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Author SHA1 Message Date
ton 287704778f update 2026-08-10 20:07:15 +07:00
ton a9fa23f01b update 2026-08-10 19:19:58 +07:00
ton c5cb18f0f1 update 2026-08-10 16:10:04 +07:00
ton c78f4b023d update 2026-08-10 14:55:09 +07:00
ton 1b69f69c7d update 2026-08-10 13:33:45 +07:00
ton 3891099eaa update readme 2026-08-10 10:39:30 +07:00
ton 268d340e2f Merge pull request 'V0.8.0 use tool module' (#42) from v0.8.0-use_tool_module into v0.8.0
Reviewed-on: #42
2026-08-10 02:48:25 +00:00
ton 189bc2efcf update 2026-08-10 09:43:35 +07:00
ton 92b3e4081f update 2026-08-09 22:50:02 +07:00
ton 750eff483b update 2026-08-09 22:08:04 +07:00
ton 5cc35c78f4 Merge pull request 'V0.8.0 add tools' (#41) from v0.8.0-add_tools into v0.8.0
Reviewed-on: #41
2026-08-09 11:47:02 +00:00
10 changed files with 1912 additions and 690 deletions
+1 -1
View File
@@ -13,7 +13,7 @@ module YiemAgent
include("utils.jl")
using .utils
include("tools/registry.jl")
include("toolRegistry.jl")
using .toolRegistry
# include("llmfunction.jl")
+4 -8
View File
@@ -516,7 +516,7 @@ function prepareToolCall(
signal::Union{Nothing, abortSignal},
)::Union{preparedToolCall,immediateOutcome}
tool = find(t -> t.name == toolCall.name, context.tools)
tool = get(context.tools, toolCall.name, nothing)
if tool === nothing
return immediateOutcome(createErrorToolResult("Tool $toolCall.name not found"), true)
end
@@ -996,13 +996,9 @@ function executeToolCalls(
hasSequential = false
for tc in toolCalls
for t in context.tools
if t.name == tc.name && !t.parallelToolExecute
hasSequential = true
break
end
end
if hasSequential
t = get(context.tools, tc.name, nothing)
if t !== nothing && !t.parallelToolExecute
hasSequential = true
break
end
end
+243
View File
@@ -0,0 +1,243 @@
module toolRegistry
export ToolStore, loadTools, registerTool, getTools, clearTools, listTool
using Dates
using JSON, DataStructures
using ..type
"""
Per-agent isolated tool storage.
Each agent gets its own `ToolStore` so tool registration is independent —
`registerTool(store, tool)` only affects that agent's tool set.
# Fields
- `tools::OrderedDict{String, agentTool}` — keyed by name for O(1) lookup + ordered iteration
- `name::String` — identifier for debugging/logs
"""
struct ToolStore
tools::OrderedDict{String, agentTool}
name::String
end
"""
Create a new isolated tool store.
# Keyword Arguments
- `name::String`: Identifier for this store (default: "default")
# Examples
```julia
store = ToolStore(name="agent1")
tools = loadTools(store, "src/tools")
registerTool(store, my_tool)
agent = yiemAgent(tools=getTools(store), llmCall=..., _tool_store=store)
```
"""
function ToolStore(; name::String="default")::ToolStore
ToolStore(OrderedDict{String, agentTool}(), name)
end
"""
List tool definition — lets the agent query available tools for collision detection
when creating new tools via writeTool.
# Arguments
- `store::ToolStore`: The tool store to list from
Each `ToolStore` gets its own `listTool` instance bound to that store,
so each agent sees only its own tools.
"""
function listTool(store::ToolStore)::agentTool
return agentTool(
name = "listTools",
label = "List Tools",
description = "List all available tools with their names, labels, and descriptions. Use this before creating a new tool to check for name collisions.",
inputSchema = Dict{String,Any}(
"type" => "object",
"properties" => Dict{String,Any}(),
"required" => Any[]
),
execute = (toolCallId, args, signal, onPartialResult) -> begin
tools = getTools(store)
if isempty(tools)
result_text = "No tools registered."
else
lines = String["- $(t.name): $(t.label)$(t.description)" for (k, t) in tools]
result_text = "Available tools:\n" * join(lines, "\n")
end
return agentToolResult(
[textContent(result_text)],
Dict{Any,Any}("count" => length(tools)),
nothing, false
)
end,
prepareArguments = nothing,
validateRequiredArgs = nothing,
parallelToolExecute = false
)
end
"""
Load all tool modules from a directory into a specific ToolStore.
Scans `dir` for `.jl` files. Each file must define a function named
`getTool()::agentTool`. Files are sorted alphabetically so tool
registration order is deterministic.
Each `.jl` file is loaded into its own **submodule** so that all functions
defined in the file (`validateRequiredArgs`, `prepareArguments`, `executeTool`,
and any helper functions) are namespaced and never collide with other tools.
# Arguments
- `store::ToolStore`: The tool store to register tools into
- `dir::String`: Directory path to scan for `.jl` tool files
# Returns
- `OrderedDict{String, agentTool}`: All loaded tools keyed by name
# Errors
- Throws `ArgumentError` if a tool file does not define a `getTool` function
# Examples
```julia
julia> store = ToolStore(name="agent1")
julia> tools = loadTools(store, "src/tools")
OrderedDict{String, agentTool} with 3 entries:
"getWeather" => agentTool(...)
"getTime" => agentTool(...)
"listTools" => agentTool(...)
```
"""
function loadTools(store::ToolStore, dir::String)::OrderedDict{String, agentTool}
if !isdir(dir)
throw(ArgumentError("Tool directory does not exist: $dir"))
end
jl_files = filter(f -> endswith(f, ".jl") && !occursin(r"(?i)registry", f), readdir(dir))
sort!(jl_files)
for filename in jl_files
filepath = joinpath(dir, filename)
# Derive a unique module name from the filename only (not full path).
# e.g. "getWeather.jl" -> "_tool_getWeather"
mod_name = Symbol("_tool_", replace(rstrip(filename, '.'), ".jl" => ""))
# Build the complete module as a string and eval the parsed code.
# Julia does not allow `module ... end` inside eval(quote ...),
# and constructing the module AST by hand is fragile.
# Instead, we generate the full module source as a string,
# parse it, and eval the resulting expression.
# Each tool file declares its own dependencies via `using` statements
# at the top of the file — the registry only injects `using ..type`
# to make core types (agentTool, textContent, etc.) available.
file_content = read(filepath, String)
module_code = """
module $(mod_name)
using ..type
$(file_content)
end
"""
mod = eval(Meta.parse(module_code))
# Call getTool() via Core.eval in the submodule's scope.
# This evaluates getTool() entirely within the new module's world,
# completely avoiding world-age issues — no invokelatest needed.
# Note: all uses of `tool` must be inside the `try` block because
# Julia 1.12's SSA form doesn't track `tool` as definitely assigned
# after a `try-catch` where it's only assigned inside `try`.
try
tool = Core.eval(mod, :(getTool()))
if !(tool isa agentTool)
throw(ArgumentError(
"getTool() in $(filepath) did not return an agentTool instance, got: $(typeof(tool))"
))
end
store.tools[tool.name] = tool
println("[$(store.name)] Loaded tool: $(tool.name) ($(tool.label))")
catch e
if e isa UndefVarError || occursin("getTool", sprint(showerror, e))
throw(ArgumentError(
"Tool file $(filepath) does not define a `getTool()` function in module $(mod_name). " *
"Each tool file must define: function getTool()::agentTool ... end"
))
end
rethrow(e)
end
end
return store.tools
end
"""
Register a single agentTool into a specific ToolStore.
# Arguments
- `store::ToolStore`: The tool store to register into
- `tool::agentTool`: The tool to register
# Returns
- `OrderedDict{String, agentTool}`: Updated tool dict for this store
# Examples
```julia
julia> store = ToolStore(name="agent1")
julia> registerTool(store, my_tool)
[toolRegistry:agent1] Registered tool: my_tool
```
"""
function registerTool(store::ToolStore, tool::agentTool)::OrderedDict{String, agentTool}
store.tools[tool.name] = tool
println("[$(store.name)] Registered tool: $(tool.name)")
return store.tools
end
"""
Get the registered tools from a specific ToolStore.
Returns the internal `OrderedDict` directly — O(1) lookup by name,
ordered iteration preserving registration order.
# Arguments
- `store::ToolStore`: The tool store to query
# Returns
- `OrderedDict{String, agentTool}`: Tools keyed by name, in registration order
# Examples
```julia
julia> getTools(store)
OrderedDict{String, agentTool} with 3 entries:
"listTools" => agentTool(...)
"getWeather" => agentTool(...)
"getTime" => agentTool(...)
```
"""
function getTools(store::ToolStore)::OrderedDict{String, agentTool}
return store.tools
end
"""
Clear all registered tools from a specific ToolStore.
# Arguments
- `store::ToolStore`: The tool store to clear
# Returns
- `nothing`
# Examples
```julia
julia> clearTools(store)
[toolRegistry:agent1] Registry cleared
```
"""
function clearTools(store::ToolStore)::Nothing
empty!(store.tools)
println("[$(store.name)] Registry cleared")
return nothing
end
end # module
+1531 -434
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File diff suppressed because it is too large Load Diff
+22 -13
View File
@@ -1,3 +1,5 @@
using Dates
"""
Validate required arguments for the getTime tool.
@@ -36,6 +38,25 @@ function validateRequiredArgs(args::Dict{String,Any})::Union{Nothing,String}
return nothing
end
"""
Execute the getTime tool.
Returns mock time data for the given timezone or city.
"""
function executeTool(toolCallId::String, args::Dict{String,Any}, signal::Union{Nothing,abortSignal}, onPartialResult::Function)::agentToolResult
tz = get(args, "timezone", nothing)
city = get(args, "city", "")
if tz !== nothing
result = "Current time in $(tz): $(now())"
else
result = "Current time in $(city): $(now())"
end
return agentToolResult(
[textContent(result)],
Dict{Any,Any}(), nothing, false
)
end
"""
Define and return the getTime agentTool.
"""
@@ -52,19 +73,7 @@ function getTool()::agentTool
),
"required" => []
),
execute = (toolCallId, args, signal, onPartialResult) -> begin
tz = get(args, "timezone", nothing)
city = get(args, "city", "")
if tz !== nothing
result = "Current time in $(tz): $(now())"
else
result = "Current time in $(city): $(now())"
end
return agentToolResult(
[textContent(result)],
Dict{Any,Any}(), nothing, false
)
end,
execute = executeTool,
prepareArguments = nothing,
validateRequiredArgs = validateRequiredArgs,
parallelToolExecute = false
+17 -10
View File
@@ -1,3 +1,19 @@
"""
Execute the getWeather tool.
Returns mock weather data for the given city and temperature units.
"""
function executeTool(toolCallId::String, args::Dict{String,Any}, signal::Union{Nothing,abortSignal}, onPartialResult::Function)::agentToolResult
city = get(args, "city", "")
units = get(args, "units", "celsius")
temp = units == "fahrenheit" ? "72" : "22"
unit_symbol = units == "celsius" ? "°C" : "°F"
return agentToolResult(
[textContent("Weather in $(city): Sunny, $(temp)$(unit_symbol)")],
Dict{Any,Any}(), nothing, false
)
end
"""
Define and return the getWeather agentTool.
"""
@@ -14,16 +30,7 @@ function getTool()::agentTool
),
"required" => ["city"]
),
execute = (toolCallId, args, signal, onPartialResult) -> begin
city = get(args, "city", "")
units = get(args, "units", "celsius")
temp = units == "fahrenheit" ? "72" : "22"
unit_symbol = units == "celsius" ? "°C" : "°F"
return agentToolResult(
[textContent("Weather in $(city): Sunny, $(temp)$(unit_symbol)")],
Dict{Any,Any}(), nothing, false
)
end,
execute = executeTool,
prepareArguments = nothing,
validateRequiredArgs = nothing,
parallelToolExecute = false
-174
View File
@@ -1,174 +0,0 @@
module toolRegistry
export loadTools, registerTool, getTools, clearTools
using Dates
using JSON
using ..type
# Global registry — populated at runtime by loadTools() or registerTool()
const _registry = Vector{agentTool}()
# Auto-register the built-in listTools tool
function __init__()
registerTool(_listTool())
end
"""
List tool definition — lets the agent query available tools for collision detection
when creating new tools via writeTool.
"""
function _listTool()::agentTool
return agentTool(
name = "listTools",
label = "List Tools",
description = "List all available tools with their names, labels, and descriptions. Use this before creating a new tool to check for name collisions.",
inputSchema = Dict{String,Any}(
"type" => "object",
"properties" => Dict{String,Any}(),
"required" => Any[]
),
execute = (toolCallId, args, signal, onPartialResult) -> begin
tools = getTools()
if isempty(tools)
result_text = "No tools registered."
else
lines = String["- $(t.name): $(t.label)$(t.description)" for t in tools]
result_text = "Available tools:\n" * join(lines, "\n")
end
return agentToolResult(
[textContent(result_text)],
Dict{Any,Any}("count" => length(tools)),
nothing, false
)
end,
prepareArguments = nothing,
validateRequiredArgs = nothing,
parallelToolExecute = false
)
end
"""
Load all tool modules from a directory.
Scans `dir` for `.jl` files. Each file must define a function named
`getTool()::agentTool`. Files are sorted alphabetically so tool
registration order is deterministic.
# Tool file format
Each `.jl` file defines one function `getTool()` that returns an `agentTool`:
```julia
# src/tools/getWeather.jl
function getTool()::agentTool
return agentTool(
name = "getWeather",
label = "Weather Lookup",
description = "Fetch current weather and forecast for a given city.",
inputSchema = Dict{String,Any}(
"type" => "object",
"properties" => Dict(
"city" => Dict("type" => "string", "description" => "City and country"),
"units" => Dict("type" => "string", "enum" => ["celsius", "fahrenheit"], "default" => "celsius")
),
"required" => ["city"]
),
execute = (toolCallId, args, signal, onPartialResult) -> begin
city = args["city"]
return agentToolResult(
[textContent("Sunny, 22C in Bangkok")],
Dict{Any,Any}(), nothing, false
)
end,
prepareArguments = nothing,
parallelToolExecute = false
)
end
```
# Arguments
- `dir::String`: Directory path to scan for `.jl` tool files
# Returns
- `Vector{agentTool}`: All loaded tools
# Errors
- Throws `ArgumentError` if a tool file does not define a `getTool` function
"""
function loadTools(dir::String)::Vector{agentTool}
if !isdir(dir)
throw(ArgumentError("Tool directory does not exist: $dir"))
end
tools = agentTool[]
jl_files = filter(f -> endswith(f, ".jl") && !occursin(r"(?i)registry", f), readdir(dir))
sort!(jl_files)
for filename in jl_files
filepath = joinpath(dir, filename)
println("[toolRegistry] Loading tool from: $filepath")
# Include the file in the current module scope so all types resolve
# (agentTool, textContent, agentToolResult, etc. are all available)
include(filepath)
# Validate that getTool was defined (include() places it in current module scope)
if !isdefined(@__MODULE__, :getTool)
throw(ArgumentError(
"Tool file $(filepath) does not define a `getTool()` function. " *
"Each tool file must define: function getTool()::agentTool ... end"
))
end
# Call getTool() — it runs in current scope where types are visible
# Use invokelatest to handle world-age semantics after include()
tool = invokelatest(getTool)
if !(tool isa agentTool)
throw(ArgumentError(
"getTool() in $(filepath) did not return an agentTool instance, got: $(typeof(tool))"
))
end
push!(_registry, tool)
push!(tools, tool)
println("[toolRegistry] Loaded tool: $(tool.name)$(tool.label)")
end
return tools
end
"""
Register a single agentTool into the global registry.
# Arguments
- `tool::agentTool`: The tool to register
# Returns
- `Vector{agentTool}`: Updated registry
"""
function registerTool(tool::agentTool)::Vector{agentTool}
push!(_registry, tool)
println("[toolRegistry] Registered tool: $(tool.name)")
return _registry
end
"""
Get all registered tools.
# Returns
- `Vector{agentTool}`: Copy of the registry
"""
function getTools()::Vector{agentTool}
return deepcopy(_registry)
end
"""
Clear all registered tools from the global registry.
"""
function clearTools()::Nothing
empty!(_registry)
println("[toolRegistry] Registry cleared")
return nothing
end
end # module
+5 -3
View File
@@ -1,3 +1,5 @@
using JSON
"""
Tool that writes new Julia tool module files to disk.
@@ -5,7 +7,7 @@ The agent can use this tool when it encounters a task that no existing tool
can handle. Provide the tool's name, label, description, inputSchema, and
execute logic as Julia code. The tool is written to `src/tools/<name>.jl`.
After calling this tool, restart the agent so `loadTools("src/tools")` picks
After calling this tool, restart the agent so `loadTools(agent._tool_store, "src/tools")` picks
up the new file. The new tool is immediately available.
# Example
@@ -248,13 +250,13 @@ function getTool()::agentTool
tool_code = join(parts)
# Write the file — tool is loaded on next agent restart via loadTools()
# Write the file — tool is loaded on next agent restart via loadTools(store, "src/tools")
write(filepath, tool_code)
onPartialResult(Dict("status" => "Done"))
return agentToolResult(
[textContent("Tool '$(tool_name)' written to $filepath. Restart the agent so loadTools() picks it up, then call listTools to verify.")],
[textContent("Tool '$(tool_name)' written to $filepath. Restart the agent so loadTools(agent._tool_store, \"src/tools\") picks it up, then call listTools to verify.")],
Dict{Any,Any}(
"file" => filepath,
"name" => tool_name,
+24 -19
View File
@@ -291,7 +291,7 @@ Snapshot of the agent's conversation context.
# Arguments
- `systemPrompt::String`: System prompt for the agent
- `messages::Vector{agentMessage}`: Conversation messages
- `tools::Union{Vector{agentTool}, Nothing}`: Available tools
- `tools::Union{Dict{String, agentTool}, Nothing}`: Available tools keyed by name for O(1) lookup
# Returns
- A new `agentContext` instance
@@ -299,7 +299,7 @@ Snapshot of the agent's conversation context.
struct agentContext # Snapshot of the agent's conversation context
systemPrompt::String # System prompt for the agent
messages::Vector{agentMessage} # Conversation messages
tools::Union{Vector{agentTool}, Nothing} # Available tools
tools::Union{Dict{String, agentTool}, Nothing} # Available tools keyed by name
end
@@ -308,9 +308,9 @@ end
# ------------------------------------------------------------------------------------------------ #
mutable struct agentState # Mutable runtime state of an agent
systemPrompt::String # System prompt text
systemPrompt::String # System prompt for the agent
model::llmModel # LLM model to use
tools::Vector{agentTool} # Available tools
tools::OrderedDict{String, agentTool} # Available tools keyed by name, insertion-ordered
# messages history includes userMessage, assistantMessage, toolResultMessage. NO system prompt
messages::Vector{agentMessage}
@@ -329,7 +329,7 @@ new state from external references.
# Arguments
- `systemPrompt::String`: System prompt text
- `model::llmModel`: LLM model to use (defaults to an unknown model)
- `tools::Vector{agentTool}`: Available tools (deep copied)
- `tools::OrderedDict{String, agentTool}`: Available tools keyed by name (deep copied)
- `messages::Vector{agentMessage}`: Conversation messages (deep copied)
# Returns
@@ -338,13 +338,13 @@ new state from external references.
# Examples
```julia
julia> state = agentState(systemPrompt="You are a helpful assistant")
agentState("You are a helpful assistant", ..., agentTool[], agentMessage[], String[], nothing)
```
agentState("You are a helpful assistant", OrderedDict{String, agentTool}(), agentMessage[], String[], nothing)
"""
function agentState(
systemPrompt::String="",
model::llmModel=llmModel{String}("", "", "unknown", "unknown", "", false, String[], modelCost(0.0, 0.0, 0.0, 0.0), 0, 0),
tools::Vector{agentTool}=agentTool[],
model::llmModel=llmModel{String}("", "", "unknown", "unknown", "", false, String[],
modelCost(0.0, 0.0, 0.0, 0.0), 0, 0),
tools::OrderedDict{String, agentTool}=OrderedDict{String, agentTool}(),
messages::Vector{agentMessage}=agentMessage[],
)
agentState(
@@ -395,13 +395,13 @@ end
Configuration for the agent tool execution loop.
# Arguments
- `tools::Vector{agentTool}`: Available tools
- `tools::OrderedDict{String, agentTool}`: Available tools keyed by name
- `beforeToolCall::Union{Function, Nothing}`: Callback before tool execution
- `afterToolCall::Union{Function, Nothing}`: Callback after tool execution
- `toolExecution::String`: Execution mode — "sequential" or "parallel"
"""
struct agentLoopConfig
tools::Vector{agentTool}
tools::OrderedDict{String, agentTool}
beforeToolCall::Union{Function, Nothing}
afterToolCall::Union{Function, Nothing}
toolExecution::String
@@ -567,9 +567,10 @@ mutable struct yiemAgent <: agent # High-level agent wrapper
# prepareNextTurnWithContext::Union{Function, Nothing} # Same but receives context
sessionId::Union{String, Nothing} # Optional session identifier
maxRetryDelayMs::Union{Int64, Nothing} # Maximum delay between retries (ms)
parallelToolExecute::Bool # Default: false
agentEventSink::Function # agent emits its status via this function
end
parallelToolExecute::Bool # Default: false
agentEventSink::Function # agent emits its status via this function
_tool_store::Any # Reference to the ToolStore for runtime registration
end
"""
Create a new yiemAgent instance with a background loop task.
@@ -580,7 +581,7 @@ on `inputChannel` and `followUpChannel` channels concurrently.
# Keyword Arguments
- `systemPrompt::String`: System prompt for the agent
- `model`: LLM model to use
- `tools::Vector{agentTool}`: Available tools (default: empty)
- `tools::OrderedDict{String, agentTool}`: Available tools keyed by name (default: empty)
- `messages::Vector{agentMessage}`: Initial conversation messages (default: empty)
- `formatMsgForLLM::Function`: Convert agent messages to LLM message format (default: `defaultformatMsgForLLM`)
- `llmCall::Function`: Function to invoke the LLM (required)
@@ -593,20 +594,22 @@ on `inputChannel` and `followUpChannel` channels concurrently.
- `maxRetryDelayMs::Union{Int64, Nothing}`: Maximum delay between retries in milliseconds (default: `nothing`)
- `parallelToolExecute::Bool`: Run tool calls in parallel (default: `false`)
- `agentEventSink::Function`: Callback to receive agent events
- `tool_store::Union{Any, Nothing}`: ToolStore for runtime tool registration (default: `nothing`)
# Returns
- A new `yiemAgent` instance with an active background task
# Examples
```julia
julia> agent = yiemAgent(systemPrompt="You are a helpful assistant", model=my_model)
yiemAgent(agentState(...), Channel(...), Channel(...), Channel(...), ..., ...)
```
julia> store = ToolStore(name="agent1")
julia> tools = loadTools(store, "src/tools")
julia> agent = yiemAgent(systemPrompt="You are a helpful assistant", model=my_model, tools=tools, llmCall=..., tool_store=store)
yiemAgent(agentState(...), Channel(...), Channel(...), Channel(...), ..., store)
"""
function yiemAgent(
; systemPrompt::String="You are helpful assistant.",
model=nothing,
tools::Vector{agentTool}=agentTool[],
tools::OrderedDict{String, agentTool}=OrderedDict{String, agentTool}(),
messages::Vector{agentMessage}=agentMessage[],
prepareContext::Union{Function, Nothing}=nothing,
formatMsgForLLM::Function=defaultformatMsgForLLM,
@@ -619,6 +622,7 @@ function yiemAgent(
maxRetryDelayMs::Union{Int64, Nothing}=nothing,
parallelToolExecute::Bool=false,
agentEventSink::Function,
tool_store::Union{Any, Nothing}=nothing,
)
# Create channels: input (user -> agent), followUp (async queue), output (agent -> user)
inputChannel = Channel(16)
@@ -643,6 +647,7 @@ function yiemAgent(
maxRetryDelayMs,
parallelToolExecute,
agentEventSink,
tool_store,
)
# Spawn the background loop and attach it
+65 -28
View File
@@ -6,12 +6,13 @@ using YiemAgent.type
# Path to the real tools directory
TOOLS_DIR = joinpath(@__DIR__, "..", "src", "tools")
@testset "loadTools" begin
@testset "loadTools with ToolStore" begin
# ------------------------------------------------------------------ #
# 1. loadTools throws on non-existent directory #
# ------------------------------------------------------------------ #
@test_throws ArgumentError loadTools("/nonexistent/dir/that/does/not/exist")
store = ToolStore(name="test1")
@test_throws ArgumentError loadTools(store, "/nonexistent/dir/that/does/not/exist")
# ------------------------------------------------------------------ #
# 2. loadTools throws if a .jl file does not define getTool() #
@@ -20,16 +21,17 @@ TOOLS_DIR = joinpath(@__DIR__, "..", "src", "tools")
# ------------------------------------------------------------------ #
bad_dir = mktempdir()
write(joinpath(bad_dir, "noTool.jl"), "x = 42\n")
@test_throws ArgumentError loadTools(bad_dir)
@test_throws ArgumentError loadTools(store, bad_dir)
# ------------------------------------------------------------------ #
# 3. loadTools loads actual tool files from src/tools/ #
# ------------------------------------------------------------------ #
loaded = loadTools(TOOLS_DIR)
store2 = ToolStore(name="test2")
loaded = loadTools(store2, TOOLS_DIR)
@test !isempty(loaded)
@test length(loaded) == 3
names = [t.name for t in loaded]
names = [k for k in keys(loaded)]
@test "getTime" in names
@test "getWeather" in names
@test "writeTool" in names
@@ -39,15 +41,15 @@ TOOLS_DIR = joinpath(@__DIR__, "..", "src", "tools")
# (getTime.jl < getWeather.jl < writeTool.jl) #
# because 'T' < 'W' in ASCII #
# ------------------------------------------------------------------ #
@test loaded[1].name == "getTime"
@test loaded[2].name == "getWeather"
@test loaded[3].name == "writeTool"
@test collect(keys(loaded))[1] == "getTime"
@test collect(keys(loaded))[2] == "getWeather"
@test collect(keys(loaded))[3] == "writeTool"
# ------------------------------------------------------------------ #
# 5. Verify loaded tool fields are correct #
# ------------------------------------------------------------------ #
# getTime
time_tool = loaded[1]
time_tool = loaded["getTime"]
@test time_tool.name == "getTime"
@test time_tool.label == "Time Lookup"
@test time_tool.validateRequiredArgs !== nothing
@@ -55,7 +57,7 @@ TOOLS_DIR = joinpath(@__DIR__, "..", "src", "tools")
@test time_tool.inputSchema["required"] == Any[]
# getWeather
weather = loaded[2]
weather = loaded["getWeather"]
@test weather.name == "getWeather"
@test weather.label == "Weather Lookup"
@test weather.execute !== nothing
@@ -63,7 +65,7 @@ TOOLS_DIR = joinpath(@__DIR__, "..", "src", "tools")
@test weather.inputSchema["required"] == ["city"]
# writeTool
wt = loaded[3]
wt = loaded["writeTool"]
@test wt.name == "writeTool"
@test wt.label == "Create Tool"
@test wt.execute !== nothing
@@ -98,15 +100,29 @@ TOOLS_DIR = joinpath(@__DIR__, "..", "src", "tools")
@test occursin("72°F", result_w2.content[1].text)
# ------------------------------------------------------------------ #
# 7. getTools / registerTool / clearTools #
# 7. getTools / registerTool / clearTools (per-store isolation) #
# ------------------------------------------------------------------ #
registry_tools = getTools()
@test !isempty(registry_tools)
@test any(t -> t.name == "getTime", registry_tools)
@test any(t -> t.name == "getWeather", registry_tools)
store3 = ToolStore(name="test3")
registry_tools = getTools(store3)
@test isempty(registry_tools)
clearTools()
@test isempty(getTools())
# listTool is not auto-registered anymore — each store starts empty
# Register tools manually
registerTool(store3, loaded["getTime"])
registerTool(store3, loaded["getWeather"])
registerTool(store3, loaded["writeTool"])
reg = getTools(store3)
@test !isempty(reg)
@test "getTime" in keys(reg)
@test "getWeather" in keys(reg)
@test "writeTool" in keys(reg)
@test collect(keys(reg))[1] == "getTime"
@test collect(keys(reg))[2] == "getWeather"
@test collect(keys(reg))[3] == "writeTool"
clearTools(store3)
@test isempty(getTools(store3))
test_tool = agentTool(
name = "manualTool",
@@ -119,18 +135,39 @@ TOOLS_DIR = joinpath(@__DIR__, "..", "src", "tools")
validateRequiredArgs = nothing,
parallelToolExecute = true
)
registerTool(test_tool)
reg = getTools()
@test any(t -> t.name == "manualTool", reg)
@test count(t -> t.name == "manualTool", reg) == 1
@test reg[1].parallelToolExecute == true
registerTool(store3, test_tool)
reg = getTools(store3)
@test haskey(reg, "manualTool")
@test length(reg) == 1
@test reg["manualTool"].parallelToolExecute == true
# ------------------------------------------------------------------ #
# 8. getTools returns deep copy (mutations don't affect registry) #
# 8. getTools returns direct reference (mutations affect registry) #
# ------------------------------------------------------------------ #
copy1 = getTools()
copy2 = getTools()
@test copy1 !== copy2
copy1 = getTools(store3)
copy2 = getTools(store3)
@test copy1 === copy2 # same reference, not a deep copy
empty!(copy1)
@test !isempty(getTools())
@test isempty(getTools(store3)) # mutation propagates
# ------------------------------------------------------------------ #
# 9. Per-store isolation — two stores don't share tools #
# ------------------------------------------------------------------ #
storeA = ToolStore(name="isolationA")
storeB = ToolStore(name="isolationB")
registerTool(storeA, loaded["getTime"])
registerTool(storeB, loaded["getWeather"])
regA = getTools(storeA)
regB = getTools(storeB)
@test "getTime" in keys(regA)
@test "getWeather" keys(regA)
@test "getWeather" in keys(regB)
@test "getTime" keys(regB)
clearTools(storeA)
@test isempty(getTools(storeA))
@test !isempty(getTools(storeB)) # storeB unaffected
end