Release v1.0.1
This commit is contained in:
+207
-190
@@ -23,39 +23,43 @@
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"metadata": {},
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"outputs": [],
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"source": [
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"from html import escape\n",
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"from pathlib import Path\n",
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"import sqlite3\n",
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"import importlib\n",
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"import sys\n",
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"from urllib.parse import quote\n",
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"\n",
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"from IPython.display import display\n",
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"import ipywidgets as widgets\n",
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"import pandas as pd\n",
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"\n",
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"START_DIR = Path.cwd().resolve()\n",
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"for candidate in (START_DIR, *START_DIR.parents):\n",
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" if (candidate / \"scripts\" / \"spbt_day.py\").exists():\n",
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" if str(candidate) not in sys.path:\n",
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" sys.path.insert(0, str(candidate))\n",
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" break\n",
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"\n",
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"def find_repo_root(start: Path | None = None) -> Path:\n",
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" \"\"\"Return the nearest parent containing repository-level files.\"\"\"\n",
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" current = (start or Path.cwd()).resolve()\n",
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" for candidate in (current, *current.parents):\n",
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" if (candidate / \"requirements.txt\").exists() and (candidate / \"notebooks\").is_dir():\n",
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" return candidate\n",
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" return current\n",
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"import scripts.spbt_day as spbt_day\n",
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"\n",
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"spbt_day = importlib.reload(spbt_day)\n",
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"\n",
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"add_total_pnl = spbt_day.add_total_pnl\n",
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"calculate_pair_theo_executions = spbt_day.calculate_pair_theo_executions\n",
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"calculate_ranked_pairs_theo_ret = spbt_day.calculate_ranked_pairs_theo_ret\n",
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"create_database_file_selector = spbt_day.create_database_file_selector\n",
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"create_pair_name_dropdown = spbt_day.create_pair_name_dropdown\n",
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"create_pair_trades_market_plot = spbt_day.create_pair_trades_market_plot\n",
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"create_total_pnl_histogram = spbt_day.create_total_pnl_histogram\n",
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"find_repo_root = spbt_day.find_repo_root\n",
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"format_pair_name_for_display = spbt_day.format_pair_name_for_display\n",
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"format_pair_names_for_display = spbt_day.format_pair_names_for_display\n",
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"infer_trading_day_start_ns = spbt_day.infer_trading_day_start_ns\n",
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"load_selector_pair_rankings = spbt_day.load_selector_pair_rankings\n",
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"load_pair_market_data = spbt_day.load_pair_market_data\n",
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"load_trading_instructions = spbt_day.load_trading_instructions\n",
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"show_interactive_dataframe = spbt_day.show_interactive_dataframe\n",
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"\n",
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"REPO_ROOT = find_repo_root()\n",
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"if str(REPO_ROOT) not in sys.path:\n",
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" sys.path.insert(0, str(REPO_ROOT))\n",
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"\n",
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"from scripts.spbt_day import (\n",
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" calculate_ranked_pairs_theo_ret,\n",
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" load_selector_pair_rankings,\n",
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" load_trading_instructions,\n",
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")\n",
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"\n",
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"DEFAULT_DATA_DIR = REPO_ROOT / \"data\"\n",
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"SQLITE_EXTENSIONS = {\".db\", \".sqlite\", \".sqlite3\"}\n",
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"\n",
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"selected_db_path: Path | None = None\n",
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"\n",
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"REPO_ROOT, DEFAULT_DATA_DIR"
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]
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@@ -67,136 +71,12 @@
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"metadata": {},
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"outputs": [],
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"source": [
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"directory_input = widgets.Text(\n",
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" value=str(DEFAULT_DATA_DIR),\n",
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" description=\"Directory\",\n",
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" continuous_update=False,\n",
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" layout=widgets.Layout(width=\"100%\"),\n",
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" style={\"description_width\": \"90px\"},\n",
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"db_selector = create_database_file_selector(\n",
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" default_data_dir=DEFAULT_DATA_DIR,\n",
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" repo_root=REPO_ROOT,\n",
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")\n",
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"\n",
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"show_all_files = widgets.Checkbox(\n",
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" value=False,\n",
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" description=\"Show all files\",\n",
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" indent=False,\n",
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")\n",
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"\n",
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"refresh_button = widgets.Button(\n",
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" description=\"Refresh\",\n",
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" icon=\"refresh\",\n",
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" button_style=\"\",\n",
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" tooltip=\"Rescan the selected directory\",\n",
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")\n",
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"\n",
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"file_select = widgets.Select(\n",
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" options=[],\n",
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" rows=12,\n",
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" description=\"Files\",\n",
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" layout=widgets.Layout(width=\"100%\"),\n",
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" style={\"description_width\": \"90px\"},\n",
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")\n",
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"\n",
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"selected_path_display = widgets.HTML(value=\"<b>Selected database:</b> none\")\n",
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"status_output = widgets.Output()\n",
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"\n",
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"\n",
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"def normalize_directory(raw_path: str) -> Path:\n",
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" path = Path(raw_path).expanduser()\n",
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" if not path.is_absolute():\n",
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" path = REPO_ROOT / path\n",
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" return path.resolve()\n",
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"\n",
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"\n",
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"def list_candidate_files(directory: Path, show_all: bool = False) -> list[Path]:\n",
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" def result_file_sort_key(path: Path) -> tuple[int, str]:\n",
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" name = path.name.lower()\n",
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" if \".spbt_results.\" in name:\n",
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" priority = 0\n",
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" elif \"selector\" in name and \"results\" in name:\n",
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" priority = 1\n",
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" elif \"results\" in name:\n",
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" priority = 2\n",
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" else:\n",
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" priority = 3\n",
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" return priority, name\n",
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"\n",
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" if show_all:\n",
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" return sorted(\n",
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" (path for path in directory.iterdir() if path.is_file()),\n",
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" key=result_file_sort_key,\n",
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" )\n",
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" return sorted(\n",
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" (\n",
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" path\n",
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" for path in directory.iterdir()\n",
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" if path.is_file() and path.suffix.lower() in SQLITE_EXTENSIONS\n",
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" ),\n",
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" key=result_file_sort_key,\n",
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" )\n",
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"\n",
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"\n",
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"def set_selected_database(path_value: str | None) -> None:\n",
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" global selected_db_path\n",
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" selected_db_path = Path(path_value).resolve() if path_value else None\n",
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" label = str(selected_db_path) if selected_db_path else \"none\"\n",
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" selected_path_display.value = f\"<b>Selected database:</b> {escape(label)}\"\n",
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"\n",
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"\n",
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"def refresh_file_list(*_args) -> None:\n",
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" directory = normalize_directory(directory_input.value)\n",
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" with status_output:\n",
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" status_output.clear_output()\n",
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" if not directory.exists():\n",
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" file_select.options = []\n",
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" set_selected_database(None)\n",
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" print(f\"Directory does not exist: {directory}\")\n",
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" return\n",
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" if not directory.is_dir():\n",
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" file_select.options = []\n",
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" set_selected_database(None)\n",
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" print(f\"Path is not a directory: {directory}\")\n",
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" return\n",
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"\n",
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" candidates = list_candidate_files(directory, show_all=show_all_files.value)\n",
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" candidate_values = [str(path) for path in candidates]\n",
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" previous_value = file_select.value\n",
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" file_select.options = [(path.name, str(path)) for path in candidates]\n",
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" if candidates:\n",
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" file_select.value = previous_value if previous_value in candidate_values else candidate_values[0]\n",
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" set_selected_database(file_select.value)\n",
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" else:\n",
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" set_selected_database(None)\n",
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"\n",
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" if candidates:\n",
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" print(f\"Found {len(candidates)} file(s) in {directory}\")\n",
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" else:\n",
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" suffixes = \", \".join(sorted(SQLITE_EXTENSIONS))\n",
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" print(f\"No SQLite files ({suffixes}) found in {directory}\")\n",
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"\n",
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"\n",
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"def on_file_selected(change) -> None:\n",
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" if change[\"name\"] == \"value\":\n",
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" set_selected_database(change[\"new\"])\n",
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"\n",
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"\n",
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"refresh_button.on_click(refresh_file_list)\n",
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"show_all_files.observe(refresh_file_list, names=\"value\")\n",
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"directory_input.observe(refresh_file_list, names=\"value\")\n",
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"file_select.observe(on_file_selected, names=\"value\")\n",
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"\n",
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"display(\n",
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" widgets.VBox(\n",
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" [\n",
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" widgets.HBox([directory_input, refresh_button]),\n",
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" show_all_files,\n",
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" file_select,\n",
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" selected_path_display,\n",
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" status_output,\n",
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" ]\n",
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" )\n",
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")\n",
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"\n",
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"refresh_file_list()"
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"display(db_selector.widget)"
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]
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},
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{
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@@ -206,23 +86,8 @@
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"metadata": {},
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"outputs": [],
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"source": [
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"def selected_database_path() -> Path:\n",
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" \"\"\"Return the interactively selected SQLite result path.\"\"\"\n",
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" if selected_db_path is None:\n",
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" raise ValueError(\"Choose a SQLite result file before continuing.\")\n",
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" if not selected_db_path.exists():\n",
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" raise FileNotFoundError(f\"Selected database does not exist: {selected_db_path}\")\n",
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" if not selected_db_path.is_file():\n",
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" raise ValueError(f\"Selected database path is not a file: {selected_db_path}\")\n",
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" return selected_db_path\n",
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"\n",
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"\n",
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"def connect_selected_database() -> sqlite3.Connection:\n",
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" \"\"\"Open a read-only SQLite connection to the selected result database.\"\"\"\n",
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" db_path = selected_database_path()\n",
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" uri = f\"file:{quote(db_path.as_posix(), safe='/:')}?mode=ro\"\n",
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" return sqlite3.connect(uri, uri=True)\n",
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"\n",
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"selected_database_path = db_selector.selected_database_path\n",
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"connect_selected_database = db_selector.connect_selected_database\n",
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"\n",
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"# Later notebook sections can call selected_database_path() or connect_selected_database()."
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]
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@@ -252,24 +117,11 @@
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"finally:\n",
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" conn.close()\n",
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"\n",
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"selector_pair_rankings"
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]
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},
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{
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"cell_type": "code",
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"execution_count": null,
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"id": "selector-pair-ranking-summary",
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"metadata": {},
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"outputs": [],
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"source": [
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"selector_pair_ranking_summary = (\n",
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" selector_pair_rankings[\"mr_score_parse_status\"]\n",
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" .value_counts(dropna=False)\n",
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" .rename_axis(\"mr_score_parse_status\")\n",
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" .reset_index(name=\"row_count\")\n",
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"selector_pair_rankings_display = format_pair_names_for_display(\n",
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" selector_pair_rankings[[\"pair_rank\", \"pair_name\", \"mr_score_final\"]]\n",
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")\n",
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"\n",
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"selector_pair_ranking_summary"
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"with pd.option_context(\"display.max_rows\", None):\n",
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" display(selector_pair_rankings_display)"
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]
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},
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{
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@@ -279,9 +131,26 @@
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"source": [
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"## Theoretical Return by Pair\n",
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"\n",
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"Load `trading_instructions` and calculate theoretical return for each ranked pair. Each pair starts from a fixed `$10,000` theoretical USD base. `TARGET` opens or replaces the current theoretical position using each asset's `strength` and `reference_price`; `CLOSE` liquidates the open position at the close row's `reference_price`; `HOLD` is ignored.\n",
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"Load `trading_instructions` and calculate theoretical return for each ranked pair. Each pair starts from a fixed `$10,000` theoretical USD base. `TARGET` trades from the current theoretical position to the new target position, where target size is `10000 * strength / reference_price`; `CLOSE` liquidates the open position at the close row's `reference_price`; `HOLD` is ignored.\n",
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"\n",
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"`realized_pnl` and `unrealized_pnl` are percentage returns relative to `$10,000`, sorted by ascending MR rank."
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"`MIN_TARGET_STRENGTH_CHANGE_PCTG` can be raised above `0.0` to skip `TARGET` updates whose absolute percentage strength change is smaller than the threshold since the position was acquired. `num_trades` counts asset-level theoretical trades caused by effective `TARGET` and `CLOSE` rows. `realized_pnl` and `unrealized_pnl` are percentage returns relative to `$10,000`. The displayed dataframe is sorted by total return (`realized_pnl + unrealized_pnl`) ascending."
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]
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},
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{
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"cell_type": "code",
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"execution_count": null,
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"id": "target-change-threshold-input",
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"metadata": {},
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"outputs": [],
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"source": [
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"min_target_change_input = widgets.FloatText(\n",
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" value=0.0,\n",
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" description=\"Mininal TARGET change (%)\",\n",
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" step=1.0,\n",
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" layout=widgets.Layout(width=\"420px\"),\n",
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" style={\"description_width\": \"190px\"},\n",
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")\n",
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"display(min_target_change_input)"
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]
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},
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{
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@@ -297,7 +166,7 @@
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"finally:\n",
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" conn.close()\n",
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"\n",
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"trading_instructions"
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"print(f\"Loaded {len(trading_instructions):,} trading instruction rows.\")"
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]
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},
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{
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@@ -307,12 +176,160 @@
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"metadata": {},
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"outputs": [],
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"source": [
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"pair_theo_ret = calculate_ranked_pairs_theo_ret(\n",
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" selector_pair_rankings,\n",
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"MIN_TARGET_STRENGTH_CHANGE_PCTG = float(min_target_change_input.value)\n",
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"\n",
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"pair_theo_ret = add_total_pnl(\n",
|
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" calculate_ranked_pairs_theo_ret(\n",
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" selector_pair_rankings,\n",
|
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" trading_instructions,\n",
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" min_pctg_change=MIN_TARGET_STRENGTH_CHANGE_PCTG,\n",
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" )\n",
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").sort_values(\n",
|
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" [\"total_pnl\", \"pair_name\"],\n",
|
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" ascending=[True, True],\n",
|
||||
" kind=\"mergesort\",\n",
|
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").drop(columns=\"total_pnl\").reset_index(drop=True)\n",
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"\n",
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"pair_theo_ret_display = format_pair_names_for_display(pair_theo_ret)\n",
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"\n",
|
||||
"show_interactive_dataframe(\n",
|
||||
" pair_theo_ret_display,\n",
|
||||
" table_id=\"pair-theo-ret-grid\",\n",
|
||||
")"
|
||||
]
|
||||
},
|
||||
{
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||||
"cell_type": "markdown",
|
||||
"id": "theoretical-return-histogram-context",
|
||||
"metadata": {},
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||||
"source": [
|
||||
"## Total Theoretical Return Distribution\n",
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||||
"\n",
|
||||
"Plot the distribution of total theoretical return, calculated as `realized_pnl + unrealized_pnl`. Plotly chooses histogram bins automatically."
|
||||
]
|
||||
},
|
||||
{
|
||||
"cell_type": "code",
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||||
"execution_count": null,
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||||
"id": "plot-total-theoretical-return-histogram",
|
||||
"metadata": {},
|
||||
"outputs": [],
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||||
"source": [
|
||||
"total_pnl_histogram = create_total_pnl_histogram(pair_theo_ret)\n",
|
||||
"\n",
|
||||
"total_pnl_histogram"
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||||
]
|
||||
},
|
||||
{
|
||||
"cell_type": "markdown",
|
||||
"id": "individual-pair-analysis-context",
|
||||
"metadata": {},
|
||||
"source": [
|
||||
"## Individual Pair Analysis\n",
|
||||
"\n",
|
||||
"Choose one pair for detailed follow-up analysis. Pair names are sorted alphabetically."
|
||||
]
|
||||
},
|
||||
{
|
||||
"cell_type": "code",
|
||||
"execution_count": null,
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||||
"id": "choose-individual-pair",
|
||||
"metadata": {},
|
||||
"outputs": [],
|
||||
"source": [
|
||||
"pair_name_dropdown = create_pair_name_dropdown(selector_pair_rankings)\n",
|
||||
"display(pair_name_dropdown)"
|
||||
]
|
||||
},
|
||||
{
|
||||
"cell_type": "code",
|
||||
"execution_count": null,
|
||||
"id": "selected-individual-pair",
|
||||
"metadata": {},
|
||||
"outputs": [],
|
||||
"source": [
|
||||
"selected_pair_name = pair_name_dropdown.value\n",
|
||||
"format_pair_name_for_display(selected_pair_name)"
|
||||
]
|
||||
},
|
||||
{
|
||||
"cell_type": "markdown",
|
||||
"id": "selected-pair-theo-executions-context",
|
||||
"metadata": {},
|
||||
"source": [
|
||||
"### Selected Pair Theoretical Executions\n",
|
||||
"\n",
|
||||
"Create the theoretical asset-level executions used by the PnL calculation for the selected pair. `TARGET` rows trade the position difference from the current theoretical position to the new target position, where target size is `10000 * strength / reference_price`; `CLOSE` rows flatten the current theoretical position. Positive size is `BUY`; negative size is `SELL`; USD value is signed as the opposite cash movement."
|
||||
]
|
||||
},
|
||||
{
|
||||
"cell_type": "code",
|
||||
"execution_count": null,
|
||||
"id": "selected-pair-theo-executions",
|
||||
"metadata": {},
|
||||
"outputs": [],
|
||||
"source": [
|
||||
"selected_pair_theo_executions = calculate_pair_theo_executions(\n",
|
||||
" selected_pair_name,\n",
|
||||
" trading_instructions,\n",
|
||||
" min_pctg_change=MIN_TARGET_STRENGTH_CHANGE_PCTG,\n",
|
||||
")\n",
|
||||
"\n",
|
||||
"pair_theo_ret"
|
||||
"selected_pair_theo_execution_columns = [\n",
|
||||
" \"time\",\n",
|
||||
" \"asset\",\n",
|
||||
" \"action\",\n",
|
||||
" \"side\",\n",
|
||||
" \"strength\",\n",
|
||||
" \"size\",\n",
|
||||
" \"price\",\n",
|
||||
" \"usd_value\",\n",
|
||||
"]\n",
|
||||
"selected_pair_theo_executions_display = selected_pair_theo_executions.reindex(\n",
|
||||
" columns=selected_pair_theo_execution_columns\n",
|
||||
")\n",
|
||||
"show_interactive_dataframe(\n",
|
||||
" selected_pair_theo_executions_display,\n",
|
||||
" table_id=\"selected-pair-theo-executions-grid\",\n",
|
||||
")"
|
||||
]
|
||||
},
|
||||
{
|
||||
"cell_type": "markdown",
|
||||
"id": "selected-pair-market-trades-context",
|
||||
"metadata": {},
|
||||
"source": [
|
||||
"### Selected Pair Trades on Market Data\n",
|
||||
"\n",
|
||||
"Load full available 1-minute market data for the selected pair's instruments from `ohlcv_1min`, starting at midnight UTC of the trading day inferred from `trading_instructions`. Close prices are shown as relative prices from each instrument's close at that midnight. Theoretical executions are overlaid at their execution `reference_price`, normalized by the same midnight close. Execution markers use execution timestamps directly and do not require a matching OHLCV row."
|
||||
]
|
||||
},
|
||||
{
|
||||
"cell_type": "code",
|
||||
"execution_count": null,
|
||||
"id": "selected-pair-market-trades-plot",
|
||||
"metadata": {},
|
||||
"outputs": [],
|
||||
"source": [
|
||||
"trading_day_start_ns = infer_trading_day_start_ns(trading_instructions)\n",
|
||||
"\n",
|
||||
"conn = connect_selected_database()\n",
|
||||
"try:\n",
|
||||
" selected_pair_market_data = load_pair_market_data(\n",
|
||||
" conn,\n",
|
||||
" selected_pair_name,\n",
|
||||
" trading_day_start_ns=trading_day_start_ns,\n",
|
||||
" )\n",
|
||||
"finally:\n",
|
||||
" conn.close()\n",
|
||||
"\n",
|
||||
"selected_pair_market_trades_plot = create_pair_trades_market_plot(\n",
|
||||
" selected_pair_name,\n",
|
||||
" selected_pair_market_data,\n",
|
||||
" selected_pair_theo_executions,\n",
|
||||
")\n",
|
||||
"\n",
|
||||
"selected_pair_market_trades_plot"
|
||||
]
|
||||
}
|
||||
],
|
||||
|
||||
Reference in New Issue
Block a user