This commit is contained in:
2026-07-14 18:08:36 +07:00
parent fa338dd0f8
commit a798cd119e
9 changed files with 186 additions and 60 deletions
+76 -16
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@@ -2,7 +2,7 @@
julia_version = "1.12.6" julia_version = "1.12.6"
manifest_format = "2.0" manifest_format = "2.0"
project_hash = "a2c996ffe370e277cbff80af974d2701698f1b6c" project_hash = "db8baf2dd943e4138b5952183a64465f457da356"
[[deps.Accessors]] [[deps.Accessors]]
deps = ["CompositionsBase", "ConstructionBase", "Dates", "InverseFunctions", "MacroTools"] deps = ["CompositionsBase", "ConstructionBase", "Dates", "InverseFunctions", "MacroTools"]
@@ -38,6 +38,12 @@ version = "1.1.3"
uuid = "0dad84c5-d112-42e6-8d28-ef12dabb789f" uuid = "0dad84c5-d112-42e6-8d28-ef12dabb789f"
version = "1.1.2" version = "1.1.2"
[[deps.ArnoldiMethod]]
deps = ["LinearAlgebra", "Random", "StaticArrays"]
git-tree-sha1 = "d57bd3762d308bded22c3b82d033bff85f6195c6"
uuid = "ec485272-7323-5ecc-a04f-4719b315124d"
version = "0.4.0"
[[deps.ArrowTypes]] [[deps.ArrowTypes]]
deps = ["Sockets", "UUIDs"] deps = ["Sockets", "UUIDs"]
git-tree-sha1 = "404265cd8128a2515a81d5eae16de90fdef05101" git-tree-sha1 = "404265cd8128a2515a81d5eae16de90fdef05101"
@@ -181,6 +187,20 @@ git-tree-sha1 = "e98abef36d02a0ec385d68cd7dadbce9b28cbd88"
uuid = "abce61dc-4473-55a0-ba07-351d65e31d42" uuid = "abce61dc-4473-55a0-ba07-351d65e31d42"
version = "0.4.1" version = "0.4.1"
[[deps.Distances]]
deps = ["LinearAlgebra", "Statistics", "StatsAPI"]
git-tree-sha1 = "c7e3a542b999843086e2f29dac96a618c105be1d"
uuid = "b4f34e82-e78d-54a5-968a-f98e89d6e8f7"
version = "0.10.12"
[deps.Distances.extensions]
DistancesChainRulesCoreExt = "ChainRulesCore"
DistancesSparseArraysExt = "SparseArrays"
[deps.Distances.weakdeps]
ChainRulesCore = "d360d2e6-b24c-11e9-a2a3-2a2ae2dbcce4"
SparseArrays = "2f01184e-e22b-5df5-ae63-d93ebab69eaf"
[[deps.Distributed]] [[deps.Distributed]]
deps = ["Random", "Serialization", "Sockets"] deps = ["Random", "Serialization", "Sockets"]
uuid = "8ba89e20-285c-5b6f-9357-94700520ee1b" uuid = "8ba89e20-285c-5b6f-9357-94700520ee1b"
@@ -250,6 +270,7 @@ deps = ["LinearAlgebra"]
git-tree-sha1 = "2f979084d1e13948a3352cf64a25df6bd3b4dca3" git-tree-sha1 = "2f979084d1e13948a3352cf64a25df6bd3b4dca3"
uuid = "1a297f60-69ca-5386-bcde-b61e274b549b" uuid = "1a297f60-69ca-5386-bcde-b61e274b549b"
version = "1.16.0" version = "1.16.0"
weakdeps = ["PDMats", "SparseArrays", "StaticArrays", "Statistics"]
[deps.FillArrays.extensions] [deps.FillArrays.extensions]
FillArraysPDMatsExt = "PDMats" FillArraysPDMatsExt = "PDMats"
@@ -257,12 +278,6 @@ version = "1.16.0"
FillArraysStaticArraysExt = "StaticArrays" FillArraysStaticArraysExt = "StaticArrays"
FillArraysStatisticsExt = "Statistics" FillArraysStatisticsExt = "Statistics"
[deps.FillArrays.weakdeps]
PDMats = "90014a1f-27ba-587c-ab20-58faa44d9150"
SparseArrays = "2f01184e-e22b-5df5-ae63-d93ebab69eaf"
StaticArrays = "90137ffa-7385-5640-81b9-e52037218182"
Statistics = "10745b16-79ce-11e8-11f9-7d13ad32a3b2"
[[deps.Future]] [[deps.Future]]
deps = ["Random"] deps = ["Random"]
uuid = "9fa8497b-333b-5362-9e8d-4d0656e87820" uuid = "9fa8497b-333b-5362-9e8d-4d0656e87820"
@@ -274,12 +289,23 @@ uuid = "a0844989-3bd2-4988-8bea-c9407ab0941b"
version = "1.1.0" version = "1.1.0"
[[deps.GeneralUtils]] [[deps.GeneralUtils]]
deps = ["CSV", "DataFrames", "DataStructures", "Dates", "Distributions", "HTTP", "JSON", "NATS", "PrettyPrinting", "Random", "Revise", "SHA", "UUIDs"] deps = ["CSV", "DataFrames", "DataStructures", "Dates", "Distributions", "Graphs", "HTTP", "JSON", "LibPQ", "NATS", "PrettyPrinting", "Random", "Revise", "SHA", "StringDistances", "UUIDs"]
git-tree-sha1 = "7c0600c166a5deb2c607018a491c04eb25969c2e" path = "../GeneralUtils"
repo-rev = "main"
repo-url = "https://git.yiem.cc/ton/GeneralUtils"
uuid = "c6c72f09-b708-4ac8-ac7c-2084d70108fe" uuid = "c6c72f09-b708-4ac8-ac7c-2084d70108fe"
version = "0.4.9" version = "0.4.10"
[[deps.Graphs]]
deps = ["ArnoldiMethod", "DataStructures", "Inflate", "LinearAlgebra", "Random", "SimpleTraits", "SparseArrays", "Statistics"]
git-tree-sha1 = "7eb45fe833a5b7c51cf6d89c5a841d5967e44be3"
uuid = "86223c79-3864-5bf0-83f7-82e725a168b6"
version = "1.14.0"
[deps.Graphs.extensions]
GraphsSharedArraysExt = "SharedArrays"
[deps.Graphs.weakdeps]
Distributed = "8ba89e20-285c-5b6f-9357-94700520ee1b"
SharedArrays = "1a1011a3-84de-559e-8e89-a11a2f7dc383"
[[deps.HTTP]] [[deps.HTTP]]
deps = ["Base64", "CodecZlib", "Dates", "EnumX", "PrecompileTools", "Random", "Reseau", "SHA", "URIs", "UUIDs", "Zlib_jll"] deps = ["Base64", "CodecZlib", "Dates", "EnumX", "PrecompileTools", "Random", "Reseau", "SHA", "URIs", "UUIDs", "Zlib_jll"]
@@ -310,6 +336,11 @@ git-tree-sha1 = "cf8234411cbeb98676c173f930951ea29dca3b23"
uuid = "a303e19e-6eb4-11e9-3b09-cd9505f79100" uuid = "a303e19e-6eb4-11e9-3b09-cd9505f79100"
version = "0.2.4" version = "0.2.4"
[[deps.Inflate]]
git-tree-sha1 = "d1b1b796e47d94588b3757fe84fbf65a5ec4a80d"
uuid = "d25df0c9-e2be-5dd7-82c8-3ad0b3e990b9"
version = "0.1.5"
[[deps.InlineStrings]] [[deps.InlineStrings]]
git-tree-sha1 = "8f3d257792a522b4601c24a577954b0a8cd7334d" git-tree-sha1 = "8f3d257792a522b4601c24a577954b0a8cd7334d"
uuid = "842dd82b-1e85-43dc-bf29-5d0ee9dffc48" uuid = "842dd82b-1e85-43dc-bf29-5d0ee9dffc48"
@@ -760,9 +791,7 @@ version = "0.7.0"
[[deps.SQLLLM]] [[deps.SQLLLM]]
deps = ["CSV", "DataFrames", "DataStructures", "Dates", "FileIO", "GeneralUtils", "HTTP", "JSON", "LLMMCTS", "LibPQ", "PrettyPrinting", "Random", "Revise", "StatsBase", "Tables", "URIs", "UUIDs"] deps = ["CSV", "DataFrames", "DataStructures", "Dates", "FileIO", "GeneralUtils", "HTTP", "JSON", "LLMMCTS", "LibPQ", "PrettyPrinting", "Random", "Revise", "StatsBase", "Tables", "URIs", "UUIDs"]
git-tree-sha1 = "2807a768907f59308d8d71ece599037b0a66b0a5" path = "../SQLLLM"
repo-rev = "main"
repo-url = "https://git.yiem.cc/ton/SQLLLM"
uuid = "2ebc79c7-cc10-4a3a-9665-d2e1d61e63d3" uuid = "2ebc79c7-cc10-4a3a-9665-d2e1d61e63d3"
version = "0.2.7" version = "0.2.7"
@@ -793,6 +822,12 @@ version = "1.4.10"
uuid = "9e88b42a-f829-5b0c-bbe9-9e923198166b" uuid = "9e88b42a-f829-5b0c-bbe9-9e923198166b"
version = "1.11.0" version = "1.11.0"
[[deps.SimpleTraits]]
deps = ["InteractiveUtils", "MacroTools"]
git-tree-sha1 = "7ddb0b49c109481b046972c0e4ab02b2127d6a75"
uuid = "699a6c99-e7fa-54fc-8d76-47d257e15c1d"
version = "0.9.6"
[[deps.Sockets]] [[deps.Sockets]]
uuid = "6462fe0b-24de-5631-8697-dd941f90decc" uuid = "6462fe0b-24de-5631-8697-dd941f90decc"
version = "1.11.0" version = "1.11.0"
@@ -826,6 +861,25 @@ version = "2.8.0"
[deps.SpecialFunctions.weakdeps] [deps.SpecialFunctions.weakdeps]
ChainRulesCore = "d360d2e6-b24c-11e9-a2a3-2a2ae2dbcce4" ChainRulesCore = "d360d2e6-b24c-11e9-a2a3-2a2ae2dbcce4"
[[deps.StaticArrays]]
deps = ["LinearAlgebra", "PrecompileTools", "Random", "StaticArraysCore"]
git-tree-sha1 = "246a8bb2e6667f832eea063c3a56aef96429a3db"
uuid = "90137ffa-7385-5640-81b9-e52037218182"
version = "1.9.18"
[deps.StaticArrays.extensions]
StaticArraysChainRulesCoreExt = "ChainRulesCore"
StaticArraysStatisticsExt = "Statistics"
[deps.StaticArrays.weakdeps]
ChainRulesCore = "d360d2e6-b24c-11e9-a2a3-2a2ae2dbcce4"
Statistics = "10745b16-79ce-11e8-11f9-7d13ad32a3b2"
[[deps.StaticArraysCore]]
git-tree-sha1 = "6ab403037779dae8c514bad259f32a447262455a"
uuid = "1e83bf80-4336-4d27-bf5d-d5a4f845583c"
version = "1.4.4"
[[deps.Statistics]] [[deps.Statistics]]
deps = ["LinearAlgebra"] deps = ["LinearAlgebra"]
git-tree-sha1 = "ae3bb1eb3bba077cd276bc5cfc337cc65c3075c0" git-tree-sha1 = "ae3bb1eb3bba077cd276bc5cfc337cc65c3075c0"
@@ -862,6 +916,12 @@ version = "2.2.0"
ChainRulesCore = "d360d2e6-b24c-11e9-a2a3-2a2ae2dbcce4" ChainRulesCore = "d360d2e6-b24c-11e9-a2a3-2a2ae2dbcce4"
InverseFunctions = "3587e190-3f89-42d0-90ee-14403ec27112" InverseFunctions = "3587e190-3f89-42d0-90ee-14403ec27112"
[[deps.StringDistances]]
deps = ["Distances", "StatsAPI"]
git-tree-sha1 = "cd83a04baf746e3b43b83c61b7de77ab0409b80a"
uuid = "88034a9c-02f8-509d-84a9-84ec65e18404"
version = "1.0.0"
[[deps.StringManipulation]] [[deps.StringManipulation]]
deps = ["PrecompileTools"] deps = ["PrecompileTools"]
git-tree-sha1 = "d05693d339e37d6ab134c5ab53c29fce5ee5d7d5" git-tree-sha1 = "d05693d339e37d6ab134c5ab53c29fce5ee5d7d5"
@@ -983,7 +1043,7 @@ uuid = "76eceee3-57b5-4d4a-8e66-0e911cebbf60"
version = "1.6.1" version = "1.6.1"
[[deps.YiemAgent]] [[deps.YiemAgent]]
deps = ["CSV", "DataFrames", "DataStructures", "Dates", "GeneralUtils", "HTTP", "JSON", "LLMMCTS", "LibPQ", "NATS", "PrettyPrinting", "Random", "Revise", "Serialization", "URIs", "UUIDs"] deps = ["CSV", "DataFrames", "DataStructures", "Dates", "GeneralUtils", "HTTP", "JSON", "LLMMCTS", "LibPQ", "NATS", "PrettyPrinting", "Random", "Revise", "SQLLLM", "Serialization", "URIs", "UUIDs"]
path = "." path = "."
uuid = "e012c34b-7f78-48e0-971c-7abb83b6f0a2" uuid = "e012c34b-7f78-48e0-971c-7abb83b6f0a2"
version = "0.5.0" version = "0.5.0"
-2
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@@ -25,9 +25,7 @@ UUIDs = "cf7118a7-6976-5b1a-9a39-7adc72f591a4"
[compat] [compat]
CSV = "0.10.15" CSV = "0.10.15"
DataFrames = "1.7.0" DataFrames = "1.7.0"
GeneralUtils = "0.4.9"
HTTP = "2.4.0" HTTP = "2.4.0"
JSON = "1.6.1" JSON = "1.6.1"
LLMMCTS = "0.1.5" LLMMCTS = "0.1.5"
NATS = "0.1.0" NATS = "0.1.0"
SQLLLM = "0.2.7"
+1 -1
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@@ -54,7 +54,7 @@ Your name is $(newAgent.name). You are a helpful sommelier for website-based $(n
# Available Actions # Available Actions
- **CHAT_BOX** which you can use to talk with the user. - **CHAT_BOX** which you can use to talk with the user.
- **CHECK_WINE** allows you to check information about wines you want in your inventory's database. The input is text that specify supported search criteria includeing: retailer_name, wine price, winery, name, vintage, region, country, type, grape varietal, tasting notes, occasion, food pairing, intensity, tannin, sweetness, and acidity. - **SEARCH_WINE_DATABASE** allows you to check information about wines you want in your inventory's database. The input is text that specify supported search criteria includeing: retailer_name, wine price, winery, name, vintage, region, country, type, grape varietal, tasting notes, occasion, food pairing, intensity, tannin, sweetness, and acidity.
- Example query 1: "Dry, full-bodied red wine from 1) region: Burgundy, country: France or 2) region: Tuscany, country: Italy. Grape varietal: Merlot or Syrah. price 100 to 1000 USD." - Example query 1: "Dry, full-bodied red wine from 1) region: Burgundy, country: France or 2) region: Tuscany, country: Italy. Grape varietal: Merlot or Syrah. price 100 to 1000 USD."
- Example query 2: "Red or white wine, medium tannin, price under 700 USD" - Example query 2: "Red or white wine, medium tannin, price under 700 USD"
- Example query 3: "white wine, region: Tuscany or Bordeaux, country: Italy or France - Example query 3: "white wine, region: Tuscany or Bordeaux, country: Italy or France
+6 -5
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@@ -6,6 +6,7 @@
"testingOrProduction": "testing", "testingOrProduction": "testing",
"agentId": "2b74b87a-5413-4fe2-a4d3-405891051680", "agentId": "2b74b87a-5413-4fe2-a4d3-405891051680",
"agentCentralConfigSubject": "/yiem/hq/agent/sommelier/backend/config/api/v1.1", "agentCentralConfigSubject": "/yiem/hq/agent/sommelier/backend/config/api/v1.1",
"this_service_name": "agent_backend",
"this_service_input_channel": { "this_service_input_channel": {
"mqtt": [ "mqtt": [
"/yiem/hq/agent/sommpanion/backend/db/api_v1" "/yiem/hq/agent/sommpanion/backend/db/api_v1"
@@ -16,7 +17,7 @@
}, },
"agentRole": "sommelier", "agentRole": "sommelier",
"organization": "yiem_hq", "organization": "yiem_hq",
"externalService": { "externalservice": {
"servicesloadbalancer": { "servicesloadbalancer": {
"nats": "sommpanion.backend.servicesloadbalancer.v1.inbox" "nats": "sommpanion.backend.servicesloadbalancer.v1.inbox"
}, },
@@ -35,15 +36,15 @@
"description": "A database connection info for LibPQ client", "description": "A database connection info for LibPQ client",
"url": "192.168.88.106:5432", "url": "192.168.88.106:5432",
"dbname": "winedb", "dbname": "winedb",
"user": "yiemtechnologies@gmail.com", "user": "admin",
"password": "yiemtechnologies@Postgres_0.0" "password": "admin@Sommpanion_0.0"
}, },
"sommpanion_vectordb" : { "sommpanion_vectordb" : {
"description": "A wine database connection info for LibPQ client", "description": "A wine database connection info for LibPQ client",
"url": "192.168.88.106:5433", "url": "192.168.88.106:5433",
"dbname": "vectordb", "dbname": "vectordb",
"user": "yiemtechnologies@gmail.com", "user": "admin",
"password": "yiemtechnologies@Postgres_0.0" "password": "admin@Sommpanion_0.0"
}, },
"fileserver": { "fileserver": {
"description": "temporary file server", "description": "temporary file server",
+27 -19
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@@ -68,7 +68,7 @@ julia> result = decisionMaker(agent)
OrderedDict{String, Any} with 4 entries: OrderedDict{String, Any} with 4 entries:
"plan" => "The user provided an image of a sparkling white wine (Asolo Prosecco Bella Principessa from Italy) and requested a search for similar wines in the inventory. According to store guidelines, I must st… "plan" => "The user provided an image of a sparkling white wine (Asolo Prosecco Bella Principessa from Italy) and requested a search for similar wines in the inventory. According to store guidelines, I must st…
"action_name" => "CHECK_WINE" "action_name" => "SEARCH_WINE_DATABASE"
"action_input" => "Sparkling white wine from Italy" "action_input" => "Sparkling white wine from Italy"
"action_result" => "1) winery: Terrazze dell Etna, wine_name: Rose Brut. "action_result" => "1) winery: Terrazze dell Etna, wine_name: Rose Brut.
``` ```
@@ -177,7 +177,7 @@ function decisionMaker(a::T; recentevents::Integer=20, maxattempt=10
continue continue
end end
# if responsedict["action_name"] ∉ ["CHAT_BOX", "CHECK_WINE", "PRESENT_WINE_GUIDELINE", "END_CONVER_GUIDELINE"] # if responsedict["action_name"] ∉ ["CHAT_BOX", "SEARCH_WINE_DATABASE", "PRESENT_WINE_GUIDELINE", "END_CONVER_GUIDELINE"]
# errornote = "Your previous attempt didn't use the given functions" # errornote = "Your previous attempt didn't use the given functions"
# println("\nERROR YiemAgent decisionMaker() $errornote --(not qualify response)--> $(responsedict["action_name"])", @__FILE__, ":", @__LINE__, " $(Dates.now())") # println("\nERROR YiemAgent decisionMaker() $errornote --(not qualify response)--> $(responsedict["action_name"])", @__FILE__, ":", @__LINE__, " $(Dates.now())")
# continue # continue
@@ -392,7 +392,7 @@ function conversation(a::sommelier; userinput::Union{Dict{String, Any}, JSON.Obj
end end
@info "YiemAgent conversation() 2-3 think count $loopcount " @__LINE__ @info "YiemAgent conversation() 2-3 think count $loopcount " @__LINE__
thoughtdict, _ = think(a) thoughtdict, result_raw = think(a)
if thoughtdict["action_name"] ["CHAT_BOX"] if thoughtdict["action_name"] ["CHAT_BOX"]
@info "YiemAgent conversation() 2-4 think count $loopcount " @__LINE__ @info "YiemAgent conversation() 2-4 think count $loopcount " @__LINE__
assistant_response = Dict{String, Any}( assistant_response = Dict{String, Any}(
@@ -401,7 +401,25 @@ function conversation(a::sommelier; userinput::Union{Dict{String, Any}, JSON.Obj
) )
addNewMessage(a, "assistant", assistant_response; maximumMsg=maximumMsg) addNewMessage(a, "assistant", assistant_response; maximumMsg=maximumMsg)
return thoughtdict["action_input"] return thoughtdict["action_input"]
# elseif thoughtdict["action_name"] ∈ ["CHAT_BOX"]
# @info "YiemAgent conversation() 2-4 think count $loopcount " @__LINE__
# assistant_response = Dict{String, Any}(
# "role" => "assistant",
# "content" => [
# Dict("type" => "text", "text" => thoughtdict["action_input"]),
# Dict( #WORKING put 1st image here
# "type" => "image_url",
# "image_url" => Dict("url" => image1_data_uri)
# ),
# Dict( #WORKING put 2nd image here
# "type" => "image_url",
# "image_url" => Dict("url" => image2_data_uri)
# ),
# ]
# )
# addNewMessage(a, "assistant", assistant_response; maximumMsg=maximumMsg)
return thoughtdict["action_input"] #XXX change output from string to dict
else else
action_name = thoughtdict["action_name"] action_name = thoughtdict["action_name"]
action_input = thoughtdict["action_input"] action_input = thoughtdict["action_input"]
@@ -452,27 +470,17 @@ function think(a::T)::NamedTuple{(:thoughtdict, :result_raw), Tuple{OrderedDict,
elseif thoughtdict["action_name"] ["WINE_PRESENTATION_GUIDELINE"] elseif thoughtdict["action_name"] ["WINE_PRESENTATION_GUIDELINE"]
@info "YiemAgent think() 4 " @__LINE__ @info "YiemAgent think() 4 " @__LINE__
thoughtdict, result_raw = wine_presentation_guideline!(a, thoughtdict) thoughtdict, result_raw = wine_presentation_guideline!(a, thoughtdict)
elseif thoughtdict["action_name"] == "CHECK_WINE" elseif thoughtdict["action_name"] == "SEARCH_WINE_DATABASE"
@info "YiemAgent think() 5 " @__LINE__ @info "YiemAgent think() 5 " @__LINE__
thoughtdict, result_raw = checkwine!(a, thoughtdict; useSQLLLM=false) thoughtdict, result_raw = search_wine_database!(a, thoughtdict; useSQLLLM=true)
#WORKING result_raw will be a df. i need to get images so i can send to frontend
else else
@info "YiemAgent think() 6 " @__LINE__ @info "YiemAgent think() 6 " @__LINE__
error("condition is not defined ", @__FILE__, ":", @__LINE__, " $(Dates.now())") error("condition is not defined ", @__FILE__, ":", @__LINE__, " $(Dates.now())")
end end
println("\n")
# max_ind = @show thoughtdict
# if length(a.memory["shortmem"]) == 0
# 0
# else
# k = keys(a.memory["shortmem"])
# maximum(parse.(Int, k))
# end
# a.memory["shortmem"]["$(max_ind + 1)"] = thoughtdict
pprintln(thoughtdict)
@info "YiemAgent think() 7 " @__LINE__ @info "YiemAgent think() 7 " @__LINE__
return (thoughtdict=thoughtdict, result_raw=result_raw) return (thoughtdict=thoughtdict, result_raw=result_raw)
end end
@@ -700,7 +708,7 @@ function generatechat!(a::T; maxattempt::Integer=10
continue continue
end end
# if responsedict["action_name"] ∉ ["CHAT_BOX", "CHECK_WINE", "PRESENT_WINE_GUIDELINE", "END_CONVER_GUIDELINE"] # if responsedict["action_name"] ∉ ["CHAT_BOX", "SEARCH_WINE_DATABASE", "PRESENT_WINE_GUIDELINE", "END_CONVER_GUIDELINE"]
# errornote = "Your previous attempt didn't use the given functions" # errornote = "Your previous attempt didn't use the given functions"
# println("\nERROR YiemAgent decisionMaker() $errornote --(not qualify response)--> $(responsedict["action_name"])", @__FILE__, ":", @__LINE__, " $(Dates.now())") # println("\nERROR YiemAgent decisionMaker() $errornote --(not qualify response)--> $(responsedict["action_name"])", @__FILE__, ":", @__LINE__, " $(Dates.now())")
# continue # continue
+66 -11
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@@ -1,6 +1,6 @@
module llmfunction module llmfunction
export virtualWineUserChatbox, jsoncorrection, checkwine!, # recommendbox, export virtualWineUserChatbox, jsoncorrection, search_wine_database!, # recommendbox,
virtualWineUserRecommendbox, userChatbox, userRecommendbox, extractWineAttributes_1, virtualWineUserRecommendbox, userChatbox, userRecommendbox, extractWineAttributes_1,
extractWineAttributes_2, paraphrase extractWineAttributes_2, paraphrase
@@ -282,15 +282,15 @@ julia> result = checkinventory(agent, input)
"{"wine 1": {\"Winery\": \"Pichon Baron\", \"wine name\": \"Pauillac (Grand Cru Classé)\", \"grape variety\": \"Cabernet Sauvignon\", \"year\": 2010, \"price\": \"125 USD\", \"stock ID\": \"ar-17\"}, }" "{"wine 1": {\"Winery\": \"Pichon Baron\", \"wine name\": \"Pauillac (Grand Cru Classé)\", \"grape variety\": \"Cabernet Sauvignon\", \"year\": 2010, \"price\": \"125 USD\", \"stock ID\": \"ar-17\"}, }"
``` ```
""" """
function checkwine!(a::T, thoughtdict::AbstractDict; useSQLLLM::Bool=false function search_wine_database!(a::T, thoughtdict::AbstractDict; useSQLLLM::Bool=false
)::NamedTuple{(:thoughtdict, :result_raw), Tuple{OrderedDict, Any}} where {T<:agent} )::NamedTuple{(:thoughtdict, :result_raw), Tuple{OrderedDict, Any}} where {T<:agent}
println("\ncheckinventory order: $(thoughtdict["action_input"]) ", @__FILE__, ":", @__LINE__, " $(Dates.now())") println("\ncheckinventory order: $(thoughtdict["action_input"]) ", @__FILE__, ":", @__LINE__, " $(Dates.now())")
wineattributes_1 = extractWineAttributes_1(a, thoughtdict["action_input"]) wineattributes_1 = extractWineAttributes_1(a, thoughtdict["action_input"])
wineattributes_2 = extractWineAttributes_2(a, thoughtdict["action_input"]) wineattributes_2 = extractWineAttributes_2(a, thoughtdict["action_input"])
retrieve_attributes = ["winery", "wine_name", "wine_id", "vintage", "region", "country", "wine_type", "grape", "serving_temperature", "sweetness", "intensity", "tannin", "acidity", "tasting_notes", "price", "currency"] retrieve_attributes = ["winery", "wine_name", "wine_id", "vintage", "region", "country", "wine_type", "grape", "serving_temperature", "sweetness", "intensity", "tannin", "acidity", "tasting_notes", "price", "currency", "image_url", "retailer_name", "retailer_id"]
_inventoryquery = "$wineattributes_1, $wineattributes_2" _inventoryquery = "$wineattributes_1, $wineattributes_2, retailer_name: $(a.retailername), retailerid: $(a.retailerid)"
inventoryquery = "Retrieves $retrieve_attributes of wines that match the following criteria - {$_inventoryquery}" inventoryquery = "Retrieves $retrieve_attributes of wines that match the following criteria - {$_inventoryquery}"
println("\ncheckinventory input: $inventoryquery ", @__FILE__, ":", @__LINE__, " $(Dates.now())") println("\ncheckinventory input: $inventoryquery ", @__FILE__, ":", @__LINE__, " $(Dates.now())")
@@ -308,7 +308,44 @@ function checkwine!(a::T, thoughtdict::AbstractDict; useSQLLLM::Bool=false
# direct query with possible sql instead of SQLLLM. # direct query with possible sql instead of SQLLLM.
sql = generatesql(a, inventoryquery) sql = generatesql(a, inventoryquery)
println("\nSQL: $sql ", @__FILE__, ":", @__LINE__, " $(Dates.now()) \n")
textresult, result_raw, _, _ = SQLexecution(a.context.executeSQL, sql) textresult, result_raw, _, _ = SQLexecution(a.context.executeSQL, sql)
#WORKING if result_raw != nothing, get image from image_url column of a df.
# then store in a.memory["shortmem]["image"] = OrderedDict(
# Dict(
# "wine_id"=> "wine_id,
# "name"=> "wine name",
# "image_url" => Dict("url" => data1_uri)
# )
# )
# # 1. Read local file and encode to base64 string
# image2_path = "test/small_image.png"
# image2_bytes = read(image2_path)
# image2_base64_string = base64encode(image2_bytes)
# mime_type = "image/png"
# data2_uri = "data:$(mime_type);base64,$(image2_base64_string)"
# # 3. Construct payload with the Data URI
# message = Dict(
# "role" => "user",
# "content" => [
# Dict("type" => "text", "text" => "Do you know type of wine in the image?"),
# Dict(
# "type" => "image_url",
# "image_url" => Dict("url" => data1_uri)
# )
# ]
# )
thoughtdict["action_result"] = textresult thoughtdict["action_result"] = textresult
end end
@@ -324,7 +361,8 @@ function generatesql(a::T, searchterm::String,
""" """
# database_search_guidelines # database_search_guidelines
- Keep SQL queries focused only on the provided information. - Keep SQL queries focused only on the provided information.
- Do not create any table in the database - Use wildcard character (%) to search more effectively.
- Do not create any table in the database.
- A junction table can be used to link tables together. Another use case is for filtering data. - A junction table can be used to link tables together. Another use case is for filtering data.
- If you can't find a single table that can be used to answer the user's search term, try joining multiple tables to see if you can obtain the answer. - If you can't find a single table that can be used to answer the user's search term, try joining multiple tables to see if you can obtain the answer.
- Text information in the database usually stored in lower case. If your search returns empty, try using lower case to search. - Text information in the database usually stored in lower case. If your search returns empty, try using lower case to search.
@@ -603,7 +641,7 @@ function SQLexecution(executeSQL::Function, sql::T
tablesize = size(df) tablesize = size(df)
row, column = tablesize row, column = tablesize
if row == 0 if row == 0
return (result_str="No records found.", result_raw=df, success=true, errormsg=nothing) return (result_str="No records found. Try loosening your search criteria.", result_raw=nothing, success=true, errormsg=nothing)
elseif column > 30 elseif column > 30
return (result_str="There are more than 30 columns. Please be more specific.", result_raw=df, success=true, errormsg=nothing) return (result_str="There are more than 30 columns. Please be more specific.", result_raw=df, success=true, errormsg=nothing)
else else
@@ -678,6 +716,7 @@ function extractWineAttributes_1(a::T1, input::T2; maxattempt=10
wine_price_max: maximum price range of wine. Example: For wine price 20, wine_price_max will be 20. For wine price 10 to 100, wine_price_max will be 100. wine_price_max: maximum price range of wine. Example: For wine price 20, wine_price_max will be 20. For wine price 10 to 100, wine_price_max will be 100.
occasion: the occasion the user is having the wine for occasion: the occasion the user is having the wine for
food_to_be_paired_with_wine: food that the user will be served with the wine such as poultry, fish, steak, etc food_to_be_paired_with_wine: food that the user will be served with the wine such as poultry, fish, steak, etc
_keyword suffice is the related keyword that appears in user's query. each keyword can not be used twice.
</you should then respond to the user with> </you should then respond to the user with>
<you should only respond in JSON format as described below> <you should only respond in JSON format as described below>
"wine_name": "...", "wine_name": "...",
@@ -756,9 +795,6 @@ function extractWineAttributes_1(a::T1, input::T2; maxattempt=10
for attempt in 1:maxattempt for attempt in 1:maxattempt
response = a.context.text2textInstructLLM(a.id, msg) response = a.context.text2textInstructLLM(a.id, msg)
response = GeneralUtils.clean_json_response(response) response = GeneralUtils.clean_json_response(response)
println("\n--- extractWineAttributes_1-1()")
println(response)
println("--- \n")
response = GeneralUtils.remove_french_accents(response) response = GeneralUtils.remove_french_accents(response)
think, response = GeneralUtils.extractthink(response) think, response = GeneralUtils.extractthink(response)
@@ -786,6 +822,18 @@ function extractWineAttributes_1(a::T1, input::T2; maxattempt=10
_v = replace(v, r"\(.*?\)" => "") _v = replace(v, r"\(.*?\)" => "")
responsedict[k] = _v responsedict[k] = _v
end end
println("\n--- extractWineAttributes_1-1()")
@show responsedict
@info "---\n" @__LINE__
#WORKING check each attributes against database with BM25
for (k, v) in responsedict
words_catalog = GeneralUtils.harvest_entity_catalog(a.context.pg_conn_str, "wine", k)
resolved_word = GeneralUtils.resolve_entity(v, words_catalog;threshold=0.9)
responsedict[k] = resolved_word
end
result = "" result = ""
for (k, v) in responsedict for (k, v) in responsedict
# some time LLM generate text with "(some comment)". this line removes it # some time LLM generate text with "(some comment)". this line removes it
@@ -793,10 +841,17 @@ function extractWineAttributes_1(a::T1, input::T2; maxattempt=10
result *= "$k: $v, " result *= "$k: $v, "
end end
end end
result = result[1:end-2] # remove the ending ", " result = result[1:end-2] # remove the ending ", "
println("\n--- extractWineAttributes_1-2()") println("\n--- extractWineAttributes_1-2()")
println(result) @show responsedict
println("--- \n") @show result
@info "---\n" @__LINE__
return result return result
end end
error("extractWineAttributes_1() failed to get a response") error("extractWineAttributes_1() failed to get a response")
+7 -3
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@@ -16,6 +16,7 @@ mutable struct agentcontext
insertSQLVectorDB::Function insertSQLVectorDB::Function
similarSommelierDecision::Function similarSommelierDecision::Function
insertSommelierDecision::Function insertSommelierDecision::Function
pg_conn_str::String
end end
abstract type agent end abstract type agent end
@@ -93,6 +94,7 @@ mutable struct sommelier <: agent
name::String # agent name name::String # agent name
id::String # agent id id::String # agent id
retailername::String retailername::String
retailerid::String
tools::Dict tools::Dict
maxHistoryMsg::Integer # e.g. 21th and earlier messages will get summarized maxHistoryMsg::Integer # e.g. 21th and earlier messages will get summarized
chathistory::Vector{Dict{String, Any}} chathistory::Vector{Dict{String, Any}}
@@ -140,11 +142,12 @@ julia> agent = sommelier(context, name="WineExpert", id="123", retailername="MyW
``` ```
""" """
function sommelier( function sommelier(
context::agentcontext, # app context context::agentcontext, # agent functions, db connect and other context
; ;
name::String= "Assistant", name::String= "Assistant",
id::String= string(uuid4()), id::String= string(uuid4()),
retailername::String= "retailer_name", retailername::String= "not specified",
retailerid::String= "not specified",
maxHistoryMsg::Integer= 20, maxHistoryMsg::Integer= 20,
chathistory::Vector{Dict{String, Any}} = Vector{Dict{String, Any}}(), chathistory::Vector{Dict{String, Any}} = Vector{Dict{String, Any}}(),
llmFormatName::String= "granite3" llmFormatName::String= "granite3"
@@ -216,6 +219,7 @@ function sommelier(
name, name,
id, id,
retailername, retailername,
retailerid,
tools, tools,
maxHistoryMsg, maxHistoryMsg,
chathistory, chathistory,
@@ -279,7 +283,7 @@ function sommelier(
# available actions # available actions
"CHAT_BOX", which you can use to talk with the user. The input is dialogue you want to chat with the user according to your plan. "CHAT_BOX", which you can use to talk with the user. The input is dialogue you want to chat with the user according to your plan.
"CHECK_WINE", allows you to check information about wines you want in your inventory's database. The input is text that specify supported search criteria includeing: retailer_name, wine price, winery, name, vintage, region, country, type, grape varietal, tasting notes, occasion, food pairing, intensity, tannin, sweetness, and acidity. "SEARCH_WINE_DATABASE", allows you to search information about wines you want in your inventory's database. The input is supported search criteria including: retailer_name, wine price, winery, name, vintage, region, country, type, grape varietal, tasting notes, occasion, food pairing, intensity, tannin, sweetness, and acidity.
Example query 1: "Dry, full-bodied red wine from 1) region: Burgundy, country: France or 2) region: Tuscany, country: Italy. Grape varietal: Merlot or Syrah. price 100 to 1000 USD." Example query 1: "Dry, full-bodied red wine from 1) region: Burgundy, country: France or 2) region: Tuscany, country: Italy. Grape varietal: Merlot or Syrah. price 100 to 1000 USD."
Example query 2: "Red or white wine, medium tannin, price under 700 USD" Example query 2: "Red or white wine, medium tannin, price under 700 USD"
Example query 3: "white wine, region: Tuscany or Bordeaux, country: Italy or France Example query 3: "white wine, region: Tuscany or Bordeaux, country: Italy or France
+1 -1
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@@ -297,7 +297,7 @@ function createTimeline(events::T1; eventindex::Union{UnitRange, Nothing}=nothin
# timeline *= "Event_$i $(event["subject"])> action_name: $(event["action_name"]), action_input: $(event["action_input"])\n" # timeline *= "Event_$i $(event["subject"])> action_name: $(event["action_name"]), action_input: $(event["action_input"])\n"
# elseif event["action_name"] == "CHECKINVENTORY" && event["observation"] === nothing # elseif event["action_name"] == "CHECKINVENTORY" && event["observation"] === nothing
# timeline *= "Event_$i $(event["subject"])> action_name: $(event["action_name"]), action_input: $(event["action_input"]), observation: Not done yet.\n" # timeline *= "Event_$i $(event["subject"])> action_name: $(event["action_name"]), action_input: $(event["action_input"]), observation: Not done yet.\n"
if event["action_name"] == "CHECK_WINE" if event["action_name"] == "SEARCH_WINE_DATABASE"
timeline *= "Event_$i $(event["subject"])> action_name: $(event["action_name"]), action_input: $(event["action_input"]), observation: $(event["observation"])\\n" timeline *= "Event_$i $(event["subject"])> action_name: $(event["action_name"]), action_input: $(event["action_input"]), observation: $(event["observation"])\\n"
else else
timeline *= "Event_$i $(event["subject"])> action_name: $(event["action_name"]), action_input: $(event["action_input"])\\n" timeline *= "Event_$i $(event["subject"])> action_name: $(event["action_name"]), action_input: $(event["action_input"])\\n"
+2 -2
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@@ -128,7 +128,7 @@ systemmsg =
# Available Actions # Available Actions
- **CHAT_BOX** which you can use to talk with the user. - **CHAT_BOX** which you can use to talk with the user.
- **CHECK_WINE** allows you to check information about wines you want in your inventory's database. The input is text that specify supported search criteria includeing: retailer_name, wine price, winery, name, vintage, region, country, type, grape varietal, tasting notes, occasion, food pairing, intensity, tannin, sweetness, and acidity. - **SEARCH_WINE_DATABASE** allows you to check information about wines you want in your inventory's database. The input is text that specify supported search criteria includeing: retailer_name, wine price, winery, name, vintage, region, country, type, grape varietal, tasting notes, occasion, food pairing, intensity, tannin, sweetness, and acidity.
- Example query 1: "Dry, full-bodied red wine from 1) region: Burgundy, country: France or 2) region: Tuscany, country: Italy. Grape varietal: Merlot or Syrah. price 100 to 1000 USD." - Example query 1: "Dry, full-bodied red wine from 1) region: Burgundy, country: France or 2) region: Tuscany, country: Italy. Grape varietal: Merlot or Syrah. price 100 to 1000 USD."
- Example query 2: "Red or white wine, medium tannin, price under 700 USD" - Example query 2: "Red or white wine, medium tannin, price under 700 USD"
- Example query 3: "white wine, region: Tuscany or Bordeaux, country: Italy or France - Example query 3: "white wine, region: Tuscany or Bordeaux, country: Italy or France
@@ -157,7 +157,7 @@ openai_msg = Dict(
"content" => [ "content" => [
Dict("type" => "text", "text" => Dict("type" => "text", "text" =>
""" """
" <plan>I will greet the customer warmly as Janie, acknowledge their request to find a similar wine for their wedding party based on the image, identify the wine type and country (Italian Sparkling Wine), and then use the CHECK_WINE action to search the inventory for suitable options.</plan>\n <action_name>CHAT_BOX</action_name>\n <action_input>Hello! I'm Janie, and I'd be delighted to help you find the perfect wine for your wedding party. That beautiful wine in the image appears to be an Italian sparkling wine, which is wonderful for a celebration like a wedding! Since you have an unlimited budget, I can certainly look for some truly exceptional options. To start, I will check our inventory for similar Italian sparkling wines that are perfect for a wedding celebration.</action_input><action_result> User response in the next message </action_result>" " <plan>I will greet the customer warmly as Janie, acknowledge their request to find a similar wine for their wedding party based on the image, identify the wine type and country (Italian Sparkling Wine), and then use the SEARCH_WINE_DATABASE action to search the inventory for suitable options.</plan>\n <action_name>CHAT_BOX</action_name>\n <action_input>Hello! I'm Janie, and I'd be delighted to help you find the perfect wine for your wedding party. That beautiful wine in the image appears to be an Italian sparkling wine, which is wonderful for a celebration like a wedding! Since you have an unlimited budget, I can certainly look for some truly exceptional options. To start, I will check our inventory for similar Italian sparkling wines that are perfect for a wedding celebration.</action_input><action_result> User response in the next message </action_result>"
""" """
), ),
] ]