Praveen998 commited on
Commit
a69cbd5
1 Parent(s): 3878a2a

Upload folder using huggingface_hub

Browse files
Files changed (1) hide show
  1. app.py +77 -14
app.py CHANGED
@@ -26,26 +26,89 @@ def on_btn_click():
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  def main():
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- st.title(" Image Prediction (Computer Vision)")
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- option = st.selectbox(" ImageNet / CoCo", [" ImageNet ", " CoCo"])
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- value = st.slider(" Threshold", min_value=0, max_value=100, value=50, key=57)
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  (
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  col1,
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  col2,
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  ) = st.columns(2)
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  with col1:
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- if st.checkbox(" Remove Noise"):
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- st.write("Checkbox checked!")
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  with col2:
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- if st.checkbox(" Increase Resolution"):
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- st.write("Checkbox checked!")
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- uploaded_file = st.file_uploader("Choose a file", type=["jpg", "png", "mp3"])
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- if st.button(" Predict"):
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- st.write("Button clicked!")
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- st.subheader(" Original vs Predicted")
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- image_comparison(
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- img1="https://www.imgonline.com.ua/examples/red-yellow-flower.jpg",
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- img2="https://lettatai.sirv.com/imgonline-com-ua-Negative-lYz1br1SWE.jpg",
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
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  )
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  def main():
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+ st.title(" US Real Estate Data and Market Trends")
 
 
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  (
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  col1,
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  col2,
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  ) = st.columns(2)
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  with col1:
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+ option = st.selectbox(" Monthly / Weekly", [" Monthly ", " Weekly"])
 
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  with col2:
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+ option = st.selectbox(" Current / Historical", [" Current ", " Historical"])
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+ (
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+ col1,
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+ col2,
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+ ) = st.columns(2)
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+ with col1:
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+ option = st.selectbox(" Median / Mean", [" Median ", " Mean"])
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+ with col2:
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+ option = st.selectbox(" San Francisco", [" San Francisco"])
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+ (
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+ col1,
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+ col2,
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+ ) = st.columns(2)
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+ with col1:
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+ selected_color = st.color_picker(" Choose a palate", "#FF0000")
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+ with col2:
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+ value = st.slider(" No of colors", min_value=0, max_value=100, value=50, key=70)
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+ if st.checkbox(" Show raw data"):
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+ st.write("Checkbox checked!")
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+ st.subheader(" Global 3D Visualization")
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+ st.pydeck_chart(
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+ pdk.Deck(
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+ map_style=None,
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+ initial_view_state=pdk.ViewState(
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+ latitude=37.76, longitude=-122.4, zoom=11, pitch=50
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+ ),
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+ layers=[
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+ pdk.Layer(
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+ "HexagonLayer",
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+ data=pd.DataFrame(
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+ np.random.randn(1000, 2) / [50, 50] + [37.76, -122.4],
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+ columns=["lat", "lon"],
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+ ),
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+ get_position="[lon, lat]",
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+ radius=200,
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+ elevation_scale=4,
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+ elevation_range=[0, 1000],
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+ pickable=True,
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+ extruded=True,
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+ ),
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+ pdk.Layer(
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+ "ScatterplotLayer",
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+ data=pd.DataFrame(
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+ np.random.randn(1000, 2) / [50, 50] + [37.76, -122.4],
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+ columns=["lat", "lon"],
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+ ),
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+ get_position="[lon, lat]",
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+ get_color="[200, 30, 0, 160]",
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+ get_radius=200,
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+ ),
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+ ],
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+ )
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+ )
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+ st.subheader(" 2D Visualization")
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+ st.altair_chart(
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+ alt.Chart(
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+ pd.DataFrame(
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+ {
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+ "x": np.random.rand(50),
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+ "y": np.random.rand(50),
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+ "size": np.random.randint(10, 100, 50),
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+ "color": np.random.rand(50),
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+ }
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+ )
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+ )
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+ .mark_circle()
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+ .encode(
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+ x="x",
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+ y="y",
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+ size="size",
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+ color="color",
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+ tooltip=["x", "y", "size", "color"],
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+ )
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+ .properties(width=600, height=400),
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+ use_container_width=True,
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  )
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