mirror of
https://github.com/router-for-me/CLIProxyAPI.git
synced 2026-09-11 14:47:58 +08:00
- Add payload detection and preparation helpers for compaction triggers and summary generation. - Implement AES-GCM sealing and unsealing to store and restore opaque compaction capsules across turns. - Support expanding compaction capsules into developer context for downstream turns. - Provide summary text extraction across Gemini, Claude, and OpenAI response formats. - Add builders for compaction non-stream JSON responses and SSE stream frames. Closes: #5094
384 lines
14 KiB
Go
384 lines
14 KiB
Go
package helps
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import (
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"bytes"
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"crypto/aes"
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"crypto/cipher"
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"crypto/rand"
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"crypto/sha256"
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"encoding/base64"
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"encoding/json"
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"fmt"
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"io"
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"strings"
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"time"
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"github.com/tidwall/gjson"
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"github.com/tidwall/sjson"
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)
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const (
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antigravityCompactionCapsulePrefix = "cpa-ag-compact-v1:"
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fixedCompactionKeySecret = "CLIProxyAPI"
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)
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type antigravityCompactionCapsuleData struct {
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Summary string `json:"summary"`
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Model string `json:"model"`
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CreatedAt int64 `json:"created_at"`
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}
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// HasResponsesCompactionTrigger checks whether input contains a compaction_trigger item.
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func HasResponsesCompactionTrigger(payload []byte) bool {
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input := gjson.GetBytes(payload, "input")
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if !input.IsArray() {
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return false
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}
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for _, item := range input.Array() {
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if item.Get("type").String() == "compaction_trigger" {
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return true
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}
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}
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return false
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}
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// HasResponsesCompactionItem checks whether input contains a compaction item.
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func HasResponsesCompactionItem(payload []byte) bool {
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input := gjson.GetBytes(payload, "input")
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if !input.IsArray() {
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return false
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}
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for _, item := range input.Array() {
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if item.Get("type").String() == "compaction" {
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return true
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}
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}
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return false
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}
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// PrepareAntigravityCompactionSummaryPayload prepares a payload for non-stream Antigravity summary generation.
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func PrepareAntigravityCompactionSummaryPayload(payload []byte, modelName string) []byte {
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out := payload
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summaryPrompt := `{"type":"message","role":"user","content":[{"type":"input_text","text":"Please provide a concise and comprehensive summary of the preceding conversation and task progress so far, including user goals, key findings, actions taken, and current status, so that work can continue smoothly."}]}`
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input := gjson.GetBytes(out, "input")
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if input.IsArray() {
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var filtered []string
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for _, item := range input.Array() {
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itemType := item.Get("type").String()
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if itemType == "compaction_trigger" {
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continue
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}
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filtered = append(filtered, item.Raw)
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}
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filtered = append(filtered, summaryPrompt)
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newInput := "[" + strings.Join(filtered, ",") + "]"
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out, _ = sjson.SetRawBytes(out, "input", []byte(newInput))
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} else if input.Type == gjson.String && input.String() != "" {
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userMsg := []byte(`{"type":"message","role":"user","content":[{"type":"input_text"}]}`)
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userMsg, _ = sjson.SetBytes(userMsg, "content.0.text", input.String())
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newInput := "[" + string(userMsg) + "," + summaryPrompt + "]"
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out, _ = sjson.SetRawBytes(out, "input", []byte(newInput))
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} else {
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newInput := "[" + summaryPrompt + "]"
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out, _ = sjson.SetRawBytes(out, "input", []byte(newInput))
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}
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// Remove fields not needed or incompatible with summary generation
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for _, field := range []string{
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"stream",
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"tools",
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"tool_choice",
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"previous_response_id",
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"parallel_tool_calls",
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"additional_tools",
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"truncation",
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"metadata",
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} {
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out, _ = sjson.DeleteBytes(out, field)
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}
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out, _ = sjson.SetBytes(out, "stream", false)
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return out
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}
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// deriveAntigravityCompactionKey derives an AES-256 key from the fixed CLIProxyAPI secret.
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func deriveAntigravityCompactionKey() []byte {
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h := sha256.Sum256([]byte(fixedCompactionKeySecret))
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return h[:]
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}
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// SealAntigravityCompaction encrypts summary data into an opaque capsule using AES-GCM.
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func SealAntigravityCompaction(summary, modelName string) (string, error) {
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data := antigravityCompactionCapsuleData{
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Summary: summary,
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Model: modelName,
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CreatedAt: time.Now().Unix(),
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}
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plaintext, errMarshal := json.Marshal(data)
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if errMarshal != nil {
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return "", fmt.Errorf("marshal compaction capsule: %w", errMarshal)
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}
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key := deriveAntigravityCompactionKey()
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block, errCipher := aes.NewCipher(key)
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if errCipher != nil {
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return "", fmt.Errorf("create cipher: %w", errCipher)
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}
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gcm, errGCM := cipher.NewGCM(block)
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if errGCM != nil {
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return "", fmt.Errorf("create gcm: %w", errGCM)
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}
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nonce := make([]byte, gcm.NonceSize())
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if _, errRead := io.ReadFull(rand.Reader, nonce); errRead != nil {
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return "", fmt.Errorf("generate nonce: %w", errRead)
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}
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ciphertext := gcm.Seal(nonce, nonce, plaintext, nil)
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return antigravityCompactionCapsulePrefix + base64.RawURLEncoding.EncodeToString(ciphertext), nil
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}
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// UnsealAntigravityCompaction decrypts and validates an opaque capsule.
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func UnsealAntigravityCompaction(encryptedContent string) (string, error) {
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if !strings.HasPrefix(encryptedContent, antigravityCompactionCapsulePrefix) {
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return "", fmt.Errorf("unrecognized compaction capsule format")
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}
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raw := strings.TrimPrefix(encryptedContent, antigravityCompactionCapsulePrefix)
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ciphertext, errDecode := base64.RawURLEncoding.DecodeString(raw)
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if errDecode != nil {
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return "", fmt.Errorf("decode compaction capsule: %w", errDecode)
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}
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key := deriveAntigravityCompactionKey()
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block, errCipher := aes.NewCipher(key)
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if errCipher != nil {
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return "", fmt.Errorf("create cipher: %w", errCipher)
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}
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gcm, errGCM := cipher.NewGCM(block)
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if errGCM != nil {
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return "", fmt.Errorf("create gcm: %w", errGCM)
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}
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nonceSize := gcm.NonceSize()
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if len(ciphertext) < nonceSize+gcm.Overhead() {
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return "", fmt.Errorf("compaction capsule ciphertext too short")
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}
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nonce, encrypted := ciphertext[:nonceSize], ciphertext[nonceSize:]
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plaintext, errOpen := gcm.Open(nil, nonce, encrypted, nil)
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if errOpen != nil {
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return "", fmt.Errorf("invalid or corrupted compaction capsule: %w", errOpen)
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}
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var data antigravityCompactionCapsuleData
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if errUnmarshal := json.Unmarshal(plaintext, &data); errUnmarshal != nil {
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return "", fmt.Errorf("unmarshal compaction capsule: %w", errUnmarshal)
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}
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return data.Summary, nil
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}
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// ExpandAntigravityCompactionCapsules expands compaction items in input into developer context.
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func ExpandAntigravityCompactionCapsules(payload []byte) ([]byte, error) {
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input := gjson.GetBytes(payload, "input")
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if !input.IsArray() {
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return payload, nil
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}
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var expandedItems []string
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changed := false
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for _, item := range input.Array() {
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if item.Get("type").String() == "compaction" {
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encryptedContent := item.Get("encrypted_content").String()
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summary, errUnseal := UnsealAntigravityCompaction(encryptedContent)
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if errUnseal != nil {
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return nil, fmt.Errorf("invalid compaction capsule: %w", errUnseal)
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}
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devMsg := []byte(`{"type":"message","role":"developer","content":[{"type":"input_text"}]}`)
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devMsg, _ = sjson.SetBytes(devMsg, "content.0.text", "Context summary from previous turns:\n"+summary)
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expandedItems = append(expandedItems, string(devMsg))
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changed = true
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continue
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}
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expandedItems = append(expandedItems, item.Raw)
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}
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if !changed {
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return payload, nil
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}
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newInput := "[" + strings.Join(expandedItems, ",") + "]"
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return sjson.SetRawBytes(payload, "input", []byte(newInput))
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}
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// ExtractAntigravitySummaryText extracts summary text from Antigravity or Responses response.
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func ExtractAntigravitySummaryText(respPayload []byte) (string, error) {
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// 1. OpenAI Responses format: iterate through output array and skip reasoning
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output := gjson.GetBytes(respPayload, "output")
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if output.IsArray() {
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var textParts []string
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for _, item := range output.Array() {
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if item.Get("type").String() == "message" {
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content := item.Get("content")
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if content.IsArray() {
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for _, part := range content.Array() {
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if part.Get("type").String() == "output_text" {
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if t := part.Get("text").String(); t != "" {
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textParts = append(textParts, t)
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}
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}
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}
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} else if content.Type == gjson.String && content.String() != "" {
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textParts = append(textParts, content.String())
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}
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}
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}
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if len(textParts) > 0 {
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return strings.Join(textParts, "\n"), nil
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}
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}
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// 2. Antigravity Gemini format: response.candidates.0.content.parts or candidates.0.content.parts
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candidates := gjson.GetBytes(respPayload, "response.candidates")
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if !candidates.Exists() {
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candidates = gjson.GetBytes(respPayload, "candidates")
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}
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if candidates.IsArray() && len(candidates.Array()) > 0 {
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var textParts []string
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parts := candidates.Array()[0].Get("content.parts")
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if parts.IsArray() {
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for _, part := range parts.Array() {
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if part.Get("thought").Bool() {
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continue
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}
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if t := part.Get("text").String(); t != "" {
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textParts = append(textParts, t)
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}
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}
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}
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if len(textParts) > 0 {
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return strings.Join(textParts, "\n"), nil
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}
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}
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// 3. Claude format: content array
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content := gjson.GetBytes(respPayload, "content")
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if content.IsArray() {
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var textParts []string
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for _, block := range content.Array() {
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if block.Get("type").String() == "text" {
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if t := block.Get("text").String(); t != "" {
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textParts = append(textParts, t)
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}
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}
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}
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if len(textParts) > 0 {
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return strings.Join(textParts, "\n"), nil
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}
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}
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// 4. OpenAI Chat format: choices.0.message.content
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if text := gjson.GetBytes(respPayload, "choices.0.message.content").String(); text != "" {
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return text, nil
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}
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return "", fmt.Errorf("no summary text found in upstream response")
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}
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// BuildAntigravityCompactionStreamChunks creates SSE frames for compaction stream response.
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func BuildAntigravityCompactionStreamChunks(modelName, capsule string, inputTokens, outputTokens, totalTokens int) [][]byte {
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now := time.Now().Unix()
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responseID := fmt.Sprintf("resp_ag_compact_%d", time.Now().UnixNano())
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itemID := fmt.Sprintf("cmp_ag_compact_%d", time.Now().UnixNano())
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itemInProgress := []byte(`{"type":"compaction","status":"in_progress"}`)
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itemInProgress, _ = sjson.SetBytes(itemInProgress, "id", itemID)
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itemInProgress, _ = sjson.SetBytes(itemInProgress, "encrypted_content", capsule)
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itemCompleted := []byte(`{"type":"compaction","status":"completed"}`)
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itemCompleted, _ = sjson.SetBytes(itemCompleted, "id", itemID)
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itemCompleted, _ = sjson.SetBytes(itemCompleted, "encrypted_content", capsule)
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usageNode := []byte(`{"input_tokens_details":{"cached_tokens":0},"output_tokens_details":{"reasoning_tokens":0}}`)
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usageNode, _ = sjson.SetBytes(usageNode, "input_tokens", inputTokens)
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usageNode, _ = sjson.SetBytes(usageNode, "output_tokens", outputTokens)
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usageNode, _ = sjson.SetBytes(usageNode, "total_tokens", totalTokens)
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createdResponse := []byte(`{"object":"response","status":"in_progress","background":false,"error":null,"output":[]}`)
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createdResponse, _ = sjson.SetBytes(createdResponse, "id", responseID)
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createdResponse, _ = sjson.SetBytes(createdResponse, "created_at", now)
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createdResponse, _ = sjson.SetBytes(createdResponse, "model", modelName)
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inProgressResponse := createdResponse
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completedResponse := []byte(`{"object":"response","status":"completed","background":false,"error":null}`)
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completedResponse, _ = sjson.SetBytes(completedResponse, "id", responseID)
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completedResponse, _ = sjson.SetBytes(completedResponse, "created_at", now)
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completedResponse, _ = sjson.SetBytes(completedResponse, "completed_at", now)
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completedResponse, _ = sjson.SetBytes(completedResponse, "model", modelName)
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completedResponse, _ = sjson.SetRawBytes(completedResponse, "output", []byte("["+string(itemCompleted)+"]"))
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completedResponse, _ = sjson.SetRawBytes(completedResponse, "usage", usageNode)
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createdPayload := []byte(`{"type":"response.created","sequence_number":0}`)
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createdPayload, _ = sjson.SetRawBytes(createdPayload, "response", createdResponse)
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inProgressPayload := []byte(`{"type":"response.in_progress","sequence_number":1}`)
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inProgressPayload, _ = sjson.SetRawBytes(inProgressPayload, "response", inProgressResponse)
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addedPayload := []byte(`{"type":"response.output_item.added","sequence_number":2,"output_index":0}`)
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addedPayload, _ = sjson.SetRawBytes(addedPayload, "item", itemInProgress)
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donePayload := []byte(`{"type":"response.output_item.done","sequence_number":3,"output_index":0}`)
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donePayload, _ = sjson.SetRawBytes(donePayload, "item", itemCompleted)
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completedPayload := []byte(`{"type":"response.completed","sequence_number":4}`)
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completedPayload, _ = sjson.SetRawBytes(completedPayload, "response", completedResponse)
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frames := [][]byte{
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buildSSEFrame("response.created", createdPayload),
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buildSSEFrame("response.in_progress", inProgressPayload),
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buildSSEFrame("response.output_item.added", addedPayload),
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buildSSEFrame("response.output_item.done", donePayload),
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buildSSEFrame("response.completed", completedPayload),
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}
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return frames
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}
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// BuildAntigravityCompactionResponse creates JSON response for non-stream response.compaction.
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func BuildAntigravityCompactionResponse(modelName, capsule string, inputTokens, outputTokens, totalTokens int) []byte {
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now := time.Now().Unix()
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responseID := fmt.Sprintf("resp_ag_compact_%d", time.Now().UnixNano())
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itemID := fmt.Sprintf("cmp_ag_compact_%d", time.Now().UnixNano())
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itemJSON := []byte(`{"type":"compaction","status":"completed"}`)
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itemJSON, _ = sjson.SetBytes(itemJSON, "id", itemID)
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itemJSON, _ = sjson.SetBytes(itemJSON, "encrypted_content", capsule)
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usageJSON := []byte(`{"input_tokens_details":{"cached_tokens":0},"output_tokens_details":{"reasoning_tokens":0}}`)
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usageJSON, _ = sjson.SetBytes(usageJSON, "input_tokens", inputTokens)
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usageJSON, _ = sjson.SetBytes(usageJSON, "output_tokens", outputTokens)
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usageJSON, _ = sjson.SetBytes(usageJSON, "total_tokens", totalTokens)
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respJSON := []byte(`{"object":"response.compaction","status":"completed"}`)
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respJSON, _ = sjson.SetBytes(respJSON, "id", responseID)
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respJSON, _ = sjson.SetBytes(respJSON, "created_at", now)
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respJSON, _ = sjson.SetBytes(respJSON, "model", modelName)
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respJSON, _ = sjson.SetRawBytes(respJSON, "output", []byte("["+string(itemJSON)+"]"))
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respJSON, _ = sjson.SetRawBytes(respJSON, "usage", usageJSON)
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return respJSON
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}
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func buildSSEFrame(event string, data []byte) []byte {
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var buf bytes.Buffer
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buf.WriteString("event: ")
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buf.WriteString(event)
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buf.WriteString("\ndata: ")
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buf.Write(data)
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buf.WriteString("\n\n")
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return buf.Bytes()
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}
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