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import h5py
import numpy as np
import xarray as xr
from onescience.utils.YParams import YParams
# 各数据集固定的空间和时间维度
DATASET_DIMS = {"T": 10, "H": 721, "W": 1440, "time_step": 6}
def generate_fake_h5(data_dir, var_names, years, dims):
"""
为每个年份生成一个空 h5 文件。
利用 HDF5 chunked 数据集未写入 chunk 即返回 fill_value=0 的特性,
文件实际只含元数据,极小,但 shape 与真实数据完全一致。
均值/标准差也作为数据集内嵌进每年的 h5,与 era5.py 新版读取方式对应。
"""
os.makedirs(os.path.join(data_dir, "data"), exist_ok=True)
T, C = dims["T"], len(var_names)
H, W = dims["H"], dims["W"]
means = np.zeros((1, C, 1, 1), dtype=np.float32)
stds = np.ones((1, C, 1, 1), dtype=np.float32)
for year in years:
path = os.path.join(data_dir, "data", f"{year}.h5")
with h5py.File(path, "w") as f:
ds = f.create_dataset(
"fields",
shape=(T, C, H, W),
dtype="float32",
chunks=(1, C, H, W),
fillvalue=0.0,
)
ds.attrs["variables"] = var_names
ds.attrs["time_step"] = dims["time_step"]
f.create_dataset("global_means", data=means)
f.create_dataset("global_stds", data=stds)
size_kb = os.path.getsize(path) / 1024
print(f" {year}.h5 shape=({T},{C},{H},{W}) "
f"logical={T*C*H*W*4/1024**3:.1f}GB actual={size_kb:.1f}KB")
def generate_fake_npy(result_dir, n_vars, years, dims):
"""
为 short/medium 阶段生成假的模型输出 npy 文件(供 train_medium/train_long 输入)。
只创建一个真实的 npy 文件,其余使用 symlink。
"""
T = dims["T"]
H, W = dims["H"], dims["W"]
time_step = dims["time_step"]
data_root = os.path.join(result_dir, "data")
os.makedirs(data_root, exist_ok=True)
real_year = years[0]
real_dir = os.path.join(data_root, str(real_year))
os.makedirs(real_dir, exist_ok=True)
timestamp = f'{real_year}010100'
real_path = os.path.join(real_dir, f"{timestamp}.npy")
real_data = np.zeros((n_vars, H, W), dtype=np.float32)
np.save(real_path, real_data)
# 当前年份其余时间步 symlink
for i in range(T):
ts = (np.datetime64(f"{real_year}-01-01T00") + np.timedelta64(i * time_step, "h")
).astype(str).replace("-", "").replace("T", "")[:10]
path = os.path.join(real_dir, f"{ts}.npy")
if path != real_path and not os.path.exists(path):
os.symlink(f"{timestamp}.npy", path)
# 其他年份 symlink
for y in years[1:]:
y_dir = os.path.join(data_root, str(y))
os.makedirs(y_dir, exist_ok=True)
for i in range(T):
ts = (np.datetime64(f"{y}-01-01T00") + np.timedelta64(i * time_step, "h")
).astype(str).replace("-", "").replace("T", "")[:10]
path = os.path.join(y_dir, f"{ts}.npy")
if not os.path.exists(path):
rel = os.path.relpath(real_path, y_dir)
os.symlink(rel, path)
print(f" ✅ Fake npy data generated → {result_dir}")
def get_static(data_dir, var, name):
os.makedirs(data_dir, exist_ok=True)
ds = xr.Dataset(
data_vars={
f"{var}": (("valid_time", "latitude", "longitude"),
np.random.rand(1, 721, 1440).astype(np.float32))
},
coords={
"valid_time": ["2015-12-31"],
"latitude": np.linspace(90, -90, 721, dtype=np.float64),
"longitude": np.linspace(0, 359.75, 1440, dtype=np.float64),
"number": 0,
"expver": "",
},
attrs={
"GRIB_centre": "ecmf",
"GRIB_centreDescription": "European Centre for Medium-Range Weather Forecasts",
"GRIB_subCentre": "0",
"Conventions": "CF-1.7",
"institution": "European Centre for Medium-Range Weather Forecasts",
"history": "Generated manually",
}
)
ds.to_netcdf(f"{data_dir}/{name}.nc")
arr = np.random.randn(721, 1440).astype(np.float32)
np.save(f'{data_dir}/land_mask.npy', arr)
np.save(f'{data_dir}/soil_type.npy', arr)
np.save(f'{data_dir}/topography.npy', arr)
print(f"✅ Static data: {arr.shape}, dtype: {arr.dtype}, save to {data_dir}")
if __name__ == "__main__":
cfg_datapipe = YParams("conf/config.yaml", "datapipe")
if cfg_datapipe.dataset.data_dir.startswith("/public/") or cfg_datapipe.dataset.data_dir.startswith("/work/"):
print("请检查 config,确保各 *_dir 指向本地测试路径而非生产路径。")
exit()
years = cfg_datapipe.dataset.train_time + cfg_datapipe.dataset.val_time + cfg_datapipe.dataset.test_time
atm_vars = cfg_datapipe.dataset.channels
n_vars = len(atm_vars)
# 主 ERA5 数据(供 train_short 直接读取,归一化参数已内嵌进每年 h5)
generate_fake_h5(cfg_datapipe.dataset.data_dir, atm_vars, years, DATASET_DIMS)
# 前阶段推理输出:result/short 供 train_medium,result/medium 供 train_long
for stage in ['short', 'medium']:
generate_fake_npy(f'./result/{stage}', n_vars, years, DATASET_DIMS)
static_dir = os.path.join(cfg_datapipe.dataset.data_dir, "static")
get_static(static_dir, 'z', 'geopotential')
get_static(static_dir, 'lsm', 'land_sea_mask')
print("\n✅ Fake datasets generated.")
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