package ocaml-ai-sdk
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OCaml AI SDK - Provider abstraction for AI models
Install
dune-project
Dependency
Authors
Maintainers
Sources
ocaml-ai-sdk-0.6.1.tbz
sha256=cb3b82428abcda76c02ec92f8103a4db28edf3f42795794a37135e9a3c40af96
sha512=11be8889ee25bee67b2be00553c42a4692bc73e5ce23985e8bb87f8a07e9d8f556b5a63b219fe5fe30366c8b0d4edae494afa80ccfbfcb112f1fa1e458de55bf
doc/src/ocaml-ai-sdk.ai_core/stream_text.ml.html
Source file stream_text.ml
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Returns the accumulated text, reasoning blocks, tool calls, finish reason, and usage. *) let consume_provider_stream ~id_gen ~push ~on_chunk ?(on_text_accumulated = fun (_ : string) -> ()) provider_stream = let text_buf = Buffer.create 256 in let reasoning_buf = Buffer.create 256 in let current_reasoning_text = Buffer.create 256 in let current_reasoning_signature = ref None in let current_reasoning_provider_options = ref Ai_provider.Provider_options.empty in let current_reasoning_provider_metadata = ref None in let reasoning_content = ref [] in let current_text_id = ref None in let current_reasoning_id = ref None in (* Track tool call deltas for accumulation *) let tool_calls : (string, string * Buffer.t) Hashtbl.t = Hashtbl.create 4 in let completed_tool_calls = ref [] in let finish_reason = ref Ai_provider.Finish_reason.Unknown in let usage = ref { Ai_provider.Usage.input_tokens = 0; output_tokens = 0; total_tokens = None } in let provider_metadata : Ai_provider.Provider_options.t option ref = ref None in let emit part = push (Some part); match on_chunk with | Some f -> f part | None -> () in let close_text () = match !current_text_id with | Some id -> emit (Text_stream_part.Text_end { id }); current_text_id := None | None -> () in let close_reasoning () = match !current_reasoning_id with | Some id -> reasoning_content := Ai_provider.Content.Reasoning { text = Buffer.contents current_reasoning_text; signature = !current_reasoning_signature; provider_options = !current_reasoning_provider_options; } :: !reasoning_content; emit (Text_stream_part.Reasoning_end { id; provider_metadata = !current_reasoning_provider_metadata }); current_reasoning_id := None; Buffer.clear current_reasoning_text; current_reasoning_signature := None; current_reasoning_provider_options := Ai_provider.Provider_options.empty; current_reasoning_provider_metadata := None | None -> () in let%lwt () = Lwt_stream.iter (fun (part : Ai_provider.Stream_part.t) -> match part with | Stream_start _ -> () | Text { text } -> let id = match !current_text_id with | Some id -> id | None -> close_reasoning (); let id = next_text_id id_gen in emit (Text_stream_part.Text_start { id }); current_text_id := Some id; id in Buffer.add_string text_buf text; on_text_accumulated (Buffer.contents text_buf); emit (Text_stream_part.Text_delta { id; text }) | Reasoning { text; signature; provider_options } -> let reasoning_metadata = Ai_provider.Provider_options.provider_metadata provider_options in let metadata_only = String.equal text "" && Option.is_none signature && Option.is_some reasoning_metadata in let id = match !current_reasoning_id with | Some id -> id | None -> close_text (); let id = next_reasoning_id id_gen in emit (Text_stream_part.Reasoning_start { id; provider_metadata = reasoning_metadata }); current_reasoning_id := Some id; id in Buffer.add_string reasoning_buf text; Buffer.add_string current_reasoning_text text; Option.iter (fun value -> current_reasoning_signature := Some value) signature; (match reasoning_metadata with | Some metadata -> current_reasoning_provider_options := provider_options; current_reasoning_provider_metadata := Some metadata | None -> ()); emit (Text_stream_part.Reasoning_delta { id; text; provider_metadata = reasoning_metadata }); (* Signatures and metadata-only reasoning chunks each complete a reasoning block. *) if Option.is_some signature || metadata_only then close_reasoning () | Tool_call_delta { tool_call_id; tool_name; args_text_delta; _ } -> close_text (); close_reasoning (); let buf = match Hashtbl.find_opt tool_calls tool_call_id with | Some (_, buf) -> buf | None -> let buf = Buffer.create 64 in Hashtbl.replace tool_calls tool_call_id (tool_name, buf); buf in Buffer.add_string buf args_text_delta; (* Drive partial-output parsing off the synthetic [json] tool's args so streaming callers see incremental JSON on the structured-output fallback path. *) if String.equal tool_name Ai_provider.Mode.fallback_json_tool_name then on_text_accumulated (Buffer.contents buf); emit (Text_stream_part.Tool_call_delta { tool_call_id; tool_name; args_text_delta }) | Tool_call_finish { tool_call_id } -> (match Hashtbl.find_opt tool_calls tool_call_id with | Some (tool_name, buf) -> let args_str = Buffer.contents buf in let args = Core_tool.safe_parse_json_args args_str in completed_tool_calls := { Generate_text_result.tool_call_id; tool_name; args } :: !completed_tool_calls; emit (Text_stream_part.Tool_call { tool_call_id; tool_name; args }); Hashtbl.remove tool_calls tool_call_id | None -> ()) | Finish { finish_reason = fr; usage = u; provider_metadata = pm } -> close_text (); close_reasoning (); finish_reason := fr; usage := u; (match pm with | None -> () | Some _ -> provider_metadata := pm) | Error { error } -> emit (Text_stream_part.Error { error = Ai_provider.Provider_error.to_string error }) | File _ | Source _ -> ()) provider_stream in Lwt.return ( Buffer.contents text_buf, Buffer.contents reasoning_buf, List.rev !reasoning_content, List.rev !completed_tool_calls, !finish_reason, !usage, !provider_metadata ) let stream_text ~model ?system ?system_provider_options ?prompt ?messages ?tools ?(tool_choice : Ai_provider.Tool_choice.t option) ?(output : (Yojson.Basic.t, Yojson.Basic.t) Output.t option) ?(max_steps = 1) ?max_retries ?max_retry_delay_ms ?stop_when ?max_output_tokens ?temperature ?top_p ?top_k ?stop_sequences ?seed ?headers ?provider_options ?on_step_finish ?on_chunk ?on_finish ?transform ?telemetry ?(pending_tool_approvals = []) () = (* Build initial messages *) let initial_messages = Prompt_builder.resolve_messages ?system ?system_provider_options ?prompt ?messages () in let mode = Output.mode_of_output output in let tools = Option.value ~default:[] tools in let provider_tools = Prompt_builder.tools_to_provider tools in (* Telemetry — precompute once; all values are [] / None when disabled *) let tp = Telemetry.precompute ~operation_id:"ai.streamText" ~model ?max_output_tokens ?temperature ?top_p ?top_k ?stop_sequences ?seed ?max_retries ?headers telemetry in (* Create output streams *) let full_stream, full_push = Lwt_stream.create () in let partial_output_stream, partial_output_push = Lwt_stream.create () in (* Promises for final values *) let usage_promise, usage_resolver = Lwt.wait () in let finish_promise, finish_resolver = Lwt.wait () in let steps_promise, steps_resolver = Lwt.wait () in let output_promise, output_resolver = Lwt.wait () in let provider_metadata_promise, provider_metadata_resolver = Lwt.wait () in (* Partial output deduplication *) let last_partial_json = ref "" in let on_text_accumulated = match output with | Some o when Option.is_some o.Output.response_format -> fun accumulated -> (match o.Output.parse_partial accumulated with | Some json -> let json_str = Yojson.Basic.to_string json in (match String.equal json_str !last_partial_json with | true -> () | false -> last_partial_json := json_str; partial_output_push (Some json)) | None -> ()) | _ -> fun (_ : string) -> () in let root_span_data () = match telemetry with | Some t -> tp.base_data @ Telemetry.select_attributes t [ ( "ai.prompt", Telemetry.Input (fun () -> `String (Yojson.Basic.to_string (`Assoc [ ( "system", match system with | Some s -> `String s | None -> `Null ); ( "prompt", match prompt with | Some p -> `String p | None -> `Null ); "messages", `List (List.map (fun _ -> `String "<message>") initial_messages); ]))) ); ] | None -> [] in let id_gen = make_id_gen () in Lwt.async (fun () -> Telemetry.maybe_span telemetry "ai.streamText" ~__FILE__ ~__LINE__ ~data:root_span_data @@ fun root_span -> let emit_event part = full_push (Some part); Option.iter (fun f -> f part) on_chunk in let execute_and_emit (tc : Generate_text_result.tool_call) = let%lwt tr = Core_tool.execute_tool ~tools ~tool_call_id:tc.tool_call_id ~tool_name:tc.tool_name ~args:tc.args in emit_event (Text_stream_part.Tool_result { tool_call_id = tr.tool_call_id; tool_name = tr.tool_name; result = tr.result; is_error = tr.is_error; provider_metadata = tr.provider_metadata; }); Lwt.return tr in let execute_tool_with_telemetry ~step_num (tc : Generate_text_result.tool_call) = Telemetry.maybe_span telemetry "ai.toolCall" ~__FILE__ ~__LINE__ ~data:(fun () -> match telemetry with | Some t -> Telemetry.tool_call_span_data ~model_info:tp.model_info ~tool_name:tc.tool_name ~tool_call_id:tc.tool_call_id ~args:tc.args t | None -> []) @@ fun tool_span -> let%lwt () = Telemetry.maybe_notify telemetry (fun t -> Telemetry.notify_on_tool_call_start t { step_number = step_num; model = tp.model_info; tool_name = tc.tool_name; tool_call_id = tc.tool_call_id; args = tc.args; function_id = tp.function_id_; metadata = tp.metadata_; }) in let t0 = Unix.gettimeofday () in let%lwt tr = Core_tool.execute_tool ~tools ~tool_call_id:tc.tool_call_id ~tool_name:tc.tool_name ~args:tc.args in let duration_ms = (Unix.gettimeofday () -. t0) *. 1000.0 in let%lwt () = Telemetry.maybe_notify telemetry (fun t -> let outcome = if tr.is_error then Telemetry.Error (Yojson.Basic.to_string tr.result) else Telemetry.Success tr.result in Telemetry.notify_on_tool_call_finish t { step_number = step_num; model = tp.model_info; tool_name = tc.tool_name; tool_call_id = tc.tool_call_id; args = tc.args; result = outcome; duration_ms; function_id = tp.function_id_; metadata = tp.metadata_; }) in (match telemetry with | Some t when Telemetry.enabled t -> Trace_core.add_data_to_span tool_span (Telemetry.tool_call_result_attrs ~result:tr.result t) | _ -> ()); emit_event (Text_stream_part.Tool_result { tool_call_id = tr.tool_call_id; tool_name = tr.tool_name; result = tr.result; is_error = tr.is_error; provider_metadata = tr.provider_metadata; }); Lwt.return tr in let finish_stream ~finish_reason ~usage ~all_steps = emit_event (Text_stream_part.Finish { finish_reason; usage }); full_push None; let parsed_output = Output.parse_output output all_steps in partial_output_push None; (* Surface the last step's provider metadata as the call-level value, matching upstream's [streamText] which exposes [providerMetadata] from the final step on its result object. *) let final_provider_metadata = match List.rev all_steps with | last :: _ -> last.Generate_text_result.provider_metadata | [] -> None in Lwt.wakeup_later usage_resolver usage; Lwt.wakeup_later finish_resolver finish_reason; Lwt.wakeup_later steps_resolver all_steps; Lwt.wakeup_later output_resolver parsed_output; Lwt.wakeup_later provider_metadata_resolver final_provider_metadata; (* Telemetry: final attributes on root span *) (match telemetry with | Some t when Telemetry.enabled t -> Trace_core.add_data_to_span root_span (Telemetry.final_response_attrs ~text:(Generate_text_result.join_text all_steps) ~reasoning:(Generate_text_result.join_reasoning all_steps) ~finish_reason ~usage t) | _ -> ()); let%lwt () = Telemetry.maybe_notify telemetry (fun t -> Telemetry.notify_on_finish t { steps = all_steps; total_usage = usage; finish_reason; function_id = tp.function_id_; metadata = tp.metadata_; }) in Option.iter (fun f -> f { Generate_text_result.text = Generate_text_result.join_text all_steps; reasoning = Generate_text_result.join_reasoning all_steps; tool_calls = List.concat_map (fun (s : Generate_text_result.step) -> s.tool_calls) all_steps; tool_results = List.concat_map (fun (s : Generate_text_result.step) -> s.tool_results) all_steps; steps = all_steps; finish_reason; usage; response = { id = None; model = None; headers = []; body = `Null }; warnings = []; output = parsed_output; }) on_finish; Lwt.return_unit in let%lwt () = Telemetry.maybe_notify telemetry (fun t -> Telemetry.notify_on_start t { model = tp.model_info; messages = initial_messages; tools; function_id = tp.function_id_; metadata = tp.metadata_; }) in emit_event Text_stream_part.Start; let rec step_loop ~current_messages ~steps ~total_usage ~step_num = if step_num > max_steps then finish_stream ~finish_reason:(Ai_provider.Finish_reason.Other "max_steps") ~usage:total_usage ~all_steps:(List.rev steps) else begin emit_event Text_stream_part.Start_step; let opts = Prompt_builder.make_call_options ~messages:current_messages ~tools:provider_tools ?tool_choice ~mode ?max_output_tokens ?temperature ?top_p ?top_k ?stop_sequences ?seed ?provider_options ?headers () in let%lwt text, reasoning, reasoning_content, tool_calls, fr, step_usage, step_response_model, step_provider_metadata = Telemetry.maybe_span telemetry "ai.streamText.doStream" ~__FILE__ ~__LINE__ ~data:(fun () -> match telemetry with | Some t -> Telemetry.step_request_attrs ~operation_id:"ai.streamText.doStream" ~model_info:tp.model_info ~current_messages ~tools ~tool_choice ?max_output_tokens ?temperature ?top_p ?top_k ?stop_sequences t | None -> []) @@ fun step_span -> let%lwt stream_result = Retry.with_retries ?max_retries ?max_retry_delay_ms (fun () -> Ai_provider.Language_model.stream model opts) in let response_model = Option.bind stream_result.raw_response (fun response -> response.model) in let%lwt text, reasoning, reasoning_content, tool_calls, fr, step_usage, step_provider_metadata = consume_provider_stream ~id_gen ~push:full_push ~on_chunk ~on_text_accumulated stream_result.stream in (* Add response attributes to step span *) (match telemetry with | Some t when Telemetry.enabled t -> Trace_core.add_data_to_span step_span (Telemetry.step_response_attrs ~text ~reasoning ~tool_calls ~finish_reason:fr ~usage:step_usage ?response_model t) | _ -> ()); Lwt.return (text, reasoning, reasoning_content, tool_calls, fr, step_usage, response_model, step_provider_metadata) in let new_total = Generate_text_result.add_usage total_usage step_usage in let has_tool_calls = match tool_calls with | [] -> false | _ :: _ -> true in let should_continue = has_tool_calls && step_num < max_steps && match tool_choice with | Some Ai_provider.Tool_choice.None_ -> false | Some Auto | Some Required | Some (Specific _) | None -> true in if should_continue then begin let%lwt blocked_calls, executable_calls = Core_tool.evaluate_approvals ~tools tool_calls in let%lwt tool_results = Lwt_list.map_s (execute_tool_with_telemetry ~step_num) executable_calls in (* Emit approval requests only for tools that have needs_approval (not client-only tools) *) List.iter (fun (tc : Generate_text_result.tool_call) -> match List.assoc_opt tc.tool_name tools with | Some { Core_tool.needs_approval = Some _; _ } -> let approval_id = next_approval_id id_gen in emit_event (Text_stream_part.Tool_approval_request { approval_id; tool_call_id = tc.tool_call_id; tool_name = tc.tool_name; args = tc.args }) | _ -> ()) blocked_calls; let step : Generate_text_result.step = { text; reasoning; tool_calls; tool_results; finish_reason = fr; usage = step_usage; response_model = step_response_model; provider_metadata = step_provider_metadata; } in Option.iter (fun f -> f step) on_step_finish; let%lwt () = Telemetry.maybe_notify telemetry (fun t -> Telemetry.notify_on_step_finish t { step_number = step_num; step; function_id = tp.function_id_; metadata = tp.metadata_ }) in emit_event (Text_stream_part.Finish_step { finish_reason = fr; usage = step_usage }); match blocked_calls with | _ :: _ -> (* Some tools need approval — stop the stream *) finish_stream ~finish_reason:fr ~usage:new_total ~all_steps:(List.rev (step :: steps)) | [] -> (* All tools executed — check stop conditions before continuing *) let%lwt stop_with_steps = match stop_when with | Some conditions -> let all_steps_so_far = List.rev (step :: steps) in let%lwt met = Stop_condition.is_met conditions ~steps:all_steps_so_far in Lwt.return (if met then Some all_steps_so_far else None) | None -> Lwt.return None in (match stop_with_steps with | Some all_steps_so_far -> finish_stream ~finish_reason:fr ~usage:new_total ~all_steps:all_steps_so_far | None -> let assistant_content = reasoning_content @ (if String.length text > 0 then [ Ai_provider.Content.Text { text } ] else []) @ List.map (fun (tc : Generate_text_result.tool_call) -> Ai_provider.Content.Tool_call { tool_call_type = "function"; tool_call_id = tc.tool_call_id; tool_name = tc.tool_name; args = Yojson.Basic.to_string tc.args; }) tool_calls in let updated_messages = Prompt_builder.append_assistant_and_tool_results ~messages:current_messages ~assistant_content ~tool_results in step_loop ~current_messages:updated_messages ~steps:(step :: steps) ~total_usage:new_total ~step_num:(step_num + 1)) end else begin (* Final step *) let step : Generate_text_result.step = { text; reasoning; tool_calls; tool_results = []; finish_reason = fr; usage = step_usage; response_model = step_response_model; provider_metadata = step_provider_metadata; } in Option.iter (fun f -> f step) on_step_finish; let%lwt () = Telemetry.maybe_notify telemetry (fun t -> Telemetry.notify_on_step_finish t { step_number = step_num; step; function_id = tp.function_id_; metadata = tp.metadata_ }) in emit_event (Text_stream_part.Finish_step { finish_reason = fr; usage = step_usage }); finish_stream ~finish_reason:fr ~usage:new_total ~all_steps:(List.rev (step :: steps)) end end in try%lwt (* Execute pending tool approvals before starting the LLM step loop *) let%lwt start_messages, initial_steps = match pending_tool_approvals with | [] -> Lwt.return (initial_messages, []) | approvals -> emit_event Text_stream_part.Start_step; (* Emit tool input chunks so the frontend creates tool invocations *) List.iter (fun (ta : Generate_text_result.pending_tool_approval) -> emit_event (Text_stream_part.Tool_call { tool_call_id = ta.tool_call_id; tool_name = ta.tool_name; args = ta.args })) approvals; (* Denied before approved — matches upstream emit order *) approvals |> List.filter (fun (ta : Generate_text_result.pending_tool_approval) -> not ta.approved) |> List.iter (fun (ta : Generate_text_result.pending_tool_approval) -> emit_event (Text_stream_part.Tool_output_denied { tool_call_id = ta.tool_call_id })); let%lwt tool_results = Lwt_list.map_s (fun (ta : Generate_text_result.pending_tool_approval) -> match ta.approved with | false -> Lwt.return { Generate_text_result.tool_call_id = ta.tool_call_id; tool_name = ta.tool_name; result = Core_tool.denied_result; is_error = false; provider_metadata = None; } | true -> execute_and_emit { tool_call_id = ta.tool_call_id; tool_name = ta.tool_name; args = ta.args }) approvals in let tool_calls = List.map (fun (ta : Generate_text_result.pending_tool_approval) -> { Generate_text_result.tool_call_id = ta.tool_call_id; tool_name = ta.tool_name; args = ta.args }) approvals in let step : Generate_text_result.step = { text = ""; reasoning = ""; tool_calls; tool_results; finish_reason = Ai_provider.Finish_reason.Tool_calls; usage = { input_tokens = 0; output_tokens = 0; total_tokens = Some 0 }; response_model = None; provider_metadata = None; } in Option.iter (fun f -> f step) on_step_finish; emit_event (Text_stream_part.Finish_step { finish_reason = Ai_provider.Finish_reason.Tool_calls; usage = { input_tokens = 0; output_tokens = 0; total_tokens = Some 0 }; }); (* Append tool results to messages for the next LLM call *) let tool_result_parts = List.map (fun (tr : Generate_text_result.tool_result) -> { Ai_provider.Prompt.tool_call_id = tr.tool_call_id; tool_name = tr.tool_name; result = tr.result; is_error = tr.is_error; content = []; provider_options = Ai_provider.Provider_options.empty; }) tool_results in let updated_messages = initial_messages @ [ Ai_provider.Prompt.Tool { content = tool_result_parts } ] in Lwt.return (updated_messages, [ step ]) in step_loop ~current_messages:start_messages ~steps:(List.rev initial_steps) ~total_usage:{ input_tokens = 0; output_tokens = 0; total_tokens = Some 0 } ~step_num:(1 + List.length initial_steps) with exn -> Trace_core.add_data_to_span root_span [ "error", `Bool true; "error.message", `String (Printexc.to_string exn) ]; let msg = Printexc.to_string exn in full_push (Some (Text_stream_part.Error { error = msg })); full_push None; partial_output_push None; Lwt.wakeup_later_exn usage_resolver exn; Lwt.wakeup_later_exn finish_resolver exn; Lwt.wakeup_later_exn steps_resolver exn; Lwt.wakeup_later output_resolver None; Lwt.wakeup_later provider_metadata_resolver None; Lwt.return_unit); let transformed_stream = match transform with | Some f -> f full_stream | None -> full_stream in let consumer_full_stream, consumer_full_push = Lwt_stream.create () in let text_stream, text_push = Lwt_stream.create () in Lwt.async (fun () -> try%lwt let%lwt () = Lwt_stream.iter_s (fun part -> consumer_full_push (Some part); (match part with | Text_stream_part.Text_delta { text; _ } -> text_push (Some text) | _ -> ()); Lwt.return_unit) transformed_stream in consumer_full_push None; text_push None; Lwt.return_unit with exn -> consumer_full_push (Some (Text_stream_part.Error { error = Printexc.to_string exn })); consumer_full_push None; text_push None; Lwt.return_unit); { Stream_text_result.text_stream; full_stream = consumer_full_stream; partial_output_stream; usage = usage_promise; finish_reason = finish_promise; steps = steps_promise; warnings = []; output = output_promise; provider_metadata = provider_metadata_promise; }
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