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package compiler
import (
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"encoding/json"
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"errors"
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"fmt"
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"go/ast"
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"go/parser"
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"go/token"
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"go/types"
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"io"
"os"
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"path/filepath"
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"strings"
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"github.com/nspcc-dev/neo-go/pkg/smartcontract"
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"github.com/nspcc-dev/neo-go/pkg/smartcontract/binding"
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"github.com/nspcc-dev/neo-go/pkg/smartcontract/manifest"
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"github.com/nspcc-dev/neo-go/pkg/smartcontract/manifest/standard"
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"github.com/nspcc-dev/neo-go/pkg/smartcontract/nef"
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"github.com/nspcc-dev/neo-go/pkg/smartcontract/rpcbinding"
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"github.com/nspcc-dev/neo-go/pkg/util"
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"golang.org/x/tools/go/packages"
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"gopkg.in/yaml.v3"
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)
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const fileExt = "nef"
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// Options contains all the parameters that affect the behavior of the compiler.
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type Options struct {
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// The extension of the output file default set to .nef
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Ext string
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// The name of the output file.
Outfile string
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// The name of the output for debug info.
DebugInfo string
compiler: add ability to generate .abi.json file
A part of integration with NEO Blockchain Toolkit (see #902). To be
able to deploy smart-contract compiled with neo-go compiler via NEO
Express, we have to generate additional .abi.json file. This file
contains the following information:
- hash of the compiled contract
- smart-contract metadata (title, description, version, author,
email, has-storage, has-dynamic-invoke, is-payable)
- smart-contract entry point
- functions
- events
However, this .abi.json file is slightly different from the one,
described in manifest.go, so we have to add auxilaury stractures for
json marshalling. The .abi.json format used by NEO-Express is described
[here](https://github.com/neo-project/neo-devpack-dotnet/blob/master/src/Neo.Compiler.MSIL/FuncExport.cs#L66).
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// The name of the output for contract manifest file.
ManifestFile string
compiler: add ability to generate .abi.json file
A part of integration with NEO Blockchain Toolkit (see #902). To be
able to deploy smart-contract compiled with neo-go compiler via NEO
Express, we have to generate additional .abi.json file. This file
contains the following information:
- hash of the compiled contract
- smart-contract metadata (title, description, version, author,
email, has-storage, has-dynamic-invoke, is-payable)
- smart-contract entry point
- functions
- events
However, this .abi.json file is slightly different from the one,
described in manifest.go, so we have to add auxilaury stractures for
json marshalling. The .abi.json format used by NEO-Express is described
[here](https://github.com/neo-project/neo-devpack-dotnet/blob/master/src/Neo.Compiler.MSIL/FuncExport.cs#L66).
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// NoEventsCheck specifies if events emitted by contract needs to be present in manifest.
// This setting has effect only if manifest is emitted.
NoEventsCheck bool
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// NoStandardCheck specifies if supported standards compliance needs to be checked.
// This setting has effect only if manifest is emitted.
NoStandardCheck bool
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// NoPermissionsCheck specifies if permissions in YAML config need to be checked
// against invocations performed by the contract.
// This setting has effect only if manifest is emitted.
NoPermissionsCheck bool
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// GuessEventTypes specifies if types of runtime notifications need to be guessed
// from the usage context. These types are used for RPC binding generation only and
// can be defined for events with name known at the compilation time and without
// variadic args usages. If some type is specified via config file, then the config's
// one is preferable. Currently, event's parameter type is defined from the first
// occurrence of event call.
GuessEventTypes bool
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// Name is a contract's name to be written to manifest.
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Name string
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// SourceURL is a contract's source URL to be written to manifest.
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SourceURL string
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// Runtime notifications declared in the contract configuration file.
ContractEvents [ ] HybridEvent
// DeclaredNamedTypes is the set of named types that were declared in the
// contract configuration type and are the part of manifest events.
DeclaredNamedTypes map [ string ] binding . ExtendedType
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// The list of standards supported by the contract.
ContractSupportedStandards [ ] string
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// SafeMethods contains a list of methods which will be marked as safe in manifest.
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SafeMethods [ ] string
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// Overloads contains mapping from the compiled method name to the name emitted in manifest.
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// It can be used to provide method overloads as Go doesn't have such capability.
Overloads map [ string ] string
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// Permissions is a list of permissions for every contract method.
Permissions [ ] manifest . Permission
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// BindingsFile contains configuration for smart-contract bindings generator.
BindingsFile string
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}
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// HybridEvent represents the description of event emitted by the contract squashed
// with extended event's parameters description. We have it as a separate type for
// the user's convenience. It is applied for the smart contract configuration file
// only.
type HybridEvent struct {
Name string ` json:"name" `
Parameters [ ] HybridParameter ` json:"parameters" `
}
// HybridParameter contains the manifest's event parameter description united with
// the extended type description for this parameter. It is applied for the smart
// contract configuration file only.
type HybridParameter struct {
manifest . Parameter ` yaml:",inline" `
ExtendedType * binding . ExtendedType ` yaml:"extendedtype,omitempty" `
}
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type buildInfo struct {
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config * packages . Config
program [ ] * packages . Package
options * Options
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}
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// ForEachPackage executes fn on each package used in the current program
// in the order they should be initialized.
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func ( c * codegen ) ForEachPackage ( fn func ( * packages . Package ) ) {
for _ , pkgPath := range c . packages {
p := c . packageCache [ pkgPath ]
c . typeInfo = p . TypesInfo
c . currPkg = p
fn ( p )
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}
}
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// ForEachFile executes fn on each file used in the current program.
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func ( c * codegen ) ForEachFile ( fn func ( * ast . File , * types . Package ) ) {
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c . ForEachPackage ( func ( pkg * packages . Package ) {
for _ , f := range pkg . Syntax {
c . fillImportMap ( f , pkg )
fn ( f , pkg . Types )
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}
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} )
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}
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// fillImportMap fills import map for f.
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func ( c * codegen ) fillImportMap ( f * ast . File , pkg * packages . Package ) {
c . importMap = map [ string ] string { "" : pkg . PkgPath }
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for _ , imp := range f . Imports {
// We need to load find package metadata because
// name specified in `package ...` decl, can be in
// conflict with package path.
pkgPath := strings . Trim ( imp . Path . Value , ` " ` )
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realPkg := pkg . Imports [ pkgPath ]
name := realPkg . Name
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if imp . Name != nil {
name = imp . Name . Name
}
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c . importMap [ name ] = realPkg . PkgPath
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}
}
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func getBuildInfo ( name string , src any ) ( * buildInfo , error ) {
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dir , err := filepath . Abs ( name )
if err != nil {
return nil , err
}
absName := dir
singleFile := strings . HasSuffix ( absName , ".go" )
if singleFile {
dir = filepath . Dir ( dir )
}
conf := & packages . Config {
Mode : packages . NeedName |
packages . NeedImports |
packages . NeedDeps |
packages . NeedTypes |
packages . NeedSyntax |
packages . NeedTypesInfo ,
Fset : token . NewFileSet ( ) ,
Dir : dir ,
Overlay : make ( map [ string ] [ ] byte ) ,
}
var names [ ] string
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if src != nil {
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var buf [ ] byte
var err error
switch s := src . ( type ) {
case string :
buf = [ ] byte ( s )
case io . Reader :
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buf , err = io . ReadAll ( s )
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if err != nil {
return nil , err
}
default :
panic ( fmt . Sprintf ( "unsupported src type: %T" , s ) )
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}
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names = append ( names , name )
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conf . Overlay [ absName ] = buf
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} else {
if strings . HasSuffix ( name , ".go" ) {
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names = append ( names , "file=" + absName )
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} else {
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names = append ( names , "pattern=" + absName )
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}
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}
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conf . ParseFile = func ( fset * token . FileSet , filename string , src [ ] byte ) ( * ast . File , error ) {
// When compiling a single file we can or can not load other files from the same package.
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// Here we chose the latter which is consistent with `go run` behavior.
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// Other dependencies should still be processed.
if singleFile && filepath . Dir ( filename ) == filepath . Dir ( absName ) && filename != absName {
return nil , nil
}
const mode = parser . AllErrors
return parser . ParseFile ( fset , filename , src , mode )
}
prog , err := packages . Load ( conf , names ... )
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if err != nil {
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return nil , err
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}
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for _ , p := range prog {
if len ( p . Errors ) != 0 {
return nil , p . Errors [ 0 ]
}
}
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return & buildInfo {
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config : conf ,
program : prog ,
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} , nil
}
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// Compile compiles a Go program into a bytecode that can run on the Neo virtual machine.
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// If `r != nil`, `name` is interpreted as a filename, and `r` as file contents.
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// Otherwise `name` is either a file name or a name of the directory containing source files.
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func Compile ( name string , r io . Reader ) ( [ ] byte , error ) {
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f , _ , err := CompileWithOptions ( name , r , nil )
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if err != nil {
return nil , err
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}
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return f . Script , nil
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}
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// CompileWithOptions compiles a Go program into bytecode with the provided compiler options.
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func CompileWithOptions ( name string , r io . Reader , o * Options ) ( * nef . File , * DebugInfo , error ) {
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ctx , err := getBuildInfo ( name , r )
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if err != nil {
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return nil , nil , err
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}
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ctx . options = o
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return codeGen ( ctx )
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}
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// CompileAndSave will compile and save the file to disk in the NEF format.
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func CompileAndSave ( src string , o * Options ) ( [ ] byte , error ) {
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o . Outfile = strings . TrimSuffix ( o . Outfile , fmt . Sprintf ( ".%s" , fileExt ) )
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if len ( o . Outfile ) == 0 {
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if strings . HasSuffix ( src , ".go" ) {
o . Outfile = strings . TrimSuffix ( src , ".go" )
} else {
o . Outfile = "out"
}
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}
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if len ( o . Ext ) == 0 {
o . Ext = fileExt
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}
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f , di , err := CompileWithOptions ( src , nil , o )
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if err != nil {
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return nil , fmt . Errorf ( "error while trying to compile smart contract file: %w" , err )
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}
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if o . SourceURL != "" {
if len ( o . SourceURL ) > nef . MaxSourceURLLength {
return nil , errors . New ( "too long source URL" )
}
f . Source = o . SourceURL
f . Checksum = f . CalculateChecksum ( )
}
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bytes , err := f . Bytes ( )
if err != nil {
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return nil , fmt . Errorf ( "error while serializing .nef file: %w" , err )
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}
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out := fmt . Sprintf ( "%s.%s" , o . Outfile , o . Ext )
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err = os . WriteFile ( out , bytes , os . ModePerm )
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if err != nil {
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return f . Script , err
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}
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if o . DebugInfo == "" && o . ManifestFile == "" && o . BindingsFile == "" {
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return f . Script , nil
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}
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if o . DebugInfo != "" {
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di . Events = make ( [ ] EventDebugInfo , len ( o . ContractEvents ) )
for i , e := range o . ContractEvents {
params := make ( [ ] DebugParam , len ( e . Parameters ) )
for j , p := range e . Parameters {
params [ j ] = DebugParam {
Name : p . Name ,
Type : p . Type . String ( ) ,
}
}
di . Events [ i ] = EventDebugInfo {
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ID : e . Name ,
// DebugInfo event name should be at the format {namespace},{name}
// but we don't provide namespace via .yml config
Name : "," + e . Name ,
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Parameters : params ,
}
}
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data , err := json . Marshal ( di )
if err != nil {
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return f . Script , err
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}
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if err := os . WriteFile ( o . DebugInfo , data , os . ModePerm ) ; err != nil {
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return f . Script , err
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}
}
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if o . BindingsFile != "" {
cfg := binding . NewConfig ( )
cfg . Package = di . MainPkg
for _ , m := range di . Methods {
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if ! m . IsExported {
continue
}
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for _ , p := range m . Parameters {
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pname := m . Name . Name + "." + p . Name
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if p . RealType . TypeName != "" {
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cfg . Overrides [ pname ] = p . RealType
}
if p . ExtendedType != nil {
cfg . Types [ pname ] = * p . ExtendedType
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}
}
if m . ReturnTypeReal . TypeName != "" {
cfg . Overrides [ m . Name . Name ] = m . ReturnTypeReal
}
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if m . ReturnTypeExtended != nil {
cfg . Types [ m . Name . Name ] = * m . ReturnTypeExtended
}
}
if len ( di . NamedTypes ) > 0 {
cfg . NamedTypes = di . NamedTypes
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}
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for name , et := range o . DeclaredNamedTypes {
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if _ , ok := cfg . NamedTypes [ name ] ; ok {
return nil , fmt . Errorf ( "configured declared named type intersects with the contract's one: `%s`" , name )
}
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cfg . NamedTypes [ name ] = et
}
for _ , e := range o . ContractEvents {
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eStructName := rpcbinding . ToEventBindingName ( e . Name )
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for _ , p := range e . Parameters {
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pStructName := rpcbinding . ToParameterBindingName ( p . Name )
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if p . ExtendedType != nil {
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pName := eStructName + "." + pStructName
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cfg . Types [ pName ] = * p . ExtendedType
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}
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}
}
if o . GuessEventTypes {
if len ( di . EmittedEvents ) > 0 {
for eventName , eventUsages := range di . EmittedEvents {
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var manifestEvent HybridEvent
for _ , e := range o . ContractEvents {
if e . Name == eventName {
manifestEvent = e
break
}
}
if len ( manifestEvent . Name ) == 0 {
return nil , fmt . Errorf ( "inconsistent usages of event `%s`: not declared in the contract config" , eventName )
}
exampleUsage := eventUsages [ 0 ]
for _ , usage := range eventUsages {
if len ( usage . Params ) != len ( manifestEvent . Parameters ) {
return nil , fmt . Errorf ( "inconsistent usages of event `%s` against config: number of params mismatch: %d vs %d" , eventName , len ( exampleUsage . Params ) , len ( manifestEvent . Parameters ) )
}
for i , actual := range usage . Params {
mParam := manifestEvent . Parameters [ i ]
// TODO: see the TestCompile_GuessEventTypes, "SC parameter type mismatch" section,
// do we want to compare with actual.RealType? The conversion code is emitted by the
// compiler for it, so we expect the parameter to be of the proper type.
if ! ( mParam . Type == smartcontract . AnyType || actual . TypeSC == mParam . Type ) {
return nil , fmt . Errorf ( "inconsistent usages of event `%s` against config: SC type of param #%d mismatch: %s vs %s" , eventName , i , actual . TypeSC , mParam . Type )
}
expected := exampleUsage . Params [ i ]
if ! actual . ExtendedType . Equals ( expected . ExtendedType ) {
return nil , fmt . Errorf ( "inconsistent usages of event `%s`: extended type of param #%d mismatch" , eventName , i )
}
}
}
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eBindingName := rpcbinding . ToEventBindingName ( eventName )
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for _ , p := range exampleUsage . Params {
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pBindingName := rpcbinding . ToParameterBindingName ( p . Name )
pname := eBindingName + "." + pBindingName
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if p . RealType . TypeName != "" {
if _ , ok := cfg . Overrides [ pname ] ; ! ok {
cfg . Overrides [ pname ] = p . RealType
}
}
if p . ExtendedType != nil {
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typeName := p . ExtendedType . Name
if extType , ok := exampleUsage . ExtTypes [ typeName ] ; ok {
for _ , ok := cfg . NamedTypes [ typeName ] ; ok ; _ , ok = cfg . NamedTypes [ typeName ] {
typeName = typeName + "X"
}
extType . Name = typeName
p . ExtendedType . Name = typeName
cfg . NamedTypes [ typeName ] = extType
}
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if _ , ok := cfg . Types [ pname ] ; ! ok {
cfg . Types [ pname ] = * p . ExtendedType
}
}
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}
}
}
}
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data , err := yaml . Marshal ( & cfg )
if err != nil {
return nil , fmt . Errorf ( "can't marshal bindings configuration: %w" , err )
}
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err = os . WriteFile ( o . BindingsFile , data , os . ModePerm )
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if err != nil {
return nil , fmt . Errorf ( "can't write bindings configuration: %w" , err )
}
}
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if o . ManifestFile != "" {
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m , err := CreateManifest ( di , o )
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if err != nil {
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return f . Script , err
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}
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mData , err := json . Marshal ( m )
if err != nil {
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return f . Script , fmt . Errorf ( "failed to marshal manifest to JSON: %w" , err )
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}
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return f . Script , os . WriteFile ( o . ManifestFile , mData , os . ModePerm )
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}
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return f . Script , nil
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}
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// CreateManifest creates manifest and checks that is is valid.
func CreateManifest ( di * DebugInfo , o * Options ) ( * manifest . Manifest , error ) {
m , err := di . ConvertToManifest ( o )
if err != nil {
return m , fmt . Errorf ( "failed to convert debug info to manifest: %w" , err )
}
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for _ , name := range o . SafeMethods {
if m . ABI . GetMethod ( name , - 1 ) == nil {
return m , fmt . Errorf ( "method %s is marked as safe but missing from manifest" , name )
}
}
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err = m . IsValid ( util . Uint160 { } ) // Check as much as possible without hash.
if err != nil {
return m , fmt . Errorf ( "manifest is invalid: %w" , err )
}
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if ! o . NoStandardCheck {
if err := standard . CheckABI ( m , o . ContractSupportedStandards ... ) ; err != nil {
return m , err
}
if m . ABI . GetMethod ( manifest . MethodOnNEP11Payment , - 1 ) != nil {
if err := standard . CheckABI ( m , manifest . NEP11Payable ) ; err != nil {
return m , err
}
}
if m . ABI . GetMethod ( manifest . MethodOnNEP17Payment , - 1 ) != nil {
if err := standard . CheckABI ( m , manifest . NEP17Payable ) ; err != nil {
return m , err
}
}
}
if ! o . NoEventsCheck {
for name := range di . EmittedEvents {
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expected := m . ABI . GetEvent ( name )
if expected == nil {
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return nil , fmt . Errorf ( "event '%s' is emitted but not specified in manifest" , name )
}
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for _ , emitted := range di . EmittedEvents [ name ] {
if len ( emitted . Params ) != len ( expected . Parameters ) {
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return nil , fmt . Errorf ( "event '%s' should have %d parameters but has %d" ,
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name , len ( expected . Parameters ) , len ( emitted . Params ) )
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}
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for j := range expected . Parameters {
if expected . Parameters [ j ] . Type == smartcontract . AnyType {
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continue
}
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expectedT := expected . Parameters [ j ] . Type
if emitted . Params [ j ] . TypeSC != expectedT {
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return nil , fmt . Errorf ( "event '%s' should have '%s' as type of %d parameter, " +
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"got: %s" , name , expectedT , j + 1 , emitted . Params [ j ] . TypeSC )
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}
}
}
}
}
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if ! o . NoPermissionsCheck {
// We can't perform full check for 2 reasons:
// 1. Contract hash may not be available at compile time.
// 2. Permission may be specified for a group of contracts by public key.
// Thus only basic checks are performed.
for h , methods := range di . InvokedContracts {
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knownHash := ! h . Equals ( util . Uint160 { } )
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methodLoop :
for _ , m := range methods {
for _ , p := range o . Permissions {
// Group or wildcard permission is ok to try.
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if knownHash && p . Contract . Type == manifest . PermissionHash && ! p . Contract . Hash ( ) . Equals ( h ) {
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continue
}
if p . Methods . Contains ( m ) {
continue methodLoop
}
}
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if knownHash {
return nil , fmt . Errorf ( "method '%s' of contract %s is invoked but" +
" corresponding permission is missing" , m , h . StringLE ( ) )
}
return nil , fmt . Errorf ( "method '%s' is invoked but" +
" corresponding permission is missing" , m )
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}
}
}
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return m , nil
}