.start_value = self.last_value = value |
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self.elapsed_time = self.predicted_remaining = None |
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self.first_calls = self.warmup |
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self.wait_for = 1 |
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self.update_bar(value) |
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elif value <= self.last_value and not force_update: |
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return |
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elif force_update or self.first_calls > 0 or value >= min(self.last_value + self.wait_for, self.total): |
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if self.first_calls > 0: |
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self.first_calls -= 1 |
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current_time = time.time() |
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self.elapsed_time = current_time - self.start_time |
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if value > self.start_value: |
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self.average_time_per_item = self.elapsed_time / (value - self.start_value) |
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else: |
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self.average_time_per_item = None |
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if value >= self.total: |
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value = self.total |
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self.predicted_remaining = None |
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if not self.leave: |
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self.close() |
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elif self.average_time_per_item is not None: |
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self.predicted_remaining = self.average_time_per_item * (self.total - value) |
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self.update_bar(value) |
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self.last_value = value |
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self.last_time = current_time |
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if self.average_time_per_item is None: |
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self.wait_for = 1 |
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else: |
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self.wait_for = max(int(self.update_every / self.average_time_per_item), 1) |
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def update_bar(self, value, comment=None): |
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spaced_value = " " * (len(str(self.total)) - len(str(value))) + str(value) |
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if self.elapsed_time is None: |
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self.label = f"[{spaced_value}/{self.total} : < :" |
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elif self.predicted_remaining is None: |
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self.label = f"[{spaced_value}/{self.total} {format_time(self.elapsed_time)}" |
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else: |
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self.label = ( |
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f"[{spaced_value}/{self.total} {format_time(self.elapsed_time)} <" |
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f" {format_time(self.predicted_remaining)}" |
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) |
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self.label += f", {1/self.average_time_per_item:.2f} it/s" |
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self.label += "]" if self.comment is None or len(self.comment) == 0 else f", {self.comment}]" |
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self.display() |
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def display(self): |
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self.html_code = html_progress_bar(self.value, self.total, self.prefix, self.label, self.width) |
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if self.parent is not None: |
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self.parent.display() |
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return |
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if self.output is None: |
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self.output = disp.display(disp.HTML(self.html_code), display_id=True) |
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else: |
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self.output.update(disp.HTML(self.html_code)) |
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def close(self): |
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"Closes the progress bar." |
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if self.parent is None and self.output is not None: |
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self.output.update(disp.HTML("")) |
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class NotebookTrainingTracker(NotebookProgressBar): |
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""" |
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An object tracking the updates of an ongoing training with progress bars and a nice table reporting metrics. |
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Args: |
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num_steps (`int`): The number of steps during training. column_names (`List[str]`, *optional*): |
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The list of column names for the metrics table (will be inferred from the first call to |
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[`~utils.notebook.NotebookTrainingTracker.write_line`] if not set). |
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""" |
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def __init__(self, num_steps, column_names=None): |
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super().__init__(num_steps) |
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self.inner_table = None if column_names is None else [column_names] |
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self.child_bar = None |
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def display(self): |
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self.html_code = html_progress_bar(self.value, self.total, self.prefix, self.label, self.width) |
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if self.inner_table is not None: |
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self.html_code += text_to_html_table(self.inner_table) |
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if self.child_bar is not None: |
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self.html_code += self.child_bar.html_code |
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if self.output is None: |
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self.output = disp.display(disp.HTML(self.html_code), display_id=True) |
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else: |
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self.output.update(disp.HTML(self.html_code)) |
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def write_line(self, values): |
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""" |
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Write the values in the inner table. |
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Args: |
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values (`Dict[str, float]`): The values to display. |
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""" |
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if self.inner_table is None: |
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self.inner_table = [list(values.keys()), list(values.values())] |
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else: |
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columns = self.inner_table[0] |
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for key in values.keys(): |
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if key not in columns: |
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columns.append(key) |
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self.inner_table[0] = columns |
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if len(self.inner_table) > 1: |
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last_values = self.inner_table[-1] |
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first_column = self.inner_table[0][0] |
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if last_values[0] != values[first_column]: |
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self.inner_table.append([values[c] if c in values else "No Log" for c in columns]) |
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else: |
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new_values = values |
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for c in columns: |
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if c not in new_values.keys(): |
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new_values[c] = last_values[columns.index(c)] |
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self.inner_table[-1] = [new_values[c] for c in columns] |
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else: |
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self.inner_table.append([values[c] for c in columns]) |
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def add_child(self, total, prefix=None, width=300): |
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""" |
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Add a child progress bar displayed under the table of metrics. The child progress bar is returned (so it can be |
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easily updated). |
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Args: |
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total (`int`): The number of iterations for the child progress bar. |
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prefix (`str`, *optional*): A prefix to write on the left of the progress bar. |
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width (`int`, *optional*, defaults to 300): The width (in pixels) of the progress bar. |
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""" |
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self.child_bar = NotebookProgressBar(total, prefix=prefix, parent=self, width=width) |
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return self.child_bar |
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def remove_child(self): |
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""" |
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Closes the child progress bar. |
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""" |
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self.child_bar = None |
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self.display() |
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class NotebookProgressCallback(TrainerCallback): |
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""" |
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A [`TrainerCallback`] that displays the progress of training or evaluation, optimized for Jupyter Notebooks or |
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Google colab. |
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""" |
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def __init__(self): |
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self.training_tracker = None |
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self.prediction_bar = None |
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self._force_next_update = False |
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def on_train_begin(self, args, state, control, **kwargs): |
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self.first_column = "Epoch" if args.evaluation_strategy == IntervalStrategy.EPOCH else "Step" |
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self.training_loss = 0 |
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self.last_log = 0 |
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column_names = [self.first_column] + ["Training Loss"] |
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if args.evaluation_strategy != IntervalStrategy.NO: |
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column_names.append("Validation Loss") |
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self.training_tracker = NotebookTrainingTracker(state.max_steps, column_names) |
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def on_step_end(self, args, state, control, **kwargs): |
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epoch = int(state.epoch) if int(state.epoch) == state.epoch else f"{state.epoch:.2f}" |
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self.training_tracker.update( |
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state.global_step + 1, |
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comment=f"Epoch {epoch}/{state.num_train_epochs}", |
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force_update=self._force_next_update, |
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) |
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self._force_next_update = False |
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def on_prediction_step(self, args, state, control, eval_dataloader=None, **kwargs): |
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if not has_length(eval_dataloader): |
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return |
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if self.prediction_bar is None: |
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if self.training_tracker is not None: |
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self.prediction_bar = self.training_tracker.add_child(len(eval_dataloader)) |
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else: |
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self.prediction_bar = NotebookProgressBar(len(eval_dataloader)) |
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self.prediction_bar.update(1) |
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else: |
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self.prediction_bar.update(self.prediction_bar.value + 1) |
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def on_predict(self, args, state, control, **kwargs): |
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if self.prediction_bar is not None: |
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self.prediction_bar.close() |
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self.prediction_bar = None |
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def on_log(self, args, state, control, logs=None, **kwargs): |
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if args.evaluation_strategy == IntervalStrategy.NO and "loss" in logs: |
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values = {"Training Loss": logs["loss"]} |
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values["Step"] = state.global_step |
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self.training_tracker.write_line(values) |
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def on_evaluate(self, args, state, control, metrics=None, **kwargs): |
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if self.training_tracker is not None: |
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values = {"Training Loss": "No log", "Validation Loss": "No log"} |
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for log in reversed(state.log_history): |
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if "loss" in log: |
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values["Training Loss"] = log["loss"] |
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break |
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if self.first_column == "Epoch": |
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values["Epoch"] = int(state.epoch) |
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else: |
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values["Step"] = state.global_step |
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metric_key_prefix = "eval" |
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for k in metrics: |
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if k.endswith("_loss"): |
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metric_key_prefix = re.sub(r"\_loss$", "", k) |
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_ = metrics.pop("total_flos", None) |
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_ = metrics.pop("epoch", None) |
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_ = metrics.pop(f"{metric_key_prefix}_runtime", None) |
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_ = metrics.pop(f"{metric_key_prefix}_samples_per_second", None) |
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_ = metrics.pop(f"{metric_key_prefix}_steps_per_second", None) |
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_ = metrics.pop(f"{metric_key_prefix}_jit_compilation_time", None) |
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for k, v in metrics.items(): |
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splits = k.split("_") |
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name = " ".join([part.capitalize() for part in splits[1:]]) |
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if name == "Loss": |
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name = "Validation Loss" |
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values[name] = v |
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self.training_tracker.write_line(values) |
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self.training_tracker.remove_child() |
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self.prediction_bar = None |
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self._force_next_update = True |
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def on_train_end(self, args, state, control, **kwargs): |
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self.training_tracker.update( |
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state.global_step, comment=f"Epoch {int(state.epoch)}/{state.num_train_epochs}", force_update=True |
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) |
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self.training_tracker = None |
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