2024-05-27 11:46:36 +01:00
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// (c) Copyright gosec's authors
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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package analyzers
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import (
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"fmt"
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2024-08-23 16:17:23 +01:00
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"go/token"
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2024-05-27 11:46:36 +01:00
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"regexp"
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"strconv"
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"golang.org/x/tools/go/analysis"
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"golang.org/x/tools/go/analysis/passes/buildssa"
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"golang.org/x/tools/go/ssa"
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2024-05-27 11:53:52 +01:00
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"github.com/securego/gosec/v2/issue"
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2024-05-27 11:46:36 +01:00
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)
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func newConversionOverflowAnalyzer(id string, description string) *analysis.Analyzer {
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return &analysis.Analyzer{
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Name: id,
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Doc: description,
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Run: runConversionOverflow,
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Requires: []*analysis.Analyzer{buildssa.Analyzer},
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}
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}
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func runConversionOverflow(pass *analysis.Pass) (interface{}, error) {
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ssaResult, err := getSSAResult(pass)
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if err != nil {
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return nil, fmt.Errorf("building ssa representation: %w", err)
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}
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issues := []*issue.Issue{}
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for _, mcall := range ssaResult.SSA.SrcFuncs {
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for _, block := range mcall.DomPreorder() {
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for _, instr := range block.Instrs {
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switch instr := instr.(type) {
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case *ssa.Convert:
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src := instr.X.Type().Underlying().String()
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dst := instr.Type().Underlying().String()
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if isSafeConversion(instr) {
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continue
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}
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if isIntOverflow(src, dst) {
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issue := newIssue(pass.Analyzer.Name,
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fmt.Sprintf("integer overflow conversion %s -> %s", src, dst),
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pass.Fset,
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instr.Pos(),
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issue.High,
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issue.Medium,
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)
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issues = append(issues, issue)
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}
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}
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}
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}
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}
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if len(issues) > 0 {
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return issues, nil
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}
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return nil, nil
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}
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func isSafeConversion(instr *ssa.Convert) bool {
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dstType := instr.Type().Underlying().String()
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// Check for constant conversions
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if constVal, ok := instr.X.(*ssa.Const); ok {
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if isConstantInRange(constVal, dstType) {
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return true
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}
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}
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// Check for explicit range checks
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if hasExplicitRangeCheck(instr) {
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return true
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}
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// Check for string to integer conversions with specified bit size
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if isStringToIntConversion(instr, dstType) {
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return true
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}
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return false
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}
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func isConstantInRange(constVal *ssa.Const, dstType string) bool {
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value, err := strconv.ParseInt(constVal.Value.String(), 10, 64)
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if err != nil {
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return false
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}
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dstInt, err := parseIntType(dstType)
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if err != nil {
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return false
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}
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if dstInt.signed {
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return value >= -(1<<(dstInt.size-1)) && value <= (1<<(dstInt.size-1))-1
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}
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return value >= 0 && value <= (1<<dstInt.size)-1
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}
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func hasExplicitRangeCheck(instr *ssa.Convert) bool {
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block := instr.Block()
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for _, i := range block.Instrs {
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if binOp, ok := i.(*ssa.BinOp); ok {
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// Check if either operand of the BinOp is the result of the Convert instruction
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if (binOp.X == instr || binOp.Y == instr) &&
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(binOp.Op == token.LSS || binOp.Op == token.LEQ || binOp.Op == token.GTR || binOp.Op == token.GEQ) {
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return true
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}
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}
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}
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return false
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}
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func isStringToIntConversion(instr *ssa.Convert, dstType string) bool {
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// Traverse the SSA instructions to find the original variable
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original := instr.X
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for {
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switch v := original.(type) {
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case *ssa.Call:
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if v.Call.StaticCallee() != nil && (v.Call.StaticCallee().Name() == "ParseInt" || v.Call.StaticCallee().Name() == "ParseUint") {
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if len(v.Call.Args) == 3 {
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if bitSize, ok := v.Call.Args[2].(*ssa.Const); ok {
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signed := v.Call.StaticCallee().Name() == "ParseInt"
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bitSizeValue, err := strconv.Atoi(bitSize.Value.String())
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if err != nil {
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return false
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}
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dstInt, err := parseIntType(dstType)
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if err != nil {
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return false
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}
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isSafe := bitSizeValue <= dstInt.size && signed == dstInt.signed
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return isSafe
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}
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}
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}
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return false
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case *ssa.Phi:
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original = v.Edges[0]
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case *ssa.Extract:
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original = v.Tuple
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default:
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return false
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}
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}
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}
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type integer struct {
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signed bool
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size int
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}
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func parseIntType(intType string) (integer, error) {
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re := regexp.MustCompile(`(?P<type>u?int)(?P<size>\d{1,2})?`)
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matches := re.FindStringSubmatch(intType)
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if matches == nil {
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return integer{}, fmt.Errorf("no integer type match found for %s", intType)
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}
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it := matches[re.SubexpIndex("type")]
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is := matches[re.SubexpIndex("size")]
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signed := false
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if it == "int" {
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signed = true
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}
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// use default system int type in case size is not present in the type
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intSize := strconv.IntSize
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if is != "" {
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var err error
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intSize, err = strconv.Atoi(is)
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if err != nil {
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return integer{}, fmt.Errorf("failed to parse the integer type size: %w", err)
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}
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}
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return integer{signed: signed, size: intSize}, nil
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}
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func isIntOverflow(src string, dst string) bool {
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srcInt, err := parseIntType(src)
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if err != nil {
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return false
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}
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dstInt, err := parseIntType(dst)
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if err != nil {
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return false
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}
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// converting uint to int of the same size or smaller might lead to overflow
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if !srcInt.signed && dstInt.signed && dstInt.size <= srcInt.size {
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return true
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}
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// converting uint to unit of a smaller size might lead to overflow
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if !srcInt.signed && !dstInt.signed && dstInt.size < srcInt.size {
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return true
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}
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// converting int to int of a smaller size might lead to overflow
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if srcInt.signed && dstInt.signed && dstInt.size < srcInt.size {
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return true
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}
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// converting int to uint of a smaller size might lead to overflow
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if srcInt.signed && !dstInt.signed && dstInt.size < srcInt.size && srcInt.size-dstInt.size > 8 {
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return true
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}
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return false
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}
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